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四倍体遗传对遗传多样性和种群分化的影响。

The effects of inheritance in tetraploids on genetic diversity and population divergence.

机构信息

Institute of Biodiversity and Ecosystem Dynamics, Universiteit van Amsterdam, Amsterdam, The Netherlands.

出版信息

Heredity (Edinb). 2013 Feb;110(2):131-7. doi: 10.1038/hdy.2012.80. Epub 2012 Dec 5.

Abstract

Polyploids are traditionally classified into allopolyploids and autopolyploids, based on their evolutionary origin and their disomic or multisomic mode of inheritance. Over the past decade it has become increasingly clear that there is a continuum between disomic and multisomic inheritance, with the rate of tetrasomy differing among species and among chromosomes within species. Here, we use a simple population genetic model to study the impact of the mode of inheritance on the genetic diversity and population divergence of tetraploids. We found that under almost strict disomic inheritance the tetraploid genome is divided into two separate subgenomes, such as found in classical allopolyploids. In those cases, assuming full tetrasomy in the analysis of polyploid genetic data will lead to an important bias in estimates of genetic diversity and population divergence. However, we found that even a low rate of allele exchange between the two subgenomes, at about one event per generation, is sufficient to homogenise the allele frequencies over the subgenomes, and the estimates become essentially unbiased. The inbreeding coefficient F(IS) can then be used to detect whether the estimates of diversity and divergence will be biased when full multisomy is assumed. Finally, we found that different summary statistics for measuring the strength of population differentiation are differentially affected by a deviation from full tetrasomy. Our model results provide several useful guidelines for the analysis of polyploid data, helping researchers to determine when their inferences are biased and which summary statistics to use.

摘要

多倍体传统上根据其进化起源和二倍体或多倍体的遗传方式分为异源多倍体和同源多倍体。在过去的十年中,越来越明显的是,二倍体和多倍体遗传之间存在一个连续体,四倍体的四倍体率在物种间和物种内的染色体间存在差异。在这里,我们使用一个简单的群体遗传模型来研究遗传方式对四倍体的遗传多样性和种群分化的影响。我们发现,在几乎严格的二倍体遗传下,四倍体基因组被分为两个独立的亚基因组,就像经典的异源多倍体一样。在这些情况下,在分析多倍体遗传数据时假设完全四倍体将导致遗传多样性和种群分化估计的重要偏差。然而,我们发现,即使两个亚基因组之间的等位基因交换率很低,大约每代一个事件,也足以使亚基因组之间的等位基因频率均匀化,并且估计基本上没有偏差。然后,可以使用自交系数 F(IS)来检测当假设完全多倍体时,多样性和分化的估计是否存在偏差。最后,我们发现,用于衡量种群分化强度的不同综合统计数据受到与完全四倍体的偏差的不同影响。我们的模型结果为多倍体数据的分析提供了一些有用的指导,帮助研究人员确定他们的推断是否存在偏差以及使用哪些综合统计数据。

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POLYSAT: an R package for polyploid microsatellite analysis.POLYSAT:一个用于分析多倍体微卫星的 R 包。
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Assessing population structure: F(ST) and related measures.评估群体结构:F(ST)和相关测度。
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G'ST and D do not replace FST.G'ST 和 D 不能替代 FST。
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