Congratulations!

[Valid RSS] This is a valid RSS feed.

Recommendations

This feed is valid, but interoperability with the widest range of feed readers could be improved by implementing the following recommendations.

Source: https://www.nature.com/nature.rss

  1. <rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:prism="http://prismstandard.org/namespaces/basic/2.0/" xmlns:dc="http://purl.org/dc/elements/1.1/"
  2.         xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns="http://purl.org/rss/1.0/" xmlns:admin="http://webns.net/mvcb/">
  3.    <channel rdf:about="http://feeds.nature.com/nature/rss/current">
  4.        <title>Nature</title>
  5.        <description>Nature is the foremost international weekly scientific journal in the world and is the flagship journal for Nature Portfolio. It publishes the finest peer-reviewed research in all fields of science and technology on the basis of its originality, importance, interdisciplinary interest, timeliness, accessibility, elegance and surprising conclusions. Nature publishes landmark papers, award winning news, leading comment and expert opinion on important, topical scientific news and events that enable readers to share the latest discoveries in science and evolve the discussion amongst the global scientific community.</description>
  6.        <link>http://feeds.nature.com/nature/rss/current</link>
  7.        <admin:generatorAgent rdf:resource="https://www.nature.com/"/>
  8.        <admin:errorReportsTo rdf:resource="mailto:feedback@nature.com"/>
  9.        <dc:publisher>Nature Publishing Group</dc:publisher>
  10.        <dc:language>en</dc:language>
  11.        <dc:rights>© 2025 Macmillan Publishers Limited, part of Springer Nature. All rights reserved.</dc:rights>
  12.        <prism:publicationName>Nature</prism:publicationName>
  13.        
  14.        
  15.        <prism:copyright>© 2025 Macmillan Publishers Limited, part of Springer Nature. All rights reserved.</prism:copyright>
  16.        <prism:rightsAgent>permissions@nature.com</prism:rightsAgent>
  17.        <image rdf:resource="https://www.nature.com/uploads/product/nature/rss.png"/>
  18.        <items>
  19.            <rdf:Seq>
  20.                
  21.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03359-z"/>
  22.                
  23.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03361-5"/>
  24.                
  25.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03329-5"/>
  26.                
  27.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03367-z"/>
  28.                
  29.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03358-0"/>
  30.                
  31.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03360-6"/>
  32.                
  33.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03307-x"/>
  34.                
  35.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03305-z"/>
  36.                
  37.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03291-2"/>
  38.                
  39.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03310-2"/>
  40.                
  41.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03301-3"/>
  42.                
  43.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03313-z"/>
  44.                
  45.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09705-5"/>
  46.                
  47.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03315-x"/>
  48.                
  49.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03283-2"/>
  50.                
  51.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03328-6"/>
  52.                
  53.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03314-y"/>
  54.                
  55.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03135-z"/>
  56.                
  57.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03312-0"/>
  58.                
  59.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03364-2"/>
  60.                
  61.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03371-3"/>
  62.                
  63.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02947-3"/>
  64.                
  65.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03353-5"/>
  66.                
  67.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03309-9"/>
  68.                
  69.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03316-w"/>
  70.                
  71.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09692-7"/>
  72.                
  73.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03244-9"/>
  74.                
  75.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03282-3"/>
  76.                
  77.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03245-8"/>
  78.                
  79.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03354-4"/>
  80.                
  81.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03324-w"/>
  82.                
  83.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03251-w"/>
  84.                
  85.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03280-5"/>
  86.                
  87.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03332-w"/>
  88.                
  89.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03288-x"/>
  90.                
  91.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03279-y"/>
  92.                
  93.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03322-y"/>
  94.                
  95.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03247-6"/>
  96.                
  97.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03299-8"/>
  98.                
  99.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02681-w"/>
  100.                
  101.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03337-5"/>
  102.                
  103.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02899-8"/>
  104.                
  105.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09697-2"/>
  106.                
  107.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03298-9"/>
  108.                
  109.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03270-7"/>
  110.                
  111.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09602-x"/>
  112.                
  113.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09579-7"/>
  114.                
  115.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09581-z"/>
  116.                
  117.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09621-8"/>
  118.                
  119.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09584-w"/>
  120.                
  121.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09603-w"/>
  122.                
  123.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09448-3"/>
  124.                
  125.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09516-8"/>
  126.                
  127.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09582-y"/>
  128.                
  129.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09521-x"/>
  130.                
  131.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09578-8"/>
  132.                
  133.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09585-9"/>
  134.                
  135.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09620-9"/>
  136.                
  137.                    <rdf:li rdf:resource="https://www.nature.com/articles/s41586-025-09604-9"/>
  138.                
  139.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03222-1"/>
  140.                
  141.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02906-y"/>
  142.                
  143.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03272-5"/>
  144.                
  145.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03249-4"/>
  146.                
  147.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03232-z"/>
  148.                
  149.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03195-1"/>
  150.                
  151.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02975-z"/>
  152.                
  153.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03235-w"/>
  154.                
  155.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02973-1"/>
  156.                
  157.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03219-w"/>
  158.                
  159.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03320-0"/>
  160.                
  161.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03238-7"/>
  162.                
  163.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02594-8"/>
  164.                
  165.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-02974-0"/>
  166.                
  167.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03107-3"/>
  168.                
  169.                    <rdf:li rdf:resource="https://www.nature.com/articles/d41586-025-03277-0"/>
  170.                
  171.            </rdf:Seq>
  172.        </items>
  173.    </channel>
  174.    <image rdf:about="https://www.nature.com/uploads/product/nature/rss.png">
  175.        <title>Nature</title>
  176.        <url>https://www.nature.com/uploads/product/nature/rss.png</url>
  177.        <link>http://feeds.nature.com/nature/rss/current</link>
  178.    </image>
  179.    
  180.        <item rdf:about="https://www.nature.com/articles/d41586-025-03359-z">
  181.            <title><![CDATA[Red lines for religious AI]]></title>
  182.            <link>https://www.nature.com/articles/d41586-025-03359-z</link>
  183.            <content:encoded>
  184.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03359-z">doi:10.1038/d41586-025-03359-z</a></p>Red lines for religious AI]]></content:encoded>
  185.            <dc:title><![CDATA[Red lines for religious AI]]></dc:title>
  186.            <dc:creator>Max Tretter</dc:creator><dc:creator>Anna Puzio</dc:creator>
  187.            <dc:identifier>doi:10.1038/d41586-025-03359-z</dc:identifier>
  188.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03359-z</dc:source>
  189.            <dc:date>2025-10-14</dc:date>
  190.            <prism:publicationName>Nature</prism:publicationName>
  191.            <prism:doi>10.1038/d41586-025-03359-z</prism:doi>
  192.            <prism:url>https://www.nature.com/articles/d41586-025-03359-z</prism:url>
  193.        </item>
  194.    
  195.        <item rdf:about="https://www.nature.com/articles/d41586-025-03361-5">
  196.            <title><![CDATA[Brazil’s COP30 legacy should be to protect more of its forests]]></title>
  197.            <link>https://www.nature.com/articles/d41586-025-03361-5</link>
  198.            <content:encoded>
  199.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03361-5">doi:10.1038/d41586-025-03361-5</a></p>Brazil’s COP30 legacy should be to protect more of its forests]]></content:encoded>
  200.            <dc:title><![CDATA[Brazil’s COP30 legacy should be to protect more of its forests]]></dc:title>
  201.            <dc:creator>Paulo Moutinho</dc:creator><dc:creator>André Guimarães</dc:creator>
  202.            <dc:identifier>doi:10.1038/d41586-025-03361-5</dc:identifier>
  203.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03361-5</dc:source>
  204.            <dc:date>2025-10-14</dc:date>
  205.            <prism:publicationName>Nature</prism:publicationName>
  206.            <prism:doi>10.1038/d41586-025-03361-5</prism:doi>
  207.            <prism:url>https://www.nature.com/articles/d41586-025-03361-5</prism:url>
  208.        </item>
  209.    
  210.        <item rdf:about="https://www.nature.com/articles/d41586-025-03329-5">
  211.            <title><![CDATA[Do rats double-dip food with their tails?]]></title>
  212.            <link>https://www.nature.com/articles/d41586-025-03329-5</link>
  213.            <content:encoded>
  214.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03329-5">doi:10.1038/d41586-025-03329-5</a></p>Nature’s pages feature evidence that rodents reach refreshment through wily means, and a review of a book that celebrates everything honey.]]></content:encoded>
  215.            <dc:title><![CDATA[Do rats double-dip food with their tails?]]></dc:title>
  216.            
  217.            <dc:identifier>doi:10.1038/d41586-025-03329-5</dc:identifier>
  218.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03329-5</dc:source>
  219.            <dc:date>2025-10-14</dc:date>
  220.            <prism:publicationName>Nature</prism:publicationName>
  221.            <prism:doi>10.1038/d41586-025-03329-5</prism:doi>
  222.            <prism:url>https://www.nature.com/articles/d41586-025-03329-5</prism:url>
  223.        </item>
  224.    
  225.        <item rdf:about="https://www.nature.com/articles/d41586-025-03367-z">
  226.            <title><![CDATA[Japan declares a flu epidemic — what this means for other nations]]></title>
  227.            <link>https://www.nature.com/articles/d41586-025-03367-z</link>
  228.            <content:encoded>
  229.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03367-z">doi:10.1038/d41586-025-03367-z</a></p>Researchers say that the number of infections for this time of year is unusual.]]></content:encoded>
  230.            <dc:title><![CDATA[Japan declares a flu epidemic — what this means for other nations]]></dc:title>
  231.            <dc:creator>Rachel Fieldhouse</dc:creator>
  232.            <dc:identifier>doi:10.1038/d41586-025-03367-z</dc:identifier>
  233.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03367-z</dc:source>
  234.            <dc:date>2025-10-14</dc:date>
  235.            <prism:publicationName>Nature</prism:publicationName>
  236.            <prism:doi>10.1038/d41586-025-03367-z</prism:doi>
  237.            <prism:url>https://www.nature.com/articles/d41586-025-03367-z</prism:url>
  238.        </item>
  239.    
  240.        <item rdf:about="https://www.nature.com/articles/d41586-025-03358-0">
  241.            <title><![CDATA[AI’s therapeutic potential goes beyond emotional connection]]></title>
  242.            <link>https://www.nature.com/articles/d41586-025-03358-0</link>
  243.            <content:encoded>
  244.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03358-0">doi:10.1038/d41586-025-03358-0</a></p>AI’s therapeutic potential goes beyond emotional connection]]></content:encoded>
  245.            <dc:title><![CDATA[AI’s therapeutic potential goes beyond emotional connection]]></dc:title>
  246.            <dc:creator>Elad Refoua</dc:creator><dc:creator>Eshkol Rafaeli</dc:creator><dc:creator>Dorit Hadar Shoval</dc:creator>
  247.            <dc:identifier>doi:10.1038/d41586-025-03358-0</dc:identifier>
  248.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03358-0</dc:source>
  249.            <dc:date>2025-10-14</dc:date>
  250.            <prism:publicationName>Nature</prism:publicationName>
  251.            <prism:doi>10.1038/d41586-025-03358-0</prism:doi>
  252.            <prism:url>https://www.nature.com/articles/d41586-025-03358-0</prism:url>
  253.        </item>
  254.    
  255.        <item rdf:about="https://www.nature.com/articles/d41586-025-03360-6">
  256.            <title><![CDATA[Longer grant cycles would boost research in Africa]]></title>
  257.            <link>https://www.nature.com/articles/d41586-025-03360-6</link>
  258.            <content:encoded>
  259.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03360-6">doi:10.1038/d41586-025-03360-6</a></p>Longer grant cycles would boost research in Africa]]></content:encoded>
  260.            <dc:title><![CDATA[Longer grant cycles would boost research in Africa]]></dc:title>
  261.            <dc:creator>Fulufhelo Nemavhola</dc:creator>
  262.            <dc:identifier>doi:10.1038/d41586-025-03360-6</dc:identifier>
  263.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03360-6</dc:source>
  264.            <dc:date>2025-10-14</dc:date>
  265.            <prism:publicationName>Nature</prism:publicationName>
  266.            <prism:doi>10.1038/d41586-025-03360-6</prism:doi>
  267.            <prism:url>https://www.nature.com/articles/d41586-025-03360-6</prism:url>
  268.        </item>
  269.    
  270.        <item rdf:about="https://www.nature.com/articles/d41586-025-03307-x">
  271.            <title><![CDATA[Faulty mitochondria cause deadly diseases: fixing them is about to get a lot easier]]></title>
  272.            <link>https://www.nature.com/articles/d41586-025-03307-x</link>
  273.            <content:encoded>
  274.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03307-x">doi:10.1038/d41586-025-03307-x</a></p>CRISPR-based tools can’t easily access the DNA in these organelles, but researchers are finding other ways in.]]></content:encoded>
  275.            <dc:title><![CDATA[Faulty mitochondria cause deadly diseases: fixing them is about to get a lot easier]]></dc:title>
  276.            <dc:creator>Gemma Conroy</dc:creator>
  277.            <dc:identifier>doi:10.1038/d41586-025-03307-x</dc:identifier>
  278.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03307-x</dc:source>
  279.            <dc:date>2025-10-14</dc:date>
  280.            <prism:publicationName>Nature</prism:publicationName>
  281.            <prism:doi>10.1038/d41586-025-03307-x</prism:doi>
  282.            <prism:url>https://www.nature.com/articles/d41586-025-03307-x</prism:url>
  283.        </item>
  284.    
