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Assessing the impact of low-head dams and life history on fine scale genetic structure of three etheostomatine darters (Percidae).

机译:评估低水头水坝和生活史对三个食虫雌激素飞镖(Percidae)精细尺度遗传结构的影响。

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摘要

Anthropogenic modifications to aquatic habitats, such as dams, can fragment lotic systems, disrupt fluvial continuity and modify flow patterns. Such structures could negatively impact riverine ecology and potentially act as barriers to gene flow. Although previous studies have examined potential negative effects of aquatic barriers on population structure and gene flow, most have focused on large species of fish that are highly vagile and have low habitat specificity. In addition, past studies have shown there is often a correlation between life history characteristics and gene flow in fish. This study will test the influence of dams and life history variation on fine scale genetic structure of Etheostomatine darters (Ammocrypta beanii, Etheostoma swaini, and Percina nigrofasciata) in the Pearl River basin. Individuals of all three species also were analyzed from three control sites (no dams) in the neighboring Tangipahoa River basin.;A minimum of thirty specimens were sampled from a total of twelve sites across both basins. These data suggest that the dams impacted the spatial genetic structure of each species differently. There was no genetic differentiation among populations of Ammocrypta beanii, a main channel, highly vagile species, above and below the two low head dams, whereas E. swaini and P. nigrofasciata displayed large and moderate amounts of genetic structure, respectively, across this same area. These data suggests that life-history may play a greater role than the dams in shaping fine-scale genetic structure for these species.
机译:对水生生境(如水坝)的人为改造会破坏水系统,破坏河流的连续性并改变水流模式。这种结构可能会对河流生态产生不利影响,并可能成为阻碍基因流动的障碍。尽管先前的研究已经检查了水生屏障对种群结构和基因流的潜在负面影响,但大多数研究集中在高度易变且栖息地特异性低的大型鱼类上。此外,过去的研究表明,鱼类的生活史特征和基因流之间经常存在关联。这项研究将测试水坝和生活史的变化对珠江流域食虫雌激素突触者(Ammocrypta beanii,Etheostoma swaini和Percina nigrofasciata)的精细规模遗传结构的影响。还从邻近的Tangipahoa流域的三个控制点(无水坝)分析了这三种物种的个体。从两个流域的总共十二个站点中至少采样了三十个样本。这些数据表明,水坝对每个物种的空间遗传结构的影响不同。在两个低水头水坝的上方和下方,主要通道,高度易变的物种弹药虫的种群之间没有遗传分化,而在同一时期,E。swaini和P. nigrofasciata分别显示了大量和中等的遗传结构。区域。这些数据表明,在塑造这些物种的精细规模遗传结构方面,生命史可能比水坝发挥更大的作用。

著录项

  • 作者

    Camak, David Thomas.;

  • 作者单位

    Southeastern Louisiana University.;

  • 授予单位 Southeastern Louisiana University.;
  • 学科 Biology Ecology.;Biology Zoology.;Biology Genetics.
  • 学位 M.S.
  • 年度 2012
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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