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金鱼个体嗅觉神经元对一系列性信息素和食物气味的化学敏感性和电活性。

The Chemical Sensitivity and Electrical Activity of Individual Olfactory Sensory Neurons to a Range of Sex Pheromones and Food Odors in the Goldfish.

机构信息

Okazaki Institute for Integrative Bioscience, Biosensing Research, Higashiyama Myodaijicho, Okazaki, Aichi, Japan.

Department of Fisheries, Wildlife and Conservation Biology, University of Minnesota, St Paul, MN, USA.

出版信息

Chem Senses. 2018 Apr 23;43(4):249-260. doi: 10.1093/chemse/bjy016.

Abstract

Although it is well established that the olfactory epithelium of teleost fish detects at least 6 classes of biologically relevant odorants using 5 types of olfactory sensory neurons (OSNs), little is understood about the specificity of individual OSNs and thus how they encode identity of natural odors. In this study, we used in vivo extracellular single-unit recording to examine the odor responsiveness and physiological characteristics of 109 individual OSNs in mature male goldfish to a broad range of biological odorants including feeding stimuli (amino acids, polyamines, nucleotides), sex pheromones (sex steroids, prostaglandins [PGs]), and a putative social cue (bile acids). Sixty-one OSNs were chemosensitive, with over half of these (36) responding to amino acids, 7 to polyamines, 7 to nucleotides, 5 to bile acids, 9 to PGs, and 7 to sex steroids. Approximately a quarter of the amino acid-sensitive units also responded to polyamines or nucleotides. Three of 6 amino acid-sensitive units responded to more than 1 amino acid compound, and 5 sex pheromone-sensitive units detected just 1 sex pheromone. While pheromone-sensitive OSNs also responded to the adenylyl cyclase activator, forskolin, amino acid-sensitive OSNs responded to either forskolin or a phospholipase C activator, imipramine. Most OSNs responded to odorants and activators with excitation. Our results suggest that pheromone information is encoded by OSNs specifically tuned to single sex pheromones and employ adenylyl cyclase, suggestive of a labeled-line organization, while food information is encoded by a combination of OSNs that use both adenylyl cyclase and phospholipase C and are often less specifically tuned.

摘要

尽管已经证实,硬骨鱼的嗅上皮使用 5 种嗅觉感觉神经元(OSN)检测至少 6 类具有生物学相关性的气味,但对于单个 OSN 的特异性及其如何编码天然气味的身份,我们知之甚少。在这项研究中,我们使用体内细胞外单细胞记录技术,研究了成熟雄性金鱼中 109 个单个 OSN 对广泛的生物气味的反应性和生理特征,这些气味包括摄食刺激物(氨基酸、多胺、核苷酸)、性信息素(性激素、前列腺素[PGs])和一种假定的社会线索(胆汁酸)。61 个 OSN 对化学物质敏感,其中超过一半(36 个)对氨基酸有反应,7 个对多胺有反应,7 个对核苷酸有反应,5 个对胆汁酸有反应,9 个对 PGs 有反应,7 个对性激素有反应。大约四分之一的氨基酸敏感单位也对多胺或核苷酸有反应。3 个氨基酸敏感单位对超过 1 种氨基酸化合物有反应,5 个性信息素敏感单位只检测到 1 种性信息素。虽然性信息素敏感 OSN 也对腺苷酸环化酶激活剂 forskolin 有反应,但氨基酸敏感 OSN 对 forskolin 或磷脂酶 C 激活剂 imipramine 有反应。大多数 OSN 对气味和激活剂的反应是兴奋的。我们的结果表明,性信息素的信息是由专门针对单一性信息素的 OSN 编码的,并且使用腺苷酸环化酶,暗示了标记线组织,而食物信息是由使用腺苷酸环化酶和磷脂酶 C 的 OSN 组合编码的,并且通常调谐性较低。

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