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Effects of Water Column Mixing and Stratification on Planktonic Primary Production and Dinitrogen Fixation on a Northern Red Sea Coral Reef

机译:水柱混合和分层对北部红海珊瑚礁浮游生物初级生产和固氮的影响

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摘要

The northern Red Sea experiences strong annual differences in environmental conditions due to its relative high-latitude location for coral reefs. This allows the study of regulatory effects by key environmental parameters (i.e., temperature, inorganic nutrient, and organic matter concentrations) on reef primary production and dinitrogen (N2) fixation, but related knowledge is scarce. Therefore, this study measured environmental parameters, primary production and N2 fixation of phytoplankton groups in the water overlying a coral reef in the Gulf of Aqaba. To this end, we used a comparative approach between mixed and stratified water column scenarios in a full year of seasonal observations. Findings revealed that inorganic nutrient concentrations were significantly higher in the mixed compared to the stratified period. While gross photosynthesis and N2 fixation rates remained similar, net photosynthesis decreased from mixed to stratified period. Net heterotrophic activity of the planktonic community increased significantly during the stratified compared to the mixed period. While inorganic nitrogen (N) availability was correlated with net photosynthesis over the year, N2 fixation only correlated with N availability during the mixed period. This emphasizes the complexity of planktonic trophodynamics in northern Red Sea coral reefs. Comparing mixed and stratified planktonic N2 fixation rates with those of benthic organisms and substrates revealed a close seasonal activity similarity between free-living pelagic and benthic diazotrophs. During the mixed period, N2 fixation potentially contributed up to 3% of planktonic primary production N demand. This contribution increased by ca. one order of magnitude to 21% during the stratified period. Planktonic N2 fixation is likely a significant N source for phytoplankton to maintain high photosynthesis under oligotrophic conditions in coral reefs, especially during stratified conditions.
机译:由于北部相对较高的珊瑚礁位置,北部红海的环境条件每年都存在巨大差异。这样就可以通过关键环境参数(即温度,无机养分和有机物浓度)对珊瑚礁初级生产和固氮(N2)的调节效果进行研究,但相关知识很少。因此,这项研究测量了亚喀巴湾上覆珊瑚礁的水中的环境参数,浮游植物种群的初级生产和N2固定。为此,我们在整整一年的季节观测中使用了混合水和分层水柱方案之间的比较方法。研究发现,与分层时期相比,混合饲料中的无机养分浓度明显更高。虽然总的光合作用和固氮率保持相似,但净光合作用从混合期下降到分层期。与混合期相比,分层期间浮游生物群落的净异养活动显着增加。虽然一年中无机氮(N)的可用性与净光合作用相关,但在混合期间,固氮仅与氮的有效性相关。这强调了红海北部珊瑚礁中浮游营养动力学的复杂性。比较混合的和分层的浮游N2固定率与底栖生物和底物的固定率,发现自由活动的浮游重氮和底栖重氮生物之间的季节性活动相似度很高。在混合时期,固氮可能占浮游初级生产氮需求的3%。该贡献增加了约。在分层期间增加一个数量级到21%。浮游生物的N2固定可能是浮游植物在贫营养条件下(尤其是在分层条件下)维持高光合作用的重要氮素来源,以维持高的光合作用。

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