Hu Kui, Liu Sheng, Qiu Lin, Li Youzhi
Hunan Provincial Key Laboratory for Biology and Control of Plant Diseases and Insect Pests, College of Plant Protection, Hunan Agricultural University, Changsha, Hunan Province, China.
National Research Center of Engineering & Technology for Utilization of Botanical Functional Ingredients, Hunan Agricultural University, Changsha, Hunan Province, China.
PeerJ. 2019 Mar 7;7:e6576. doi: 10.7717/peerj.6576. eCollection 2019.
Plant volatiles play an important role in regulating insect behavior. Odorant binding proteins (OBPs) are involved in the first step of the olfactory signal transduction pathway and plant volatiles recognition. is one of the most destructive pests of rice crops. Understanding the functions of OBPs (OBPs) in the host plant location and the behavioral responses of to rice plant volatiles could lead to improved, more environmentally-friendly, methods for controlling this pest. We found that OBP1 displayed only weak binding with all the tested volatiles. OBP2, OBP3 and OBP11 had different binding affinities to β-ionone. OBP2 and OBP11 had strong binding affinities to β-caryophyllene (K = 2.23 µM) and plant alcohol (K = 2.98 µM), respectively. The results of Y-olfactometer experiments indicate that was significantly repelled by octanal and n-octane but strongly attracted by (+)-limonene, acetophenone, 2-heptanone, n-hendecane, -farnesene and β-ionone. Furthermore, the dsRNA-mediated gene silencing of , and shifted the olfactory behavior of for β-ionone, α-farnesene and plant alcohol, respectively. These results suggest that the OBPs are involved in the recognition of rice plant volatiles, and several potential repellants and lures for controlling this pest.
植物挥发物在调节昆虫行为方面发挥着重要作用。气味结合蛋白(OBPs)参与嗅觉信号转导途径和植物挥发物识别的第一步。(此处缺失具体害虫名称)是水稻作物最具破坏性的害虫之一。了解(此处缺失具体害虫名称)OBPs(OBPs)在寄主植物定位中的功能以及(此处缺失具体害虫名称)对水稻植物挥发物的行为反应,可能会带来改进的、更环保的控制这种害虫的方法。我们发现OBP1与所有测试的挥发物仅表现出微弱的结合。OBP2、OBP3和OBP11对β-紫罗兰酮具有不同的结合亲和力。OBP2和OBP11分别对β-石竹烯(K = 2.23 µM)和植物醇(K = 2.98 µM)具有很强的结合亲和力。Y型嗅觉仪实验结果表明,(此处缺失具体害虫名称)被正辛醛和正辛烷显著排斥,但被(+)-柠檬烯、苯乙酮、2-庚酮、正十一烷、α-法尼烯和β-紫罗兰酮强烈吸引。此外,(此处缺失具体害虫名称)、(此处缺失具体害虫名称)和(此处缺失具体害虫名称)的dsRNA介导的基因沉默分别改变了(此处缺失具体害虫名称)对β-紫罗兰酮、α-法尼烯和植物醇的嗅觉行为。这些结果表明,OBPs参与了水稻植物挥发物的识别,以及几种控制这种害虫的潜在驱避剂和引诱剂。