首页> 外文期刊>American journal of human biology: the official journal of the Human Biology Council >Genetic variance in age-related changes in running performance and growth during adolescence: a longitudinal twin study.
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Genetic variance in age-related changes in running performance and growth during adolescence: a longitudinal twin study.

机译:青春期跑步性能和成长与年龄相关的遗传变异:一项纵向双生子研究。

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The purpose of this study was to assess an effect of genotype on the patterns of age-related changes in running performance and physical growth during adolescence. The total sample was 14 pairs of male and 25 pairs of female monozygotic (MZ) twins and 19 pairs of male and 15 pairs of female dizygotic (DZ) twins. Performance on the 50-m dash and endurance run (1,500 m for boys and 1,000 m for girls, respectively) and stature and body mass were measured at yearly intervals from 12 to 17 years of age. A principal component analysis was applied to the longitudinal data, and within-pair resemblance in the scores on the first, the second, and the third principal components was compared between MZ and DZ twins. The analysis was conducted with both sexes pooled because of the limited number of twin pairs. The first two principal components explained at least 87% of the total variance, while the third principal component (PC3) explained a smaller portion of the total variance (more than 5%) in the dash and the endurance run. However, the total variance was explained almost entirely (more than 96%) by the first two components in height and mass. The first principal component (PC1), which explained 67-84% of the total variance, was a good indicator of average performance/body size of individuals during the period of observation. The second (PC2) and the third components (PC3) could be considered as indicators of the "shape" of developmental/growth curves, which were not related to inter-individual differences in the average performance/body size. Intraclass correlations (ri) of the scores on PC1 were consistently higher for MZ than for DZ twins, and estimated genetic variance was significant in endurance run, stature and body mass. The situation was the same for the scores on PC2 and/or PC3. However, such a between-genotype difference in ri and a significant genetic variance were not observed in the dash. It was concluded that MZ twins are more similar in the patterns of age-related changes in the performance of endurance run and physical growth during adolescence than DZ twins, suggesting a genetic contribution, while there was no evidence of a genetic contribution in the dash.
机译:这项研究的目的是评估基因型对青春期跑步表现和身体生长与年龄相关的变化模式的影响。总样本为14对雄性和25对雌性单卵双胞胎(MZ)双胞胎,以及19对雄性和15对雌性双卵胎(DZ)双胞胎。在50米长跑和耐力跑中的表现(男孩分别为1,500 m,女孩则为1,000 m)以及身高和体重是在12至17岁之间每年测量一次的。将主成分分析应用于纵向数据,并比较MZ和DZ双胞胎在第一,第二和第三主成分上的配对内相似度。由于双胞胎对的数量有限,因此对两性进行了分析。前两个主要成分至少解释了总方差的87%,而第三个主要成分(PC3)解释了在短跑和耐力测试中总方差的一小部分(大于5%)。但是,总方差几乎完全由高度和质量的前两个成分解释(超过96%)。第一个主成分(PC1)解释了总方差的67-84%,是观察期间个人平均表现/体型的良好指标。第二个组分(PC2)和第三个组分(PC3)可以看作是发育/生长曲线“形状”的指标,与平均性能/体型的个体差异无关。 MZ在PC1上的类内相关性(ri)始终高于DZ双胞胎,并且估计的遗传变异在耐力跑,身材和体重方面很显着。 PC2和/或PC3上的分数情况相同。然而,在破折号中未观察到ri的这种基因间差异和显着的遗传变异。结论是,与DZ双胞胎相比,MZ双胞胎在青春期耐力跑和身体成长的年龄相关变化模式上与DZ双胞胎更为相似,这表明有遗传贡献,而破折号没有证据表明有遗传贡献。

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