{"id":229956,"date":"2024-08-15T20:04:00","date_gmt":"2024-08-15T20:04:00","guid":{"rendered":"https:\/\/newhampshiredigitalnews.com\/index.php\/2024\/08\/15\/tardigrade-fossils-reveal-when-water-bears-became-indestructible\/"},"modified":"2024-08-15T20:04:00","modified_gmt":"2024-08-15T20:04:00","slug":"tardigrade-fossils-reveal-when-water-bears-became-indestructible","status":"publish","type":"post","link":"https:\/\/newhampshiredigitalnews.com\/index.php\/2024\/08\/15\/tardigrade-fossils-reveal-when-water-bears-became-indestructible\/","title":{"rendered":"Tardigrade Fossils Reveal When \u2018Water Bears\u2019 Became Indestructible"},"content":{"rendered":"<p> <br \/>\n<\/p>\n<div>\n<div class=\"article_date_and_read_time-NVTxn\">\n<p class=\"article_pub_date-mp61W\">August 15, 2024<\/p>\n<p class=\"article_read_time-k3gXv\">2<!-- --> min read<\/p>\n<\/div>\n<p>Tardigrade Fossils Reveal When \u2018Water Bears\u2019 Became Indestructible<\/p>\n<div class=\"article_dek-VydJj\">\n<p>252 million years ago, tardigrades may have escaped extinction using this one weird trick<\/p>\n<\/div>\n<p class=\"article_authors-OZP24\">By <a class=\"article_authors__link-M7PNB\" href=\"https:\/\/www.scientificamerican.com\/author\/mindy-weisberger\/\">Mindy Weisberger<\/a><\/p>\n<figure class=\"lead_image-3nDcx\" data-disable-apple-news=\"true\"><img decoding=\"async\" src=\"https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=600\" alt=\"Illustration of two tardigrades\" srcset=\"https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=600 600w, https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=900 900w, https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=1000 1000w, https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=1200 1200w, https:\/\/static.scientificamerican.com\/dam\/m\/55b377e7a9ce7040\/original\/Tardigrade_illustration.jpg?w=1350 1350w\" sizes=\"(min-width: 900px) 900px, (min-resolution: 2dppx) 75vw, (min-resolution: 2.1dppx) 50vw, 100vw\" class=\"lead_image__img-e3fpf\" style=\"--w:4000;--h:3000\" fetchpriority=\"high\"\/><figcaption class=\"lead_image__figcaption-Y9Y9T\">\n<div class=\"lead_image__caption-18F8P\">\n<p>An artistic reconstruction of two tardigrade fossil specimens that were preserved in amber and analyzed in a recent study.<\/p>\n<\/div>\n<div class=\"lead_image__credit-jEB44\">\n<p>\u201cCretaceous Amber Inclusions Illuminate the Evolutionary Origin of Tardigrades,\u201d by M.A. Mapalo et al., in Communications Biology, Vol. 7, No. 953. Published online August 6, 2024<\/p>\n<\/div>\n<\/figcaption><\/figure>\n<\/div>\n<div>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">Microscopic tardigrades\u2014plump, eight-legged arthropod relatives\u2014<a href=\"https:\/\/www.scientificamerican.com\/article\/cute-little-tardigrades-are-basically-indestructible-and-scientists-just-figured-out-one-reason-why\/\">are nearly indestructible<\/a>, and that superpower may have helped them weather the deadliest mass extinction in Earth\u2019s history, according to a new analysis of tardigrade fossils in amber. The study is the first to estimate when this ability evolved.<\/p>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">Tardigrades, also called water bears, can withstand extreme heat, cold, pressure and radiation. They survive hostile environments through a process called cryptobiosis, in which they expel most of the water in their body and enter a suspended metabolic state. Two major tardigrade lines possess this ability.<\/p>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">There are only four known tardigrade fossils. All are preserved in amber, including two inside an amber pebble that was found in Canada in the 1940s and dates from 84 million to 71 million years ago. One of the pebble\u2019s tardigrades, representing a species named <i>Beorn leggi,<\/i> was described in 1963. The other was too small to be identified at the time, says <a href=\"https:\/\/mcz.harvard.edu\/people\/marc-mapalo\">Marc Mapalo<\/a>, a graduate student at Harvard University\u2019s Museum of Comparative Zoology.<\/p>\n<hr\/>\n<h2 class=\"article__block-KZIY9\">On supporting science journalism<\/h2>\n<p class=\"article__block-KZIY9\">If you&#8217;re enjoying this article, consider supporting our award-winning journalism by<!-- --> <a href=\"https:\/\/www.scientificamerican.com\/getsciam\/\">subscribing<\/a>. By purchasing a subscription you are helping to ensure the future of impactful stories about the discoveries and ideas shaping our world today.