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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A generalized least-squares estimate for the origin of sporophytic self-incompatibility.
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A generalized least-squares estimate for the origin of sporophytic self-incompatibility.

机译:孢子体自我不相容性起源的广义最小二乘估计。

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Analysis of nucleotide sequences that regulate the expression of self-incompatibility in flowering plants affords a direct means of examining classical hypotheses for the origin and evolution of this major feature of mating systems. Departing from the classical view of monophyly of all forms of self-incompatibility, the current paradigm for the origin of self-incompatibility postulates multiple episodes of recruitment and modification of preexisting genes. In Brassica, the S locus, which regulates sporophytic self-incompatibility, shows homology to a multigene family present both in self-compatible congeners and in groups for which this form of self-incompatibility is atypical. A phylogenetic analysis of S-allele sequences together with homologous sequences that do not cosegregate with self-incompatibility permits dating the change of function that marked the origin of self-incompatibility. A generalized least-squares method is introduced that provides closed-form expressions for estimates and standard errors for function-specific divergence rates and times of divergence among sequences. This analysis suggests that the age of the sporophytic self-incompatibility system expressed in Brassica exceeds species divergence within the genus by four- to fivefold. The extraordinarily high levels of sequence diversity exhibited by S alleles appears to reflect their ancient derivation, with the alternative hypothesis of hypermutability rejected by the analysis.
机译:分析调节开花植物中自交不亲和性表达的核苷酸序列,为检验经典的关于交配系统这一主要特征的起源和进化的假设提供了直接的手段。不同于所有形式的自我不相容性的一夫一妻制的经典观点,当前的自我不相容性起源范式假定了多次募集和修饰先前存在的基因。在芸苔属中,调节孢子体自我不相容性的S基因座显示出与存在于自我相容性同源基因和这种形式的自我不相容性的群体中的多基因家族的同源性。 S-等位基因序列与不与自身不相容性共分离的同源序列的系统发育分析允许对标志着自身不相容性起源的功能变化进行追溯。引入了一种通用的最小二乘方法,该方法为函数特定的发散率和序列之间的发散时间提供了用于估计的闭式表达式和标准误差。该分析表明,在芸苔属中表达的孢子性自交不亲和系统的年龄比属内物种的差异超出了四到五倍。 S等位基因表现出的异常高水平的序列多样性似乎反映了它们的古老派生,而超变异性的另一种假设被分析所拒绝。

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