Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Extreme Drought Restructures Floodplain Fish Assemblages Through Trait Convergence and Assembly Mechanism Shifts

作者:Yunzhe Huang, Huan Zhang, Min Guo, Zhe Li, Geng Huang, Li Wen, Yunliang Li, Yuyu Wang · 发表于:Diversity and Distributions · 年份:2025 · DOI:10.1111/ddi.70117 · 被引用次数:6 · 研究领域:Fish Ecology and Management Studies、Isotope Analysis in Ecology、Aquatic Ecosystems and Phytoplankton Dynamics

ABSTRACT Aim Extreme droughts, intensified by climate change, threaten floodplain ecosystems. However, the mechanisms underlying biotic responses remain insufficiently understood. We assessed drought‐induced changes in the taxonomic and functional structure of fish communities, identified key environmental and biotic drivers during the drought period, and evaluated post‐drought community recovery trajectories. Location Poyang Lake, Yangtze River Basin, China. Methods Fish assemblages were surveyed across four floodplain lakes of Poyang Lake from 2022 to 2024 during the same seasonal window to isolate drought effects. Community composition and traits were analysed in multivariate trait space to assess changes in functional identity and the abundance of key species, and diversity indices at multiple scales were calculated. Key environmental drivers were identified using ordination and trait‐environment association analyses. Results Extreme drought induced substantial shifts in fish community structure and functional composition, favouring small‐bodied, benthopelagic omnivores and causing a 94% decline in the abundance of the apex predator Culter alburnus . Simultaneously, taxonomic and functional α‐diversity declined significantly, while β‐diversity increased, driven primarily by species turnover. The mechanisms underlying community assembly also shifted, with physicochemical factors predominant before the drought, but macrophyte growth form and macrobenthic biomass becoming th...