Geographic parthenogenesis in the Australian arid zone: I. A climatic analysis of the Heteronotia binoei complex (Gekkonidae)

Michael Kearney, Adnan Moussalli, Jared Strasburg, David Lindenmayer, Craig Moritz

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Patterns of geographic parthenogenesis can provide insight into the ecological implications of the transition from sexual to parthenogenetic reproduction. We analysed quantitatively the environmental niches occupied by sexual and parthenogenetic geckos of the Heteronotia binoei complex in the Australian arid zone. This complex consists of two independently derived maternal lineages of hybrid parthenogens, which, in turn, include two different triploid races that resulted from reciprocal backcrossing with the parental sexual taxa. The sexual progenitors are still extant and occupy very distinct environmental niches. The triploid parthenogenetic races are biased in their environmental niche towards those of the sexual races for which their genomes are biased and this dosage effect is apparent in both maternal lineages. Thus triploidy may have benefited the parthenogens through partial recovery of the parental niches. Although the parthenogens have a broader geographic distribution than their sexual progenitors, their environmental niche is narrower and biased towards one of the sexual races. In keeping with general patterns of geographic parthenogenesis, parthenogenetic H. binoei occupy a harsher environment than the sexual forms, occurring in regions of persistently low rainfall. Bioclimatic modelling suggests patterns of rainfall are important in limiting the distribution of sexual and parthenogenetic taxa, and extrapolation from the current bioclimatic profiles indicates potential for further eastward range expansion by the parthenogens.

Original languageEnglish (US)
Pages (from-to)953-976
Number of pages24
JournalEvolutionary Ecology Research
Volume5
Issue number7
StatePublished - Nov 1 2003

Keywords

  • Arid zone
  • Australia
  • Climate
  • Gecko
  • Parthenogenesis

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