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The effects of acute and chronic hypoxia on cortisol, glucose and lactate concentrations in different populations of three-spined stickleback

机译:急性和慢性缺氧对三刺棘背不同人群皮质醇,葡萄糖和乳酸浓度的影响

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摘要

The response of individuals from three different populations of three-spined sticklebacks to acute and chronic periods of hypoxia (4.4 kPa DO, 2.2 mg l-1) were tested using measures of whole-body (WB) cortisol, glucose and lactate. Although there was no evidence of a neuroendocrine stress response to acute hypoxia, fish from the population least likely to experience hypoxia in their native habitat had the largest response to low oxygen, with significant evidence of anaerobic glycolysis after two hours of hypoxia. However, there was no measurable effect of a more prolonged period (seven days) of hypoxia on any of the fish in this study, suggesting that they acclimated to this low level of oxygen over time. Between-population differences in the analytes tested were observed in the control fish of the acute hypoxia trial, which had been in the laboratory for 16 days. However, these differences were not apparent among the control fish in the chronic exposure groups that had been held in the laboratory for 23 days suggesting that these site-specific trends in physiological status were acclimatory. Overall, the results of this study suggest that local environmental conditions may shape sticklebacks’ general physiological profile as well as influencing their response to hypoxia.
机译:使用全身(WB)皮质醇,葡萄糖和乳酸的量度方法,测试了来自三个不同种群的三梭stick的个体对急性和慢性缺氧的反应(4.4 kPa DO,2.2 mg l-1)。尽管没有证据表明对急性缺氧有神经内分泌应激反应,但种群中鱼类在其原始栖息地中发生缺氧的可能性最小,对低氧的反应最大,有明显证据表明缺氧两小时后厌氧糖酵解。然而,在这项研究中,更长的缺氧时间(七天)对任何鱼类都没有可测量的影响,表明它们随着时间的推移已经适应了这种低氧水平。在急性缺氧试验的对照鱼中,在实验室中待了16天,观察到被分析物的种群间差异。但是,在实验室中饲养了23天的慢性暴露组的对照鱼之间这些差异并不明显,这表明这些特定部位的生理状态趋势是适应性的。总体而言,这项研究的结果表明,当地环境条件可能会影响stick的总体生理特征,并影响其对缺氧的反应。

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