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Antennal expression pattern of two olfactory receptors and an odorant binding protein implicated in host odor detection by the malaria vector Anopheles gambiae

机译:疟疾媒介冈比亚按蚊检测宿主气味中涉及的两个嗅觉受体和气味结合蛋白的表达模式

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摘要

Odor-detection in the malaria mosquito Anopheles gambiae involves large families of diverse proteins, including multiple odorant binding proteins (AgOBPs) and olfactory receptors (AgORs). The receptors AgOR1 and AgOR2, as well as the binding protein AgOBP1, have been implicated in the recognition of human host odors. In this study, we have explored the expression of these olfactory proteins, as well as the ubiquitous odorant receptor heteromerization partner AgOR7, in the thirteen flagellomeres (segments) of female and male antenna. Expressing cells were visualized by adapting a whole mount fluorescence in situ hybridization method. In female mosquitoes, AgOR1-expressing olfactory receptor neurons (ORNs) were almost exclusively segregated in segments 3 to 9, whereas AgOR2-expressing ORNs were distributed over flagellomeres 2 to 13. Different individuals comprised a similar number of cells expressing a distinct AgOR type, although their antennal topography and number per flagellomere varied. AgOBP1-expressing support cells were present in segments 3 to 13 of the female antenna, with increasing numbers towards the distal end. In male mosquitoes, total numbers of AgOR- and AgOBP1-expressing cells were much lower. While AgOR2-expressing cells were found on both terminal flagellomeres, AgOR1 cells were restricted to the most distal segment. High densities of AgOBP1-expressing cells were identified in segment 13, whereas segment 12 comprised very few. Altogether, the results demonstrate that both sexes express the two olfactory receptor types as well as the binding protein AgOBP1 but there is a significant sexual dimorphism concerning the number and distribution of these cells. This may suggest gender-specific differences in the ability to detect distinct odorants, specifically human host-derived volatiles.
机译:疟疾冈比亚按蚊中的气味检测涉及多种蛋白质的大家族,包括多种气味结合蛋白(AgOBP)和嗅觉受体(AgOR)。受体AgOR1和AgOR2以及结合蛋白AgOBP1与人类宿主气味的识别有关。在这项研究中,我们探索了这些嗅觉蛋白以及遍在的气味受体异源异构伴侣AgOR7在雌雄天线的十三鞭毛(段)中的表达。通过适应整个安装荧光原位杂交方法可视化表达细胞。在雌性蚊子中,表达AgOR1的嗅觉受体神经元(ORN)几乎完全隔离在第3至9段,而表达AgOR2的ORN分布在鞭毛2至13上。不同的个体包含相似数量的表达不同AgOR类型的细胞,尽管它们的触角地形和鞭毛的数量各不相同。表达AgOBP1的支持细胞存在于母天线的第3至13段中,向远端的数量不断增加。在雄性蚊子中,表达AgOR-和AgOBP1的细胞总数要低得多。虽然在两个末端鞭毛上都发现了表达AgOR2的细胞,但AgOR1细胞被限制在最远端。在片段13中鉴定出高密度的表达AgOBP1的细胞,而片段12则很少。总而言之,结果表明,两种性别都表达两种嗅觉受体类型以及结合蛋白AgOBP1,但是关于这些细胞的数量和分布存在明显的性二态性。这可能表明在检测不同气味(特别是人类宿主衍生的挥发物)的能力方面,存在性别差异。

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