  285.        <item rdf:about="https://www.nature.com/articles/d41586-025-03305-z">
  286.            <title><![CDATA[The spectre of malnutrition is back and must be tackled — fast]]></title>
  287.            <link>https://www.nature.com/articles/d41586-025-03305-z</link>
  288.            <content:encoded>
  289.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03305-z">doi:10.1038/d41586-025-03305-z</a></p>Nobody should be going hungry in the twenty-first century. Scientists must determine the reasons why malnutrition is increasing so policymakers can act.]]></content:encoded>
  290.            <dc:title><![CDATA[The spectre of malnutrition is back and must be tackled — fast]]></dc:title>
  291.            
  292.            <dc:identifier>doi:10.1038/d41586-025-03305-z</dc:identifier>
  293.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03305-z</dc:source>
  294.            <dc:date>2025-10-14</dc:date>
  295.            <prism:publicationName>Nature</prism:publicationName>
  296.            <prism:doi>10.1038/d41586-025-03305-z</prism:doi>
  297.            <prism:url>https://www.nature.com/articles/d41586-025-03305-z</prism:url>
  298.        </item>
  299.    
  300.        <item rdf:about="https://www.nature.com/articles/d41586-025-03291-2">
  301.            <title><![CDATA[The probiotic home: where microbes are welcome guests]]></title>
  302.            <link>https://www.nature.com/articles/d41586-025-03291-2</link>
  303.            <content:encoded>
  304.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03291-2">doi:10.1038/d41586-025-03291-2</a></p>Architects and microbiologists are exploring whether making buildings hospitable to friendly microorganisms can improve human health.]]></content:encoded>
  305.            <dc:title><![CDATA[The probiotic home: where microbes are welcome guests]]></dc:title>
  306.            <dc:creator>Katherine Bourzac</dc:creator>
  307.            <dc:identifier>doi:10.1038/d41586-025-03291-2</dc:identifier>
  308.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03291-2</dc:source>
  309.            <dc:date>2025-10-14</dc:date>
  310.            <prism:publicationName>Nature</prism:publicationName>
  311.            <prism:doi>10.1038/d41586-025-03291-2</prism:doi>
  312.            <prism:url>https://www.nature.com/articles/d41586-025-03291-2</prism:url>
  313.        </item>
  314.    
  315.        <item rdf:about="https://www.nature.com/articles/d41586-025-03310-2">
  316.            <title><![CDATA[The race to uncover snow’s many mysteries before it disappears forever]]></title>
  317.            <link>https://www.nature.com/articles/d41586-025-03310-2</link>
  318.            <content:encoded>
  319.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03310-2">doi:10.1038/d41586-025-03310-2</a></p>Historian brings icy climate warnings and warm personal memories.]]></content:encoded>
  320.            <dc:title><![CDATA[The race to uncover snow’s many mysteries before it disappears forever]]></dc:title>
  321.            <dc:creator>Gareth Thompson</dc:creator>
  322.            <dc:identifier>doi:10.1038/d41586-025-03310-2</dc:identifier>
  323.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03310-2</dc:source>
  324.            <dc:date>2025-10-14</dc:date>
  325.            <prism:publicationName>Nature</prism:publicationName>
  326.            <prism:doi>10.1038/d41586-025-03310-2</prism:doi>
  327.            <prism:url>https://www.nature.com/articles/d41586-025-03310-2</prism:url>
  328.        </item>
  329.    
  330.        <item rdf:about="https://www.nature.com/articles/d41586-025-03301-3">
  331.            <title><![CDATA[Inside our university’s mission to pivot to research]]></title>
  332.            <link>https://www.nature.com/articles/d41586-025-03301-3</link>
  333.            <content:encoded>
  334.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03301-3">doi:10.1038/d41586-025-03301-3</a></p>Innovation is key to meeting today’s global challenges. This is why the University of Botswana, originally a teaching institution, is now fostering research, and others should take the leap.]]></content:encoded>
  335.            <dc:title><![CDATA[Inside our university’s mission to pivot to research]]></dc:title>
  336.            <dc:creator>Doreen Ramogola-Masire</dc:creator>
  337.            <dc:identifier>doi:10.1038/d41586-025-03301-3</dc:identifier>
  338.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03301-3</dc:source>
  339.            <dc:date>2025-10-14</dc:date>
  340.            <prism:publicationName>Nature</prism:publicationName>
  341.            <prism:doi>10.1038/d41586-025-03301-3</prism:doi>
  342.            <prism:url>https://www.nature.com/articles/d41586-025-03301-3</prism:url>
  343.        </item>
  344.    
  345.        <item rdf:about="https://www.nature.com/articles/d41586-025-03313-z">
  346.            <title><![CDATA[Carbon credits are failing to help with climate change — here’s why]]></title>
  347.            <link>https://www.nature.com/articles/d41586-025-03313-z</link>
  348.            <content:encoded>
  349.                <![CDATA[<p>Nature, Published online: 14 October 2025; <a href="https://www.nature.com/articles/d41586-025-03313-z">doi:10.1038/d41586-025-03313-z</a></p>The idea that emissions can be offset through projects that claim to avoid releases or to remove carbon dioxide from the atmosphere is fatally flawed.]]></content:encoded>
  350.            <dc:title><![CDATA[Carbon credits are failing to help with climate change — here’s why]]></dc:title>
  351.            <dc:creator>Andrew Macintosh</dc:creator><dc:creator>Gregory Trencher</dc:creator><dc:creator>Benedict Probst</dc:creator><dc:creator>Shanta Barley</dc:creator><dc:creator>Danny Cullenward</dc:creator><dc:creator>Thales A. P. West</dc:creator><dc:creator>Don Butler</dc:creator><dc:creator>Johan Rockström</dc:creator>
  352.            <dc:identifier>doi:10.1038/d41586-025-03313-z</dc:identifier>
  353.            <dc:source>Nature, Published online: 2025-10-14; | doi:10.1038/d41586-025-03313-z</dc:source>
  354.            <dc:date>2025-10-14</dc:date>
  355.            <prism:publicationName>Nature</prism:publicationName>
  356.            <prism:doi>10.1038/d41586-025-03313-z</prism:doi>
  357.            <prism:url>https://www.nature.com/articles/d41586-025-03313-z</prism:url>
  358.        </item>
  359.    
  360.        <item rdf:about="https://www.nature.com/articles/s41586-025-09705-5">
  361.            <title><![CDATA[Host cell Z-RNAs activate ZBP1 during virus infections]]></title>
  362.            <link>https://www.nature.com/articles/s41586-025-09705-5</link>
  363.            <content:encoded>
  364.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/s41586-025-09705-5">doi:10.1038/s41586-025-09705-5</a></p>Host cell Z-RNAs activate ZBP1 during virus infections]]></content:encoded>
  365.            <dc:title><![CDATA[Host cell Z-RNAs activate ZBP1 during virus infections]]></dc:title>
  366.            <dc:creator>Chaoran Yin</dc:creator><dc:creator>Aleksandr Fedorov</dc:creator><dc:creator>Hongyan Guo</dc:creator><dc:creator>Jeremy Chase Crawford</dc:creator><dc:creator>Claire Rousseau</dc:creator><dc:creator>Xiao Zhong</dc:creator><dc:creator>Riley M. Williams</dc:creator><dc:creator>Avishekh Gautam</dc:creator><dc:creator>Heather S. Koehler</dc:creator><dc:creator>Adam W. Whisnant</dc:creator><dc:creator>Thomas Hennig</dc:creator><dc:creator>Anna Rozina</dc:creator><dc:creator>Yuhan Zhong</dc:creator><dc:creator>Shuangjuan Lv</dc:creator><dc:creator>Valter Bergant</dc:creator><dc:creator>Shuqi Wang</dc:creator><dc:creator>Peter Dröge</dc:creator><dc:creator>Sven Miller</dc:creator><dc:creator>Maria Poptsova</dc:creator><dc:creator>Jan Rehwinkel</dc:creator><dc:creator>Andreas Pichlmair</dc:creator><dc:creator>Edward S. Mocarski</dc:creator><dc:creator>Paul G. Thomas</dc:creator><dc:creator>Lars Dölken</dc:creator><dc:creator>Ting Zhang</dc:creator><dc:creator>Alan Herbert</dc:creator><dc:creator>Siddharth Balachandran</dc:creator>
  367.            <dc:identifier>doi:10.1038/s41586-025-09705-5</dc:identifier>
  368.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/s41586-025-09705-5</dc:source>
  369.            <dc:date>2025-10-13</dc:date>
  370.            <prism:publicationName>Nature</prism:publicationName>
  371.            <prism:doi>10.1038/s41586-025-09705-5</prism:doi>
  372.            <prism:url>https://www.nature.com/articles/s41586-025-09705-5</prism:url>
  373.        </item>
  374.    
  375.        <item rdf:about="https://www.nature.com/articles/d41586-025-03315-x">
  376.            <title><![CDATA[Defending Ohuira Bay, Mexico]]></title>
  377.            <link>https://www.nature.com/articles/d41586-025-03315-x</link>
  378.            <content:encoded>
  379.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03315-x">doi:10.1038/d41586-025-03315-x</a></p>Melina Maldonado Sandoval, a member of the Mayo-Yoreme Indigenous community, assists researchers in studying the risks of petrochemical manufacturing in the Sinaloa region.]]></content:encoded>
  380.            <dc:title><![CDATA[Defending Ohuira Bay, Mexico]]></dc:title>
  381.            <dc:creator>Rachael Pells</dc:creator>
  382.            <dc:identifier>doi:10.1038/d41586-025-03315-x</dc:identifier>
  383.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03315-x</dc:source>
  384.            <dc:date>2025-10-13</dc:date>
  385.            <prism:publicationName>Nature</prism:publicationName>
  386.            <prism:doi>10.1038/d41586-025-03315-x</prism:doi>
  387.            <prism:url>https://www.nature.com/articles/d41586-025-03315-x</prism:url>
  388.        </item>
  389.    
  390.        <item rdf:about="https://www.nature.com/articles/d41586-025-03283-2">
  391.            <title><![CDATA[Andean peoples hunted and gathered long after they embraced farming]]></title>
  392.            <link>https://www.nature.com/articles/d41586-025-03283-2</link>
  393.            <content:encoded>
  394.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03283-2">doi:10.1038/d41586-025-03283-2</a></p>Remote-sensing data reveal hunting corrals that were used well into the eighteenth century.]]></content:encoded>
  395.            <dc:title><![CDATA[Andean peoples hunted and gathered long after they embraced farming]]></dc:title>
  396.            
  397.            <dc:identifier>doi:10.1038/d41586-025-03283-2</dc:identifier>
  398.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03283-2</dc:source>
  399.            <dc:date>2025-10-13</dc:date>
  400.            <prism:publicationName>Nature</prism:publicationName>
  401.            <prism:doi>10.1038/d41586-025-03283-2</prism:doi>
  402.            <prism:url>https://www.nature.com/articles/d41586-025-03283-2</prism:url>
  403.        </item>
  404.    
  405.        <item rdf:about="https://www.nature.com/articles/d41586-025-03328-6">
  406.            <title><![CDATA[Birds’ intruder alert hints at how sounds took on new meanings]]></title>
  407.            <link>https://www.nature.com/articles/d41586-025-03328-6</link>
  408.            <content:encoded>
  409.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03328-6">doi:10.1038/d41586-025-03328-6</a></p>Diverse bird species recognize the same vocalization to rally neighbours against invading cuckoos. The finding plays into a broader debate about the emergence of language.]]></content:encoded>
  410.            <dc:title><![CDATA[Birds’ intruder alert hints at how sounds took on new meanings]]></dc:title>
  411.            <dc:creator>Holly Smith</dc:creator>
  412.            <dc:identifier>doi:10.1038/d41586-025-03328-6</dc:identifier>
  413.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03328-6</dc:source>
  414.            <dc:date>2025-10-13</dc:date>
  415.            <prism:publicationName>Nature</prism:publicationName>
  416.            <prism:doi>10.1038/d41586-025-03328-6</prism:doi>
  417.            <prism:url>https://www.nature.com/articles/d41586-025-03328-6</prism:url>
  418.        </item>
  419.    
  420.        <item rdf:about="https://www.nature.com/articles/d41586-025-03314-y">
  421.            <title><![CDATA[Digital flocks, predators allow ecologists to simulate real-world animal behaviour]]></title>
  422.            <link>https://www.nature.com/articles/d41586-025-03314-y</link>
  423.            <content:encoded>
  424.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03314-y">doi:10.1038/d41586-025-03314-y</a></p>‘Digital twins’ of real-world objects are moving from manufacturing to wildlife management.]]></content:encoded>
  425.            <dc:title><![CDATA[Digital flocks, predators allow ecologists to simulate real-world animal behaviour]]></dc:title>
  426.            <dc:creator>Heather Richardson</dc:creator>
  427.            <dc:identifier>doi:10.1038/d41586-025-03314-y</dc:identifier>
  428.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03314-y</dc:source>
  429.            <dc:date>2025-10-13</dc:date>
  430.            <prism:publicationName>Nature</prism:publicationName>
  431.            <prism:doi>10.1038/d41586-025-03314-y</prism:doi>
  432.            <prism:url>https://www.nature.com/articles/d41586-025-03314-y</prism:url>
  433.        </item>
  434.    
  435.        <item rdf:about="https://www.nature.com/articles/d41586-025-03135-z">
  436.            <title><![CDATA[‘Am I redundant?’: how AI changed my career in bioinformatics]]></title>
  437.            <link>https://www.nature.com/articles/d41586-025-03135-z</link>
  438.            <content:encoded>
  439.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03135-z">doi:10.1038/d41586-025-03135-z</a></p>A run-in with some artefact-laden AI-generated analyses convinced Lei Zhu that machine learning wasn’t making his role irrelevant, but more important than ever.]]></content:encoded>
  440.            <dc:title><![CDATA[‘Am I redundant?’: how AI changed my career in bioinformatics]]></dc:title>
  441.            <dc:creator>Lei Zhu</dc:creator>
  442.            <dc:identifier>doi:10.1038/d41586-025-03135-z</dc:identifier>
  443.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03135-z</dc:source>
  444.            <dc:date>2025-10-13</dc:date>
  445.            <prism:publicationName>Nature</prism:publicationName>
  446.            <prism:doi>10.1038/d41586-025-03135-z</prism:doi>
  447.            <prism:url>https://www.nature.com/articles/d41586-025-03135-z</prism:url>
  448.        </item>
  449.    
