首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The tamas Gene, Identified as a Mutation That Disrupts Larval Behavior in Drosophila melanogaster, Codes for the Mitochondrial DNA Polymerase Catalytic Subunit (DNApol-γ125)
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The tamas Gene, Identified as a Mutation That Disrupts Larval Behavior in Drosophila melanogaster, Codes for the Mitochondrial DNA Polymerase Catalytic Subunit (DNApol-γ125)

机译:tamas基因被鉴定为破坏果蝇果蝇行为的突变,编码线粒体DNA聚合酶催化亚基(DNApol-γ125)

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From a screen of pupal lethal lines of Drosophila melanogaster we identified a mutant strain that displayed a reproducible reduction in the larval response to light. Moreover, this mutant strain showed defects in the development of the adult visual system and failure to undergo behavioral changes characteristic of the wandering stage. The foraging third instar larvae remained in the food substrate for a prolonged period and died at or just before pupariation. Using a new assay for individual larval photobehavior we determined that the lack of response to light in these mutants was due to a primary deficit in locomotion. The mutation responsible for these phenotypes was mapped to the lethal complementation group l(2)34Dc , which we renamed tamas (translated from Sanskrit as “dark inertia”). Sequencing of mutant alleles demonstrated that tamas codes for the mitochondrial DNA polymerase catalytic subunit ( DNApol -γ 125 ).
机译:从果蝇果蝇的致死性家系的筛选中,我们确定了一个突变株,该株在幼虫对光的反应中可再现地减少。此外,该突变株显示出成人视觉系统发育中的缺陷,并且未经历游荡阶段的行为变化特征。觅食的三龄幼虫在食物基质中保留了很长一段时间,并在产卵期或临产期死亡。使用针对个体幼虫光行为的新测定法,我们确定这些突变体中对光的缺乏响应是由于运动的主要缺陷。负责这些表型的突变被映射到致死性互补组l(2)34Dc,我们将其重命名为tamas(从梵文翻译为“黑暗惯性”)。突变等位基因的测序表明,tamas编码线粒体DNA聚合酶催化亚基(DNApol-γ125)。

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