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蟾头龟和鸟类共享相同的性染色体起源,但进化出了不同类型的异配性别决定。

The Staurotypus turtles and aves share the same origin of sex chromosomes but evolved different types of heterogametic sex determination.

作者信息

Kawagoshi Taiki, Uno Yoshinobu, Nishida Chizuko, Matsuda Yoichi

机构信息

Laboratory of Animal Genetics, Department of Applied Molecular Biosciences, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan.

Department of Natural History Sciences, Faculty of Science, Hokkaido University, Sapporo, Japan.

出版信息

PLoS One. 2014 Aug 14;9(8):e105315. doi: 10.1371/journal.pone.0105315. eCollection 2014.

Abstract

Reptiles have a wide diversity of sex-determining mechanisms and types of sex chromosomes. Turtles exhibit temperature-dependent sex determination and genotypic sex determination, with male heterogametic (XX/XY) and female heterogametic (ZZ/ZW) sex chromosomes. Identification of sex chromosomes in many turtle species and their comparative genomic analysis are of great significance to understand the evolutionary processes of sex determination and sex chromosome differentiation in Testudines. The Mexican giant musk turtle (Staurotypus triporcatus, Kinosternidae, Testudines) and the giant musk turtle (Staurotypus salvinii) have heteromorphic XY sex chromosomes with a low degree of morphological differentiation; however, their origin and linkage group are still unknown. Cross-species chromosome painting with chromosome-specific DNA from Chinese soft-shelled turtle (Pelodiscus sinensis) revealed that the X and Y chromosomes of S. triporcatus have homology with P. sinensis chromosome 6, which corresponds to the chicken Z chromosome. We cloned cDNA fragments of S. triporcatus homologs of 16 chicken Z-linked genes and mapped them to S. triporcatus and S. salvinii chromosomes using fluorescence in situ hybridization. Sixteen genes were localized to the X and Y long arms in the same order in both species. The orders were also almost the same as those of the ostrich (Struthio camelus) Z chromosome, which retains the primitive state of the avian ancestral Z chromosome. These results strongly suggest that the X and Y chromosomes of Staurotypus turtles are at a very early stage of sex chromosome differentiation, and that these chromosomes and the avian ZW chromosomes share the same origin. Nonetheless, the turtles and birds acquired different systems of heterogametic sex determination during their evolution.

摘要

爬行动物具有多种多样的性别决定机制和性染色体类型。龟类表现出温度依赖型性别决定和基因型性别决定,具有雄性异配(XX/XY)和雌性异配(ZZ/ZW)性染色体。鉴定许多龟类物种的性染色体并对其进行比较基因组分析,对于理解龟鳖目性别决定和性染色体分化的进化过程具有重要意义。墨西哥巨型麝香龟(Staurotypus triporcatus,动胸龟科,龟鳖目)和巨型麝香龟(Staurotypus salvinii)具有异形XY性染色体,形态分化程度较低;然而,它们的起源和连锁群仍然未知。用中华鳖(Pelodiscus sinensis)的染色体特异性DNA进行跨物种染色体涂染显示,三脊棱龟的X和Y染色体与中华鳖的6号染色体具有同源性,而中华鳖的6号染色体对应于鸡的Z染色体。我们克隆了16个鸡Z连锁基因的三脊棱龟同源物的cDNA片段,并使用荧光原位杂交将它们定位到三脊棱龟和巨型麝香龟的染色体上。在这两个物种中,16个基因以相同的顺序定位到X和Y染色体的长臂上。这些顺序也几乎与鸵鸟(Struthio camelus)的Z染色体相同,鸵鸟的Z染色体保留了鸟类祖先Z染色体的原始状态。这些结果有力地表明,麝香龟属的X和Y染色体处于性染色体分化的非常早期阶段,并且这些染色体与鸟类的ZW染色体具有相同的起源。尽管如此,龟类和鸟类在进化过程中获得了不同的异配性别决定系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d4/4133349/1f85cebbbe6a/pone.0105315.g001.jpg

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