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Long-Term Climate Regime Modulates the Impact of Short-Term Climate Variability on Decomposition in Alpine Grassland Soils

机译:长期气候政权调制短期气候变化对高山草地土壤分解的影响

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摘要

Decomposition of plant litter is an important process in the terrestrial carbon cycle and makes up approximately 70% of the global carbon flux from soils to the atmosphere. Climate change is expected to have significant direct and indirect effects on the litter decomposition processes at various timescales. Using the TeaBag Index, we investigated the impact on decomposition of short-term direct effects of temperature and precipitation by comparing temporal variability over years, versus long-term climate impacts that incorporate indirect effects mediated through environmental changes by comparing sites along climatic gradients. We measured the initial decomposition rate (k) and the stabilization factor (S; amount of labile litter stabilizing) across a climate grid combining three levels of summer temperature (6.5-10.5 degrees C) with four levels of annual precipitation (600-2700 mm) in three summers with varying temperature and precipitation. Several (a)biotic factors were measured to characterize environmental differences between sites. Increased temperatures enhanced k, whereas increased precipitation decreased k across years and climatic regimes. In contrast, S showed diverse responses to annual changes in temperature and precipitation between climate regimes. Stabilization of labile litter fractions increased with temperature only in boreal and sub-alpine sites, while it decreased with increasing precipitation only in sub-alpine and alpine sites. Environmental factors such as soil pH, soil C/N, litter C/N, and plant diversity that are associated with long-term climate variation modulate the response of k and S. This highlights the importance of long-term climate in shaping the environmental conditions that influences the response of decomposition processes to climate change.
机译:植物垃圾的分解是陆地碳循环中的一个重要过程,并从土壤到大气中的全球碳通量的约70%。预计气候变化将对各种时间尺度的垃圾分解过程具有显着的直接和间接影响。使用茶袋指数,通过比较多年的时间变异性,研究了对温度和降水的短期直接影响的影响,而不是通过对气候梯度进行比较来介导通过环境变化介导的间接影响的长期气候影响。我们测量了初始分解速率(k)和稳定因子,在气候网格中,将三个夏季温度(6.5-10.5℃)的气候网格相结合,每年降水量(600-2700 mm )在三个夏季,温度和降水量不同。测量几种(a)生物因子以表征位点之间的环境差异。增加的温度增强k,而跨越年度和气候制度的降水量降低。相比之下,S表现出各种反应,对气候制度之间的温度和降水的年度变化。仅在博族和亚高山地点的温度下稳定不稳定,随着亚高山和高山位点的沉淀而降低,它随着较高的沉淀而增加。与长期气候变化相关的土壤pH,土壤C / N,垃圾C / N和植物多样性等环境因素调节K和S的响应。这凸显了长期气候在整形环境中的重要性影响分解过程反应对气候变化的条件。

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