  450.        <item rdf:about="https://www.nature.com/articles/d41586-025-03312-0">
  451.            <title><![CDATA[Metals are key to the global economy — but three challenges threaten supply chains]]></title>
  452.            <link>https://www.nature.com/articles/d41586-025-03312-0</link>
  453.            <content:encoded>
  454.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03312-0">doi:10.1038/d41586-025-03312-0</a></p>The metals industry must confront metals’ scarcity, rising demand and climate impacts. Sustainable solutions exist that must be embraced.]]></content:encoded>
  455.            <dc:title><![CDATA[Metals are key to the global economy — but three challenges threaten supply chains]]></dc:title>
  456.            <dc:creator>Tarasankar DebRoy</dc:creator><dc:creator>Todd A. Palmer</dc:creator><dc:creator>John W. Elmer</dc:creator><dc:creator>Tuhin Mukherjee</dc:creator>
  457.            <dc:identifier>doi:10.1038/d41586-025-03312-0</dc:identifier>
  458.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03312-0</dc:source>
  459.            <dc:date>2025-10-13</dc:date>
  460.            <prism:publicationName>Nature</prism:publicationName>
  461.            <prism:doi>10.1038/d41586-025-03312-0</prism:doi>
  462.            <prism:url>https://www.nature.com/articles/d41586-025-03312-0</prism:url>
  463.        </item>
  464.    
  465.        <item rdf:about="https://www.nature.com/articles/d41586-025-03364-2">
  466.            <title><![CDATA[Economics Nobel prize won by researchers who showed how science boosts growth]]></title>
  467.            <link>https://www.nature.com/articles/d41586-025-03364-2</link>
  468.            <content:encoded>
  469.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03364-2">doi:10.1038/d41586-025-03364-2</a></p>Joel Mokyr, Philippe Aghion and Peter Howitt share economics prize for work that underlines the importance of investing in research and development.]]></content:encoded>
  470.            <dc:title><![CDATA[Economics Nobel prize won by researchers who showed how science boosts growth]]></dc:title>
  471.            <dc:creator>Philip Ball</dc:creator>
  472.            <dc:identifier>doi:10.1038/d41586-025-03364-2</dc:identifier>
  473.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03364-2</dc:source>
  474.            <dc:date>2025-10-13</dc:date>
  475.            <prism:publicationName>Nature</prism:publicationName>
  476.            <prism:doi>10.1038/d41586-025-03364-2</prism:doi>
  477.            <prism:url>https://www.nature.com/articles/d41586-025-03364-2</prism:url>
  478.        </item>
  479.    
  480.        <item rdf:about="https://www.nature.com/articles/d41586-025-03371-3">
  481.            <title><![CDATA[Daily briefing: Corals have been pushed beyond an irreversible tipping point, says report]]></title>
  482.            <link>https://www.nature.com/articles/d41586-025-03371-3</link>
  483.            <content:encoded>
  484.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03371-3">doi:10.1038/d41586-025-03371-3</a></p>‘We have the knowledge’ to stop further tipping points, say the authors of a new climate report. Plus, how an international plastics treaty can be salvaged and the people standing up to save marine life in Mexico.]]></content:encoded>
  485.            <dc:title><![CDATA[Daily briefing: Corals have been pushed beyond an irreversible tipping point, says report]]></dc:title>
  486.            <dc:creator>Flora Graham</dc:creator>
  487.            <dc:identifier>doi:10.1038/d41586-025-03371-3</dc:identifier>
  488.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03371-3</dc:source>
  489.            <dc:date>2025-10-13</dc:date>
  490.            <prism:publicationName>Nature</prism:publicationName>
  491.            <prism:doi>10.1038/d41586-025-03371-3</prism:doi>
  492.            <prism:url>https://www.nature.com/articles/d41586-025-03371-3</prism:url>
  493.        </item>
  494.    
  495.        <item rdf:about="https://www.nature.com/articles/d41586-025-02947-3">
  496.            <title><![CDATA[What an academic misconduct accusation taught me about sharing research]]></title>
  497.            <link>https://www.nature.com/articles/d41586-025-02947-3</link>
  498.            <content:encoded>
  499.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-02947-3">doi:10.1038/d41586-025-02947-3</a></p>Posting preliminary results on my group’s website allowed someone to plagiarize our work, but it also exonerated us.]]></content:encoded>
  500.            <dc:title><![CDATA[What an academic misconduct accusation taught me about sharing research]]></dc:title>
  501.            <dc:creator>Jack W. Baker</dc:creator>
  502.            <dc:identifier>doi:10.1038/d41586-025-02947-3</dc:identifier>
  503.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-02947-3</dc:source>
  504.            <dc:date>2025-10-13</dc:date>
  505.            <prism:publicationName>Nature</prism:publicationName>
  506.            <prism:doi>10.1038/d41586-025-02947-3</prism:doi>
  507.            <prism:url>https://www.nature.com/articles/d41586-025-02947-3</prism:url>
  508.        </item>
  509.    
  510.        <item rdf:about="https://www.nature.com/articles/d41586-025-03353-5">
  511.            <title><![CDATA[Men’s brains shrink faster than women’s: what that means for Alzheimer’s]]></title>
  512.            <link>https://www.nature.com/articles/d41586-025-03353-5</link>
  513.            <content:encoded>
  514.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03353-5">doi:10.1038/d41586-025-03353-5</a></p>Women’s brains age more slowly, but that doesn’t seem to protect them from a common form of dementia.]]></content:encoded>
  515.            <dc:title><![CDATA[Men’s brains shrink faster than women’s: what that means for Alzheimer’s]]></dc:title>
  516.            <dc:creator>Rachel Fieldhouse</dc:creator>
  517.            <dc:identifier>doi:10.1038/d41586-025-03353-5</dc:identifier>
  518.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03353-5</dc:source>
  519.            <dc:date>2025-10-13</dc:date>
  520.            <prism:publicationName>Nature</prism:publicationName>
  521.            <prism:doi>10.1038/d41586-025-03353-5</prism:doi>
  522.            <prism:url>https://www.nature.com/articles/d41586-025-03353-5</prism:url>
  523.        </item>
  524.    
  525.        <item rdf:about="https://www.nature.com/articles/d41586-025-03309-9">
  526.            <title><![CDATA[Alchemy: discredited pseudoscience or chemistry’s worthy ancestor?]]></title>
  527.            <link>https://www.nature.com/articles/d41586-025-03309-9</link>
  528.            <content:encoded>
  529.                <![CDATA[<p>Nature, Published online: 13 October 2025; <a href="https://www.nature.com/articles/d41586-025-03309-9">doi:10.1038/d41586-025-03309-9</a></p>A spirited tour of alchemy shows how it bridged everything from chemical reactions, medicine and craft to philosophy, art and religion.]]></content:encoded>
  530.            <dc:title><![CDATA[Alchemy: discredited pseudoscience or chemistry’s worthy ancestor?]]></dc:title>
  531.            <dc:creator>Kit Chapman</dc:creator>
  532.            <dc:identifier>doi:10.1038/d41586-025-03309-9</dc:identifier>
  533.            <dc:source>Nature, Published online: 2025-10-13; | doi:10.1038/d41586-025-03309-9</dc:source>
  534.            <dc:date>2025-10-13</dc:date>
  535.            <prism:publicationName>Nature</prism:publicationName>
  536.            <prism:doi>10.1038/d41586-025-03309-9</prism:doi>
  537.            <prism:url>https://www.nature.com/articles/d41586-025-03309-9</prism:url>
  538.        </item>
  539.    
  540.        <item rdf:about="https://www.nature.com/articles/d41586-025-03316-w">
  541.            <title><![CDATA[Coral die-off marks Earth’s first climate ‘tipping point’, scientists say]]></title>
  542.            <link>https://www.nature.com/articles/d41586-025-03316-w</link>
  543.            <content:encoded>
  544.                <![CDATA[<p>Nature, Published online: 12 October 2025; <a href="https://www.nature.com/articles/d41586-025-03316-w">doi:10.1038/d41586-025-03316-w</a></p>A surge in global temperatures has caused widespread bleaching and death of warm-water corals around the world.]]></content:encoded>
  545.            <dc:title><![CDATA[Coral die-off marks Earth’s first climate ‘tipping point’, scientists say]]></dc:title>
  546.            <dc:creator>Jeff Tollefson</dc:creator>
  547.            <dc:identifier>doi:10.1038/d41586-025-03316-w</dc:identifier>
  548.            <dc:source>Nature, Published online: 2025-10-12; | doi:10.1038/d41586-025-03316-w</dc:source>
  549.            <dc:date>2025-10-12</dc:date>
  550.            <prism:publicationName>Nature</prism:publicationName>
  551.            <prism:doi>10.1038/d41586-025-03316-w</prism:doi>
  552.            <prism:url>https://www.nature.com/articles/d41586-025-03316-w</prism:url>
  553.        </item>
  554.    
  555.        <item rdf:about="https://www.nature.com/articles/s41586-025-09692-7">
  556.            <title><![CDATA[Author Correction: Loss-of-function mutations in PLD4 lead to systemic lupus erythematosus]]></title>
  557.            <link>https://www.nature.com/articles/s41586-025-09692-7</link>
  558.            <content:encoded>
  559.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/s41586-025-09692-7">doi:10.1038/s41586-025-09692-7</a></p>Author Correction: Loss-of-function mutations in PLD4 lead to systemic lupus erythematosus]]></content:encoded>
  560.            <dc:title><![CDATA[Author Correction: Loss-of-function mutations in PLD4 lead to systemic lupus erythematosus]]></dc:title>
  561.            <dc:creator>Qintao Wang</dc:creator><dc:creator>Honghao Zhu</dc:creator><dc:creator>Xiangwei Sun</dc:creator><dc:creator>Changming Zhang</dc:creator><dc:creator>Shuangyue Ma</dc:creator><dc:creator>Ying Jin</dc:creator><dc:creator>Jinjian Fu</dc:creator><dc:creator>Chenlu Liu</dc:creator><dc:creator>Jiahui Peng</dc:creator><dc:creator>Ruoran Wang</dc:creator><dc:creator>Lin Liu</dc:creator><dc:creator>Yi Zeng</dc:creator><dc:creator>Cheng Gong</dc:creator><dc:creator>Qing Zhou</dc:creator><dc:creator>Xiaomin Yu</dc:creator><dc:creator>Zhihong Liu</dc:creator>
  562.            <dc:identifier>doi:10.1038/s41586-025-09692-7</dc:identifier>
  563.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/s41586-025-09692-7</dc:source>
  564.            <dc:date>2025-10-10</dc:date>
  565.            <prism:publicationName>Nature</prism:publicationName>
  566.            <prism:doi>10.1038/s41586-025-09692-7</prism:doi>
  567.            <prism:url>https://www.nature.com/articles/s41586-025-09692-7</prism:url>
  568.        </item>
  569.    
  570.        <item rdf:about="https://www.nature.com/articles/d41586-025-03244-9">
  571.            <title><![CDATA[Current mosquitoes evolved more recently than previously thought]]></title>
  572.            <link>https://www.nature.com/articles/d41586-025-03244-9</link>
  573.            <content:encoded>
  574.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03244-9">doi:10.1038/d41586-025-03244-9</a></p>Genetic analysis reveals that most living genera of mosquitoes emerged around 73 million years ago.]]></content:encoded>
  575.            <dc:title><![CDATA[Current mosquitoes evolved more recently than previously thought]]></dc:title>
  576.            
  577.            <dc:identifier>doi:10.1038/d41586-025-03244-9</dc:identifier>
  578.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03244-9</dc:source>
  579.            <dc:date>2025-10-10</dc:date>
  580.            <prism:publicationName>Nature</prism:publicationName>
  581.            <prism:doi>10.1038/d41586-025-03244-9</prism:doi>
  582.            <prism:url>https://www.nature.com/articles/d41586-025-03244-9</prism:url>
  583.        </item>
  584.    
  585.        <item rdf:about="https://www.nature.com/articles/d41586-025-03282-3">
  586.            <title><![CDATA[European bats capture migrating birds and eat them on the wing]]></title>
  587.            <link>https://www.nature.com/articles/d41586-025-03282-3</link>
  588.            <content:encoded>
  589.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03282-3">doi:10.1038/d41586-025-03282-3</a></p>Recordings of chewing sounds combined with altitude data bear evidence of a gruesome night-time feast.]]></content:encoded>
  590.            <dc:title><![CDATA[European bats capture migrating birds and eat them on the wing]]></dc:title>
  591.            
  592.            <dc:identifier>doi:10.1038/d41586-025-03282-3</dc:identifier>
  593.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03282-3</dc:source>
  594.            <dc:date>2025-10-10</dc:date>
  595.            <prism:publicationName>Nature</prism:publicationName>
  596.            <prism:doi>10.1038/d41586-025-03282-3</prism:doi>
  597.            <prism:url>https://www.nature.com/articles/d41586-025-03282-3</prism:url>
  598.        </item>
  599.    
