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鼠类啮齿动物中透明带3糖蛋白羧基末端区域的分子进化

Molecular evolution of the carboxy terminal region of the zona pellucida 3 glycoprotein in murine rodents.

作者信息

Swann Christine A, Cooper Steven J B, Breed William G

机构信息

School of Medical Sciences, Faculty of Health Sciences, University of Adelaide, North Terrace, Adelaide, 5005 South Australia.

出版信息

Reproduction. 2007 Apr;133(4):697-708. doi: 10.1530/REP-06-0043.

Abstract

In mammals, before fertilization can occur, sperm have to bind to, and penetrate, the zona pellucida (ZP). In the laboratory mouse, which has been used as a model system for fertilization studies, sperm-ZP binding has been found to be mediated by a region at the carboxy terminal, encoded by exon 7 of the Zp3 gene. This region shows considerable interspecific sequence diversity with some evidence of adaptive evolution in mammals, suggesting that it may contribute to species-specific sperm-ZP binding. However, in a previous study of sequence diversity of ZP3 of three species of Australian murine rodents, we found an identical protein sequence of the region encoded by exon 7. Here, we expand this earlier study to determine the sequence diversity of this region in 68 out of the 130 species of Australasian murine rodents. Maximum likelihood analyses, using representatives of both New Guinean and Australian taxa, provide evidence of positive selection at three codons adjacent to, or within, the putative combining-site for sperm of ZP3, but this was not evident when the analysis was restricted to the Australian taxa. The latter group showed low levels of both intra- and inter-generic sequence divergences in the region encoded by exon 7 of Zp3, with little evidence that this region contributes to species specificity of sperm-ZP binding. These findings suggest that the selective forces acting on the Zp3 exon 7 region during the evolution of the Australasian murine rodents have been variable, and that positive selection has only occurred in a few lineages.

摘要

在哺乳动物中,受精发生之前,精子必须结合并穿透透明带(ZP)。在用作受精研究模型系统的实验室小鼠中,已发现精子与ZP的结合是由Zp3基因第7外显子编码的羧基末端区域介导的。该区域显示出相当大的种间序列多样性,并有证据表明在哺乳动物中存在适应性进化,这表明它可能有助于物种特异性的精子与ZP的结合。然而,在先前对三种澳大利亚鼠类啮齿动物ZP3序列多样性的研究中,我们发现第7外显子编码区域的蛋白质序列是相同的。在这里,我们扩展了这项早期研究,以确定130种澳大拉西亚鼠类啮齿动物中68种该区域的序列多样性。使用新几内亚和澳大利亚分类群的代表进行的最大似然分析,提供了在ZP3精子假定结合位点附近或之内的三个密码子上存在正选择的证据,但当分析仅限于澳大利亚分类群时,这并不明显。后一组在Zp3第7外显子编码区域的属内和属间序列分歧水平都很低,几乎没有证据表明该区域有助于精子与ZP结合的物种特异性。这些发现表明,在澳大拉西亚鼠类啮齿动物进化过程中作用于Zp3第7外显子区域的选择力是可变的,并且正选择只发生在少数谱系中。

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