Literature DB >> 21385956

Loss of sensory elements in the apical sensory organ during metamorphosis in the nudibranch Phestilla sibogae.

Guadalupe J Ruiz-Jones1, Michael G Hadfield.   

Abstract

Larvae of the nudibranch Phestilla sibogae are induced to metamorphose by a water-borne chemical cue released by the adult nudibranch's prey, the coral Porites compressa. In competent larvae, the apical sensory organ (ASO) includes five serotonergic parampullary neurons; five ampullary neurons, the ampullae of which are filled with sensory cilia; and a basal neuropil. After sensing the coral cue, the ASO undergoes radical morphological changes: a deterioration of sensory elements in the ASO and serotonergic axons originating from them to innervate the velum. Three hours after metamorphic induction, the velar lobes are lost, the serotonergic axons begin to break apart, the five parampullary neurons begin to degenerate, and the five ampullary neurons retract away from the epidermal surface. The extent of deterioration evident by this time suggests that the parampullary and ampullary components of the ASO are no longer functional. By 10 h after metamorphic induction, labeling of the ciliary bundles in the ampullary neurons has disappeared, and it is likely that these cells have degenerated. The results presented here provide evidence that the sensory neurons of the ASO and probably the entire organ are solely larval structures that do not persist into the adult sensory-nervous system in P. sibogae.

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Year:  2011        PMID: 21385956     DOI: 10.1086/BBLv220n1p39

Source DB:  PubMed          Journal:  Biol Bull        ISSN: 0006-3185            Impact factor:   1.818


  3 in total

1.  Organization and metamorphic remodeling of the nervous system in juveniles of Phoronopsis harmeri (Phoronida): insights into evolution of the bilaterian nervous system.

Authors:  Elena N Temereva; Eugeni B Tsitrin
Journal:  Front Zool       Date:  2014-04-28       Impact factor: 3.172

2.  Neuromuscular development in Patellogastropoda (Mollusca: Gastropoda) and its importance for reconstructing ancestral gastropod bodyplan features.

Authors:  Alen Kristof; André Luiz de Oliveira; Konstantin G Kolbin; Andreas Wanninger
Journal:  J Zool Syst Evol Res       Date:  2016-02-01       Impact factor: 2.288

3.  Mechanisms underlying dual effects of serotonin during development of Helisoma trivolvis (Mollusca).

Authors:  Konstantin Glebov; Elena E Voronezhskaya; Marina Yu Khabarova; Evgeny Ivashkin; Leonid P Nezlin; Evgeni G Ponimaskin
Journal:  BMC Dev Biol       Date:  2014-03-13       Impact factor: 1.978

  3 in total

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