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Evolutionary and ecological influences on color pattern variation in the Australian common froglet, Crinia signifera.

机译:进化和生态学影响澳大利亚共同蛙小蛙Crinia signifera的颜色模式变化。

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摘要

Elucidation of mechanisms that generate and maintain population-level phenotypic variability provides insight into processes that influence within-species genetic divergence. Historically, color pattern polymorphisms were used to infer population-level genetic variability, but recent approaches directly capture genetic variability using molecular markers. Here, I clarify the relationship between genetic variability and color pattern polymorphism within and among populations using the Australian common froglet, Crinia signifera. To illustrate genetic variability in C. signifera, I used phylogenetic analysis of mitochondrial DNA and uncovered three ancient geographically restricted lineages whose distributions are consistent with other southeastern Australian species. Additional phylogeographic structure was identified within the three ancient lineages and was consistent with geographic variation in male advertisement calls.;Natural selection imposed by predators has been hypothesized to act on black-and-white ventral polymorphisms in C. signifera, specifically through mimicry of another Australian frog, Pseudophryne. I used clay replicas of C. signifera to test whether predators avoid black-and-white coloration. In fact, black-and-white replicas were preferentially avoided by predators in some habitats, but not in others, indicating that differential selection among habitats plays a role in maintaining color pattern polymorphism. When black-and-white color patterns in a sample of C. signifera populations were compared with those in sympatric Pseudophryne, several color pattern characteristics were correlated between the species. Furthermore, where C. signifera and Pseudophryne are sympatric, color patterns are more similar compared to those in allopatry.;Extensive phylogenetic variability suggests that phylogenetic history and genetic drift may also influence C. signifera color pattern. Fine-scale phylogenetic analysis uncovered additional genetic diversity within lineages and low levels of introgression among previously identified clades. Measures of color pattern displayed low levels of phylogenetic signal, indicating that relationships among individuals only slightly influence color patterns. Finally, simulations of trait evolution under Brownian motion illustrated that the phylogeny alone cannot generate the pattern of variation observed in C. signifera color pattern. Therefore, this indicates a minimal role for genetic drift, but instead supports either the role of stabilizing selection due to mimicry, or diversifying selection due to habitat differences, in color pattern variation in C. signifera.
机译:对产生和维持种群水平表型变异性的机制的阐明提供了对影响物种内部遗传差异的过程的深入了解。历史上,颜色模式多态性曾被用来推断人群水平的遗传变异性,但最近的方法是使用分子标记直接捕获遗传变异性。在这里,我阐明了使用澳大利亚常见的小蛙Crinia signifera在种群内部和种群之间的遗传变异性与颜色模式多态性之间的关系。为了说明C. signifera的遗传变异性,我使用了线粒体DNA的系统发育分析,发现了三个古老的受地理限制的血统,其分布与澳大利亚东南部其他物种的分布一致。在这三个古代世系中还发现了其他的植物学结构,这与男性广告中的地理变化是一致的。;已经假设捕食者施加的自然选择会作用于拟南芥的黑白腹多态性,特别是通过模仿另一个澳大利亚青蛙,Pseudophryne。我使用了C. signifera的粘土复制品来测试掠食者是否避免黑白着色。实际上,捕食者在某些栖息地中优先避免了黑白复制品,但在其他栖息地中则没有,这表明栖息地之间的差异选择在维持颜色模式多态性方面发挥了作用。当比较C. signifera种群的样本中的黑白颜色图案与同胞Pseudophryne中的那些时,物种之间的几种颜色图案特征相关。此外,在C.signifera和Pseudophryne是同伴的情况下,颜色模式与异位症相比更为相似;;广泛的系统发育变异性表明,系统发育史和遗传漂移也可能影响C.signifera颜色模式。精细的系统发育分析发现,在先前鉴定的进化枝中,谱系内的遗传多样性较低且渗入水平较低。色彩模式的测量显示出低水平的系统发生信号,表明个体之间的关系仅轻微影响色彩模式。最后,在布朗运动下性状进化的模拟表明,仅系统发育就不能产生在C. signifera颜色模式中观察到的变异模式。因此,这表明遗传漂移的作用很小,而是支持拟南芥颜色模式变化中由于拟态而稳定选择或由于生境差异而使选择多样化的作用。

著录项

  • 作者

    Symula, Rebecca E.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Biology Ecology.;Biology Zoology.;Biology Evolution and Development.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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