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在气候变化下,依赖基质的鱼类的分布变化较小。

Substrate-dependent fish have shifted less in distribution under climate change.

机构信息

Marine Geospatial Ecology Lab, Nicholas School of the Environment and Earth Sciences, Duke University, Durham, NC, 27708, USA.

Monterey Bay Aquarium, 886 Cannery Row, Monterey, CA, 93940, USA.

出版信息

Commun Biol. 2020 Oct 16;3(1):586. doi: 10.1038/s42003-020-01325-1.

Abstract

Analyses of the impacts of climate change on fish species have primarily considered dynamic oceanographic variables that are the output of predictive models, yet fish species distributions are determined by much more than just variables such as ocean temperature. Functionally diverse species are differentially influenced by oceanographic as well as physiographic variables such as bottom substrate, thereby influencing their ability to shift distributions. Here, we show that fish species distributions that are more associated with bottom substrate than other dynamic environmental variables have shifted significantly less over the last 30 years than species whose distributions are associated with bottom salinity. Correspondingly, species whose distributions are primarily determined by bottom temperature or ocean salinity have shifted their mean centroid and southern and northern range boundaries significantly more than species whose distributions are determined by substrate or depth. The influence of oceanographic versus static variables differs by species functional group, as benthic species distributions are more associated with substrate and they have shifted significantly less than pelagic species whose distributions are primarily associated with ocean temperatures. In conclusion, benthic fish, that are more influenced by substrate, may prove much less likely to shift distributions under future climate change.

摘要

对气候变化对鱼类物种影响的分析主要考虑了作为预测模型输出的动态海洋变量,但鱼类物种的分布不仅仅取决于海洋温度等变量。功能多样的物种受到海洋和地貌变量(如底质)的不同影响,从而影响它们改变分布的能力。在这里,我们表明,与其他动态环境变量相比,与底质关系更密切的鱼类物种分布在过去 30 年中变化幅度明显较小,而与底质盐度相关的物种分布变化幅度则较大。相应地,与温度或盐度相关的物种分布的中心位置以及南部和北部范围边界的变化幅度明显大于主要与底质或深度相关的物种。海洋变量与静态变量的影响因物种功能群而异,因为底栖物种的分布与底质的关系更为密切,其变化幅度明显小于主要与海洋温度相关的浮游物种。总之,受底质影响更大的底栖鱼类在未来的气候变化下可能不太可能改变它们的分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/084d/7567839/5a71cf49b00f/42003_2020_1325_Fig1_HTML.jpg

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