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Hierarchical deployment of factors regulating temporal fate in a diverse neuronal lineage of the Drosophila central brain

机译:在果蝇中枢大脑的多样化神经元谱系中调节时间命运的因子的分层部署

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摘要

The anterodorsal projection neuron lineage of Drosophila melanogaster produces 40 neuronal types in a stereotypic order. Here we take advantage of this complete lineage sequence to examine the role of known temporal fating factors, including Chinmo and the Hb/Kr/Pdm/Cas transcriptional cascade, within this diverse central brain lineage. Kr mutation affects the temporal fate of the neuroblast (NB) itself, causing a single fate to be skipped, whereas Chinmo null only elicits fate transformation of NB progeny without altering cell counts. Notably, Chinmo operates in two separate windows to prevent fate transformation (into the subsequent Chinmo-indenpendent fate) within each window. By contrast, Hb/Pdm/Cas play no detectable role, indicating that Kr either acts outside of the cascade identified in the ventral nerve cord or that redundancy exists at the level of fating factors. Therefore, hierarchical fating mechanisms operate within the lineage to generate neuronal diversity in an unprecedented fashion.
机译:果蝇的前鼻投射神经元谱系以定型顺序产生40种神经元类型。在这里,我们利用这个完整的谱系序列来检查已知的暂时性肥胖因素(包括Chinmo和Hb / Kr / Pdm / Cas转录级联反应)在这种多样的中枢脑谱系中的作用。 Kr突变会影响成神经细胞(NB)本身的暂时命运,导致单个命运被跳过,而Chinmo null仅引起NB后代的命运转化,而不会改变细胞计数。值得注意的是,Chinmo在两个单独的窗口中进行操作,以防止每个窗口内的命运转变(转化为随后的Chinmo独立命运)。相比之下,Hb / Pdm / Cas没有检测到作用,表明Kr在腹侧神经索中识别出的级联反应之外起作用,或者在肥胖因子水平上存在冗余。因此,分层的肥胖机制在血统中运作,以前所未有的方式产生神经元多样性。

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