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An historical perspective on 'The world-wide distribution of allele frequencies at the human dopamine D4 receptor locus'.

机译:关于“人类多巴胺D4受体基因座的等位基因频率的全球分布”的历史观点。

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摘要

Human population genetics is a completely different science today compared to two decades ago, at least at the empiric level. Our paper [Chang (Hum Genet 98:91-101, 1996a)] demonstrated that three different alleles were common when one considered many populations although other low frequency alleles occurred. Because previous work had been largely done on European subjects, our findings involved 36 distinct populations and showed that East Asian populations had nearly lost the 7-repeat allele, and that Native American populations had the highest frequencies of that allele globally, was a significant early empiric demonstration of the potential magnitude of population variation at important genes. There are thousands of loci tested on many of the same populations and the gene frequency pattern seen for the DRD4 7-repeat allele is seen at other loci, arguing that this pattern commonly reflects the pattern of divergence of populations and accumulated random genetic drift.
机译:与二十年前相比,至少在经验水平上,今天的人口遗传学是一门完全不同的科学。我们的论文[Chang(Hum Genet 98:91-101,1996a)]表明,当一个人考虑了许多种群时,尽管出现了其他低频等位基因,但三个不同的等位基因是相同的。由于先前的工作大部分是针对欧洲主题进行的,因此我们的发现涉及36个不同的种群,并表明东亚种群几乎失去了7个重复的等位基因,而美洲印第安人种群在全球范围内的频率最高,这是一个重要的早期发现。经验证明重要基因上种群变异的潜在幅度。在许多相同种群上测试了成千上万个基因座,并且在其他基因座上也观察到了DRD4 7重复等位基因的基因频率模式,认为该模式通常反映了种群差异和累积的随机遗传漂移的模式。

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