Abiotic and biotic controls of soil dissolved organic nitrogen along a precipitation gradient on the Tibetan plateau

高原(数学) 生物量(生态学) 陆地生态系统 环境科学 植被(病理学) 土壤水分 高山气候 生态学 降水 草原 非生物成分 农学 生态系统 土壤有机质 土壤科学 生物 数学分析 物理 气象学 医学 数学 病理
作者
Lili Jiang,Shiping Wang,Zhe Pang,Changshun Wang,Fandong Meng,Zhichun Lan,Xiaoqi Zhou,Yaoming Li,Zhenhua Zhang,Caiyun Luo,Davey L. Jones,Yichao Rui,Yanfen Wang
出处
期刊:Plant and Soil [Springer Science+Business Media]
卷期号:459 (1-2): 65-78 被引量:24
标识
DOI:10.1007/s11104-020-04613-1
摘要

Dissolved organic nitrogen (DON) has been increasingly recognized as a crucial component of the terrestrial nitrogen (N) cycle that regulates the ecosystem feedback to climate change. Yet, little information is available about the factors that control soil DON in the alpine ecosystems of the Tibetan Plateau, a region that is extremely sensitive to climate change. Here, we examined the relationship between DON and climate, plant, and soil attributes along a precipitation gradient in five alpine ecosystems (alpine wetland, alpine meadow, alpine shrub, alpine steppe, and alpine desert) across 20 sites that were up to 4000 km apart on the Tibetan Plateau. Results showed that soil DON concentration varied significantly across these alpine ecosystems, and had a positive relationship with mean annual precipitation. Belowground biomass, soil moisture, micro biomass carbon (MBC), and soil total phosphorus (TP) explained 84% of the variation in DON concentrations. The percentage of DON in soil total dissolved N (TDN) varied with vegetation type, with the lowest percentage observed in the alpine meadow (52%) and the highest in the alpine desert (77%), indicating the slow turnover of DON into inorganic N in systems with low litter input and microbial activity. Precipitation and plant biomass input determine the concentration and turnover of soil DON on the Tibetan Plateau. A warmer and wetter climate that has been predicted for the Tibetan grasslands may lead to a larger and more active DON pool.
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