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一个MADS盒基因向植物Y染色体的重复转移。

Duplicative transfer of a MADS box gene to a plant Y chromosome.

作者信息

Matsunaga Sachihiro, Isono Erika, Kejnovsky Eduard, Vyskot Boris, Dolezel Jaroslav, Kawano Shigeyuki, Charlesworth Deborah

机构信息

Department of Integrated Biosciences, Graduate School of Frontier Sciences, University of Tokyo, Chiba, Japan.

出版信息

Mol Biol Evol. 2003 Jul;20(7):1062-9. doi: 10.1093/molbev/msg114. Epub 2003 Apr 25.

Abstract

Y chromosomes carry genes with functions in male reproduction and often have few other loci. Their evolution and the causes of genetic degeneration are of great interest. In addition to genetic degeneration, the acquisition of autosomal genes may be important in Y chromosome evolution. We here report that the dioecious plant Silene latifolia harbors a complete MADS box gene, SlAP3Y, duplicated onto the Y chromosome. This gene has no X-linked homologs but only an autosomal paralog, SlAP3A, and sequence divergence suggests that the duplication is a quite old event that occurred soon after the evolution of the sex chromosomes. Evolutionary sequence analyses using homologs of closely related species, including hermaphroditic Silene conica and dioecious Silene dioica and Silene diclinis, suggest that both SlAP3A and SlAP3Y genes encode functional proteins. Indeed, quantitative RT-PCR and in situ hybridization analyses showed that SlAP3A is expressed specifically in developing petals, but SlAP3Y is much more strongly expressed in developing stamens. The S. conica homolog, ScAP3A, is expressed in developing petals, suggesting subfunctionalization with evolution of male-specific functions, possibly due to evolutionary change in regulatory elements. Our results suggest that the acquisition of autosomal genes is an important event in the evolution of plant Y chromosomes.

摘要

Y染色体携带在雄性生殖中具有功能的基因,并且通常几乎没有其他基因座。它们的进化以及基因退化的原因备受关注。除了基因退化之外,常染色体基因的获得在Y染色体进化中可能也很重要。我们在此报告,雌雄异株植物宽叶蝇子草(Silene latifolia)含有一个完整的MADS盒基因SlAP3Y,该基因已复制到Y染色体上。这个基因没有X连锁的同源物,只有一个常染色体旁系同源物SlAP3A,并且序列差异表明这种复制是一个相当古老的事件,发生在性染色体进化后不久。使用包括雌雄同体的圆锥蝇子草(Silene conica)以及雌雄异株的二花蝇子草(Silene dioica)和叉蕊蝇子草(Silene diclinis)等近缘物种的同源物进行的进化序列分析表明,SlAP3A和SlAP3Y基因都编码功能性蛋白质。实际上,定量RT-PCR和原位杂交分析表明,SlAP3A在发育中的花瓣中特异性表达,但SlAP3Y在发育中的雄蕊中表达要强得多。圆锥蝇子草的同源物ScAP3A在发育中的花瓣中表达,这表明随着雄性特异性功能的进化发生了亚功能化,这可能是由于调控元件的进化变化所致。我们的结果表明,常染色体基因的获得是植物Y染色体进化中的一个重要事件。

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