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Transition rate bias in breeding system characters in Amaranthus.

机译:mar菜繁殖系统性状的过渡速率偏向。

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摘要

Past studies have revealed an apparent link between monoecy and dioecy in dimorphic angiosperm groups. Furthermore, comparisons of species richness between monoecious and dioecious sister groups have detected relatively low species richness amongst dioecious clades. Observations of low relative dioecious species richness has led to the hypothesis that dioecy is an evolutionary dead-end. To test the dead-end hypothesis, this study focused on the ancestral state reconstruction of breeding characters over nuclear and chloroplast phylogenies for the genus Amaranthus. Maximum parsimony (MP) and maximum-likelihood (ML) reconstructions were performed for both phylogenies. Continuous rate Markov modeling (Mk) and Binary Speciation and Extinction (BISSE) statistical analyses were applied to the ML reconstructions to test the rates forward and reverse transition, diversification, speciation, and extinction. The results of both the MP and ML analysis indicate numerous reversions from the derived dioecious to the ancestral monoecious state. Mk analyses of the ML reconstruction indicate that character state transition occur at much greater rates in the reverse direction. Thus, the hypothesis that dioecy is an irreversible, evolutionary dead-end, is not supported by the Amaranthus phylogeny. Rather, this study concludes that low species richness amongst dioecious clades is likely due to high rates of reverse character state transitions which bias the distribution in favor of monoecy.
机译:过去的研究表明,在双态被子植物群中单性和雌性之间有明显的联系。此外,比较雌雄异体和雌雄异体的姐妹群体的物种丰富度,发现雌雄异株的物种丰富度相对较低。雌雄异株相对丰富度低的观察结果导致了这样的假说,即雌雄异株是进化的死胡同。为了检验死胡同的假设,本研究着重于nuclear菜属的核和叶绿体系统发育育种特征的祖先状态重建。对两个系统发育都进行了最大简约(MP)和最大似然(ML)重建。连续速率马尔可夫模型(Mk)和二元物种灭绝(BISSE)统计分析被应用于ML重建,以测试速率的正向和反向转变,多样化,物种形成和灭绝。 MP和ML分析的结果都表明,从派生的雌雄异体状态到祖先雌雄异体状态有许多还原。对ML重构的Mk分析表明,字符状态转换在反方向上的发生率高得多。因此,di菜属系统发育论不支持雌雄异体是不可逆的,进化的死胡同的假说。相反,这项研究得出的结论是,雌雄异体的进化枝中物种丰富度较低的原因可能是由于反向性状状态转换的比率很高,从而使分布偏向于雌性。

著录项

  • 作者

    Farmer, Todd Allen.;

  • 作者单位

    Stephen F. Austin State University.;

  • 授予单位 Stephen F. Austin State University.;
  • 学科 Biology.;Botany.;Evolution development.
  • 学位 M.S.
  • 年度 2015
  • 页码 66 p.
  • 总页数 66
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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