Convergent responses of nitrogen and phosphorus resorption to nitrogen inputs in a semiarid grassland

营养物 生态系统 营养循环 吸收 自行车 草原 农学 生物地球化学循环 草原 人口 垃圾箱 植物凋落物 氮气循环 陆地生态系统 生物 氮气 生态学 化学 地理 林业 有机化学 人口学 社会学 内分泌学
作者
Xiao‐Tao Lü,Sasha C. Reed,Qiang Yu,Nianpeng He,Zhengwen Wang,Xingguo Han
出处
期刊:Global Change Biology [Wiley]
卷期号:19 (9): 2775-2784 被引量:218
标识
DOI:10.1111/gcb.12235
摘要

Human activities have significantly altered nitrogen (N) availability in most terrestrial ecosystems, with consequences for community composition and ecosystem functioning. Although studies of how changes in N availability affect biodiversity and community composition are relatively common, much less remains known about the effects of N inputs on the coupled biogeochemical cycling of N and phosphorus (P), and still fewer data exist regarding how increased N inputs affect the internal cycling of these two elements in plants. Nutrient resorption is an important driver of plant nutrient economies and of the quality of litter plants produce. Accordingly, resorption patterns have marked ecological implications for plant population and community fitness, as well as for ecosystem nutrient cycling. In a semiarid grassland in northern China, we studied the effects of a wide range of N inputs on foliar nutrient resorption of two dominant grasses, Leymus chinensis and Stipa grandis. After 4 years of treatments, N and P availability in soil and N and P concentrations in green and senesced grass leaves increased with increasing rates of N addition. Foliar N and P resorption significantly decreased along the N addition gradient, implying a resorption-mediated, positive plant-soil feedback induced by N inputs. Furthermore, N : P resorption ratios were negatively correlated with the rates of N addition, indicating the sensitivity of plant N and P stoichiometry to N inputs. Taken together, the results demonstrate that N additions accelerate ecosystem uptake and turnover of both N and P in the temperate steppe and that N and P cycles are coupled in dynamic ways. The convergence of N and P resorption in response to N inputs emphasizes the importance of nutrient resorption as a pathway by which plants and ecosystems adjust in the face of increasing N availability.
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