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Zebrafish aversive taste co-receptor is expressed in both chemo- and mechanosensory cells and plays a role in lateral line development

机译:斑马鱼厌恶味共受体在化学和机械感觉细胞中均表达并在侧线发育中起作用

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摘要

Fishes rely on both chemical and tactile senses to orient themselves to avoid predators, and to detect and taste food. This is likely achieved by highly coordinated reception of signals by mechano- and chemosensory receptors in fish. A small co-receptor from zebrafish, receptor activity modifying protein (RAMP)-like triterpene glycoside receptor (RL-TGR), was previously found to be involved in recognition of triterpene glycosides, a family of naturally occurring compounds that act as chemical defenses in various prey species. However, its localization, function, and how it impacts sensory organ development in vivo is not known. Here we show that RL-TGR is expressed in zebrafish in both i) apical microvilli of the chemosensory cells of taste buds including the epithelium of lips and olfactory epithelium, and ii) mechanosensory cells of neuromasts belonging to the lateral line system. Loss-of-function analyses of RL-TGR resulted in significantly decreased number of neuromasts in the posterior lateral line system and decreased body length, suggesting that RL-TGR is involved in deposition and migration of the neuromasts. Collectively, these results provide the first in vivo genetic evidence of sensory cell-specific expression of this unusual co-receptor and reveal its additional role in the lateral line development in zebrafish.
机译:鱼类依靠化学和触觉来定向自身,以避开捕食者,并检测和品尝食物。这可能是通过鱼类中的机械和化学感应受体高度协调地接收信号来实现的。斑马鱼的一个小的共受体,受体活性修饰蛋白(RAMP)样的三萜糖苷受体(RL-TGR),先前被发现与三萜糖苷的识别有关,三萜糖苷是一种天然存在的化合物,可作为一种化学防御物质。各种猎物。但是,其定位,功能以及如何影响体内感觉器官的发育尚不清楚。在这里,我们显示RL-TGR在i)味蕾的化学感觉细胞的顶端微绒毛(包括嘴唇的上皮和嗅觉上皮)和ii)属于侧线系统的神经质的机械感觉细胞中在斑马鱼中表达。 RL-TGR的功能丧失分析导致后侧线系统中神经末梢的数量显着减少,体长减小,这表明RL-TGR参与了神经末梢的沉积和迁移。总的来说,这些结果提供了该异常共同受体感觉细胞特异性表达的第一个体内遗传证据,并揭示了其在斑马鱼侧线发育中的附加作用。

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