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Alcohol dehydrogenase activities and ethanol tolerance in Anastrepha (Diptera Tephritidae) fruit-fly species and their hybrids

机译:桔果蝇和杂种中的乙醇脱氢酶活性和乙醇耐受性

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摘要

The ADH (alcohol dehydrogenase) system is one of the earliest known models of molecular evolution, and is still the most studied in Drosophila. Herein, we studied this model in the genus Anastrepha (Diptera, Tephritidae). Due to the remarkable advantages it presents, it is possible to cross species with different Adh genotypes and with different phenotype traits related to ethanol tolerance. The two species studied here each have a different number of Adh gene copies, whereby crosses generate polymorphisms in gene number and in composition of the genetic background. We measured certain traits related to ethanol metabolism and tolerance. ADH specific enzyme activity presented gene by environment interactions, and the larval protein content showed an additive pattern of inheritance, whilst ADH enzyme activity per larva presented a complex behavior that may be explained by epistatic effects. Regression models suggest that there are heritable factors acting on ethanol tolerance, which may be related to enzymatic activity of the ADHs and to larval mass, although a pronounced environmental effect on ethanol tolerance was also observed. By using these data, we speculated on the mechanisms of ethanol tolerance and its inheritance as well as of associated traits.
机译:ADH(酒精脱氢酶)系统是已知的最早的分子进化模型之一,仍然是果蝇中研究最多的模型。在此,我们在Anastrepha属(双翅目,T科)中研究了该模型。由于其具有的显着优势,有可能杂交具有不同Adh基因型和具有与乙醇耐受性相关的不同表型性状的物种。这里研究的两个物种各自具有不同数量的Adh基因拷贝,从而杂交产生基因数量和遗传背景组成的多态性。我们测量了与乙醇代谢和耐受性相关的某些特征。 ADH的特定酶活性通过环境相互作用呈现基因,幼虫的蛋白质含量显示遗传的加性模式,而每个幼虫的ADH酶活性呈现复杂的行为,这可以用上位性效应来解释。回归模型表明,有一些遗传因素影响乙醇耐受性,尽管也观察到对乙醇耐受性的明显环境影响,但可能与ADH的酶活性和幼虫质量有关。通过使用这些数据,我们推测了乙醇耐受性及其遗传以及相关性状的机制。

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