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气候变化对内陆湖鱼类热栖息地适宜性的非对称影响。

Asymmetric impacts of climate change on thermal habitat suitability for inland lake fishes.

机构信息

Center for Limnology, University of Wisconsin-Madison, Madison, WI, USA.

Office of Applied Science, Wisconsin Department of Natural Resources, Madison, WI, USA.

出版信息

Nat Commun. 2024 Nov 27;15(1):10273. doi: 10.1038/s41467-024-54533-2.

Abstract

Climate change is altering the thermal habitats of freshwater fish species. We analyze modeled daily temperature profiles from 12,688 lakes in the US to track changes in thermal habitat of 60 lake fish species from different thermal guilds during 1980-2021. We quantify changes in each species' preferred days, defined as the number of days per year when a lake contains the species' preferred temperature. We find that cooler-water species are losing preferred days more rapidly than warmer-water species are gaining them. This asymmetric impact cannot be attributed to differences in geographic distribution among species; instead, it is linked to the seasonal dynamics of lake temperatures and increased thermal homogenization of the water column. The potential advantages of an increase in warmer-water species may not fully compensate for the losses in cooler-water species as warming continues, emphasizing the importance of mitigating climate change to support effective freshwater fisheries management.

摘要

气候变化正在改变淡水鱼类的热栖息地。我们分析了美国 12688 个湖泊的模型化日温度剖面,以追踪 1980-2021 年期间来自不同热群的 60 种湖泊鱼类的热栖息地变化。我们量化了每个物种偏好天数的变化,定义为每年湖泊中存在该物种偏好温度的天数。我们发现,冷水物种失去偏好天数的速度比温水物种获得偏好天数的速度更快。这种不对称的影响不能归因于物种之间地理分布的差异;相反,它与湖泊温度的季节性动态和水柱的热均匀化有关。随着变暖的继续,温水物种的增加可能带来的潜在优势并不能完全弥补冷水物种的损失,这强调了减轻气候变化以支持有效的淡水渔业管理的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29e7/11603061/cf17c610bec6/41467_2024_54533_Fig1_HTML.jpg

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