The M icrobial E fficiency‐ M atrix S tabilization ( MEMS ) framework integrates plant litter decomposition with soil organic matter stabilization: do labile plant inputs form stable soil organic matter?

Концепция микробной эффективности и стабилизации матрицей (MEMS) объединяет разложение растительного опада со стабилизацией органического вещества почвы: образуют ли легкоразлагаемые растительные субстраты стабильное органическое вещество почвы?
Claudia M. Boot, Matthew D. Wallenstein, Eldor A. Paul, M. Francesca Cotrufo, Karolien Denef
2012-12-05

Microbial Efficiency-Matrix Stabilization frameworkmicrobial substrate use efficiencyplant litter decompositionsoil mineral matrix interactionssoil organic matter stabilization
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.
1
Labile plant constituents are hypothesized to be the dominant source of microbial products relative to their input rates because microbes use them more efficiently.
2
Microbial products generated during decomposition are proposed as major precursors of stable soil organic matter through aggregation and strong chemical bonding with minerals.
3
Microbial substrate-use efficiency and carbon and nitrogen allocation control the proportion of plant-derived material incorporated into soil organic matter.
4
The MEMS framework integrates plant litter decomposition with soil organic matter formation and stabilization, linking microbial processing to soil matrix interactions.
5
The framework hypothesizes that labile plant inputs can form stable soil organic matter indirectly after microbial transformation and interaction with the soil matrix.

Plant litter inputs and soil organic matter formation and stabilization

The role of microbial substrate-use efficiency, carbon and nitrogen allocation, and soil-matrix interactions in determining the formation and stabilization of plant-derived stable soil organic matter from labile litter constituents

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2012-12-05
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Claudia M. Boot
Matthew D. Wallenstein
Eldor A. Paul
M. Francesca Cotrufo
Karolien Denef
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