United States Geological Survey, 3215 Marine Street, Boulder, Colorado 80303, USA.
Environ Sci Technol. 2011 Apr 1;45(7):3096-101. doi: 10.1021/es103605e. Epub 2011 Mar 8.
The effects of "trace" (environmentally relevant) concentrations of the antimicrobial agent sulfamethoxazole (SMX) on the growth, nitrate reduction activity, and bacterial composition of an enrichment culture prepared with groundwater from a pristine zone of a sandy drinking-water aquifer on Cape Cod, MA, were assessed by laboratory incubations. When the enrichments were grown under heterotrophic denitrifying conditions and exposed to SMX, noticeable differences from the control (no SMX) were observed. Exposure to SMX in concentrations as low as 0.005 μM delayed the initiation of cell growth by up to 1 day and decreased nitrate reduction potential (total amount of nitrate reduced after 19 days) by 47% (p=0.02). Exposure to 1 μM SMX, a concentration below those prescribed for clinical applications but higher than concentrations typically detected in aqueous environments, resulted in additional inhibitions: reduced growth rates (p=5×10(-6)), lower nitrate reduction rate potentials (p=0.01), and decreased overall representation of 16S rRNA gene sequences belonging to the genus Pseudomonas. The reduced abundance of Pseudomonas sequences in the libraries was replaced by sequences representing the genus Variovorax. Results of these growth and nitrate reduction experiments collectively suggest that subtherapeutic concentrations of SMX altered the composition of the enriched nitrate-reducing microcosms and inhibited nitrate reduction capabilities.
通过实验室培养,评估了环境相关浓度的抗菌剂磺胺甲恶唑 (SMX) 对从马萨诸塞州鳕鱼角沙质饮用水含水层原始区采集的地下水制备的富集培养物的生长、硝酸盐还原活性和细菌组成的影响。当富集物在异养反硝化条件下生长并暴露于 SMX 时,与对照(无 SMX)相比,观察到明显的差异。暴露于低至 0.005 μM 的 SMX 可使细胞生长延迟多达 1 天,并使硝酸盐还原潜力(19 天后还原的硝酸盐总量)降低 47%(p=0.02)。暴露于 1 μM SMX,低于临床应用规定的浓度,但高于水环境中通常检测到的浓度,导致进一步的抑制:生长速率降低(p=5×10(-6)),硝酸盐还原率潜力降低(p=0.01),以及属于假单胞菌属的 16S rRNA 基因序列的总体代表性降低。文库中假单胞菌序列的丰度减少被代表沃氏菌属的序列所取代。这些生长和硝酸盐还原实验的结果表明,亚治疗浓度的 SMX 改变了富硝酸盐还原微生物群落的组成,并抑制了硝酸盐还原能力。