{"id":260667,"date":"2026-01-31T07:58:18","date_gmt":"2026-01-31T07:58:18","guid":{"rendered":"https:\/\/www.newsbeep.com\/nz\/260667\/"},"modified":"2026-01-31T07:58:18","modified_gmt":"2026-01-31T07:58:18","slug":"scientists-discover-molecule-in-space-that-hints-at-origin-of-life","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/nz\/260667\/","title":{"rendered":"Scientists discover molecule in space that hints at origin of life"},"content":{"rendered":"<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122i1v001z26p4ckbp0qfu@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Scientists have discovered the largest organic molecule containing sulfur \u2014 a key ingredient for life \u2014 ever identified in interstellar space. The researchers call the discovery a \u201cmissing link\u201d in scientists\u2019 understanding of the cosmic origins of life\u2019s chemistry.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00023b641bs0tjmn@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Sulfur is the 10th most abundant element in the universe and a critical component of amino acids, proteins and enzymes on Earth. But while researchers had previously found sulfur-bearing molecules similar to the newly discovered one in comets and meteorites, there was a puzzling lack of large molecules including sulfur in <a href=\"https:\/\/www.cfa.harvard.edu\/research\/topic\/interstellar-medium-and-molecular-clouds\" target=\"_blank\" rel=\"nofollow noopener\">interstellar space<\/a> \u2014 the vast region between stars that is scattered with clouds of dust and gas.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00033b64happ9chm@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cSulfur came to Earth from space long, long ago,\u201d said Mitsunori Araki, a scientist at the Max Planck Institute for Extraterrestrial Physics in Germany and lead author of a <a href=\"https:\/\/www.nature.com\/articles\/s41550-025-02749-7\" target=\"_blank\" rel=\"nofollow noopener\">study<\/a> on the discovery, which was published last week in the journal Nature Astronomy.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00043b64jbnu1ha5@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cHowever, we have only found a very limited amount of sulfur-bearing molecules in space, which is strange. It should exist in huge amounts, but it\u2019s very difficult to find.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00053b64yfwapwjc@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            A different team of researchers <a href=\"https:\/\/olemiss.edu\/news\/2025\/08\/chemists-help-solve-mystery-of-missing-space-sulfur\/index.html\" target=\"_blank\" rel=\"nofollow noopener\">previously suggested<\/a> that sulfur might appear to be rare in space because it\u2019s trapped in cosmic ice \u2014 hiding in plain sight rather than missing.\n    <\/p>\n<p>       <img decoding=\"async\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/01\/gettyimages-1157360860.jpg\" alt=\"Extracted sulphur on Mount Ijen in Indonesia. Sulfur is a key ingredient for life.\" class=\"image_large__dam-img image_large__dam-img--loading\" onload=\"this.classList.remove('image_large__dam-img--loading')\" onerror=\"imageLoadError(this)\" height=\"2000\" width=\"3000\" loading=\"lazy\"\/><\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00063b648pnibob8@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            The new detection, therefore, adds an important piece to this puzzle. \u201cThis is the largest sulfur-bearing molecule ever found in space, at 13 atoms,\u201d Araki said. \u201cBefore this one, the largest only had nine atoms, but it was already a rare case, because most detected sulfur-bearing molecules only had three, four or five atoms.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00073b64mgzukdrm@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Finding larger molecules is important, he added, because it helps to fill an existing gap between simple chemistry found in space and the more complex building blocks of life that have been discovered in comets and meteorites.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky00083b64cuzu3iph@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            The molecule, which also contains carbon and hydrogen, is called 2,5-cyclohexadiene-1-thione and adds to <a href=\"https:\/\/molecules-in.space\/\" target=\"_blank\" rel=\"nofollow noopener\">a growing catalog<\/a> of over 300 molecules observed in space so far. The finding, Araki said, suggests that many more molecules containing sulfur, perhaps even larger, could be detected in the future.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000a3b649uasdxwg@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            The molecule was <a href=\"https:\/\/www.mpe.mpg.de\/8130016\/news20260129\" target=\"_blank\" rel=\"nofollow noopener\">found<\/a> within a molecular cloud called G+0.693\u20130.027 about 27,000 <a href=\"https:\/\/www.cnn.com\/2023\/03\/31\/world\/bill-nye-light-year-scn\" rel=\"nofollow noopener\" target=\"_blank\">light years<\/a> from Earth, near the center of our galaxy.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000b3b64pc4r2r8s@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Molecular clouds are cold and dense concentrations of dust and gas that allow for the formation of molecules. They act as <a href=\"https:\/\/science.nasa.gov\/universe\/stars\/\" target=\"_blank\" rel=\"nofollow noopener\">stellar nurseries<\/a> as gravity creates clumps that eventually become baby stars.\n    <\/p>\n<p>       <img decoding=\"async\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/01\/54809196576-59e88854d5-o.jpg\" alt=\"Molecular clouds, such as the Sagittarius B2 molecular cloud seen here, act as stellar nurseries.\" class=\"image_large__dam-img image_large__dam-img--loading\" onload=\"this.classList.remove('image_large__dam-img--loading')\" onerror=\"imageLoadError(this)\" height=\"1095\" width=\"2487\" loading=\"lazy\"\/><\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000c3b64pltcm6bz@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cA molecular cloud is where star formation is happening,\u201d said Valerio Lattanzi, also a scientist at the Max Planck Institute for Extraterrestrial Physics and a coauthor of the study.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000d3b64oem73k42@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Eventually, Lattanzi added, some of these clouds will lead to the formation of planetary systems like our own solar system. \u201cThe ingredients that are embedded in the molecular cloud will be transferred to the planets,\u201d he said. \u201cWe are trying to find out what the ingredients that will eventually form life are, trying to understand how from simple molecules we get to life as we know it on Earth. And we are trying to add elements to this picture, one by one.