首页> 外文学位 >Intraspecific variation, its geographic structure, and the relationship between variation and duration, with examples from Cambrian trilobites and recent fiddler crabs.
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Intraspecific variation, its geographic structure, and the relationship between variation and duration, with examples from Cambrian trilobites and recent fiddler crabs.

机译:种内变异,其地理结构以及变异与持续时间之间的关系,例如寒武纪三叶虫和最近的招潮蟹。

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摘要

Phenotypic variation is fundamental to evolutionary change because it influences not only the connectivity of populations but also the adaptability and extinction susceptibility of taxa. Despite the potential importance of morphological variation in structuring evolutionary patterns, little is known about how relative differences in intraspecific variation and its geographic structure contribute to differences in species longevity. This study investigates the relationship between species-level variation, geography and longevity, first, by exploring patterns of geographic variation in extant and fossil arthropods using geometric morphometrics and, second, by quantifying relative variation, geographic range size, and duration in a clade of Upper Cambrian pterocephaliid trilobites from the Great Basin, USA. Results show that in extant North American fiddler crabs, species with more intraspecific variation are not necessarily more widespread but do express more geographic variation. In pterocephaliids, geographic range size and duration are positively correlated, but duration and intraspecific variation are negatively associated with one another. In particular, longer lived species tend to have smaller amounts of intraspecific variation and shorter lived species have more variation. Phylogenetic effects were explored and found not to determine the association between these variables, though the distribution of geographic range size, and to some extent, intraspecific variation, show phylogenetic signal. In light of the results from the fiddler crab study, one possible explanation for these results is that species with more variation tend to have shorter durations because the greater variation reflects higher rates of morphological evolution. These results have implications for the processes driving morphological evolution and how those processes pattern the distribution of species in the fossil record, both across time and space.
机译:表型变异是进化变化的基础,因为它不仅影响种群的连通性,而且还影响分类单元的适应性和灭绝敏感性。尽管形态变异对构建进化模式具有潜在的重要性,但关于种内变异及其地理结构的相对差异如何导致物种寿命的差异,人们所知甚少。这项研究首先通过使用几何形态计量学探索现存和化石节肢动物的地理变异模式,然后通过量化相对进化,地理范围大小和持续时间来研究物种水平变异,地理和长寿之间的关系。来自美国大盆地的上寒武统翼脑三叶虫。结果表明,在现存的北美提琴蟹中,种内变异较大的物种不一定分布更广,但确实表现出更大的地理变异。在脑积水中,地理范围的大小和持续时间是正相关的,但是持续时间和种内变异却是负相关的。特别地,寿命更长的物种倾向于具有更少量的种内变异,而寿命短的物种具有更大的变异。尽管地理范围大小的分布以及种内变异在一定程度上显示了系统发生的信号,但对系统发生的影响进行了探索,但并未确定这些变量之间的关联。根据招潮蟹研究的结果,对这些结果的一种可能的解释是,变异较大的物种的持续时间往往较短,因为变异较大的物种反映出较高的形态进化速率。这些结果对驱动形态演化的过程以及这些过程如何在时间和空间上化石记录中的物种分布具有影响。

著录项

  • 作者

    Hopkins, Melanie Jane.;

  • 作者单位

    The University of Chicago.;

  • 授予单位 The University of Chicago.;
  • 学科 Biology Oceanography.;Paleontology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 390 p.
  • 总页数 390
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 宗教;
  • 关键词

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