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气候变化导致低盐度成为滨浅海草食性动物 I. balthica 的选择性因素。

Climate change driven hyposalinity as a selective agent in the littoral mesoherbivore Idotea balthica.

机构信息

Department of Marine Sciences, University of Gothenburg, Strömstad, Sweden.

Department of Marine Sciences, University of Gothenburg, Strömstad, Sweden.

出版信息

Mar Environ Res. 2021 Jan;163:105216. doi: 10.1016/j.marenvres.2020.105216. Epub 2020 Nov 18.

Abstract

Climate change will include a decrease in seawater salinity in the Baltic Sea. We quantified the effects of the projected future desalination on survival of the early life stage of the littoral herbivore Idotea balthica. We collected egg-bearing Idotea from three range-margin Baltic Sea populations, we exposed half of each brood to either current (6‰) or future salinity (3.5‰). We genotyped a subsample of each brood to analyse patterns of allelic change and to identify genomic regions targeted by selection. The survival was overall reduced by hyposalinity and broods varied in response to hyposalinity implying genetic variation in tolerance, with a stronger decrease in genetic diversity in future salinity. Finally, we identified proteins with crucial roles in basic cellular functions. This study indicates that projected future northern Baltic Sea hyposalinity will not just hamper I. balthica survival, but its selective pressure may also affect genetic diversity and cell physiology.

摘要

气候变化将导致波罗的海海水盐度降低。我们量化了未来海水淡化对沿海草食动物 Idotea balthica 早期生活阶段生存的影响。我们从三个波罗的海边缘种群中采集了产卵的 Idotea,将每个卵群的一半暴露在当前(6‰)或未来(3.5‰)盐度下。我们对每个卵群的一个亚样本进行基因分型,以分析等位基因变化模式,并确定受选择影响的基因组区域。低盐度总体上降低了存活率,而卵群对低盐度的反应不同,这意味着对耐受性存在遗传变异,未来盐度下遗传多样性的下降幅度更大。最后,我们鉴定了在基本细胞功能中具有关键作用的蛋白质。本研究表明,预计未来的波罗的海北部低盐度不仅会阻碍 I. balthica 的生存,而且其选择压力还可能影响遗传多样性和细胞生理学。

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