首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Molecular Characterization, Expression Pattern, and Ligand-Binding Property of Three Odorant Binding Protein Genes from Dendrolimus tabulaeformis
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Molecular Characterization, Expression Pattern, and Ligand-Binding Property of Three Odorant Binding Protein Genes from Dendrolimus tabulaeformis

机译:油松树三个气味结合蛋白基因的分子表征,表达模式和配体结合特性

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摘要

Odorant binding proteins (OBPs) play important roles in insect olfactory processes. The Chinese pine caterpillar moth, Dendrolimus tabulaeformis (Lepidoptera, Lasiocampidae) is a serious economic pest in China, and the pheromones of this species have been identified to monitor their presence. However, the molecular mechanisms by which D. tabulaeformis perceive pheromones and host volatiles remain unknown. In this study, we identified and characterized three new OBPs, including one pheromone binding protein (PBP1) and two general odor binding proteins (GOBPs), from antennal cDNA of D. tabulaeformis. The deduced amino acid sequences of DtabPBP1, DtabGOBP1, and DtabGOBP2 revealed mature proteins of 140, 147, and 140 amino acids, respectively. Each has six cysteine residues in conserved positions relative to other known OBPs. Amino-acid alignments indicated that the two GOBPs are more conserved (DtabGOBP1 is 52.967.4iu % identical to orthologs from other Lepidoptera, and DtabGOBP2 is 55.281.8iu % identical) than the PBP (32.546.0iu %). Real-time PCR indicated tissue- and sex-specific expression patterns of the three genes. DtabPBP1 was mainly expressed in the antennae of males, whereas female antennae had only 1.09iu % the expression in male antennae. Both DtabGOBP1 and DtabGOBP2 were more highly expressed in antennae than in other tissues, while DtabGOBP1 was more abundant in male antennae and DtabGOBP2 in female antennae. In addition, the binding specificities of the three proteins were investigated, and all three OBPs exhibited high binding affinities for the pheromone component (5Z,7E)-5,7-dodecadien-1-yl propionate (Z5,E7-12:OPr). This suggests a role in binding pheromone for GOBPs, as well as PBP1, in D. tabulaeformis.
机译:气味结合蛋白(OBP)在昆虫的嗅觉过程中起重要作用。中国的松毛虫蛾(Dendrolimus tabulaeformis,鳞翅目,瓢虫)在中国是一种严重的经济害虫,已鉴定出该物种的信息素来监测它们的存在。但是,油松毛虫感知信息素和宿主挥发物的分子机制仍然未知。在这项研究中,我们从油D的触角cDNA中鉴定并鉴定了三种新的OBP,包括一种信息素结合蛋白(PBP1)和两种一般的气味结合蛋白(GOBPs)。推导的DtabPBP1,DtabGOBP1和DtabGOBP2氨基酸序列揭示了分别具有140、147和140个氨基酸的成熟蛋白。相对于其他已知的OBP,每个在保守位置具有六个半胱氨酸残基。氨基酸比对表明,两个GOBP比PBP(32.546.0iu%)更保守(DtabGOBP1与来自其他鳞翅目的直向同源物相同,为52.967.4iu%,DtabGOBP2相同为55.281.8iu%)。实时PCR表明这三个基因的组织和性别特异性表达模式。 DtabPBP1主要在雄性触角中表达,而雌性触角仅在雄性触角中表达1.09iu%。 DtabGOBP1和DtabGOBP2在触角中的表达均高于其他组织,而DtabGOBP1在雄性触角中更丰富,而DtabGOBP2在雌性触角中更为丰富。此外,研究了这三种蛋白的结合特异性,并且所有三种OBP对信息素成分(5Z,7E)-5,7-十二烷基一丙酸(Z5,E7-12:OPr)都表现出高结合亲和力。这表明在油松果蝇中结合GOBPs和PBP1的信息素具有重要作用。

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