物种丰富度
生态系统
生物
生物多样性
生态学
植物群落
生产力
抗性(生态学)
气候变化
物种多样性
干旱
真菌多样性
草原
陆生植物
初级生产
丛枝菌根
α多样性
降水
球囊菌门
植物多样性
农学
陆地生态系统
β多样性
多样性(政治)
植物覆盖
乡土植物
全球变化
极端天气
遗传多样性
持久性(不连续性)
农业生态系统
环境科学
作者
Wei Fu,Qiang Yu,Haiyang Zhang,Chong Xu,Xingguo Han,Baodong Chen
摘要
Plant and arbuscular mycorrhizal (AM) fungal diversity are both positively linked to ecosystem productivity across diverse ecosystems. However, given their high sensitivity to climate extremes such as extreme drought, the persistence and adaptability of these diversity-productivity relationships under rapid climate changes remain poorly understood. To address this, we established a grassland experiment at two proximate sites with distinct natural plant and AM fungal communities, imposing two contrasting extreme drought regimes (intense and chronic), each exceeding a 20-year recurrence interval based on site-specific precipitation records. We show that AM fungal diversity consistently outperforms plant diversity in predicting plant aboveground/net primary productivity (ANPP/NPP), as well as compositional shifts in plant species productivity, despite pronounced drought sensitivity in both communities. Notably, enhanced drought resistance in plant productivity was primarily associated with the stability of AM fungal richness rather than plant richness, highlighting their mutual dependence under extreme drought. Structural equation modelling confirmed that AM fungal richness buffered drought effects on ANPP, NPP and plant richness, with stronger effects on ANPP and NPP than those of plant richness and soil properties. These results suggest that AM fungal diversity may play a greater role than plant diversity in buffering plant communities against climate extremes. While causality remains to be fully resolved, these findings shed light on the adaptive significance of this ancient symbiont in sustaining ecosystem functioning under rapid climate change.
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