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Effects of hypoxia and ocean acidification on the upper thermal niche boundaries of coral reef fishes

机译:缺氧和海洋酸化对珊瑚礁鱼的上部热力利基边界的影响

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Rising ocean temperatures are predicted to cause a poleward shift in the distribution of marine fishes occupying the extent of latitudes tolerable within their thermal range boundaries. A prevailing theory suggests that the upper thermal limits of fishes are constrained by hypoxia and ocean acidification. However, some eurythermal fish species do not conform to this theory, and maintain their upper thermal limits in hypoxia. Here we determine if the same is true for stenothermal species. In three coral reef fish species we tested the effect of hypoxia on upper thermal limits, measured as critical thermal maximum (CTmax). In one of these species we also quantified the effect of hypoxia on oxygen supply capacity, measured as aerobic scope (AS). In this species we also tested the effect of elevated CO2 (simulated ocean acidification) on the hypoxia sensitivity of CTmax. We found that CTmax was unaffected by progressive hypoxia down to approximately 35 mmHg, despite a substantial hypoxia-induced reduction in AS. Below approximately 35 mmHg, CTmax declined sharply with water oxygen tension (PwO2). Furthermore, the hypoxia sensitivity of CTmax was unaffected by elevated CO2. Our findings show that moderate hypoxia and ocean acidification do not constrain the upper thermal limits of these tropical, stenothermal fishes.
机译:预计海洋温度上升导致海洋鱼类分布占据其热范围边界内潜入的纬度范围的突出程度的膨胀程度。普遍理论表明鱼类的上热限制受缺氧和海洋酸化的约束。然而,一些Eurythermal鱼类不符合该理论,并保持其缺氧中的上热限制。在这里,我们可以确定速度物种是否真实。在三种珊瑚礁鱼类中,我们测试了缺氧对上热限值的影响,测量为临界热最大值(Ctmax)。在其中一种物种中,我们还量化了缺氧对氧气供应能力的影响,以有氧范围(如)。在该物种中,我们还测试了升高的CO2(模拟海洋酸化)对CTmax缺氧敏感性的影响。我们发现Ctmax不受渐进缺氧降至约35mmHg的影响,尽管缺氧诱导的缺氧诱导的减少。低于约35mmHg,CTMAX随水氧张力(PWO2)急剧下降。此外,CTmax的缺氧敏感性不受升高的CO 2的影响。我们的研究结果表明,适度的缺氧和海洋酸化不会限制这些热带稳定性鱼类的上热限制。

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