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Evidence for biochemical and physiological differences between enzyme genotypes in Drosophila melanogaster.

机译:果蝇的酶基因型之间的生化和生理差异的证据。

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摘要

The in vivo flux of carbon through the pentose shunt is investigated as a function of different 6-phosphogluconate dehydrogenase (6Pgd) and glucose-6-phosphate dehydrogenase (G6pd) genotypes by using differential radioactive labeling of the C-1 and C-6 positions of glucose. Alternative 6Pgd-G6pd genotypes are shown to differ in relative in vivo carbon flux through the pentose shunt. The relative in vitro specific activity differences between the 6PgdSS and 6PgdFF genotypes appear to be primarily responsible for these differences. In addition, the pentose-shunt activity is correlated with the rate of lipid synthesis. This correlation is consistent with the major metabolic function of the pathway, which is to produce NADPH for lipid synthesis. Taken together, the results of these experiments show that different genotypes of 6Pgd are associated with measurable biochemical and physiological differences. Higher order phenotypic differences of this kind must be demonstrated to support the hypothesis that natural selection can discriminate among allozymes of a given genetic locus.
机译:通过使用C-1和C-6位置的差异放射性标记,研究了碳在体内通过戊糖分流的通量与不同6-磷酸葡萄糖酸脱氢酶(6Pgd)和6-6葡萄糖葡萄糖磷酸脱氢酶(G6pd)基因型的关系。葡萄糖。备选的6Pgd-G6pd基因型显示出通过戊糖分流器的相对体内碳通量不同。 6PgdSS和6PgdFF基因型之间的相对体外比活差异似乎是造成这些差异的主要原因。另外,戊糖分流活性与脂质合成速率相关。这种相关性与该途径的主要代谢功能是一致的,该途径是产生用于脂质合成的NADPH。总之,这些实验的结果表明,不同基因型的6Pgd与可测量的生化和生理差异有关。这种高阶表型差异必须得到证实,以支持以下假设:自然选择可以区分给定遗传基因座的同工酶。

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