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Microbial community-level regulation explains soil carbon responses to long-term litter manipulations

机译:微生物群落水平的调控解释了土壤碳对长期垫料操作的响应

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摘要

Climatic, atmospheric, and land-use changes all have the potential to alter soil microbial activity, mediated by changes in plant inputs. Many microbial models of soil organic carbon (SOC) decomposition have been proposed recently to advance prediction of climate and carbon (C) feedbacks. Most of these models, however, exhibit unrealistic oscillatory behavior and SOC insensitivity to long-term changes in C inputs. Here we diagnose the source of these problems in four archetypal models and propose a density-dependent formulation of microbial turnover, motivated by community-level interactions, that limits population sizes and reduces oscillations. We compare model predictions to 24 long-term C-input field manipulations and identify key benchmarks. The proposed formulation reproduces soil C responses to long-term C-input changes and implies greater SOC storage associated with CO2-fertilization-driven increases in C inputs over the coming century compared to recent microbial models. This study provides a simple modification to improve microbial models for inclusion in Earth System Models.
机译:气候,大气和土地利用的变化都有可能改变土壤微生物活性,这是由植物投入的变化所介导的。最近已经提出了许多土壤有机碳(SOC)分解的微生物模型,以促进对气候和碳(C)反馈的预测。然而,这些模型大多数都表现出对C输入的长期变化不切实际的振荡行为和SOC不敏感。在这里,我们在四个原型模型中诊断了这些问题的根源,并提出了一种由密度决定的微生物周转率公式,该公式由社区层面的相互作用所驱动,从而限制了种群数量并减少了振荡。我们将模型预测与24种长期C输入字段操纵进行比较,并确定关键基准。与最近的微生物模型相比,拟议的配方再现了土壤C对长期C输入变化的响应,并暗示了与CO2施肥驱动的C输入增加相关的更大的SOC储存。这项研究提供了一种简单的修改方法,以改进微生物模型以纳入地球系统模型。

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