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Molecular cytogenetic mapping of Cucumis sativus and C. melo using highly repetitive DNA sequences

机译:利用高度重复的DNA序列对黄瓜和黄瓜的分子细胞遗传学作图

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摘要

Chromosomes often serve as one of the most important molecular aspects of studying the evolution of species. Indeed, most of the crucial mutations that led to differentiation of species during the evolution have occurred at the chromosomal level. Furthermore, the analysis of pachytene chromosomes appears to be an invaluable tool for the study of evolution due to its effectiveness in chromosome identification and precise physical gene mapping. By applying fluorescence in situ hybridization of 45S rDNA and CsCent1 probes to cucumber pachytene chromosomes, here, we demonstrate that cucumber chromosomes 1 and 2 may have evolved from fusions of ancestral karyotype with chromosome number n = 12. This conclusion is further supported by the centromeric sequence similarity between cucumber and melon, which suggests that these sequences evolved from a common ancestor. It may be after or during speciation that these sequences were specifically amplified, after which they diverged and specific sequence variants were homogenized. Additionally, a structural change on the centromeric region of cucumber chromosome 4 was revealed by fiber-FISH using the mitochondrial-related repetitive sequences, BAC-E38 and CsCent1. These showed the former sequences being integrated into the latter in multiple regions. The data presented here are useful resources for comparative genomics and cytogenetics of Cucumis and, in particular, the ongoing genome sequencing project of cucumber.
机译:染色体通常是研究物种进化的最重要的分子方面之一。确实,导致进化过程中物种分化的大多数关键突变都发生在染色体水平上。此外,由于粗线在染色体鉴定和精确的物理基因作图方面的有效性,因此粗线染色体的分析似乎是研究进化的宝贵工具。通过将45S rDNA和CsCent1探针荧光原位杂交技术应用于黄瓜粗线粒体染色体,在这里,我们证明了黄瓜染色体1和2可能是由祖先染色体核型n = 12的融合体进化而来的。黄瓜和瓜之间的序列相似性,表明这些序列是从共同祖先进化而来的。这些序列可能在物种形成之后或期间被特异性扩增,之后它们发生分歧,并且特定序列变体被均质化。此外,使用线粒体相关的重复序列BAC-E38和CsCent1,通过纤维-FISH揭示了黄瓜第4号染色体着丝粒区域的结构变化。这些表明前者序列在多个区域被整合到后者中。此处提供的数据可用于黄瓜的比较基因组学和细胞遗传学研究,尤其是正在进行的黄瓜基因组测序项目。

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