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Formation of the digestive tract in Ciona intestinalis includes two distinct morphogenic processes between its anterior and posterior parts

机译:Ciona肠的消化道形成包括在其前部和后部之间的两个不同的形态发生过程

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Background: In the ascidian Ciona intestinalis, the digestive tract, an essential system for animals, develops during metamorphosis from the two primordial tissues, the endoderm and endodermal strand, located in the larval trunk and tail, respectively. However, it has been largely unknown how the digestive tract develops from these primordial tissues. We examined the metamorphosing larvae for the tubular formation of the digestive tract, focusing on the epithelial organization of the endoderm, by combined confocal microscopy and computational rendering. Results: The tubular structure of the esophagus to the stomach was formed through the folding and closure of the endodermal epithelia in the central-to-right posterior trunk. By contrast, the intestine was formed in the left posterior trunk through the accumulation and rearrangement of the cells originated from the endodermal strand. This was confirmed by the cell-tracing experiment using Kaede expression construct driven in the endodermal strand. Thus, the tubular formation of the digestive tract in C. intestinalis includes distinct morphogenetic processes and cell lineages between its anterior and posterior parts. Conclusion: This study provides the first detailed description of the digestive tract morphogenesis in C. intestinalis and serves as an important basis toward thorough understanding of its digestive tract development. Developmental Dynamics, 242:1172-1183, 2013. Key findings: In Ciona intestinalis, the basic architecture of the digestive tract is formed by the stage35 when the tadpole tail is absorbed. The anterior digestive tract, including the oesophagus and the stomach, is formed through the folding and closure of the endoderm. The posterior digestive tract, the intestine, is formed through accumulation and rearrangement of the cells of the endodermal strand origin.
机译:背景:在海鞘Ciona肠中,消化道是动物必不可少的系统,在变态过程中会从分别位于幼虫躯干和尾部的两个原始组织(内胚层和内胚层链)变态形成。然而,很大程度上未知这些原始组织如何发展消化道。我们通过共聚焦显微镜和计算方法研究了变态幼虫的消化道小管形成,重点是内胚层的上皮组织。结果:食管的胃的管状结构是通过中后右干的内胚层上皮的折叠和闭合而形成的。相反,通过内胚层链起源的细胞的积累和重排,在左后躯干中形成肠子。通过使用在内胚层链中驱动的Kaede表达构建体的细胞追踪实验证实了这一点。因此,肠弯曲杆菌消化道的管状形成包括在其前部和后部之间不同的形态发生过程和细胞谱系。结论:本研究首次详细描述了小肠梭菌的消化道形态,并为深入了解其消化道的发育提供了重要依据。 Developmental Dynamics,242:1172-1183,2013。主要发现:在Ciona小肠中,消化道的基本结构是由is吸收的阶段35形成的。前消化道,包括食道和胃,是通过内胚层的折叠和闭合而形成的。后消化道,肠,是通过内胚层链起源的细胞的积累和重排而形成的。

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