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首页> 外文期刊>Human Molecular Genetics >Multidimensional genome scans identify the combinations of genetic loci linked to diabetes-related phenotypes in mice.
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Multidimensional genome scans identify the combinations of genetic loci linked to diabetes-related phenotypes in mice.

机译:多维基因组扫描可识别与小鼠中与糖尿病相关的表型有关的遗传基因座的组合。

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Most quantitative trait loci (QTL) studies have focused on detecting the genetic effects of individual QTLs. This study thoroughly dissected the genetic components of type 2 diabetic mice, including a search for epistatic interactions and multi-locus additive effects that result in variation in diabetes-related phenotypes. F2 population was generated from BKS.Cg-Leprdb+/+m and DBA/2 intercross and separated into six subpopulations by sex and the db-dependent diabetes severity. Single-locus and pairwise genome scans first identified the QTLs in these F2 subpopulations, and next covariate-dependent scans confirmed their sex-, db- and sex-by-db-specific effects in the combined populations. Single-locus genome scans detected four QTLs (QBIS1, QBIS2, QBIS3 and QBIS4) that presented their genetic effects beyond sex, but most QTLs showed their effects specifically in limited conditions. This highly conditional feature of the QTLs was accentuated in the pairwise analysis. The pairwise genome scans uncovered a total of 27 significantly interacting or additively acting pairs of loci, showing a better fit to explain the total phenotypic variation of the traits. These significant pairs affected the traits under constantly varying combinations of loci in a time series or in both sexes. In addition, pairwise analysis indicated the appropriate genetic background in constructing congenic strains to obtain the maximum power in the replication of phenotypes. Our study showed high degree of complexity in the genetics of type 2 diabetes in mice, and it suggested that a comprehensive understanding of the multi-locus effects was essential to disentangle the complex genetics of diabetes and obesity in humans.
机译:大多数定量性状基因座(QTL)研究都集中在检测单个QTL的遗传效应上。这项研究彻底剖析了2型糖尿病小鼠的遗传成分,包括寻找上位性相互作用和多位点加性效应,这些效应导致糖尿病相关表型的变异。 F2种群由BKS.Cg-Leprdb + / + m和DBA / 2交叉产生,并按性别和db-依赖性糖尿病严重程度分为六个亚群。单基因座和成对基因组扫描首先确定了这些F2亚群中的QTL,然后接下来的依赖于变量的扫描证实了它们在组合人群中的性别,db和按性别性别特异性效应。单基因座基因组扫描检测到四个QTL(QBIS1,QBIS2,QBIS3和QBIS4),这些QTL表现出其性别以外的遗传效应,但大多数QTL均在有限的条件下表现出其效应。在成对分析中,QTL的这种高度条件性特征得到了强调。成对基因组扫描发现总共27个显着相互作用或加性作用的基因座对,显示出更适合解释这些性状的总表型变异。这些重要的配对在一个时间序列或两个性别中在基因座不断变化的组合下影响了性状。此外,成对分析表明在构建同类菌株中获得适当的遗传背景,以获得表型复制中的最大能力。我们的研究表明,小鼠2型糖尿病的遗传学高度复杂,这表明对多位点效应的全面理解对于弄清人类糖尿病和肥胖症的复杂遗传学至关重要。

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