{"id":2100,"date":"2026-09-03T13:52:31","date_gmt":"2026-09-03T04:52:31","guid":{"rendered":"https:\/\/www.initiative.ifs.isct.ac.jp\/?post_type=report&#038;p=2100"},"modified":"2026-09-03T13:52:31","modified_gmt":"2026-09-03T04:52:31","slug":"%e3%80%90elsi%e3%80%91%e6%95%b0%e5%84%84%e5%b9%b4%e3%82%92%e9%9a%94%e3%81%a6%e3%81%9f%e9%85%b5%e6%af%8d%e3%81%8c%e3%80%81%e3%81%aa%e3%81%9c%e5%90%8c%e3%81%98%e3%80%8c%e6%af%92%e3%80%8d%e3%82%92","status":"publish","type":"report","link":"https:\/\/www.initiative.ifs.isct.ac.jp\/en\/report\/rid2100\/","title":{"rendered":"\u3010ELSI\u3011How changing environments can preserve an ancient microbial survival strategy"},"content":{"rendered":"\r\n<p>\u2015 Theory explains how a seemingly self-destructive behaviour known as \u201clatecomer killing<a href=\"#_ftn1\" id=\"_ftnref1\"><sup>[1]<\/sup><\/a>\u201d could persist for hundreds of millions of years \u2015<\/p>\r\n\r\n\r\n\r\n<p>&nbsp;<\/p>\r\n\r\n\r\n\r\n<figure class=\"wp-block-image size-large\"><img decoding=\"async\" width=\"1024\" height=\"576\" src=\"https:\/\/www.initiative.ifs.isct.ac.jp\/kanri\/wp-content\/uploads\/2026\/09\/9e0a88cc9b2f23fc6253c70c468655fc-1024x576.jpg\" alt=\"\" class=\"wp-image-2098\" srcset=\"https:\/\/www.initiative.ifs.isct.ac.jp\/kanri\/wp-content\/uploads\/2026\/09\/9e0a88cc9b2f23fc6253c70c468655fc-1024x576.jpg 1024w, https:\/\/www.initiative.ifs.isct.ac.jp\/kanri\/wp-content\/uploads\/2026\/09\/9e0a88cc9b2f23fc6253c70c468655fc-800x450.jpg 800w, https:\/\/www.initiative.ifs.isct.ac.jp\/kanri\/wp-content\/uploads\/2026\/09\/9e0a88cc9b2f23fc6253c70c468655fc-768x432.jpg 768w, https:\/\/www.initiative.ifs.isct.ac.jp\/kanri\/wp-content\/uploads\/2026\/09\/9e0a88cc9b2f23fc6253c70c468655fc.jpg 1440w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" \/>\r\n<figcaption class=\"wp-element-caption\">Researchers have uncovered how an ancient toxin-based survival strategy in yeast has persisted for hundreds of millions of years, revealing how fluctuating environments can shape microbial evolution (The image is for illustrative purposes only. Courtesy of iStock).<\/figcaption>\r\n<\/figure>\r\n\r\n\r\n\r\n<p>&nbsp;<\/p>\r\n\r\n\r\n\r\n<p>A research group led by Tetsuhiro Hatakeyama from the Earth-Life Science Institute (ELSI) at Institute of Science Tokyo have revealed how a seemingly self-destructive survival strategy could persist in yeast for hundreds of millions of years. By combining population-dynamics theory with comparative experimental observations, the team found that alternating periods of nutrient-rich conditions and starvation can stabilise this unusual behaviour over evolutionary timescales.<br \/>The findings were published in the<strong><i> Journal of the Royal Society Interface<\/i><\/strong>.<\/p>\r\n\r\n\r\n\r\n<p>&nbsp;<\/p>\r\n\r\n\r\n\r\n<p><strong>Reference<\/strong><br \/>Tetsuhiro S. Hatakeyama, Kunihiko Kaneko, Kunihiro Ohta and Arisa H. Oda. Evolvability of the toxin-adaptation system in yeast <strong><i>J R Soc Interface<\/i><\/strong> DOI: <a href=\"https:\/\/doi.org\/10.1098\/rsif.2026.0345\">10.1098\/rsif.2026.0345<\/a><\/p>\r\n\r\n\r\n\r\n<p>The full press release is available on <a href=\"https:\/\/www.isct.ac.jp\/en\/news\/of15rqb9wtre\">this page<\/a>.<\/p>\r\n\r\n\r\n\r\n<p>For more information on ELSI, please visit the <a href=\"https:\/\/www.elsi.jp\/en\/\">website<\/a>.<\/p>\r\n\r\n\r\n\r\n<p><br \/><strong>Glossary<\/strong><br \/><a href=\"#_ftnref1\" id=\"_ftn1\">[1]<\/a> Latecomer killing<br \/>A survival mechanism where yeast secretes a toxin during glucose starvation while acquiring immunity to it, thereby eliminating surrounding microorganisms\u2014both same and different species\u2014without dying itself.<\/p>\r\n\r\n\r\n\r\n<p>&nbsp;<\/p>\r\n\r\n<div id=\"simple-translate\" class=\"simple-translate-system-theme\">\r\n<div>\r\n<div class=\"simple-translate-button isShow\" style=\"background-image: url('chrome-extension:\/\/ibplnjkanclpjokhdolnendpplpjiace\/icons\/512.png'); height: 22px; width: 22px; top: 1014px; left: 15px;\"><\/div>\r\n<div class=\"simple-translate-panel \" style=\"width: 300px; height: 200px; top: 0px; left: 0px; font-size: 13px;\">\r\n<div class=\"simple-translate-result-wrapper\" style=\"overflow: hidden;\">\r\n<div class=\"simple-translate-move\" draggable=\"true\"><\/div>\r\n<div class=\"simple-translate-result-contents\">\r\n<p class=\"simple-translate-result\" dir=\"auto\"><\/p>\r\n<p class=\"simple-translate-candidate\" dir=\"auto\"><\/p>\r\n<\/div>\r\n<\/div>\r\n<\/div>\r\n<\/div>\r\n<\/div>","protected":false},"featured_media":1998,"template":"","initiative":[4],"report_theme":[7],"media":[13],"report_tag":[29],"member":[31],"class_list":["post-2100","report","type-report","status-publish","has-post-thumbnail","hentry","initiative-social-phase-transition","report_theme-report_theme-7","media-media-13","report_tag-elsi","member-tetsuhiro-hatakeyama","en-US"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>\u3010ELSI\u3011How changing environments can preserve an ancient microbial survival strategy | IFs<\/title>\n<meta name=\"description\" content=\"An international research group led by Associate Professor Tetsuhiro Hatakeyama of ELSI built population-dynamics theory with comparative experimental observations to resolve an evolutionary mystery in yeast. The team found that alternating periods of nutrient-rich conditions and starvation can stabilise this unusual behaviour over evolutionary timescales.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.initiative.ifs.isct.ac.jp\/en\/report\/rid2100\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"\u3010ELSI\u3011How changing environments can preserve an ancient microbial survival strategy | IFs\" \/>\n<meta property=\"og:description\" content=\"An international research group led by Associate Professor Tetsuhiro Hatakeyama of ELSI built population-dynamics theory with comparative experimental observations to resolve an evolutionary mystery in yeast. 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