首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Bunched specifically regulates alpha/beta mushroom body neuronal cell proliferation during metamorphosis.
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Bunched specifically regulates alpha/beta mushroom body neuronal cell proliferation during metamorphosis.

机译:Bundle专门调节变态过程中α/β蘑菇体神经元细胞的增殖。

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摘要

In Drosophila, mushroom bodies are centers for higher order behavior. Mushroom body neurons consist of three distinct types of neuronal cells, alpha, alpha'/beta', and alpha/beta, which are all generated by the same neuroblasts. The mechanism by which a single neuroblast generates three different types of mushroom body neurons is a compelling area of research. Here, we report that bunched (bun) is expressed only in alpha/beta-type mushroom body neurons and that mutation of the bun gene only affects the development of alpha/beta neurons. Reduced bun expression causes decreased and premature arrest of neuroblast cell division, which results in reduced numbers of alpha/beta neurons and thin axon bundled formation. We propose that bun acts as a specific factor in regulating neuroblast mitotic activity during the development of alpha/beta neurons.
机译:在果蝇中,蘑菇体是较高阶行为的中心。蘑菇体内神经元由三种不同类型的神经元细胞,即α,α'/β'和α/β组成,它们均由相同的成神经细胞产生。单个神经母细胞产生三种不同类型的蘑菇体神经元的机制是一个引人注目的领域。在这里,我们报告说成束的(bun)仅在alpha / beta型蘑菇体神经元中表达,而bun基因的突变仅影响alpha / beta神经元的发育。小圆面包的表达减少会导致成神经细胞分裂的减少和过早停止,从而导致α/β神经元数量减少和轴突细束形成。我们建议发bun作为α/β神经元发展过程中调节成神经细胞有丝分裂活动的特定因素。

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