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Optimizing efficiency and resilience of no‐take marine protected areas for fish conservation under climate change along the coastlines of China Seas

海洋保护区 栖息地 气候变化 地理 物种丰富度 渔业 生态学 生物多样性 河口 环境科学 海洋学 地质学 生物
作者
Li Lin,Yang Liu,Yang Yan,Bin Kang
出处
期刊:Conservation Biology [Wiley]
卷期号:38 (2): e14174-e14174 被引量:5
标识
DOI:10.1111/cobi.14174
摘要

Abstract Climate change is one of the major threats to coastal fish biodiversity, and optimization of no‐take marine protected areas (MPAs) is imminent. We predicted fish redistribution under climate change in coastal China Seas with joint species distribution modeling and prioritized areas for conservation with Zonation, for which we used core area zonation (CAZ) and additive benefit function (ABF). Based on our results, we devised an expansion plan of no‐take MPAs. Under climate change, fish were redistributed northward along the coast. These redistributions were segmented by the Yangtze River estuary and its adjacent waters, indicating a possible biogeographical barrier. Under CAZ and ABF, significantly more fish habitat was conserved than under random prioritization ( p < 0.001, Cohen's d = –0.36 and –0.62, respectively). The ABF better represented areas with higher species richness, whereas CAZ better represented core habitats for species with narrow distributions. Without accounting for species redistribution, the expanded MPAs were mainly distributed in the northwest of the South China Sea, the East China Sea, the north of the Yellow Sea, and the west of the Bohai Sea. When accounting for species redistribution, the proposed MPAs were mainly distributed in the north of the Bohai Sea and southwest of the Yellow Sea, corresponding to the northern species redistributions. These MPAs conserved less habitat for fishes at present but protected more and better quality habitat for fishes in 2050 and 2100 than those MPAs that did not account for species redistribution, indicating improved fish conservation under climate change. Incorporating species redistribution and trade‐offs between areas with high species richness and areas that contain habitats for rare species are suggested to address coastal fish conservation under climate change. This work provides valuable information for fish conservation and is a precursor to systematic conservation planning along the coastlines of China Seas.
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