Nitrogen and phosphorus addition differentially affect plant ecological stoichiometry in desert grassland

草原 生态化学计量学 营养物 生态系统 化学计量学 营养循环 生物量(生态学) 氮气 陆地生态系统 植物群落 自行车 农学 生态学 化学 生物 生态演替 林业 地理 有机化学
作者
Lei Li,Bo Liu,Xiaopeng Gao,Xiangyi Li,Chengdao Li
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:9 (1) 被引量:30
标识
DOI:10.1038/s41598-019-55275-8
摘要

Abstract Plant C:N:P stoichiometric relations drive powerful constraints on ecological interactions and processes. However, information about plant stoichiometric responses to N and P availability in desert grassland is limited. We conducted two field experiments with 7 levels of N (from 0.5 g to 24 g N ∙ m −2 yr −1 ) and P (from 0.05 g to 3.2 g P ∙ m −2 yr −1 ) additions in a desert grassland of Kunlun Mountain in the northwest of China to investigate the effects of these addition rates on the N and P stoichiometry of the dominant grass species Seriphidium korovinii . Nitrogen and P additions both affected plant stoichiometry. N addition suppressed P concentrations, whereas P addition had no effect on plant N concentrations. The N:P ratios of green aboveground biomass (AGB) were positively correlated with N addition ranging from 14.73 to 29.08, whereas those for P additions decreased ranging from 14.73 to 8.29. N concentrations were positively correlated with soil available N:P ratios, whereas, P concentrations were negatively correlated with soil availably N:P. Our results suggest that chemistry and stoichiometry of S. korovinii was directly affected by soil nutrient availability. Soil N availability affects S. korovinii stoichiometry to a greater extent that does soil P availability in this ecosystem. These findings suggest that N-deposition could affect the stoichiometry of this desert grassland ecosystem, and thereby potentially alter litter decomposition, plant community composition, nutrient cycling, and food-web dynamics of these desert ecosystems.
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