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Genetics of longevity.

机译:长寿的遗传学。

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Recent studies on the genetics of aging in the yeast Saccharomyces cerevisiae, the roundworm Caenorhabditis elegans, and the fruit fly Drosophila melanogaster have converged revealing the central role of metabolic capacity and resistance to stress in determining life span. Signal transduction has emerged from these studies as an important molecular mechanism underlying longevity. In their broad features, the results obtained in these genetic models are applicable to the dietary restriction paradigm in mammals, suggesting a general significance. It will be of interest to determine whether many of the molecular details will also pertain. The examination of centenarian populations for the frequency of certain alleles of pertinent genes may provide insights into the relevance of the conclusions of studies in invertebrates to human aging. These population genetic studies can be augmented by mechanistic studies in transgenic mice.
机译:最近对酿酒酵母,the虫秀丽隐杆线虫和果蝇果蝇果蝇衰老的遗传学研究表明,代谢能力和抗逆性在决定寿命中起着核心作用。这些研究表明信号转导是长寿的重要分子机制。从这些遗传模型获得的广泛特征来看,它们适用于哺乳动物的饮食限制范例,表明具有一般意义。确定许多分子细节是否也将是有意义的。对百岁老人的相关基因的某些等位基因频率的检查可能提供洞察无脊椎动物的研究结论与人类衰老的相关性。这些种群遗传学研究可以通过在转基因小鼠中进行的机理研究来加强。

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