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首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Chromosome homeologies and high variation in heterochromatin distribution between Citrus L. and Poncirus Raf. as evidenced by comparative cytogenetic mapping.
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Chromosome homeologies and high variation in heterochromatin distribution between Citrus L. and Poncirus Raf. as evidenced by comparative cytogenetic mapping.

机译:柑橘的形态学和柑橘和庞氏拉夫之间异染色质分布的高度变异。比较的细胞遗传学作图证明。

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The genus Citrus is well-known for its economic importance and complex taxonomy. Only three to six Citrus taxa are considered true biological species, among them is Citrus medica, the citron. Previous studies based on chromomycin A3 (CMA)/4',6-diamidino-2-phenylindole staining showed that the citron has a homomorphic karyotype, consisting of four distinct chromosome types according to the CMA(+) heterochromatin distribution. Based on the pattern of CMA(+) bands and the hybridization of 25 bacterial artificial chromosomes (BACs) from a genomic library of Poncirus trifoliata, a closely related species to the genus Citrus, we were able to identify each chromosome pair and build a comparative cytogenetic map for C. medica. The data showed a high degree of sequence conservation between these genera, enabling heterologous hybridization of BACs, and the establishment of chromosomal homeologies. It was thus possible to visualize changes in the position of some BACs in relation to CMA(+) bands. Since no breakdown of synteny was observed between these species, expansions and contractions in repetitive DNA sequences seem to be the major driving force of chromosomal evolution since the separation of these two genera.
机译:柑橘属以其经济重要性和复杂的分类法而闻名。只有三到六个柑橘类群被认为是真正的生物物种,其中包括柚子。先前基于染色霉素A3(CMA)/ 4',6-diamidino-2-phenylindole染色的研究表明,香tron具有同型核型,根据CMA(+)异染色质分布,由四种不同的染色体类型组成。基于CMA(+)谱带的模式以及来自Poncirus trifoliata基因组库(与柑橘属密切相关的物种)的25条细菌人工染色体(BAC)的杂交,我们能够鉴定每个染色体对并建立一个比较C. medica的细胞遗传图谱。数据显示这些属之间的高度序列保守性,使得BAC能够进行异源杂交,并建立了染色体同源性。因此,可以可视化某些BAC相对于CMA(+)波段的位置变化。由于未观察到这些物种之间的同构性分解,自从这两个属分离以来,重复DNA序列中的扩增和收缩似乎是染色体进化的主要驱动力。

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