首页> 外文期刊>Chronobiology international >Acute stress response in gilthead sea bream (Sparus aurata L.) is time-of-day dependent: Physiological and oxidative stress indicators
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Acute stress response in gilthead sea bream (Sparus aurata L.) is time-of-day dependent: Physiological and oxidative stress indicators

机译:金头鲷(Sparus aurata L.)的急性应激反应与时间相关:生理和氧化应激指标

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Since fish show daily rhythms in most physiological functions, it should not be surprising that stressors may have different effects depending on the timing of exposure. In this study, we investigated the influence of time of day on the stress responses, at both physiological and cellular levels, in gilthead sea bream (Sparus aurata L.) submitted to air exposure for 30 s and then returned to their tank. One hour after air exposure, blood, hypothalamus and liver samples were taken. Six fish per experimental group (control and stressed) were sampled every 4 h during a 24-h cycle. Fish were fed in the middle of the light cycle (ML) and locomotor activity rhythms were recorded using infrared photocells to determine their daily activity pattern of behaviour, which showed a peak around feeding time in all fish. In the control group, cortisol levels did not show daily rhythmicity, whereas in the stressed fish, a daily rhythm of plasma cortisol was observed, being the average values higher than in the control group, with increased differences during the dark phase. Blood glucose showed daily rhythmicity in the control group but not in the stressed one which also showed higher values at all sampling points. In the hypothalamus of control fish, a daily rhythm of corticotropin-releasing hormone (crh) gene expression was observed, with the acrophase at the beginning of the light phase. However, in the stressed fish, this rhythm was abolished. The expression of crh-binding protein (crhbp) showed a peak at the end of the dark phase in the control group, whereas in the stressed sea bream, this peak was found at ML. Regarding hepatic gene expression of oxidative stress biomarkers: (i) cytochrome c oxidase 4 showed daily rhythmicity in both control and stressed fish, with the acrophases located around ML, (ii) peroxiredoxin (prdx) 3 and 5 (prdx5) only presented daily rhythmicity of expression in the stressed fish, with the acrophase located at the beginning of the light cycle and (iii) uncoupling protein 1 showed significant differences between sampling points only in the control group, with significantly higher expression at the beginning of the dark phase. Taken together, these results indicate that stress response in gilthead sea bream is time-dependent as cortisol level rose higher at night, and that different rhythmic mechanisms interplay in the control of neuroendocrine and cellular stress responses.
机译:由于鱼类在大多数生理功能上都表现出日常节律,因此,根据暴露时间的不同,压力源可能会产生不同的影响也就不足为奇了。在这项研究中,我们研究了一天中的时间对暴露于空气中30 s的金头鲷(Sparus aurata L.)在生理和细胞水平上的应激反应的影响,然后将它们放回它们的水箱。暴露于空气后一小时,采集血液,下丘脑和肝脏样本。每个实验组(对照组和压力组)在24小时周期内每4小时取样6条鱼。在光周期(ML)的中间喂鱼,并使用红外光电池记录运动活动节律,以确定其日常活动行为,该行为在所有鱼中都出现了摄食时间的峰值。在对照组中,皮质醇水平没有表现出每日的节律性,而在压力鱼中,观察到血浆皮质醇的每日节律,其平均值高于对照组,并且在黑暗阶段差异增加。对照组的血糖表现出日常节律性,而在压力较大的对照组中则没有,这在所有采样点均表现出较高的值。在对照鱼的下丘脑中,观察到促肾上腺皮质激素释放激素(crh)基因表达的日常节律,顶期处于轻相的开始。但是,在压力较大的鱼中,这种节律被取消了。在对照组中,crh结合蛋白(crhbp)的表达在黑暗阶段结束时出现一个峰值,而在重压鲷鱼中,该峰值出现在ML处。关于氧化应激生物标记物的肝基因表达:(i)对照鱼和应激鱼的细胞色素c氧化酶4均表现出节律性,其顶生相位于ML周围,(ii)过氧化物酶毒素(prdx)3和5(prdx5)仅表现出节律性顶突期位于光周期的开始,并且(iii)解偶联蛋白1仅在对照组中在采样点之间表现出显着差异,而在暗期开始时表达显着更高。综上所述,这些结果表明,随着夜间皮质醇水平升高,金头鲷的应激反应是时间依赖性的,并且不同的节律机制相互作用控制神经内分泌和细胞应激反应。

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