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The emerging phylogenetic pattern of parthenogenesis in snakes

Journal

BIOLOGICAL JOURNAL OF THE LINNEAN SOCIETY
Volume 118, Issue 2, Pages 172-186

Publisher

OXFORD UNIV PRESS
DOI: 10.1111/bij.12744

Keywords

automixis; facultative and obligate parthenogenesis; Serpentes; sex chromosomes morphology; sex determination; squamates

Funding

  1. Faculty Summer Research Fellowship - University of Tulsa, Oklahoma
  2. Genomics Education Matching Funds by LiCor BioSciences
  3. Georgia State University
  4. Chiricahua Desert Museum

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Parthenogenesis occurs across a variety of vertebrate taxa. Within squamate reptiles (lizards and snakes), a group for which the largest number of cases has been documented, both obligate and facultative types of parthenogenesis exists, although the obligate form in snakes appears to be restricted to a single basal species of blind snake, Indotyphlops braminus. By contrast, a number of snake species that otherwise reproduce sexually have been found capable of facultative parthenogenesis. Because the original documentation of this phenomenon was restricted to subjects held in captivity and isolated from males, facultative parthenogenesis was attributed as a captive syndrome. However, its recent discovery in nature shifts the paradigm and identifies this form of reproduction as a potentially important feature of vertebrate evolution. In light of the growing number of documented cases of parthenogenesis, it is now possible to review the phylogenetic distribution in snakes and thus identify subtle variations and commonalities that may exist through the characterization of its emerging properties. Based on our findings, we propose partitioning facultative parthenogenesis in snakes into two categories, type A and type B, based on the sex of the progeny produced, their viability, sex chromosome morphology, and ploidy, as well as their phylogenetic position. Furthermore, we introduce a hypothesis (directionality of heterogamety hypothesis) to explain the production of female-only parthenogens in basal alethinophidian snakes and male-only parthenogens in caenophidian (advanced) snakes.

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