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Responses to Host Plant Volatiles and Identification of Odorant Binding Protein and Chemosensory Protein Genes in Bradysia odoriphaga

机译:寄主臭气对寄主植物挥发性的响应及气味结合蛋白和化学感应蛋白基因的鉴定

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The chive maggot Bradysia odoriphaga Yang et Zhang (Diptera: Sciaridae) is a devastating agricultural pest that feeds on liliaceous vegetables and edible mushrooms. The shared host plant volatiles and chemosensory genes of B. odoriphaga may together play crucial roles for insects to identify their host. However, the responses of B. odoriphaga to host volatiles remain unclear. Electroantennography (EAG) and behavioral bioassays were performed on 12 volatiles shared in Allium and Pleurotus. Hexanal evoked in both male and female adults extremely significant EAG responses. In behavioral assays, 3rd-instar larvae and female adults can be significantly repelled by methyl propyl disulfide, 1-octen-3-ol, or hexanal at the concentration of 100 mg/mL. Third-instar larvae and female adults were significantly attracted by limonene with a concentration of 10 and 100 mg/mL, respectively. In addition, 57 chemosensory genes, including 51 odorant binding proteins (OBPs) and 6 chemosensory proteins (CSPs), were identified based on transcriptomes of larvae and pupae. Compared with previous adult transcriptomes, 11 BodoOBPs were specifically expressed in adults, and 6 BodoOBPs were specifically expressed in larvae and pupae. BodoCSP2 and BodoCSP3 were exclusively expressed in the adult stage. Our results provided the potential substances in new ecofriendly pest management and the targets for further study of chemosensory gene functions.
机译:韭菜mag Bradysia odoriphaga Yang et Zhang(Diptera:Sciaridae)是一种破坏性农业害虫,以百合类蔬菜和食用菌为食。共有的寄主植物挥发物和臭味双歧杆菌的化学感应基因可能共同为昆虫鉴定其寄主发挥重要作用。但是,尚不知道臭豆芽孢杆菌对宿主挥发物的反应。对葱属和侧耳属共有的12种挥发物进行了脑电图(EAG)和行为生物测定。在男性和女性成年人中诱发的己醛均具有极其显着的EAG反应。在行为测定中,浓度为100 mg / mL的二丙基甲基二硫醚,1-辛烯-3-醇或己醛可显着排斥三龄幼虫和成年雌性。三龄幼虫和成年雌性分别被浓度为10和100 mg / mL的柠檬烯明显吸引。此外,基于幼虫和p的转录组,鉴定了57种化学感应基因,包括51种气味结合蛋白(OBP)和6种化学感应蛋白(CSP)。与以前的成人转录组相比,在成年人中特异性表达了11个BodoOBP,在幼虫和p中特异性表达了6个BodoOBP。 BodoCSP2和BodoCSP3仅在成人阶段表达。我们的结果为新型有害生物有害生物管理提供了潜在的物质,并为进一步研究化学感应基因功能提供了目标。

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