Department of Genetics, Texas Biomedical Research Institute, San Antonio, TX, USA.
Adv Nutr. 2012 Jul 1;3(4):596S-604S. doi: 10.3945/an.112.001925.
Whole-transcriptome expression profiling provides novel phenotypes for analysis of complex traits. Gene expression measurements reflect quantitative variation in transcript-specific messenger RNA levels and represent phenotypes lying close to the action of genes. Understanding the genetic basis of gene expression will provide insight into the processes that connect genotype to clinically significant traits representing a central tenet of system biology. Synchronous in vivo expression profiles of lymphocytes, muscle, and subcutaneous fat were obtained from healthy Mexican men. Most genes were expressed at detectable levels in multiple tissues, and RNA levels were correlated between tissue types. A subset of transcripts with high reliability of expression across tissues (estimated by intraclass correlation coefficients) was enriched for cis-regulated genes, suggesting that proximal sequence variants may influence expression similarly in different cellular environments. This integrative global gene expression profiling approach is proving extremely useful for identifying genes and pathways that contribute to complex clinical traits. Clearly, the coincidence of clinical trait quantitative trait loci and expression quantitative trait loci can help in the prioritization of positional candidate genes. Such data will be crucial for the formal integration of positional and transcriptomic information characterized as genetical genomics.
全转录组表达谱分析为复杂性状的分析提供了新的表型。基因表达测量反映了特定信使 RNA 水平的定量变化,代表了接近基因作用的表型。了解基因表达的遗传基础将为理解连接基因型与代表系统生物学核心原则的临床显著特征的过程提供深入的认识。从健康的墨西哥男性中获得了淋巴细胞、肌肉和皮下脂肪的同步体内表达谱。大多数基因在多种组织中都以可检测的水平表达,并且组织类型之间的 RNA 水平相关。一组在多个组织中表达可靠性高的转录本(通过组内相关系数估计)富含顺式调节基因,表明近端序列变体可能在不同的细胞环境中以相似的方式影响表达。这种综合的全局基因表达谱分析方法对于鉴定与复杂临床特征相关的基因和途径非常有用。显然,临床特征数量性状基因座和表达数量性状基因座的一致性有助于优先考虑位置候选基因。这些数据对于正式整合作为遗传基因组学的位置和转录组信息至关重要。