首页> 外文期刊>Cytogenetic and genome research >Molecular cytogenetics (FISH, GISH) of Coccinia grandis: a ca. 3 myr-old species of Cucurbitaceae with the largest Y/autosome divergence in flowering plants.
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Molecular cytogenetics (FISH, GISH) of Coccinia grandis: a ca. 3 myr-old species of Cucurbitaceae with the largest Y/autosome divergence in flowering plants.

机译:大球藻的分子细胞遗传学(FISH,GISH): 3个多年生古葫芦科物种,在开花植物中具有最大的Y /常染色体差异。

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The independent evolution of heteromorphic sex chromosomes in 19 species from 4 families of flowering plants permits studying X/Y divergence after the initial recombination suppression. Here, we document autosome/Y divergence in the tropical Cucurbitaceae Coccinia grandis, which is ca. 3 myr old. Karyotyping and C-value measurements show that the C. grandis Y chromosome has twice the size of any of the other chromosomes, with a male/female C-value difference of 0.094 pg or 10% of the total genome. FISH staining revealed 5S and 45S rDNA sites on autosomes but not on the Y chromosome, making it unlikely that rDNA contributed to the elongation of the Y chromosome; recent end-to-end fusion also seems unlikely given the lack of interstitial telomeric signals. GISH with different concentrations of female blocking DNA detected a possible pseudo-autosomal region on the Y chromosome, and C-banding suggests that the entire Y chromosome in C. grandis is heterochromatic. During meiosis, there is an end-to-end connection between the X and the Y chromosome, but the X does not otherwise differ from the remaining chromosomes. These findings and a review of plants with heteromorphic sex chromosomes reveal no relationship between species age and degree of sex chromosome dimorphism. Its relatively small genome size (0.943 pg/2C in males), large Y chromosome, and phylogenetic proximity to the fully sequenced Cucumis sativus make C. grandis a promising model to study sex chromosome evolution.
机译:来自4个开花植物科的19个物种中的异型性染色体的独立进化允许研究在初始重组抑制后X / Y差异。在这里,我们记录了在热带葫芦科球菌Coccinia grandis中的常染色体/ Y差异。 3岁。核型分析和C值测量显示,巨球藻Y染色体的大小是其他任何染色体的两倍,男女C值的差异为0.094 pg,占总基因组的10%。 FISH染色显示常染色体上的5S和45S rDNA位点,但在Y染色体上没有,因此rDNA不太可能有助于Y染色体的延长。考虑到缺乏间质性端粒信号,最近的端到端融合似乎不太可能。具有不同浓度雌性封闭DNA的GISH检测到Y染色体上可能存在假常染色体区域,C谱带表明,大假丝酵母中的整个Y染色体都是异色的。在减数分裂过程中,X和Y染色体之间存在端到端的连接,但是X与其余染色体没有其他区别。这些发现以及对具有异型性染色体的植物的评论表明,物种年龄与性染色体二态性程度之间没有关系。其相对较小的基因组大小(男性为0.943 pg / 2C),大的Y染色体以及与完全测序的黄瓜(Cucumis sativus)的系统发育接近性,使得C. grandis成为研究性染色体进化的有前途的模型。

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