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土壤有机碳在孔隙尺度上的矿化调节。

Regulation of soil organic C mineralisation at the pore scale.

机构信息

UPMC-CNRS-INRA-AgroParisTech, UMR 7618, Bioemco, Thiverval-Grignon, France.

出版信息

FEMS Microbiol Ecol. 2013 Oct;86(1):26-35. doi: 10.1111/1574-6941.12078. Epub 2013 Feb 13.

Abstract

Little is known about the factors that regulate C mineralisation at the soil pore scale or how these factors vary throughout the pore network. This study sought to understand how the decomposition of organic carbon varies within the soil pore network and to determine the relative importance of local environmental properties relative to biological properties as controlling factors. This was achieved by sterilising samples of soil and reinoculating them with axenic bacterial suspensions using the matric potential to target different locations in the pore network. Carbon mineralisation curves were described with two-compartment first-order models to distinguish CO2 derived from the labile organic carbon released during sterilisation from CO2 derived from organic C unaffected by sterilisation. The data indicated that the size of the labile pool of organic C, possibly of microbial origin, varied as a function of location in the pore network but that the organic carbon unaffected by sterilisation did not. The mineralisation rate of the labile C varied with the bacterial type inoculated, but the mineralisation rate of the organic C unaffected by sterilisation was insensitive to bacterial type. Taken together, the results suggest that microbial metabolism is a less significant regulator of soil organic carbon decomposition than are microbial habitat properties.

摘要

关于调节土壤孔隙尺度下 C 矿化的因素,以及这些因素如何在整个孔隙网络中变化,人们知之甚少。本研究旨在了解有机碳在土壤孔隙网络中的分解如何变化,并确定相对于生物特性而言,局部环境特性作为控制因素的相对重要性。这是通过对土壤样本进行灭菌,并使用基质势将无菌细菌悬浮液重新接种到土壤样本中,以靶向孔隙网络中的不同位置来实现的。使用两 compartment 一级模型来描述碳矿化曲线,以区分来自灭菌过程中释放的易分解有机碳的 CO2 和不受灭菌影响的有机 C 产生的 CO2。数据表明,易分解有机碳(可能来自微生物)的大小随孔隙网络位置的变化而变化,但不受灭菌影响的有机碳没有变化。易分解 C 的矿化速率随接种的细菌类型而变化,但不受灭菌影响的有机 C 的矿化速率对细菌类型不敏感。总的来说,研究结果表明,与微生物生境特性相比,微生物代谢对土壤有机碳分解的调节作用不那么显著。

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