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寄生蜂小眼伊蚊(膜翅目:Braconidae)的触角离子型受体 IR64a1 和 IR64a2 协同感知栖息地和宿主线索。

Antennal ionotropic receptors IR64a1 and IR64a2 of the parasitoid wasp Microplitis mediator (Hymenoptera: Braconidate) collaboratively perceive habitat and host cues.

机构信息

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

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China; Institute of Plant and Environment Protection, Beijing Academy of Agricultural and Forestry Sciences, Beijing, 100097, China.

出版信息

Insect Biochem Mol Biol. 2019 Nov;114:103204. doi: 10.1016/j.ibmb.2019.103204. Epub 2019 Aug 15.

Abstract

Ionotropic receptors (IRs), as a member of the conserved chemoreceptor families in the peripheral nervous system, play a critical role in the chemoreception of Drosophila. However, little is known about IRs in Hymenoptera insects. Here, we comprehensively characterized the gene structure, topological map and chemosensory roles of antennal IRs (MmedIRs) in the hymenopteran parasitoid wasp Microplitis mediator. We found that the IRs were conserved across various insect species. In the in situ hybridization assays, most IRs showed female antennae biased features, and there was no co-expression of the IRs and the olfactory receptor co-receptor (ORco). Moreover, three IR co-expressed complexes, IR75u-IR8a, IR64a1-IR8a and IR64a2-IR8a, were detected. Two genes with high similarity, IR64a1 and IR64a2, were located in distinct neurons but projected to the same sensillum. In two-electrode voltage-clamp recordings, IR64a1 was widely tuned to the chemicals from habitat cues released from host plants over long distances, whereas IR64a2 responded to a narrow range host cues and plant odors with low-volatility. Notably, IR64a2 was able to perceive Z9-14: Ald, a vital sex pheromone component that is released from Helicoverpa armigera, which is the preferred host of M. mediator. Furthermore, most ligands of IR64a1 and IR64a2 can trigger electrophysiological responses in female wasps. We propose that IR64a1 and IR64a2 collaboratively perceive habitat and host cues to assist parasitoids in efficiently seeking hosts.

摘要

离子型受体(IRs)作为外周神经系统中保守的化学感受器家族的一员,在果蝇的化学感受中发挥着关键作用。然而,关于膜翅目昆虫中的 IRs 知之甚少。在这里,我们全面描述了膜翅目寄生蜂小茧蜂中触角 IRs(MmedIRs)的基因结构、拓扑图谱和化学感受作用。我们发现 IRs 在各种昆虫物种中是保守的。在原位杂交实验中,大多数 IRs 表现出雌性触角偏爱的特征,并且 IRs 与嗅觉受体共受体(ORco)没有共表达。此外,检测到三个 IR 共表达复合物,IR75u-IR8a、IR64a1-IR8a 和 IR64a2-IR8a。两个具有高度相似性的基因,IR64a1 和 IR64a2,位于不同的神经元中,但投射到同一个感器上。在双电极电压钳记录中,IR64a1 广泛调谐到来自宿主植物释放的栖息地线索的化学物质,这些化学物质在远距离范围内释放,而 IR64a2 则对狭窄范围的宿主线索和低挥发性的植物气味作出反应。值得注意的是,IR64a2 能够感知 Z9-14: Ald,这是一种从其首选宿主棉铃虫中释放的重要性信息素成分。此外,IR64a1 和 IR64a2 的大多数配体都能在雌性黄蜂中引发电生理反应。我们提出,IR64a1 和 IR64a2 协同感知栖息地和宿主线索,帮助寄生蜂有效地寻找宿主。

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