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Predicting the temperature dependence of microbial respiration in soil: A continental-scale analysis

机译:预测土壤中微生物呼吸的温度依赖性:大陆尺度分析

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The production of CO2 by soil microorganisms is an important component of the global carbon cycle, and its temperature sensitivity is poorly constrained in global models. To improve our understanding of the factors controlling the temperature dependence of soil microbial respiration, we analyzed the temperature sensitivity of labile soil organic carbon decomposition for 77 soils collected from a wide array of ecosystem types. Across all of the soils, the average Q(10) value ( the factor by which decomposition rates increase for a 10 degrees C increase in temperature) was 3.0, but the range in Q(10) values was substantial ( 2.2 to 4.6). A large percentage ( 45%) of the variation in Q(10) values could be explained by the relative rate of microbial respiration per unit organic C, an analog for C quality. This result provides support for the " carbon quality- temperature'' hypothesis that directly links the temperature dependence of microbial decomposition and the biochemical recalcitrance of soil organic carbon. A smaller percentage ( 17%) of the variability in Q(10) values could be explained by the mean monthly temperature at the time of sampling, suggesting that microbial communities may adapt to the antecedent temperature regime. By showing that the Q(10) of microbial respiration in soil is largely predictable under standardized incubation conditions, this work increases our understanding of the temperature sensitivity of labile soil organic carbon stores.
机译:土壤微生物产生的CO2是全球碳循环的重要组成部分,并且其温度敏感性在全球模型中受到的约束较弱。为了增进我们对控制土壤微生物呼吸温度依赖性的因素的了解,我们分析了从多种生态系统类型中收集的77种土壤的不稳定土壤有机碳分解的温度敏感性。在所有土壤中,平均Q(10)值(温度每升高10摄氏度,分解速率增加的因子)为3.0,但Q(10)值的范围很大(2.2到4.6)。 Q(10)值变化的很大一部分(45%)可以用每单位有机碳(C质量的类似物)的相对呼吸速率来解释。该结果为“碳质量-温度”假说提供了支持,该假说直接将微生物分解的温度依赖性与土壤有机碳的生化抗性联系起来,Q(10)值的较小百分比(17%)可能是通过采样时的平均每月温度来解释,这表明微生物群落可能适应了先前的温度状况。通过证明在标准的孵育条件下土壤中的微生物呼吸的Q(10)在很大程度上是可预测的,这项工作增加了我们的理解不稳定土壤有机碳库的温度敏感性

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