Feng Bo, Qian Kai, Du Yong-Jun
Institute of Health and Environmental Ecology, Wenzhou Medical University, University Town, Wenzhou 325035, Zhejiang, China.
Institute of Pesticide and Environmental Toxicology, Zhejiang University, 866 Yuhangtang Rd., Hangzhou 310058, Zhejiang, China.
Insects. 2017 Jun 9;8(2):60. doi: 10.3390/insects8020060.
We investigated the role of floral odors from cowpea, (L.), in mediating oviposition of the bean pod borer moth, , a serious pest of grain legumes that flies to host plants at the flowering stage and oviposits onto flowers and buds. The flower of the host plant was a stimulus for egg-laying by in an oviposition bioassay. Commercial longifolene, β-caryophyllene, linalool, geraniol, and ()-3-hexenyl acetate were used as stimulus. Each one elicited dose-dependent electroantennogram responses in female , and all but longifolene stimulated oviposition, when presented singly. Beta-caryophyllene was the most active stimulant, similar to that of the flower of , and eliciting a dose-dependent oviposition response. Either olfaction or gustation was sufficient to mediate an oviposition response to floral volatiles: intact responded to β-caryophyllene whether or not they could contact the source of the volatiles, and females with amputated antennae responded if allowed to contact the source. We believe this is the first demonstration in a moth where β-caryophyllene from the host plant was able to mediate an oviposition response. As β-caryophyllene is widely expressed by non-host plants, we suggest that its role in stimulating oviposition could be exploited as part of a push-pull strategy for pest management in which β-caryophyllene-expressing non-host plants provide a population sink for .
我们研究了豇豆[Vigna unguiculata (L.)]花的气味在介导豆荚螟[Maruca vitrata,一种严重危害豆类作物的害虫,在开花期飞向寄主植物并在花朵和花蕾上产卵]产卵过程中的作用。在产卵生物测定中,寄主植物豇豆的花是豆荚螟产卵的刺激物。商用的长叶烯、β-石竹烯、芳樟醇、香叶醇和(Z)-3-己烯基乙酸酯被用作刺激物。每一种刺激物在雌性豆荚螟中都引发了剂量依赖性的触角电位反应,并且除长叶烯外,单独呈现时所有刺激物都能刺激产卵。β-石竹烯是最活跃的刺激物,与豇豆花的刺激物相似,并引发剂量依赖性的产卵反应。嗅觉或味觉都足以介导对豇豆花挥发物的产卵反应:完整的豆荚螟无论是否能接触到挥发物源,都会对β-石竹烯产生反应,而触角被切断的雌性豆荚螟如果被允许接触挥发物源也会产生反应。我们认为这是首次在蛾类中证明寄主植物中的β-石竹烯能够介导产卵反应。由于β-石竹烯在非寄主植物中广泛存在,我们建议可以利用其在刺激产卵方面的作用,作为害虫管理推拉策略的一部分,其中表达β-石竹烯的非寄主植物为豆荚螟提供种群诱捕源。