Ecology Letters · 2004 · 806 citations · 26 references
Plant LitterCarbon SequestrationBiogeochemistryEngineeringSoil Carbon CycleSoil Carbon ContentMicrobial EcologySoil Carbon SequestrationEnvironmental MicrobiologySoil MicrobiologyLand DegradationSoil CSoil Biogeochemical CyclingSoil Carbon
Abstract It is commonly predicted that the intensity of primary production and soil carbon (C) content are positively linked. Paradoxically, many long‐term field observations show that although plant litter is incorporated to soil in large quantities, soil C content does not necessarily increase. These results suggest that a negative relationship between C input and soil C conservation exists. Here, we demonstrate in controlled conditions that the supply of fresh C may accelerate the decomposition of soil C and induce a negative C balance. We show that soil C losses increase when soil microbes are nutrient limited. Results highlight the need for a better understanding of microbial mechanisms involved in the complex relationship between C input and soil C sequestration. We conclude that energy available to soil microbes and microbial competition are important determinants of soil C decomposition.
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Eric R. Pianka · The American Naturalist · 1970 · 3.6K citations
Choice Reviews Online · 1996 · 657 citations
Soil Pedology, Organic Geochemistry, Carbon Sequestration +14