State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Beijing Normal University, Beijing 100875, People's Republic of China.
State Key Laboratory of Hydroscience and Engineering, Department of Hydraulic Engineering, Tsinghua University, Beijing 100084, China.
Sci Total Environ. 2019 Nov 1;689:21-30. doi: 10.1016/j.scitotenv.2019.06.340. Epub 2019 Jun 24.
Frequent and severe disruptions of natural river flows associated with human activities significantly alter hydrological connectivity in large river networks, with deleterious effects on fish diversity. Understanding the relationship between fish diversity and river network connectivity is fundamental to ensuring species persistence, ecosystem integrity, and human well-being. Here, we provide a review of the mechanisms by which river network connectivity (RNC) affects fish diversity. We review the relationships between forms, systems and types of RNC and fish diversity, based on more than 100 previous studies. In summary, sustaining RNC promotes fish diversity in longitudinal and lateral axes, and species sorting, dispersal dynamics, and habitat availability are the main factors driving the distribution of fish diversity, followed by nutrition and trophic dynamics. Our work highlights the effects of RNC on fish diversity, and provides a mechanistic understanding of how RNC affects fish diversity across river basins, thus providing scientific guidance for protecting fish biodiversity and improving the health of river network ecosystems.
频繁且严重的人类活动引起的自然河流流量干扰,极大地改变了大河网络的水文学连通性,对鱼类多样性产生了有害影响。了解鱼类多样性与河网连通性之间的关系,对于确保物种存续、生态系统完整性和人类福祉至关重要。本文综述了河网连通性(RNC)影响鱼类多样性的机制。我们基于 100 多项先前的研究,综述了 RNC 的形态、系统和类型与鱼类多样性之间的关系。总之,维持 RNC 可促进鱼类在纵向和横向轴向上的多样性,而物种分选、扩散动态和栖息地可用性是驱动鱼类多样性分布的主要因素,其次是营养和营养动态。我们的工作强调了 RNC 对鱼类多样性的影响,并提供了对 RNC 如何影响整个流域鱼类多样性的机制理解,从而为保护鱼类生物多样性和改善河网生态系统健康提供了科学指导。