globalchange  > 过去全球变化的重建
DOI: 10.1016/j.soilbio.2019.03.028
WOS记录号: WOS:000467508000018
论文题名:
Coupled carbon and nitrogen losses in response to seven years of chronic warming in subarctic soils
作者: Maranon-Jimenez, S.1,2,3; Penuelas, J.1,2,4; Richter, A.5; Sigurdsson, B. D.6; Fuchslueger, L.3; Leblans, N. I. W.3; Janssens, I. A.3
通讯作者: Maranon-Jimenez, S.
刊名: SOIL BIOLOGY & BIOCHEMISTRY
ISSN: 0038-0717
出版年: 2019
卷: 134, 页码:152-161
语种: 英语
英文关键词: Substrate induced respiration ; Microbial biomass ; Temperature increase ; Nitrogen immobilization ; Microbial carbon and nutrients limitation ; Nitrogen loss
WOS关键词: TEMPERATURE SENSITIVITY ; ORGANIC-CARBON ; CLIMATE-CHANGE ; PLANT BIOMASS ; FOREST SOIL ; TERM ; METAANALYSIS ; CYCLE ; AVAILABILITY ; FEEDBACKS
WOS学科分类: Soil Science
WOS研究方向: Agriculture
英文摘要:

Increasing temperatures may alter the stoichiometric demands of soil microbes and impair their capacity to stabilize carbon (C) and retain nitrogen (N), with critical consequences for the soil C and N storage at high latitude soils. Geothermally active areas in Iceland provided wide, continuous and stable gradients of soil temperatures to test this hypothesis. In order to characterize the stoichiometric demands of microbes from these subarctic soils, we incubated soils from ambient temperatures after the factorial addition of C, N and P substrates separately and in combination. In a second experiment, soils that had been exposed to different in situ warming intensities (+ 0, + 0.5, + 1.8, + 3.4, + 8.7, + 15.9 degrees C above ambient) for seven years were incubated after the combined addition of C, N and P to evaluate the capacity of soil microbes to store and immobilize C and N at the different warming scenarios. The seven years of chronic soil warming triggered large and proportional soil C and N losses (4.1 +/- 0.5% degrees C-1 of the stocks in unwarmed soils) from the upper 10 cm of soil, with a predominant depletion of the physically accessible organic substrates that were weakly sorbed in soil minerals up to 8.7 degrees C warming. Soil microbes met the increasing respiratory demands under conditions of low C accessibility at the expenses of a reduction of the standing biomass in warmer soils. This together with the strict microbial C:N stoichiometric demands also constrained their capacity of N retention, and increased the vulnerability of soil to N losses. Our findings suggest a strong control of microbial physiology and C:N stoichiometric needs on the retention of soil N and on the resilience of soil C stocks from high-latitudes to warming, particularly during periods of vegetation dormancy and low C inputs.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/141074
Appears in Collections:过去全球变化的重建

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作者单位: 1.CREAF, Barcelona 08193, Spain
2.UAB, CSIC, Global Ecol Unit, CREAF, Barcelona 08193, Spain
3.Univ Antwerp, Ctr Excellence PLECO Plant & Vegetat Ecol, Dept Biol, Campus Drie Eiken,Univ Pl 1,C 203, BE-2610 Antwerp, Belgium
4.Inst Estudis Catalans, Barcelona 08001, Spain
5.Univ Vienna, Dept Microbiol & Ecosyst Sci, Althanstr 14, A-1090 Vienna, Austria
6.Agr Univ Iceland, Hvanneyri 311, Borgarnes, Iceland

Recommended Citation:
Maranon-Jimenez, S.,Penuelas, J.,Richter, A.,et al. Coupled carbon and nitrogen losses in response to seven years of chronic warming in subarctic soils[J]. SOIL BIOLOGY & BIOCHEMISTRY,2019-01-01,134:152-161
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