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首页> 外文期刊>Frontiers in Physiology >The Mouthparts Enriched Odorant Binding Protein 11 of the Alfalfa Plant Bug Adelphocoris lineolatus Displays a Preferential Binding Behavior to Host Plant Secondary Metabolites
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The Mouthparts Enriched Odorant Binding Protein 11 of the Alfalfa Plant Bug Adelphocoris lineolatus Displays a Preferential Binding Behavior to Host Plant Secondary Metabolites

机译:苜蓿Bug Adelphocoris lineolatus 的口部富含气味的结合蛋白11显示出对宿主植物次生代谢产物的优先结合行为

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Odorant binding proteins (OBPs) are proposed to be directly required for odorant discrimination and represent potential interesting targets for pest control. In the notoriously agricultural pest Adelphocoris lineolatus , our previous functional investigation of highly expressed antennal OBPs clearly supported this viewpoint, whereas the findings of the current study by characterizing of AlinOBP11 rather indicated that OBP in hemipterous plant bugs might fulfill a different and tantalizing physiological role. The phylogenetic analysis uncovered that AlinOBP11 together with several homologous bug OBP proteins are potential orthologs, implying they could exhibit a conserved function. Next, the results of expression profiles solidly showed that AlinOBP11 was predominantly expressed at adult mouthparts, the most important gustatory organ of Hemiptera mirid bug. Finally, a rigorously selective binding profile was observed in the fluorescence competitive binding assay, in which recombinant AlinOBP11 displayed much stronger binding abilities to non-volatile secondary metabolite compounds than the volatile odorants. These results reflect that AlinOBP11 , even its orthologous proteins across bug species, could be associated with a distinctively conserved physiological role such as a crucial carrier for non-volatiles host secondary metabolites in gustatory system.
机译:气味结合蛋白(OBPs)被认为是气味识别的直接要求,并代表了有害生物防治的潜在目标。在臭名昭著的农业害虫Adelphocoris lineolatus中,我们先前对高表达触角OBP的功能研究清楚地支持了这一观点,而通过对AlinOBP11进行表征的当前研究结果则表明,在杂种植物中的OBP可能发挥了不同而诱人的生理作用。系统发育分析发现,AlinOBP11以及几种同源的bug OBP蛋白是潜在的直系同源基因,暗示它们可能表现出保守的功能。接下来,表达谱的结果可靠地表明,AlinOBP11主要在成年口器中表达,成年口器是半翅目昆虫的最重要味觉器官。最后,在荧光竞争结合试验中观察到严格的选择性结合特征,其中重组AlinOBP11与非挥发性次级代谢产物的结合能力比挥发性增香剂强得多。这些结果表明,AlinOBP11,甚至其跨虫种的直系同源蛋白,也可能与独特保守的生理作用相关,例如,味觉系统中非挥发性物质的次级代谢产物的关键载体。

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