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首页> 外文期刊>BMC Genomics >The abundance of cis -acting loci leading to differential allele expression in F1 mice and their relationship to loci harboring genes affecting complex traits
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The abundance of cis -acting loci leading to differential allele expression in F1 mice and their relationship to loci harboring genes affecting complex traits

机译:导致F1小鼠等位基因表达差异的顺式基因座的丰度及其与影响复杂性状的基因座基因的关系

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Background Genome-wide surveys have detected cis -acting quantitative trait loci altering levels of RNA transcripts (RNA-eQTLs) by associating SNV alleles to transcript levels. However, the sensitivity and specificity of detection of cis - expression quantitative trait loci (eQTLs) by genetic approaches, reliant as it is on measurements of transcript levels in recombinant inbred strains or offspring from arranged crosses, is unknown, as is their relationship to QTL’s for complex phenotypes. Results We used transcriptome-wide differential allele expression (DAE) to detect cis-eQTLs in forebrain and kidney from reciprocal crosses between three mouse inbred strains, 129S1/SvlmJ, DBA/2J, and CAST/EiJ and C57BL/6?J. Two of these crosses were previously characterized for cis -eQTLs and QTLs for various complex phenotypes by genetic analysis of recombinant inbred (RI) strains. 5.4?%, 1.9?% and 1.5?% of genes assayed in forebrain of B6/129SF1, B6/DBAF1, and B6/CASTF1 mice, respectively, showed differential allelic expression, indicative of cis -acting alleles at these genes. Moreover, the majority of DAE QTLs were observed to be tissue-specific with only a small fraction showing cis -effects in both tissues. Comparing DAE QTLs in F1 mice to cis -eQTLs previously mapped in RI strains we observed that many of the cis-eQTLs were not confirmed by DAE. Additionally several novel DAE-QTLs not identified as cis-eQTLs were identified suggesting that there are differences in sensitivity and specificity for QTL detection between the two methodologies. Strain specific DAE QTLs in B6/DBAF1 mice were located in excess at candidate genes for alcohol use disorders, seizures, and angiogenesis previously implicated by genetic linkage in C57BL/6J × DBA/2JF2 mice or BXD RI strains. Conclusions Via a survey for differential allele expression in F1 mice, a substantial proportion of genes were found to have alleles altering expression in cis -acting fashion. Comparing forebrain and kidney, many or most of these alleles were tissue-specific in action. The identification of strain specific DAE QTLs, can assist in assessment of candidate genes located within the large intervals associated with trait QTLs.
机译:背景技术全基因组调查已通过将SNV等位基因与转录水平相关联,检测到了改变RNA转录本(RNA-eQTLs)水平的顺式作用性状基因座。然而,通过遗传方法检测顺式表达定量性状基因座(eQTL)的敏感性和特异性,取决于重组近交品系或安排的杂交后代的转录水平的测量,尚不清楚,因为它们与QTL的关系用于复杂的表型。结果我们使用转录组范围的差异等位基因表达(DAE),通过三种小鼠自交系129S1 / SvlmJ,DBA / 2J,CAST / EiJ和C57BL / 6?J之间的相互杂交来检测前脑和肾脏中的cis-eQTL。这些杂交中的两个以前通过重组近交(RI)菌株的遗传分析表征了顺式-eQTL和各种复杂表型的QTL。在B6 / 129SF1,B6 / DBAF1和B6 / CASTF1小鼠的前脑中检测到的基因分别有5.4%,1.9%和1.5 %%显示差异等位基因表达,表明这些基因处有顺式作用等位基因。此外,观察到大多数DAE QTL具有组织特异性,只有一小部分在两个组织中均显示出顺式作用。将F1小鼠中的DAE QTL与先前在RI品系中绘制的顺式-eQTLs进行比较,我们观察到许多顺式-eQTLs没有被DAE证实。此外,还鉴定了几种未鉴定为顺式eQTL的新型DAE-QTL,这表明这两种方法在QTL检测的敏感性和特异性上存在差异。 B6 / DBAF1小鼠中的菌株特异性DAE QTL过量存在于酒精使用障碍,癫痫发作和血管生成的候选基因上,这些基因先前通过C57BL / 6J×DBA / 2JF2小鼠或BXD RI菌株中的基因连锁而涉及。结论通过对F1小鼠差异等位基因表达的调查,发现相当一部分基因具有等位基因以顺式作用方式改变表达。与前脑和肾脏相比,这些等位基因中的许多或大多数是特定于组织的。菌株特异性DAE QTL的鉴定可以帮助评估位于与性状QTL相关的较大间隔内的候选基因。

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