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Two Odorant-Binding Proteins of the Dark Black Chafer (Holotrichia parallela) Display Preferential Binding to Biologically Active Host Plant Volatiles

机译:暗黑金龟子(Holotrichia parallela)的两种气味结合蛋白显示对生物活性宿主植物挥发物的优先结合。

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摘要

The dark black chafer (DBC), Holotrichia parallela, is an important pest of multiple crops. Insect host-searching behaviors are regulated by host plant volatiles. Therefore, a better understanding of the mechanism linking the chemosensory system to plant volatiles at the molecular level will benefit DBC control strategies. Based on antenna transcriptome data, two highly expressed antenna-specific odorant-binding proteins (HparOBP20 and 49) were selected to identify novel DBC attractants using reverse chemical ecology methods. We expressed these proteins, mapped their binding specificity, and tested the activity of the plant volatiles in the field. The ligands used in the binding specificity assays included 31 host-plant-associated volatiles and two sex pheromone components. The results showed that (1) HparOBP20 and 49 are involved in odor recognition; (2) these proteins bind attractive plant volatiles strongly and can therefore be employed to develop environmentally friendly DBC management strategies; and (3) the green-leaf volatile (Z)-3-hexenyl acetate shows a high binding affinity to HparOBP20 (Ki = 18.51 μM) and HparOBP49 (Ki = 39.65 μM) and is highly attractive to DBC adults, especially females. In the field test, a (Z)-3-hexenyl acetate trap caught an average of 13 ± 1.202 females per day, which was significantly greater than the corresponding male catch (F2,6 = 74.18, P < 0.0001). (Z)-3-Hexenyl acetate may represent a useful supplement to the known sex pheromone for DBC attraction. In the present study, the binding characteristics of two HparOBPs with host plant volatiles were screened, providing behaviourally active compounds that might be useful for DBC control, based on reverse chemical ecology.
机译:暗黑金龟子(Holotrichia parallela)是多种农作物的重要害虫。昆虫寄主搜索行为受寄主植物挥发物的调节。因此,在分子水平上更好地理解化学感应系统与植物挥发物的连接机制将有益于DBC控制策略。基于天线转录组数据,选择了两种高度表达的天线特异性气味结合蛋白(HparOBP20和49),以利用反向化学生态学方法鉴定新型DBC引诱剂。我们表达了这些蛋白质,绘制了它们的结合特异性,并在田间测试了植物挥发物的活性。结合特异性测定中使用的配体包括31种与宿主植物相关的挥发物和2种性信息素成分。结果表明:(1)HparOBP20和49与气味识别有关; (2)这些蛋白质强烈结合有吸引力的植物挥发物,因此可用于制定环保的DBC管理策略; (3)绿叶挥发性(Z)-3-己烯基乙酸酯对HparOBP20(Ki = 18.51μM)和HparOBP49(Ki = 39.65μM)具有很高的结合亲和力,并且对DBC成人特别是女性具有很高的吸引力。在田间试验中,(Z)-3-己烯基乙酸酯陷阱平均每天捕捞13±1.202雌性,这明显大于相应的雄性捕捞(F2,6 = 74.18,P <0.0001)。 (Z)-3-己烯基乙酸酯可以代表已知的性信息素对DBC的吸引作用。在本研究中,筛选了两种HparOBP与宿主植物挥发物的结合特性,基于逆化学生态学,提供了可能对DBC控制有用的行为活性化合物。

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