...
首页> 外文期刊>Ecology and Evolution >Does natural selection explain the fine scale genetic structure at the nuclear exon Glu‐5′ in blue mussels from Kerguelen?
【24h】

Does natural selection explain the fine scale genetic structure at the nuclear exon Glu‐5′ in blue mussels from Kerguelen?

机译:自然选择是否解释了克格伦蓝贻贝中核外显子Glu-5'的精细尺度遗传结构?

获取原文

摘要

AbstractThe Kerguelen archipelago, isolated in the Southern Ocean, shelters a blue mussel Mytilus metapopulation far from any influence of continental populations or any known hybrid zone. The finely carved coast leads to a highly heterogeneous habitat. We investigated the impact of the environment on the genetic structure in those Kerguelen blue mussels by relating allele frequencies to habitat descriptors. A total sample comprising up to 2248 individuals from 35 locations was characterized using two nuclear markers, mac-1 and Glu-5′, and a mitochondrial marker (COI). The frequency data from 9 allozyme loci in 9 of these locations were also reanalyzed. Two other nuclear markers (EFbis and EFprem's) were monomorphic. Compared to Northern Hemisphere populations, polymorphism in Kerguelen blue mussels was lower for all markers except for the exon Glu-5′. At Glu-5′, genetic differences were observed between samples from distinct regions (FCT = 0.077), as well as within two regions, including between samples separated by 500 m. No significant differentiation was observed in the AMOVA analyses at the two other markers (mac-1 and COI). Like mac-1, all allozyme loci genotyped in a previous publication, displayed lower differentiation (Jost's D) and FST values than Glu-5′. Power simulations and confidence intervals support that Glu-5′ displays significantly higher differentiation than the other loci (except a single allozyme for which confidence intervals overlap). AMOVA analyses revealed significant effects of the giant kelp Macrocystis and wave exposure on this marker. We discuss the influence of hydrological conditions on the genetic differentiation among regions. In marine organisms with high fecundity and high dispersal potential, gene flow tends to erase differentiation, but this study showed significant differentiation at very small distance. This may be explained by the particular hydrology and the carved coastline of the Kerguelen archipelago, together with spatially variable selection at Glu-5′.
机译:摘要南部海洋中的克尔格伦群岛(Kerguelen)庇护着蓝色贻贝Mytilus种群,不受大陆种群或任何已知的杂种带的影响。精细雕刻的海岸导致高度异质的栖息地。我们通过将等位基因频率与栖息地描述符相关联,研究了环境对那些Kerguelen蓝贻贝遗传结构的影响。使用两个核标记mac-1和Glu-5'和线粒体标记(COI)对来自35个地点的多达2248个个体的总样本进行了表征。还重新分析了其中9个位置的9个同工酶基因座的频率数据。另外两个核标记(EFbis和EFprem)是单态的。与北半球种群相比,除外显子Glu-5'外,所有标记的克格伦蓝贻贝多态性均较低。在Glu-5'处,观察到来自不同区域(F CT = 0.077)的样本之间以及两个区域内的遗传差异,包括间隔小于500 m的样本之间。在AMOVA分析中,在其他两个标记(mac-1和COI)上未观察到显着差异。与mac-1一样,在以前的出版物中进行基因分型的所有同工酶基因座均显示出比Glu-5'更低的分化(Jost's D)和F ST 值。功效模拟和置信区间支持Glu-5'显示出比其他基因座显着更高的分化(置信区间重叠的单个同工酶除外)。 AMOVA分析显示,巨大的海带巨囊藻和波浪暴露对该标记物具有显着影响。我们讨论了水文条件对区域间遗传分化的影响。在具有高繁殖力和高扩散潜力的海洋生物中,基因流趋向于消除分化,但这项研究表明,在非常小的距离处,显着的分化。这可以通过克格伦群岛的特殊水文学和海岸线雕刻以及在Glu-5'处的空间变量选择来解释。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号