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◆ Marine environmental research2026-08-17

Estuarine gradients and climate stressors: Divergent population responses and management implications for coastal species across the Yangtze Estuary barrier.

Jie Yang, Peng Wu, Tao Zhou, Zhi Zhang, Feiyan Du, Zhizhong Xiao, Jun Li, Shihong Xu, Yongshuang Xiao

原始摘要(英文原文)· Original abstract
The Yangtze Estuary, a critical biogeographic barrier and major biogeographic transition zone, is under escalating pressure from climate change. This study integrates species distribution modeling, niche analysis, and multi-period future climate projections to quantify how the estuary's environmental gradients shape the vulnerability and fate of intraspecific populations in two key coastal species: the hairfin anchovy (Setipinna tenuifilis) and the Chinese mitten crab (Eriocheir sensu stricto). Results reveal that the estuary acts as an ecological filter shaped by river-sea mixing, turbidity and nutrient delivery, which form strong north-south gradients in chlorophyll-a and primary productivity. These gradients underpin distinct niche adaptations: maximum chlorophyll contributes 58.1% to the distribution of the northern anchovy population, which is mainly constrained by this factor, while minimum primary productivity dominates the niche of southern anchovy population with a contribution rate of 62.0%. Under the high-emission RCP8.5 climate scenario, intraspecific climate responses diverge sharply by 2100. The southern EJC crab lineage emerges as a "climate winner" with a net suitable habitat gain of 919,698.44 km2. In contrast, two threatened populations are identified as typical "climate losers": the southern anchovy population, where 17.17% (751,217.84 km2) of its current suitable habitat will contract with a net habitat loss of 8.91% (389,930.16 km2) after offsetting newly expanded areas; the ES crab lineage exhibits a gross habitat contraction proportion of 27.00% (287,601.94 km2) and a net habitat loss rate of 21.28% (-226,707.23 km2). Crucially, climate change will drastically reconfigure intraspecific competitive interactions. For E. sensu stricto, niche overlap area between the EJC and ES lineages surges by 103.0% (from 263,118.50 km2 to 534,084.26 km2), shifting most inter-lineage competitive pressure toward the expanding EJC lineage. For S. tenuifilis, strong inherent niche divergence and the estuary's persistent geographic barrier buffer inter-population competition, their Schoener's D niche overlap index remains consistently low, rising only slightly from the current 0.15 to 0.23 by 2100 and maintaining stable ecological isolation. These findings demonstrate that estuarine gradients pre-determine population-specific climate vulnerability and future ecological outcomes. We therefore propose an evolutionarily significant unit (ESU)-based adaptive management framework, with a core actionable policy recommendation: the southern anchovy population and ES crab lineage should be independently classified, assessed and protected as separated conservation units during marine spatial planning.
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Estuarine gradients and climate stressors: Divergent population responses and management implications for coastal species across the Yangtze Estuary barrier. — 科研速览 Science Skim