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The response of Atlantic cod, Gadus morhua, to progressive hypoxia: fish swimming speed and physiological stress

机译:大西洋鳕鱼Gadus morhua对进行性缺氧的反应:鱼类游泳速度和生理压力

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摘要

Atlantic cod, Gadus morhua, were exposed to a progressive stepwise decline in water oxygen pressure (19.9, 13.2, 10.5, 8.4, 6.2 and 4.3 kPa P_(O_2)). Fish swimming speed and indicators of primary and secondary stress (e.g. blood cortisol and lactate) were measured to assess whether a severe shift in physiological homeo-stasis (i.e. stress) preceded any change in behaviour or vice versa. Swimming speed increased by 18% when P_(O_2) was reduced rapidly from 19.9 kPa to 13.2 kPa and was interpreted as an initial avoidance response. However, swimming speed was reduced by 21% at a moderate level of steady P_(O_2) (8.4 kPa) and continued to drop by 41% under progressively deep hypoxia (4.3 kPa). Elevations in plasma cortisol and blood lactate indicated major physiological stress but only at 4.3 kPa, which corresponds to the critical oxygen tension of this species. We propose that the drop in speed during hypoxia aids to offset major stress and is adaptive for the survival of cod in extensive areas of low oxygen.
机译:大西洋鳕鱼Gadus morhua暴露于逐步升高的水氧压力下(19.9、13.2、10.5、8.4、6.2和4.3 kPa P_(O_2))。测量鱼的游泳速度和主要和次要压力指标(例如血液中的皮质醇和乳酸盐),以评估是否在行为改变之前出现了生理上的体内稳态(即压力)的严重变化,反之亦然。当P_(O_2)从19.9 kPa迅速降低到13.2 kPa时,游泳速度提高了18%,这被认为是最初的回避反应。然而,在中等水平的稳定P_(O_2)(8.4 kPa)下,游泳速度降低了21%,而在渐进深度缺氧(4.3 kPa)下,游泳速度继续下降了41%。血浆皮质醇和血液乳酸的升高表明主要的生理压力,但仅在4.3 kPa时,这对应于该物种的临界氧张力。我们提出,低氧期间速度的下降有助于抵消主要压力,并且适合鳕鱼在低氧区域的生存。

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