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Convergent evolution of pain-inducing defensive venom components in spitting cobras

  • Taline D. Kazandjian
  • , Daniel Petras
  • , S.D. Robinson
  • , Jory van Thiel
  • , Harry W. Greene
  • , Kevin Arbuckle
  • , Axel Barlow
  • , D.A. Carter
  • , Roel Wouters
  • , Gareth Whiteley
  • , S.C. Wagstaff
  • , A.S. Arias
  • , L.O. Albulescu
  • , Anthony Plettenberg Laing
  • , Cara Hall
  • , Adam Heap
  • , Samuel Penrhyn-Lowe
  • , C.V. McCabe
  • , Stuart Ainsworth
  • , R.R. da Silva
  • Pieter C. Dorrestein, M.K. Richardson, José Maria Gutiérrez, Juan J. Calvete, Robert A. Harrison, Irina Vetter, Eivind A.B. Undheim, Wolfgang Wüster, Nicholas R. Casewell
  • Liverpool School of Tropical Medicine
  • University of California, San Diego
  • University of Queensland
  • Leiden University
  • Cornell University
  • Instituto Clodomiro Picado
  • School of Natural Sciences, Bangor University
  • Bristol University
  • Norwegian University of Science and Technology
  • Swansea University
  • School of Biological Sciences, Bangor University
  • Instituto de Biomedicina de Valencia
  • Nottingham Trent University

Research output: Contribution to journalArticlepeer-review

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Abstract

Convergent evolution provides insights into the selective drivers underlying evolutionary change. Snake venoms, with a direct genetic basis and clearly defined functional phenotype, provide a model system for exploring the repeated evolution of adaptations. While snakes use venom primarily for predation, and venom composition often reflects diet specificity, three lineages of cobras have independently evolved the ability to spit venom at adversaries. Using gene, protein, and functional analyses, we show that the three spitting lineages possess venoms characterized by an up-regulation of phospholipase A2 (PLA2) toxins, which potentiate the action of preexisting venom cytotoxins to activate mammalian sensory neurons and cause enhanced pain. These repeated independent changes provide a fascinating example of convergent evolution across multiple phenotypic levels driven by selection for defense.
Original languageEnglish
Pages (from-to)386-390
Number of pages5
JournalScience
Volume371
Issue number6527
DOIs
Publication statusPublished - 22 Jan 2021

Keywords

  • Adaptation, Biological/genetics
  • Animals
  • Elapid Venoms/enzymology
  • Elapidae/classification
  • Evolution, Molecular
  • Group IV Phospholipases A2/genetics
  • Pain
  • Phylogeny
  • Sensory Receptor Cells/metabolism

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