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Titlebook: Whole-Body Regeneration; Methods and Protocol Simon Blanchoud,Brigitte Galliot Book‘‘‘‘‘‘‘‘ 2022 The Editor(s) (if applicable) and The Auth

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Studying Porifera WBR Using the Calcerous Sponges o whole-body regeneration from a small piece of tissues or even from dissociated cells. Sponges from different clades utilize different cell sources and various morphological processes to complete the regeneration. This variety makes these animals promising models for studying the evolution of regen
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Studying Ctenophora WBR Using ,extant groups of multicellular animals. Ctenophores show a remarkable ability to regenerate in the adult form, being capable of replacing all body parts (i.e., whole-body regeneration) after loss/amputation. With many favorable experimental features (optical clarity, stereotyped cell lineage, multip
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Collecting and Culturing Kamptozoans for Regenerative Studiesmate phyla including Annelida, Nemertea, and Mollusca. The study of Kamptozoa is thus of great interest to understand the early Lophotrochozoan evolution. Moreover, many kamptozoans have been shown to possess great regeneration capacities, including whole-body regeneration. In addition, and in parti
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Studying Annelida Body Regeneration Under Environmental Stress in ,utation. Previous studies demonstrated that body regeneration represents a sensitive and unspecific response to environmental stresses, including contaminants and climate alterations..The posterior body regeneration of . is thus a suitable, ecological and relevant biomarker in ecotoxicological and e
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Studying Xenacoelomorpha WBR Using , been shown to be amenable to experimental work, including the study of stem cells and regeneration. The animal is capable of regenerating the posterior part of the body, but not its head. Here, methods such as nucleic acid extractions, in situ hybridisation, RNA interference, antibody and cytochemi
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