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The evolutionary dynamics of sexual systems in deep time: An integrated biological and paleontological approach.

机译:深度系统中性系统的进化动力学:一种综合的生物学和古生物学方法。

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摘要

This doctoral dissertation reports the results of a multi-faceted investigation into the evolutionary dynamics of sexual systems over geologic time using the fossil record of the bivalved branchiopod crustacea in the Order Spinicaudata. The difficulty of assessing the sex of fossils (and by extension, the sexual system employed in extinct organisms) is widespread, and in those taxa that do show sexual dimorphism (e.g., ammonites, some arthropods, and vertebrates), reproductive mechanisms are often invariant, making assessments of reproductive evolution impossible. In this study, new techniques have been developed that will allow the identification of sexes in fossil crustaceans within the taxon Spinicaudata ("clam shrimp"): an enigmatic group of crustaceans with a unique bivalved carapace. Clam shrimp are well-represented in the fossil record, and have a broad array of reproductive types: dioecy (males + females), androdioecy (males + hermaphrodites) parthenogenesis (asexual females), and selfing hermaphroditism. These projects combine the wealth of information about the evolutionary transitions among these various reproductive types gleaned from studies of extant clam shrimp, with the rich representation of clam shrimp throughout the fossil record (from the Devonian to the modern day) to address two canonical hypotheses of reproductive evolutionary theory: (1) that unisexual species should be short lived and less speciose than their outcrossing counterparts and (2) that androdioecy is an unstable, transitionary system that should not persist over long periods of time. These studies provide much needed reviews of existing paleontological and biological research regarding the Spinicaudata, assess their taphonomic fidelity using a number of experimental techniques, develops and tests a morphometric protocol for identifying sexes in fossil populations and subsequently extends these shape comparisons using a large collection of fossil clam shrimp taxa from across the world to characterize sex-specific shape differences among various fossil clam shrimp lineages. We then combine these methods to assess sex ratios in fossil clam shrimp, which are indicative of mating system type in modern taxa, thereby allowing us to assign mating system to fossil species. These combined techniques allow, for the first time, investigation of the two evolutionary questions in the studies noted above and to test theories of breeding system evolution that, to date, have remained elusive to empirical assessment and provide a foundation for future research utilizing the fossil record to perform transformative studies into the evolution of mating systems.
机译:该博士论文报告了使用棘轮龙目中双壳双足纲甲壳纲的化石记录,对地质系统中性系统进化动力学进行多方面研究的结果。评估化石性别的困难(并扩展为已灭绝生物中使用的性系统)的困难是普遍的,在那些确实表现出两性性的类群中(例如,am虫,某些节肢动物和脊椎动物),生殖机制通常是不变的。 ,因此无法评估生殖进化。在这项研究中,已经开发出了新技术,这些技术将能够识别分类单元Spinicaudata(“蛤虾”)中的化石甲壳动物中的性别:一个神秘的甲壳动物群,具有独特的双壳甲壳。蛤虾在化石记录中有很好的代表,并具有广泛的生殖类型:雌雄异株(雄性+雌性),雄雄生殖(雄性+雌雄同体)单性生殖(雌性雌性)和自交雌雄同体。这些项目结合了从现存蛤虾研究中收集到的有关这些各种生殖类型之间的进化转变的大量信息,并结合了整个化石记录(从泥盆纪到现代)中蛤虾的丰富代表,以解决两种典型的假说。生殖进化理论:(1)单性物种应比异性物种短寿,且特异性要低;(2)雄雄生殖是一个不稳定的过渡系统,不应长期存在。这些研究提供了有关Spinicaudata的现有古生物学和生物学研究的迫切需要的综述,使用多种实验技术评估了其拟真度,开发并测试了用于鉴定化石种群中性别的形态计量学方案,随后使用了大量的来自世界各地的化石蛤虾类群,用以表征各种化石蛤虾谱系之间的性别特定形状差异。然后,我们将这些方法结合起来以评估化石蛤虾的性别比,这表明现代分类单元中的交配系统类型,从而使我们能够将交配系统分配给化石物种。这些结合的技术首次允许对上述研究中的两个进化问题进行调查,并检验迄今为止仍难以进行经验评估的育种系统进化理论,并为以后利用化石的研究提供基础进行转换研究以适应交配系统的发展。

著录项

  • 作者

    Astrop, Timothy Ian.;

  • 作者单位

    The University of Akron.;

  • 授予单位 The University of Akron.;
  • 学科 Biology Zoology.;Biology Limnology.;Biology Anatomy.;Biology Evolution and Development.;Paleontology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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