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鱼类的味觉和嗅觉:专门子系统与中枢整合的综述

Taste(s) and olfaction(s) in fish: a review of spezialized sub-systems and central integration.

作者信息

Kotrschal Kurt

机构信息

Lorenz Forschungsstelle and University of Vienna, A-4645 Grünau 11, Austria, , , , , , AU.

出版信息

Pflugers Arch. 2000 Jan;439(Suppl 1):r178-r180. doi: 10.1007/s004240000137.

Abstract

Evidence from comparative morphology and electrophysiology suggests that both, olfaction and taste in fish serve different ecological roles. The lateral olfactory system (dorsolateral olfactory bulb glomeruli and lateral olfactory tract) and the external taste buds are probably specialized for food search and amino acid discrimination. The medial olfactory system (basomedial olfactory bulb glomeruli and medial olfactory tract) and the solitary chemosensory taste cells, however, may have their roles in intra-and interspecific interactions (discriminating pheromones by olfaction, bile components by both olfaction and taste). Whereas stimulation of the taste systems alone triggers reflexes, complex, conditional or conditioned behaviours are only released when the olfactory system is intact. This points at the importance of telencephalic and diencephalic integration of olfactory and taste inputs. Consequently, caution is appropriate concerning simplistic interpretations of deprivation experiments.

摘要

来自比较形态学和电生理学的证据表明,鱼类的嗅觉和味觉都发挥着不同的生态作用。外侧嗅觉系统(背外侧嗅球肾小球和外侧嗅束)以及外部味蕾可能专门用于食物搜索和氨基酸辨别。然而,内侧嗅觉系统(基底内侧嗅球肾小球和内侧嗅束)以及孤立的化学感受味觉细胞可能在种内和种间相互作用中发挥作用(通过嗅觉辨别信息素,通过嗅觉和味觉辨别胆汁成分)。虽然仅刺激味觉系统会引发反射,但只有当嗅觉系统完整时,复杂的、条件性或条件反射行为才会被触发。这表明端脑和间脑对嗅觉和味觉输入进行整合的重要性。因此,对于剥夺实验的简单解释应谨慎对待。

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