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Heterotrophic activity and biodegradation of labile and refractory compounds by groundwater and stream microbial populations.

机译:地下水和河流微生物种群对不稳定和难处理化合物的异养活性和生物降解作用。

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The bacteriology and heterotrophic activity of a stream and of nearby groundwater in Marmot Basin, Alberta, Canada, were studied. Acridine orange direct counts indicated that bacterial populations in the groundwater were greater than in the stream. Bacteria that were isolated from the groundwater were similar to species associated with soils. Utilization of labile dissolved organic material as measured by the heterotrophic potential technique with glutamic acid, phenylalanine, and glycolic acid as substrates was generally greater in the groundwater. In addition, specific activity indices for the populations suggested greater metabolic activity per bacterium in the groundwater. 14C-labeled lignocellulose, preferentially labeled in the lignin fraction by feeding Picea engelmannii [14C]phenylalanine, was mineralized by microorganisms in both the groundwater and the stream, but no more than 4% of the added radioactivity was lost as 14CO2 within 960 h. Up to 20% of [3'-14C]cinnamic acid was mineralized by microorganisms in both environments within 500 h. Both microbial populations appear to influence the levels of labile and recalcitrant dissolved organic material in mountain streams.
机译:研究了加拿大艾伯塔省旱獭盆地的水流和附近地下水的细菌学和异养活性。 cr啶橙直接计数表明,地下水中的细菌种群大于溪流中的细菌种群。从地下水中分离出的细菌类似于与土壤相关的物种。通过异养电位技术测量的以谷氨酸,苯丙氨酸和乙醇酸为底物的不稳定溶解的有机物质在地下水中的利用率通常更高。此外,种群的比活度指数表明每个细菌在地下水中的代谢活性更高。 14C标记的木质纤维素(优先通过饲喂云杉云杉[14C]苯丙氨酸标记在木质素中)被地下水和溪流中的微生物矿化,但在960 h内,14CO2损失的放射性增加不超过4%。在500 h内,两种环境中的微生物都将高达20%的[3'-14C]肉桂酸矿化。两种微生物种群似乎都影响山区河流中不稳定和难分解的溶解有机物质的水平。

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