Statistical methods for estimating the effective number of alleles, expected heterozygosity and genetic distance in self-incompatibility locus.

Idengaku zasshi Pub Date : 1994-06-01 DOI:10.1266/jjg.69.287
F Tajima, T Tokunaga, N T Miyashita
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引用次数: 8

Abstract

In order to understand the evolutionary process of self-incompatibility, we must know the genetic variability of the self-incompatibility genes within and between populations. Statistical methods for estimating the effective number of alleles, expected heterozygosity and genetic distance from pollination experiments were developed, which can be applied to both gametophytic and sporophytic self-incompatibility systems. In these methods, bud-pollination, which is necessary for obtaining homozygotes, is not required. Since bud-pollination, which is time-consuming, is not required in the present methods, they might be useful.

自交不亲和位点有效等位基因数、期望杂合度和遗传距离的统计估计方法。
为了了解自交不亲和的进化过程,我们必须了解种群内和种群间自交不亲和基因的遗传变异性。建立了有效等位基因数、期望杂合度和遗传距离的统计方法,可应用于配子体和孢子体自交不亲和系统。在这些方法中,不需要获得纯合子所必需的花蕾授粉。由于目前的方法不需要花时间进行花蕾授粉,因此它们可能是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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