首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Natural and Synthetic Alleles Provide Complementary Insights Into the Nature of Selection Acting on the Men Polymorphism of Drosophila melanogaster
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Natural and Synthetic Alleles Provide Complementary Insights Into the Nature of Selection Acting on the Men Polymorphism of Drosophila melanogaster

机译:天然和合成等位基因对果蝇果蝇男性多态性的选择性质提供补充见解

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Two malic enzyme alleles, Men 113A and Men 113G, occur at approximately equal frequency in North American populations of Drosophila melanogaster , while only Men 113A occurs in African populations. We investigated the population genetics, biochemical characteristics, and selective potential of these alleles. Comparable levels of nucleotide polymorphism in both alleles suggest that the Men 113G allele is not recently derived, but we find no evidence in the DNA sequence data for selection maintaining the polymorphism. Interestingly, the alleles differ in both V max and K m for the substrate malate. Triglyceride concentration and isocitrate dehydrogenase (IDH) and glucose-6-phosphate dehydrogenase (G6PD) activities are negatively correlated with the in vivo activities of the Men alleles. We examined the causality of the observed correlations using P -element excision-derived knockout alleles of the Men gene and found significant changes in the maximum activities of both IDH and G6PD, but not in triglyceride concentration, suggesting compensatory interactions between MEN, IDH, and G6PD. Additionally, we found significantly higher than expected levels of MEN activity in knockout heterozygotes, which we attribute to transvection effects. The distinct differences in biochemistry and physiology between the naturally occurring alleles and between the engineered alleles suggest the potential for selection on the Men locus.
机译:在北美洲果蝇中,两个苹果酶等位基因,Men 113A和Men 113G的发生频率大致相等,而非洲人中只有Men 113A。我们调查了这些等位基因的群体遗传学,生化特征和选择性潜力。两个等位基因中核苷酸多态性的可比水平表明,Men 113G等位基因不是最近才衍生出来的,但我们在DNA序列数据中没有发现选择维持多态性的证据。有趣的是,等位基因在底物苹果酸中的V max和K m均不同。甘油三酸酯浓度和异柠檬酸脱氢酶(IDH)和葡萄糖6磷酸脱氢酶(G6PD)活性与Men等位基因的体内活性呈负相关。我们检查了使用Men基因的P元素切除敲除等位基因观察到的相关性的因果关系,发现IDH和G6PD的最大活性均发生了显着变化,但甘油三酯浓度没有变化,表明MEN,IDH和G6PD。此外,我们发现基因敲除杂合子的MEN活性水平明显高于预期水平,这归因于对流转移作用。天然存在的等位基因之间和工程化的等位基因之间在生物化学和生理学方面的明显差异表明有可能在Men位点进行选择。

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