首页> 外文期刊>World Journal of Microbiology & Biotechnology >Isolation and characterization of novel Serratia marcescens (AY927692) for pentachlorophenol degradation from pulp and paper mill waste
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Isolation and characterization of novel Serratia marcescens (AY927692) for pentachlorophenol degradation from pulp and paper mill waste

机译:纸浆和造纸废料中降解五氯苯酚的新型粘质沙雷氏菌(AY927692)的分离和表征

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Seven aerobic bacterial strains were isolated from pulp paper mill waste and screened for pentachlorophenol (PCP) tolerance on PCP containing mineral salt agar medium (MSM). The organism was characterized by 16S rDNA sequencing which showed 99.7% sequence similarity with Serratia marcescens. PCP degradation was routinely monitored with spectrophotometric analysis and further confirmed by HPLC analysis. Among seven strains, ITRC S was found to degrade up to 90.33% of 1.127 mM (300 mg/l) of PCP and simultaneous release of chloride ion (2.435 mM) emphasized the bacterial dechlorination in the medium in presence of glucose as an additional carbon and energy source under optimized condition within 168 h incubation. In absence of glucose bacterium was unable to utilize PCP indicating the phenomenon of co-metabolism. Bacterium was identified as S. marcescens (AY927692), was a novel and potential aerobic bacterial strain capable of degrading PCP in axenic condition. Further, this strain may be used for bioremediation of PCP containing pulp paper mill waste in the environment.
机译:从纸浆厂的废料中分离出七种需氧细菌菌株,并在含有矿盐琼脂培养基(MSM)的PCP上筛选五氯苯酚(PCP)耐受性。该生物通过16S rDNA测序表征,显示与粘质沙雷氏菌99.7%的序列相似性。常规用分光光度法监测PCP降解,并通过HPLC分析进一步确认。在七个菌株中,发现ITRC S可降解1.127 mM(300 mg / l)的PCP的90.33%,同时释放氯离子(2.435 mM)强调了在培养基中存在葡萄糖作为额外碳时细菌的脱氯作用在168小时的温育条件下,在最佳条件下提供能量和能源。在缺少葡萄糖的情况下,细菌无法利用PCP,这表明存在共代谢现象。细菌被鉴定为marcescens(AY927692),是一种新型且潜在的需氧细菌菌株,能够在缺氧条件下降解PCP。此外,该菌株可用于环境中含有PCP的纸浆厂废物的生物修复。

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