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波罗的海中大西洋鲱的海洋连通性和遗传结构的环境相关性。

Oceanographic connectivity and environmental correlates of genetic structuring in Atlantic herring in the Baltic Sea.

机构信息

Department of Biosciences, University of Helsinki Helsinki, Finland ; Centre for Ecology and Conservation, University of Exeter Cornwall, UK.

出版信息

Evol Appl. 2013 Apr;6(3):549-67. doi: 10.1111/eva.12042. Epub 2013 Feb 4.

Abstract

Marine fish often show little genetic structuring in neutral marker genes, and Atlantic herring (Clupea harengus) in the Baltic Sea are no exception; historically, very low levels of population differentiation (F ST ≍ 0.002) have been found, despite a high degree of interpopulation environmental heterogeneity in salinity and temperature. Recent exome sequencing and SNP studies have however shown that many loci are under selection in this system. Here, we combined population genetic analyses of a large number of transcriptome-derived microsatellite markers with oceanographic modelling to investigate genetic differentiation and connectivity in Atlantic herring at a relatively fine scale within the Baltic Sea. We found evidence for weak but robust and significant genetic structuring (F ST = 0.008) explainable by oceanographic connectivity. Genetic differentiation was also associated with site differences in temperature and salinity, with the result driven by the locus Her14 which appears to be under directional selection (F ST = 0.08). The results show that Baltic herring are genetically structured within the Baltic Sea, and highlight the role of oceanography and environmental factors in explaining this structuring. The results also have implications for the management of herring fisheries, the most economically important fishery in the Baltic Sea, suggesting that the current fisheries management units may be in need of revision.

摘要

海洋鱼类在中性标记基因中通常表现出很少的遗传结构,波罗的海的大西洋鲱鱼(Clupea harengus)也不例外;历史上,尽管盐度和温度等种群间环境异质性很高,但种群分化水平非常低(F ST ≍ 0.002)。然而,最近的外显子组测序和 SNP 研究表明,在这个系统中有许多基因座受到选择。在这里,我们结合大量转录组衍生微卫星标记的群体遗传分析和海洋学建模,在波罗的海内部相对精细的尺度上研究了大西洋鲱鱼的遗传分化和连通性。我们发现了微弱但稳健且具有统计学意义的遗传结构(F ST = 0.008)的证据,这可以用海洋连通性来解释。遗传分化也与温度和盐度的地点差异有关,结果由似乎受到定向选择(F ST = 0.08)的Her14 基因座驱动。结果表明,波罗的海鲱鱼在波罗的海内部具有遗传结构,并强调了海洋学和环境因素在解释这种结构中的作用。研究结果还对鲱鱼渔业的管理产生影响,鲱鱼渔业是波罗的海最重要的经济渔业,这表明当前的渔业管理单位可能需要修订。

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