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大鼠代谢综合征属性的动态遗传结构

Dynamic genetic architecture of metabolic syndrome attributes in the rat.

作者信息

Seda Ondrej, Liska Frantisek, Krenova Drahomira, Kazdova Ludmila, Sedova Lucie, Zima Tomas, Peng Junzheng, Pelinkova Kveta, Tremblay Johanne, Hamet Pavel, Kren Vladimir

机构信息

Centre de Recherche, Centre Hospitalier de l'Université de Montréal, Montreal, Canada.

出版信息

Physiol Genomics. 2005 Apr 14;21(2):243-52. doi: 10.1152/physiolgenomics.00230.2004. Epub 2005 Feb 22.

Abstract

The polydactylous rat strain (PD/Cub) is a highly inbred (F > 90) genetic model of metabolic syndrome. The aim of this study was to analyze the genetic architecture of the metabolic derangements found in the PD/Cub strain and to assess its dynamics in time and in response to diet and medication. We derived a PD/Cub x BN/Cub (Brown Norway) F2 intercross population of 149 male rats and performed metabolic profiling and genotyping and multiple levels of genetic linkage and statistical analyses at five different stages of ontogenesis and after high-sucrose diet feeding and dexamethasone administration challenges. The interval mapping analysis of 83 metabolic and morphometric traits revealed over 50 regions genomewide with significant or suggestive linkage to one or more of the traits in the segregating PD/Cub x BN/Cub population. The multiple interval mapping showed that, in addition to "single" quantitative train loci, there are more than 30 pairs of loci across the whole genome significantly influencing the variation of particular traits in an epistatic fashion. This study represents the first whole genome analysis of metabolic syndrome in the PD/Cub model and reveals several new loci previously not connected to the genetics of insulin resistance and dyslipidemia. In addition, it attempts to present the concept of "dynamic genetic architecture" of metabolic syndrome attributes, evidenced by shifts in the genetic determination of syndrome features during ontogenesis and during adaptation to the dietary and pharmacological influences.

摘要

多指大鼠品系(PD/Cub)是一种高度近交(F>90)的代谢综合征遗传模型。本研究的目的是分析PD/Cub品系中发现的代谢紊乱的遗传结构,并评估其在时间上以及对饮食和药物反应中的动态变化。我们培育了一个由149只雄性大鼠组成的PD/Cub×BN/Cub(棕色挪威大鼠)F2杂交群体,并在个体发育的五个不同阶段以及高糖饮食喂养和地塞米松给药挑战后进行了代谢谱分析、基因分型以及多个层面的遗传连锁和统计分析。对83个代谢和形态特征的区间定位分析揭示,在分离的PD/Cub×BN/Cub群体中,全基因组有超过50个区域与一个或多个特征存在显著或暗示性的连锁关系。多重区间定位表明,除了“单一”数量性状位点外,全基因组还有30多对位点以上位性方式显著影响特定性状的变异。本研究是对PD/Cub模型中代谢综合征的首次全基因组分析,揭示了几个以前与胰岛素抵抗和血脂异常遗传学无关的新位点。此外,它试图提出代谢综合征属性的“动态遗传结构”概念,这在个体发育过程中以及对饮食和药物影响的适应过程中综合征特征的遗传决定变化中得到了证明。

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