Parasite loads in parthenogenetic and sexual lizards (Heteronotia binoei) : support for the Red Queen hypothesis
- 22 May 1991
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 244 (1310) , 145-149
- https://doi.org/10.1098/rspb.1991.0063
Abstract
One version of the Red Queen hypothesis suggests that sexual reproduction is maintained in populations because of the need to continually create genotypes that confer resistance against rapidly evolving pathogens and parasites. Here, we report that parthenogenetic individuals of the Heteronotia binoei species complex are much more prone to infection by mites than are their sexual relatives. This accords with a central prediction of the Red Queen hypothesis. The greater susceptibility of the parthenogens is consistent across localities with different combinations of parthenogenetic genotypes and sexual chromosome races and occurs despite the unusually high genetic diversity of the parthenogenetic form. These observations support the contention that clonal reproduction increases the susceptibility of hosts to infection by parasites.Keywords
This publication has 18 references indexed in Scilit:
- Evidence for Biased Gene Conversion in Concerted Evolution of Ribosomal DNAScience, 1991
- Sexual reproduction as an adaptation to resist parasites (a review).Proceedings of the National Academy of Sciences, 1990
- Immunoparasitology in Avian SpeciesAmerican Zoologist, 1989
- Highlights of contemporary research on host immune responses to ticksVeterinary Parasitology, 1988
- The adaptive significance of sexualityCellular and Molecular Life Sciences, 1985
- Heritable True Fitness and Bright Birds: A Role for Parasites?Science, 1982
- Sex versus Non-Sex versus ParasiteOikos, 1980
- Pest Pressure and Recombination Systems in PlantsThe American Naturalist, 1975
- Evolution in Sexual and Asexual PopulationsThe American Naturalist, 1965
- The genetical theory of natural selectionPublished by Biodiversity Heritage Library ,1930