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Genetic and Biochemical Basis of Enzyme Activity Variation in Natural Populations. I. Alcohol Dehydrogenase in DROSOPHILA MELANOGASTER

机译:自然种群中酶活性变化的遗传和生化基础。一果蝇中的乙醇脱氢酶

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摘要

Recent studies by various authors suggest that variation in gene regulation may be common in nature, and might be of great evolutionary consequence; but the ascertainment of variation in gene regulation has proven to be a difficult problem. In this study, we explore this problem by measuring alcohol dehydrogenase (ADH) activity in Drosophila melanogaster strains homozygous for various combinations of given second and third chromosomes sampled from a natural population. The structural locus (Adh) coding for ADH is on the second chromosome. The results show that: (1) there are genes, other than Adh, that affect the levels of ADH activity; (2) at least some of these "regulatory" genes are located on the third chromosome, and thus are not adjacent to the Adh locus; (3) variation exists in natural populations for such regulatory genes; (4) the effect of these regulatory genes varies as they interact with different second chromosomes; (5) third chromosomes with high-activity genes are either partially or completely dominant over chromosomes with low-activity genes; (6) the effects of the regulatory genes are pervasive throughout development; and (7) the third chromosome genes regulate the levels of ADH activity by affecting the number of ADH molecules in the flies. The results are consistent with the view that the evolution of regulatory genes may play an important role in adaptation.
机译:各种作者的最新研究表明,基因调控的变异可能在自然界中很普遍,并且可能具有重大的进化结果。但是确定基因调控的变异已被证明是一个难题。在这项研究中,我们通过测量纯果蝇果蝇菌株中酒精脱氢酶(ADH)活性,从自然种群中取样给定的第二和第三条染色体的各种组合,探索了这个问题。编码ADH的结构基因座(Adh)在第二条染色体上。结果表明:(1)除了Adh之外,还有一些基因影响ADH活性水平。 (2)这些“调控”基因中至少有一些位于第三条染色体上,因此与Adh基因座不相邻。 (3)在自然种群中存在这类调节基因的变异; (4)这些调节基因的作用随着它们与不同的第二条染色体相互作用而变化。 (5)具有高活性基因的第三条染色体部分或完全高于具有低活性基因的染色体; (6)调控基因的作用在整个发育过程中普遍存在; (7)第三染色体基因通过影响果蝇中ADH分子的数量来调节ADH活性水平。结果与以下观点一致:调节基因的进化可能在适应中起重要作用。

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