Li Fengqi, Fu Ningning, Li Du, Chang Hetang, Qu Cheng, Wang Ran, Xu Yihua, Luo Chen
Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.
Stowers Institute for Medical Research, Kansas City, MO, United States.
Front Physiol. 2018 Apr 6;9:354. doi: 10.3389/fphys.2018.00354. eCollection 2018.
The spread of the exotic insect pest sycamore lace bug (Say) is increasing worldwide. The identification of behaviorally active compounds is crucial for reducing the current distribution of this pest. In this study, we identified and documented the expression profiles of genes encoding chemosensory proteins (CSPs) in the sycamore lace bug to identify CSPs that bind to the alarm pheromone geraniol. One CSP () that was highly expressed in nymph antennae was found to bind geraniol with high affinity. This finding was confirmed by fluorescence competitive binding assays. We further discovered one candidate chemical, phenyl benzoate, that bound to CcilCSP2 with even higher affinity than geraniol. Behavioral assays revealed that phenyl benzoate, similar to geraniol, significantly repelled sycamore lace bug nymphs but had no activity toward adults. This study has revealed a novel repellent compound involved in behavioral regulation. And, our findings will be beneficial for understanding the olfactory recognition mechanism of sycamore lace bug and developing a push-pull system to manage this pest in the future.
外来害虫悬铃木方翅网蝽(Say)在全球的分布范围正在不断扩大。识别具有行为活性的化合物对于减少这种害虫目前的分布至关重要。在本研究中,我们鉴定并记录了悬铃木方翅网蝽中编码化学感受蛋白(CSPs)的基因的表达谱,以识别与报警信息素香叶醇结合的CSPs。我们发现一种在若虫触角中高表达的CSP()与香叶醇具有高亲和力。荧光竞争结合试验证实了这一发现。我们进一步发现了一种候选化合物苯甲酸苯酯,它与CcilCSP2的结合亲和力甚至高于香叶醇。行为试验表明,苯甲酸苯酯与香叶醇类似,能显著驱避悬铃木方翅网蝽若虫,但对成虫无作用。本研究揭示了一种参与行为调节的新型驱避化合物。而且,我们的研究结果将有助于理解悬铃木方翅网蝽的嗅觉识别机制,并为未来开发推拉式害虫管理系统提供帮助。