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The effect of water temperature and flow on respiration in barnacles:

机译:水温和流量对藤壶呼吸的影响:

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摘要

In aquatic systems, physiological processes such as respiration, photosynthesis and calcification are potentially limited by the exchange of dissolved materials between organisms and their environment. The nature and extent of physiological limitation is, therefore, likely to be dependent on environmental conditions. Here, we assessed the metabolic sensitivity of barnacles under a range of water temperatures and velocities, two factors that influence their distribution. Respiration rates increased in response to changes in temperature and flow, with an interaction where flow had less influence on respiration at low temperatures, and a much larger effect at high temperatures. Model analysis suggested that respiration is mass transfer limited under conditions of low velocity (<7.5 cm(-1)) and high temperature (20-25 degrees C). In contrast, limitation by uptake reaction kinetics, when the biotic capacity of barnacles to absorb and process oxygen is slower than its physical delivery by mass transport, prevailed at high flows (40-150 cm s(-1)) and low temperatures (5-15 degrees C). Moreover, there are intermediate flow-temperature conditions where both mass transfer and kinetic limitation are important. Behavioral monitoring revealed that barnacles fully extend their cirral appendages at low flows and display abbreviated 'testing' behaviors at high flows, suggesting some form of mechanical limitation. In low flow-high temperature treatments, however, barnacles displayed distinct 'pumping' behaviors that may serve to increase ventilation. Our results suggest that in slow-moving waters, respiration may become mass transfer limited as temperatures rise, whereas faster flows may serve to ameliorate the effects of elevated temperatures. Moreover, these results underscore the necessity for approaches that evaluate the combined effects of multiple environmental factors when examining physiological and behavioral performance
机译:在水生系统中,诸如呼吸,光合作用和钙化之类的生理过程可能受到有机物与其环境之间交换溶解物质的限制。因此,生理限制的性质和程度可能取决于环境条件。在这里,我们评估了藤壶在一定水温和水温下的代谢敏感性,这是两个影响藤壶分布的因素。呼吸速率随温度和流量的变化而增加,在低温下,流量对呼吸的影响较小,而在高温下,则影响更大。模型分析表明,在低速(<7.5 cm(-1))和高温(20-25摄氏度)的条件下,呼吸受到传质的限制。相反,当藤壶的吸收和处理氧气的生物能力慢于其通过质量传输的物理传递时,则受到吸收反应动力学的限制,这种现象在高流量(40-150 cm s(-1))和低温下普遍存在(5 -15摄氏度)。此外,在中间流动温度条件下,传质和动力学限制都很重要。行为监测表明,藤壶在低流量时会充分伸展其附肢,并在高流量时表现出简化的“测试”行为,表明某种形式的机械限制。然而,在低流量高温处理中,藤壶表现出明显的“泵吸”行为,可能有助于增加通风。我们的结果表明,在水流缓慢的水中,呼吸可能随着温度的升高而受到传质的限制,而更快的流量可能有助于缓解高温的影响。此外,这些结果强调了在检查生理和行为表现时评估多种环境因素综合作用的方法的必要性

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