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Adaptive genetic variation, stress and glucose regulation

机译:自适应遗传变异,压力和葡萄糖调节

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Elevated glucose levels in the presence of insulin are indicative of type 2 diabetes and the more inclusive metabolic syndrome. Alleles conferring susceptibility to these and other common conditions may be adaptations to past environments. It is possible that other mammals exhibiting environmental diversity harbor similar variants; therefore, we assessed glucose regulation in two species of deer mice (Peromyscus), a diverse endemic North American group. The prairie deer mouse, P. maniculatus bairdii (BW), and the Oldfield mouse, P. polionotus subgriseus (PO) differ in sexual dimorphism, behavior and habitat. PO animals exhibit better regulatory ability than BW animals, particularly among males, although both species display equivalent insulin levels/responses and non-fasted glucose levels. Hybrid males exhibit a PO glucose challenge response and subsequent analysis of consomic animals implicates Y chromosome variation as the genetic cause. Two pieces of evidence indicate that the male glucose regulatory differences are mediated by stress response: (1) fasting and handling alone account for most of the variation; (2) an inhibitor of glucocorticoid (GC) stress hormone synthesis eliminates these differences. PO males have GC levels that are twice those of BW males, indicating the presence of alleles that attenuate the GC response. We hypothesize that the interspecific physiological and behavioral differences are interrelated and that similar human variants exist.
机译:胰岛素存在下葡萄糖水平升高表明2型糖尿病和更广泛的代谢综合征。赋予这些和其他常见条件敏感性的等位基因可能是对过去环境的适应。表现出环境多样性的其他哺乳动物也可能有相似的变异。因此,我们评估了北美地区特有的两种鹿类小鼠(Peromyscus)的葡萄糖调节作用。草原鹿鼠P. maniculatus bairdii(BW)和Oldfield鼠P. polionotus subgriseus(PO)在性二态性,行为和栖息地方面有所不同。 PO动物显示出比BW动物更好的调节能力,特别是在雄性动物中,尽管这两种动物都表现出同等的胰岛素水平/反应和非禁食葡萄糖水平。杂种雄性表现出PO葡萄糖激发反应,随后对纯种动物的分析表明Y染色体变异是遗传原因。有两个证据表明,男性葡萄糖调节差异是由应激反应介导的:(1)空腹和处理是造成差异的主要原因。 (2)糖皮质激素(GC)应激激素合成的抑制剂消除了这些差异。 PO男性的GC水平是BW男性的两倍,这表明存在等位基因会减弱GC反应。我们假设种间的生理和行为差异是相互关联的,并且存在相似的人类变异。

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