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首页> 外文期刊>Archives of Insect Biochemistry and Physiology >CLONING, EXPRESSION, AND FUNCTIONAL ANALYSIS OF THREE ODORANT-BINDING PROTEINS OF THE ORIENTAL FRUIT MOTH, Grapholita molesta (BUSCK) (LEPIDOPTERA: TORTRICIDAE)
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CLONING, EXPRESSION, AND FUNCTIONAL ANALYSIS OF THREE ODORANT-BINDING PROTEINS OF THE ORIENTAL FRUIT MOTH, Grapholita molesta (BUSCK) (LEPIDOPTERA: TORTRICIDAE)

机译:东方果蛾(Grapholita molesta(BUSCK))三种气味结合蛋白的克隆,表达及功能分析(鳞翅目:TO科)

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Odorant-binding proteins (OBPs) act in insect olfactory processes. OBPs are expressed in the olfactory organs and serve in binding and transport of hydrophobic odorants through the sensillum lymph to olfactory receptor neurons within the antennal sensilla. In this study, three OBP genes were cloned from the antennal transcriptome database of Grapholita molesta via reverse-transcription PCR. Recombinant GmolOBPs (rGmolOBPs) were expressed in a prokaryotic expression system and enriched via Ni ion affinity chromatography. The binding properties of the three rGmolOBPs to four sex pheromones and 30 host-plant volatiles were investigated in fluorescence ligand-binding assays. The results demonstrated that rGmolOBP8, rGmolOBP11, and rGmolOBP15 exhibited high binding affinities with the major sex pheromone components (E)-8-dodecenyl acetate, (Z)-8-dodecenyl alcohol, and dodecanol. The volatiles emitted from peach and pear, decanal, butyl hexanoate, and a-ocimene, also showed binding affinities to rGmolOBP8 and rGmolOBP11. Hexanal, heptanal, and a-pinene showed strong binding affinities to rGmolOBP15. Results of the electrophysiological recording experiments and previous behavior bioassays indicated that adult insects had strong electroantennogram and behavioral responses toward butyl hexanoate, hexanal, and heptanal. We infer that the GmolOBP8 and GmolOBP11 have dual functions in perception and recognition of host-plant volatiles and sex pheromones, while GmolOBP15 was mainly involved in plant volatile odorants' perception. (C) 2015 Wiley Periodicals, Inc.
机译:气味结合蛋白(OBP)在昆虫的嗅觉过程中起作用。 OBPs在嗅觉器官中表达,并在疏水性增味剂通过sensillum淋巴到触角感应器内的嗅觉受体神经元的结合和运输中发挥作用。在这项研究中,通过逆转录PCR从Grapholita molesta的触角转录组数据库中克隆了三个OBP基因。重组GmolOBP(rGmolOBP)在原核表达系统中表达,并通过Ni离子亲和层析富集。在荧光配体结合测定中研究了三种rGmolOBP与四种性信息素和30种宿主植物挥发物的结合特性。结果表明,rGmolOBP8,rGmolOBP11和rGmolOBP15与主要的性信息素成分(E)-8-十二碳烯基乙酸酯,(Z)-8-十二碳烯基醇和十二碳醇表现出高结合亲和力。从桃和梨,癸醛,己酸丁酯和α-烯丙烯释放出的挥发物也表现出与rGmolOBP8和rGmolOBP11的结合亲和力。己醛,庚醛和α-pine烯对rGmolOBP15具有很强的结合亲和力。电生理记录实验和先前的行为生物测定的结果表明,成虫对浓己酸丁酯,己醛和庚醛具有很强的触电图和行为响应。我们推断,GmolOBP8和GmolOBP11在感知和识别寄主植物挥发物和性信息素方面具有双重功能,而GmolOBP15主要参与植物挥发味物质的感知。 (C)2015年Wiley Periodicals,Inc.

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