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Dynamic Genetic Interactions Determine Odor-Guided Behavior in Drosophila melanogaster

机译:动态遗传相互作用决定果蝇的气味引导行为。

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摘要

Understanding the genetic architecture of complex traits requires identification of the underlying genes and characterization of gene-by-gene and genotype-by-environment interactions. Behaviors that mediate interactions between organisms and their environment are complex traits expected to be especially sensitive to environmental conditions. Previous studies on the olfactory avoidance response of Drosophila melanogaster showed that the genetic architecture of this model behavior depends on epistatic networks of pleiotropic genes. We performed a screen of 1339 co-isogenic p[GT1]-element insertion lines to identify novel genes that contribute to odor-guided behavior and identified 55 candidate genes with known p[GT1]-element insertion sites. Characterization of the expression profiles of 10 p[GT1]-element insertion lines showed that the effects of the transposon insertions are often dependent on developmental stage and that hypomorphic mutations in developmental genes can elicit profound adult behavioral deficits. We assessed epistasis among these genes by constructing all possible double heterozygotes and measuring avoidance responses under two stimulus conditions. We observed enhancer and suppressor effects among subsets of these P-element-tagged genes, and surprisingly, epistatic interactions shifted with changes in the concentration of the olfactory stimulus. Our results show that the manifestation of epistatic networks dynamically changes with alterations in the environment.
机译:了解复杂性状的遗传结构需要鉴定潜在的基因,并表征逐基因和逐环境基因型的相互作用。介导生物与环境之间相互作用的行为是复杂的特征,预期对环境条件特别敏感。先前对果蝇的嗅觉回避反应的研究表明,该模型行为的遗传结构取决于多效性基因的上位性网络。我们对1339个同基因的p [GT1]插入序列进行了筛选,以鉴定有助于气味引导行为的新基因,并鉴定了55个具有已知p [GT1]插入位点的候选基因。 10 p [GT1]元素插入线的表达谱的表征表明,转座子插入的影响通常取决于发育阶段,并且发育基因的亚型突变会引起严重的成人行为缺陷。我们通过构建所有可能的双重杂合子并测量两种刺激条件下的回避反应来评估这些基因中的上位性。我们观察到这些P元素标记基因的子集之间的增强和抑制作用,并且令人惊讶地,上位相互作用随着嗅觉刺激物浓度的变化而变化。我们的结果表明,上位网络的表现会随着环境的变化而动态变化。

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