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Combining Genome-Wide Methods to Investigate the Genetic Complexity of Courtship Song Variation in Drosophila melanogaster

机译:结合全基因组方法研究果蝇求爱歌曲变异的遗传复杂性。

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摘要

Little is currently known about the genetic complexity of quantitative behavioral variation, the types of genes involved, or their effects on intermediate phenotypes. Here, we conduct a genome-wide association study of Drosophila melanogaster courtship song variation using 168 sequenced inbred lines, and fail to find highly significant associations. However, by combining these data with results from a well-powered Evolve and Resequence (E&R) study on the same trait, we provide statistical evidence that some power to associate genotype and phenotype is available. Genes that are significant in both analyses are enriched for expression in the nervous system, and affect neural development and synaptic growth when perturbed. Quantitative complementation at one of these loci, Syntrophin-like 1, supports a hypothesis that variation at this locus affects variation in the inter-pulse interval of courtship song. These results suggest that experimental evolution may provide an approach for genome-scale replication in Drosophila.
机译:目前对定量行为变异的遗传复杂性,所涉及基因的类型或其对中间表型的影响知之甚少。在这里,我们使用168个测序的近交系进行了果蝇求爱歌曲变异的全基因组关联研究,但未发现高度重要的关联。但是,通过将这些数据与对同一性状进行有力的进化和测序(E&R)研究的结果相结合,我们提供了统计证据,证明可以利用某些能力来关联基因型和表型。两种分析中均重要的基因会在神经系统中富集表达,并在受到干扰时影响神经发育和突触生长。在这些基因座之一,即Syntrophin-like 1处的定量互补支持了一个假设,即该基因座的变异会影响求爱歌曲的脉冲间间隔的变异。这些结果表明,实验进化可能为果蝇中的基因组规模复制提供一种方法。

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