  600.        <item rdf:about="https://www.nature.com/articles/d41586-025-03245-8">
  601.            <title><![CDATA[Portable muon beam could accelerate archaeology scans]]></title>
  602.            <link>https://www.nature.com/articles/d41586-025-03245-8</link>
  603.            <content:encoded>
  604.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03245-8">doi:10.1038/d41586-025-03245-8</a></p>Laser plasma device could be light enough to be used on the field.]]></content:encoded>
  605.            <dc:title><![CDATA[Portable muon beam could accelerate archaeology scans]]></dc:title>
  606.            
  607.            <dc:identifier>doi:10.1038/d41586-025-03245-8</dc:identifier>
  608.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03245-8</dc:source>
  609.            <dc:date>2025-10-10</dc:date>
  610.            <prism:publicationName>Nature</prism:publicationName>
  611.            <prism:doi>10.1038/d41586-025-03245-8</prism:doi>
  612.            <prism:url>https://www.nature.com/articles/d41586-025-03245-8</prism:url>
  613.        </item>
  614.    
  615.        <item rdf:about="https://www.nature.com/articles/d41586-025-03354-4">
  616.            <title><![CDATA[Daily briefing: Don't sideline Palestinian scientists after ceasefire, say experts]]></title>
  617.            <link>https://www.nature.com/articles/d41586-025-03354-4</link>
  618.            <content:encoded>
  619.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03354-4">doi:10.1038/d41586-025-03354-4</a></p>Efforts to rebuild Gaza must embrace Palestinian expertise, say researchers. Plus, what might help naked mole rats to live so long and a possible diagnostic blood test for a mysterious fatigue syndrome.]]></content:encoded>
  620.            <dc:title><![CDATA[Daily briefing: Don't sideline Palestinian scientists after ceasefire, say experts]]></dc:title>
  621.            <dc:creator>Flora Graham</dc:creator>
  622.            <dc:identifier>doi:10.1038/d41586-025-03354-4</dc:identifier>
  623.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03354-4</dc:source>
  624.            <dc:date>2025-10-10</dc:date>
  625.            <prism:publicationName>Nature</prism:publicationName>
  626.            <prism:doi>10.1038/d41586-025-03354-4</prism:doi>
  627.            <prism:url>https://www.nature.com/articles/d41586-025-03354-4</prism:url>
  628.        </item>
  629.    
  630.        <item rdf:about="https://www.nature.com/articles/d41586-025-03324-w">
  631.            <title><![CDATA[Rebuilding Gaza: don’t sideline Palestinian scientists, say experts]]></title>
  632.            <link>https://www.nature.com/articles/d41586-025-03324-w</link>
  633.            <content:encoded>
  634.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03324-w">doi:10.1038/d41586-025-03324-w</a></p>Researchers warn against ‘top down’ solutions as ceasefire is agreed in the first phase of a peace deal.]]></content:encoded>
  635.            <dc:title><![CDATA[Rebuilding Gaza: don’t sideline Palestinian scientists, say experts]]></dc:title>
  636.            <dc:creator>Michele Catanzaro</dc:creator>
  637.            <dc:identifier>doi:10.1038/d41586-025-03324-w</dc:identifier>
  638.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03324-w</dc:source>
  639.            <dc:date>2025-10-10</dc:date>
  640.            <prism:publicationName>Nature</prism:publicationName>
  641.            <prism:doi>10.1038/d41586-025-03324-w</prism:doi>
  642.            <prism:url>https://www.nature.com/articles/d41586-025-03324-w</prism:url>
  643.        </item>
  644.    
  645.        <item rdf:about="https://www.nature.com/articles/d41586-025-03251-w">
  646.            <title><![CDATA[Future solitude]]></title>
  647.            <link>https://www.nature.com/articles/d41586-025-03251-w</link>
  648.            <content:encoded>
  649.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03251-w">doi:10.1038/d41586-025-03251-w</a></p>Alone but not lonely.]]></content:encoded>
  650.            <dc:title><![CDATA[Future solitude]]></dc:title>
  651.            <dc:creator>Dandan Peng</dc:creator>
  652.            <dc:identifier>doi:10.1038/d41586-025-03251-w</dc:identifier>
  653.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03251-w</dc:source>
  654.            <dc:date>2025-10-10</dc:date>
  655.            <prism:publicationName>Nature</prism:publicationName>
  656.            <prism:doi>10.1038/d41586-025-03251-w</prism:doi>
  657.            <prism:url>https://www.nature.com/articles/d41586-025-03251-w</prism:url>
  658.        </item>
  659.    
  660.        <item rdf:about="https://www.nature.com/articles/d41586-025-03280-5">
  661.            <title><![CDATA[Dangerous ‘nitazene’ opioids are on the rise: researchers are worried]]></title>
  662.            <link>https://www.nature.com/articles/d41586-025-03280-5</link>
  663.            <content:encoded>
  664.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03280-5">doi:10.1038/d41586-025-03280-5</a></p>This class of synthetic opioids is more potent than heroin and morphine.]]></content:encoded>
  665.            <dc:title><![CDATA[Dangerous ‘nitazene’ opioids are on the rise: researchers are worried]]></dc:title>
  666.            <dc:creator>Mohana Basu</dc:creator>
  667.            <dc:identifier>doi:10.1038/d41586-025-03280-5</dc:identifier>
  668.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03280-5</dc:source>
  669.            <dc:date>2025-10-10</dc:date>
  670.            <prism:publicationName>Nature</prism:publicationName>
  671.            <prism:doi>10.1038/d41586-025-03280-5</prism:doi>
  672.            <prism:url>https://www.nature.com/articles/d41586-025-03280-5</prism:url>
  673.        </item>
  674.    
  675.        <item rdf:about="https://www.nature.com/articles/d41586-025-03332-w">
  676.            <title><![CDATA[The world’s first plastics treaty is in crisis: can it be salvaged?]]></title>
  677.            <link>https://www.nature.com/articles/d41586-025-03332-w</link>
  678.            <content:encoded>
  679.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03332-w">doi:10.1038/d41586-025-03332-w</a></p>Hopes of securing a United Nations treaty on plastic pollution are fading after the final round of negotiations ended without an agreement.]]></content:encoded>
  680.            <dc:title><![CDATA[The world’s first plastics treaty is in crisis: can it be salvaged?]]></dc:title>
  681.            <dc:creator>Katharine Sanderson</dc:creator>
  682.            <dc:identifier>doi:10.1038/d41586-025-03332-w</dc:identifier>
  683.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03332-w</dc:source>
  684.            <dc:date>2025-10-10</dc:date>
  685.            <prism:publicationName>Nature</prism:publicationName>
  686.            <prism:doi>10.1038/d41586-025-03332-w</prism:doi>
  687.            <prism:url>https://www.nature.com/articles/d41586-025-03332-w</prism:url>
  688.        </item>
  689.    
  690.        <item rdf:about="https://www.nature.com/articles/d41586-025-03288-x">
  691.            <title><![CDATA[Should genetically modified wildlife be banned? Scientists weigh the risks]]></title>
  692.            <link>https://www.nature.com/articles/d41586-025-03288-x</link>
  693.            <content:encoded>
  694.                <![CDATA[<p>Nature, Published online: 10 October 2025; <a href="https://www.nature.com/articles/d41586-025-03288-x">doi:10.1038/d41586-025-03288-x</a></p>Conservationists debate the pros and cons of using synthetic-biology techniques to alter wild species.]]></content:encoded>
  695.            <dc:title><![CDATA[Should genetically modified wildlife be banned? Scientists weigh the risks]]></dc:title>
  696.            <dc:creator>Mariana Lenharo</dc:creator>
  697.            <dc:identifier>doi:10.1038/d41586-025-03288-x</dc:identifier>
  698.            <dc:source>Nature, Published online: 2025-10-10; | doi:10.1038/d41586-025-03288-x</dc:source>
  699.            <dc:date>2025-10-10</dc:date>
  700.            <prism:publicationName>Nature</prism:publicationName>
  701.            <prism:doi>10.1038/d41586-025-03288-x</prism:doi>
  702.            <prism:url>https://www.nature.com/articles/d41586-025-03288-x</prism:url>
  703.        </item>
  704.    
  705.        <item rdf:about="https://www.nature.com/articles/d41586-025-03279-y">
  706.            <title><![CDATA[Naked mole rats live for decades — genetic tweaks reveal insights into ageing]]></title>
  707.            <link>https://www.nature.com/articles/d41586-025-03279-y</link>
  708.            <content:encoded>
  709.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-03279-y">doi:10.1038/d41586-025-03279-y</a></p>Four subtle changes to an enzyme might explain the hairless rodents’ longevity.]]></content:encoded>
  710.            <dc:title><![CDATA[Naked mole rats live for decades — genetic tweaks reveal insights into ageing]]></dc:title>
  711.            <dc:creator>Mohana Basu</dc:creator>
  712.            <dc:identifier>doi:10.1038/d41586-025-03279-y</dc:identifier>
  713.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-03279-y</dc:source>
  714.            <dc:date>2025-10-09</dc:date>
  715.            <prism:publicationName>Nature</prism:publicationName>
  716.            <prism:doi>10.1038/d41586-025-03279-y</prism:doi>
  717.            <prism:url>https://www.nature.com/articles/d41586-025-03279-y</prism:url>
  718.        </item>
  719.    
  720.        <item rdf:about="https://www.nature.com/articles/d41586-025-03322-y">
  721.            <title><![CDATA[Mark Norell obituary: palaeontologist who showed that dinosaurs still walk among us — as birds]]></title>
  722.            <link>https://www.nature.com/articles/d41586-025-03322-y</link>
  723.            <content:encoded>
  724.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-03322-y">doi:10.1038/d41586-025-03322-y</a></p>Through fieldwork and innovative research, he transformed how scientists and the public perceive the prehistoric world.]]></content:encoded>
  725.            <dc:title><![CDATA[Mark Norell obituary: palaeontologist who showed that dinosaurs still walk among us — as birds]]></dc:title>
  726.            <dc:creator>Michael J. Novacek</dc:creator>
  727.            <dc:identifier>doi:10.1038/d41586-025-03322-y</dc:identifier>
  728.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-03322-y</dc:source>
  729.            <dc:date>2025-10-09</dc:date>
  730.            <prism:publicationName>Nature</prism:publicationName>
  731.            <prism:doi>10.1038/d41586-025-03322-y</prism:doi>
  732.            <prism:url>https://www.nature.com/articles/d41586-025-03322-y</prism:url>
  733.        </item>
  734.    
  735.        <item rdf:about="https://www.nature.com/articles/d41586-025-03247-6">
  736.            <title><![CDATA[More than 30% of this century’s science Nobel prizewinners immigrated: see their journeys]]></title>
  737.            <link>https://www.nature.com/articles/d41586-025-03247-6</link>
  738.            <content:encoded>
  739.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-03247-6">doi:10.1038/d41586-025-03247-6</a></p>The most common destination for eventual Nobel laureates in physics, chemistry and medicine since 2000 is the United States, Nature has found.]]></content:encoded>
  740.            <dc:title><![CDATA[More than 30% of this century’s science Nobel prizewinners immigrated: see their journeys]]></dc:title>
  741.            <dc:creator>Jenna Ahart</dc:creator>
  742.            <dc:identifier>doi:10.1038/d41586-025-03247-6</dc:identifier>
  743.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-03247-6</dc:source>
  744.            <dc:date>2025-10-09</dc:date>
  745.            <prism:publicationName>Nature</prism:publicationName>
  746.            <prism:doi>10.1038/d41586-025-03247-6</prism:doi>
  747.            <prism:url>https://www.nature.com/articles/d41586-025-03247-6</prism:url>
  748.        </item>
  749.    
  750.        <item rdf:about="https://www.nature.com/articles/d41586-025-03299-8">
  751.            <title><![CDATA[First proposed blood test for chronic fatigue syndrome: what scientists think]]></title>
  752.            <link>https://www.nature.com/articles/d41586-025-03299-8</link>
  753.            <content:encoded>
  754.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-03299-8">doi:10.1038/d41586-025-03299-8</a></p>A blood test has achieved 96% accuracy in diagnosing the condition in a small study of individuals. What does the test detect, and is it a biomarker of the condition?]]></content:encoded>
  755.            <dc:title><![CDATA[First proposed blood test for chronic fatigue syndrome: what scientists think]]></dc:title>
  756.            <dc:creator>David Adam</dc:creator>
  757.            <dc:identifier>doi:10.1038/d41586-025-03299-8</dc:identifier>
  758.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-03299-8</dc:source>
  759.            <dc:date>2025-10-09</dc:date>
  760.            <prism:publicationName>Nature</prism:publicationName>
  761.            <prism:doi>10.1038/d41586-025-03299-8</prism:doi>
  762.            <prism:url>https://www.nature.com/articles/d41586-025-03299-8</prism:url>
  763.        </item>
  764.    
  765.        <item rdf:about="https://www.nature.com/articles/d41586-025-02681-w">
  766.            <title><![CDATA[This list of non-negotiables helped me to defeat PhD-student guilt]]></title>
  767.            <link>https://www.nature.com/articles/d41586-025-02681-w</link>
  768.            <content:encoded>
  769.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-02681-w">doi:10.1038/d41586-025-02681-w</a></p>By refusing to bend the rules I set for myself, I created structure and a better environment for my mental health.]]></content:encoded>
  770.            <dc:title><![CDATA[This list of non-negotiables helped me to defeat PhD-student guilt]]></dc:title>
  771.            <dc:creator>Jasmine Gabriel Hughes</dc:creator>
  772.            <dc:identifier>doi:10.1038/d41586-025-02681-w</dc:identifier>
  773.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-02681-w</dc:source>
  774.            <dc:date>2025-10-09</dc:date>
  775.            <prism:publicationName>Nature</prism:publicationName>
  776.            <prism:doi>10.1038/d41586-025-02681-w</prism:doi>
  777.            <prism:url>https://www.nature.com/articles/d41586-025-02681-w</prism:url>
  778.        </item>
  779.    
