首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Investigations into the biodegradation of microcystin-LR mediated by the biofilm in wintertime from a biological treatment facility in a drinking-water treatment plant
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Investigations into the biodegradation of microcystin-LR mediated by the biofilm in wintertime from a biological treatment facility in a drinking-water treatment plant

机译:冬季从饮用水处理厂的生物处理设施对生物膜介导的微囊藻毒素-LR进行生物降解的研究

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The potential of winter biofilm for microcystin-LR (MCLR) biodegradation was comparatively evaluated under various nutrient conditions. Results indicated that MCLR was completely biodegraded by Day 7 without nutrient addition. MCLR-biodegradation was inhibited in the presence of phosphate or glucose addition, with complete MCLR removal observed by Day 10. MCLR was totally biodegraded by Day 7 with dual nutrients comprising glucose and nitrate, suggesting that additional nitrate alleviated the inhibitory effect of glucose alone on the biodegradation. Simultaneously, MCLR-degrading gene (mlrA) abundance were detected to increase with increasing amount of MCLR being degraded under the respective conditions, implying that MCLR-biodegradation depended on the population of indigenous MCLR-degrading bacteria (MCLRDB), which was related to the population of non-degrading bacteria in the biofilm. MCLRDB was found to primarily use MCLR for proliferation rather than other nutrients. This is the first report verifying MCLR as a primary substrate for bacteria under various nutrient conditions.
机译:在各种营养条件下,比较评估了冬季生物膜对微囊藻毒素-LR(MCLR)生物降解的潜力。结果表明,在不添加营养物的情况下,第7天MCLR被完全生物降解。在添加磷酸盐或葡萄糖的情况下,MCLR的生物降解被抑制,在第10天观察到MCLR被完全去除。MCLR在第7天被包括葡萄糖和硝酸盐的双重营养素完全生物降解,这表明额外的硝酸盐减轻了葡萄糖单独对葡萄糖的抑制作用。生物降解。同时,检测到MCLR降解基因(mlrA)的丰度随着在相应条件下降解MCLR的增加而增加,这表明MCLR的生物降解取决于本地MCLR降解细菌(MCLRDB)的种群,这与生物膜中非降解细菌的数量。发现MCLRDB主要使用MCLR进行增殖,而不是其他营养素。这是第一份证明MCLR是各种营养条件下细菌的主要底物的报告。

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