Two volatiles from anthracnose-infected blueberries trigger electrophysiological and aversive behavioral responses in Drosophila suzukii (Diptera: Drosophilidae).

Amanda Quadrel, Beth Ferguson, Caitlin C Rering, Pablo Urbaneja-Bernat, Cesar Rodriguez-Saona
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Abstract

Native to Southeast Asia, the spotted-wing drosophila (Drosophila suzukii Matsumura) is an economically important invasive pest of thin-skinned fruits such as raspberries, blueberries, and strawberries worldwide. To reduce the reliance on insecticides for managing this pest, alternative strategies like behavioral manipulation are needed. Previous studies have shown that D. suzukii adults avoid blueberry fruits infected with the fungal pathogen Colletotrichum fioriniae Marcelino & Gouli, which causes anthracnose fruit rot, leading to the identification of 9 potential repellent compounds. In this study, we further investigated the two most potent of these compounds-ethyl butanoate and ethyl (E)-but-2-enoate-to assess their repellent properties on the antennal and behavioral responses of D. suzukii. Electroantennogram (EAG) assays revealed that both esters elicited similar dose-dependent responses in male and female D. suzukii, which were often stronger than those triggered by 2-pentylfuran, a known repellent of this species. Additionally, we examined the behavioral responses of adult D. suzukii to these 3 repellent compounds under semi-field and field conditions using outdoor cages containing potted and planted blueberry bushes, respectively. Results from the cage studies showed that all 3 tested compounds can significantly reduce D. suzukii oviposition and adult emergence from blueberry fruits, with ethyl (E)-but-2-enoate sometimes outperforming the other compounds. Our findings indicate that the esters ethyl butanoate and ethyl (E)-but-2-enoate, which are induced from C. fioriniae-infected blueberries, elicit dose-dependent effects on D. suzukii antennae and act as effective oviposition deterrents. This supports their potential as promising tools for managing this pest through behavioral strategies.

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炭疽病感染蓝莓的两种挥发物引发铃木果蝇的电生理和厌恶行为反应。
斑翅果蝇(drosophila suzukii Matsumura)原产于东南亚,是世界范围内薄皮水果(如覆盆子、蓝莓和草莓)的重要经济入侵害虫。为了减少对杀虫剂的依赖来管理这种害虫,需要其他策略,如行为操纵。先前的研究表明,铃木木蠹成虫对感染炭疽病果实腐烂的蓝莓果实不感兴趣,从而鉴定出9种潜在的驱避化合物。在这项研究中,我们进一步研究了其中两种最有效的化合物-丁酸乙酯和(E)-丁-2-烯酸乙酯,以评估它们对铃木夜蛾触角和行为反应的驱避性能。触角电图(EAG)分析显示,这两种酯类在雄性和雌性铃木氏弓尾虫中引发了相似的剂量依赖性反应,通常比2-戊基呋喃(一种已知的铃木氏弓尾虫驱避剂)引发的反应更强。此外,在半田间和田间条件下,分别采用盆栽和种植蓝莓灌木的室外笼,研究了铃氏夜蛾成虫对这3种驱避剂的行为反应。笼内试验结果表明,3种化合物均能显著降低蓝莓果实中铃木氏夜蛾的产卵率和成虫羽化率,其中乙酯(E)- 2-烯酸酯有时优于其他化合物。研究结果表明,从感染了猪腹弧菌的蓝莓中诱导出丁酸乙酯和丁酸乙酯(E)- 2-烯酸乙酯对猪腹弧菌的触角具有剂量依赖性,并具有有效的产卵抑制作用。这支持了它们作为通过行为策略管理这种害虫的有前途的工具的潜力。
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