Center for Limnology, University of Wisconsin-Madison, Madison, WI, USA.
Cornell Atkinson Center for Sustainability, Cornell University, Ithaca, NY, USA.
Nature. 2020 Dec;588(7839):631-635. doi: 10.1038/s41586-020-2944-y. Epub 2020 Nov 25.
Intensive fisheries have reduced fish biodiversity and abundance in aquatic ecosystems worldwide. 'No-take' marine reserves have become a cornerstone of marine ecosystem-based fisheries management, and their benefits for adjacent fisheries are maximized when reserve design fosters synergies among nearby reserves. The applicability of this marine reserve network paradigm to riverine biodiversity and inland fisheries remains largely untested. Here we show that reserves created by 23 separate communities in Thailand's Salween basin have markedly increased fish richness, density, and biomass relative to adjacent areas. Moreover, key correlates of the success of protected areas in marine ecosystems-particularly reserve size and enforcement-predict differences in ecological benefits among riverine reserves. Occupying a central position in the network confers additional gains, underscoring the importance of connectivity within dendritic river systems. The emergence of network-based benefits is remarkable given that these reserves are young (less than 25 years old) and arose without formal coordination. Freshwater ecosystems are under-represented among the world's protected areas, and our findings suggest that networks of small, community-based reserves offer a generalizable model for protecting biodiversity and augmenting fisheries as the world's rivers face unprecedented pressures.
集约化渔业已经减少了全球水生生态系统中的鱼类生物多样性和数量。“禁捕”海洋保护区已成为基于海洋生态系统的渔业管理的基石,如果保护区的设计促进了附近保护区之间的协同作用,那么它们对相邻渔业的好处将最大化。这种海洋保护区网络模式对河流生物多样性和内陆渔业的适用性在很大程度上仍未得到检验。在这里,我们表明,泰国萨尔温江流域的 23 个社区创建的保护区与相邻地区相比,鱼类丰富度、密度和生物量显著增加。此外,海洋生态系统中保护区成功的关键相关因素——特别是保护区的大小和执法力度——可以预测河流保护区之间生态效益的差异。在网络中占据中心位置会带来额外的收益,这突显了在树枝状河流系统中保持连通性的重要性。考虑到这些保护区还很年轻(不到 25 年),而且是在没有正式协调的情况下建立的,因此出现基于网络的效益是非常显著的。淡水生态系统在世界保护区中代表性不足,我们的研究结果表明,由小型、基于社区的保护区组成的网络为保护生物多样性和增加渔业提供了一种可推广的模式,因为世界上的河流正面临前所未有的压力。