  780.        <item rdf:about="https://www.nature.com/articles/d41586-025-03337-5">
  781.            <title><![CDATA[Daily briefing: Chronic pain linked to small cluster of brain cells]]></title>
  782.            <link>https://www.nature.com/articles/d41586-025-03337-5</link>
  783.            <content:encoded>
  784.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-03337-5">doi:10.1038/d41586-025-03337-5</a></p>A group of neurons in mice stay active long after an initial pain response. Plus, how AI agents might change research and the winners of this year’s ‘genius grants’.]]></content:encoded>
  785.            <dc:title><![CDATA[Daily briefing: Chronic pain linked to small cluster of brain cells]]></dc:title>
  786.            <dc:creator>Jacob Smith</dc:creator>
  787.            <dc:identifier>doi:10.1038/d41586-025-03337-5</dc:identifier>
  788.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-03337-5</dc:source>
  789.            <dc:date>2025-10-09</dc:date>
  790.            <prism:publicationName>Nature</prism:publicationName>
  791.            <prism:doi>10.1038/d41586-025-03337-5</prism:doi>
  792.            <prism:url>https://www.nature.com/articles/d41586-025-03337-5</prism:url>
  793.        </item>
  794.    
  795.        <item rdf:about="https://www.nature.com/articles/d41586-025-02899-8">
  796.            <title><![CDATA[How to pause and restart your science career]]></title>
  797.            <link>https://www.nature.com/articles/d41586-025-02899-8</link>
  798.            <content:encoded>
  799.                <![CDATA[<p>Nature, Published online: 09 October 2025; <a href="https://www.nature.com/articles/d41586-025-02899-8">doi:10.1038/d41586-025-02899-8</a></p>Funding crises, bereavement and a supervisor’s relocation can derail your career path, but you can overcome them.]]></content:encoded>
  800.            <dc:title><![CDATA[How to pause and restart your science career]]></dc:title>
  801.            <dc:creator>Julie Gould</dc:creator>
  802.            <dc:identifier>doi:10.1038/d41586-025-02899-8</dc:identifier>
  803.            <dc:source>Nature, Published online: 2025-10-09; | doi:10.1038/d41586-025-02899-8</dc:source>
  804.            <dc:date>2025-10-09</dc:date>
  805.            <prism:publicationName>Nature</prism:publicationName>
  806.            <prism:doi>10.1038/d41586-025-02899-8</prism:doi>
  807.            <prism:url>https://www.nature.com/articles/d41586-025-02899-8</prism:url>
  808.        </item>
  809.    
  810.        <item rdf:about="https://www.nature.com/articles/s41586-025-09697-2">
  811.            <title><![CDATA[Enzyme specificity prediction using cross attention graph neural networks]]></title>
  812.            <link>https://www.nature.com/articles/s41586-025-09697-2</link>
  813.            <content:encoded>
  814.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09697-2">doi:10.1038/s41586-025-09697-2</a></p>Enzyme specificity prediction using cross attention graph neural networks]]></content:encoded>
  815.            <dc:title><![CDATA[Enzyme specificity prediction using cross attention graph neural networks]]></dc:title>
  816.            <dc:creator>Haiyang Cui</dc:creator><dc:creator>Yufeng Su</dc:creator><dc:creator>Tanner J. Dean</dc:creator><dc:creator>Tianhao Yu</dc:creator><dc:creator>Zhengyi Zhang</dc:creator><dc:creator>Jian Peng</dc:creator><dc:creator>Diwakar Shukla</dc:creator><dc:creator>Huimin Zhao</dc:creator>
  817.            <dc:identifier>doi:10.1038/s41586-025-09697-2</dc:identifier>
  818.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09697-2</dc:source>
  819.            <dc:date>2025-10-08</dc:date>
  820.            <prism:publicationName>Nature</prism:publicationName>
  821.            <prism:doi>10.1038/s41586-025-09697-2</prism:doi>
  822.            <prism:url>https://www.nature.com/articles/s41586-025-09697-2</prism:url>
  823.        </item>
  824.    
  825.        <item rdf:about="https://www.nature.com/articles/d41586-025-03298-9">
  826.            <title><![CDATA[How stereotypes shape AI – and what that means for the future of hiring]]></title>
  827.            <link>https://www.nature.com/articles/d41586-025-03298-9</link>
  828.            <content:encoded>
  829.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03298-9">doi:10.1038/d41586-025-03298-9</a></p>Images from across the web portray women as being younger than men, despite the underlying reality — plus, astronomers’ favourite exoplanets, and the 2025 Nobel prizes.]]></content:encoded>
  830.            <dc:title><![CDATA[How stereotypes shape AI – and what that means for the future of hiring]]></dc:title>
  831.            <dc:creator>Benjamin Thompson</dc:creator><dc:creator>Nick Petrić Howe</dc:creator>
  832.            <dc:identifier>doi:10.1038/d41586-025-03298-9</dc:identifier>
  833.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03298-9</dc:source>
  834.            <dc:date>2025-10-08</dc:date>
  835.            <prism:publicationName>Nature</prism:publicationName>
  836.            <prism:doi>10.1038/d41586-025-03298-9</prism:doi>
  837.            <prism:url>https://www.nature.com/articles/d41586-025-03298-9</prism:url>
  838.        </item>
  839.    
  840.        <item rdf:about="https://www.nature.com/articles/d41586-025-03270-7">
  841.            <title><![CDATA[Hippos still roamed Europe during the last ice age]]></title>
  842.            <link>https://www.nature.com/articles/d41586-025-03270-7</link>
  843.            <content:encoded>
  844.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03270-7">doi:10.1038/d41586-025-03270-7</a></p>DNA found in fossils from southwestern Germany suggests the populations survived in the region much longer than expected.]]></content:encoded>
  845.            <dc:title><![CDATA[Hippos still roamed Europe during the last ice age]]></dc:title>
  846.            
  847.            <dc:identifier>doi:10.1038/d41586-025-03270-7</dc:identifier>
  848.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03270-7</dc:source>
  849.            <dc:date>2025-10-08</dc:date>
  850.            <prism:publicationName>Nature</prism:publicationName>
  851.            <prism:doi>10.1038/d41586-025-03270-7</prism:doi>
  852.            <prism:url>https://www.nature.com/articles/d41586-025-03270-7</prism:url>
  853.        </item>
  854.    
  855.        <item rdf:about="https://www.nature.com/articles/s41586-025-09602-x">
  856.            <title><![CDATA[A parabrachial hub for need-state control of enduring pain]]></title>
  857.            <link>https://www.nature.com/articles/s41586-025-09602-x</link>
  858.            <content:encoded>
  859.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09602-x">doi:10.1038/s41586-025-09602-x</a></p>Activity in a set of parabranchial neurons in the mouse brain is increased during chronic pain, predicts coping behaviour, and can be modulated by circuits activated by survival threats.]]></content:encoded>
  860.            <dc:title><![CDATA[A parabrachial hub for need-state control of enduring pain]]></dc:title>
  861.            <dc:creator>Nitsan Goldstein</dc:creator><dc:creator>Amadeus Maes</dc:creator><dc:creator>Heather N. Allen</dc:creator><dc:creator>Tyler S. Nelson</dc:creator><dc:creator>Kayla A. Kruger</dc:creator><dc:creator>Morgan Kindel</dc:creator><dc:creator>Albert T. M. Yeung</dc:creator><dc:creator>Nicholas K. Smith</dc:creator><dc:creator>Jamie R. E. Carty</dc:creator><dc:creator>Lavinia Boccia</dc:creator><dc:creator>Niklas Blank</dc:creator><dc:creator>Emily Lo</dc:creator><dc:creator>Rachael E. Villari</dc:creator><dc:creator>Ella Cho</dc:creator><dc:creator>Erin L. Marble</dc:creator><dc:creator>Michelle Awh</dc:creator><dc:creator>Yasmina Dumiaty</dc:creator><dc:creator>Melissa J. Chee</dc:creator><dc:creator>Rajesh Khanna</dc:creator><dc:creator>Christoph A. Thaiss</dc:creator><dc:creator>Bradley K. Taylor</dc:creator><dc:creator>Ann Kennedy</dc:creator><dc:creator>J. Nicholas Betley</dc:creator>
  862.            <dc:identifier>doi:10.1038/s41586-025-09602-x</dc:identifier>
  863.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09602-x</dc:source>
  864.            <dc:date>2025-10-08</dc:date>
  865.            <prism:publicationName>Nature</prism:publicationName>
  866.            <prism:doi>10.1038/s41586-025-09602-x</prism:doi>
  867.            <prism:url>https://www.nature.com/articles/s41586-025-09602-x</prism:url>
  868.        </item>
  869.    
  870.        <item rdf:about="https://www.nature.com/articles/s41586-025-09579-7">
  871.            <title><![CDATA[Hotspots of human mutation point to clonal expansions in spermatogonia]]></title>
  872.            <link>https://www.nature.com/articles/s41586-025-09579-7</link>
  873.            <content:encoded>
  874.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09579-7">doi:10.1038/s41586-025-09579-7</a></p>A systematic statistical genetics approach discovers CES drivers as hotspots of human de novo mutation and shows that clonal expansions in germline may both modulate the prevalence of disorders and lead to false-positive disease associations.]]></content:encoded>
  875.            <dc:title><![CDATA[Hotspots of human mutation point to clonal expansions in spermatogonia]]></dc:title>
  876.            <dc:creator>Vladimir Seplyarskiy</dc:creator><dc:creator>Mikhail A. Moldovan</dc:creator><dc:creator>Evan Koch</dc:creator><dc:creator>Prathitha Kar</dc:creator><dc:creator>Matthew D. C. Neville</dc:creator><dc:creator>Raheleh Rahbari</dc:creator><dc:creator>Shamil Sunyaev</dc:creator>
  877.            <dc:identifier>doi:10.1038/s41586-025-09579-7</dc:identifier>
  878.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09579-7</dc:source>
  879.            <dc:date>2025-10-08</dc:date>
  880.            <prism:publicationName>Nature</prism:publicationName>
  881.            <prism:doi>10.1038/s41586-025-09579-7</prism:doi>
  882.            <prism:url>https://www.nature.com/articles/s41586-025-09579-7</prism:url>
  883.        </item>
  884.    
  885.        <item rdf:about="https://www.nature.com/articles/s41586-025-09581-z">
  886.            <title><![CDATA[Age and gender distortion in online media and large language models]]></title>
  887.            <link>https://www.nature.com/articles/s41586-025-09581-z</link>
  888.            <content:encoded>
  889.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09581-z">doi:10.1038/s41586-025-09581-z</a></p>Stereotypes of age-related gender bias are socially distorted, as evidenced by the age gap in the representations of women and men across various media and algorithms, despite no systematic age differences in the workforce.]]></content:encoded>
  890.            <dc:title><![CDATA[Age and gender distortion in online media and large language models]]></dc:title>
  891.            <dc:creator>Douglas Guilbeault</dc:creator><dc:creator>Solène Delecourt</dc:creator><dc:creator>Bhargav Srinivasa Desikan</dc:creator>
  892.            <dc:identifier>doi:10.1038/s41586-025-09581-z</dc:identifier>
  893.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09581-z</dc:source>
  894.            <dc:date>2025-10-08</dc:date>
  895.            <prism:publicationName>Nature</prism:publicationName>
  896.            <prism:doi>10.1038/s41586-025-09581-z</prism:doi>
  897.            <prism:url>https://www.nature.com/articles/s41586-025-09581-z</prism:url>
  898.        </item>
  899.    
  900.        <item rdf:about="https://www.nature.com/articles/s41586-025-09621-8">
  901.            <title><![CDATA[A full-featured 2D flash chip enabled by system integration]]></title>
  902.            <link>https://www.nature.com/articles/s41586-025-09621-8</link>
  903.            <content:encoded>
  904.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09621-8">doi:10.1038/s41586-025-09621-8</a></p>A full-featured 2D NOR flash memory chip realized by an atomic device to chip technology combines a superior 2D electronic device as a memory core and a powerful CMOS platform to support complex instruction control.]]></content:encoded>
  905.            <dc:title><![CDATA[A full-featured 2D flash chip enabled by system integration]]></dc:title>
  906.            <dc:creator>Chunsen Liu</dc:creator><dc:creator>Yongbo Jiang</dc:creator><dc:creator>Boqian Shen</dc:creator><dc:creator>Shengchao Yuan</dc:creator><dc:creator>Zhenyuan Cao</dc:creator><dc:creator>Zhongyu Bi</dc:creator><dc:creator>Chong Wang</dc:creator><dc:creator>Yutong Xiang</dc:creator><dc:creator>Tanjun Wang</dc:creator><dc:creator>Haoqi Wu</dc:creator><dc:creator>Zizheng Liu</dc:creator><dc:creator>Yang Wang</dc:creator><dc:creator>Shuiyuan Wang</dc:creator><dc:creator>Peng Zhou</dc:creator>
  907.            <dc:identifier>doi:10.1038/s41586-025-09621-8</dc:identifier>
  908.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09621-8</dc:source>
  909.            <dc:date>2025-10-08</dc:date>
  910.            <prism:publicationName>Nature</prism:publicationName>
  911.            <prism:doi>10.1038/s41586-025-09621-8</prism:doi>
  912.            <prism:url>https://www.nature.com/articles/s41586-025-09621-8</prism:url>
  913.        </item>
  914.    
