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Rapid climate change increases diversity and homogenizes composition of coastal fish at high latitudes

物种丰富度 沿海鱼类 生物多样性 北极的 气候变化 地理 北方的 生态学 纬度 动物群 物种多样性 海洋学 渔业 全球生物多样性 丰度(生态学) 环境科学 栖息地 生物 珊瑚鱼 地质学 大地测量学
作者
Anna Siwertsson,Ulf Lindstrøm,Magnus Aune,Erik Berg,Jofrid Skarðhamar,Øystein Varpe,Raul Primicerio
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (5) 被引量:2
标识
DOI:10.1111/gcb.17273
摘要

Abstract Rapid warming at high latitudes triggers poleward shifts of species' distributions that impact marine biodiversity. In the open sea, the documented redistributions of fish lead to a borealization of Arctic fauna. A climate‐driven borealization and increased species diversity at high latitudes are also expected in coastal fish communities, but they have not been previously documented on a large, biogeographic scale. Here, we investigate the impact of temperature change over the last 25 years on fish communities along the coast of Norway. The study area, spanning different ecoclimatic zones between 62° and 71° N, harbors over 200 species of boreal and Arctic fish. Several of these fish species are harvested by coastal and indigenous communities, influencing settlement geography and livelihood. The long‐term data on coastal water temperatures and fish species were obtained from monitoring stations and scientific surveys. Water temperature measured at three fixed sampling stations distributed along the coast show increased temperatures during the study period. The fish species distribution and abundance data were obtained from the annually standardized scientific bottom trawl survey program. Fish species richness, which was highest in the south, increased with warming first in the south and then, gradually, further north, eventually affecting biodiversity in the whole study area. Fish community composition showed a distinct latitudinal pattern early in the study, with Arctic fish species confined to the north and boreal species dominating the south. The poleward shifts eventually eroded this zoogeographic pattern, resulting in more boreal fish species in the north and an increased homogenization of species composition along the Norwegian coast. The climate‐driven reorganization of fish communities affects coastal ecosystems that are exposed to fisheries, aquaculture, and other rapidly expanding human activities, stressing the urgent need for a climate adaptation of integrated coastal management.

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