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Episodic evolution of prolactingene in primates

Episodic evolution of prolactin gene in primates
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摘要 In the present study, we obtained exon 2―5 of prolactin (PRL) gene from four primate species by PCR and sequencing. Adding other genes available in GenBank, we calculate amino acid substitution rates for prolactin gene in primate. Comparison of nonsynonymous substitution rate to synonymous substitution rate ratios shows no evidence of positive selection for any lineage of primate prolactin gene. According to this and the facts that (i) no sites under positive selection are inferred by using maximum-likelihood method; (ii) among 32 amino acid replacement that occurred along the rapid evolutionary phase, only two are included in the 40 functionally important residues, indicating that amino acid replacement tends to occur in those functionally unimportant residues; (iii) partial of prolactin function is replaced by pla-cental lactogen in primate at the rapid evolutionary phase of prolactin gene, we thus deem that it is relaxation of purifying selection to some extent rather than positive selection that enforces the rapid evolution of primate prolactin gene. In the present study, we obtained exon 2-5 of prolactin (PRL) gene from four primate species by PCR and sequencing. Adding other genes available in GenBank, we calculate amino acid substitution rates for prolactin gene in primate. Comparison of nonsynonymous substitution rate to synonymous substitution rate ratios shows no evidence of positive selection for any lineage of primate prolactin gene. According to this and the facts that (i) no sites under positive selection are inferred by using maximum-likelihood method; (ii) among 32 amino acid replacement that occurred along the rapid evolutionary phase, only two are included in the 40 functionally important residues, indicating that amino acid replacement tends to occur in those functionally unimportant residues; (iii) partial of prolactin function is replaced by placental lactogen in primate at the rapid evolutionary phase of prolactin gene, we thus deem that it is relaxation of purifying selection to some extent rather than positive selection that enforces the rapid evolution of primate prolactin gene.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2005年第13期1348-1351,共4页
基金 supported by the National Natural Science Foundation of China(Grant Nos.30021004&30430110) Yunnan Bureau of Science and Technology,and the Chinese Academy of Sciences
关键词 泌乳刺激素 灵长类动物 进化论 遗传基因 prolactin primate evolution
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参考文献2

  • 1O. Caryl Wallis,Akofa O. Mac-Kwashie,Georgia Makri,Michael Wallis.Molecular Evolution of Prolactin in Primates[J].Journal of Molecular Evolution.2005(5)
  • 2Michael Wallis.Episodic Evolution of Protein Hormones: Molecular Evolution of Pituitary Prolactin[J].Journal of Molecular Evolution.2000(5)

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