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A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva

Some organisms in nature have developed the ability to enter a state of suspended metabolism called cryptobiosis when environmental conditions are unfavorable. This state-transition requires execution of a combination of genetic and biochemical pathways that enable the organism to survive for prolon...

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Autores principales: Shatilovich, Anastasia, Gade, Vamshidhar R., Pippel, Martin, Hoffmeyer, Tarja T., Tchesunov, Alexei V., Stevens, Lewis, Winkler, Sylke, Hughes, Graham M., Traikov, Sofia, Hiller, Michael, Rivkina, Elizaveta, Schiffer, Philipp H., Myers, Eugene W., Kurzchalia, Teymuras V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10374039/
https://www.ncbi.nlm.nih.gov/pubmed/37498820
http://dx.doi.org/10.1371/journal.pgen.1010798
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author Shatilovich, Anastasia
Gade, Vamshidhar R.
Pippel, Martin
Hoffmeyer, Tarja T.
Tchesunov, Alexei V.
Stevens, Lewis
Winkler, Sylke
Hughes, Graham M.
Traikov, Sofia
Hiller, Michael
Rivkina, Elizaveta
Schiffer, Philipp H.
Myers, Eugene W.
Kurzchalia, Teymuras V.
author_facet Shatilovich, Anastasia
Gade, Vamshidhar R.
Pippel, Martin
Hoffmeyer, Tarja T.
Tchesunov, Alexei V.
Stevens, Lewis
Winkler, Sylke
Hughes, Graham M.
Traikov, Sofia
Hiller, Michael
Rivkina, Elizaveta
Schiffer, Philipp H.
Myers, Eugene W.
Kurzchalia, Teymuras V.
author_sort Shatilovich, Anastasia
collection PubMed
description Some organisms in nature have developed the ability to enter a state of suspended metabolism called cryptobiosis when environmental conditions are unfavorable. This state-transition requires execution of a combination of genetic and biochemical pathways that enable the organism to survive for prolonged periods. Recently, nematode individuals have been reanimated from Siberian permafrost after remaining in cryptobiosis. Preliminary analysis indicates that these nematodes belong to the genera Panagrolaimus and Plectus. Here, we present precise radiocarbon dating indicating that the Panagrolaimus individuals have remained in cryptobiosis since the late Pleistocene (~46,000 years). Phylogenetic inference based on our genome assembly and a detailed morphological analysis demonstrate that they belong to an undescribed species, which we named Panagrolaimus kolymaensis. Comparative genome analysis revealed that the molecular toolkit for cryptobiosis in P. kolymaensis and in C. elegans is partly orthologous. We show that biochemical mechanisms employed by these two species to survive desiccation and freezing under laboratory conditions are similar. Our experimental evidence also reveals that C. elegans dauer larvae can remain viable for longer periods in suspended animation than previously reported. Altogether, our findings demonstrate that nematodes evolved mechanisms potentially allowing them to suspend life over geological time scales.
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spelling pubmed-103740392023-07-28 A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva Shatilovich, Anastasia Gade, Vamshidhar R. Pippel, Martin Hoffmeyer, Tarja T. Tchesunov, Alexei V. Stevens, Lewis Winkler, Sylke Hughes, Graham M. Traikov, Sofia Hiller, Michael Rivkina, Elizaveta Schiffer, Philipp H. Myers, Eugene W. Kurzchalia, Teymuras V. PLoS Genet Research Article Some organisms in nature have developed the ability to enter a state of suspended metabolism called cryptobiosis when environmental conditions are unfavorable. This state-transition requires execution of a combination of genetic and biochemical pathways that enable the organism to survive for prolonged periods. Recently, nematode individuals have been reanimated from Siberian permafrost after remaining in cryptobiosis. Preliminary analysis indicates that these nematodes belong to the genera Panagrolaimus and Plectus. Here, we present precise radiocarbon dating indicating that the Panagrolaimus individuals have remained in cryptobiosis since the late Pleistocene (~46,000 years). Phylogenetic inference based on our genome assembly and a detailed morphological analysis demonstrate that they belong to an undescribed species, which we named Panagrolaimus kolymaensis. Comparative genome analysis revealed that the molecular toolkit for cryptobiosis in P. kolymaensis and in C. elegans is partly orthologous. We show that biochemical mechanisms employed by these two species to survive desiccation and freezing under laboratory conditions are similar. Our experimental evidence also reveals that C. elegans dauer larvae can remain viable for longer periods in suspended animation than previously reported. Altogether, our findings demonstrate that nematodes evolved mechanisms potentially allowing them to suspend life over geological time scales. Public Library of Science 2023-07-27 /pmc/articles/PMC10374039/ /pubmed/37498820 http://dx.doi.org/10.1371/journal.pgen.1010798 Text en © 2023 Shatilovich et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shatilovich, Anastasia
Gade, Vamshidhar R.
Pippel, Martin
Hoffmeyer, Tarja T.
Tchesunov, Alexei V.
Stevens, Lewis
Winkler, Sylke
Hughes, Graham M.
Traikov, Sofia
Hiller, Michael
Rivkina, Elizaveta
Schiffer, Philipp H.
Myers, Eugene W.
Kurzchalia, Teymuras V.
A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title_full A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title_fullStr A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title_full_unstemmed A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title_short A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva
title_sort novel nematode species from the siberian permafrost shares adaptive mechanisms for cryptobiotic survival with c. elegans dauer larva
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10374039/
https://www.ncbi.nlm.nih.gov/pubmed/37498820
http://dx.doi.org/10.1371/journal.pgen.1010798
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