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首页> 外文期刊>Hereditas >Contrasting patterns of nucleotide polymorphism suggest different selective regimes within different parts of the PgiC1 gene in Festuca ovina L.
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Contrasting patterns of nucleotide polymorphism suggest different selective regimes within different parts of the PgiC1 gene in Festuca ovina L.

机译:核苷酸多态性的对比模式表明在卵形羊茅PgiC1基因的不同部分内有不同的选择机制。

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摘要

Phosphoglucose isomerase (PGI, EC 5.3.1.9) is an essential metabolic enzyme in all eukaryotes. An earlier study of the PgiC1 gene, which encodes cytosolic PGI in the grass Festuca ovina L., revealed a marked difference in the levels of nucleotide polymorphism between the 5’ and 3’ portions of the gene. In the present study, we characterized the sequence polymorphism in F. ovina PgiC1 in more detail and examined possible explanations for the non-uniform pattern of nucleotide polymorphism across the gene. Our study confirms that the two portions of the PgiC1 gene show substantially different levels of DNA polymorphism and also suggests that the peptide encoded by the 3’ portion of PgiC1 is functionally and structurally more important than that encoded by the 5’ portion. Although there was some evidence of purifying selection (d N/d S test) on the 5’ portion of the gene, the signature of purifying selection was considerably stronger on the 3’ portion of the gene (d N/d S and McDonald–Kreitman tests). Several tests support the action of balancing selection within the 5’ portion of the gene. Wall’s B and Q tests were significant only for the 5’ portion of the gene. There were also marked peaks of nucleotide diversity, Tajima’s D and the d N/d S ratio at or around a PgiC1 codon site (within the 5’ portion of the gene) that a previous study had suggested was subject to positive diversifying selection. Our results suggest that the two portions of the gene have been subject to different selective regimes. Purifying selection appears to have been the main force contributing to the relatively low level of polymorphism within the 3’ portion of the sequence. In contrast, it is possible that balancing selection has contributed to the maintenance of the polymorphism within the 5’ portion of the gene.
机译:磷酸葡萄糖异构酶(PGI,EC 5.3.1.9)是所有真核生物中必不可少的代谢酶。对PgiC1基因的较早研究表明,该基因编码草Festuca ovina L.中的胞质PGI,发现该基因5'和3'部分之间的核苷酸多态性水平存在显着差异。在本研究中,我们更详细地描述了卵形葡萄球菌PgiC1中的序列多态性,并研究了整个基因中核苷酸多态性的非均匀模式的可能解释。我们的研究证实,PgiC1基因的两个部分显示出明显不同的DNA多态性水平,并且还表明,PgiC1 3'部分编码的肽在功能和结构上比5'部分编码的肽更重要。尽管有一些证据表明可以对基因的5'部分进行选择纯化(d N / d S检验),但在基因的3'部分(d N / d S和McDonald– Kreitman测试)。一些测试支持在基因5'部分内平衡选择的作用。 Wall的B和Q测试仅对基因的5'部分有意义。 PgiC1密码子位点(在基因的5'部分内)或附近(在基因的5'部分内),还存在明显的核苷酸多样性,Tajima D和d N / d S比的峰值,这是先前的研究表明需要进行正向多样化选择。我们的结果表明,基因的两个部分已经历了不同的选择方案。纯化选择似乎是导致序列3'部分内较低水平多态性的主要因素。相反,平衡选择可能有助于维持基因5'部分内的多态性。

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