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Sex chromosome differentiation revealed by genomic in-situ hybridization.

机译:通过基因组原位杂交揭示性染色体分化。

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In this work, genomic in-situ hybridization (GISH) was used to study the sex chromosome molecular differentiation on chromosomes of male and female individuals of the isopod crustacean Asellus aquaticus. As a composite hybridization probe, we contemporaneously used male and female whole genomic DNA differently labelled in the presence of an excess of unlabelled DNA of the female homogametic sex. The karyotype of A. aquaticius normally displays eight homomorphic chromosome pairs, but a heteromorphic sex chromosome pair is present in about a quarter of the males of a natural population previously identified by us. GISH did not reveal any sex chromosome molecular differentiation on the male and female homomorphic sex chromosome pair, and the karyotypes of these individuals were equally labelled by the male- and female-derived probe, while the heteromorphic Y chromosome showed a differentially labelled region only with the male-derived probe. This region evidently contains male-specific sequences but, because no similar hybridized region is observed on the male homomorphic chromosome pair, they are probably not important for sex determination but represent a molecular differentiation acquired from the Y chromosome.
机译:在这项工作中,基因组原位杂交(GISH)用于研究等足类甲壳动物Asellus aquaticus男性和女性个体染色体上的性染色体分子分化。作为复合杂交探针,我们同时使用在雌性配子体过量的未标记DNA的存在下被不同标记的雄性和雌性完整基因组DNA。 A. aquaticius的核型通常显示8个同态染色体对,但先前由我们确定的自然种群中大约四分之一的男性中存在异形性染色体对。 GISH在男女同型性染色体对上未显示任何性染色体分子分化,并且这些个体的核型均被男女来源的探针均等地标记,而异型Y染色体仅显示了一个带有差异标记的区域。雄性探针。该区域显然包含男性特异性序列,但是,由于在男性同型染色体对上未观察到相似的杂交区域,因此它们对于性别的确定可能并不重要,但代表了从Y染色体获得的分子分化。

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