首页> 美国卫生研究院文献>Conservation Physiology >At the edge of the thermal window: effects of elevated temperature on the resting metabolism hypoxia tolerance and upper critical thermal limit of a widespread African cichlid
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At the edge of the thermal window: effects of elevated temperature on the resting metabolism hypoxia tolerance and upper critical thermal limit of a widespread African cichlid

机译:在热窗口的边缘:高温对广泛分布的非洲丽鱼科鱼的静息代谢耐缺氧性和临界热上限的影响

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摘要

Tropical inland fishes are predicted to be especially vulnerable to thermal stress because they experience small temperature fluctuations that may select for narrow thermal windows. In this study, we measured resting metabolic rate (RMR), critical oxygen tension (Pcrit) and critical thermal maximum (CTMax) of the widespread African cichlid (Pseudocrenilabrus multicolor victoriae) in response to short-term acclimation to temperatures within and above their natural thermal range. Pseudocrenilabrus multicolor collected in Lake Kayanja, Uganda, a population living near the upper thermal range of the species, were acclimated to 23, 26, 29 and 32°C for 3 days directly after capture, and RMR and Pcrit were then quantified. In a second group of P. multicolor from the same population, CTMax and the thermal onset of agitation were determined for fish acclimated to 26, 29 and 32°C for 7 days. Both RMR and Pcrit were significantly higher in fish acclimated to 32°C, indicating decreased tolerance to hypoxia and increased metabolic requirements at temperatures only slightly (∼1°C) above their natural thermal range. The CTMax increased with acclimation temperature, indicating some degree of thermal compensation induced by short-term exposure to higher temperatures. However, agitation temperature (likely to represent an avoidance response to increased temperature during CTMax trials) showed no increase with acclimation temperature. Overall, the results of this study demonstrate that P. multicolor is able to maintain its RMR and Pcrit across the range of temperatures characteristic of its natural habitat, but incurs a higher cost of resting metabolism and reduced hypoxia tolerance at temperatures slightly above its present range.
机译:预计热带内陆鱼类特别容易受到热应力的影响,因为它们的温度波动较小,可能会选择较窄的热窗。在这项研究中,我们针对短期适应环境温度高于或高于自然温度的非洲慈鲷(Pseudocrenilabrus multicolor victoriae),测量了其静止代谢速率(RMR),临界氧张力(Pcrit)和临界热最大值(CTMax)。热范围。在乌干达的卡亚尼亚加湖(该物种生活在该物种的较高温度范围内)附近采集的多色假单胞菌在捕获后立即将其适应于23、26、29和32°C 3天,然后对RMR和Pcrit进行定量。在来自同一种群的第二组多色体育中,确定了适应于26、29和32°C 7天的鱼的CTMax和搅动的热开始。适应32°C的鱼类的RMR和Pcrit均显着较高,这表明在仅略高于其自然热量范围的温度(约1°C)下,对低氧的耐受性降低且代谢需求增加。 CTMax随着环境温度的升高而增加,表明短期暴露于较高温度会引起一定程度的热补偿。但是,搅拌温度(可能表示在CTMax试验期间避免了对温度升高的反应)随适应温度的升高而没有升高。总体而言,这项研究的结果表明,多色体育能够在其自然栖息地的整个温度范围内维持其RMR和Pcrit,但在稍高于其当前温度的温度下,会导致较高的静息代谢成本和降低的耐缺氧性。

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