<\/p>\n<hr\/>\n<figure class=\"article__image-EQ52t text-I8M0u\" data-block=\"contentful\/image\" style=\"--w:2364;--h:3459\" data-disable-apple-news=\"true\"><picture><source media=\"(min-width: 0px)\" srcset=\"https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1000 1000w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1200 1200w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1350 1350w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=2000 2000w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=600 600w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=750 750w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=900 900w\" sizes=\"(min-width: 2000px) 2000px, (min-resolution: 3dppx) 50vw, (min-resolution: 2dppx) 75vw, 100vw\"\/><img loading=\"lazy\" alt=\"Tardigrades\" decoding=\"async\" loading=\"lazy\" src=\"https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=900\" width=\"2364\" height=\"3459\" srcset=\"https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1000 1000w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1200 1200w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=1350 1350w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=2000 2000w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=600 600w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=750 750w, https:\/\/static.scientificamerican.com\/dam\/m\/3299e5bf1ed3de66\/original\/Fig-1.png?w=900 900w\" sizes=\"auto, (min-width: 2000px) 2000px, (min-resolution: 3dppx) 50vw, (min-resolution: 2dppx) 75vw, 100vw\"\/><\/picture><figcaption>\n<div>\n<p>The tardigrade <i>Beorn leggi,<\/i> photographed with transmitted light under a compound microscope (<i>A<\/i>), photographed with autofluorescence under a confocal microscope (<i>B<\/i>) and represented as a schematic drawing (<i>C<\/i>).<\/p>\n<\/div>\n<div class=\"credits-03JVP\">\n<p>From \u201cCretaceous Amber Inclusions Illuminate the Evolutionary Origin of Tardigrades,\u201d by Marc A. Mapalo et al., in <i>Communications Biology,<\/i> Vol.\u00a07, Article No. 953. Published online August 6, 2024<\/p>\n<\/div>\n<\/figcaption><\/figure>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">For a new study <a href=\"https:\/\/www.nature.com\/articles\/s42003-024-06643-2\">in <\/a><i>Nature Communications Biology,<\/i> Mapalo and his colleagues used high-contrast microscopy to <a href=\"https:\/\/www.nature.com\/articles\/s42003-024-06643-2\">uncover previously unseen details<\/a> in both specimens\u2019 claws, \u201cwhich are very important taxonomic characteristics in tardigrades,\u201d Mapalo says. Tardigrade body plans have varied little for millions of years, so the scientists\u2019 new images of the claw shapes offered crucial information about where these amber-trapped fossils belonged, says University of Chicago organismal biologist <a href=\"https:\/\/oba.bsd.uchicago.edu\/faculty\/jasmine-nirody\">Jasmine Nirody<\/a>, who was not involved in the research.<\/p>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">The authors determined the smaller tardigrade was a new genus and species: <i>Aerobius dactylus<\/i>. They also revised <i>B. leggi<\/i>\u2019s description and classification based on joints in its claws. Both species were placed in the same tardigrade superfamily Hypsibioidea, and <i>B. leggi<\/i> was formally moved into the family Hypsibiidae. This rearrangement placed the smaller tardigrade in the same major line (the class Eutardigrada) as the larger one, whereas researchers had previously thought the latter was in the other line.<\/p>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">The resulting recalibration of the tardigrade family tree let the researchers calculate when the two lines diverged\u2014putting a latest date on the likely acquisition of cryptobiosis. Their work suggests cryptobiosis appeared in tardigrades during the Carboniferous period (359 million to 299 million years ago), predating a deadly event known as the Permian extinction, or the \u201cGreat Dying,\u201d which occurred about 252 million years ago. The authors suggest that cryptobiosis may have helped tardigrades survive the event, which wiped out 96 percent of marine life and 70 percent of life on land.<\/p>\n<p class=\"article__block-KZIY9\" data-block=\"sciam\/paragraph\">The evolution of cryptobiosis is challenging to study in part because tardigrade fossils are so scarce, Mapalo says. Additional fossil discoveries will help scientists pin down details about the appearance of this unique survival strategy. \u201cHopefully, by sharing this result, we will entice other people to be aware that fossil tardigrades exist and there are still more to be found,\u201d he says.<\/p>\n<\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/www.scientificamerican.com\/article\/tardigrade-fossils-reveal-when-water-bears-became-indestructible\/\">Source link <\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>August 15, 2024 2 min read Tardigrade Fossils Reveal When \u2018Water Bears\u2019 Became Indestructible 252 million years ago, tardigrades may have escaped extinction using this<\/p>\n","protected":false},"author":1,"featured_media":229957,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_monsterinsights_skip_tracking":false,"footnotes":""},"categories":[179],"tags":[],"class_list":["post-229956","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science"],"aioseo_notices":[],"_links":{"self":[{"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/posts\/229956","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/comments?post=229956"}],"version-history":[{"count":0,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/posts\/229956\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/media\/229957"}],"wp:attachment":[{"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/media?parent=229956"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/categories?post=229956"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/newhampshiredigitalnews.com\/index.php\/wp-json\/wp\/v2\/tags?post=229956"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}