首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Independent evolution of a new allele of F1 pollen sterility gene S27 encoding mitochondrial ribosomal protein L27 in Oryza nivara.
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Independent evolution of a new allele of F1 pollen sterility gene S27 encoding mitochondrial ribosomal protein L27 in Oryza nivara.

机译:一个新的F 1 花粉不育基因 S27 编码线粒体核糖体蛋白L27的新等位基因在Oyza nivara 中的独立进化。

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Loss of function of duplicated genes plays an important role in the evolution of postzygotic reproductive isolation. The widespread occurrence of gene duplication followed by rapid loss of function of some of the duplicate gene copies suggests the independent evolution of loss-of-function alleles of duplicate genes in divergent lineages of speciation. Here, we found a novel loss-of-function allele of S27 in the Asian annual wild species Oryza nivara, designated S27-nivs, that leads to F1 pollen sterility in a cross between O. sativa and O. nivara. Genetic linkage analysis and complementation analysis demonstrated that S27-niv s lies at the same locus as the previously identified S27 locus and S27-nivs is a loss-of-function allele of S27. S27-nivs is composed of two tandem mitochondrial ribosomal protein L27 genes (mtRPL27a and mtRPL27b), both of which are inactive. The coding and promoter regions of S27-nivs showed a number of nucleotide differences from the functional S27-T65+ allele. The structure of S27-nivs is different from that of a previously identified null S27 allele, S27-glums, in the South American wild rice species O. glumaepatula, in which mtRPL27a and mtRPL27b are absent. These results show that the mechanisms for loss-of-function of S27-nivs and S27-glums are different. Our results provide experimental evidence that different types of loss-of-function alleles are distributed in geographically and phylogenetically isolated species and represent a potential mechanism for postzygotic isolation in divergent species.Digital Object Identifier http://dx.doi.org/10.1007/s00122-010-1454-y
机译:复制基因的功能丧失在合子后生殖分离的进化中起重要作用。基因复制的普遍发生,随后某些复制基因拷贝的功能迅速丧失,这表明在物种不同的谱系中复制基因的功能丧失等位基因的独立进化。在这里,我们在亚洲一年生野生物种 Oryza nivara 中发现了一个新的 S27 功能丧失等位基因,命名为 S27-niv s ,导致在 O之间杂交的F 1 花粉不育。苜蓿和 O。涅瓦拉。遗传连锁分析和互补分析表明, S27-niv s 与先前确定的 S27 位于同一位置基因座和 S27-niv s 是 S27 的功能丧失等位基因。 S27-niv s 由两个串联的线粒体核糖体蛋白L27 基因( mtRPL27a >和 mtRPL27b ),它们均处于非活动状态。 S27-niv s 的编码区和启动子区与功能性 S27-T65 有许多核苷酸差异 + 等位基因。 S27-niv s 的结构与先前确定的无效 S27 等位基因的结构不同南美野生稻种 O中的S27-glum s 。 glumaepatula ,其中没有 mtRPL27a 和 mtRPL27b 。这些结果表明 S27-niv s 和 S27-glum < i> s 是不同的。我们的结果提供了实验证据,表明不同类型的功能丧失等位基因分布在地理上和系统发育上分离的物种中,并且代表了不同物种的合子后分离的潜在机制。数字对象标识符http://dx.doi.org/10.1007/ s00122-010-1454-y

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