Sang Jiun, Dhakal Subash, Shrestha Bhanu, Nath Dharmendra Kumar, Kim Yunjung, Ganguly Anindya, Montell Craig, Lee Youngseok
Department of Bio and Fermentation Convergence Technology, Kookmin University, Seoul, 02707, Republic of Korea.
These authors contributed equally.
bioRxiv. 2024 Feb 1:2023.10.17.562703. doi: 10.1101/2023.10.17.562703.
Salt is an essential nutrient for survival, while excessive NaCl can be detrimental. In the fruit fly, , internal taste organs in the pharynx are critical gatekeepers impacting the decision to accept or reject a food. Currently, our understanding of the mechanism through which pharyngeal gustatory receptor neurons (GRNs) sense high salt are rudimentary. Here, we found that a member of the ionotropic receptor family, , is expressed exclusively in a pair of GRNs activated by high salt. Using a two-way choice assay (DrosoX) to measure ingestion volume, we demonstrate that IR60b and two coreceptors IR25a and IR76b, are required to prevent high salt consumption. Mutants lacking external taste organs but retaining the internal taste organs in the pharynx exhibit much higher salt avoidance than flies with all taste organs but missing the three IRs. Our findings highlight the vital role for IRs in a pharyngeal GRN to control ingestion of high salt.
盐是生存所必需的营养素,而过量的氯化钠可能有害。在果蝇中,咽部的内部味觉器官是影响接受或拒绝食物决定的关键守门者。目前,我们对咽部味觉受体神经元(GRNs)感知高盐的机制了解尚浅。在这里,我们发现离子型受体家族的一个成员,仅在一对被高盐激活的GRNs中表达。使用双向选择试验(DrosoX)来测量摄入量,我们证明IR60b和两个共受体IR25a和IR76b是防止高盐摄入所必需的。缺乏外部味觉器官但保留咽部内部味觉器官的突变体比所有味觉器官都有但缺失这三种IRs的果蝇表现出更高的盐回避行为。我们的研究结果突出了IRs在咽部GRN中控制高盐摄入的重要作用。