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Spatiotemporal development of the embryonic nervous system of saccoglossus kowalevskii

机译:酸枣(Saccoglossus kowalevskii)胚胎神经系统的时空发育

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Defining the organization and temporal onset of key steps in neurogenesis in invertebrate deuterostomes is critical to understand the evolution of the bilaterian and deuterostome nervous systems. Although recent studies have revealed the organization of the nervous system in adult hemichordates, little attention has been paid to neurogenesis during embryonic development in this third major phylum of deuterostomes. We examine the early events of neural development in the enteropneust hemichordate Saccoglossus kowalevskii by analyzing the expression of 11 orthologs of key genes associated with neurogenesis in an expansive range of bilaterians. Using in situ hybridization (ISH) and RT-PCR, we follow the course of neural development to track the transition of the early embryonic diffuse nervous system to the more regionalized midline nervous system of the adult. We show that in Saccoglossus, neural progenitor markers are expressed maternally and broadly encircle the developing embryo. An increase in their expression and the onset of pan neural markers, indicate that neural specification occurs in late blastulae - early gastrulae. By mid-gastrulation, punctate expression of markers of differentiating neurons encircling the embryo indicate the presence of immature neurons, and at the end of gastrulation when the embryo begins to elongate, markers of mature neurons are expressed. At this stage, expression of a subset of neuronal markers is concentrated along the trunk ventral and dorsal midlines. These data indicate that the diffuse embryonic nervous system of Saccoglossus is transient and quickly reorganizes before hatching to resemble the adult regionalized, centralized nervous system. This regionalization occurs at a much earlier developmental stage than anticipated indicating that centralization is not linked in S. kowalevskii to a lifestyle change of a swimming larva metamorphosing to a crawling worm-like adult.
机译:定义无脊椎动物氘代吻合口神经发生中关键步骤的组织和时间起步,对于理解双侧和氘代口吻神经系统的进化至关重要。尽管最近的研究已经揭示了成年半酸盐中神经系统的组织,但在氘代口琴的第三大门中,胚胎发育过程中的神经发生却很少受到关注。我们通过分析在广泛的双语者中与神经发生相关的关键基因的11个直系同源基因的表达,我们研究了肠内半hor酸盐Saccoglossus kowalevskii中神经发育的早期事件。使用原位杂交(ISH)和RT-PCR,我们遵循了神经发育的过程,以追踪成年人早期胚胎弥漫性神经系统向区域性中线神经系统的过渡。我们显示在Saccoglossus中,神经祖细胞标记物在母亲中表达,并广泛地环绕发育中的胚胎。它们的表达增加和泛神经标志物的发作,表明神经规范发生在小囊胚晚期-早期胃。到胎中期,围绕胚胎的分化神经元标志物的点状表达表明存在未成熟的神经元,并且在胚化结束时,当胚胎开始伸长时,成熟神经元标志物被表达。在这一阶段,神经元标志物的子集的表达沿躯干腹侧和背侧中线集中。这些数据表明,Saccoglossus的弥漫性胚胎神经系统是短暂的,在孵化之前迅速重组,类似于成人的区域化,集中性神经系统。这种区域化发生在比预期的要早得多的发展阶段,这表明集中化在沙门氏菌中与游泳幼虫向蠕虫状成虫蜕变的生活方式改变没有联系。

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