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Metabolomic profiling reveals deep chemical divergence between two morphotypes of the zoanthid Parazoanthus axinellae. | LitMetric

Metabolomic profiling reveals deep chemical divergence between two morphotypes of the zoanthid Parazoanthus axinellae.

Sci Rep

1] Institut de Chimie de Nice - EEIC, UMR 7272 CNRS, Université de Nice-Sophia Antipolis, Parc Valrose, 06108 Nice, France [2] Institut Méditerranéen de Biodiversité et d'Ecologie Marine et Continentale, UMR 7263 CNRS, IRD, Aix Marseille Université, Avignon Université, Station Marine d'Endoume, Rue Batterie des Lions, 13007 Marseille, France.

Published: February 2015

AI Article Synopsis

  • Metabolomics is proving to be a valuable tool for classifying marine invertebrates, particularly in studying the polyphyletic genus Parazoanthus, which includes diverse forms of a Mediterranean species called Parazoanthus axinellae.
  • Analysis revealed significant chemical differences between the two main morphotypes of P. axinellae—"slender" and "stocky"—with the "slender" variant containing unique bioactive compounds called parazoanthines that are absent in the "stocky" morphotype.
  • Additionally, the "slender" morphotype has been observed living on various sponge species, indicating a potential ecological relationship between these organisms.

Article Abstract

Metabolomics has recently proven its usefulness as complementary tool to traditional morphological and genetic analyses for the classification of marine invertebrates. Among the metabolite-rich cnidarian order Zoantharia, Parazoanthus is a polyphyletic genus whose systematics and phylogeny remain controversial. Within this genus, one of the most studied species, Parazoanthus axinellae is prominent in rocky shallow waters of the Mediterranean Sea and the NE Atlantic Ocean. Although different morphotypes can easily be distinguished, only one species is recognized to date. Here, a metabolomic profiling approach has been used to assess the chemical diversity of two main Mediterranean morphotypes, the "slender" and "stocky" forms of P. axinellae. Targeted profiling of their major secondary metabolites revealed a significant chemical divergence between the morphotypes. While zoanthoxanthin alkaloids and ecdysteroids are abundant in both morphs, the "slender" morphotype is characterized by the presence of additional and bioactive 3,5-disubstituted hydantoin derivatives named parazoanthines. The absence of these specific compounds in the "stocky" morphotype was confirmed by spatial and temporal monitoring over an annual cycle. Moreover, specimens of the "slender" morphotype are also the only ones found as epibionts of several sponge species, particularly Cymbaxinella damicornis thus suggesting a putative ecological link.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4319174PMC
http://dx.doi.org/10.1038/srep08282DOI Listing

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