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首页> 外文期刊>Journal of Economic Entomology >Expression Profiles and Functional Characterization of Two Odorant-Binding Proteins From the Apple Buprestid Beetle Agrilus mali (Coleoptera: Buprestidae)
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Expression Profiles and Functional Characterization of Two Odorant-Binding Proteins From the Apple Buprestid Beetle Agrilus mali (Coleoptera: Buprestidae)

机译:来自Apple Buprestid Beetle Agrilus Mali(鞘翅目:Buprestidae)的两种气味结合蛋白的表达谱和功能性表征

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The apple buprestid beetle, Agrilus mali Matsumura (Coleoptera: Buprestidae), can respond to various volatiles, but the underlying mechanism of odorant perception for this insect is poorly understood. Here, we cloned A. malls odorant-binding proteins 3 (AmalOBP3) and 8 (AmalOBP8) and characterized their expression patterns and binding profiles. Sequence and phylogenetic analyses showed that AmalOBP3 and AmalOBP8 were distributed in the classic and minus-C OBP subfamily, respectively. AmalOBP3 was specifically and abundantly expressed in antennae of both sexes. AmalOBP8 displayed high transcript levels in antennae of both sexes, abdomens of males, and wings of both sexes. Both AmalOBPs exhibited much higher expression in male antennae than in female antennae, suggesting that they could be important in perception of male-specific olfactory cues (e.g., some sex pheromones). Out of the 40 odorant ligands tested, AmalOBP3 and AmalOBP8 bound to 15 and 21 different odorants, respectively, indicating a distinct and selective binding profile for them. Both AmalOBPs seemed to have very strong binding affinity to aliphatic alcohols and aldehydes with 12 to 15 carbon atoms. Alcohols, esters, and terpenoids were more likely to be good ligands for both AmalOBPs than aldehydes and alkanes. Together with its broad expression in different tissues, strong binding with higher numbers of putative ligands for AmalOPB8 means that this protein can have more extensive functional roles in chemosensation of A. mali. Our results provide insights into the molecular basis of chemosensation in A. mali, as well as a basis for developing detection, monitoring, and management tools for this serious pest.
机译:Apple Buprestid Beetle,Agrilus Mali Matsumura(鞘翅目:Buprestidae)可以响应各种挥发物,但对这种昆虫的气味感知的潜在机制很难以理解。在这里,我们克隆了A. Malls含氟结合蛋白3(Amalobp3)和8(Amalobp8),并表征其表达模式和结合谱。序列和系统发育分析表明,Amalobp3和Amalobp8分别分布在经典和减去-c obcy亚家族中。 Amalobp3在两性的天线中具体而大量表达。 Amalobp8在患有性别,男性腹部的天线和两性的翅膀上显示出高的转录水平。 Amalobps在雄性天线中表现出比在雌性天线的雄性天线上更高的表达,表明它们在对男性特异性嗅觉线索的感知(例如,一些性信息素)中可能是重要的。在测试的40个臭臭的配体中,分别与15和21种不同的气味剂,表明它们的不同和选择性结合曲线结合。两种氨基浦似乎对脂族醇和12至15个碳原子的醛具有非常强烈的结合亲和力。醇,酯和三萜类醇比醛和烷烃更容易是氨基磷脂的好配体。与其不同组织的宽表达一起,与Amalopb8的较高推定配体的强大结合意味着该蛋白质可以在A.Mali的化学索化中具有更广泛的功能作用。我们的结果提供了对A.Mali的化学化的分子基础的见解,以及开发这种严重害虫的检测,监测和管理工具的基础。

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