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Geographic distributions of Idh-1 alleles in a cricket are linked to differential enzyme kinetic performance across thermal environments

机译:dh中Idh-1等位基因的地理分布与整个热环境中不同的酶动力学性能有关

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摘要

BackgroundGeographic clines within species are often interpreted as evidence of adaptation to varying environmental conditions. However, clines can also result from genetic drift, and these competing hypotheses must therefore be tested empirically. The striped ground cricket, Allonemobius socius, is widely-distributed in the eastern United States, and clines have been documented in both life-history traits and genetic alleles. One clinally-distributed locus, isocitrate dehydrogenase (Idh-1), has been shown previously to exhibit significant correlations between allele frequencies and environmental conditions (temperature and rainfall). Further, an empirical study revealed a significant genotype-by-environmental interaction (GxE) between Idh-1 genotype and temperature which affected fitness. Here, we use enzyme kinetics to further explore GxE between Idh-1 genotype and temperature, and test the predictions of kinetic activity expected under drift or selection.
机译:背景技术物种内部的地理界线通常被解释为适应各种环境条件的证据。但是,种系也可能是由于遗传漂移而产生的,因此必须对这些竞争假设进行经验检验。条纹的ground,Allonemobius socius,在美国东部广泛分布,并且在生活史特征和遗传等位基因方面都记录了氏族。先前已显示一种在临床上分布的场所,异柠檬酸脱氢酶(Idh-1)在等位基因频率与环境条件(温度和降雨)之间显示出显着的相关性。此外,一项实证研究表明,Idh-1基因型与温度之间存在显着的基因型逐环境相互作用(GxE),这会影响适应性。在这里,我们使用酶动力学进一步探索Idh-1基因型和温度之间的GxE,并测试在漂移或选择下预期的动力学活性的预测。

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