DDD/Sgn和C57BL/6J近交系小鼠血浆总胆固醇和甘油三酯浓度定量性状位点的鉴定

Cholesterol Pub Date : 2017-01-01 Epub Date: 2017-05-31 DOI:10.1155/2017/3178204
Jun-Ichi Suto, Misaki Kojima
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引用次数: 7

摘要

DDD/Sgn小鼠血浆脂质浓度显著高于C57BL/6J小鼠。在本研究中,我们对两个品系之间F2雄性互交群体的血浆总胆固醇(CHO)和甘油三酯(TG)浓度进行了数量性状位点(QTL)定位。通过单QTL扫描,我们在染色体1、5、17和19上鉴定出CHO的4个显著QTL,在染色体1和12上鉴定出TG的2个显著QTL。通过将交叉方向作为交互协变量,我们在Chr 17上发现了CHO的独立显著QTL,而TG没有。当QTL在Chr 1上的巨大表型效应被复合区间作图控制时,我们在Chr 3、4和9上发现了3个与CHO相关的显著QTL,而与TG相关的QTL则没有。Chr 19上的QTL是CHO的一个新QTL,该QTL的等位效应在雄性和雌性之间存在显著差异。DDD/Sgn小鼠的全外显子组序列分析表明,Apoa2和Acads分别是Chrs 1和5上CHO QTL的可能候选基因。因此,我们确定了雄性小鼠血浆脂质浓度的多因素基础。这些发现将有助于深入了解血浆脂质代谢的遗传机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Identification of Quantitative Trait Loci That Determine Plasma Total-Cholesterol and Triglyceride Concentrations in DDD/Sgn and C57BL/6J Inbred Mice.

Identification of Quantitative Trait Loci That Determine Plasma Total-Cholesterol and Triglyceride Concentrations in DDD/Sgn and C57BL/6J Inbred Mice.

Identification of Quantitative Trait Loci That Determine Plasma Total-Cholesterol and Triglyceride Concentrations in DDD/Sgn and C57BL/6J Inbred Mice.

Identification of Quantitative Trait Loci That Determine Plasma Total-Cholesterol and Triglyceride Concentrations in DDD/Sgn and C57BL/6J Inbred Mice.

DDD/Sgn mice have significantly higher plasma lipid concentrations than C57BL/6J mice. In the present study, we performed quantitative trait loci (QTL) mapping for plasma total-cholesterol (CHO) and triglyceride (TG) concentrations in reciprocal F2 male intercross populations between the two strains. By single-QTL scans, we identified four significant QTL on chromosomes (Chrs) 1, 5, 17, and 19 for CHO and two significant QTL on Chrs 1 and 12 for TG. By including cross direction as an interactive covariate, we identified separate significant QTL on Chr 17 for CHO but none for TG. When the large phenotypic effect of QTL on Chr 1 was controlled by composite interval mapping, we identified three additional significant QTL on Chrs 3, 4, and 9 for CHO but none for TG. QTL on Chr 19 was a novel QTL for CHO and the allelic effect of this QTL significantly differed between males and females. Whole-exome sequence analysis in DDD/Sgn mice suggested that Apoa2 and Acads were the plausible candidate genes underlying CHO QTL on Chrs 1 and 5, respectively. Thus, we identified a multifactorial basis for plasma lipid concentrations in male mice. These findings will provide insight into the genetic mechanisms of plasma lipid metabolism.

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