Literature DB >> 30692629

Bacterial and protozoan dynamics upon thawing and freezing of an active layer permafrost soil.

Morten Schostag1,2,3, Anders Priemé1,2, Samuel Jacquiod2,4, Jakob Russel2, Flemming Ekelund2, Carsten Suhr Jacobsen5,6,7.   

Abstract

The active layer of soil overlaying permafrost in the Arctic is subjected to annual changes in temperature and soil chemistry, which we hypothesize to affect the overall soil microbial community. We investigated changes in soil microorganisms at different temperatures during warming and freezing of the active layer soil from Svalbard, Norway. Soil community data were obtained by direct shotgun sequencing of total extracted RNA. No changes in soil microbial communities were detected when warming from -10 to -2 °C or when freezing from -2 to -10 °C. In contrast, within a few days we observed changes when warming from -2 to +2 °C with a decrease in fungal rRNA and an increase in several OTUs belonging to Gemmatimonadetes, Bacteroidetes and Betaproteobacteria. Even more substantial changes occurred when incubating at 2 °C for 16 days, with declines in total fungal potential activity and decreases in oligotrophic members from Actinobacteria and Acidobacteria. Additionally, we detected an increase in transcriptome sequences of bacterial phyla Bacteriodetes, Firmicutes, Betaproteobacteria and Gammaproteobacteria-collectively presumed to be copiotrophic. Furthermore, we detected an increase in putative bacterivorous heterotrophic flagellates, likely due to predation upon the bacterial community via grazing. Although this grazing activity may explain relatively large changes in the bacterial community composition, no changes in total 16S rRNA gene copy number were observed and the total RNA level remained stable during the incubation. Together, these results are showing the first comprehensive ecological evaluation across prokaryotic and eukaryotic microbial communities on thawing and freezing of soil by application of the TotalRNA technique.

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Year:  2019        PMID: 30692629      PMCID: PMC6474304          DOI: 10.1038/s41396-019-0351-x

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  67 in total

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10.  Distinct summer and winter bacterial communities in the active layer of Svalbard permafrost revealed by DNA- and RNA-based analyses.

Authors:  Morten Schostag; Marek Stibal; Carsten S Jacobsen; Jacob Bælum; Neslihan Taş; Bo Elberling; Janet K Jansson; Philipp Semenchuk; Anders Priemé
Journal:  Front Microbiol       Date:  2015-04-30       Impact factor: 5.640

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Authors:  William R Shoemaker; Stuart E Jones; Mario E Muscarella; Megan G Behringer; Brent K Lehmkuhl; Jay T Lennon
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6.  Organic Carbon Mineralization and Bacterial Community of Active Layer Soils Response to Short-Term Warming in the Great Hing'an Mountains of Northeast China.

Authors:  Xingfeng Dong; Chao Liu; Dalong Ma; Yufei Wu; Haoran Man; Xiangwen Wu; Miao Li; Shuying Zang
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7.  Heat Shock Response of the Active Microbiome From Perennial Cave Ice.

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8.  Microbial Community Changes in 26,500-Year-Old Thawing Permafrost.

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Journal:  Front Microbiol       Date:  2022-03-24       Impact factor: 5.640

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10.  Bacterial Communities in Alkaline Saline Soils Amended with Young Maize Plants or Its (Hemi)Cellulose Fraction.

Authors:  Valentín Pérez-Hernández; Mario Hernández-Guzmán; Marco Luna-Guido; Yendi E Navarro-Noya; Elda M Romero-Tepal; Luc Dendooven
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