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Neuronal tracing of oral nerves in a velvet worm—Implications for the evolution of the ecdysozoan brain

机译:天鹅绒蠕虫口腔神经的神经元描记—对蜕皮动物脑进化的影响

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摘要

As one of the closest relatives of arthropods, Onychophora plays an important role in understanding the evolution of arthropod body plans. Currently there is controversy surrounding the evolution of the brain among the ecdysozoan clades, which shows a collar-shaped, circumoral organization in cycloneuralians but a ganglionic architecture in panarthropods. Based on the innervation pattern of lip papillae surrounding the mouth, the onychophoran brain has been interpreted as a circumoral ring, suggesting that this organization is an ancestral feature of Ecdysozoa. However, this interpretation is inconsistent with other published data. To explore the evolutionary origin of the onychophoran mouth and to shed light on the evolution of the ecdysozoan brains, we analyzed the innervation pattern and morphogenesis of the oral lip papillae in the onychophoran Euperipatoides rowelli using DNA labeling, immunocytochemistry, and neuronal tracing techniques. Our morphogenetic data revealed that the seven paired and one unpaired oral lip papillae arise from three anterior-most body segments. Retrograde fills show that only the first and the third nerves supplying the lip papillae are associated with cell bodies within the brain, whereas the second nerve exclusively receives fibers from somata of peripheral neurons located in the lip papillae. According to our anterograde fills and immunocytochemical data, the first nerve supplies the anterior-most pair of lip papillae, whereas the second and the third nerves are associated with the second to fifth and second to eighth lip papillae, respectively. These data suggest that the lip papillae of E. rowelli are mainly innervated by the proto- and deutocerebrum, whereas there are only a few additional cell bodies situated posterior to the brain. According to these findings, the overall innervation pattern of the oral lip papillae in E. rowelli is incompatible with the interpretation of the onychophoran brain as a modified circumoral ring.
机译:作为节肢动物的最亲近的亲属之一,甲虫在理解节肢动物身体计划的演变中起着重要的作用。目前,在蜕皮动物进化枝周围的大脑进化方面存在争议,在旋风神经学家中显示出一个领口状的周围组织,而在节肢动物中则显示出一个神经节结构。基于嘴唇周围乳头的神经支配模式,甲虫卵脑被解释为一个环周环,这表明这种组织是E虫的祖先特征。但是,这种解释与其他已发布的数据不一致。为了探索on虫口的进化起源并阐明蜕皮动物脑的进化,我们使用DNA标记,免疫细胞化学和神经元示踪技术分析了row虫Euperipatoides rowelli口腔唇乳头的神经支配模式和形态发生。我们的形态学数据表明,七个配对和一个未配对的口腔唇乳头来自最前面的三个身体节段。逆行充盈表明,只有供应唇乳头的第一和第三条神经与大脑内的细胞体相关,而第二神经仅接受位于唇乳头的周围神经元的躯体的纤维。根据我们的顺行性充盈和免疫细胞化学数据,第一条神经供应最前一对唇乳头,而第二条和第三条神经分别与第二至第五和第二至第八条唇乳头相关。这些数据表明,大肠埃希氏菌的唇乳头主要由原大脑和中胚层神经支配,而在大脑后部仅存在一些额外的细胞体。根据这些发现,罗氏大肠杆菌中口腔唇乳头的总体神经支配模式与将甲壳虫脑解释为修饰的环周环不相容。

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