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性信息素识别和三种信息素结合蛋白在斜纹夜蛾 Agrotis ipsilon 中的免疫定位。

Sex pheromone recognition and immunolocalization of three pheromone binding proteins in the black cutworm moth Agrotis ipsilon.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Insect Biochem Mol Biol. 2013 Mar;43(3):237-51. doi: 10.1016/j.ibmb.2012.12.009. Epub 2013 Jan 5.

Abstract

Insect pheromone binding proteins (PBPs) are believed to solubilize and transport hydrophobic sex pheromones across sensillum lymph to membrane-associated pheromone receptors. To address the molecular mechanisms of PBPs in insect pheromone perception, we undertook a systemic study on the PBPs of the black cutworm Agrotis ipsilon at transcript as well as protein level from tissue distribution and cellular localization to pheromone binding affinity. We cloned three full-length PBP genes AipsPBP1-3 from A. ipsilon antennae, and demonstrated that AipsPBP1-3 transcripts were highly expressed in male antennae. The electron microscopic examinations revealed at least six types of olfactory sensilla on male and female antenna: trichodea, chaetica, basiconica, coeloconica, squamiformia and Böhm bristles. The immunocytochemistry results demonstrated that AipsPBP1-3 proteins were strongly expressed in the sensillum lymph of the trichoid sensilla of male moth. The binding assays showed that AipsPBP1 had high binding affinities with the major sex pheromone components Z7-12:Ac and Z9-14:Ac among five related chemicals and was clustered together with the long trichoid sensilla-expressing LdisPBPs of Lymantria dispar. AipsPBP2 showed high binding affinities also with Z11-16:Ac. AipsPBP3 displayed a high affinity only with Z11-16:Ac. Our studies provide further detail evidences for the involvement of moth PBPs in pheromone discrimination and selective recognition of specific components of the female sex pheromone blends.

摘要

昆虫信息素结合蛋白(PBPs)被认为能够溶解和转运疏水性性信息素穿过感器淋巴到达膜相关的信息素受体。为了研究 PBPs 在昆虫信息素感知中的分子机制,我们从组织分布和细胞定位到信息素结合亲和力等方面,在转录和蛋白质水平上对斜纹夜蛾 Agrotis ipsilon 的 PBPs 进行了系统研究。我们从斜纹夜蛾触角克隆了三个全长 PBP 基因 AipsPBP1-3,并证实 AipsPBP1-3 转录本在雄触角中高度表达。电子显微镜检查显示,雌雄触角上至少有六种类型的嗅觉感器:毛形感器、刺形感器、栓锥形感器、腔锥形感器、鳞形感器和Böhm 鬃毛。免疫细胞化学结果表明,AipsPBP1-3 蛋白在雄蛾毛形感器的感器淋巴中强烈表达。结合实验表明,AipsPBP1 与五种相关化学物质中的主要性信息素成分 Z7-12:Ac 和 Z9-14:Ac 具有高结合亲和力,与具有长毛形感器的舞毒蛾 Lymantria dispar 的 LdisPBPs 聚类在一起。AipsPBP2 也与 Z11-16:Ac 表现出高结合亲和力。AipsPBP3 仅与 Z11-16:Ac 显示出高亲和力。我们的研究为鳞翅目昆虫 PBPs 参与信息素识别以及对雌性性信息素混合物中特定成分的选择性识别提供了进一步的详细证据。

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