首页> 外文期刊>Journal of Plankton Research >Respiratory ETS activity of plankton in the northwestern Alboran Sea: seasonal variability and relationship with hydrological and biological features
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Respiratory ETS activity of plankton in the northwestern Alboran Sea: seasonal variability and relationship with hydrological and biological features

机译:西北阿尔伯兰海浮游生物的呼吸ETS活性:季节变化及其与水文和生物学特征的关系

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摘要

Respiratory electron transport system (ETS) activity was measured in plankton samples (<200 μm) collected in the NW Alboran Sea. Sampling was carried out during seasonal cruises (summer and autumn 2003 and winter and spring 2004) in 12 stations located in transects off the coast of Malaga (southern Spain). This work reports for the first time seasonal variations of the Arrhenius activation energy (Ea) as well as being the first study to address CO2 balance in the NW Alboran Sea. These variations were related to changes in the phytoplankton community assemblage, which could ultimately be caused by the seasonal variability of hydrological conditions. ETS activity was significantly higher in summer, coinciding with a higher chlorophyll a (Chl a) concentration and relatively high levels of particulate organic matter. The ETS:Chl atotal ratios were low during the four seasons, suggesting a high contribution of autotrophic phytoplankton to the respiratory activity of planktonic community. Respiratory CO2 production (RCP) calculated from ETS activity ranged from 4.6 to 28.1 mg C m−3 day−1 during the four cruises. Chl a-specific RCP was lower than the maximum photosynthetic rates reported in the literature for the studied area, suggesting that primary production (PP) and respiration in the water column might be unbalanced.
机译:在西北阿尔伯兰海收集的浮游生物样品(<200μm)中测量了呼吸电子传输系统(ETS)的活性。在季节性巡航期间(2003年夏季和秋季,以及2004年冬季和2004年春季),在位于马拉加(西班牙南部)沿海样带的12个站点进行了采样。这项工作首次报告了阿累尼乌斯活化能(Ea)的季节性变化,也是解决西北阿尔伯兰海CO 2 平衡的第一项研究。这些变化与浮游植物群落组成的变化有关,最终可能是由于水文条件的季节性变化引起的。夏季,ETS活性明显较高,这与较高的叶绿素a(Chl a)浓度和相对较高的颗粒有机物含量相吻合。在四个季节中,ETS:Chl a <总比率很低,表明自养性浮游植物对浮游生物呼吸活动的贡献很大。在四次航行中,根据ETS活性计算出的呼吸CO 2 产量(RCP)为4.6至28.1 mg C m -3 -1 。 Chla特异性RCP低于研究区域文献中报道的最大光合速率,表明水柱中的初级产量(PP)和呼吸作用可能不平衡。

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