Landscape topography structures the soil microbiome in arctic polygonal tundra

The role of ecosystem structure in microbial activity related to greenhouse gas production is poorly understood. Here, Taş and colleagues show that microbial communities and ecosystem function vary across fine-scale topography in a polygonal tundra.

Bibliographic Details
Main Authors: Neslihan Taş, Emmanuel Prestat, Shi Wang, Yuxin Wu, Craig Ulrich, Timothy Kneafsey, Susannah G. Tringe, Margaret S. Torn, Susan S. Hubbard, Janet K. Jansson
Format: Article
Language:English
Published: Nature Publishing Group 2018-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-03089-z
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spelling doaj-6b0da9ba7c49428e899a7e605602d1852021-05-11T09:37:17ZengNature Publishing GroupNature Communications2041-17232018-02-019111310.1038/s41467-018-03089-zLandscape topography structures the soil microbiome in arctic polygonal tundraNeslihan Taş0Emmanuel Prestat1Shi Wang2Yuxin Wu3Craig Ulrich4Timothy Kneafsey5Susannah G. Tringe6Margaret S. Torn7Susan S. Hubbard8Janet K. Jansson9Earth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryDOE Joint Genome Institute (DOE-JGI)Earth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryEarth and Environmental Sciences Area, Lawrence Berkeley National LaboratoryBiological Sciences Division, Pacific Northwest National LaboratoryThe role of ecosystem structure in microbial activity related to greenhouse gas production is poorly understood. Here, Taş and colleagues show that microbial communities and ecosystem function vary across fine-scale topography in a polygonal tundra.https://doi.org/10.1038/s41467-018-03089-z
collection DOAJ
language English
format Article
sources DOAJ
author Neslihan Taş
Emmanuel Prestat
Shi Wang
Yuxin Wu
Craig Ulrich
Timothy Kneafsey
Susannah G. Tringe
Margaret S. Torn
Susan S. Hubbard
Janet K. Jansson
spellingShingle Neslihan Taş
Emmanuel Prestat
Shi Wang
Yuxin Wu
Craig Ulrich
Timothy Kneafsey
Susannah G. Tringe
Margaret S. Torn
Susan S. Hubbard
Janet K. Jansson
Landscape topography structures the soil microbiome in arctic polygonal tundra
Nature Communications
author_facet Neslihan Taş
Emmanuel Prestat
Shi Wang
Yuxin Wu
Craig Ulrich
Timothy Kneafsey
Susannah G. Tringe
Margaret S. Torn
Susan S. Hubbard
Janet K. Jansson
author_sort Neslihan Taş
title Landscape topography structures the soil microbiome in arctic polygonal tundra
title_short Landscape topography structures the soil microbiome in arctic polygonal tundra
title_full Landscape topography structures the soil microbiome in arctic polygonal tundra
title_fullStr Landscape topography structures the soil microbiome in arctic polygonal tundra
title_full_unstemmed Landscape topography structures the soil microbiome in arctic polygonal tundra
title_sort landscape topography structures the soil microbiome in arctic polygonal tundra
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2018-02-01
description The role of ecosystem structure in microbial activity related to greenhouse gas production is poorly understood. Here, Taş and colleagues show that microbial communities and ecosystem function vary across fine-scale topography in a polygonal tundra.
url https://doi.org/10.1038/s41467-018-03089-z
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