Jin Jun-Yan, Li Zhao-Qun, Zhang Ya-Nan, Liu Nai-Yong, Dong Shuang-Lin
Education Ministry Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China; Suqian Entry-exit Inspection and Quarantine Bureau, Suqian, Jiangsu, China.
Education Ministry Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China.
J Insect Physiol. 2014 Jul;66:71-9. doi: 10.1016/j.jinsphys.2014.05.013. Epub 2014 May 24.
Pheromone binding proteins (PBPs) are thought to bind and transport hydrophobic sex pheromone molecules across the aqueous sensillar lymph to specific pheromone receptors on the dendritic membrane of olfactory neurons. A maximum of 3 PBP genes have been consistently identified in noctuid species, and each of them shares high identity with its counterparts in other species within the family. The functionality differences of the 3 proteins are poorly understood. In the present study, 3 PBP cDNAs (SinfPBP1, 2, 3) were identified from the pink rice borer, Sesamia inferens, for the first time. The quantitative real-time PCR indicated that the 3 PBPs displayed similar temporal but very different sex related expression profiles. Expression of SinfPBP1 and SinfPBP2 were highly and moderately male biased, respectively, while SinfPBP3 was slightly female biased, as SinfPBPs were expressed at very different levels (PBP1>PBP2≫PBP3) in male antennae, but at similar levels in female antennae. Furthermore, the 3 SinfPBPs displayed different ligand binding profiles in fluorescence competitive binding assays. SinfPBP1 exhibited high and similar binding affinities to all 3 sex pheromone components (Ki=0.72-1.60 μM), while SinfPBP2 showed selective binding to the alcohol and aldehyde components (Ki=0.78-1.71 μM), and SinfPBP3 showed no obvious binding to the 3 sex pheromone components. The results suggest that SinfPBP1 plays a major role in the reception of female sex pheromones in S. inferens, while SinfPBP3 plays a least role (if any) and SinfPBP2 functions as a recognizer of alcohol and aldehyde components.
信息素结合蛋白(PBPs)被认为能够结合并运输疏水性性信息素分子,使其穿过水性的感器淋巴液,到达嗅觉神经元树突膜上的特定信息素受体。夜蛾科物种中最多一直鉴定出3个PBP基因,并且每个基因与其家族中其他物种的对应基因具有高度同源性。这3种蛋白质的功能差异尚不清楚。在本研究中,首次从二化螟中鉴定出3个PBP cDNA(SinfPBP1、2、3)。定量实时PCR表明,这3种PBPs显示出相似的时间表达模式,但性别相关的表达谱差异很大。SinfPBP1和SinfPBP2的表达分别高度偏向雄性和中度偏向雄性,而SinfPBP3则略微偏向雌性,因为SinfPBPs在雄性触角中的表达水平差异很大(PBP1>PBP2≫PBP3),而在雌性触角中的表达水平相似。此外,在荧光竞争结合试验中,这3种SinfPBPs表现出不同的配体结合谱。SinfPBP1对所有3种性信息素成分表现出高且相似的结合亲和力(Ki = 0.72 - 1.60 μM),而SinfPBP2对醇类和醛类成分表现出选择性结合(Ki = 0.78 - 1.71 μM),SinfPBP3对这3种性信息素成分没有明显结合。结果表明,SinfPBP1在二化螟雌性性信息素的接收中起主要作用,而SinfPBP3起的作用最小(如果有作用的话),SinfPBP2作为醇类和醛类成分的识别器发挥作用。