Scholay

学术搜索 · AI 审稿 · LaTeX 协作

High‐level rather than low‐level warming destabilizes plant community biomass production

作者:Quan Quan, Fangyue Zhang, Lin Jiang, Han Y. H. Chen, Jinsong Wang, Fangfang Ma, Bing Song, Shuli Niu · 发表于:Journal of Ecology · 年份:2021 · DOI:10.1111/1365-2745.13583 · 被引用次数:47 · 研究领域:Ecology and Vegetation Dynamics Studies、Species Distribution and Climate Change、Land Use and Ecosystem Services

Abstract Ecosystem stability is essential to its sustainable functions and services to humanity. Although climate warming is projected to vary from 1 to 5°C by the end of 21st century, how the temporal stability of plant community biomass production responds to different warming scenarios remains unclear. To fill this knowledge gap, we conducted a 6‐year field experiment with three levels of warming treatments (control, +1.5°C, +2.5°C) by using infrared radiators, in an alpine meadow on the Qinghai–Tibet Plateau. We found that low‐level warming (+1.5°C), compared to the control, did not significantly change the temporal stability of plant community biomass production and its underlying causes, including species diversity, compensatory dynamics, mean–variance scaling, biomass temporal stability of plant population (the average of temporal stability of species biomass production of all species in the community) or dominant species. However, high‐level warming (+2.5°C) significantly reduced them. Species diversity was not a significant predictor of temporal stability of plant community biomass production in this species‐rich ecosystem, regardless of the magnitude of warming, while co‐existing species compensatory dynamics and the biomass temporal stability of dominant species determined the response of temporal stability of plant community biomass production to warming. Synthesis . Our results suggest that the responses of plant community biomass temporal stability and its under...