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Dual role for Hox genes and Hox co-factors in conferring leg motoneuron survival and identity in Drosophila

机译:Hox基因和Hox辅助因子在赋予果蝇腿运动神经元存活和特性中的双重作用

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摘要

Adult Drosophila walk using six multi-jointed legs, each controlled by ~50 leg motoneurons (MNs). Although MNs have stereotyped morphologies, little is known about how they are specified. Here, we describe the function of Hox genes and homothorax (hth), which encodes a Hox co-factor, in Drosophila leg MN development. Removing either Hox or Hth function from a single neuroblast (NB) lineage results in MN apoptosis. A single Hox gene, Antennapedia (Antp), is primarily responsible for MN survival in all three thoracic segments. When cell death is blocked, partially penetrant axon branching errors are observed in Hox mutant MNs. When single MNs are mutant, errors in both dendritic and axon arborizations are observed. Our data also suggest that Antp levels in postmitotic MNs are important for specifying their identities. Thus, in addition to being essential for survival, Hox and hth are required to specify accurate MN morphologies in a level-dependent manner.
机译:成年果蝇使用六个多关节腿走路,每个腿由约50个腿运动神经元(MNs)控制。尽管MN具有定型的形态,但对其指定方式知之甚少。在这里,我们描述果蝇腿MN发育中Hox基因和编码Hox辅因子的同型胸(hth)的功能。从单个成神经细胞(NB)谱系中删除Hox或Hth功能会导致MN凋亡。单一的Hox基因,触角虫(Antp),主要负责所有三个胸段的MN生存。当阻止细胞死亡时,在Hox突变MNs中观察到部分穿透的轴突分支错误。当单个MNs突变时,在树突和轴突乔化中都观察到错误。我们的数据还表明,有丝分裂后MN中的Antp水平对于指定其身份非常重要。因此,除了对于生存至关重要之外,还需要Hox和hth以水平相关的方式指定准确的MN形态。

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