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首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >The ZW sex microchromosomes of an Australian dragon lizard share no homology with those of other reptiles or birds.
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The ZW sex microchromosomes of an Australian dragon lizard share no homology with those of other reptiles or birds.

机译:澳大利亚龙蜥蜴的ZW性微染色体与其他爬行动物或鸟类的ZW性微染色体没有任何同源性。

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摘要

Reptiles show a diverse array of sex chromosomal systems but, remarkably, the Z sex chromosomes of chicken are homologous to the ZW sex chromosomes of a species of gecko, Gekko hokouensis, suggesting an ancient but common origin. This is in contrast to the ZW sex chromosomes of snakes and a species of soft-shelled turtle, Pelodiscus sinensis, which are nonhomologous to those of chicken or each other and appear to have been independently derived. In this paper, we determine what homology, if any, the sex chromosomes of the Australian dragon lizard Pogona vitticeps shares with those of snake and chicken by mapping the dragon homologs of five snake Z chromosome genes (WAC, KLF6, TAX1BP1, RAB5A, and CTNNB1) and five chicken Z chromosome genes (ATP5A1, GHR, DMRT1, CHD1, and APTX) to chromosomes in the dragon. The dragon homologs of snake and chicken sex chromosome genes map to chromosomes 6 and chromosome 2, respectively, in the dragon and that DMRT1, the bird sex-determining gene, is not located on the sex chromosomes of P. vitticeps. Indeed, our data show that the dragon homolog to the chicken Z chromosome is likely to be wholly contained within chromosome 2 in P. vitticeps, which suggests that the sex-determining factor in P. vitticeps is not the sex-determining gene of chicken. Homology between chicken Z chromosome and G. hokouensis ZW chromosome pairs has been interpreted as retention of ancient ZW sex chromosomes in which case the nonhomologous sex chromosomes of snake and dragons would be independently derived. Our data add another case of independently derived sex chromosomes in a squamate reptile, which makes retention of ancient sex chromosome homology in the squamates less plausible. Alternatively, the conservation between the bird Z chromosome and the G. hokouensis ZW chromosomes pairs is coincidental, may be an example of convergent evolution, its status as the Z chromosome having been independently derived in birds and G. hokouensis.
机译:爬行动物显示出各种各样的性染色体系统,但是,值得注意的是,鸡的Z性染色体与壁虎物种Gekko hokouensis的ZW性染色体同源,这表明它是古老而普遍的起源。这与蛇的ZW性染色体和中华turtle的一种相形见contrast,它们与鸡或它们的彼此不同源,并且似乎是独立衍生的。在本文中,我们通过绘制五个蛇Z染色体基因(WAC,KLF6,TAX1BP1,RAB5A和RAB5A)的龙同源物,来确定澳大利亚龙蜥蜴Pogona vitticeps与蛇和鸡的性染色体具有什么同源性(如果有) CTNNB1)和五个鸡Z染色体基因(ATP5A1,GHR,DMRT1,CHD1和APTX)到龙中的染色体。蛇和鸡的性染色体基因的龙同源物分别映射到龙中的第6号染色体和第2号染色体,而鸟的性别决定基因DMRT1不在白僵菌的性染色体上。确实,我们的数据表明,与鸡Z染色体的龙同源物很可能全部包含在维氏假单胞菌的2号染色体内,这表明维氏假单胞菌的性别决定因素不是鸡的性别决定基因。鸡Z染色体与霍氏弧菌ZW染色体对之间的同源性已被解释为保留了古老的ZW性染色体,在这种情况下,蛇和龙的非同源性染色体将独立获得。我们的数据在鳞状爬行动物中添加了另一例独立衍生的性染色体,这使得保留在鳞状细胞中的古老性染色体同源性变得不太合理。或者,鸟类Z染色体与霍氏弧菌ZW染色体对之间的保守性是巧合的,可能是趋同进化的一个例子,它作为Z染色体的地位已独立地来自鸟类和霍氏弧菌。

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