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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Optimal design of genetic studies of gene expression with two-color microarrays in outbred crosses.
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Optimal design of genetic studies of gene expression with two-color microarrays in outbred crosses.

机译:近交杂交中双色微阵列基因表达的遗传研究的优化设计。

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Combining global gene-expression profiling and genetic analysis of natural allelic variation (genetical genomics) has great potential in dissecting the genetic pathways underlying complex phenotypes. Efficient use of microarrays is paramount in experimental design as the cost of conducting this type of study is high. For those organisms where recombinant inbred lines are available for mapping, the "distant pair design" maximizes the number of informative contrasts over all marker loci. Here, we describe an extension of this design, named the optimal pair design, performance of this design is investigated by simulation and compared to several other two-color microarray designs. We show that, for a given number of microarrays, the optimal pair design outperforms all other designs considered for detection of expression quantitative trait loci (eQTL) with additive effects by linkage analysis. We also discuss the suitability of this design for outbred crosses in organisms with large genomes and for detection of dominance.
机译:结合全球基因表达谱分析和自然等位基因变异的遗传分析(遗传基因组学)在剖析复杂表型的遗传途径方面具有巨大潜力。在实验设计中高效使用微阵列至关重要,因为进行此类研究的成本很高。对于重组近交系可用于作图的那些生物,“远对设计”可在所有标记位点上最大化信息对比的数量。在这里,我们描述了这种设计的扩展,称为最佳对设计,通过仿真研究了该设计的性能,并将其与其他几种双色微阵列设计进行了比较。我们表明,对于给定数量的微阵列,最佳对设计优于通过链接分析检测具有累加效应的表达定量性状基因座(eQTL)的所有其他设计。我们还讨论了该设计适用于具有大基因组的生物中的近交杂交以及对优势的检测。

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