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Development of oculomotor circuitry independent of hox3 genes

机译:与 hox3 基因无关的动眼回路的发展

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Hox genes have been shown to be essential in vertebrate neural circuit formation and their depletion has resulted in homeotic transformations with neuron loss and miswiring. Here we quantifiy four eye movements in the zebrafish mutant valentino and hox3 knockdowns, and find that contrary to the classical model, oculomotor circuits in hindbrain rhombomeres 5–6 develop and function independently of hox3 genes. All subgroups of oculomotor neurons are present, as well as their input and output connections. Ectopic connections are also established, targeting two specific subsets of horizontal neurons, and the resultant novel eye movements coexists with baseline behaviours. We conclude that the high expression of hox3 genes in rhombomeres 5–6 serves to prevent aberrant neuronal identity and behaviours, but does not appear to be necessary for a comprehensive assembly of functional oculomotor circuits.
机译:Hox基因已显示出在脊椎动物神经回路形成中必不可少,其耗竭已导致神经元丧失和接线错误的同源转换。在这里,我们对斑马鱼突变体valentino和hox3敲低的四个眼动进行了定量,发现与经典模型相反,后脑菱形5-6中的动眼回路独立于hox3基因而发育和起作用。存在动眼神经元的所有亚组,以及它们的输入和输出连接。还建立了异位连接,以水平神经元的两个特定子集为目标,并且由此产生的新颖的眼球运动与基线行为共存。我们得出的结论是,hox3基因在5-6号菱形细胞中的高表达可防止神经元身份异常和行为异常,但对于功能性动眼回路的全面组装似乎并不是必需的。

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