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Latheo a New Gene Involved in Associative Learning and Memory in Drosophila Melanogaster Identified from P Element Mutagenesis

机译:Latheo一个新的基因参与果蝇黑腹果蝇的相关学习和记忆从P元素诱变中鉴定。

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摘要

Genetic dissection of learning and memory in Drosophila has been limited by the existence of ethyl methanesulfonate (EMS)-induced mutations in only a small number of X-linked genes. To remedy this shortcoming, we have begun a P element mutagenesis to screen for autosomal mutations that disrupt associative learning and/or memory. The generation of ``P-tagged'' mutant alleles will expedite molecular cloning of these new genes. Here, we describe a behavior-genetic characterization of latheo(P1), a recessive, hypomorphic mutation of an essential gene. latheo(P1) flies perform poorly in olfactory avoidance conditioning experiments. This performance deficit could not be attributed to abnormal olfactory acuity or shock reactivity-two task-relevant ``peripheral'' behaviors which are used during classical conditioning. Thus, the latheo(P1) mutation appears to affect learning/memory specifically. Consistent with chromosomal in situ localization of the P element insertion, deficiencies of the 49F region of the second chromosome failed to complement the behavioral effect of the latheo(P1) mutation. Further complementation analyses between latheo(P1) and lethal alleles, produced by excision of the latheo(P1) insert or by EMS or γ-rays, in the 49F region mapped the latheo mutation to one vital complementation group. Flies heterozygous for latheo(P1) and one of two EMS lethal alleles or one lethal excision allele also show the behavioral deficits, thereby demonstrating that the behavioral and lethal phenotypes co-map to the same locus.
机译:果蝇中学习和记忆的遗传解剖仅受少数X连锁基因中甲磺酸乙酯(EMS)诱导的突变的存在所限制。为了弥补这一缺点,我们已经开始进行P元素诱变,以筛查破坏相关学习和/或记忆的常染色体突变。 ``P标签''突变等位基因的产生将加速这些新基因的分子克隆。在这里,我们描述了latheo(P1)的行为遗传特征,这是必需基因的隐性,亚型突变。 latheo(P1)苍蝇在嗅觉回避条件实验中表现不佳。这种表现不足不能归因于异常的嗅觉敏锐度或休克反应性-在经典调理过程中使用的两种与任务相关的``外围''行为。因此,latheo(P1)突变似乎特别影响学习/记忆。与P元素插入的染色体原位定位一致,第二条染色体49F区域的缺陷未能弥补latheo(P1)突变的行为影响。切除Latheo(P1)插入片段或通过EMS或γ射线在49F区域产生的latheo(P1)与致死等位基因之间的进一步互补分析将latheo突变定位到一个重要的互补组。苍蝇的latheo(P1)杂合子和两个EMS致死等位基因之一或一个致死切除等位基因也显示出行为缺陷,从而证明了行为和致死表型共同映射到同一基因座。

著录项

  • 期刊名称 Genetics
  • 作者

    S. Boynton; T. Tully;

  • 作者单位
  • 年(卷),期 1992(131),3
  • 年度 1992
  • 页码 655–672
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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