Warming changed the relationship between species diversity and primary productivity of alpine meadow on the Tibetan Plateau
作者:Li Ma, Zhonghua Zhang, Guoxi Shi, Hongye Su, Ruimin Qin, Tao Chang, Jingjing Wei, Chenyu Zhou, Xue Hu, Xinqing Shao, Jian Sun, Huakun Zhou · 发表于:Ecological Indicators · 年份:2022 · DOI:10.1016/j.ecolind.2022.109691 · 被引用次数:34 · 研究领域:Ecology and Vegetation Dynamics Studies、Rangeland and Wildlife Management、Species Distribution and Climate Change
Climate warming are supposed to have irreversible effects on the biodiversity and ecosystem functions of grassland. Alpine meadow is the predominant ecosystem in Qinghai-Tibet Plateau, which has attracted much attention because of its sensitivity to global changes. However, there is still no unified understanding of the impact of warming on the relationship between diversity and productivity of alpine meadows. In this study, we conducted multi-gradient warming, used fiberglass open-top chambers (OTCs) to raise the temperature, based on the investigation of community structure and productivity, we evaluated the effect of field simulated warming on the relationship of species diversity-primary productivity. Our result showed that gradient warming reduced species richness, diversity and dominance, inhibited the accumulation of above-ground biomass (AGB) and below-ground biomass (BGB), which was more significant under higher warming (P < 0.05). AGB had a significant linear positive correlation with Margalef index (R) and Shannon-Wiener index (H) (P < 0.05), but was weakly dependent on Simpson index (H′) and Pielou index(E), while BGB was not affected by species diversity during the experiment. Our results revealed that simulated warming weakened the dependence of AGB on species diversity, and aggravated the negative correlation between BGB and species diversity (P < 0.05), which was mainly caused by the decrease of R, H, H' after warming. Functional group level, we found the AGB ...