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Divergent host-plant adaptation and the evolution of reproductive isolation.

机译:不同的寄主植物适应性和生殖隔离的进化。

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摘要

Understanding the process of speciation requires elucidating the processes driving and constraining the evolution of reproductive isolation. For example, reproductive isolation can evolve simply as a by-product of populations adapting to different ecological environments. This process of 'ecological speciation' predicts greater levels of reproductive isolation between ecologically-divergent pairs of populations than between ecologically-similar pairs of similar age. The evolution of reproductive isolation can also be promoted by selection against hybrids (reinforcement) and can be constrained by the homogenizing effects of gene flow. This thesis examines the role of selection and gene flow in the evolution of reproductive isolation among host-associated populations of Timema cristinae walking-stick insects. Populations living on different host-plant species (Ceanothus versus Adenostoma) exhibit genetically-based, adaptive divergence in a suite of traits, including color, color-pattern, body size, body shape and behavior. Multiple forms of reproductive isolation were greater between populations using different hosts than between similar-aged populations using the same host. This pattern was detected for habitat isolation, immigrant inviability, sexual isolation, and cryptic postmating isolation, indicating that divergent host-plant adaptation promoted the evolution of multiple reproductive barriers. Conversely, gene flow between populations tended to erode divergence, with the exception of sexual isolation where moderate levels of gene flow promoted reinforcement. Molecular and morphological evidence suggest that the host-associated forms of T. cristinae are unlikely to have achieved species status such that the host forms represent either an ongoing speciation event or population divergence that has reached equilibrium. Studies of more divergent taxa in the genus are required to build up a more complete understanding of how the process of speciation unfolds, from beginning to end.; Keywords. speciation; natural selection; insects; gene flow; reinforcement
机译:了解物种形成过程需要阐明驱动和限制生殖隔离进化的过程。例如,生殖隔离可以作为适应不同生态环境的种群的副产品而简单地进化。这一“生态物种形成”过程预测,在生态差异的人口对之间的繁殖隔离水平要高于相似年龄的生态相似的种群之间的隔离水平。生殖隔离的进化也可以通过针对杂种的选择(加强)来促进,并且可以通过基因流的均质化作用来限制。本论文探讨了选择和基因流在Timema cristinae手杖昆虫宿主相关种群之间生殖分离进化中的作用。生活在不同寄主植物物种上的种群(Ceanothus与Adenostoma)在一系列特征(包括颜色,颜色模式,体型,体形和行为)上表现出基于遗传的适应性差异。在使用不同宿主的人群之间,多种形式的生殖隔离比在使用相同宿主的相似年龄人群之间的隔离更大。检测到这种模式可用于栖息地隔离,移民生存,性隔离和神秘的后期隔离,表明宿主植物的不同适应促进了多种生殖屏障的进化。相反,群体之间的基因流动往往会削弱分歧,除了性隔离外,适度的基因流动水平会促进增强。分子和形态学证据表明,隐孢子虫的宿主相关形式不太可能达到物种状态,因此宿主形式代表正在进行的物种形成事件或达到平衡的种群分化。需要研究该属中更多不同的分类单元,以建立对物种形成过程自始至终如何展开的更完整的理解。关键字。物种自然选择;昆虫;基因流加强

著录项

  • 作者

    Nosil, Patrik.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Biology Entomology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 365 p.
  • 总页数 365
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;
  • 关键词

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