Skip to main navigation Skip to search Skip to main content

Venom complexity in a pitviper produced by facultative parthenogenesis

  • Juan J. Calvete
  • , Nicholas R. Casewell
  • , U Hernandez-Guzman
  • , S Quesada-Bernat
  • , Libia Sanz
  • , D.R. Rokyta
  • , Darren Storey
  • , L.O. Albulescu
  • , Wolfgang Wuster
  • , Charles F. Smith
  • , G.W. Schuett
  • , Warren Booth
  • Instituto de Biomedicina de Valencia
  • Florida State University
  • School of Biological Sciences, Bangor University
  • Liverpool School of Tropical Medicine
  • Chiricahua Desert Museum
  • University of Tulsa

Research output: Contribution to journalArticlepeer-review

248 Downloads (Pure)

Abstract

Facultative parthenogenesis (FP) is asexual reproduction in plant and animal species that would otherwise reproduce sexually. This process in vertebrates typically results from automictic development (likely terminal fusion) and is phylogenetically widespread. In squamate reptiles and chondrichthyan fishes, FP has been reported to occur in nature and can result in the production of reproductively viable offspring; suggesting that it is of ecological and evolutionary significance. However, terminal fusion automixis is believed to result in near genome-wide reductions in heterozygosity; thus, FP seems likely to affect key phenotypic characters, yet this remains almost completely unstudied. Snake venom is a complex phenotypic character primarily used to subjugate prey and is thus tightly linked to individual fitness. Surprisingly, the composition and function of venom produced by a parthenogenetic pitviper exhibits a high degree of similarity to that of its mother and conspecifics from the same population. Therefore, the apparent loss of allelic diversity caused by FP appears unlikely to have a significant impact on the prey-capturing ability of this snake. Accordingly, the pitviper offspring produced by FP retained complex phenotypic characteristics associated with fitness. This result reinforces the potential ecological and evolutionary importance of FP and questions our understanding of the inheritance of venom-associated genes.
Original languageEnglish
Article number11539 (2018)
Number of pages12
JournalScientific Reports
Volume8
DOIs
Publication statusPublished - 1 Aug 2018

Keywords

  • Parthenogenesis
  • Facultative parthenogenesis
  • venom
  • Automixis
  • Phenotype

Fingerprint

Dive into the research topics of 'Venom complexity in a pitviper produced by facultative parthenogenesis'. Together they form a unique fingerprint.

Cite this