首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Testing potential bias in marine plankton respiration rates by dark bottle incubations in the NW Iberian shelf: Incubation time and bottle volume
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Testing potential bias in marine plankton respiration rates by dark bottle incubations in the NW Iberian shelf: Incubation time and bottle volume

机译:通过在西北伊比利亚大陆架上进行暗瓶培养来测试海洋浮游生物呼吸速率的潜在偏差:潜伏时间和容积

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The accurate determination of the balance between plankton production and respiration in the ocean is important for C budgets and global change predictions. Disagreements on the measurement of such a balance at different scales (from microbiological to biogeochemical) have produced a controversy over the trophic status of the ocean. This is especially striking in the oligotrophic open ocean, where plankton community O_2 consumption rates in 24h incubations have frequently produced a net heterotrophic balance, but similar difficulties emerge in coastal systems. These results have been criticised due to the possibility that the standard 24h in vitro incubations are biased because of the long incubation time needed and the so-called "bottle effect". To study the influence of the incubation time and bottle volume on the measurement of plankton net metabolism, we carried out several time series experiments in the NW Iberian coastal system. Here we present measurements of plankton community respiration rates concurrently obtained through (1) standard in vitro changes in dissolved oxygen concentration after different incubation times ranging from 2 to 48. h, and with bottle volumes of 50, 125 and 570. mL, and (2) the decrease in the oxygen concentration measured every 20. s with oxygen microsensors, during 48. h. Our results refute the contention that 24. h dark 125. mL bottle incubations are systematically biased, and highlight the validity of oxygen microsensors to study the dynamics of natural marine plankton respiration.
机译:准确确定海洋中浮游生物产量与呼吸之间的平衡对于碳预算和全球变化预测至关重要。在不同尺度上(从微生物学到生物地球化学)对这种天平的测量存在分歧,这引起了海洋营养状况的争议。这在贫营养的开放海洋中尤其明显,那里的24h孵化中浮游生物群落O_2的消耗率经常产生净的异养平衡,但是在沿海系统中也出现了类似的困难。由于需要长时间的孵育时间和所谓的“瓶效应”,有可能使标准的24h体外孵育有偏差,因此对这些结果提出了批评。为了研究孵育时间和瓶容量对浮游生物净代谢测量的影响,我们在西北伊比利亚沿海系统进行了多个时间序列实验。在这里,我们介绍了通过(1)在2至48. h,瓶体积分别为50、125和570 mL的不同孵育时间后,通过体外溶解氧浓度的标准体外变化同时获得的浮游生物群落呼吸速率的测量值,以及( 2)在48. h内,用氧气微传感器每20 s测量一次的氧气浓度降低。我们的结果驳斥了24. h暗125. mL瓶的培养存在系统偏差的论点,并强调了氧气微传感器对研究天然海洋浮游生物呼吸动力学的有效性。

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