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Deficiency screening for genomic regions with effects on environmental sensitivity of the sensory bristles of drosophila melanogaster

机译:对果蝇感官刷毛环境敏感性的基因组区域缺陷筛查

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Environmental canalization is defined as a reduction in the effect of external environmental perturbations on a phenotype, while phenotypic plasticity is defined as the production of different phenotypes in alternative environments. These terms describe different aspects of the same phenomenon, that is, the sensitivity of the phenotype to the environment. Genetic regulation of the environmental sensitivity has been a central topic in the field of evolutionary biology. In this study, we performed deficiency screening to detect genomic regions with effects on the environmental sensitivity of Drosophila melanogaster sensory bristles. We used a collection of isogenic deficiency strains established by the DrosDel Project for screening. We screened 423 genomic deficiencies that encompassed approximately 63.6% of the entire D. melanogaster genome. We identified 29 genomic deficiencies showing significant effects on environmental sensitivity, suggesting that multiple genomic regions may influence phenotypic variation. We also found significant correlations among the effects of deficiencies on environmental sensitivity for different bristle traits, suggesting that the same genetic mechanism can regulate environmental sensitivity of multiple traits. Current high-resolution mapping will facilitate the examination of individual candidate genes using mutations or RNAi approaches in future studies.
机译:环境渠化被定义为减少外部环境扰动对表型的影响,而表型可塑性被定义为在替代环境中不同表型的产生。这些术语描述了同一现象的不同方面,即表型对环境的敏感性。环境敏感性的遗传调控一直是进化生物学领域的中心课题。在这项研究中,我们进行了缺陷筛查,以检测对果蝇感官刷毛的环境敏感性有影响的基因组区域。我们使用了由DrosDel项目建立的一组等基因缺陷菌株进行筛选。我们筛选了423个基因组缺陷,涵盖了整个D. melanogaster基因组的约63.6%。我们发现29个基因组缺陷对环境敏感性显示出显着影响,表明多个基因组区域可能影响表型变异。我们还发现缺陷对不同猪鬃性状对环境敏感性的影响之间存在显着相关性,表明相同的遗传机制可以调节多种性状对环境的敏感性。当前的高分辨率作图将有助于在将来的研究中使用突变或RNAi方法检查单个候选基因。

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