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An investigation of mono-chlorophenol degradation and the bioaugmentation of activated sludge by two pseudomonas putida species

机译:两种恶臭假单胞菌对单氯酚降解和活性污泥生物强化的研究

摘要

The degradation of all three mono-chlorophenols by two Pseudomonas putida species, A(a) and CPI, was investigated Pseudomonas putida A(a) metabolised 4-chlorophenol to completion via the meta-cleavage pathway but the degradation of 2- and 3- chlorophenol was incomplete Pseudomonas putida CPI degraded all three chlorophenol isomers to completion via the modified ortho-cleavage pathway.ududThe genes for the key enzymes of the chlorophenol degradative pathways, catechol 2,3- dioxygenase of the meta-cleavage pathway from P putida A(a) and chlorocatechol 1,2- dioxygenase of the modified or^o-cleavage pathway from P putida CPI were amplified by PCR and identified by nucleotide sequencing.ududLarge plasmids were detected in both strains Southern hybridization to DIG-labelled probes confirmed the presence of the genes for chlorocatechol 2,3-dioxygenase on the 1 17 kb plasmid in A(a) and chlorocatechol 1,2-dioxygenase on the 110 kb plasmid in CPI.ududThe bacteria were tagged by inserting the gene for green fluourescent protein (GFP), into the chromosomes of P putida A(a) and P putida CPI using Tn7 and Tn5 based delivery vectors Tn7 inserted specifically at a neutral chromosomal site m P putida A(a) and an unknown site in P putida CPI.ududBioaugmentation of activated sludge resulted in the complete removal of 4-chlorophenol GFP was used as a visual marker to observe the location of the introduced strains, revealing that CPI Tn7-gfp was located almost entirely withm the sludge floes while P putida A(a) Tn 7-gfp was evenly distributed throughout the mixed liquor P putida CPI Tn 7-gfp survived in greater numbers than P putida A(a) Tn 7-gfp.ududThe addition of the bacteria had a protective effect on the indigenous batenal population however this effect was more pronounced with the addition of P putida CPI Tn 7-gfp. The floc-forming ability of P putida CPI Tn 7-gfp may result in its enhanced survival leading to better degradation of 4-chlorophenol.
机译:研究了两种恶臭假单胞菌A(a)和CPI对三种单氯酚的降解,通过假裂解途径,恶臭假单胞菌A(a)代谢了4-氯酚,但降解了2-和3-氯酚不完整恶臭假单胞菌CPI通过修饰的邻位裂解途径降解了所有三种氯酚异构体,使其完全降解。 ud ud氯酚降解途径关键酶的基因,邻苯二酚的间位裂解途径的儿茶酚2,3-二加氧酶通过PCR扩增了恶臭假单胞菌CPI的修饰的或反向切割途径的恶臭假单胞菌A(a)和氯邻苯二酚1,2-二加氧酶,并通过核苷酸测序鉴定。在两个菌株中均检测到大质粒,与DIG-的Southern杂交标记的探针证实A(a)的1 17 kb质粒上存在氯邻苯二酚2,3-二加氧酶的基因,而CPI的110 kb质粒上存在氯邻苯二酚1,2-二加氧酶的基因。绿色荧光蛋白(GFP)的基因,使用特异插入在恶性疟原虫A(a)的中性染色体位点和未知位点的基于Tn7和Tn5的递送载体Tn7,进入恶臭疟原虫A(a)和恶臭疟原虫CPI的染色体中 ud ud生物活性的增强导致了4-氯苯酚的完全去除GFP被用作视觉标记来观察引入菌株的位置,表明CPI Tn7-gfp几乎完全位于污泥中浮游生物,而恶臭假单胞菌A(a)Tn 7-gfp均匀地分布在整个混合液中,恶臭假单胞菌CPI Tn 7-gfp的存活数量大于恶臭假单胞菌A(a)Tn 7-gfp。 ud ud对土著胎种群有保护作用,但是添加恶臭假单胞菌CPI Tn 7-gfp时,这种作用更为明显。恶臭假单胞菌CPI Tn 7-gfp的絮凝能力可能导致其存活率提高,导致4-氯苯酚更好地降解。

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    McLaughlin Henry;

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  • 年度 2006
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