  915.        <item rdf:about="https://www.nature.com/articles/s41586-025-09584-w">
  916.            <title><![CDATA[Somatic mutation and selection at population scale]]></title>
  917.            <link>https://www.nature.com/articles/s41586-025-09584-w</link>
  918.            <content:encoded>
  919.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09584-w">doi:10.1038/s41586-025-09584-w</a></p>A new version of nanorate DNA sequencing, with an error rate lower than five errors per billion base pairs and compatible with whole-exome and targeted capture, enables epidemiological-scale studies of somatic mutation and selection and the generation of high-resolution selection maps across coding and non-coding sites for many genes.]]></content:encoded>
  920.            <dc:title><![CDATA[Somatic mutation and selection at population scale]]></dc:title>
  921.            <dc:creator>Andrew R. J. Lawson</dc:creator><dc:creator>Federico Abascal</dc:creator><dc:creator>Pantelis A. Nicola</dc:creator><dc:creator>Stefanie V. Lensing</dc:creator><dc:creator>Amy L. Roberts</dc:creator><dc:creator>Georgios Kalantzis</dc:creator><dc:creator>Adrian Baez-Ortega</dc:creator><dc:creator>Natalia Brzozowska</dc:creator><dc:creator>Julia S. El-Sayed Moustafa</dc:creator><dc:creator>Dovile Vaitkute</dc:creator><dc:creator>Belma Jakupovic</dc:creator><dc:creator>Ayrun Nessa</dc:creator><dc:creator>Samuel Wadge</dc:creator><dc:creator>Marc F. Österdahl</dc:creator><dc:creator>Anna L. Paterson</dc:creator><dc:creator>Doris M. Rassl</dc:creator><dc:creator>Raul E. Alcantara</dc:creator><dc:creator>Laura O’Neill</dc:creator><dc:creator>Sara Widaa</dc:creator><dc:creator>Siobhan Austin-Guest</dc:creator><dc:creator>Matthew D. C. Neville</dc:creator><dc:creator>Moritz J. Przybilla</dc:creator><dc:creator>Wei Cheng</dc:creator><dc:creator>Maria Morra</dc:creator><dc:creator>Lucy Sykes</dc:creator><dc:creator>Matthew Mayho</dc:creator><dc:creator>Nicole Müller-Sienerth</dc:creator><dc:creator>Nicholas Williams</dc:creator><dc:creator>Diana Alexander</dc:creator><dc:creator>Luke M. R. Harvey</dc:creator><dc:creator>Thomas Clarke</dc:creator><dc:creator>Alex Byrne</dc:creator><dc:creator>Jamie R. Blundell</dc:creator><dc:creator>Matthew D. Young</dc:creator><dc:creator>Krishnaa T. A. Mahbubani</dc:creator><dc:creator>Kourosh Saeb-Parsy</dc:creator><dc:creator>Hilary C. Martin</dc:creator><dc:creator>Michael R. Stratton</dc:creator><dc:creator>Peter J. Campbell</dc:creator><dc:creator>Raheleh Rahbari</dc:creator><dc:creator>Kerrin S. Small</dc:creator><dc:creator>Iñigo Martincorena</dc:creator>
  922.            <dc:identifier>doi:10.1038/s41586-025-09584-w</dc:identifier>
  923.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09584-w</dc:source>
  924.            <dc:date>2025-10-08</dc:date>
  925.            <prism:publicationName>Nature</prism:publicationName>
  926.            <prism:doi>10.1038/s41586-025-09584-w</prism:doi>
  927.            <prism:url>https://www.nature.com/articles/s41586-025-09584-w</prism:url>
  928.        </item>
  929.    
  930.        <item rdf:about="https://www.nature.com/articles/s41586-025-09603-w">
  931.            <title><![CDATA[Efficient and accurate search in petabase-scale sequence repositories]]></title>
  932.            <link>https://www.nature.com/articles/s41586-025-09603-w</link>
  933.            <content:encoded>
  934.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09603-w">doi:10.1038/s41586-025-09603-w</a></p>MetaGraph enables scalable indexing of large sets of DNA, RNA or protein sequences using annotated de Bruijn graphs.]]></content:encoded>
  935.            <dc:title><![CDATA[Efficient and accurate search in petabase-scale sequence repositories]]></dc:title>
  936.            <dc:creator>Mikhail Karasikov</dc:creator><dc:creator>Harun Mustafa</dc:creator><dc:creator>Daniel Danciu</dc:creator><dc:creator>Oleksandr Kulkov</dc:creator><dc:creator>Marc Zimmermann</dc:creator><dc:creator>Christopher Barber</dc:creator><dc:creator>Gunnar Rätsch</dc:creator><dc:creator>André Kahles</dc:creator>
  937.            <dc:identifier>doi:10.1038/s41586-025-09603-w</dc:identifier>
  938.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09603-w</dc:source>
  939.            <dc:date>2025-10-08</dc:date>
  940.            <prism:publicationName>Nature</prism:publicationName>
  941.            <prism:doi>10.1038/s41586-025-09603-w</prism:doi>
  942.            <prism:url>https://www.nature.com/articles/s41586-025-09603-w</prism:url>
  943.        </item>
  944.    
  945.        <item rdf:about="https://www.nature.com/articles/s41586-025-09448-3">
  946.            <title><![CDATA[Sperm sequencing reveals extensive positive selection in the male germline]]></title>
  947.            <link>https://www.nature.com/articles/s41586-025-09448-3</link>
  948.            <content:encoded>
  949.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09448-3">doi:10.1038/s41586-025-09448-3</a></p>A combination of whole-genome NanoSeq with deep whole-exome and targeted NanoSeq is used to accurately characterize mutation rates and genes under positive selection in sperm cells.]]></content:encoded>
  950.            <dc:title><![CDATA[Sperm sequencing reveals extensive positive selection in the male germline]]></dc:title>
  951.            <dc:creator>Matthew D. C. Neville</dc:creator><dc:creator>Andrew R. J. Lawson</dc:creator><dc:creator>Rashesh Sanghvi</dc:creator><dc:creator>Federico Abascal</dc:creator><dc:creator>My H. Pham</dc:creator><dc:creator>Alex Cagan</dc:creator><dc:creator>Pantelis A. Nicola</dc:creator><dc:creator>Tetyana Bayzetinova</dc:creator><dc:creator>Adrian Baez-Ortega</dc:creator><dc:creator>Kirsty Roberts</dc:creator><dc:creator>Stefanie V. Lensing</dc:creator><dc:creator>Sara Widaa</dc:creator><dc:creator>Raul E. Alcantara</dc:creator><dc:creator>María Paz García</dc:creator><dc:creator>Sam Wadge</dc:creator><dc:creator>Michael R. Stratton</dc:creator><dc:creator>Peter J. Campbell</dc:creator><dc:creator>Kerrin Small</dc:creator><dc:creator>Iñigo Martincorena</dc:creator><dc:creator>Matthew E. Hurles</dc:creator><dc:creator>Raheleh Rahbari</dc:creator>
  952.            <dc:identifier>doi:10.1038/s41586-025-09448-3</dc:identifier>
  953.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09448-3</dc:source>
  954.            <dc:date>2025-10-08</dc:date>
  955.            <prism:publicationName>Nature</prism:publicationName>
  956.            <prism:doi>10.1038/s41586-025-09448-3</prism:doi>
  957.            <prism:url>https://www.nature.com/articles/s41586-025-09448-3</prism:url>
  958.        </item>
  959.    
  960.        <item rdf:about="https://www.nature.com/articles/s41586-025-09516-8">
  961.            <title><![CDATA[A ductile chromium–molybdenum alloy resistant to high-temperature oxidation]]></title>
  962.            <link>https://www.nature.com/articles/s41586-025-09516-8</link>
  963.            <content:encoded>
  964.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09516-8">doi:10.1038/s41586-025-09516-8</a></p>A single-phase chromium–molybdenum–silicon alloy is described that exhibits compression ductility at room temperature as well as resistance to oxidation, pesting, nitridation and scale spallation at temperatures up to at least 1,100 °C.]]></content:encoded>
  965.            <dc:title><![CDATA[A ductile chromium–molybdenum alloy resistant to high-temperature oxidation]]></dc:title>
  966.            <dc:creator>Frauke Hinrichs</dc:creator><dc:creator>Georg Winkens</dc:creator><dc:creator>Lena Katharina Kramer</dc:creator><dc:creator>Gabriely Falcão</dc:creator><dc:creator>Ewa M. Hahn</dc:creator><dc:creator>Daniel Schliephake</dc:creator><dc:creator>Michael Konrad Eusterholz</dc:creator><dc:creator>Sandipan Sen</dc:creator><dc:creator>Mathias Christian Galetz</dc:creator><dc:creator>Haruyuki Inui</dc:creator><dc:creator>Alexander Kauffmann</dc:creator><dc:creator>Martin Heilmaier</dc:creator>
  967.            <dc:identifier>doi:10.1038/s41586-025-09516-8</dc:identifier>
  968.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09516-8</dc:source>
  969.            <dc:date>2025-10-08</dc:date>
  970.            <prism:publicationName>Nature</prism:publicationName>
  971.            <prism:doi>10.1038/s41586-025-09516-8</prism:doi>
  972.            <prism:url>https://www.nature.com/articles/s41586-025-09516-8</prism:url>
  973.        </item>
  974.    
  975.        <item rdf:about="https://www.nature.com/articles/s41586-025-09582-y">
  976.            <title><![CDATA[Southward impact excavated magma ocean at the lunar South Pole–Aitken basin]]></title>
  977.            <link>https://www.nature.com/articles/s41586-025-09582-y</link>
  978.            <content:encoded>
  979.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09582-y">doi:10.1038/s41586-025-09582-y</a></p>Observations of the shape, topography, crustal thickness and surface composition of the South Pole–Aitken impact basin on the Moon suggest a southward impact trajectory and the excavation of a discontinuous remnant magma ocean from beneath the crust.]]></content:encoded>
  980.            <dc:title><![CDATA[Southward impact excavated magma ocean at the lunar South Pole–Aitken basin]]></dc:title>
  981.            <dc:creator>Jeffrey C. Andrews-Hanna</dc:creator><dc:creator>William F. Bottke</dc:creator><dc:creator>Adrien Broquet</dc:creator><dc:creator>Alexander J. Evans</dc:creator><dc:creator>Gabriel Gowman</dc:creator><dc:creator>Brandon C. Johnson</dc:creator><dc:creator>James T. Keane</dc:creator><dc:creator>Janette N. Levin</dc:creator><dc:creator>Ananya Mallik</dc:creator><dc:creator>Simone Marchi</dc:creator><dc:creator>Samantha A. Moruzzi</dc:creator><dc:creator>Arkadeep Roy</dc:creator><dc:creator>Shigeru Wakita</dc:creator>
  982.            <dc:identifier>doi:10.1038/s41586-025-09582-y</dc:identifier>
  983.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09582-y</dc:source>
  984.            <dc:date>2025-10-08</dc:date>
  985.            <prism:publicationName>Nature</prism:publicationName>
  986.            <prism:doi>10.1038/s41586-025-09582-y</prism:doi>
  987.            <prism:url>https://www.nature.com/articles/s41586-025-09582-y</prism:url>
  988.        </item>
  989.    
  990.        <item rdf:about="https://www.nature.com/articles/s41586-025-09521-x">
  991.            <title><![CDATA[Sex and smoking bias in the selection of somatic mutations in human bladder]]></title>
  992.            <link>https://www.nature.com/articles/s41586-025-09521-x</link>
  993.            <content:encoded>
  994.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09521-x">doi:10.1038/s41586-025-09521-x</a></p>Sex bias and association with smoking history identified in the landscape of driver mutations and clonal expansions in normal human bladder tissue may explain the higher bladder cancer risk in men and smokers.]]></content:encoded>
  995.            <dc:title><![CDATA[Sex and smoking bias in the selection of somatic mutations in human bladder]]></dc:title>
  996.            <dc:creator>Ferriol Calvet</dc:creator><dc:creator>Raquel Blanco Martinez-Illescas</dc:creator><dc:creator>Ferran Muiños</dc:creator><dc:creator>Maria Tretiakova</dc:creator><dc:creator>Elena S. Latorre-Esteves</dc:creator><dc:creator>Jeanne Fredrickson</dc:creator><dc:creator>Maria Andrianova</dc:creator><dc:creator>Stefano Pellegrini</dc:creator><dc:creator>Axel Rosendahl Huber</dc:creator><dc:creator>Joan Enric Ramis-Zaldivar</dc:creator><dc:creator>Shuyi Charlotte An</dc:creator><dc:creator>Elana Thieme</dc:creator><dc:creator>Brendan F. Kohrn</dc:creator><dc:creator>Miguel L. Grau</dc:creator><dc:creator>Abel Gonzalez-Perez</dc:creator><dc:creator>Nuria Lopez-Bigas</dc:creator><dc:creator>Rosa Ana Risques</dc:creator>
  997.            <dc:identifier>doi:10.1038/s41586-025-09521-x</dc:identifier>
  998.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09521-x</dc:source>
  999.            <dc:date>2025-10-08</dc:date>
  1000.            <prism:publicationName>Nature</prism:publicationName>
  1001.            <prism:doi>10.1038/s41586-025-09521-x</prism:doi>
  1002.            <prism:url>https://www.nature.com/articles/s41586-025-09521-x</prism:url>
  1003.        </item>
  1004.    
