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Body composition and gene expression QTL mapping in mice reveals imprinting andinteraction effects

机译:小鼠的身体成分和基因表达QTL定位揭示了印迹和互动效应

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摘要

BackgroundShifts in body composition, such as accumulation of body fat, can be a symptom of many chronic human diseases; hence, efforts have been made to investigate the genetic mechanisms that underlie body composition. For example, a few quantitative trait loci (QTL) have been discovered using genome-wide association studies, which will eventually lead to the discovery of causal mutations that are associated with tissue traits. Although some body composition QTL have been identified in mice, limited research has been focused on the imprinting and interaction effects that are involved in these traits. Previously, we found that Myostatin genotype, reciprocal cross, and sex interacted with numerous chromosomal regions to affect growth traits.
机译:背景身体成分的变化,例如体内脂肪的积累,可能是许多慢性人类疾病的症状。因此,人们已经努力研究构成身体成分的遗传机制。例如,使用全基因组关联研究发现了一些数量性状基因座(QTL),这最终将导致发现与组织性状相关的因果突变。尽管已在小鼠中鉴定出一些身体成分QTL,但有限的研究集中在这些特征涉及的印迹和相互作用方面。以前,我们发现Myostatin基因型,相互交叉和性别与众多染色体区域相互作用,影响生长特性。

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