Dzialo Maria C, Arumugam Somasundar, Piampongsant Supinya, Cool Lloyd, Vanderaa Christophe, Herrera-Malaver Beatriz, Opsomer Tomas, Dehaen Wim, Wenseleers Tom, Roncoroni Miguel, Alawamleh Amani, Wäckers Felix, Lievens Bart, Hansson Bill S, Voordeckers Karin, Sachse Silke, Verstrepen Kevin J
VIB - KU Leuven Center for Microbiology, Gaston Geenslaan 1, 3001 Leuven, Belgium.
CMPG Laboratory of Genetics and Genomics, Department M2S, KU Leuven, Gaston Geenslaan 1, 3001 Leuven, Belgium.
iScience. 2024 Oct 10;27(11):111141. doi: 10.1016/j.isci.2024.111141. eCollection 2024 Nov 15.
Volatile aroma compounds are important chemical cues for insects. Behavioral responses to specific odors differ strongly between insect species, and the exact causative molecules are often unknown. Beer is frequently used in insect traps because it combines hundreds of plant and microbial aromas that attract many insects. Here, we analyzed responses of the pest fruit fly and benign to beers with different chemical compositions. Using extensive chemical and behavioral assays, we identified ecologically relevant chemicals that influence drosophilid behavior and that induce different odor-evoked activity patterns in the antennal lobe of the two species obtained by functional imaging. Specific mixes of compounds increased the species-specificity and sex-specificity of lures in both laboratory and greenhouse settings. Together, our study shows how examining insect responses to highly complex natural mixtures of aroma compounds provides insight into insect-specific behavioral responses and also opens avenues for improved pest control.
挥发性香气化合物是昆虫重要的化学信号。昆虫对特定气味的行为反应在不同物种间差异很大,而确切的致应分子往往未知。啤酒常用于昆虫诱捕器,因为它融合了数百种吸引许多昆虫的植物和微生物香气。在此,我们分析了害虫果蝇和益虫对不同化学成分啤酒的反应。通过广泛的化学和行为分析,我们鉴定出了影响果蝇行为且能在通过功能成像获得的两种果蝇触角叶中诱发不同气味诱发活动模式的具有生态相关性的化学物质。化合物的特定混合物在实验室和温室环境中均提高了诱捕器的物种特异性和性别特异性。总之,我们的研究表明,研究昆虫对高度复杂的天然香气化合物混合物的反应如何能深入了解昆虫特异性行为反应,也为改进害虫防治开辟了道路。