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Antecedent Conditions Influence Soil Respiration Differences in Shrub and Grass Patches

机译:前世条件影响灌木和草丛中土壤呼吸的差异

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Quantifying the response of soil respiration to past environmental conditions is critical for predicting how future climate and vegetation change will impact ecosystem carbon balance. Increased shrub dominance in semiarid grasslands has potentially large effects on soil carbon cycling. The goal of this study was to characterize the effect of antecedent moisture and temperature conditions on soil respiration in a grassland now dominated by shrubs. Continuous measurements of soil respiration, soil temperature, and soil moisture were made over the entire summer of 2005 within distinct vegetation microsites in this shrubland community-under grasses, shrubs, and in open spaces. We analyzed these data within a Bayesian framework that allowed us to evaluate the time-scale over which antecedent conditions influence soil respiration. The addition of antecedent conditions explained an additional 16% of the variation in soil respiration. High soil moisture during the preceding month increased respiration rates in both the grass and shrub microsites. However, the time period over which antecedent soil moisture influenced the temperature sensitivity of soil respiration was shorter in the shrub compared to the grass microsites (1 vs. 2 weeks, respectively). The depth of moisture was important; for example, for respiration under shrubs, near-surface moisture was more influential on the day of the respiration measurement but subsurface moisture was more influential on the antecedent time scale. Although more mechanistic studies are required, this study is the first to reveal that shrub encroachment changes the time scales over which soil moisture and temperature affect soil respiration.
机译:量化土壤呼吸对过去环境条件的响应对于预测未来的气候和植被变化将如何影响生态系统碳平衡至关重要。半干旱草原上灌木优势的增加可能对土壤碳循环产生巨大影响。这项研究的目的是表征先前水分和温度条件对目前以灌木为主的草原土壤呼吸的影响。在整个灌木丛社区的不同植被微场所内,在2005年整个夏季,对草木,灌木和空地下的土壤呼吸,土壤温度和土壤湿度进行了连续测量。我们在贝叶斯框架内分析了这些数据,这使我们能够评估前段条件影响土壤呼吸的时间尺度。前期条件的增加解释了土壤呼吸变化的16%。前一个月的高土壤湿度增加了草丛和灌木丛微地点的呼吸速率。然而,与草类微地点相比,灌木中前期土壤水分影响土壤呼吸温度敏感性的时间段较短(分别为1周和2周)。水分的深度很重要。例如,对于灌木下的呼吸作用,在进行呼吸测量的当天,近地表水分的影响更大,而在随后的时间尺度上,地下水分的影响更大。尽管需要进行更多的机理研究,但这项研究还是第一个揭示灌木侵蚀改变了土壤水分和温度影响土壤呼吸的时间尺度。

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