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首页> 外文期刊>Scientific reports. >Microbial respiration, but not biomass, responded linearly to increasing light fraction organic matter input: Consequences for carbon sequestration
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Microbial respiration, but not biomass, responded linearly to increasing light fraction organic matter input: Consequences for carbon sequestration

机译:微生物呼吸而不是生物质对轻质有机物输入的增加呈线性响应:碳固存的后果

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摘要

Rebuilding 'lost' soil carbon (C) is a priority in mitigating climate change and underpinning key soil functions that support ecosystem services. Microorganisms determine if fresh C input is converted into stable soil organic matter (SOM) or lost as CO2. Here we quantified if microbial biomass and respiration responded positively to addition of light fraction organic matter (LFOM, representing recent inputs of plant residue) in an infertile semi-arid agricultural soil. Field trial soil with different historical plant residue inputs [soil C content: control (tilled)?=?9.6?t C ha(-1) versus tilled?+?plant residue treatment (tilled?+?OM)?=?18.0?t C ha(-1)] were incubated in the laboratory with a gradient of LFOM equivalent to 0 to 3.8?t C ha(-1) (0 to 500% LFOM). Microbial biomass C significantly declined under increased rates of LFOM addition while microbial respiration increased linearly, leading to a decrease in the microbial C use efficiency. We hypothesise this was due to insufficient nutrients to form new microbial biomass as LFOM input increased the ratio of C to nitrogen, phosphorus and sulphur of soil. Increased CO2 efflux but constrained microbial growth in response to LFOM input demonstrated the difficulty for C storage in this environment.
机译:重建“失去的”土壤碳(C)是缓解气候变化和支持支持生态系统服务的关键土壤功能的优先事项。微生物确定新鲜的碳输入是转化为稳定的土壤有机质(SOM)还是以二氧化碳的形式损失。在这里,我们量化了不育的半干旱农业土壤中微生物生物量和呼吸作用是否对添加轻质有机物(LFOM,代表植物残体的最新输入)有积极的反应。具有不同历史植物残渣输入量的田间试验土壤[土壤C含量:对照(平铺)?=?9.6?t C ha(-1)与耕种?+?植物残渣处理(平移?+?OM)?=?18.0? t C ha(-1)]在实验室中以等于0至3.8?t C ha(-1)(0至500%LFOM)的LFOM梯度进行孵育。在LFOM添加量增加的情况下,微生物量C显着下降,而微生物呼吸线性增加,从而导致微生物C的利用效率下降。我们假设这是由于LFOM输入增加了土壤中碳与氮,磷和硫的比率,导致养分不足而无法形成新的微生物生物量。响应于LFOM输入,CO2外排量增加,但微生物生长受到限制,这表明在这种环境下储存C的困难。

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