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

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 function...

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Autores principales: Avian, Massimo, Mancini, Lucia, Voltolini, Marco, Bonnet, Delphine, Dreossi, Diego, Macaluso, Vanessa, Pillepich, Nicole, Prieto, Laura, Ramšak, Andreja, Terlizzi, Antonio, Motta, Gregorio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352040/
https://www.ncbi.nlm.nih.gov/pubmed/35925896
http://dx.doi.org/10.1371/journal.pone.0272023
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author Avian, Massimo
Mancini, Lucia
Voltolini, Marco
Bonnet, Delphine
Dreossi, Diego
Macaluso, Vanessa
Pillepich, Nicole
Prieto, Laura
Ramšak, Andreja
Terlizzi, Antonio
Motta, Gregorio
author_facet Avian, Massimo
Mancini, Lucia
Voltolini, Marco
Bonnet, Delphine
Dreossi, Diego
Macaluso, Vanessa
Pillepich, Nicole
Prieto, Laura
Ramšak, Andreja
Terlizzi, Antonio
Motta, Gregorio
author_sort Avian, Massimo
collection PubMed
description 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.
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spelling pubmed-93520402022-08-05 A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria Avian, Massimo Mancini, Lucia Voltolini, Marco Bonnet, Delphine Dreossi, Diego Macaluso, Vanessa Pillepich, Nicole Prieto, Laura Ramšak, Andreja Terlizzi, Antonio Motta, Gregorio PLoS One Research Article 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. Public Library of Science 2022-08-04 /pmc/articles/PMC9352040/ /pubmed/35925896 http://dx.doi.org/10.1371/journal.pone.0272023 Text en © 2022 Avian et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Avian, Massimo
Mancini, Lucia
Voltolini, Marco
Bonnet, Delphine
Dreossi, Diego
Macaluso, Vanessa
Pillepich, Nicole
Prieto, Laura
Ramšak, Andreja
Terlizzi, Antonio
Motta, Gregorio
A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title_full A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title_fullStr A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title_full_unstemmed A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title_short A novel endocast technique providing a 3D quantitative analysis of the gastrovascular system in Rhizostoma pulmo: An unexpected through-gut in cnidaria
title_sort novel endocast technique providing a 3d quantitative analysis of the gastrovascular system in rhizostoma pulmo: an unexpected through-gut in cnidaria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9352040/
https://www.ncbi.nlm.nih.gov/pubmed/35925896
http://dx.doi.org/10.1371/journal.pone.0272023
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