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Neopolyploidy and diversification in Heuchera grossulariifolia

机译:禾本科叶片中的新多倍体和多样性

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Newly formed polyploid lineages must contend with several obstacles to avoid extinction, including minority cytotype exclusion, competition, and inbreeding depression. If polyploidization results in immediate divergence of phenotypic characters these hurdles may be reduced and establishment made more likely. In addition, if polyploidization alters the phenotypic and genotypic associations between traits, that is, the P and G matrices, polyploids may be able to explore novel evolutionary paths, facilitating their divergence and successful establishment. Here, we report results from a study of the perennial plant Heuchera grossulariifolia in which the phenotypic divergence and changes in phenotypic and genotypic covariance matrices caused by neopolyploidization have been estimated. Our results reveal that polyploidization causes immediate divergence for traits relevant to establishment and results in significant changes in the structure of the phenotypic covariance matrix. In contrast, our results do not provide evidence that polyploidization results in immediate and substantial shifts in the genetic covariance matrix.
机译:新近形成的多倍体谱系必须与几个障碍抗争以避免灭绝,包括少数细胞类型的排斥,竞争和近亲衰退。如果多倍体化导致表型特征立即发散,则这些障碍可能会减少,建立起来的可能性更大。此外,如果多倍体化改变了性状之间的表型和基因型关联,即P和G矩阵,则多倍体可能能够探索新颖的进化路径,从而促进它们的分化和成功建立。在这里,我们报告了对多年生植物Heuchera grossulariifolia的研究结果,其中估计了表型差异以及由新多倍体化引起的表型和基因型协方差矩阵的变化。我们的结果表明,多倍体化导致与建立相关的性状立即分化,并导致表型协方差矩阵的结构发生重大变化。相反,我们的结果没有提供证据表明多倍体化导致遗传协方差矩阵立即发生实质性变化。

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