Applied BioSciences, Macquarie University, Sydney, NSW, Australia.
New South Wales Department of Primary Industries, Ourimbah, NSW, Australia.
J Econ Entomol. 2020 Dec 9;113(6):2832-2839. doi: 10.1093/jee/toaa242.
The sterile insect technique (SIT) and male annihilation technique (MAT) are important tools for the control of Queensland fruit fly (Q-fly), Bactrocera tryoni (Froggatt) (Diptera: Tephritidae), a major insect pest of horticultural crops in Australia. In MAT, mature Q-fly males are attracted to a toxic bait using Cuelure, a synthetic analog of raspberry ketone (RK). Substantial improvements in control could be achieved by simultaneous use of SIT and MAT, but this requires suppression of the Cuelure response in released sterile flies. Recent studies report that prerelease feeding with RK during the first 48 h after emergence can reduce the response of mature Q-fly males to Cuelure, but the mechanism underpinning this is unknown. Here, to test whether reduced sensory sensitivity to Cuelure is involved, we evaluated the effects of RK supplements, adult diet (yeast-supplemented diet throughout adult stage vs yeast-supplemented diet only for 48 h), and age on electroantennogram (EAG) and electropalpogram (EPG) responses of Q-flies to Cuelure stimuli. EAG responses did not vary with RK supplements, sex, or age of Q-flies fed yeast-supplemented diet throughout the adult stage, but the responses of Q-flies fed other diet regime decreased with age. EPG responses of both sexes of Q-flies were affected by RK supplements, age, and their interaction, but without patterns that might indicate reduced maxillary palp response of RK supplemented flies to Cuelure. Our findings do not support the hypothesis that reduced Cuelure response of male Q-flies fed RK supplements is explained by reduced electrophysiological response in antennae or maxillary palps.
不育昆虫技术(SIT)和雄性灭绝技术(MAT)是控制昆士兰果蝇(Q-fly),双翅目果蝇(Tryoni)(双翅目:蝇科)的重要工具,这是澳大利亚园艺作物的主要害虫。在 MAT 中,成熟的 Q-fly 雄蝇被使用 Cuelure 的有毒诱饵吸引,Cuelure 是覆盆子酮(RK)的合成类似物。同时使用 SIT 和 MAT 可以显著提高控制效果,但这需要抑制释放的不育蝇对 Cuelure 的反应。最近的研究报告称,在羽化后 48 小时内用 RK 进行预释放喂养可以降低成熟 Q-fly 雄蝇对 Cuelure 的反应,但这种机制尚不清楚。在这里,为了测试是否涉及到对 Cuelure 的感觉敏感性降低,我们评估了 RK 补充剂、成虫饮食(整个成虫阶段补充酵母饮食与仅在 48 小时内补充酵母饮食)和年龄对 Q-fly 对 Cuelure 刺激的触角电图(EAG)和电爪电图(EPG)反应的影响。EAG 反应与 RK 补充剂、性别或整个成虫阶段喂饲酵母补充饮食的 Q-fly 的年龄无关,但喂饲其他饮食制度的 Q-fly 的反应随年龄的增长而降低。两性 Q-fly 的 EPG 反应受到 RK 补充剂、年龄及其相互作用的影响,但没有表明补充 RK 的 Q-fly 对 Cuelure 的触须反应降低的模式。我们的发现不支持以下假设,即喂食 RK 补充剂的雄性 Q-fly 对 Cuelure 的反应降低是由于触角或下颚的电生理反应降低所致。