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在接触类固醇期间,嗅觉感觉输入会增加雄性圆腹雅罗鱼(Neogobius melanostomus)的鳃通气量。

Olfactory sensory input increases gill ventilation in male round gobies (Neogobius melanostomus) during exposure to steroids.

作者信息

Belanger Rachelle M, Corkum Lynda D, Li Weiming, Zielinski Barbara S

机构信息

Department of Biological Sciences, University of Windsor, Windsor, ON, Canada N9B 3P4.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2006 Jun;144(2):196-202. doi: 10.1016/j.cbpa.2006.02.027. Epub 2006 Feb 28.

Abstract

In teleostean fish, ventilation increases have been observed in response to low dissolved oxygen levels, visual stimuli, and gustatory cues. However, olfactory sensory input may also stimulate gill ventilation rate. We investigated whether olfactory sensory input mediates gill ventilation responses, as suggested by the observation that steroidal compounds detected by the olfactory system elicited increases in opercular activity in the perciform teleost, the round goby (Neogobius melanostomus). Close parallels between gill ventilation and olfactory responses, led us to conduct an empirical study that used two different olfactory sensory deprivation techniques to seek a causal relationship between olfactory epithelial activity and hyperventilation. Chemical lesion of olfactory sensory neurons or mechanical occlusion of the nasal cavities inhibited gill ventilation responses of reproductive male round gobies to estrone (1,3,5(10)-estratrien-3-ol-17-one) and to ovarian extracts. This direct evidence demonstrates the role of olfactory sensory input for the gill ventilation response to putative reproductive pheromones and may represent an important regulatory mechanism for odorant sampling during pheromone communication.

摘要

在硬骨鱼类中,已观察到其呼吸频率会因溶解氧水平降低、视觉刺激和味觉线索而增加。然而,嗅觉感官输入也可能刺激鳃的呼吸频率。我们研究了嗅觉感官输入是否介导鳃的呼吸反应,这一推测源于以下观察结果:嗅觉系统检测到的甾体化合物会引起鲈形目硬骨鱼——圆口虾虎鱼(Neogobius melanostomus)的鳃盖活动增加。鳃呼吸与嗅觉反应之间的密切相似性,促使我们开展一项实证研究,该研究采用两种不同的嗅觉感官剥夺技术,以探寻嗅觉上皮活动与过度通气之间的因果关系。嗅觉感觉神经元的化学损伤或鼻腔的机械阻塞抑制了繁殖期雄性圆口虾虎鱼对雌酮(1,3,5(10)-雌甾三烯-3-醇-17-酮)和卵巢提取物的鳃呼吸反应。这一直接证据证明了嗅觉感官输入在鳃对假定生殖信息素的呼吸反应中的作用,并且可能代表了在信息素交流过程中气味采样的一种重要调节机制。

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