首页> 外文期刊>Archives of Insect Biochemistry and Physiology >MOLECULARCHARACTERIZATION,EXPRESSION PATTERNS, ANDLIGAND-BINDING PROPERTIES OFTWO ODORANT-BINDINGPROTEIN GENES FROM Orthagaachatina (BUTLER)(LEPIDOPTERA: PYRALIDAE)
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MOLECULARCHARACTERIZATION,EXPRESSION PATTERNS, ANDLIGAND-BINDING PROPERTIES OFTWO ODORANT-BINDINGPROTEIN GENES FROM Orthagaachatina (BUTLER)(LEPIDOPTERA: PYRALIDAE)

机译:Orthagaachatina(BUTLER)(LEPIDOPTERA:PYRALIDAE)的两种气味结合蛋白基因的分子表征,表达模式和结合力

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It is postulated that insect pheromone-binding proteins (PBPs) are involved in sex pheromone reception, while the general odorant-binding proteins (GOBPs) are involved in reception of the general odorants including plant volatiles. However, this functional specificity is not completely conclusive. In the present study, full-length sequences of two new OBP genes were molecularly identified as OachPBP1 and OachGOBP2 from Orthaga achatina, an important pest of the camphor tree Cinnamomum camphora. Quantification of transcript levels by qRT-PCR showed that the two genes highly expressed in antennae, with OachPBP1 male-biased and OachGOBP2 similar between sexes. These expression patterns are consistent with the generally proposed functions of PBPs and GOBPs. With the recombinant proteins obtained by a bacterial expression system, the binding specificity of these proteins was further investigated and compared using the competitive binding assay. OachPBP1 exhibited high binding affinities with all three putative sex pheromones and 10 pheromone analogs, supporting its role in pheromone reception. On the other hand, in addition to binding with some plant volatiles, OachGOBP2 surprisingly displayed similar or even higher binding affinities with the sex pheromones than OachPBP1. Therefore, we propose that OachGOBP2 might play roles in reception of sex pheromone. Additionally, plant volatiles farnesol and farnesene showed high binding with both OachGOBP2 and OachPBP1, suggesting that these volatile chemicalshave regulatory functions in the behavior of O. achatina.
机译:假定昆虫信息素结合蛋白(PBP)参与性信息素的接收,而一般气味结合蛋白(GOBPs)参与包括植物挥发物在内的一般气味剂的接收。但是,这种功能特异性不是完全确定的。在本研究中,两个新的OBP基因的全长序列被分子鉴定为Orthaga achatina的OachPBP1和OachGOBP2,这是樟树肉桂的重要害虫。通过qRT-PCR对转录水平进行定量显示,这两个基因在触角中高度表达,其中OachPBP1男性偏向,OachGOBP2性别相似。这些表达模式与PBP和GOBP的一般提出的功能一致。对于通过细菌表达系统获得的重组蛋白,将进一步研究这些蛋白的结合特异性,并使用竞争结合测定法进行比较。 OachPBP1与所有三个推定的性信息素和10个信息素类似物均表现出高结合亲和力,支持其在信息素接收中的作用。另一方面,除与某些植物挥发物结合外,OachGOBP2与性信息素的结合亲和力也比OachPBP1出人意料地相似甚至更高。因此,我们建议OachGOBP2可能在性信息素的接收中发挥作用。此外,植物挥发物法呢醇和法呢烯与OachGOBP2和OachPBP1均具有高结合力,表明这些挥发性化学物质在褐紫苏的行为中具有调节功能。

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