首页> 外文期刊>Environmental Technology >BACTERIAL COMMUNITY CHANGES WITH N'- N' DIMETHYLFORAMIDE (DMF) ADDITIVES DURING POLYCYCLIC AROMATIC HYDROCARBONS (PAH) BIODEGARDATION
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BACTERIAL COMMUNITY CHANGES WITH N'- N' DIMETHYLFORAMIDE (DMF) ADDITIVES DURING POLYCYCLIC AROMATIC HYDROCARBONS (PAH) BIODEGARDATION

机译:多环芳烃(PAH)生物降解过程中N'- N'二甲基甲酰胺(DMF)添加剂对细菌群落的影响

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This study examined the changes in the bacterial community during biodegradation of polycydic aromatic hydrocarbon (PAH) substrate when N'-N' dimethylformamide (DMF) was added. The microbial populations that biodegrade the PAH substrate were assessed by Fluorescence in-situ hybridization (FISH) and changed from 49.45% Archaea and 49.15% Bacteria to 42.00% Archaea and 51.78% Bacteria when the PAH was supplemented with DMF. Nine microorganisms were classified as Gram-negative α-, β- and γ-Proteobacteria bacteria during biodegradation of PAH alone by the Biolog system. Incentive eleven microorganisms obtained from the PAH-DMF mixed substrate were found to be β-, γ-Proteobacteria bacteria, high G+C Gram-positive bacteria (HGC), low G+C Gram-positive bacteria (LGC) and there was even one Deinococcus-Thermus strain; this indicates greater biodiversity. The numbers in the Pseudomonad group were as high as 10~5-10~6 CPU ml~(-1), suggesting that this group plays an important role in PAH biodegradation. Community-Level Physiological Profiling (CLPP) and physiological characterization were different in the PAH biodegradation process with and without DMF. Utilization of the 95 carbon sources from the Biolog GN2 microtiter plate was greater during PAH biodegradation when PAH is present alone compared to that in the presence of DMF. The range of enzymatic activities during PAH biodegradation was lower in the presence of DMF. These results show that DMF should be used with caution when PAH is a substrate during laboratory or pilot biotreatability studies.
机译:这项研究检查了添加N'-N'二甲基甲酰胺(DMF)时多环芳烃(PAH)底物生物降解过程中细菌群落的变化。通过荧光原位杂交(FISH)评估了生物降解PAH底物的微生物种群,并在PAH中添加了DMF时,古细菌和古细菌的比例从49.45%和49.15%变为了42.00%细菌和51.78%。通过Biolog系统单独降解PAH时,有9种微生物被分类为革兰氏阴性α-,β-和γ-变形杆菌。发现从PAH-DMF混合底物获得的11种激励微生物是β-,γ-变形杆菌细菌,高G + C革兰氏阳性菌(HGC),低G + C革兰氏阳性菌(LGC),甚至有一种Deinococcus-Thermus菌株;这表明生物多样性更大。假单胞菌组的数字高达10〜5-10〜6 CPU ml〜(-1),表明该组在PAH生物降解中起重要作用。在有或没有DMF的PAH生物降解过程中,社区水平的生理概况(CLPP)和生理特性是不同的。与仅存在DMF相比,当单独存在PAH时,在PAH生物降解过程中,来自Biolog GN2微量滴定板的95个碳源的利用率更高。在存在DMF的情况下,PAH生物降解过程中的酶活性范围较低。这些结果表明,在实验室或中试生物处理性研究期间,当PAH是底物时,应谨慎使用DMF。

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