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The Co-Expression Pattern of Odorant Binding Proteins and Olfactory Receptors Identify Distinct Trichoid Sensilla on the Antenna of the Malaria Mosquito Anopheles gambiae

机译:气味结合蛋白和嗅觉受体的共表达模式确定冈比亚疟疾蚊按蚊的天线上明显的Trichoid感官。

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摘要

The initial steps of odorant recognition in the insect olfactory system involve odorant binding proteins (OBPs) and odorant receptors (ORs). While large families of OBPs have been identified in the malaria vector A. gambiae, little is known about their expression pattern in the numerous sensory hairs of the female antenna. We applied whole mount fluorescence in Situ hybridization (WM-FISH) and fluorescence immunohistochemistry (WM-FIHC) to investigate the sensilla co-expression of eight A. gambiae OBPs (AgOBPs), most notably AgOBP1 and AgOBP4, which all have abundant transcripts in female antenna. WM-FISH analysis of female antennae using AgOBP-specific probes revealed marked differences in the number of cells expressing each various AgOBPs. Testing combinations of AgOBP probes in two-color WM-FISH resulted in distinct cellular labeling patterns, indicating a combinatorial expression of AgOBPs and revealing distinct AgOBP requirements for various functional sensilla types. WM-FIHC with antisera to AgOBP1 and AgOBP4 confirmed expression of the respective proteins by support cells and demonstrated a location of OBPs within sensilla trichodea. Based on the finding that AgOBP1 and AgOBP4 as well as the receptor type AgOR2 are involved in the recognition of indole, experiments were performed to explore if the AgOBP-types and AgOR2 are co-expressed in distinct olfactory sensilla. Applying two-color WM-FISH with AgOBP-specific probes and probes specific for AgOR2 revealed a close association of support cells bearing transcripts for AgOBP1 and AgOBP4 and neurons with a transcript for the receptor AgOR2. Moreover, combined WM-FISH/-FIHC approaches using an AgOR2-specific riboprobe and AgOBP-specific antisera revealed the expression of the “ligand-matched” AgOBP1, AgOBP4 and AgOR2 to single trichoid hairs. This result substantiates the notion that a specific response to indole is mediated by an interplay of the proteins.
机译:在昆虫嗅觉系统中识别气味的初始步骤涉及气味结合蛋白(OBP)和气味受体(OR)。尽管已经在疟疾载体冈比亚按蚊中鉴定出大家族的OBP,但对其在雌性触角的许多感觉毛中的表达模式知之甚少。我们应用了完整的荧光原位杂交(WM-FISH)和荧光免疫组织化学(WM-FIHC)研究了八种冈比亚拟南芥OBP(AgOBP)的感觉共表达,其中最引人注目的是AgOBP1和AgOBP4,它们在转录后均具有丰富的转录本母天线。使用AgOBP特异性探针对雌性触角进行WM-FISH分析发现,表达每种AgOBP的细胞数量存在明显差异。在两种颜色的WM-FISH中测试AgOBP探针的组合会产生不同的细胞标记模式,表明AgOBP的组合表达并揭示了各种功能性感官类型对AgOBP的不同需求。具有针对AgOBP1和AgOBP4的抗血清的WM-FIHC证实了支持细胞各自蛋白的表达,并证明了OBPs位于毛细线虫中。基于发现AgOBP1和AgOBP4以及受体类型AgOR2参与吲哚的识别,进行了实验以探索AgOBP类型和AgOR2是否在不同的嗅觉感官中共表达。将两种颜色的WM-FISH与AgOBP特异性探针和对AgOR2特异性的探针一起使用时,发现带有AgOBP1和AgOBP4转录本的支持细胞与神经元与受体AgOR2转录本紧密相关。此外,使用AgOR2特异性核糖探针和AgOBP特异性抗血清的组合WM-FISH / -FIHC方法揭示了与配体匹配的AgOBP1,AgOBP4和AgOR2在单毛发毛发中的表达。该结果证实了对吲哚的特异性反应是由蛋白质的相互作用介导的观念。

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