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Genome-centric view of carbon processing in thawing permafrost

Authors :
Woodcroft, Ben
Singleton, Caitlin
Boyd, Joel
Evans, Paul
Emerson, Joanne
Zayed, Ahmed
Hoelzle, Robert
Lamberton, Timothy
McCalley, Carmody
Hodgkins, Suzanne
Wilson, Rachel
Purvine, Samuel
Nicora, Carrie
Li, Changsheng
Frolking, Steve
Chanton, Jeffrey
Crill, Patrick
Saleska, Scott
Rich, Virginia
Tyson, Gene
Source :
Nature; August 2018, Vol. 560 Issue: 7716 p49-54, 6p
Publication Year :
2018

Abstract

As global temperatures rise, large amounts of carbon sequestered in permafrost are becoming available for microbial degradation. Accurate prediction of carbon gas emissions from thawing permafrost is limited by our understanding of these microbial communities. Here we use metagenomic sequencing of 214 samples from a permafrost thaw gradient to recover 1,529 metagenome-assembled genomes, including many from phyla with poor genomic representation. These genomes reflect the diversity of this complex ecosystem, with genus-level representatives for more than sixty per cent of the community. Meta-omic analysis revealed key populations involved in the degradation of organic matter, including bacteria whose genomes encode a previously undescribed fungal pathway for xylose degradation. Microbial and geochemical data highlight lineages that correlate with the production of greenhouse gases and indicate novel syntrophic relationships. Our findings link changing biogeochemistry to specific microbial lineages involved in carbon processing, and provide key information for predicting the effects of climate change on permafrost systems. Analysis of more than 1,500 microbial genomes sheds light on the processing of carbon released as permafrost thaws.

Details

Language :
English
ISSN :
00280836 and 14764687
Volume :
560
Issue :
7716
Database :
Supplemental Index
Journal :
Nature
Publication Type :
Periodical
Accession number :
ejs50606268
Full Text :
https://doi.org/10.1038/s41586-018-0338-1