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黑颈乌龟(地龟科,龟鳖目)的 X 和 Y 染色体的起源和分化过程。

The origin and differentiation process of X and Y chromosomes of the black marsh turtle (Siebenrockiella crassicollis, Geoemydidae, Testudines).

机构信息

Laboratory of Animal Genetics, Department of Applied Molecular Biosciences, Graduate School of Bioagricultural Sciences, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Japan.

出版信息

Chromosome Res. 2012 Jan;20(1):95-110. doi: 10.1007/s10577-011-9267-7.

Abstract

The black marsh turtle (Siebenrockiella crassicollis) has morphologically differentiated X and Y sex chromosomes. To elucidate the origin and evolutionary process of S. crassicollis X and Y chromosomes, we performed cross-species chromosome painting with chromosome-specific DNA from Chinese soft-shelled turtle (Pelodiscus sinensis) and chromosome mapping of the sex-linked genes of S. crassicollis using FISH. The X and Y chromosomes of S. crassicollis were hybridized with DNA probe of P. sinensis chromosome 5, which is homologous to chicken chromosome 5. S. crassicollis homologues of 14 chicken chromosome 5-linked genes were all localized to the X long arm, whereas two genes were mapped to the Y short arm and the other 12 genes were localized to the Y long arm in the same order as the X chromosome. This result suggests that extensive linkage homology has been retained between chicken chromosome 5 and S. crassicollis X and Y chromosomes and that S. crassicollis X and Y chromosomes are at an early stage of sex chromosome differentiation. Comparison of the locations of two site-specific repetitive DNA sequences on the X and Y chromosomes demonstrated that the centromere shift was the result of centromere repositioning, not of pericentric inversion.

摘要

黑颈乌龟(Siebenrockiella crassicollis)具有形态上分化的 X 和 Y 性染色体。为了阐明 S. crassicollis X 和 Y 染色体的起源和进化过程,我们使用来自中华鳖(Pelodiscus sinensis)的染色体特异性 DNA 进行了跨物种染色体杂交,并使用 FISH 对 S. crassicollis 的性连锁基因进行了染色体定位。S. crassicollis 的 X 和 Y 染色体与中华鳖染色体 5 的 DNA 探针杂交,该染色体与鸡染色体 5 同源。S. crassicollis 的 14 个与鸡染色体 5 连锁的基因均定位于 X 长臂,而 2 个基因定位于 Y 短臂,另外 12 个基因按与 X 染色体相同的顺序定位于 Y 长臂。这一结果表明,鸡染色体 5 与 S. crassicollis X 和 Y 染色体之间保持了广泛的连锁同源性,并且 S. crassicollis X 和 Y 染色体处于性染色体分化的早期阶段。对 X 和 Y 染色体上两个特异性重复 DNA 序列位置的比较表明,着丝粒移位是着丝粒重新定位的结果,而不是着丝粒倒位的结果。

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