Genetic and environmental impact on mandibular growth in mono- and dizygotic twins during adolescence: A retrospective cohort study

下巴 角度 双卵双胞胎 下颌骨(节肢动物口器) 医学 牙科 双卵双胞胎 口腔正畸科 生物 双胞胎研究 人口学 遗传力 动物 解剖 进化生物学 外科 社会学 射线照相术 产科
作者
Monika Hersberger-Zurfluh,Melih Motro,Alpdoğan Kantarcı,Leslie A. Will,Theodore Eliades,Spyridon N. Papageorgiou
出处
期刊:International Orthodontics [Elsevier]
卷期号:22 (1): 100842-100842 被引量:3
标识
DOI:10.1016/j.ortho.2023.100842
摘要

This study aimed to discover the genetic and environmental factors that contribute to the mandibular development of untreated monozygotic and dizygotic twins. The sample, taken from the Forsyth Moorrees Twin Study, included 52 untreated monozygotic twins (36 male, 16 female) and 46 untreated dizygotic twins (23 male, 23 female). At the ages of 12 and 17, lateral cephalograms were collected and traced to assess total mandibular length, mandibular ramus length, mandibular corpus length, gonial angle, SNB, and bony chin prominence. The genetic and environmental components of variation were assessed using multilevel mixed-effects structural equation modelling. At 12 years of age, high additive genetic influences were observed for total mandibular length (74%), gonial angle (76%), SNB (41%), and bony chin prominence (64%), whereas strong dominant genetic components were observed for corpus length (72%), and mandibular ramus length was under unique environment influence (54%). At 17 years of age, only total mandibular length (45%), ramus length (53%), gonial angle (76%), and bony chin prominence (68%) were under strong additive genetic control, while the remainder were under strong dominant genetic control. Although monozygotic and dizygotic twins share at least a portion of their DNA, additive, dominant, or environmental components were discovered during adolescence. Nonetheless, by the age of 17, the majority of the mandibular traits are under either additive or dominant genetic impact.
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