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首页> 外文期刊>Scientific reports. >Chemosensillum immunolocalization and ligand specificity of chemosensory proteins in the alfalfa plant bug Adelphocoris lineolatus (Goeze)
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Chemosensillum immunolocalization and ligand specificity of chemosensory proteins in the alfalfa plant bug Adelphocoris lineolatus (Goeze)

机译:紫花苜蓿植物臭虫 Adelphocoris lineolatus (Goeze)中的化学发光蛋白化学定位和配体特异性

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Insect chemosensory proteins (CSPs) are a family of small soluble proteins. To date, their physiological functions in insect olfaction remain largely controversial in comparison to odorant binding proteins (OBPs). In present study, we reported the antenna specific expression of three CSPs (AlinCSP4-6) from Adelphocoris lineolatus , their distinct chemosensillum distribution as well as ligand binding capability thus providing the evidence for the possible roles that they could play in semiochemical detection of the plant bug A. lineolatus . The results of qRT-PCR and western blot assay clearly showed that all of these three CSPs are highly expressed in the adult antennae, the olfactory organ of insects. Further cellular investigation of their immunolocalization revealed their dynamic protein expression profiles among different types of antennal sensilla. In a fluorescence competitive binding assay, the selective ligand binding was observed for AlinCSP4-6. In ad`dition, a cooperative interaction was observed between two co-expressed CSPs resulting in an increase of the binding affinities by a mixture of AlinCSP5 and AlinCSP6 to terpenoids which do not bind to individual CSPs. These findings in combination with our previous data for AlinCSP1-3 indicate a possible functional differentiation of CSPs in the A. lineolatus olfactory system.
机译:昆虫化学感应蛋白(CSP)是一类小的可溶性蛋白。迄今为止,与气味结合蛋白(OBP)相比,它们在昆虫嗅觉中的生理功能仍存在很大争议。在本研究中,我们报道了来自阿德福杆线虫的三种CSP(AlinCSP4-6)的天线特异性表达,它们独特的化学分布以及配体结合能力,从而为它们在植物的化学信息检测中可能发挥的作用提供了证据。 bug A. lineolatus。 qRT-PCR和western blot分析的结果清楚地表明,这三种CSP均在成虫触角即昆虫的嗅觉器官中高表达。进一步的细胞免疫定位研究表明,它们在不同类型的触角感官之间具有动态蛋白表达谱。在荧光竞争结合测定中,观察到AlinCSP4-6的选择性配体结合。此外,在两个共表达的CSP之间观察到协同相互作用,导致AlinCSP5和AlinCSP6与不与单个CSP结合的萜类化合物的混合物的结合亲和力增加。这些发现与我们先前关于AlinCSP1-3的数据相结合,表明在线虫嗅觉系统中CSP可能存在功能分化。

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