  1005.        <item rdf:about="https://www.nature.com/articles/s41586-025-09578-8">
  1006.            <title><![CDATA[Quantum-amplified global-phase spectroscopy on an optical clock transition]]></title>
  1007.            <link>https://www.nature.com/articles/s41586-025-09578-8</link>
  1008.            <content:encoded>
  1009.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09578-8">doi:10.1038/s41586-025-09578-8</a></p>The precision of determining the phase of an optical atomic clock is increased above the standard quantum limit in a new spectroscopic method.]]></content:encoded>
  1010.            <dc:title><![CDATA[Quantum-amplified global-phase spectroscopy on an optical clock transition]]></dc:title>
  1011.            <dc:creator>Leon Zaporski</dc:creator><dc:creator>Qi Liu</dc:creator><dc:creator>Gustavo Velez</dc:creator><dc:creator>Matthew Radzihovsky</dc:creator><dc:creator>Zeyang Li</dc:creator><dc:creator>Simone Colombo</dc:creator><dc:creator>Edwin Pedrozo-Peñafiel</dc:creator><dc:creator>Vladan Vuletić</dc:creator>
  1012.            <dc:identifier>doi:10.1038/s41586-025-09578-8</dc:identifier>
  1013.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09578-8</dc:source>
  1014.            <dc:date>2025-10-08</dc:date>
  1015.            <prism:publicationName>Nature</prism:publicationName>
  1016.            <prism:doi>10.1038/s41586-025-09578-8</prism:doi>
  1017.            <prism:url>https://www.nature.com/articles/s41586-025-09578-8</prism:url>
  1018.        </item>
  1019.    
  1020.        <item rdf:about="https://www.nature.com/articles/s41586-025-09585-9">
  1021.            <title><![CDATA[KCTD10 is a sensor for co-directional transcription–replication conflicts]]></title>
  1022.            <link>https://www.nature.com/articles/s41586-025-09585-9</link>
  1023.            <content:encoded>
  1024.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09585-9">doi:10.1038/s41586-025-09585-9</a></p>KCTD10 interacts with the DNA replication machinery and the RNA polymerase complex, inducing ubiquitination and removal of the transcription machinery in the event of co-directional transcription–replication conflicts.]]></content:encoded>
  1025.            <dc:title><![CDATA[KCTD10 is a sensor for co-directional transcription–replication conflicts]]></dc:title>
  1026.            <dc:creator>Jake A. Kloeber</dc:creator><dc:creator>Bin Chen</dc:creator><dc:creator>Guangchao Sun</dc:creator><dc:creator>Charles S. King</dc:creator><dc:creator>Zhiquan Wang</dc:creator><dc:creator>Li Wang</dc:creator><dc:creator>Zheming Wu</dc:creator><dc:creator>Shouhai Zhu</dc:creator><dc:creator>Fei Zhao</dc:creator><dc:creator>Hongran Qin</dc:creator><dc:creator>Yaobin Ouyang</dc:creator><dc:creator>Huaping Xiao</dc:creator><dc:creator>Xinyi Tu</dc:creator><dc:creator>Jing Lu</dc:creator><dc:creator>Yanxia Jiang</dc:creator><dc:creator>Kuntian Luo</dc:creator><dc:creator>Ping Yin</dc:creator><dc:creator>Xinyan Wu</dc:creator><dc:creator>Robert W. Mutter</dc:creator><dc:creator>Jinzhou Huang</dc:creator><dc:creator>Zhenkun Lou</dc:creator>
  1027.            <dc:identifier>doi:10.1038/s41586-025-09585-9</dc:identifier>
  1028.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09585-9</dc:source>
  1029.            <dc:date>2025-10-08</dc:date>
  1030.            <prism:publicationName>Nature</prism:publicationName>
  1031.            <prism:doi>10.1038/s41586-025-09585-9</prism:doi>
  1032.            <prism:url>https://www.nature.com/articles/s41586-025-09585-9</prism:url>
  1033.        </item>
  1034.    
  1035.        <item rdf:about="https://www.nature.com/articles/s41586-025-09620-9">
  1036.            <title><![CDATA[Programmable on-chip nonlinear photonics]]></title>
  1037.            <link>https://www.nature.com/articles/s41586-025-09620-9</link>
  1038.            <content:encoded>
  1039.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09620-9">doi:10.1038/s41586-025-09620-9</a></p>An optical slab waveguide with highly programmable nonlinear functionality is described, enabling the demonstration of versatile control over broadband second-harmonic generation across the spectral, spatial and spatio-spectral domains.]]></content:encoded>
  1040.            <dc:title><![CDATA[Programmable on-chip nonlinear photonics]]></dc:title>
  1041.            <dc:creator>Ryotatsu Yanagimoto</dc:creator><dc:creator>Benjamin A. Ash</dc:creator><dc:creator>Mandar M. Sohoni</dc:creator><dc:creator>Martin M. Stein</dc:creator><dc:creator>Yiqi Zhao</dc:creator><dc:creator>Federico Presutti</dc:creator><dc:creator>Marc Jankowski</dc:creator><dc:creator>Logan G. Wright</dc:creator><dc:creator>Tatsuhiro Onodera</dc:creator><dc:creator>Peter L. McMahon</dc:creator>
  1042.            <dc:identifier>doi:10.1038/s41586-025-09620-9</dc:identifier>
  1043.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09620-9</dc:source>
  1044.            <dc:date>2025-10-08</dc:date>
  1045.            <prism:publicationName>Nature</prism:publicationName>
  1046.            <prism:doi>10.1038/s41586-025-09620-9</prism:doi>
  1047.            <prism:url>https://www.nature.com/articles/s41586-025-09620-9</prism:url>
  1048.        </item>
  1049.    
  1050.        <item rdf:about="https://www.nature.com/articles/s41586-025-09604-9">
  1051.            <title><![CDATA[Flexible perceptual encoding by discrete gamma events]]></title>
  1052.            <link>https://www.nature.com/articles/s41586-025-09604-9</link>
  1053.            <content:encoded>
  1054.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/s41586-025-09604-9">doi:10.1038/s41586-025-09604-9</a></p>Using a new analytical method for tracking gamma band events in mouse visual cortex, flexible encoding of visual information according to behavioural context is shown.]]></content:encoded>
  1055.            <dc:title><![CDATA[Flexible perceptual encoding by discrete gamma events]]></dc:title>
  1056.            <dc:creator>Quentin Perrenoud</dc:creator><dc:creator>Antonio H. de O. Fonseca</dc:creator><dc:creator>Austin Airhart</dc:creator><dc:creator>James Bonanno</dc:creator><dc:creator>Rong Mao</dc:creator><dc:creator>Jessica A. Cardin</dc:creator>
  1057.            <dc:identifier>doi:10.1038/s41586-025-09604-9</dc:identifier>
  1058.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/s41586-025-09604-9</dc:source>
  1059.            <dc:date>2025-10-08</dc:date>
  1060.            <prism:publicationName>Nature</prism:publicationName>
  1061.            <prism:doi>10.1038/s41586-025-09604-9</prism:doi>
  1062.            <prism:url>https://www.nature.com/articles/s41586-025-09604-9</prism:url>
  1063.        </item>
  1064.    
  1065.        <item rdf:about="https://www.nature.com/articles/d41586-025-03222-1">
  1066.            <title><![CDATA[AI models that lie, cheat and plot murder: how dangerous are LLMs really?]]></title>
  1067.            <link>https://www.nature.com/articles/d41586-025-03222-1</link>
  1068.            <content:encoded>
  1069.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03222-1">doi:10.1038/d41586-025-03222-1</a></p>Tests of large language models reveal that they can behave in deceptive and potentially harmful ways. What does this mean for the future?]]></content:encoded>
  1070.            <dc:title><![CDATA[AI models that lie, cheat and plot murder: how dangerous are LLMs really?]]></dc:title>
  1071.            <dc:creator>Matthew Hutson</dc:creator>
  1072.            <dc:identifier>doi:10.1038/d41586-025-03222-1</dc:identifier>
  1073.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03222-1</dc:source>
  1074.            <dc:date>2025-10-08</dc:date>
  1075.            <prism:publicationName>Nature</prism:publicationName>
  1076.            <prism:doi>10.1038/d41586-025-03222-1</prism:doi>
  1077.            <prism:url>https://www.nature.com/articles/d41586-025-03222-1</prism:url>
  1078.        </item>
  1079.    
  1080.        <item rdf:about="https://www.nature.com/articles/d41586-025-02906-y">
  1081.            <title><![CDATA[Low-quality papers are flooding the cancer literature — can this AI tool help to catch them?]]></title>
  1082.            <link>https://www.nature.com/articles/d41586-025-02906-y</link>
  1083.            <content:encoded>
  1084.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-02906-y">doi:10.1038/d41586-025-02906-y</a></p>A large language model scans abstracts and titles for signs that an article was produced by a ‘paper mill’ company.]]></content:encoded>
  1085.            <dc:title><![CDATA[Low-quality papers are flooding the cancer literature — can this AI tool help to catch them?]]></dc:title>
  1086.            <dc:creator>Miryam Naddaf</dc:creator>
  1087.            <dc:identifier>doi:10.1038/d41586-025-02906-y</dc:identifier>
  1088.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-02906-y</dc:source>
  1089.            <dc:date>2025-10-08</dc:date>
  1090.            <prism:publicationName>Nature</prism:publicationName>
  1091.            <prism:doi>10.1038/d41586-025-02906-y</prism:doi>
  1092.            <prism:url>https://www.nature.com/articles/d41586-025-02906-y</prism:url>
  1093.        </item>
  1094.    
  1095.        <item rdf:about="https://www.nature.com/articles/d41586-025-03272-5">
  1096.            <title><![CDATA[Brain area linked to chronic pain discovered — offering hope for treatments]]></title>
  1097.            <link>https://www.nature.com/articles/d41586-025-03272-5</link>
  1098.            <content:encoded>
  1099.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03272-5">doi:10.1038/d41586-025-03272-5</a></p>The newfound ensemble of neurons could lead to therapies to treat persistent pain, which affects roughly one in five people globally.]]></content:encoded>
  1100.            <dc:title><![CDATA[Brain area linked to chronic pain discovered — offering hope for treatments]]></dc:title>
  1101.            <dc:creator>Lynne Peeples</dc:creator>
  1102.            <dc:identifier>doi:10.1038/d41586-025-03272-5</dc:identifier>
  1103.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03272-5</dc:source>
  1104.            <dc:date>2025-10-08</dc:date>
  1105.            <prism:publicationName>Nature</prism:publicationName>
  1106.            <prism:doi>10.1038/d41586-025-03272-5</prism:doi>
  1107.            <prism:url>https://www.nature.com/articles/d41586-025-03272-5</prism:url>
  1108.        </item>
  1109.    
  1110.        <item rdf:about="https://www.nature.com/articles/d41586-025-03249-4">
  1111.            <title><![CDATA[The girl who used to be my sister]]></title>
  1112.            <link>https://www.nature.com/articles/d41586-025-03249-4</link>
  1113.            <content:encoded>
  1114.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03249-4">doi:10.1038/d41586-025-03249-4</a></p>A voyage of self-discovery.]]></content:encoded>
  1115.            <dc:title><![CDATA[The girl who used to be my sister]]></dc:title>
  1116.            <dc:creator>Sylvia Spruck Wrigley</dc:creator>
  1117.            <dc:identifier>doi:10.1038/d41586-025-03249-4</dc:identifier>
  1118.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03249-4</dc:source>
  1119.            <dc:date>2025-10-08</dc:date>
  1120.            <prism:publicationName>Nature</prism:publicationName>
  1121.            <prism:doi>10.1038/d41586-025-03249-4</prism:doi>
  1122.            <prism:url>https://www.nature.com/articles/d41586-025-03249-4</prism:url>
  1123.        </item>
  1124.    
  1125.        <item rdf:about="https://www.nature.com/articles/d41586-025-03232-z">
  1126.            <title><![CDATA[Tracing the ancestry of barley in time and space]]></title>
  1127.            <link>https://www.nature.com/articles/d41586-025-03232-z</link>
  1128.            <content:encoded>
  1129.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03232-z">doi:10.1038/d41586-025-03232-z</a></p>The genetic ancestry of domesticated barley has been mapped at high resolution, with each genome segment traced to its wild origins and the date estimated for when it entered the domesticated lineage. The findings reveal a mosaic of contributions from across western and central Asia, shaped by early cultivation and later gene flow.]]></content:encoded>
  1130.            <dc:title><![CDATA[Tracing the ancestry of barley in time and space]]></dc:title>
  1131.            
  1132.            <dc:identifier>doi:10.1038/d41586-025-03232-z</dc:identifier>
  1133.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03232-z</dc:source>
  1134.            <dc:date>2025-10-08</dc:date>
  1135.            <prism:publicationName>Nature</prism:publicationName>
  1136.            <prism:doi>10.1038/d41586-025-03232-z</prism:doi>
  1137.            <prism:url>https://www.nature.com/articles/d41586-025-03232-z</prism:url>
  1138.        </item>
  1139.    
  1140.        <item rdf:about="https://www.nature.com/articles/d41586-025-03195-1">
  1141.            <title><![CDATA[Chemistry Nobel for scientists who developed massively porous ‘super sponge’ materials]]></title>
  1142.            <link>https://www.nature.com/articles/d41586-025-03195-1</link>
  1143.            <content:encoded>
  1144.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03195-1">doi:10.1038/d41586-025-03195-1</a></p>Susumu Kitagawa, Richard Robson and Omar Yaghi pioneered the creation of metal–organic frameworks, which can capture and store molecules such as carbon dioxide.]]></content:encoded>
  1145.            <dc:title><![CDATA[Chemistry Nobel for scientists who developed massively porous ‘super sponge’ materials]]></dc:title>
  1146.            <dc:creator>Davide Castelvecchi</dc:creator><dc:creator>Miryam Naddaf</dc:creator>
  1147.            <dc:identifier>doi:10.1038/d41586-025-03195-1</dc:identifier>
  1148.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03195-1</dc:source>
  1149.            <dc:date>2025-10-08</dc:date>
  1150.            <prism:publicationName>Nature</prism:publicationName>
  1151.            <prism:doi>10.1038/d41586-025-03195-1</prism:doi>
  1152.            <prism:url>https://www.nature.com/articles/d41586-025-03195-1</prism:url>
  1153.        </item>
  1154.    
