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Contrasting mechanisms underlie short- and longer-term soil respiration responses to experimental warming in a dryland ecosystem

机译:对比机制是旱地生态系统中实验变暖的短期和长期土壤呼吸反应

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摘要

Soil carbon losses to the atmosphere through soil respiration are expected to rise with ongoing temperature increases, but available evidence from mesic biomes suggests that such response disappears after a few years of experimental warming. However, there is lack of empirical basis for these temporal dynamics in soil respiration responses, and for the mechanisms underlying them, in drylands, which collectively form the largest biome on Earth and store 32% of the global soil organic carbon pool. We coupled data from a 10 year warming experiment in a biocrust-dominated dryland ecosystem with laboratory incubations to confront 0-2 years (short-term hereafter) versus 8-10 years (longer-term hereafter) soil respiration responses to warming. Our results showed that increased soil respiration rates with short-term warming observed in areas with high biocrust cover returned to control levels in the longer-term. Warming-induced increases in soil temperature were the main drivers of the short-term soil respiration responses, whereas longer-term soil respiration responses to warming were primarily driven by thermal acclimation and warming-induced reductions in biocrust cover. Our results highlight the importance of evaluating short- and longer-term soil respiration responses to warming as a mean to reduce the uncertainty in predicting the soil carbon-climate feedback in drylands.
机译:通过土壤呼吸对大气的土壤碳损失预计会随着温度的增加而上升,但来自介质生物群的可用证据表明,在几年的实验变暖后,这种反应消失。然而,缺乏土壤呼吸反应中的这些时间动态的经验基础,以及他们在旱地中的机制,其中德兰斯共同形成了地球上最大的生物群系,并储存了32%的全球土壤有机碳库。我们在比赛中的10年的热化实验中耦合数据,在生物熏地主导的旱地生态系统中,实验室孵化为4-2岁(以下短期)与8-10岁(后续)的土壤呼吸反应变暖。我们的研究结果表明,在长期覆盖的地区观察到的土壤呼吸速率增加,在长期恢复到控制水平。变暖诱导的土壤温度的增加是短期土壤呼吸反应的主要驱动因素,而长期土壤呼吸反应对变暖的反应主要由热适应和加热诱导的生物覆盖诱导的降低驱动。我们的结果突出了评估短期和长期土壤呼吸反应,以使旱地中的土壤碳气候反馈的不确定性变暖来评估短期和长期土壤呼吸反应的重要性。

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