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Aridity threshold in controlling ecosystem nitrogen cycling in arid and semi-arid grasslands

机译:干旱和半干旱草原控制生态系统氮循环的干旱阈值

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Higher aridity and more extreme rainfall events in drylands are predicted due to climate change. Yet, it is unclear how changing precipitation regimes may affect nitrogen (N) cycling, especially in areas with extremely high aridity. Here we investigate soil N isotopic values (δ15N) along a 3,200?km aridity gradient and reveal a hump-shaped relationship between soil δ15N and aridity index (AI) with a threshold at AI=0.32. Variations of foliar δ15N, the abundance of nitrification and denitrification genes, and metabolic quotient along the gradient provide further evidence for the existence of this threshold. Data support the hypothesis that the increase of gaseous N loss is higher than the increase of net plant N accumulation with increasing AI below AI=0.32, while the opposite is favoured above this threshold. Our results highlight the importance of N-cycling microbes in extremely dry areas and suggest different controlling factors of N-cycling on either side of the threshold.
机译:由于气候变化,预计干旱地区的干旱和极端降雨事件将增加。然而,尚不清楚变化的降水方式如何影响氮(N)循环,特别是在干旱极高的地区。在这里,我们沿着3,200?km的干旱梯度调查了土壤N同位素值(δ 15 N),揭示了土壤δ 15 N与干旱指数(AI)之间呈驼峰状关系),且AI值为0.32。叶面δ 15 N的变化,硝化和反硝化基因的丰度以及沿梯度的代谢商,为该阈值的存在提供了进一步的证据。数据支持以下假设:当AI低于AI = 0.32时,气态氮损失的增加高于净植物氮积累的增加,而高于此阈值则相反。我们的结果突出了极端干燥地区N循环微生物的重要性,并在阈值的任一侧建议了N循环的不同控制因素。

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