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Responses of circulating arginine vasotocin, isotocin, and melatonin to osmotic and disturbance stress in rainbow trout (Oncorhynchus mykiss)

机译:虹鳟(Oncorhynchus mykiss)循环精氨酸血管收缩素,同位素和褪黑素对渗透压和干扰胁迫的响应

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摘要

In teleost fish exposed to stressors AVT has been implicated in activation of the hypothalamo-pituitary-interrenal axis. Mel has been shown to counteract several behavioural and endocrine consequences of stress in mammals. These studies were undertaken to investigate the effects of either disturbance or osmotic stress, applied either separately or simultaneously, on plasma AVT, IT and melatonin in rainbow trout (Oncorhynchus mykiss). Hormones were determined in plasma by high-performance liquid chromatography preceded by solid-phase extraction. The results showed that both forms of stress caused significant increase in plasma AVT concentration, although more pronounced elevation was observed in physically disturbed fish. Conversely, neither osmotic nor disturbance stress affected plasma IT concentration. The apparent difference in response to stress by the two close related neurohypophysial nonapeptides suggests independent mechanisms controlling their synthesis and/or release and supports the idea that only AVT plays a role in physiological response to stress. Plasma Mel level was depressed in fish subjected to disturbance stress and to both stresses applied simultaneously, an effect possibly associated with the elevation of plasma AVT concentration. Results are discussed in relation to physiological interactions between hormones.
机译:在暴露于应激源的硬骨鱼中,AVT与下丘脑-垂体-肾间轴的激活有关。梅尔已被证明可以抵消哺乳动物在压力下的几种行为和内分泌后果。进行这些研究以研究分别或同时施用的干扰或渗透胁迫对虹鳟(Oncorhynchus mykiss)血浆AVT,IT和褪黑激素的影响。通过高效液相色谱法测定血浆中的激素,然后进行固相萃取。结果表明,两种形式的压力均会导致血浆AVT浓度显着增加,尽管在受到物理干扰的鱼中观察到了更为明显的升高。相反,渗透压和干扰应力均不会影响血浆IT浓度。两种密切相关的神经垂体非肽对应激的应答的明显差异表明,控制其合成和/或释放的独立机制,并支持仅AVT在对应激的生理应答中起作用的观点。受到干扰压力和同时施加两种压力的鱼类的血浆梅尔水平降低,这可能与血浆AVT浓度升高有关。讨论了有关激素之间生理相互作用的结果。

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