Dispersal of bacteria and stimulation of permafrost decomposition by Collembola
Contrary to most soils, permafrost soils have the atypical feature of being almost entirely deprived of soil fauna. Abiotic constraints on the fate of permafrost carbon after thawing are increasingly understood, but biotic constraints remain scarcely investigated. Incubation studies, essential to es...
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ftslunivuppsala:oai:pub.epsilon.slu.se:30026 2023-05-15T15:12:41+02:00 Dispersal of bacteria and stimulation of permafrost decomposition by Collembola Monteux, Sylvain Marien, Janine Krab, Eveline 2022 application/pdf https://pub.epsilon.slu.se/30026/ https://pub.epsilon.slu.se/30026/1/monteaux-s-et-al-20230103.pdf en eng eng https://pub.epsilon.slu.se/30026/1/monteaux-s-et-al-20230103.pdf Monteux, Sylvain and Marien, Janine and Krab, Eveline (2022). Dispersal of bacteria and stimulation of permafrost decomposition by Collembola. Biogeosciences. 19 :17 , 4089-4105 [Research article] Soil Science Research article NonPeerReviewed 2022 ftslunivuppsala 2023-01-05T17:13:50Z Contrary to most soils, permafrost soils have the atypical feature of being almost entirely deprived of soil fauna. Abiotic constraints on the fate of permafrost carbon after thawing are increasingly understood, but biotic constraints remain scarcely investigated. Incubation studies, essential to estimate effects of permafrost thaw on carbon cycling, typically measure the consequences of permafrost thaw in isolation from the topsoil and thus do not account for the effects of altered biotic interactions because of e.g. colonization by soil fauna. Microarthropods facilitate the dispersal of microorganisms in soil, both on their cuticle (ectozoochory) and through their digestive tract (endozoochory), which may be particularly important in permafrost soils, considering that microbial community composition can strongly constrain permafrost biogeochemical processes.Here we tested how a model species of microarthropod (the Collembola Folsomia candida) affected aerobic CO2 production of permafrost soil over a 25 d incubation. By using Collembola stock cultures grown on permafrost soil or on an arctic topsoil, we aimed to assess the potential for endo- and ectozoochory of soil bacteria, while cultures grown on gypsum and sprayed with soil suspensions would allow the observation of only ectozoochory.The presence of Collembola introduced bacterial amplicon sequence variants (ASVs) absent in the no-Collembola control, regardless of their microbiome manipulation, when considering presence–absence metrics (unweighted UniFrac metrics), which resulted in increased species richness. However, these introduced ASVs did not induce changes in bacterial community composition as a whole (accounting for relative abundances, weighted UniFrac), which might only become detectable in the longer term.CO2 production was increased by 25.85 % in the presence of Collembola, about half of which could be attributed to Collembola respiration based on respiration rates measured in the absence of soil. We argue that the rest of the CO2 being ... Article in Journal/Newspaper Arctic permafrost Swedish University of Agricultural Sciences (SLU): Epsilon Open Archive Arctic |
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Open Polar |
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Swedish University of Agricultural Sciences (SLU): Epsilon Open Archive |
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ftslunivuppsala |
language |
English |
topic |
Soil Science |
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Soil Science Monteux, Sylvain Marien, Janine Krab, Eveline Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
topic_facet |
Soil Science |
description |
Contrary to most soils, permafrost soils have the atypical feature of being almost entirely deprived of soil fauna. Abiotic constraints on the fate of permafrost carbon after thawing are increasingly understood, but biotic constraints remain scarcely investigated. Incubation studies, essential to estimate effects of permafrost thaw on carbon cycling, typically measure the consequences of permafrost thaw in isolation from the topsoil and thus do not account for the effects of altered biotic interactions because of e.g. colonization by soil fauna. Microarthropods facilitate the dispersal of microorganisms in soil, both on their cuticle (ectozoochory) and through their digestive tract (endozoochory), which may be particularly important in permafrost soils, considering that microbial community composition can strongly constrain permafrost biogeochemical processes.Here we tested how a model species of microarthropod (the Collembola Folsomia candida) affected aerobic CO2 production of permafrost soil over a 25 d incubation. By using Collembola stock cultures grown on permafrost soil or on an arctic topsoil, we aimed to assess the potential for endo- and ectozoochory of soil bacteria, while cultures grown on gypsum and sprayed with soil suspensions would allow the observation of only ectozoochory.The presence of Collembola introduced bacterial amplicon sequence variants (ASVs) absent in the no-Collembola control, regardless of their microbiome manipulation, when considering presence–absence metrics (unweighted UniFrac metrics), which resulted in increased species richness. However, these introduced ASVs did not induce changes in bacterial community composition as a whole (accounting for relative abundances, weighted UniFrac), which might only become detectable in the longer term.CO2 production was increased by 25.85 % in the presence of Collembola, about half of which could be attributed to Collembola respiration based on respiration rates measured in the absence of soil. We argue that the rest of the CO2 being ... |
format |
Article in Journal/Newspaper |
author |
Monteux, Sylvain Marien, Janine Krab, Eveline |
author_facet |
Monteux, Sylvain Marien, Janine Krab, Eveline |
author_sort |
Monteux, Sylvain |
title |
Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
title_short |
Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
title_full |
Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
title_fullStr |
Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
title_full_unstemmed |
Dispersal of bacteria and stimulation of permafrost decomposition by Collembola |
title_sort |
dispersal of bacteria and stimulation of permafrost decomposition by collembola |
publishDate |
2022 |
url |
https://pub.epsilon.slu.se/30026/ https://pub.epsilon.slu.se/30026/1/monteaux-s-et-al-20230103.pdf |
geographic |
Arctic |
geographic_facet |
Arctic |
genre |
Arctic permafrost |
genre_facet |
Arctic permafrost |
op_relation |
https://pub.epsilon.slu.se/30026/1/monteaux-s-et-al-20230103.pdf Monteux, Sylvain and Marien, Janine and Krab, Eveline (2022). Dispersal of bacteria and stimulation of permafrost decomposition by Collembola. Biogeosciences. 19 :17 , 4089-4105 [Research article] |
_version_ |
1766343338197254144 |