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A simple rule governs the evolution and development of hominin tooth size

机译:一个简单的规则支配人牙尺寸的演变和发展

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摘要

The variation in molar tooth size in humans and our closest relatives (hominins) has strongly influenced our view of human evolution. The reduction in overall size and disproportionate decrease in third molar size have been noted for over a century, and have been attributed to reduced selection for large dentitions owing to changes in diet or the acquisition of cooking(1,2). The systematic pattern of size variation along the tooth row has been described as a 'morphogenetic gradient' in mammal, and more specifically hominin, teeth since Butler(3) and Dahlberg(4). However, the underlying controls of tooth size have not been well understood, with hypotheses ranging from morphogenetic fields(3) to the clone theory(5). In this study we address the following question: are there rules that govern how hominin tooth size evolves? Here we propose that the inhibitory cascade, an activator-inhibitor mechanism that affects relative tooth size in mammals(6), produces the default pattern of tooth sizes for all lower primary postcanine teeth (deciduous premolars and permanent molars) in hominins. This configuration is also equivalent to a morphogenetic gradient, finally pointing to a mechanism that can generate this gradient. The pattern of tooth size remains constant with absolute size in australopiths (including Ardipithecus, Australopithecus and Paranthropus). However, in species of Homo, including modern humans, there is a tight link between tooth proportions and absolute size such that a single developmental parameter can explain both the relative and absolute sizes of primary postcanine teeth. On the basis of the relationship of inhibitory cascade patterning with size, we can use the size at one tooth position to predict the sizes of the remaining four primary postcanine teeth in the row for hominins. Our study provides a development-based expectation to examine the evolution of the unique proportions of human teeth.
机译:人类和我们最亲近的人(人参)的臼齿大小变化极大地影响了我们对人类进化的看法。一个多世纪以来,人们注意到整体大小的减少和第三磨牙大小的不成比例的减少,这归因于由于饮食的改变或烹饪的获得而减少了对大牙列的选择(1,2)。自Butler(3)和Dahlberg(4)以来,沿哺乳动物牙齿的大小变化的系统模式已被描述为哺乳动物的“形态发生梯度”,更具体地说是人牙。然而,关于牙齿大小的基本控制方法尚不十分清楚,其假设范围从形态发生场(3)到克隆理论(5)。在这项研究中,我们解决了以下问题:是否有规则控制人参牙齿大小的演变?在这里,我们提出抑制级联反应(一种影响哺乳动物相对牙齿大小的活化剂-抑制剂机制)(6)为人参中所有较低的初级犬后齿(落叶前磨牙和恒磨牙)产生默认的牙齿大小模式。此配置也等效于形态发生梯度,最终指向可以生成此梯度的机制。牙齿大小的模式保持不变,并且在南极(包括Ardipithecus,Australopithecus和Paranthropus)中的绝对大小不变。然而,在包括现代人类在内的人类物种中,牙齿比例与绝对大小之间存在紧密联系,因此单个发育参数可以解释犬后原牙齿的相对大小和绝对大小。基于抑制性级联构图与大小的关系,我们可以使用一个牙齿位置的大小来预测行中剩余的人参中的四个犬齿后牙齿的大小。我们的研究提出了基于发展的期望,以检验人类牙齿独特比例的演变。

著录项

  • 来源
    《Nature》 |2016年第7591期|477-480|共4页
  • 作者单位

    Monash Univ, Sch Biol Sci, Clayton, Vic 3800, Australia|Museum Victoria, Geosci, Melbourne, Vic 3001, Australia;

    Arizona State Univ, Inst Human Origins, Tempe, AZ 85287 USA|Arizona State Univ, Sch Human Evolut & Social Change, Tempe, AZ 85287 USA;

    Arizona State Univ, Inst Human Origins, Tempe, AZ 85287 USA|Arizona State Univ, Sch Human Evolut & Social Change, Tempe, AZ 85287 USA;

    Arizona State Univ, Sch Human Evolut & Social Change, Tempe, AZ 85287 USA|Arizona State Univ, Ctr Bioarchaeol Res, Tempe, AZ 85287 USA;

    Univ Massachusetts, Dept Anthropol, Amherst, MA 01003 USA;

    Univ Kent, Sch Anthropol & Conservat, Canterbury CT2 7NR, Kent, England|Max Planck Inst Evolutionary Anthropol, Dept Human Evolut, D-04103 Leipzig, Germany;

    Arizona State Univ, Sch Human Evolut & Social Change, Tempe, AZ 85287 USA;

    Max Planck Inst Evolutionary Anthropol, Dept Human Evolut, D-04103 Leipzig, Germany;

    Univ Adelaide, Sch Dent, Adelaide, SA 5005, Australia;

    Arizona State Univ, Inst Human Origins, Tempe, AZ 85287 USA|Arizona State Univ, Sch Human Evolut & Social Change, Tempe, AZ 85287 USA;

    Univ Helsinki, Inst Biotechnol, FIN-00014 Helsinki, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 02:52:04

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