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首页> 外文期刊>The Journal of Experimental Biology >Intraspecific variation in physiological performance of a benthic elasmobranch challenged by ocean acidification and warming
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Intraspecific variation in physiological performance of a benthic elasmobranch challenged by ocean acidification and warming

机译:海洋酸化和变暖挑战底栖弹bra的生理性能的种内变化

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Elucidating the combined effects of increasing temperature and ocean acidification on performance of fishes is central to our understanding of how species will respond to global climate change. Measuring the metabolic costs associated with intense and short activities, such as those required to escape predators, is key to quantifying changes in performance and estimating the potential effects of environmental stressors on survival. In this study, juvenile little skate Leucoraja erinacea from two neighboring locations (Gulf of Maine, or northern location, and Georges Bank, or southern location) were developmentally acclimatized and reared at current and projected temperatures (15, 18 or 20 degrees C) and acidification conditions (pH 8.1 or 7.7), and their escape performance was tested by employing a chasing protocol. The results from this study suggest countergradient variation in growth between skates from the two locations, while the optimum for escape performance was at a lower temperature in individuals from the northern latitudes, which could be related to adaptation to the local thermal environment. Aerobic performance and scope declined in skates from the northern latitudes under simulated ocean warming and acidification conditions. Overall, the southern skates showed lower sensitivity to these climatic stressors. This study demonstrates that even mobile organisms from neighboring locations can exhibit substantial differences in energetic costs of exercise and that skates from the northern part of the geographic range may be more sensitive to the directional increase in temperature and acidification expected by the end of the century.
机译:阐明温度升高和海洋酸化对鱼类生长的综合影响,对于我们对物种如何应对全球气候变化的理解至关重要。测量与激烈和短暂活动相关的代谢成本,例如逃避捕食者所需的代谢成本,是量化性能变化和估算环境压力因素对生存的潜在影响的关键。在这项研究中,来自两个相邻地点(缅因州湾或北部地点,和乔治银行或南部地点)的幼小滑冰Leucoraja erinacea在当前温度和预计温度(15、18或20摄氏度)下进行了驯化和饲养。酸化条件(pH 8.1或7.7)及其逃逸性能通过采用追赶协议进行了测试。这项研究的结果表明,这两个地点之间的溜冰鞋之间的生长变化呈反梯度变化,而北纬地区个体的逃生性能最佳温度较低,这可能与适应当地的热环境有关。在模拟的海洋变暖和酸化条件下,北纬溜冰鞋的有氧性能和范围下降。总体而言,南部冰鞋对这些气候压力源的敏感性较低。这项研究表明,即使来自邻近地区的移动生物体在运动的能量消耗上也可能表现出显着差异,并且来自地理范围北部的滑冰鞋可能对本世纪末预期的温度和酸化的定向增加更为敏感。

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