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Sediment Microbial Community Structure and Mercury Methylation in Mercury-Polluted Clear Lake California

机译:加利福尼亚州被污染的清除湖中沉积物微生物群落结构和汞甲基化

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摘要

Spatial and temporal variations in sediment microbial community structure in a eutrophic lake polluted with inorganic mercury were identified using polar lipid fatty acid (PLFA) analysis. Microbial community structure was strongly related to mercury methylation potential, sediment organic carbon content, and lake location. Pore water sulfate, total mercury concentrations, and organic matter C/N ratios showed no relationships with microbial community structure. Seasonal changes and changes potentially attributable to temperature regulation of bacterial membranes were detectable but were less important influences on sediment PLFA composition than were differences due to lake sampling location. Analysis of biomarker PLFAs characteristic of Desulfobacter and Desulfovibrio groups of sulfate-reducing bacteria suggests that Desulfobacter-like organisms are important mercury methylators in the sediments, especially in the Lower Arm of Clear Lake.
机译:使用极性脂质脂肪酸(PLFA)分析鉴定了富营养化湖泊中被无机汞污染的沉积物微生物群落结构的时空变化。微生物群落结构与汞甲基化潜力,沉积物有机碳含量和湖泊位置密切相关。孔隙硫酸水,总汞浓度和有机物碳氮比与微生物群落结构无关。可以检测到季节变化和可能由细菌膜的温度调节引起的变化,但对沉积物PLFA组成的影响不如因湖泊采样位置而异。对硫酸盐还原细菌的脱硫细菌和脱硫弧菌基团特征的生物标志物PLFA的分析表明,类似脱硫细菌的生物是沉积物中,尤其是清湖下臂的重要汞甲基化剂。

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