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Nutrient Limitation and Adaptation of Microbial Populations to Chemical Transformations

机译:营养限制和微生物种群对化学转化的适应

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Using field-collected periphyton and bacterial isolates, we determined adaptation lag periods for microbial transformation of p-cresol. Lag periods were longer for periphyton samples collected from field sites that were low in dissolved inorganic nitrogen and phosphorus. Moreover, lag periods decreased in samples amended with N or P. Our data suggest that adaptation lag periods for microbial transformation of low concentrations of chemicals may correlate with limiting nutrient concentrations, and this correlation may provide a basis for predictive mathematical modeling of lag periods.
机译:使用现场收集的附生植物和细菌分离物,我们确定了对甲酚微生物转化的适应滞后期。从溶解的无机氮和磷含量低的田间地点收集的附生植物样品的滞后时间较长。此外,用N或P修正的样品中的滞后期减少了。我们的数据表明,低浓度化学品的微生物转化的适应滞后期可能与有限的营养物浓度相关,并且这种相关性可以为滞后期的预测数学建模提供基础。

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