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Microbial communities in the nepheloid layers and hypoxic zones of the Canary Current upwelling system

机译:金丝雀流上升流系统的肾小球层和低氧区中的微生物群落

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摘要

Eastern boundary upwelling systems (EBUSs) are among the most productive marine environments in the world. The Canary Current upwelling system off the coast of Mauritania and Morocco is the second most productive of the four EBUS, where nutrient‐rich waters fuel perennial phytoplankton blooms, evident by high chlorophyll a concentrations off Cape Blanc, Mauritania. High primary production leads to eutrophic waters in the surface layers, whereas sinking phytoplankton debris and horizontally dispersed particles form nepheloid layers (NLs) and hypoxic waters at depth. We used Catalyzed Reporter Deposition Fluorescence In Situ Hybridization (CARD‐FISH) in combination with fatty acid (measured as methyl ester; FAME) profiles to investigate the bacterial and archaeal community composition along transects from neritic to pelagic waters within the “giant Cape Blanc filament” in two consecutive years (2010 and 2011), and to evaluate the usage of FAME data for microbial community studies. We also report the first fatty acid profile of Pelagibacterales strain HTCC7211 which was used as a reference profile for the SAR11 clade. Unexpectedly, the reference profile contained low concentrations of long chain fatty acids 18:1 cis11, 18:1 cis11 11methyl, and 19:0 cyclo11–12 fatty acids, the main compounds in other Alphaproteobacteria. Members of the free‐living SAR11 clade were found at increased relative abundance in the hypoxic waters in both years. In contrast, the depth profiles of Gammaproteobacteria (including Alteromonas and Pseudoalteromonas), Bacteroidetes, Roseobacter, and Synechococcus showed high abundances of these groups in layers where particle abundance was high, suggesting that particle attachment or association is an important mechanisms of dispersal for these groups. Collectively, our results highlight the influence of NLs, horizontal particle transport, and low oxygen on the structure and dispersal of microbial communities in upwelling systems.
机译:东部边界上升流系统(EBUS)是世界上生产力最高的海洋环境之一。毛里塔尼亚和摩洛哥沿岸的Canary Current上升流系统是四个EBUS的第二高产区,那里的营养丰富的水推动了多年生浮游植物的开花,这表现在毛里塔尼亚布兰克角附近的叶绿素a含量很高。高初级产量导致表层富营养化水,而沉没的浮游植物碎片和水平分散的颗粒则在深处形成肾小球层(NLs)和低氧水。我们将催化记者沉积荧光原位杂交(CARD-FISH)与脂肪酸(以甲基酯; FAME进行测量)相结合,研究了从“巨大的布兰角长丝”中从中性水到上层水的样带的细菌和古细菌群落组成。 ”(连续两年(2010年和2011年)),并评估了FAME数据在微生物群落研究中的用途。我们还报告了百日咳杆菌HTCC7211的第一个脂肪酸谱,该谱用作SAR11进化枝的参考谱。出乎意料的是,参考谱中包含低浓度的长链脂肪酸18:1 cis11、18:1 cis11 11甲基和19:0环11-12脂肪酸,这是其他Alteproteobacteria的主要化合物。在这两年中,发现低氧水域中自由活动SAR11进化枝的成员相对丰度增加。相比之下,γ-变形杆菌(包括链霉菌和假铝单胞菌),拟杆菌,玫瑰杆菌和Synocococcus的深度剖面显示,这些组在颗粒丰度较高的层中具有很高的丰度,表明颗粒附着或缔合是这些组分散的重要机制。总的来说,我们的研究结果突出了NLs,水平颗粒运输和低氧对上升流系统中微生物群落结构和扩散的影响。

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