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五倍体水腔组织在海参中组织成年五倍体结构,海参,Apostichopus japonicus。

The pentameric hydrocoel lobes organize adult pentameral structures in a sea cucumber, Apostichopus japonicus.

机构信息

Misaki Marine Biological Station, School of Science, The University of Tokyo, Kanagawa, 238-0225, Japan.

Dept. of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, 113-0033, Japan.

出版信息

Dev Biol. 2022 Dec;492:71-78. doi: 10.1016/j.ydbio.2022.09.002. Epub 2022 Sep 24.

DOI:10.1016/j.ydbio.2022.09.002
PMID:36167149
Abstract

Despite being one of the bilaterians, the body plan of echinoderms shifts from bilateral symmetry to five-fold radial, or pentaradial symmetry during embryogenesis or their metamorphosis. While the clarification of the developmental mechanism behind this transition will be a basis for understanding their unique body plan evolution, it is still poorly understood. With this regard, the hydrocoel, a mesodermal coelom formed on the left side of bilateral larva, would be a clue for understanding the mechanism as it is the first pentaradial structure that appears before metamorphosis and develops into the water vascular system of adults. By analyzing the development of a sea cucumber, Apostichopus japonicus, we found that the hydrocoel expresses genes related in muscle and neural formation such as myosin heavy chain, tropomyosin, soxC, and elav, implying that cells of the hydrocoel contributes to muscle and neural structures in the adult. Furthermore, ablation of one of the hydrocoel lobes led to incomplete development of adult pentameral structures. The ablation of primary hydrocoel lobes resulted in the reduction in tentacles and the ablation of secondary hydrocoel lobes resulted in the reduction in water vascular canals and nerve cords. Our findings suggest that the hydrocoel lobes may serve as a potential organizing center for establishing the pentaradial body plan in echinoderms.

摘要

尽管属于两侧对称动物,但棘皮动物在胚胎发生或变态过程中,其身体模式从两侧对称转变为五辐射对称或五角形对称。阐明这种转变背后的发育机制将是理解其独特身体模式进化的基础,但目前对此仍知之甚少。在这方面,中胚层体腔——水腔,是在双侧幼虫的左侧形成的,它可能是理解这种机制的线索,因为它是在变态之前出现的第一个五角形结构,并发育成成体的水管系统。通过分析海参(Apostichopus japonicus)的发育,我们发现水腔表达了与肌肉和神经形成相关的基因,如肌球蛋白重链、原肌球蛋白、soxC 和 elav,这表明水腔的细胞有助于成体的肌肉和神经结构。此外,一个水腔叶的切除导致成体五角形结构的不完全发育。初级水腔叶的切除导致触手减少,而次级水腔叶的切除导致水管和神经索减少。我们的发现表明,水腔叶可能作为棘皮动物中建立五角形身体模式的潜在组织中心。

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