Crop‐to‐weed gene flow in the genus Sorghum (Poaceae): Spontaneous interspecific hybridization between johnsongrass, Sorghum halepense, and crop sorghum, S. bicolor
- 1 September 1996
- journal article
- research article
- Published by Wiley in American Journal of Botany
- Vol. 83 (9) , 1153-1159
- https://doi.org/10.1002/j.1537-2197.1996.tb13895.x
Abstract
The role of crop‐to‐weed gene flow is often controversial and overlooked. As a consequence, the likelihood of spontaneous crop‐to‐weed hybridization in most crop/weed systems is generally unknown. The lack of data relating to the formation of crop/weed hybrids has particular contemporary significance when considering the wide scale commercial release of transgenic crop plants and the potential for escape of engineered genes via crop‐to‐weed hybridization. We created an experimental system whereby we could examine the incidence and rate of spontaneous crop‐to‐weed hybridization between Sorghum bicolor and S. halepense, johnsongrass. An isozyme marker was used to identify hybrid plants through progeny testing. Incidence and rate of hybridization were highly variable with respect to weed distance from the crop, location of the study site, and year the study was performed. Crop/weed hybrids were detected at distances of 0.5–100 m from the crop. Interspecific hybridization can and does occur in this system at a substantial and measurable rate. Transgenes introduced into crop sorghum can be expected to have the opportunity to escape cultivation through interspecific hybridization with johnsongrass. Traits that prove to be beneficial to weeds possessing them can be expected to persist and spread. This is an issue that needs to be addressed when developing biosafety guidelines for the commercial release of transgenic sorghums.Keywords
Funding Information
- UCR Graduate Dean's Dissertation Research Grant
- USDA-CSRS (94-33120-1372)
This publication has 37 references indexed in Scilit:
- Ecological Risks of Transgenic Plants: Effects of Spatial Dispersion on Gene FlowEcological Applications, 1992
- Radish as a Model System for the Study of Engineered Gene Escape Rates Via Crop‐Weed MatingConservation Biology, 1991
- Genetic Engineering in AgricultureScience, 1985
- THE BIOLOGY OF CANADIAN WEEDS.: 61. Sorghum halepense (L.) PERS.Canadian Journal of Plant Science, 1983
- Crop mimicry in weedsEconomic Botany, 1983
- Disruptive selection in crop developmentHeredity, 1968
- Meiotic Behavior of a Hodo Sorgo ✕ Johnsongrass Hybrid 1Crop Science, 1966
- Chromosome Numbers, Fertility and Rhizome Expression of Hybrids Between Grain Sorghum and Johnsongrass1Agronomy Journal, 1958
- Cytological Studies of some Species and Hybrids in the Eu-SorghumsBotanical Gazette, 1957
- Cytological Relationships Between Sorghum vulgare and S. halepense1Agronomy Journal, 1953