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Differences in the respiratory response to temperature and hypoxia across four life-stages of the intertidal porcelain crab Petrolisthes laevigatus

机译:潮间瓷蟹四个生命阶段对温度和缺氧的呼吸反应差异

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For aquatic breathers, hypoxia and warming can act synergistically causing a mismatch between oxygen supply (reduced by hypoxia) and oxygen demand (increased by warming). The vulnerability of these species to such interactive effects may differ during ontogeny due to differing gas exchange systems. This study examines respiratory responses to temperature and hypoxia across four life-stages of the intertidal porcelain crab Petrolisthes laevigatus. Eggs, megalopae, juveniles and adults were exposed to combinations of temperatures from 6 to 18 A degrees C and oxygen tensions from 2 to 21 kPa. Metabolic rates differed strongly across life-stages which could be partly attributed to differences in body mass. However, eggs exhibited significantly lower metabolic rates than predicted for their body mass. For the other three stages, metabolic rates scaled with a mass exponent of 0.89. Mass scaling exponents were similar across all temperatures, but were significantly influenced by oxygen tension (the highest at 9 and 14 kPa, and the lowest at 2 kPa). Respiratory responses across gradients of oxygen tension were used to calculate the response to hypoxia, whereby eggs, megalopae and juveniles responded as oxyconformers and adults as oxyregulators. The thermal sensitivity of the metabolic rates (Q (10)) were dependent on the oxygen tension in megalopae, and also on the interaction between oxygen tension and temperature intervals in adults. Our results thus provide evidence on how the oxygen tension can modulate the mass dependence of metabolic rates and demonstrate changes in respiratory control from eggs to adults. In light of our results indicating that adults show a good capacity for maintaining metabolism independent of oxygen tension, our study highlights the importance of assessing responses to multiple stressors across different life-stages to determine how vulnerability to warming and hypoxia changes during development.
机译:对于水上呼吸器,缺氧和变暖可以协同作用,从而导致氧气供应(由缺氧减少)和需氧量(由变暖增加)之间不匹配。由于不同的气体交换系统,这些物种对此类相互作用的脆弱性在个体发育过程中可能会有所不同。这项研究检查了潮间瓷蟹Petrolisthes laevigatus四个生命阶段对温度和缺氧的呼吸反应。鸡蛋,巨lop,幼虫和成虫暴露于6至18 A摄氏度的温度和2至21 kPa的氧气张力的组合。生命周期之间的代谢率差异很大,这可能部分归因于体重差异。但是,鸡蛋的代谢率显着低于其体重的预测值。对于其他三个阶段,新陈代谢率的质量指数为0.89。在所有温度下,质量标度指数均相似,但受氧张力的影响最大(最高为9 kPa和14 kPa,最低为2 kPa)。跨氧气张力梯度的呼吸反应用于计算对缺氧的反应,其中蛋,巨lop和幼虫作为氧适形者而成年人作为氧调节剂。代谢率(Q(10))的热敏感性取决于成年人的氧张力,也取决于成年人的氧张力和温度间隔之间的相互作用。因此,我们的结果提供了关于氧张力如何调节代谢率的质量依赖性的证据,并证明了从卵到成年人呼吸控制的变化。鉴于我们的结果表明成年人表现出良好的维持新陈代谢的能力,而不受氧气紧张的影响,我们的研究强调了评估不同生命阶段对多种应激源反应的重要性,以确定在发育过程中对变暖和缺氧的脆弱性如何变化的重要性。

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  • 来源
    《Marine biology》 |2018年第9期|146.1-146.10|共10页
  • 作者单位

    Univ Los Lagos, Ctr I Mar, Casilla 557, Puerto Montt, Chile;

    Univ Los Lagos, Ctr I Mar, Casilla 557, Puerto Montt, Chile;

    Radboud Univ Nijmegen, Inst Water & Wetland Res, Dept Anim Ecol & Physiol, POB 9010, NL-6500 GL Nijmegen, Netherlands;

    Univ Los Lagos, Ctr I Mar, Casilla 557, Puerto Montt, Chile;

    Univ Austral Chile, Inst Acuicultura, Casilla 1327, Puerto Montt, Chile;

    Univ Los Lagos, Ctr I Mar, Casilla 557, Puerto Montt, Chile;

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