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Impact of ocean acidification on escape performance of the king scallop, Pecten maximus, from Norway

机译:海洋酸化对挪威扇贝王大扇贝逃逸性能的影响

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摘要

The ongoing process of ocean acidification already affects marine life, and according to the concept of oxygen and capacity limitation of thermal tolerance, these effects may be intensified at the borders of the thermal tolerance window. We studied the effects of elevated CO_2 concentrations on clapping performance and energy metabolism of the commercially important scallop Pecten maximus. Individuals were exposed for at least 30 days to 4 ℃ (winter) or to 10 ℃ (spring/summer) at either ambient (0.04 kPa, normocapnia) or predicted future PCO_2 levels (0.11 kPa, hypercapnia). Cold-exposed (4 ℃) groups revealed thermal stress exacerbated by PCO_2 indicated by a high mortality overall and its increase from 55 % under normocapnia to 90 % under hypercapnia. We therefore excluded the 4 ℃ groups from further experimentation. Scallops at 10 ℃ showed impaired clapping performance following hypercapnic exposure. Force production was significantly reduced although the number of claps was unchanged between normocapnia- and hyper-capnia-exposed scallops. The difference between maximal and resting metabolic rate (aerobic scope) of the hypercapnic scallops was significantly reduced compared with normocapnic animals, indicating a reduction in net aerobic scope. Our data confirm that ocean acidification narrows the thermal tolerance range of scallops resulting in elevated vulnerability to temperature extremes and impairs the animal's performance capacity with potentially detrimental consequences for its fitness and survival in the ocean of tomorrow.
机译:正在进行的海洋酸化过程已经影响到海洋生物,根据氧气的概念和热耐受能力的限制,这些影响可能会在热耐受窗口的边界处加剧。我们研究了升高的CO_2浓度对商业上重要的扇贝大花蜜拍手性能和能量代谢的影响。将个体暴露于环境(0.04 kPa,正常血症)或预测的未来PCO_2水平(0.11 kPa,高碳酸血症)的4℃(冬季)或10℃(春季/夏季)至少30天。冷暴露(4℃)组显示PCO_2加剧了热应激,表明总体死亡率较高,并且从正常碳酸血症下的55%增加到高碳酸血症下的90%。因此,我们从进一步的实验中排除了4℃组。暴露于高碳酸血症后,扇贝在10℃表现出拍手性能受损。尽管在常碳酸血症和高碳酸血症暴露的扇贝之间拍手的数量没有变化,但是力量的产生却大大减少了。高碳酸氢盐扇贝的最大代谢率和静息代谢率(有氧作用域)之间的差异与正常动物相比明显减少,表明净有氧作用域的减少。我们的数据证实,海洋酸化会缩小扇贝的热耐受范围,导致对极端温度的脆弱性增强,并损害动物的生产能力,并对其明天的海洋健康和生存产生潜在的不利影响。

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  • 来源
    《Marine biology》 |2013年第8期|1995-2006|共12页
  • 作者单位

    Integrative OEkophysiologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Am Handelshafen 12, 27570 Bremerhaven, Germany;

    Integrative OEkophysiologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Am Handelshafen 12, 27570 Bremerhaven, Germany;

    Funktionelle OEkologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Columbusstrasse, 27570 Bremerhaven, Germany;

    Funktionelle OEkologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Columbusstrasse, 27570 Bremerhaven, Germany;

    Integrative OEkophysiologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Am Handelshafen 12, 27570 Bremerhaven, Germany;

    Integrative Oekophysiologie, Alfred Wegener Institut fuer Polar-und Meeresforschung in der Helmholtz-Gemeinschaft, Am Handelshafen 12, 27570 Bremerhaven, Germany;

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