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一种提供 Rhizostoma pulmo 中肠胃系统的 3D 定量分析的新型硬脑膜技术:刺胞动物中意想不到的贯穿肠道。

A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria.

机构信息

Department of Life Science, University of Trieste, Trieste, Italy.

Elettra-Sincrotrone Trieste S.C.p.A., Basovizza, Trieste, Italy.

出版信息

PLoS One. 2022 Aug 4;17(8):e0272023. doi: 10.1371/journal.pone.0272023. eCollection 2022.

Abstract

The investigation of jellyfish gastrovascular systems mainly focused on stain injections and dissections, negatively affected by thickness and opacity of the mesoglea. Therefore, descriptions are incomplete and data about tridimensional structures are scarce. In this work, morphological and functional anatomy of the gastrovascular system of Rhizostoma pulmo (Macri 1778) was investigated in detail with innovative techniques: resin endocasts and 3D X-ray computed microtomography. The gastrovascular system consists of a series of branching canals ending with numerous openings within the frilled margins of the oral arms. Canals presented a peculiar double hemi-canal structure with a medial adhesion area which separates centrifugal and centripetal flows. The inward flow involves only the "mouth" openings on the internal wing of the oral arm and relative hemi-canals, while the outward flow involves only the two outermost wings' hemi-canals and relative "anal" openings on the external oral arm. The openings differentiation recalls the functional characteristics of a through-gut apparatus. We cannot define the gastrovascular system in Rhizostoma pulmo as a traditional through-gut, rather an example of adaptive convergence, that partially invalidates the paradigm of a single oral opening with both the uptake and excrete function.

摘要

水母的胃腔肠系统的研究主要集中在染色注射和解剖上,但受到中胶层的厚度和不透明度的影响。因此,描述并不完整,关于三维结构的数据也很缺乏。在这项工作中,我们使用了创新的技术:树脂内腔铸型和 3D X 射线计算机微断层扫描,详细研究了 Rhizostoma pulmo(Macri 1778)的胃腔肠系统的形态和功能解剖。胃腔肠系统由一系列分支的管道组成,最终在口腔臂的褶皱边缘处有许多开口。管道呈现出一种特殊的双半球结构,有一个中间附着区域,将离心流和向心流分开。内流只涉及口腔臂内部翼上的“口”开口和相对的半管道,而外流只涉及最外面的两个翼上的半管道和外部口腔臂上的相对“肛门”开口。开口的分化让人联想到一个贯穿肠道器官的功能特征。我们不能将 Rhizostoma pulmo 的胃腔肠系统定义为传统的贯穿肠道,而是一种适应趋同的例子,这在一定程度上否定了单一开口同时具有摄取和排泄功能的范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e5b/9352040/35ec6d606359/pone.0272023.g001.jpg

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