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Evolution of the larval peripheral nervous system in Drosophila species has involved a change in sensory cell lineage

机译:果蝇物种幼虫外周神经系统的演变涉及感觉细胞谱系的变化

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A key challenge in evolutionary biology is to identify developmental events responsible for morphological changes. To determine the cellular basis that underlies changes in the larval peripheral nervous system (PNS) of flies, we first described the PNS pattern of the abdominal segments A1-A7 in late embryos of several fly species using antibody staining. In contrast to the many variations reported previously for the adult PNS pattern, we found that the larval PNS pattern has remained very stable during evolution. Indeed, our observation that most of the analysed Drosophilinae species exhibit exactly the same pattern as Drosophila melanogaster reveals that the pattern observed in D. melanogaster embryos has remained constant for at least 40 million years. Furthermore, we observed that the PNS pattern in more distantly related flies (Calliphoridae and Phoridae) is only slightly different from the one in D. melanogaster. A single difference relative to D. melanogaster was identified in the PNS pattern of the Drosophilinae fly D. busckii, the absence of a specific external sensory organ. Our analysis of sensory organ development in D. busckii suggests that this specific loss resulted from a transformation in cell lineage, from a multidendritic-neuron-external-sensory-organ lineage to a multidendritic-neuron-solo lineage.
机译:进化生物学中的一个关键挑战是识别负责形态变化的发育事件。为了确定脱离恒生幼虫外周神经系统(PNS)的细胞基础,我们首先使用抗体染色描述几种飞行物种的晚期胚胎中的腹部段A1-A7的PNS模式。与以前针对成年PNS模式报告的许多变化相比,我们发现幼虫PNS模式在进化期间保持非常稳定。实际上,我们观察到大多数分析的果蝇种类表现出与果蝇的果冻蛋白质表现出完全相同的图案,因为果蝇比较表明,在D. melanogaster胚胎中观察到的模式保持持续至少4000万年。此外,我们观察到更远距离相关苍蝇(Calliphoridae和Phoridae)的PNS模式与D. Melanogaster中的一个略微不同。在果蝇飞行D. Busckii的PNS模式中鉴定了相对于D. melanogaster的单个差异,没有特异性外部感官器官。我们对D. Busckii中的感觉器官发展分析表明,这种特定损失是由细胞谱系的转化,从多义术 - 神经元 - 外部感官器官谱系到多义术 - 神经元 - 单谱系。

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