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Natural selection and molecular evolution in primate PAX9 gene, a major determinant of tooth development

机译:灵长类动物PAX9基因的自然选择和分子进化,这是牙齿发育的主要决定因素

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摘要

Large differences in relation to dental size, number, and morphology among and within modern human populations and between modern humans and other primate species have been observed. Molecular studies have demonstrated that tooth development is under strict genetic control, but, the genetic basis of primate tooth variation remains unknown. The PAX9 gene, which codes for a paired domain-containing transcription factor that plays an essential role in the development of mammal dentition, has been associated with selective tooth agenesis in humans and mice, which mainly involves the posterior teeth. To determine whether this gene is polymorphic in humans, we sequenced ≈2.1 kb of the entire four-exon region (exons 1, 2, 3 and 4; 1,026 bp) and exon-intron (1.1 kb) boundaries of 86 individuals sampled from Asian, European, and Native American populations. We provided evidence that human PAX9 polymorphisms are limited to exon 3 only and furnished details about the distribution of a mutation there in 350 Polish subjects. To investigate the pattern of selective pressure on exon 3, we sequenced ortholog regions of this exon in four species of New World monkeys and one gorilla. In addition, orthologous sequences of PAX9 available in public databases were also analyzed. Although several differences were identified between humans and other species, our findings support the view that strong purifying selection is acting on PAX9. New World and Old World primate lineages may, however, have different degrees of restriction for changes in this DNA region.
机译:在现代人群之间以及内部以及现代人群与其他灵长类动物之间,在牙齿大小,数量和形态方面存在很大差异。分子研究表明,牙齿的发育受到严格的遗传控制,但是灵长类动物牙齿变异的遗传基础仍然未知。 PAX9基因编码在哺乳动物牙列发育中起重要作用的成对的含域转录因子,已与人类和小鼠的选择性牙齿发育不全相关,主要涉及后牙。为了确定该基因是否在人类中具有多态性,我们对来自亚洲的86个个体的整个四个外显子区域(外显子1、2、3和4; 1,026 bp)和外显子内含子(1.1 kb)边界的≈2.1kb进行了测序,欧洲和美洲原住民。我们提供的证据表明,人PAX9多态性仅限于第3外显子,并提供了有关350个波兰受试者中突变分布的详细信息。为了研究对外显子3施加选择性压力的模式,我们对四种新大陆猴和一只大猩猩中该外显子的直系同源区域进行了测序。此外,还分析了公共数据库中可用的PAX9直系同源序列。尽管在人类和其他物种之间发现了几种差异,但我们的发现支持强纯化选择对PAX9起作用的观点。但是,新世界和旧世界的灵长类世系可能对该DNA区域的变化具有不同程度的限制。

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