Zamek Ashley L, Spinner Jennifer E, Micallef Jessica L, Gurr Geoff M, Reynolds Olivia L
Elizabeth Macarthur Agricultural Institute, NSW Department of Primary Industries, Woodbridge Road, Menangle, NSW 2568, Australia.
EH Graham Centre for Agricultural Innovation, NSW Department of Primary Industries and Charles Sturt University, Locked Bag 588, Wagga Wagga, NSW 2678, Australia.
Insects. 2012 Oct 22;3(4):1056-83. doi: 10.3390/insects3041056.
This review draws together available information on the biology, methods for study, and culturing of hymenopteran parasitoids of the Queensland fruit fly, Bactrocera tryoni, and assesses prospects for improving biological control of this serious pest. Augmentative release of the native and naturalised Australian parasitoids, especially the braconid Diachasmimorpha tryoni, may result in better management of B. tryoni in some parts of Australia. Mass releases are an especially attractive option for areas of inland eastern Australia around the Fruit Fly Exclusion Zone that produces B. tryoni-free fruits for export. Diachasmimorpha tryoni has been successful in other locations such as Hawaii for the biological control of other fruit fly species. Biological control could contribute to local eradication of isolated outbreaks and more general suppression and/or eradication of the B. tryoni population in endemic areas. Combining biological control with the use of sterile insect technique offers scope for synergy because the former is most effective at high pest densities and the latter most economical when the pest becomes scarce. Recommendations are made on methods for culturing and study of four B. tryoni parasitoids present in Australia along with research priorities for optimising augmentative biological control of B. tryoni.
本综述汇集了有关昆士兰实蝇(Bactrocera tryoni)膜翅目寄生蜂的生物学、研究方法和培养方面的现有信息,并评估了改善对这种严重害虫进行生物防治的前景。增加释放澳大利亚本土和已归化的寄生蜂,尤其是茧蜂科的Diachasmimorpha tryoni,可能会在澳大利亚的一些地区更好地管理昆士兰实蝇。对于澳大利亚东部内陆围绕果蝇隔离区的地区而言,大规模释放是一种特别有吸引力的选择,该隔离区生产供出口的无昆士兰实蝇果实。Diachasmimorpha tryoni在其他地点(如夏威夷)成功用于生物防治其他果蝇物种。生物防治有助于在局部地区根除孤立的疫情爆发,并更广泛地抑制和/或根除流行地区的昆士兰实蝇种群。将生物防治与不育昆虫技术结合使用具有协同增效的空间,因为前者在害虫密度高时最有效,而后者在害虫数量稀少时最经济。针对澳大利亚现有的四种昆士兰实蝇寄生蜂的培养和研究方法提出了建议,同时也提出了优化昆士兰实蝇增强生物防治的研究重点。