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Impact of fire on active layer and permafrost microbial communities and metagenomes in an upland Alaskan boreal forest
by
Waldrop, Mark P
, Jansson, Janet K
, Wickland, Kimberley P
, Jorgenson, Torre
, Prestat, Emmanuel
, McFarland, Jack W
, Knight, Rob
, Taş, Neslihan
, Berhe, Asmeret Asefaw
in
631/158/2165
/ 631/158/2465
/ 631/326/2565/2142
/ Alaska
/ Biodiversity
/ Biomedical and Life Sciences
/ boreal forest
/ Boreal forests
/ Carbohydrate metabolism
/ Carbohydrates
/ Carbon - analysis
/ Carbon dioxide
/ Climate change
/ Community structure
/ Coniferous forests
/ Creeks
/ Ecology
/ Emission
/ Emissions
/ ENVIRONMENTAL SCIENCES
/ Environmental Sciences & Ecology
/ Enzymatic activity
/ Evolutionary Biology
/ Feedback loops
/ Fires
/ Fluxes
/ Gene sequencing
/ Geochemistry
/ Greenhouse gases
/ Life Sciences
/ Metabolism
/ Metagenome
/ metagenomics
/ Methane
/ Methanogenesis
/ Microbial activity
/ microbial community response
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiomes
/ Microorganisms
/ Negative feedback
/ Nitrogen cycle
/ Nitrous oxide
/ Original
/ original-article
/ Permafrost
/ Permafrost - chemistry
/ Permafrost - microbiology
/ Reservoirs
/ Respiration
/ Soil depth
/ Soil Microbiology
/ Soil moisture
/ Soil surfaces
/ Taiga
/ Thawing
/ wildfire
/ Wildfires
2014
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Impact of fire on active layer and permafrost microbial communities and metagenomes in an upland Alaskan boreal forest
by
Waldrop, Mark P
, Jansson, Janet K
, Wickland, Kimberley P
, Jorgenson, Torre
, Prestat, Emmanuel
, McFarland, Jack W
, Knight, Rob
, Taş, Neslihan
, Berhe, Asmeret Asefaw
in
631/158/2165
/ 631/158/2465
/ 631/326/2565/2142
/ Alaska
/ Biodiversity
/ Biomedical and Life Sciences
/ boreal forest
/ Boreal forests
/ Carbohydrate metabolism
/ Carbohydrates
/ Carbon - analysis
/ Carbon dioxide
/ Climate change
/ Community structure
/ Coniferous forests
/ Creeks
/ Ecology
/ Emission
/ Emissions
/ ENVIRONMENTAL SCIENCES
/ Environmental Sciences & Ecology
/ Enzymatic activity
/ Evolutionary Biology
/ Feedback loops
/ Fires
/ Fluxes
/ Gene sequencing
/ Geochemistry
/ Greenhouse gases
/ Life Sciences
/ Metabolism
/ Metagenome
/ metagenomics
/ Methane
/ Methanogenesis
/ Microbial activity
/ microbial community response
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiomes
/ Microorganisms
/ Negative feedback
/ Nitrogen cycle
/ Nitrous oxide
/ Original
/ original-article
/ Permafrost
/ Permafrost - chemistry
/ Permafrost - microbiology
/ Reservoirs
/ Respiration
/ Soil depth
/ Soil Microbiology
/ Soil moisture
/ Soil surfaces
/ Taiga
/ Thawing
/ wildfire
/ Wildfires
2014
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Impact of fire on active layer and permafrost microbial communities and metagenomes in an upland Alaskan boreal forest
by
Waldrop, Mark P
, Jansson, Janet K
, Wickland, Kimberley P
, Jorgenson, Torre
, Prestat, Emmanuel
, McFarland, Jack W
, Knight, Rob
, Taş, Neslihan
, Berhe, Asmeret Asefaw
in
631/158/2165
/ 631/158/2465
/ 631/326/2565/2142
/ Alaska
/ Biodiversity
/ Biomedical and Life Sciences
/ boreal forest
/ Boreal forests
/ Carbohydrate metabolism
/ Carbohydrates
/ Carbon - analysis
/ Carbon dioxide
/ Climate change
/ Community structure
/ Coniferous forests
/ Creeks
/ Ecology
/ Emission
/ Emissions
/ ENVIRONMENTAL SCIENCES
/ Environmental Sciences & Ecology
/ Enzymatic activity
/ Evolutionary Biology
/ Feedback loops
/ Fires
/ Fluxes
/ Gene sequencing
/ Geochemistry
/ Greenhouse gases
/ Life Sciences
/ Metabolism
/ Metagenome
/ metagenomics
/ Methane
/ Methanogenesis
/ Microbial activity
/ microbial community response
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiomes
/ Microorganisms
/ Negative feedback
/ Nitrogen cycle
/ Nitrous oxide
/ Original
/ original-article
/ Permafrost
/ Permafrost - chemistry
/ Permafrost - microbiology
/ Reservoirs
/ Respiration
/ Soil depth
/ Soil Microbiology
/ Soil moisture
/ Soil surfaces
/ Taiga
/ Thawing
/ wildfire
/ Wildfires
2014
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Impact of fire on active layer and permafrost microbial communities and metagenomes in an upland Alaskan boreal forest
Journal Article
Impact of fire on active layer and permafrost microbial communities and metagenomes in an upland Alaskan boreal forest
2014
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Overview
Permafrost soils are large reservoirs of potentially labile carbon (C). Understanding the dynamics of C release from these soils requires us to account for the impact of wildfires, which are increasing in frequency as the climate changes. Boreal wildfires contribute to global emission of greenhouse gases (GHG—CO
2
, CH
4
and N
2
O) and indirectly result in the thawing of near-surface permafrost. In this study, we aimed to define the impact of fire on soil microbial communities and metabolic potential for GHG fluxes in samples collected up to 1 m depth from an upland black spruce forest near Nome Creek, Alaska. We measured geochemistry, GHG fluxes, potential soil enzyme activities and microbial community structure via 16SrRNA gene and metagenome sequencing. We found that soil moisture, C content and the potential for respiration were reduced by fire, as were microbial community diversity and metabolic potential. There were shifts in dominance of several microbial community members, including a higher abundance of candidate phylum AD3 after fire. The metagenome data showed that fire had a pervasive impact on genes involved in carbohydrate metabolism, methanogenesis and the nitrogen cycle. Although fire resulted in an immediate release of CO
2
from surface soils, our results suggest that the potential for emission of GHG was ultimately reduced at all soil depths over the longer term. Because of the size of the permafrost C reservoir, these results are crucial for understanding whether fire produces a positive or negative feedback loop contributing to the global C cycle.
Publisher
Nature Publishing Group UK,Oxford University Press,Nature Publishing Group
Subject
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