AI Article Synopsis

  • Cone snail venoms are well-studied but represent only a small part of the diverse venomous mollusks, particularly within the Turridae family, which includes many tiny species.* -
  • The innovative lumun-lumun method involves using old fishing nets to cultivate communities of micromollusks, revealing a high biodiversity of 155 morphospecies, primarily consisting of venomous gastropods.* -
  • Initial research on the turrid species Clathurella cincta suggests unique genetic characteristics in its venom, indicating the potential to discover thousands of new pharmacologically active compounds from the diverse venomous snails accessible through this method.*

Article Abstract

Cone snail venoms have yielded pharmacologically active natural products of exceptional scientific interest. However, cone snails are a small minority of venomous molluscan biodiversity, the vast majority being tiny venomous morphospecies in the family Turridae. A novel method called lumun-lumun opens access to these micromolluscs and their venoms. Old fishing nets are anchored to the sea bottom for a period of 1-6months and marine biotas rich in small molluscs are established. In a single lumun-lumun community, we found a remarkable gastropod biodiversity (155 morphospecies). Venomous predators belonging to the superfamily Conoidea (36 morphospecies) were the largest group, the majority being micromolluscs in the family Turridae. We carried out an initial analysis of the most abundant of the turrid morphospecies recovered, Clathurella (Lienardia) cincta (Dunker, 1871). In contrast to all cDNA clones characterized from cone snail venom ducts, one of the C. cincta clones identified encoded two different peptide precursors presumably translated from a single mRNA. The prospect of easily accessing so many different morphospecies of venomous marine snails raises intriguing toxinological possibilities: the 36 conoidean morphospecies in this one net alone have the potential to yield thousands of novel pharmacologically active compounds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2975739PMC
http://dx.doi.org/10.1016/j.toxicon.2009.12.002DOI Listing

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