Evidence that decomposition rates of organic carbon in mineral soil do not vary with temperature
- PMID: 10786789
- DOI: 10.1038/35009076
Evidence that decomposition rates of organic carbon in mineral soil do not vary with temperature
Abstract
It has been suggested that increases in temperature can accelerate the decomposition of organic carbon contained in forest mineral soil (Cs), and, therefore, that global warming should increase the release of soil organic carbon to the atmosphere. These predictions assume, however, that decay constants can be accurately derived from short-term laboratory incubations of soil or that in situ incubations of fresh litter accurately represent the temperature sensitivity of Cs decomposition. But our limited understanding of the biophysical factors that control Cs decomposition rates, and observations of only minor increases in Cs decomposition rate with temperature in longer-term forest soil heating experiments and in latitudinal comparisons of Cs decomposition rates bring these predictions into question. Here we have compiled Cs decomposition data from 82 sites on five continents. We found that Cs decomposition rates were remarkably constant across a global-scale gradient in mean annual temperature. These data suggest that Cs decomposition rates for forest soils are not controlled by temperature limitations to microbial activity, and that increased temperature alone will not stimulate the decomposition of forest-derived carbon in mineral soil.
Comment in
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Respiration in the balance.Nature. 2000 Apr 20;404(6780):819-20. doi: 10.1038/35009170. Nature. 2000. PMID: 10786772 No abstract available.
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Soil warming and organic carbon content.Nature. 2000 Dec 14;408(6814):789-90. doi: 10.1038/35048672. Nature. 2000. PMID: 11130707 No abstract available.
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Climatology: will soil amplify climate change?Nature. 2005 Jan 20;433(7023):204-5. doi: 10.1038/433204a. Nature. 2005. PMID: 15662396 No abstract available.
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