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Apparent thermal acclimation of soil heterotrophic respiration mainly mediated by substrate availability

机译:土壤异养呼吸的表观热驯化主要由基质有效性介导

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Abstract Multiple lines of existing evidence suggest that increasing CO2 emission from soils in response to rising temperature could accelerate global warming. However, in experimental studies, the initial positive response of soil heterotrophic respiration (RH) to warming often weakens over time (referred to apparent thermal acclimation). If the decreased RH is driven by thermal adaptation of soil microbial community, the potential for soil carbon (C) losses would be reduced substantially. In the meanwhile, the response could equally be caused by substrate depletion, and would then reflect the gradual loss of soil C. To address uncertainties regarding the causes of apparent thermal acclimation, we carried out sterilization and inoculation experiments using the soil samples from an alpine meadow with 6 years of warming and nitrogen (N) addition. We demonstrate that substrate depletion, rather than microbial adaptation, determined the response of RH to long‐term warming. Furthermore, N addition appeared to alleviate the apparent acclimation of RH to warming. Our study provides strong empirical support for substrate availability being the cause of the apparent acclimation of soil microbial respiration to temperature. Thus, these mechanistic insights could facilitate efforts of biogeochemical modeling to accurately project soil C stocks in the future climate.
机译:摘要 现有多条证据表明,随着气温升高,土壤CO2排放量增加可能会加速全球变暖。然而,在实验研究中,土壤异养呼吸(RH)对变暖的初始正响应通常会随着时间的推移而减弱(称为表观热适应)。如果相对湿度的降低是由土壤微生物群落的热适应驱动的,则土壤碳(C)损失的可能性将大大降低。同时,这种反应同样可能是由基质枯竭引起的,然后反映了土壤碳的逐渐流失。为了解决表观热驯化原因的不确定性,我们使用来自高寒草甸的土壤样品进行了灭菌和接种实验,这些土壤样品经过6年的升温和氮(N)添加。我们证明,底物消耗,而不是微生物适应,决定了RH对长期变暖的反应。此外,氮添加似乎减轻了RH对变暖的明显适应。我们的研究为基质可用性是土壤微生物呼吸明显适应温度的原因提供了强有力的经验支持。因此,这些机理见解可以促进生物地球化学建模工作,以准确预测未来气候下的土壤碳储量。

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