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Chromosome painting in marsupials: genome conservation in the kangaroo family.

机译:有袋动物的染色体绘画:袋鼠家族的基因组保存。

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摘要

In order to deduce the ancestral genome arrangement in the karyotypically diverse marsupial family Macropodidae, and to assess chromosome change in this family, chromosome-specific paints from the tammar wallaby (2n = 16) were hybridized to metaphase spreads from the two species proposed to represent the 2n = 22 ancestral karyotype, as well as species with derived 2n = 20 and 2n = 14 karyotypes. Identical patterns were observed in the two 2n = 22 species, from which the rearrangements to form the three derived karyotypes may be easily deduced to be 1, 3 and 4 different fusions, respectively. The identical Thylogale and Dorcopsis genomes may both be used to represent the pleisiomorphic macropodid chromosome complement. Variation in the X chromosome was also investigated by hybridizing an X-Y shared tammar wallaby 12-kb repeat element to chromosomes from the other four macropodid species, finding that it hybridized only to the most closely related species, and therefore is of recent origin.
机译:为了推断核型多样化的有袋动物科Macropodidae的祖先基因组排列,并评估该科的染色体变化,将来自tammar小袋鼠(2n = 16)的染色体特异性涂料杂交到来自两个物种的中期扩散,这些物种被提议代表2n = 22祖先核型,以及衍生的物种2n = 20和2n = 14核型。在两个 2n = 22 物种中观察到相同的模式,从中可以很容易地推断出形成三种衍生核型的重排分别是 1、3 和 4 种不同的融合。相同的 Thylogale 和 Dorcopsis 基因组都可用于表示多形性大足染色体补体。X染色体的变异也通过将X-Y共享的tammar wallaby 12-kb重复元件杂交到其他四个大型物种的染色体上,发现它只与最密切相关的物种杂交,因此是最近的起源。

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