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Soil respiration under climate warming: differential response of heterotrophic and autotrophic respiration

机译:气候变暖下的土壤呼吸:异养和自养呼吸的差异响应

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Despite decades of research, how climate warming alters the global flux of soil respiration is still poorly characterized. Here, we use meta-analysis to synthesize 202 soil respiration datasets from 50 ecosystem warming experiments across multiple terrestrial ecosystems. We found that, on average, warming by 2 degrees C increased soil respiration by 12% during the early warming years, but warming-induced drought partially offset this effect. More significantly, the two components of soil respiration, heterotrophic respiration and autotrophic respiration showed distinct responses. The warming effect on autotrophic respiration was not statistically detectable during the early warming years, but nonetheless decreased with treatment duration. In contrast, warming by 2 degrees C increased heterotrophic respiration by an average of 21%, and this stimulation remained stable over the warming duration. This result challenged the assumption that microbial activity would acclimate to the rising temperature. Together, our findings demonstrate that distinguishing heterotrophic respiration and autotrophic respiration would allow us better understand and predict the long-term response of soil respiration to warming. The dependence of soil respiration on soil moisture condition also underscores the importance of incorporating warming-induced soil hydrological changes when modeling soil respiration under climate change.
机译:尽管进行了数十年的研究,但气候变暖如何改变土壤呼吸的全球通量仍知之甚少。在这里,我们使用荟萃分析从多个陆地生态系统的50个生态系统变暖实验中综合了202个土壤呼吸数据集。我们发现,平均而言,在升温的早期,升温2摄氏度可使土壤呼吸增加12%,但升温引起的干旱部分抵消了这种影响。更重要的是,土壤呼吸的两个组成部分,异养呼吸和自养呼吸表现出不同的响应。在升温的早期,对自养性呼吸的升温作用在统计学上无法检测到,但是随着治疗时间的延长而降低。相反,升温2摄氏度可使异养呼吸平均增加21%,并且这种刺激在升温期间保持稳定。该结果挑战了微生物活性将适应温度上升的假设。总之,我们的发现表明,将异养呼吸和自养呼吸区分开来将使我们更好地理解和预测土壤呼吸对变暖的长期响应。土壤呼吸对土壤水分条件的依赖性也强调了在模拟气候变化下的土壤呼吸时,纳入变暖引起的土壤水文变化的重要性。

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