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Historical demography and longevity genetics: Back to the future

机译:历史人口统计和长寿遗传学:返回未来

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Research into the genetic component of human longevity can provide important insights in mechanisms that may protect against age-related diseases and multi-morbidity. Thus far only a limited number of robust longevity loci have been detected in either candidate or genome wide association studies. One of the issues in these genetic studies is the definition of the trait being either lifespan, including any age at death or longevity, i.e. survival above a diverse series of thresholds. Likewise heritability and segregation research have conflated lifespan with longevity. The heritability of lifespan estimated across most studies has been rather low. Environmental factors have not been sufficiently investigated and the total amount of genetic variance contributing to longevity has not been estimated in sufficiently well-defined and powered studies. Up to now, genetic longevity studies lack the required insights into the nature and size of the genetic component and the optimal strategies for meta-analysis and subject selection for Next Generation Sequencing efforts. Historical demographic data containing deep genealogical information may help in estimating the best definition and heritability for longevity, its transmission patterns in multi-generational datasets and may allow relevant additive and modifying environmental factors such as socio-economic status, geographical background, exposure to environmental effects, birth order, and number of children to be included. In this light historical demographic data may be very useful for identifying lineages in human populations that are worth investigating further by geneticists. (C) 2017 The Authors. Published by Elsevier B.V.
机译:研究人寿长寿的遗传成分可以提供可能用于防止与年龄相关疾病和多发性的机制的重要见解。因此,在候选或基因组宽协会研究中仅检测到有限数量的稳健寿命基因座。这些遗传研究中的一个问题是具有寿命的特征的定义,包括死亡或长寿的任何年龄,即生存在多元化的阈值中。同样地遗传和分离研究已经用寿命融合了寿命。大多数研究估计的寿命的可遗传性相当较低。没有充分调查环境因素,并且在充分明确定义和供电的研究中尚未估计对长寿的遗传方差总量。截至目前,遗传寿命研究缺乏对遗传成分的性质和规模以及荟萃分析的最佳策略以及对下一代测序努力的最佳策略的洞察。包含深度谱系信息的历史人口统计数据可能有助于估算长寿的最佳定义和可遗传性,其传输模式在多世代数据集中,并且可以允许相关的添加剂和修改社会经济地位,地理背景,环境影响的环境因素,出生令和包括儿童的数量。在这种亮度中,历史地位数据可能非常有用,对于识别人群中的血统值,这些人群值得通过遗传学家进一步调查。 (c)2017作者。 elsevier b.v出版。

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