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000e3b6451clvyvt@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Researchers first synthesized the molecule by applying an electric discharge to a substance called thiophenol \u2014 a foul-smelling liquid containing sulfur, carbon and hydrogen. They then obtained an extremely precise \u201cradio fingerprint\u201d of the molecule that they compared with existing telescope data from the observation of the cloud, collected by the IRAM-30m and the Yebes radio telescopes in Spain.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000f3b644mvgu4dq@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cWe had seen from earlier observation that sulfur molecules were quite abundant in this cloud,\u201d Lattanzi said. \u201cThat\u2019s why it was a very good target for us. We believe that one of the possible origins of life on Earth is through collisions and impacts of small body systems like comets and meteorites with our planet in the past, that probably brought complex molecules, including ones containing sulfur. So that\u2019s what we are trying to do \u2014 to connect these missing links in the path to eventually form life as we know it.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000h3b64h1lteq8j@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Kate Freeman, Evan Pugh University Professor of Geosciences at Penn State University, called the study \u201can exciting detective story made possible by powerful radio telescopes and a really good search strategy.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000i3b6420p5ujde@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Meteorites are known to have large and complex sulfur compounds, said Freeman, who was not involved in the research, and they likely delivered many of them to Earth to help set the stage for the chemistry of life.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000j3b64k9wlz6yw@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cYet, we didn\u2019t really know how these compounds ended up in meteorites or their precursor planetary bodies,\u201d she added in an email. \u201cNow we know there is at least a good possibility some of them could be derived from outside the solar system, from molecule-rich regions of our galaxy like the area studied by the authors.\u201d\n    <\/p>\n<p>       <img decoding=\"async\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/01\/dsc-0408-20.jpg\" alt=\"Study authors Christian Endres (left) and Mitsunori Araki work on an experiment in the lab.\" class=\"image_large__dam-img image_large__dam-img--loading\" onload=\"this.classList.remove('image_large__dam-img--loading')\" onerror=\"imageLoadError(this)\" height=\"1067\" width=\"1600\" loading=\"lazy\"\/><\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000k3b64t8v1ltrz@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Sulfur is one of only six elements essential to life on Earth and may have been a critical ingredient in the earliest life on Earth, providing vital fuel to ancient microbes, according to Sara Russell, a professor of planetary sciences at the Natural History Museum in London.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000l3b641z3ot504@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cThe presence of complex organic molecules in the centre of our Milky Way implies that biologically important materials may be everywhere in space,\u201d Russell, who did not participate in the study, said in an email. \u201cFinding such molecules such a long way from our home planet also suggests that similar processes may be happening elsewhere \u2014 it makes the presence of life existing on another planet that little bit more likely.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000m3b64ztjh2gcn@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            Ryan Fortenberry, an associate professor of chemistry and biochemistry at the University of Mississippi, said the findings excited him. \u201cSulfur as an atom exists in a very special place on the periodic table. It has a unique chemistry that allows molecules to do much more than what only oxygen, nitrogen, and carbon would allow,\u201d Fortenberry said via email. \u201cFinding molecules with sulfur in them helps us to better gauge where life could\u2019ve started, and where it could end up.\u201d\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000n3b64a49p4r9h@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            More than 50 years ago it was a miracle to find any molecules in space, added Fortenberry, who was also not part of the study.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000o3b64qyj2vjgk@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cThe common thinking was that the harsh environment would simply break them down \u2014 now we\u2019re finding molecules with 13 atoms and some with multiple dozen atoms,\u201d he said.\n    <\/p>\n<p class=\"paragraph-elevate inline-placeholder vossi-paragraph_elevate\" data-uri=\"cms.cnn.com\/_components\/paragraph\/instances\/cml122nky000p3b64h8gtir0d@published\" data-editable=\"text\" data-component-name=\"paragraph\" data-article-gutter=\"true\">\n            \u201cMolecules are more resilient than we gave them credit for, and telescopes have shown us that the chemistry of space is far richer than we could have imagined. I fully expect that we will find amino acids in space beyond our solar system.\u201d\n    <\/p>\n<p data-uri=\"cms.cnn.com\/_components\/editor-note\/instances\/cml13uwmq00013b6p9eghb7xl@published\" data-editable=\"text\" data-component-name=\"editor-note\" class=\"editor-note-elevate vossi-editor-note_elevate inline-placeholder \" data-article-gutter=\"true\">\n    Sign up for <a href=\"https:\/\/www.cnn.com\/newsletters\/wonder-theory?source=nl-acq_article\" rel=\"nofollow noopener\" target=\"_blank\">CNN\u2019s Wonder Theory science newsletter<\/a>. Explore the universe with news on fascinating discoveries, scientific advancements and more.<\/p>\n","protected":false},"excerpt":{"rendered":"Scientists have discovered the largest organic molecule containing sulfur \u2014 a key ingredient for life \u2014 ever identified&hellip;\n","protected":false},"author":2,"featured_media":260668,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[23],"tags":[111,139,69,147,392],"class_list":["post-260667","post","type-post","status-publish","format-standard","has-post-thumbnail","category-space","tag-new-zealand","tag-newzealand","tag-nz","tag-science","tag-space"],"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/260667","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/comments?post=260667"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/260667\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media\/260668"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media?parent=260667"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/categories?post=260667"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/tags?post=260667"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}