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首页> 外文期刊>BMC Molecular Biology >Cloning, ligand-binding, and temporal expression of ecdysteroid receptors in the diamondback moth, Plutella xylostella
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Cloning, ligand-binding, and temporal expression of ecdysteroid receptors in the diamondback moth, Plutella xylostella

机译:小菜蛾小菜蛾中蜕皮类固醇受体的克隆,配体结合和时间表达

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The diamondback moth, Plutella xylostella (L.) (Lepidoptera: Plutellidae), is a devastating pest of cruciferous crops worldwide, and has developed resistance to a wide range of insecticides, including diacylhydrazine-based ecdysone agonists, a highly selective group of molt-accelerating biopesticides targeting the ecdysone receptors. In this study, we cloned and characterized the ecdysone receptors from P. xylostella, including the two isoforms of EcR and a USP. Sequence comparison and phylogenetic analysis showed striking conservations among insect ecdysone receptors, especially between P. xylostella and other lepidopterans. The binding affinity of ecdysteroids to in vitro- translated receptor proteins indicated that PxEcRB isoform bound specifically to ponasterone A, and the binding affinity was enhanced by co-incubation with PxUSP (Kd =3.0±1.7 nM). In contrast, PxEcRA did not bind to ponasterone A, even in the presence of PxUSP. The expression of PxEcRB were consistently higher than that of PxEcRA across each and every developmental stage, while the pattern of PxUSP expression is more or less ubiquitous. Target site insensitivity, in which the altered binding of insecticides (ecdysone agonists) to their targets (ecdysone receptors) leads to an adaptive response (resistance), is one of the underlying mechanisms of diacylhydrazine resistance. Given the distinct differences at expression level and the ligand-binding capacity, we hypothesis that PxEcRB is the ecdysone receptor that controls the remodeling events during metamorphosis. More importantly, PxEcRB is the potential target site which is modified in the ecdysone agonist-resistant P. xylostella.
机译:小菜蛾小菜蛾(Plutella xylostella(L.)(鳞翅目:Plutellidae))是全世界十字花科作物的毁灭性害虫,对多种杀虫剂产生了抗药性,包括基于二酰基肼的蜕皮激素激动剂,这是一种高度选择性的蜕皮动物。靶向蜕皮激素受体的加速生物农药。在这项研究中,我们克隆并鉴定了小菜蛾的蜕皮激素受体,包括EcR和USP的两种同工型。序列比较和系统发育分析表明,昆虫蜕皮激素受体之间具有惊人的保守性,特别是小菜蛾和其他鳞翅目之间。蜕皮类固醇与体外翻译的受体蛋白的结合亲和力表明PxEcRB同种型特异性地与桥甾酮A结合,并且通过与PxUSP共同孵育而增强了结合亲和力(Kd = 3.0±1.7 nM)。相比之下,即使存在PxUSP,PxEcRA也不与ponasterone A结合。在每个发育阶段,PxEcRB的表达始终高于PxEcRA的表达,而PxUSP的表达模式或多或少普遍存在。靶位点不敏感,其中杀虫剂(蜕皮激素激动剂)与其靶标(蜕皮激素受体)结合改变,导致适应性反应(耐药),是二酰基肼耐药的潜在机制之一。考虑到表达水平和配体结合能力的明显差异,我们假设PxEcRB是蜕皮激素受体,可控制蜕变过程中的重塑事件。更重要的是,PxEcRB是潜在的目标位点,在蜕皮激素抗药性小球藻中被修饰。

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