Possible ecological risks of transgenic organism release when transgenes affect mating success: Sexual selection and the Trojan gene hypothesis
- 23 November 1999
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (24) , 13853-13856
- https://doi.org/10.1073/pnas.96.24.13853
Abstract
Widespread interest in producing transgenic organisms is balanced by concern over ecological hazards, such as species extinction if such organisms were to be released into nature. An ecological risk associated with the introduction of a transgenic organism is that the transgene, though rare, can spread in a natural population. An increase in transgene frequency is often assumed to be unlikely because transgenic organisms typically have some viability disadvantage. Reduced viability is assumed to be common because transgenic individuals are best viewed as macromutants that lack any history of selection that could reduce negative fitness effects. However, these arguments ignore the potential advantageous effects of transgenes on some aspect of fitness such as mating success. Here, we examine the risk to a natural population after release of a few transgenic individuals when the transgene trait simultaneously increases transgenic male mating success and lowers the viability of transgenic offspring. We obtained relevant life history data by using the small cyprinodont fish, Japanese medaka ( Oryzias latipes ) as a model. Our deterministic equations predict that a transgene introduced into a natural population by a small number of transgenic fish will spread as a result of enhanced mating advantage, but the reduced viability of offspring will cause eventual local extinction of both populations. Such risks should be evaluated with each new transgenic animal before release.Keywords
This publication has 16 references indexed in Scilit:
- Mate choice and mate competition influence male body size in Japanese medakaAnimal Behaviour, 1998
- Mate and sperm competition during multiple-male spawnings of Atlantic salmonCanadian Journal of Zoology, 1998
- Production of germline transgenic Pacific salmonids with dramatically increased growth performanceCanadian Journal of Fisheries and Aquatic Sciences, 1995
- The effects of body size and sexual dimorphism on the reproductive behaviour of sockeye salmon, Oncorhynchus nerkaAnimal Behaviour, 1994
- Extraordinary salmon growthNature, 1994
- Growth Enhancement in Transgenic Atlantic Salmon by the Use of an “All Fish” Chimeric Growth Hormone Gene ConstructNature Biotechnology, 1992
- Implications of Introduction of Transgenic Fish into Natural EcosystemsCanadian Journal of Fisheries and Aquatic Sciences, 1991
- The Planned Introduction of Genetically Engineered Organisms: Ecological Considerations and RecommendationsEcology, 1989
- Competition and body sizeTheoretical Population Biology, 1986
- Sexual Dimorphism, Sexual Selection, and Adaptation in Polygenic CharactersEvolution, 1980