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A cytogenetic view of sex chromosome evolution in plants

机译:植物性染色体进化的细胞遗传学观点

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The recent origin of sex chromosomes in plant species provides an opportunity to study the early stages of sex chromosome evolution. This review focuses on the cytogenetic aspects of the analysis of sex chromosome evolution in plants and in particular, on the best-studied case, the <,ev chromosomes in Silene latifolia. We discuss the emerging picture of sex chromosome evolution in plants and the further work that is required to gain better understanding of the similarities and differences between thetrends in animal and plant sex chromosome evolution. Similar to mammals, suppression of recombination between the X and Y in S. latifolia species has occurred in several steps, however there is little evidence that inversions on the S. latifolia Y chromosome have played a role in cessation of X/Y recombination. Secondly, in S. latifolia there is a lack of evidence for genetic degeneration of the Y chromosome, unlike the events documented in mammalian sex chromosomes. The insufficient number of genes isolated from this and other plant sex chromosomes does not allow us to generalize whether the trends revealed on S. latifolia Y chromosome are general for other dioecious plants. Isolation of more plant sex-linked genes and their cytogenetic mapping withfluorescent in situ hybridisation (FISH) will ultimately lead to a much better understanding of the processes driving sex chromosome evolution in plants.
机译:植物中性染色体的最新起源为研究性染色体进化的早期阶段提供了机会。这篇综述着重于植物性染色体进化分析的细胞遗传学方面,尤其是关于研究最好的情况,Silene latifolia中的<,ev染色体。我们讨论了植物中性染色体进化的新兴图景,以及为更好地了解动植物性染色体进化趋势之间的异同而需要做的进一步工作。与哺乳动物相似,在数个步骤中,S。latifolia物种中X和Y重组的抑制也得到了抑制,但是几乎没有证据表明,S。latifolia Y染色体的倒位在停止X / Y重组中发挥了作用。其次,与哺乳动物性染色体中记录的事件不同,在S. latifolia中缺乏Y染色体遗传退化的证据。从该植物性染色体和其他植物性染色体中分离的基因数量不足,这使我们无法概括S. latifolia Y染色体上揭示的趋势是否适用于其他雌雄异株植物。荧光原位杂交(FISH)分离更多植物性相关基因并进行细胞遗传学定位,将最终使人们更好地理解植物性染色体进化的过程。

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