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Aerobic Biofilms Grown from Athabasca Watershed Sediments Are Inhibited by Increasing Concentrations of Bituminous Compounds

机译:阿萨巴斯卡流域沉积物上生长的需氧生物膜被增加的沥青化合物浓度抑制

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摘要

Sediments from the Athabasca River and its tributaries naturally contain bitumen at various concentrations, but the impacts of this variation on the ecology of the river are unknown. Here, we used controlled rotating biofilm reactors in which we recirculated diluted sediments containing various concentrations of bituminous compounds taken from the Athabasca River and three tributaries. Biofilms exposed to sediments having low and high concentrations of bituminous compounds were compared. The latter were 29% thinner, had a different extracellular polysaccharide composition, 67% less bacterial biomass per μm2, 68% less cyanobacterial biomass per μm2, 64% less algal biomass per μm2, 13% fewer protozoa per cm2, were 21% less productive, and had a 33% reduced content in chlorophyll a per mm2 and a 20% reduction in the expression of photosynthetic genes, but they had a 23% increase in the expression of aromatic hydrocarbon degradation genes. Within the Bacteria, differences in community composition were also observed, with relatively more Alphaproteobacteria and Betaproteobacteria and less Cyanobacteria, Bacteroidetes, and Firmicutes in biofilms exposed to high concentrations of bituminous compounds. Altogether, our results suggest that biofilms that develop in the presence of higher concentrations of bituminous compounds are less productive and have lower biomass, linked to a decrease in the activities and abundance of photosynthetic organisms likely due to inhibitory effects. However, within this general inhibition, some specific microbial taxa and functional genes are stimulated because they are less sensitive to the inhibitory effects of bituminous compounds or can degrade and utilize some bitumen-associated compounds.
机译:阿萨巴斯卡河及其支流的沉积物自然含有各种浓度的沥青,但是这种变化对河流生态的影响尚不清楚。在这里,我们使用了受控的旋转生物膜反应器,在该反应器中,我们对稀释的沉积物进行了再循环,这些沉积物包含来自阿萨巴斯卡河和三个支流的各种浓度的沥青化合物。比较了暴露于具有低和高浓度沥青化合物的沉积物的生物膜。后者更薄29%,具有不同的细胞外多糖组成,每μm 2 减少细菌生物量67%,每μm 2 减少蓝细菌生物量68%,藻类减少64%每μm 2 的生物量,每cm 2 的原生动物减少13%,生产力降低21%,每mm 2 <的叶绿素a含量减少33% ,光合作用基因的表达减少了20%,但芳香烃降解基因的表达却增加了23%。在细菌内,还观察到群落组成的差异,在暴露于高浓度沥青化合物的生物膜中,阿尔法变形细菌和贝塔变形细菌相对较多,而蓝细菌,拟杆菌和纤毛虫较少。总之,我们的结果表明,在存在较高浓度的沥青化合物的情况下形成的生物膜生产力较低,生物量较低,这与抑制作用可能导致光合生物的活性和丰度降低有关。但是,在这种一般性抑制作用下,会刺激某些特定的微生物类群和功能基因,因为它们对沥青化合物的抑制作用不太敏感,或者会降解和利用某些与沥青相关的化合物。

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