4.7 Article

Soil carbon loss regulated by drought intensity and available substrate: A meta-analysis

Journal

SOIL BIOLOGY & BIOCHEMISTRY
Volume 112, Issue -, Pages 90-99

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.soilbio.2017.04.020

Keywords

Dry-rewetting cycles; F:B ratio; Metabolic quotient; Microbial community; Soil respiration; Soil organic matter

Categories

Funding

  1. Australian Research Council [FT100100779]
  2. Australian Research Council [FT100100779] Funding Source: Australian Research Council

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Drought is one of the most important climate change factors, but its effects on ecosystems are little understood. While known to influence soil carbon (C) cycling, it remains unresolved if altered rainfall patterns induced by climate change will stimulate positive feedbacks of CO2 into the atmosphere. Using a meta-analysis frame-work including 1495 observations from 60 studies encompassing a variety of ecosystems and soil types, we investigated drought effects on respiration rates, cumulative respiration during drying-rewetting cycles, metabolic quotient (qCO(2)), dissolved organic C (DOC), microbial biomass and fungi to bacteria (F:B) ratios from laboratory and field experiments. We show that C-rich soils (>2% organic carbon) increase CO2 release into the atmosphere after intense droughts, but that C-poor soils show a net decline in C losses. We explain this self-reinforcing mechanism of climate change in C-rich soils by: (i) high substrate availability that magnify bursts of CO2 release after drought events and (ii) a shift in microbial community with increased loss of C per unit of biomass. These findings shed light on important responses of soil CO2 emissions to drought, which could either offset or facilitate positive feedbacks to global warming. Our results should be considered in global climate models, as even small changes in soil CO2 emission have large repercussions for global warming. (C) 2017 Elsevier Ltd. All rights reserved.

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