Liu Panjing, Zhang Xiaofang, Wang Yubo, Xiao Beibei, Su Qianfu, Zhang Tao, Wei Hongyi
Ministry of Education Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Jiangxi Agricultural University, Nanchang, PR China; Plant Protection Institute, HAAFS/ Key Laboratory of IPM on Crops in Northern Region of North China, Ministry of Agriculture and Rural Affairs, PR China/ IPM Innovation Center of Hebei Province/ International Science and Technology Joint Research Center on IPM of Hebei Province, Baoding, PR China; School of Agronomy Sciences, Jiangxi Agricultural University, Nanchang, PR China.
Plant Protection Institute, HAAFS/ Key Laboratory of IPM on Crops in Northern Region of North China, Ministry of Agriculture and Rural Affairs, PR China/ IPM Innovation Center of Hebei Province/ International Science and Technology Joint Research Center on IPM of Hebei Province, Baoding, PR China.
J Insect Physiol. 2025 Jul;164:104823. doi: 10.1016/j.jinsphys.2025.104823. Epub 2025 May 24.
Odorant binding proteins (OBPs) play a vital role in the insect olfactory recognition system, as they bind and transport specific semiochemicals to chemosensory receptors for further processing. The agricultural and horticultural pest, white-spotted flower chafer (WSFC), Protaetia brevitarsis (Coleoptera, Scarabaeoidea), has significantly harmed numerous crops and fruits in China. It is hypothesized that WSFCs rely on specific OBPs and chemosensory receptors to identify palatable food sources and optimal oviposition sites. Twenty-three putative OBPs (PbreOBPs) were identified from the WSFC genome in our research. Based on phylogenetic analysis, PbreOBPs exhibited high degree of similarity to those of Holotrichia parallela and Anomala corpulenta. Tissue expression profiles showed that ten PbreOBPs exhibited antenna-biased expression. We recombined and purified three antenna-specific PbreOBPs: PbreOBP8, PbreOBP9, and PbreOBP18. Fluorescence competitive binding assays revealed that they had higher binding affinities to β-ionone, phenethyl salicylate, phenylacetaldehyde, and benzyl benzoate - compounds commonly found in floral volatiles. Additionally, PbreOBP8 showed the ability to bind microbial volatiles, such as 3-octanol, 3-methyl-1-butanol, and 1-octen-3-ol, suggesting a role in locating food or oviposition sites. Forthermore, we also predicted the key acid residues which involved in the binding of three PbreOBPs towards floral and microbial volatiles. The present investigation demonstrated that the antenna-specific PbreOBP8, PbreOBP9 and PbreOBP18 were likely involved in mediating the recognition of floral volatiles. The findings introduce possible avenues for further research into PbreOBPs and provide potential targets for creating olfactory-based control methods for WSFC populations.
气味结合蛋白(OBPs)在昆虫嗅觉识别系统中起着至关重要的作用,因为它们能结合并运输特定的信息化学物质至化学感应受体,以便进一步处理。农业和园艺害虫白星花金龟(WSFC),即短跗星花金龟(鞘翅目,金龟总科),在中国已对多种农作物和水果造成了严重损害。据推测,白星花金龟依靠特定的OBPs和化学感应受体来识别可口的食物来源和最佳产卵地点。在我们的研究中,从白星花金龟基因组中鉴定出了23种假定的OBPs(PbreOBPs)。基于系统发育分析,PbreOBPs与华北大黑鳃金龟和铜绿丽金龟的OBPs表现出高度相似性。组织表达谱显示,10种PbreOBPs表现出触角偏向性表达。我们重组并纯化了三种触角特异性PbreOBPs:PbreOBP8、PbreOBP9和PbreOBP18。荧光竞争结合试验表明,它们对β-紫罗兰酮、水杨酸苯乙酯、苯乙醛和苯甲酸苄酯(这些化合物常见于花香挥发物中)具有较高的结合亲和力。此外,PbreOBP8显示出结合微生物挥发物的能力,如3-辛醇、3-甲基-1-丁醇和1-辛烯-3-醇,这表明其在定位食物或产卵地点方面发挥作用。此外,我们还预测了三种PbreOBPs与花香和微生物挥发物结合所涉及的关键酸性残基。本研究表明,触角特异性PbreOBP8、PbreOBP9和PbreOBP18可能参与介导对花香挥发物的识别。这些发现为进一步研究PbreOBPs开辟了可能的途径,并为开发基于嗅觉的白星花金龟种群控制方法提供了潜在靶点。