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雌性偏好性气味受体 MmedOR48 在寄生蜂中广泛调谐植物挥发物。

Female-Biased Odorant Receptor MmedOR48 in the Parasitoid Broadly Tunes to Plant Volatiles.

机构信息

College of Plant Protection, Hebei Agricultural University, Baoding 071000, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

J Agric Food Chem. 2024 Aug 7;72(31):17617-17625. doi: 10.1021/acs.jafc.4c02737. Epub 2024 Jul 25.

Abstract

Odorant receptors (ORs) play a crucial role in insect chemoreception. Here, a female-biased odorant receptor MmedOR48 in parasitoid was fully functionally characterized. The qPCR analysis suggested that the expression level of 48 increased significantly after adult emergence and was expressed much more in the antennae. Moreover, an hybridization assay showed 48 was extensively located in the olfactory sensory neurons. In two-electrode voltage clamp recordings, recombinant MmedOR48 was broadly tuned to 23 kinds of volatiles, among which five plant aldehyde volatiles excited the strongest current recording values. Subsequent molecular docking analysis coupled with site-directed mutagenesis demonstrated that key amino acid residues Thr142, Gln80, Gln282, and Thr312 together formed the binding site in the active pocket for the typical aldehyde ligands. Furthermore, ligands of MmedOR48 could stimulate electrophysiological activities in female adults of the . The main aldehyde ligand, nonanal, aroused significant behavioral preference of in females than in males. These findings suggest that MmedOR48 may be involved in the recognition of plant volatiles in , which provides valuable insight into understanding the olfactory mechanisms of parasitoids.

摘要

气味受体 (ORs) 在昆虫化学感受中起着至关重要的作用。在这里,我们对寄生蜂中的一个雌性偏爱的气味受体 MmedOR48 进行了全面的功能表征。qPCR 分析表明,48 的表达水平在成虫出现后显著增加,并且在触角中表达得更多。此外,杂交分析表明 48 广泛存在于嗅觉感觉神经元中。在双电极电压钳记录中,重组 MmedOR48 对 23 种挥发物表现出广泛的调谐,其中五种植物醛挥发物激发的电流记录值最强。随后的分子对接分析结合定点突变表明,关键的氨基酸残基 Thr142、Gln80、Gln282 和 Thr312 共同形成了活性口袋中用于典型醛配体的结合位点。此外,MmedOR48 的配体可以刺激 的雌性成虫的电生理活性。主要的醛配体壬醛在雌性中引起比雄性更显著的行为偏好。这些发现表明,MmedOR48 可能参与了 对植物挥发物的识别,这为理解寄生蜂的嗅觉机制提供了有价值的见解。

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