Liu Long, Li Yangdi, Yang Hua, Wang Fan, Huang Qiong
National Forestry and Grassland Administration Key Laboratory of Forest Resources Conservation and Ecological Safety on the Upper Reaches of the Yangtze River, College of Forestry, Sichuan Agricultural University, Chengdu, China.
Front Physiol. 2025 Apr 25;16:1586738. doi: 10.3389/fphys.2025.1586738. eCollection 2025.
Odorant-binding proteins (OBPs) are important for insects to discriminate, bind and transport odorants, such as pheromones and host plant volatiles. Herein, the Minus-C OBP (CbuqOBP1) was characterized from , one of the most important pests in bamboo plantations. showed significantly higher transcription levels in the adult stage and was most highly expressed in the head of both sexes, the thorax and antenna of the male, indicating that it plays important roles in chemosensory behavior of adults and may also function in other biological processes. Fluorescence competitive binding assays showed that CbuqOBP1 displayed broad binding capabilities and strong affinities to phenol ( = 10.49 μM) and benzothiazole ( = 11.11 μM) among 8 volatiles. CbuqOBP1 also showed high binding affinity to the main volatile of the host plant (linalool, = 13.41 μM). The docking results indicated that hydrophobic interactions were the prevailing forces between CbuqOBP1 with these three ligands. Additionally, several amino acid residues were significantly overlapped and contributed to the interactions with the ligands. The combined results suggest that CbuqOBP1 may play dual roles in binding volatile compounds from the host plant and the same species and will be helpful to developing new pest-control strategies.
气味结合蛋白(OBPs)对于昆虫辨别、结合和转运信息素和寄主植物挥发物等气味物质至关重要。在此,从毛竹主要害虫之一的竹织叶野螟(Algedonia coclesalis Walker)中鉴定出一种缺C末端气味结合蛋白(CbuqOBP1)。CbuqOBP1在成虫阶段转录水平显著更高,且在雌雄成虫头部、雄虫胸部和触角中表达量最高,表明它在成虫化学感受行为中起重要作用,也可能在其他生物学过程中发挥功能。荧光竞争结合试验表明,在8种挥发物中,CbuqOBP1对苯酚(Ki = 10.49 μM)和苯并噻唑(Ki = 11.11 μM)表现出广泛的结合能力和较强亲和力。CbuqOBP1对寄主植物毛竹的主要挥发物芳樟醇(Ki = 13.41 μM)也表现出高结合亲和力。对接结果表明,疏水相互作用是CbuqOBP1与这三种配体之间的主要作用力。此外,几个氨基酸残基显著重叠并有助于与配体的相互作用。综合结果表明,CbuqOBP1可能在结合寄主植物和同种的挥发性化合物中发挥双重作用,这将有助于开发新的害虫防治策略。