Key Laboratory of Aquatic Genomics, Ministry of Agriculture; Research Centre for Aquatic Biotechnology, Chinese Academy of Fishery Sciences, Beijing 100141, China.
Wuxi Fisheries College, Nanjing Agricultural University, Wuxi 214128, China.
Sci Rep. 2017 Mar 24;7:45191. doi: 10.1038/srep45191.
Genomic imprinting underlying growth and development traits has been recognized, with a focus on the form of absolute or pure growth. However, little is known about the effect of genomic imprinting on relative growth. In this study, we proposed a random regression model to estimate genome-wide imprinting effects on the relative growth of multiple tissues and organs to body weight in mice. Joint static allometry scaling equation as sub-model is nested within the genetic effects of markers and polygenic effects caused by a pedigree. Both chromosome-wide and genome-wide statistical tests were conducted to identify imprinted quantitative trait nucleotides (QTNs) associated with relative growth of individual tissues and organs to body weight. Real data analysis showed that three of six analysed tissues and organs are significantly associated with body weight in terms of phenotypic relative growth. At the chromosome-wide level, a total 122 QTNs were associated with allometries of kidney, spleen and liver weights to body weight, 36 of which were imprinted with different imprinting fashions. Further, only two imprinted QTNs responsible for relative growth of spleen and liver were verified by genome-wide test. Our approach provides a general framework for statistical inference of genomic imprinting underlying allometry scaling in animals.
生长和发育性状的基因组印迹已得到认可,其重点是绝对或纯生长的形式。然而,关于基因组印迹对相对生长的影响知之甚少。在这项研究中,我们提出了一个随机回归模型,以估计基因组印迹对小鼠多个组织和器官相对于体重的相对生长的影响。联合静态总体比例方程作为子模型嵌套在标记的遗传效应和由系谱引起的多基因效应中。进行了全染色体和全基因组的统计检验,以鉴定与个体组织和器官相对于体重的相对生长相关的印迹数量性状核苷酸 (QTN)。实际数据分析表明,在所分析的六个组织和器官中的三个在表型相对生长方面与体重显著相关。在染色体水平上,总共 122 个 QTN 与肾脏、脾脏和肝脏重量相对于体重的总体比例有关,其中 36 个具有不同的印迹模式。此外,只有两个负责脾脏和肝脏相对生长的印记 QTN 通过全基因组检验得到验证。我们的方法为动物总体比例尺度下的基因组印迹的统计推断提供了一个通用框架。