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首页> 外文期刊>The Journal of Experimental Biology >Juvenile Antarctic rockcod (Trematomus bernacchii) are physiologically robust to CO2-acidified seawater
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Juvenile Antarctic rockcod (Trematomus bernacchii) are physiologically robust to CO2-acidified seawater

机译:幼年南极鳕(Trematomus bernacchii)对CO2酸化的海水具有生理稳定性

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To date, numerous studies have shown negative impacts of CO2-acidified seawater (i.e. ocean acidification, OA) on marine organisms, including calcifying invertebrates and fishes; however, limited research has been conducted on the physiological effects of OA on polar fishes and even less on the impact of OA on early developmental stages of polar fishes. We evaluated aspects of aerobic metabolism and cardiorespiratory physiology of juvenile emerald rockcod, Trematomus bernacchii, an abundant fish in the Ross Sea, Antarctica, to elevated partial pressure of carbon dioxide (P-CO2) [420 (ambient), 650 (moderate) and 1050 (high) mu atm P-CO2] over a 1 month period. We examined cardiorespiratory physiology, including heart rate, stroke volume, cardiac output and ventilation rate, whole organism metabolism via oxygen consumption rate and sub-organismal aerobic capacity by citrate synthase enzyme activity. Juvenile fish showed an increase in ventilation rate under high P-CO2 compared with ambient P-CO2, whereas cardiac performance, oxygen consumption and citrate synthase activity were not significantly affected by elevated P-CO2. Acclimation time had a significant effect on ventilation rate, stroke volume, cardiac output and citrate synthase activity, such that all metrics increased over the 4 week exposure period. These results suggest that juvenile emerald rockcod are robust to near-future increases in OA and may have the capacity to adjust for future increases in P-CO2 by increasing acid-base compensation through increased ventilation.
机译:迄今为止,许多研究表明,CO2酸化的海水(即海洋酸化,OA)对海洋生物(包括无脊椎动物和鱼类的钙化)具有负面影响;然而,关于OA对极地鱼类的生理作用的研究很少,而对OA对极地鱼类早期发育的影响的研究甚至更少。我们评估了南极罗斯海的丰富鱼类少年翡翠岩鳕Trematomus bernacchii的有氧代谢和心肺生理方面的二氧化碳分压(P-CO2)[420(环境),650(中度)和1个月内达到1050(高)大气压的P-CO2]。我们检查了心肺生理,包括心率,中风量,心输出量和通气率,通过耗氧率的全生物代谢和通过柠檬酸合酶活性的亚有机体有氧能力。与环境P-CO2相比,在高P-CO2下幼鱼的通气速率增加,而P-CO2升高对心脏性能,耗氧量和柠檬酸合酶活性没有显着影响。适应时间对通气速率,中风量,心输出量和柠檬酸合酶活性有重要影响,因此在暴露4周期间所有指标均增加。这些结果表明,少年祖母绿鳕鱼对OA的近期增长具有鲁棒性,并且可能具有通过增加通风来增加酸碱补偿来适应P-CO2未来增长的能力。

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