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Effects of nitrogen deposition on soil sulfur cycling

机译:氮沉降对土壤硫循环的影响

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摘要

Increased atmospheric nitrogen (N) deposition has been found to alter processes and functions of terrestrial ecosystems including the biogeochemical cycling of N and other elements, e.g., phosphorus (P), calcium (Ca), and potassium (K). Nevertheless, how N deposition changes sulfur (S) cycling is largely unknown. Based on a meta-analysis and a lab N addition experiment, here we show that N addition significantly suppresses the activity of soil arylsulfatase, which is a major enzyme involved in the mineralization of organic S. The evidence suggests that N-induced decrease in soil pH is responsible for the decrease of arylsulfatase activity. Soil buffering capacity plays a critical role in mediating the extent of arylsulfatase activity response to N inputs via its regulation on soil pH. Our results suggest that N deposition may slow down S cycling by suppressing soil organic S mineralization.
机译:已发现增加的大气氮(N)沉积会改变陆地生态系统的过程和功能,包括氮和其他元素(例如磷(P),钙(Ca)和钾(K))的生物地球化学循环。然而,很大程度上未知氮沉积如何改变硫(S)循环。基于荟萃分析和实验室中的氮添加实验,我们发现氮添加会显着抑制土壤芳基硫酸酯酶的活性,而芳基硫酸酯酶是参与有机S矿化的主要酶。证据表明,N诱导的土壤减少pH是导致芳基硫酸酯酶活性降低的原因。土壤缓冲能力通过调节土壤pH值,在介导芳基硫酸酯酶活性对N输入的反应程度中起关键作用。我们的结果表明,氮的沉积可能通过抑制土壤有机S矿化而减慢S循环。

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