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Unaltered soil microbial community composition but decreased metabolic activity in a semiarid grassland after two years of passive experimental warming

机译:未经改变的土壤微生物群落组成但在两年被动实验变暖后半干旱草原中的代谢活性降低

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摘要

Soil microbial communities regulate soil carbon feedbacks to climate warming through microbial respiration (i.e., metabolic rate). A thorough understanding of the responses of composition, biomass, and metabolic rate of soil microbial community to warming is crucial to predict soil carbon stocks in a future warmer climate. Therefore, we conducted a field manipulative experiment in a semiarid grassland on the Loess Plateau of China to evaluate the responses of the soil microbial community to increased temperature from April 2015 to December 2017. Soil temperature was 2.0°C higher relative to the ambient when open‐top chambers (OTCs) were used. Warming did not affect microbial biomass or the composition of microbial functional groups. However, warming significantly decreased microbial respiration, directly resulting from soil pH decrease driven by the comediation of aboveground biomass increase, inorganic nitrogen increase, and moisture decrease. These findings highlight that the soil microbial community structure of semiarid grasslands resisted the short‐term warming by 2°C, although its metabolic rate declined.
机译:土壤微生物群落调节通过微生物呼吸的气候变暖的土壤碳反馈(即代谢率)。彻底了解土壤微生物群落到升温的成分,生物质和代谢率的反应是预测未来温暖气候中的土壤碳储备的至关重要。因此,我们在中国黄土高原的半干旱草原上进行了一个现场操纵实验,以评估土壤微生物群落从2015年4月到2017年4月增加温度的反应。在开放时,土壤温度相对于环境温度高2.0°C使用-top腔室(OTCS)。变暖不会影响微生物生物量或微生物官能团的组成。然而,暖温显着降低的微生物呼吸,直接由地上生物质增长,无机氮气增加和水分减少的污垢pH降低。这些发现强调了半干旱草原的土壤微生物群落结构抵抗2°C的短期变暖,尽管其代谢率下降。

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