Regeneration of the digestive tract of an anterior-eviscerating sea cucumber, Eupentacta quinquesemita, and the involvement of mesenchymal-epithelial transition in digestive tube formation.

IF 1.7 3区 生物学 Q2 ZOOLOGY
Zoological Letters Pub Date : 2019-06-21 eCollection Date: 2019-01-01 DOI:10.1186/s40851-019-0133-3
Akari Okada, Mariko Kondo
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引用次数: 12

Abstract

Sea cucumbers (a class of echinoderms) exhibit a high capacity for regeneration, such that, following ejection of inner organs in a process called evisceration, the lost organs regenerate. There are two ways by which evisceration occurs in sea cucmber species: from the mouth (anterior) or the anus (posterior). Intriguingly, regenerating tissues are formed at both the anterior and posterior regions and extend toward the opposite ends, and merge to form a complete digestive tract. From the posterior side, the digestive tube regenerates extending a continuous tube from the cloaca, which remains at evisceration. In posteriorly-eviscerating species, the esophagus remains in the body, and a new tube regenerates continuously from it. However, in anterior-eviscerating species, no tubular tissue remains in the anterior region, raising the question of how the new digestive tube forms in the anterior regenerate. We addressed this question by detailed histological observations of the regenerating anterior digestive tract in a small sea cucumber, Eupentacta quinquesemita ("ishiko" in Japanese) after induced-evisceration. We found that an initial rudiment consisting of mesenchymal cells is formed along the edge of the anterior mesentery from the anterior end, and then, among the mesenchymal cells, multiple clusters of epithelial-like cells appears simultaneously and repeatedly in the extending region by mesenchymal-epithelial transition (MET) as visulalized using toluidine blue staining. Subsequently, multiple cavities were formed surrounded with these epithelial cells, and appeared to coalesce with each other to form into multiple lumens, and to eventually become a single tube. This anterior tube then fused to the tube regenerated from the posterior rudiment. Thus, we elucidated the process of regeneration of the anterior portion of the gut in an anteriorly eviscerating species, and suggest the involvement of MET and fusion of cavities/lumens in regeneration of the digestive tube.

Abstract Image

Abstract Image

Abstract Image

前切海参(Eupentacta quinquesemita)消化道的再生和消化道形成过程中间充质-上皮转化的参与。
海参(棘皮动物的一种)表现出很高的再生能力,例如,在一个被称为内脏的过程中,内脏被排出,失去的器官会再生。海参的内脏有两种方式:从嘴(前)或肛门(后)取出。有趣的是,再生组织在前后两个区域形成,并向相反的两端延伸,并合并形成一个完整的消化道。从后侧开始,消化管再生,从泄殖腔延伸出一个连续的管,保留在内脏处。在后开膛的种类中,食道仍留在体内,并不断地从食道中再生出新的食道。然而,在前内脏物种中,没有管状组织留在前区,提出了新的消化管是如何在前再生中形成的问题。我们通过对小海参Eupentacta quinquesemita(日语“ishiko”)诱导摘除后再生前消化道的详细组织学观察来解决这个问题。我们发现,由间充质细胞组成的最初雏形从前端沿着前肠系膜边缘形成,然后,在间充质细胞中,通过间充质-上皮转化(MET)在延伸区域同时反复出现多个上皮样细胞簇,如甲苯胺蓝染色所示。随后,在这些上皮细胞的包围下形成多个空腔,并相互融合形成多个管腔,最终成为一个单管。这个前管随后与从后雏形再生的管融合。因此,我们阐明了前开膛动物肠道前部的再生过程,并提出MET和腔/管腔融合参与了消化管的再生。
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来源期刊
Zoological Letters
Zoological Letters Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.60
自引率
0.00%
发文量
12
审稿时长
10 weeks
期刊介绍: Zoological Letters is an open access journal that publishes new and important findings in the zoological sciences. As a sister journal to Zoological Science, Zoological Letters covers a wide range of basic fields of zoology, from taxonomy to bioinformatics. We also welcome submissions of paleontology reports as part of our effort to contribute to the development of new perspectives in evolutionary zoology. Our goal is to serve as a global publishing forum for fundamental researchers in all fields of zoology.
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