首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Accumulation of rare sex chromosome rearrangements in the African pygmy mouse, Mus (Nannomys) minutoides: a whole-arm reciprocal translocation (WART) involving an X-autosome fusion.
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Accumulation of rare sex chromosome rearrangements in the African pygmy mouse, Mus (Nannomys) minutoides: a whole-arm reciprocal translocation (WART) involving an X-autosome fusion.

机译:非洲侏儒鼠(Mu(Nannomys)minutoides)中的罕见性染色体重排的积累:涉及X-常染色体融合的全臂倒易位(WART)。

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摘要

Although sex chromosomes are generally the most conserved elements of the mammalian karyotype, those of African pygmy mice show three extraordinary deviations from the norm: (a) asynaptic sex chromosomes, (b) multiple sex-autosome fusions, and (c) modifications of sex determination in some populations/species. In this study we identified, in two sex-reversed females of Mus (Nannomys) minutoides, a fourth rare sex chromosome change: a spontaneous whole-arm reciprocal translocation (WART) between an autosomal Robertsonian pair Rb(13.16) and the sex-autosome fusion Rb(X.1). This represents one of the very few reported cases of WARTs in natura within mammals, and is the first one to involve sex chromosomes. Hence, this finding offers new insights into the mechanisms of chromosomal differentiation in African pygmy mice, as WARTs may have contributed to the extensive diversity not only of autosomal Robertsonian fusions, but also of sex-autosome translocations. More widely, these results provide additional support to previous studies on the house mouse and the common shrew which indirectly inferred the role of WARTs in their karyotypic evolution, and may even help to understand how the fascinating 10 sex chromosome chain of the platypus might have evolved. This accumulation of rare sex chromosome changes in single specimens is, to our knowledge, exceptional among mammals.
机译:尽管性染色体通常是哺乳动物核型中最保守的元素,但非洲侏儒小鼠的性染色体显示出与标准的三个非同寻常的偏差:(a)突触性染色体,(b)多性常染色体融合,以及(c)性改变在某些种群/物种中的决心。在这项研究中,我们确定了在两名Mus(Nannomys minutoides)性别相反的雌性中,第四个罕见的性染色体改变:常染色体罗伯逊对Rb(13.16)和性常染色体之间的自发全臂倒易位(WART)。融合Rb(X.1)。这代表了哺乳动物中自然界中报道的极少数WART病例之一,并且是第一个涉及性染色体的病例。因此,这一发现为非洲侏儒小鼠的染色体分化机制提供了新的见解,因为WARTs不仅促进了常染色体罗伯逊融合体的广泛多样性,而且也促进了性常染色体易位。更广泛地讲,这些结果为先前关于家鼠和普通sh的研究提供了额外的支持,这些研究间接推断了WART在其核型进化中的作用,甚至可能有助于了解鸭嘴兽的迷人10性染色体链如何进化。 。据我们所知,在单个样本中这种罕见的性染色体变化的积累在哺乳动物中是例外的。

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