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统计遗传方法研究基因型-环境互作:模型的回顾与新扩展。

Statistical Genetic Approaches to Investigate Genotype-by-Environment Interaction: Review and Novel Extension of Models.

机构信息

Department of Human Genetics, School of Medicine, University of Texas Rio Grande Valley, Brownsville, TX 78520, USA.

South Texas Diabetes and Obesity Institute, School of Medicine, University of Texas Rio Grande Valley, Brownsville, TX 78520, USA.

出版信息

Genes (Basel). 2024 Apr 25;15(5):547. doi: 10.3390/genes15050547.

Abstract

Statistical genetic models of genotype-by-environment (G×E) interaction can be divided into two general classes, one on G×E interaction in response to dichotomous environments (e.g., sex, disease-affection status, or presence/absence of an exposure) and the other in response to continuous environments (e.g., physical activity, nutritional measurements, or continuous socioeconomic measures). Here we develop a novel model to jointly account for dichotomous and continuous environments. We develop the model in terms of a joint genotype-by-sex (for the dichotomous environment) and genotype-by-social determinants of health (SDoH; for the continuous environment). Using this model, we show how a depression variable, as measured by the Beck Depression Inventory-II survey instrument, is not only underlain by genetic effects (as has been reported elsewhere) but is also significantly determined by joint G×Sex and G×SDoH interaction effects. This model has numerous applications leading to potentially transformative research on the genetic and environmental determinants underlying complex diseases.

摘要

基因型-环境(G×E)互作的统计遗传模型可以分为两类,一类是针对二项环境(例如,性别、疾病发病状态或暴露的存在/不存在)的 G×E 互作,另一类是针对连续环境(例如,体力活动、营养测量或连续的社会经济措施)的 G×E 互作。在这里,我们开发了一种新的模型来共同考虑二项和连续的环境。我们以基因型-性别(对于二项环境)和基因型-健康社会决定因素(SDoH;对于连续环境)的联合形式来开发该模型。使用该模型,我们展示了贝克抑郁量表-II 调查工具测量的抑郁变量不仅受遗传效应的影响(如其他地方所报道的),而且还受到 G×性别和 G×SDoH 相互作用效应的显著影响。该模型具有许多应用,可能会对复杂疾病的遗传和环境决定因素进行变革性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb4/11121143/f60ecfcaaf73/genes-15-00547-g001.jpg

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