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unfulfilled Interacting Genes Display Branch-Specific Roles in the Development of Mushroom Body Axons in Drosophila melanogaster

机译:未实现的相互作用基因在果蝇中蘑菇体轴突的发育中显示分支特定的作用。

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摘要

The mushroom body (MB) of Drosophila melanogaster is an organized collection of interneurons that is required for learning and memory. Each of the three subtypes of MB neurons, γ, α´/β´, and α/β, branch at some point during their development, providing an excellent model in which to study the genetic regulation of axon branching. Given the sequential birth order and the unique patterning of MB neurons, it is likely that specific gene cascades are required for the different guidance events that form the characteristic lobes of the MB. The nuclear receptor UNFULFILLED (UNF), a transcription factor, is required for the differentiation of all MB neurons. We have developed and used a classical genetic suppressor screen that takes advantage of the fact that ectopic expression of unf causes lethality to identify candidate genes that act downstream of UNF. We hypothesized that reducing the copy number of unf-interacting genes will suppress the unf-induced lethality. We have identified 19 candidate genes that when mutated suppress the unf-induced lethality. To test whether candidate genes impact MB development, we performed a secondary phenotypic screen in which the morphologies of the MBs in animals heterozygous for unf and a specific candidate gene were analyzed. Medial MB lobes were thin, missing, or misguided dorsally in five double heterozygote combinations (;unf/+;axin/+, unf/+;Fps85D/+, ;unf/+;Tsc1/+, ;unf/+;Rheb/+, ;unf/+;msn/+). Dorsal MB lobes were missing in ;unf/+;DopR2/+ or misprojecting beyond the termination point in ;unf/+;Sytβ double heterozygotes. These data suggest that unf and unf-interacting genes play specific roles in axon development in a branch-specific manner.
机译:果蝇的蘑菇体(MB)是学习和记忆所需要的有组织的中间神经元集合。 MB神经元的三个亚型γ,α´/ β´和α/β在它们发育的某个时刻分支,这为研究轴突分支的遗传调控提供了一个极好的模型。给定顺序的出生顺序和MB神经元的独特模式,很可能需要特定的基因级联来形成MB特征叶的不同引导事件。核受体UNFULFILLED(UNF)是一种转录因子,是所有MB神经元分化所必需的。我们已经开发并使用了经典的基因抑制器筛选技术,该技术利用了事实,即unf的异位表达会导致致命性,从而鉴定出在UNF下游起作用的候选基因。我们假设减少unf相互作用基因的拷贝数将抑制unf致死率。我们已经鉴定出19个候选基因,这些基因在突变后能抑制unf致死性。为了测试候选基因是否影响MB的发育,我们进行了二次表型筛选,其中对unf和特定候选基因杂合的动物中MB的形态进行了分析。在五个双杂合子组合(; unf / +; axin / +,unf / +; Fps85D / +,; unf / +; Tsc1 / +,; unf / +; Rheb / +,; unf / +; msn / +)。在; unf / +; DopR2 / +中缺少背侧MB裂片,或在; unf / +;Sytβ双杂合子中超出末端的位置错误投射。这些数据表明,unf和unf相互作用的基因以特定于分支的方式在轴突发育中发挥特定作用。

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