首页> 外文期刊>Cytogenetic and genome research >In situ Localization of (GATA)n and (TTAGGG)n Repeated DNAs and W Sex Chromosome Differentiation in Parodontidae (Actinopterygii: Characiformes)
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In situ Localization of (GATA)n and (TTAGGG)n Repeated DNAs and W Sex Chromosome Differentiation in Parodontidae (Actinopterygii: Characiformes)

机译:(GATA)n和(TTAGGG)n重复DNA的原位定位和翼齿科的W性染色体分化(放线in:Characiformes)

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摘要

The family Parodontidae presents a conserved diploid number of 54 chromosomes and different stages associated with ZW sex chromosome differentiation. For the great majority of species in this family it was proposed that the karyotypic diversification is mostly due to repetitive DNA mobility and accumulation. In this study, 2 repetitive probes, (GATA)(n) and (TTAGGG)(n), were used to assess probable mechanisms of chromosome diversification, especially those related to molecular differentiation of the W chromosome. Results showed that the (GATA)(n) sequence is involved in the differentiation of the W chromosome female-specific region of Parodontidae and that it is accumulated in diverse autosomes. The (TTAGGG)(n) repeat is part of the vertebrate telomere, and the presence of interstitial telomeric sites may help to identify chromosome re-arrangements. However, in Parodontidae, no interstitial telomeric sites were detected. This study shows plasticity in the amount of the (GATA)(n) repeat in Parodontidae that may be involved in chromatin modifications and transcriptional control of the W chromosome, and the role of repetitive DNAs in genomic diversification in this fish family is discussed. (C) 2015 S. Karger AG, Basel
机译:Parodontidae家族呈现54个染色体的保守二倍体数,并具有与ZW性染色体分化相关的不同阶段。对于该家族中的绝大多数物种,有人提出核型多样化主要是由于重复的DNA迁移和积累。在这项研究中,使用2个重复探针(GATA)(n)和(TTAGGG)(n)来评估染色体多样化的可能机制,尤其是那些与W染色体分子分化有关的机制。结果表明,(GATA)(n)序列参与了巨蜥科W染色体雌性特异性区域的分化,并在各种常染色体中积累。 (TTAGGG)(n)重复是脊椎动物端粒的一部分,并且间质端粒位点的存在可能有助于鉴定染色体重排。然而,在腮腺科中,没有发现间质端粒位点。这项研究表明,在齿齿亚科中(GATA)(n)重复序列的数量可塑性,可能与染色质修饰和W染色体的转录控制有关,并讨论了该鱼类家族中重复DNA在基因组多样化中的作用。 (C)2015 S.Karger AG,巴塞尔

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