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      Increasing soil organic carbon with maize in cotton-based cropping systems: Mechanisms and potential

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      Agriculture, Ecosystems & Environment
      Elsevier BV

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          The Microbial Efficiency-Matrix Stabilization (MEMS) framework integrates plant litter decomposition with soil organic matter stabilization: do labile plant inputs form stable soil organic matter?

          The decomposition and transformation of above- and below-ground plant detritus (litter) is the main process by which soil organic matter (SOM) is formed. Yet, research on litter decay and SOM formation has been largely uncoupled, failing to provide an effective nexus between these two fundamental processes for carbon (C) and nitrogen (N) cycling and storage. We present the current understanding of the importance of microbial substrate use efficiency and C and N allocation in controlling the proportion of plant-derived C and N that is incorporated into SOM, and of soil matrix interactions in controlling SOM stabilization. We synthesize this understanding into the Microbial Efficiency-Matrix Stabilization (MEMS) framework. This framework leads to the hypothesis that labile plant constituents are the dominant source of microbial products, relative to input rates, because they are utilized more efficiently by microbes. These microbial products of decomposition would thus become the main precursors of stable SOM by promoting aggregation and through strong chemical bonding to the mineral soil matrix. © 2012 Blackwell Publishing Ltd.
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            Is soil carbon mostly root carbon? Mechanisms for a specific stabilisation

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              Carbon flow in the rhizosphere: carbon trading at the soil–root interface

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                Author and article information

                Contributors
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                Journal
                Agriculture, Ecosystems & Environment
                Agriculture, Ecosystems & Environment
                Elsevier BV
                01678809
                September 2020
                September 2020
                : 299
                : 106985
                Article
                10.1016/j.agee.2020.106985
                9308c9a1-e0d9-417c-be69-774b5889881f
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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