  1155.        <item rdf:about="https://www.nature.com/articles/d41586-025-02975-z">
  1156.            <title><![CDATA[Ultra-sensitive DNA sequencing maps mutations that precede cancer]]></title>
  1157.            <link>https://www.nature.com/articles/d41586-025-02975-z</link>
  1158.            <content:encoded>
  1159.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-02975-z">doi:10.1038/d41586-025-02975-z</a></p>Scientists have used low-error genome-sequencing methods in normal tissues from large cohorts of individuals to scan for mutations that set the stage for cancer.]]></content:encoded>
  1160.            <dc:title><![CDATA[Ultra-sensitive DNA sequencing maps mutations that precede cancer]]></dc:title>
  1161.            <dc:creator>Jian Carrot-Zhang</dc:creator>
  1162.            <dc:identifier>doi:10.1038/d41586-025-02975-z</dc:identifier>
  1163.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-02975-z</dc:source>
  1164.            <dc:date>2025-10-08</dc:date>
  1165.            <prism:publicationName>Nature</prism:publicationName>
  1166.            <prism:doi>10.1038/d41586-025-02975-z</prism:doi>
  1167.            <prism:url>https://www.nature.com/articles/d41586-025-02975-z</prism:url>
  1168.        </item>
  1169.    
  1170.        <item rdf:about="https://www.nature.com/articles/d41586-025-03235-w">
  1171.            <title><![CDATA[A quantum boost for ultra-precise clocks]]></title>
  1172.            <link>https://www.nature.com/articles/d41586-025-03235-w</link>
  1173.            <content:encoded>
  1174.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03235-w">doi:10.1038/d41586-025-03235-w</a></p>The light frequency associated with changes in the energy state of atoms can be used to define the ticking of high-precision optical clocks. Experiments with ytterbium atoms have further enhanced the clocks’ precision by using a quantum amplification technique.]]></content:encoded>
  1175.            <dc:title><![CDATA[A quantum boost for ultra-precise clocks]]></dc:title>
  1176.            
  1177.            <dc:identifier>doi:10.1038/d41586-025-03235-w</dc:identifier>
  1178.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03235-w</dc:source>
  1179.            <dc:date>2025-10-08</dc:date>
  1180.            <prism:publicationName>Nature</prism:publicationName>
  1181.            <prism:doi>10.1038/d41586-025-03235-w</prism:doi>
  1182.            <prism:url>https://www.nature.com/articles/d41586-025-03235-w</prism:url>
  1183.        </item>
  1184.    
  1185.        <item rdf:about="https://www.nature.com/articles/d41586-025-02973-1">
  1186.            <title><![CDATA[Sacrificial metal speeds up synthesis of nano-alloys from multiple elements]]></title>
  1187.            <link>https://www.nature.com/articles/d41586-025-02973-1</link>
  1188.            <content:encoded>
  1189.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-02973-1">doi:10.1038/d41586-025-02973-1</a></p>An approach for making nanoscale high-entropy alloys using liquid metal provides much-needed control over the structure and composition of these remarkable materials.]]></content:encoded>
  1190.            <dc:title><![CDATA[Sacrificial metal speeds up synthesis of nano-alloys from multiple elements]]></dc:title>
  1191.            <dc:creator>Yunqing Kang</dc:creator><dc:creator>Yusuke Yamauchi</dc:creator>
  1192.            <dc:identifier>doi:10.1038/d41586-025-02973-1</dc:identifier>
  1193.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-02973-1</dc:source>
  1194.            <dc:date>2025-10-08</dc:date>
  1195.            <prism:publicationName>Nature</prism:publicationName>
  1196.            <prism:doi>10.1038/d41586-025-02973-1</prism:doi>
  1197.            <prism:url>https://www.nature.com/articles/d41586-025-02973-1</prism:url>
  1198.        </item>
  1199.    
  1200.        <item rdf:about="https://www.nature.com/articles/d41586-025-03219-w">
  1201.            <title><![CDATA[‘Google for DNA’ brings order to biology’s big data]]></title>
  1202.            <link>https://www.nature.com/articles/d41586-025-03219-w</link>
  1203.            <content:encoded>
  1204.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03219-w">doi:10.1038/d41586-025-03219-w</a></p>MetaGraph compresses vast data archives into a search engine for scientists, opening up new frontiers of biological discovery.]]></content:encoded>
  1205.            <dc:title><![CDATA[‘Google for DNA’ brings order to biology’s big data]]></dc:title>
  1206.            <dc:creator>Elie Dolgin</dc:creator>
  1207.            <dc:identifier>doi:10.1038/d41586-025-03219-w</dc:identifier>
  1208.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03219-w</dc:source>
  1209.            <dc:date>2025-10-08</dc:date>
  1210.            <prism:publicationName>Nature</prism:publicationName>
  1211.            <prism:doi>10.1038/d41586-025-03219-w</prism:doi>
  1212.            <prism:url>https://www.nature.com/articles/d41586-025-03219-w</prism:url>
  1213.        </item>
  1214.    
  1215.        <item rdf:about="https://www.nature.com/articles/d41586-025-03320-0">
  1216.            <title><![CDATA[Daily briefing: Chemistry Nobel for ‘super sponge’ MOFs]]></title>
  1217.            <link>https://www.nature.com/articles/d41586-025-03320-0</link>
  1218.            <content:encoded>
  1219.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03320-0">doi:10.1038/d41586-025-03320-0</a></p>This year’s Nobel Prize in Chemistry goes to the three chemists behind the world’s most porous solid materials. Plus, the risks of AI models that scheme and lie, and a warning from six former US surgeons general about the nation’s public health system.]]></content:encoded>
  1220.            <dc:title><![CDATA[Daily briefing: Chemistry Nobel for ‘super sponge’ MOFs]]></dc:title>
  1221.            <dc:creator>Flora Graham</dc:creator>
  1222.            <dc:identifier>doi:10.1038/d41586-025-03320-0</dc:identifier>
  1223.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03320-0</dc:source>
  1224.            <dc:date>2025-10-08</dc:date>
  1225.            <prism:publicationName>Nature</prism:publicationName>
  1226.            <prism:doi>10.1038/d41586-025-03320-0</prism:doi>
  1227.            <prism:url>https://www.nature.com/articles/d41586-025-03320-0</prism:url>
  1228.        </item>
  1229.    
  1230.        <item rdf:about="https://www.nature.com/articles/d41586-025-03238-7">
  1231.            <title><![CDATA[Drones switch payloads in mid-air using a flying toolbox]]></title>
  1232.            <link>https://www.nature.com/articles/d41586-025-03238-7</link>
  1233.            <content:encoded>
  1234.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-03238-7">doi:10.1038/d41586-025-03238-7</a></p>Close cooperation in flight between vertically stacked multirotor drones is widely regarded as dangerous, because there is persistent and intense ‘downwash’ interference. A ‘flying toolbox’ has been developed that achieves high-accuracy docking despite the downwash, enabling mid-air tool exchanges and unlocking diverse aerial manipulation tasks.]]></content:encoded>
  1235.            <dc:title><![CDATA[Drones switch payloads in mid-air using a flying toolbox]]></dc:title>
  1236.            
  1237.            <dc:identifier>doi:10.1038/d41586-025-03238-7</dc:identifier>
  1238.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-03238-7</dc:source>
  1239.            <dc:date>2025-10-08</dc:date>
  1240.            <prism:publicationName>Nature</prism:publicationName>
  1241.            <prism:doi>10.1038/d41586-025-03238-7</prism:doi>
  1242.            <prism:url>https://www.nature.com/articles/d41586-025-03238-7</prism:url>
  1243.        </item>
  1244.    
  1245.        <item rdf:about="https://www.nature.com/articles/d41586-025-02594-8">
  1246.            <title><![CDATA[Clues to why the weight-loss condition cachexia arises when cancer occurs]]></title>
  1247.            <link>https://www.nature.com/articles/d41586-025-02594-8</link>
  1248.            <content:encoded>
  1249.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-02594-8">doi:10.1038/d41586-025-02594-8</a></p>Analyses of RNA expression reveal molecules underpinning the cancer-associated process of skeletal-muscle wasting, a condition called cachexia.]]></content:encoded>
  1250.            <dc:title><![CDATA[Clues to why the weight-loss condition cachexia arises when cancer occurs]]></dc:title>
  1251.            <dc:creator>Kerstin Haase</dc:creator><dc:creator>Mariam Jamal-Hanjani</dc:creator>
  1252.            <dc:identifier>doi:10.1038/d41586-025-02594-8</dc:identifier>
  1253.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-02594-8</dc:source>
  1254.            <dc:date>2025-10-08</dc:date>
  1255.            <prism:publicationName>Nature</prism:publicationName>
  1256.            <prism:doi>10.1038/d41586-025-02594-8</prism:doi>
  1257.            <prism:url>https://www.nature.com/articles/d41586-025-02594-8</prism:url>
  1258.        </item>
  1259.    
  1260.        <item rdf:about="https://www.nature.com/articles/d41586-025-02974-0">
  1261.            <title><![CDATA[Distorted representations of age and gender are reflected in AI models]]></title>
  1262.            <link>https://www.nature.com/articles/d41586-025-02974-0</link>
  1263.            <content:encoded>
  1264.                <![CDATA[<p>Nature, Published online: 08 October 2025; <a href="https://www.nature.com/articles/d41586-025-02974-0">doi:10.1038/d41586-025-02974-0</a></p>A big-data analysis shows that online content represents men as older than women in the same occupations and social roles, and that AI reproduces these warped presentations.]]></content:encoded>
  1265.            <dc:title><![CDATA[Distorted representations of age and gender are reflected in AI models]]></dc:title>
  1266.            <dc:creator>Ana Macanovic</dc:creator>
  1267.            <dc:identifier>doi:10.1038/d41586-025-02974-0</dc:identifier>
  1268.            <dc:source>Nature, Published online: 2025-10-08; | doi:10.1038/d41586-025-02974-0</dc:source>
  1269.            <dc:date>2025-10-08</dc:date>
  1270.            <prism:publicationName>Nature</prism:publicationName>
  1271.            <prism:doi>10.1038/d41586-025-02974-0</prism:doi>
  1272.            <prism:url>https://www.nature.com/articles/d41586-025-02974-0</prism:url>
  1273.        </item>
  1274.    
  1275.        <item rdf:about="https://www.nature.com/articles/d41586-025-03107-3">
  1276.            <title><![CDATA[Insect biodiversity monitoring must be expanded]]></title>
  1277.            <link>https://www.nature.com/articles/d41586-025-03107-3</link>
  1278.            <content:encoded>
  1279.                <![CDATA[<p>Nature, Published online: 07 October 2025; <a href="https://www.nature.com/articles/d41586-025-03107-3">doi:10.1038/d41586-025-03107-3</a></p>Insect biodiversity monitoring must be expanded]]></content:encoded>
  1280.            <dc:title><![CDATA[Insect biodiversity monitoring must be expanded]]></dc:title>
  1281.            <dc:creator>Kris A. G.  Wyckhuys</dc:creator><dc:creator>Yves Basset</dc:creator><dc:creator>Owen T. Lewis</dc:creator>
  1282.            <dc:identifier>doi:10.1038/d41586-025-03107-3</dc:identifier>
  1283.            <dc:source>Nature, Published online: 2025-10-07; | doi:10.1038/d41586-025-03107-3</dc:source>
  1284.            <dc:date>2025-10-07</dc:date>
  1285.            <prism:publicationName>Nature</prism:publicationName>
  1286.            <prism:doi>10.1038/d41586-025-03107-3</prism:doi>
  1287.            <prism:url>https://www.nature.com/articles/d41586-025-03107-3</prism:url>
  1288.        </item>
  1289.    
  1290.        <item rdf:about="https://www.nature.com/articles/d41586-025-03277-0">
  1291.            <title><![CDATA[Stop destructive fishing in marine protected areas]]></title>
  1292.            <link>https://www.nature.com/articles/d41586-025-03277-0</link>
  1293.            <content:encoded>
  1294.                <![CDATA[<p>Nature, Published online: 07 October 2025; <a href="https://www.nature.com/articles/d41586-025-03277-0">doi:10.1038/d41586-025-03277-0</a></p>Stop destructive fishing in marine protected areas]]></content:encoded>
  1295.            <dc:title><![CDATA[Stop destructive fishing in marine protected areas]]></dc:title>
  1296.            <dc:creator>Jenna Sullivan-Stack</dc:creator><dc:creator>Estradivari</dc:creator><dc:creator>Elizabeth P. Pike</dc:creator><dc:creator>Fabrice Stephenson</dc:creator>
  1297.            <dc:identifier>doi:10.1038/d41586-025-03277-0</dc:identifier>
  1298.            <dc:source>Nature, Published online: 2025-10-07; | doi:10.1038/d41586-025-03277-0</dc:source>
  1299.            <dc:date>2025-10-07</dc:date>
  1300.            <prism:publicationName>Nature</prism:publicationName>
  1301.            <prism:doi>10.1038/d41586-025-03277-0</prism:doi>
  1302.            <prism:url>https://www.nature.com/articles/d41586-025-03277-0</prism:url>
  1303.        </item>
  1304.    
  1305. </rdf:RDF>
  1306.  

If you would like to create a banner that links to this page (i.e. this validation result), do the following:

  1. Download the "valid RSS" banner.

  2. Upload the image to your own server. (This step is important. Please do not link directly to the image on this server.)

  3. Add this HTML to your page (change the image src attribute if necessary):

If you would like to create a text link instead, here is the URL you can use:

http://www.feedvalidator.org/check.cgi?url=https%3A//www.nature.com/nature.rss

Copyright © 2002-9 Sam Ruby, Mark Pilgrim, Joseph Walton, and Phil Ringnalda