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A Common Variation in EDAR Is a Genetic Determinant of Shovel-Shaped Incisors

机译:EDAR的常见差异是铲形门牙的遗传决定因素

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摘要

Shovel shape of upper incisors is a common characteristic in Asian and Native American populations but is rare or absent in African and European populations. Like other common dental traits, genetic polymorphisms involved in the tooth shoveling have not yet been clarified. In ectodysplasin A receptor (EDAR), where dysfunctional mutations cause hypohidrotic ectodermal dysplasia, there is a nonsynonymous-derived variant, 1540C (rs3827760), that has a geographic distribution similar to that of the tooth shoveling. This allele has been recently reported to be associated with Asian-specific hair thickness. We aimed to clarify whether EDAR 1540C is also associated with dental morphology. For this purpose, we measured crown diameters and tooth-shoveling grades and analyzed the correlations between the dental traits and EDAR genotypes in two Japanese populations, inhabitants around Tokyo and in Sakishima Islands. The number of EDAR 1540C alleles in an individual was strongly correlated with the tooth-shoveling grade (p = 7.7 × 10−10). The effect of the allele was additive and explained 18.9% of the total variance in the shoveling grade, which corresponds to about one-fourth of the heritability of the trait reported previously. For data reduction of individual-level metric data, we applied a principal-component analysis, which yielded PC1-4, corresponding to four patterns of tooth size; this result implies that multiple factors are involved in dental morphology. The 1540C allele also significantly affected PC1 (p = 4.9 × 10−3), which denotes overall tooth size, and PC2 (p = 2.6 × 10−3), which denotes the ratio of mesiodistal diameter to buccolingual diameter.
机译:上门齿的铲形在亚洲和美洲原住民种群中是一个共同特征,但在非洲和欧洲种群中很少见或不存在。像其他常见的牙齿特征一样,铲齿涉及的遗传多态性尚未阐明。在功能失调突变导致汗湿性外胚层发育不良的外胚层A受体(EDAR)中,有一个非同义衍生变体1540C(rs3827760),其地理分布与铲齿相似。最近有报道称该等位基因与亚洲人特定的头发厚度有关。我们旨在阐明EDAR 1540C是否也与牙齿形态有关。为此,我们测量了冠径和铲齿等级,并分析了东京和崎岛两个日本居民的牙齿特征和EDAR基因型之间的相关性。个体中EDAR 1540C等位基因的数量与铲齿等级密切相关(p = 7.7×10 -10 )。等位基因的作用是累加的,解释了铲除等级中总变异的18.9%,大约相当于先前报道的性状的遗传力的四分之一。为了减少单个级别度量数据的数据,我们应用了主成分分析,得出了PC1-4,对应于四种大小的牙齿;该结果暗示牙齿形态涉及多个因素。 1540C等位基因还显着影响了PC1(p = 4.9×10 −3 ),这表示总体牙齿大小,而PC2(p = 2.6×10 −3 )则影响了总体牙齿大小。表示近中坚直径与颊舌直径之比。

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