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The fickle Mutation of a Cytoplasmic Tyrosine Kinase Effects Sensitization but not Dishabituation in Drosophila Melanogaster

机译:变质的细胞质酪氨酸激酶突变影响敏化但不引起果蝇黑斑病。

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摘要

fickle is a P-element mutation identified from a screen for defects in courtship behavior and disrupts the fly homolog of Bruton's tyrosine kinase (Btk) gene (). Here, we show that habituation of the olfactory jump reflex also is defective in fickle. Unlike, the prototypical memory mutants, rutabaga and dunce, which habituate more slowly than normal, fickle flies habituate faster than normal. fickle's faster-than-normal response decrement did not appear to be due to sensorimotor fatigue, and dishabituation of the jump response was normal. Based on a long-standing “two opponent process” theory of habituation, these data suggested that behavioral sensitization might be defective in fickle. To test this hypothesis, we designed a olfactory sensitization procedure, using the same stimuli to habituate (odor) and dishabituate (vortexing) flies. Mutant flies failed to show any sensitization with this procedure. Our study reveals a “genetic dissection” of sensitization and dishabituation and, for the first time, provides a biological confirmation of the two opponent process theory of habituation.
机译:ckle变是从求爱行为缺陷的筛查中识别出的P元素突变,它破坏了布鲁顿酪氨酸激酶(Btk)基因的蝇蝇同源物。在这里,我们表明嗅觉跳跃反射的习惯化在善变中也是有缺陷的。与原型记忆突变体(大头菜和笨蛋)不同,它们的习性比正常慢,而善变的蝇的习性比正常快。变态的反应速度下降快于正常水平似乎不是由于感觉运动疲劳引起的,而跳跃反应的不适是正常的。基于长期的“两个对手过程”习惯化理论,这些数据表明行为敏锐度可能在善变中有所缺陷。为了验证这一假设,我们设计了一种嗅觉敏化程序,使用相同的刺激来使苍蝇习惯(气味)和使苍蝇不适应(涡旋)。突变苍蝇未能显示出该程序的任何致敏性。我们的研究揭示了致敏和异化的“遗传剖析”,并且首次提供了两个对手异化过程理论的生物学证实。

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