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海洋哺乳动物Tbx4基因的序列变异

Sequence variation in the Tbx4 gene in marine mammals.

作者信息

Onbe Kaori, Nishida Shin, Sone Emi, Kanda Naohisa, Goto Mutsuo, Pastene Luis A, Tanabe Shinsuke, Koike Hiroko

机构信息

Laboratory of Biodiversity, Department of Environmental Change, Graduate School of Social and Cultural Studies, Kyushu University, Fukuoka, Japan.

出版信息

Zoolog Sci. 2007 May;24(5):449-64. doi: 10.2108/zsj.24.449.

Abstract

The amino-acid sequences of the T-domain region of the Tbx4 gene, which is required for hindlimb development, are 100% identical in humans and mice. Cetaceans have lost most of their hindlimb structure, although hindlimb buds are present in very early cetacean embryos. To examine whether the Tbx4 gene has the same function in cetaceans as in other mammals, we analyzed Tbx4 sequences from cetaceans, dugong, artiodactyls and marine carnivores. A total of 39 primers were designed using human and dog Tbx4 nucleotide sequences. Exons 3, 4, 5, 6, 7, and 8 of the Tbx4 genes from cetaceans, artiodactyls, and marine carnivores were sequenced. Non-synonymous substitution sites were detected in the T-domain regions from some cetacean species, but were not detected in those from artiodactyls, the dugong, or the carnivores. The C-terminal regions contained a number of non-synonymous substitutions. Although some indels were present, they were in groups of three nucleotides and therefore did not cause frame shifts. The dN/dS values for the T-domain and C-terminal regions of the cetacean and artiodactylous Tbx4 genes were much lower than 1, indicating that the Tbx4 gene maintains it function in cetaceans, although full expression leading to hindlimb development is suppressed.

摘要

Tbx4基因的T结构域区域的氨基酸序列在人类和小鼠中100%相同,而后肢发育需要该区域。鲸类动物已经失去了大部分后肢结构,尽管在鲸类动物胚胎的早期阶段存在后肢芽。为了研究Tbx4基因在鲸类动物中是否与在其他哺乳动物中具有相同的功能,我们分析了来自鲸类动物、儒艮、偶蹄目动物和海洋食肉动物的Tbx4序列。利用人类和狗的Tbx4核苷酸序列设计了总共39对引物。对鲸类动物、偶蹄目动物和海洋食肉动物的Tbx4基因的外显子3、4、5、6、7和8进行了测序。在一些鲸类动物物种的T结构域区域中检测到非同义替换位点,但在偶蹄目动物、儒艮或食肉动物的T结构域区域中未检测到。C末端区域包含许多非同义替换。虽然存在一些插入缺失,但它们是三个核苷酸一组,因此不会导致移码。鲸类动物和偶蹄目动物Tbx4基因的T结构域和C末端区域的dN/dS值远低于1,这表明Tbx4基因在鲸类动物中保持其功能,尽管导致后肢发育的完整表达受到抑制。

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