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Fine-scale genetic structure and relatedness in the eelgrass Zostera marina

机译:鳗草Zostera滨海地区的小规模遗传结构和相关性

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摘要

The genetic composition of groups of individuals can significantly influence the productivity, resilience, and functioning of communities and ecosystems. For example, the relatedness of individuals within a group often dictates whether their interactions are competitive or cooperative. It is therefore necessary to characterize the genetic structure of populations at spatial scales relevant to these interactions and to determine the distribution of genetic diversity at those scales. Using microsatellite data, we assessed fine-scale population structure of Zostera marina, an important habitat-forming seagrass, within and between Bodega Harbor and Tomales Bay in northern California, USA. Despite the potential for long-range dispersal, we found significant population structure at all hierarchical scales (among bays, among sites, among tidal heights), corresponding to distances ranging from meters to tens of kilometers. The pattern of genetic differentiation that emerged at local scales differed between bays, with Tomales Bay being more structured even though the Euclidean distances among sites were similar in each bay. The relatedness of genets within a tidal height also differed among bays: in Bodega Harbor most genets occurred in proximity to unrelated individuals, whereas in Tomales Bay, genets were mixed with their close relatives, likely due to decreased dispersal. These contrasting kin structures, coupled with highly variable levels of clonal diversity, underscore the importance of examining variation at multiple scales, as this reveals genetic factors which might play an important role in many ecological processes.
机译:个体群体的遗传组成可以显着影响社区和生态系统的生产力,复原力和功能。例如,一个小组中个人的亲密关系通常决定了他们的互动是竞争还是合作。因此,有必要在与这些相互作用有关的空间尺度上表征种群的遗传结构,并确定在这些尺度上遗传多样性的分布。利用微卫星数据,我们评估了美国北部加利福尼亚的Bodega港和Tomales湾之间以及之间的重要栖息地形成海草Zostera码头的精细种群结构。尽管有可能进行长距离分散,但我们发现在所有等级规模(海湾之间,站点之间,潮汐高度之间)的显着人口结构,对应的距离从几米到几十公里不等。海湾之间在局部尺度上出现的遗传分化模式各不相同,尽管每个海湾中站点之间的欧几里得距离相似,但托马斯海湾的结构更为结构化。各海湾之间的潮汐种系之间的相关性也有所不同:在Bodega港,大多数种系发生在不相关的个​​体附近,而在Tomales海湾,种系与其近亲混合在一起,这可能是由于传播减少所致。这些不同的亲属结构,加上高度不同的克隆多样性水平,强调了在多个尺度上检查变异的重要性,因为这揭示了遗传因素可能在许多生态过程中发挥重要作用。

著录项

  • 来源
    《Marine ecology progress series》 |2012年第13期|p.127-137|共11页
  • 作者单位

    Center for Population Biology, Department of Evolution and Ecology, College of Biological Sciences, University of California, 1 Shields Ave., Davis, California 95616, USA;

    Coastal and Marine Laboratory, Florida State University, 3618 Highway 98, St. Teresa, Florida 32358, USA;

    Center for Population Biology, Department of Evolution and Ecology, College of Biological Sciences, University of California, 1 Shields Ave., Davis, California 95616, USA;

    Center for Population Biology, Department of Evolution and Ecology, College of Biological Sciences, University of California, 1 Shields Ave., Davis, California 95616, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    population structure; relatedness; dispersal; genetic diversity; zostera marina;

    机译:人口结构;相关性分散遗传多样性;佐斯特拉码头;

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