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调控……中酸味味觉感知的咽神经元机制 。(原文中“in”后面缺少具体内容)

Pharyngeal neuronal mechanisms governing sour taste perception in .

作者信息

Shrestha Bhanu, Sang Jiun, Rimal Suman, Lee Youngseok

机构信息

Department of Bio & Fermentation Convergence Technology, Kookmin University, Seoul, Republic of Korea.

出版信息

Elife. 2024 Dec 11;13:RP101439. doi: 10.7554/eLife.101439.

Abstract

Sour taste, which is elicited by low pH, may serve to help animals distinguish appetitive from potentially harmful food sources. In all species studied to date, the attractiveness of oral acids is contingent on concentration. Many carboxylic acids are attractive at ecologically relevant concentrations but become aversive beyond some maximal concentration. Recent work found that ionotropic receptors IR25a and IR76b expressed by sweet-responsive gustatory receptor neurons (GRNs) in the labellum, a peripheral gustatory organ, mediate appetitive feeding behaviors toward dilute carboxylic acids. Here, we disclose the existence of pharyngeal sensors in that detect ingested carboxylic acids and are also involved in the appetitive responses to carboxylic acids. These pharyngeal sensors rely on IR51b, IR94a, and IR94h, together with IR25a and IR76b, to drive responses to carboxylic acids. We then demonstrate that optogenetic activation of either or GRNs promotes an appetitive feeding response, confirming their contributions to appetitive feeding behavior. Our discovery of internal pharyngeal sour taste receptors opens up new avenues for investigating the internal sensation of tastants in insects.

摘要

低pH值引发的酸味,可能有助于动物区分开胃食物和潜在有害食物来源。在迄今研究的所有物种中,口腔酸的吸引力取决于浓度。许多羧酸在生态相关浓度下具有吸引力,但超过某个最大浓度就会变得令人厌恶。最近的研究发现,唇(一种外周味觉器官)中对甜味有反应的味觉受体神经元(GRNs)所表达的离子型受体IR25a和IR76b,介导了对稀释羧酸的开胃进食行为。在此,我们揭示了果蝇中存在咽部传感器,其能检测摄入的羧酸,并且也参与对羧酸的开胃反应。这些咽部传感器依靠IR51b、IR94a和IR94h,以及IR25a和IR76b,来驱动对羧酸的反应。然后我们证明,对果蝇GRNs或蚊子GRNs的光遗传学激活会促进开胃进食反应,证实了它们对开胃进食行为的作用。我们对昆虫内部咽部酸味受体的发现,为研究昆虫味觉物质的内部感觉开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11da/11634064/6f0b209f1ad3/elife-101439-fig1.jpg

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