Different responses of individuals, functional groups and plant communities in CSR strategies to nitrogen deposition in high-altitude grasslands

草原 草原 沉积(地质) 野生种 氮气 高度(三角形) 草地退化 植物群落 生态系统 环境科学 生态学 生物 化学 数学 栖息地 生态演替 沉积物 有机化学 几何学 古生物学
作者
Xueqi Li,Ying Li,Hao Shen,Shuai Li,Zhenzhen Zhao,Jiannan Xiao,Ran Zhang,Hang Shi,Hui Zuo,Tu Danjia,Guo-Ming Chen,Xueli Zhou,Shikui Dong
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:953: 176051-176051 被引量:12
标识
DOI:10.1016/j.scitotenv.2024.176051
摘要

The Competitor, Stress Tolerator, and Ruderal (CSR) theory delineates the ecological strategies of plant species. Nevertheless, how these ecological strategies shift at the levels of individuals, functional groups and plant communities to cope with increasing nitrogen deposition remains unclear. In this study, simulated nitrogen deposition experiments were performed in high-altitude grasslands of alpine meadows and alpine steppe on the Qinghai-Tibetan Plateau (QTP) by employing the strategy and functional type framework (StrateFy) methodology to evaluate plant CSR strategies. Our results indicated that the dominant ecological strategy of the high-altitude grassland on the QTP were predominantly aligned with the R-strategy. In both alpine meadow and alpine steppe grasslands, the community-weighted mean (CWM) of C scores were increased with nitrogen addition, while CWM of R and S scores were not significantly correlated with nitrogen addition. Remarkably, the increase in C scores due to nitrogen enrichment was observed solely in non-legumes, suggesting an enhanced competitive capability of non-legumes in anticipation of future nitrogen deposition. Leymus secalinus was dominated in both alpine meadow and alpine steppe grasslands across all levels of nitrogen deposition, with increasing C scores along the nitrogen gradients. Furthermore, the sensitivity of C scores of individual plant, functional group and plant community to nitrogen deposition rates was more pronounced in alpine steppe grassland than in alpine meadow grassland. These findings furnish novel insights into the alterations of ecological strategies in high-altitude alpine grasslands on the QTP and similar regions worldwide in cope with escalating nitrogen deposition.
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