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Bacterial degradation of synthetic and kraft lignin by axenic and mixed culture and their metabolic products

机译:厌氧菌和混合菌对合成和牛皮纸木质素的细菌降解作用及其代谢产物

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Pulp paper mill effluent has high pollution load due to presence of lignin and its derivatives as major colouring and polluting constituents. In this study, two lignin degrading bacteria IITRL1 and IITRSU7 were isolated and identified as Citrobacter freundii (FJ581026) and Cltrobaeter sp. (FJ581023), respectively. In degradation study by axenic and mixed culture, mixed bacterial culture was found more effective compared to axenic culture as it decolourized 85 and 62% of synthetic and kraft lignin whereas in axenic conditions, bacterium IITRL1 and IITRSU7 decolourized 61 and 64% synthetic and 49 and 54% kraft lignin, respectively. Further, the mixed bacterial culture also showed the removal of 71, 58% TOC; 78, 53% AOX; 70, 58% COD and 74, 58% lignin from synthetic and kraft lignin, respectively. The ligninolytic enzyme was characterized as manganese peroxldase by SDS-PAGE yielding a single band of 43 KDa. The HPLC analysis of degraded samples showed reduction as well as shifting of peaks compared to control indicating the degradation as well as transformation of compounds. Further, in GC-MS analysis of synthetic and kraft lignin degraded samples, hexadecanoic acid was found as recalcitrant compounds while 2,4,6-trichloro-phenol, 2,3,4,5-tetrachloro-phenol and pentachloro-phenol were detected as new metabolites.
机译:纸浆厂废水由于木质素及其衍生物作为主要的着色和污染成分而存在高污染负荷。在这项研究中,分离了两种降解木质素的细菌IITRL1和IITRSU7,并将其鉴定为弗氏柠檬酸杆菌(FJ581026)和Cltrobaeter sp.。 (FJ581023)。在通过树皮和混合培养进行的降解研究中,发现混合细菌培养比树皮培养更有效,因为它使85%和62%的合成木质素和硫酸盐木质素脱色,而在树皮下,细菌IITRL1和IITRSU7对61%和64%的合成木质素和49%脱色。分别有54%的硫酸盐木质素。此外,混合细菌培养物还显示出去除了71%,58%的TOC。 78,53%AOX;分别来自合成和牛皮纸木质素的70、58%COD和74、58%的木质素。通过SDS-PAGE将木质素分解酶表征为锰过氧化物酶,产生43KDa的单条带。与对照相比,降解样品的HPLC分析显示峰减少和峰移动,表明化合物的降解和转化。此外,在合成和牛皮纸降解木质素样品的GC-MS分析中,发现十六烷酸为顽固化合物,而检测到2,4,6-三氯苯酚,2,3,4,5-四氯苯酚和五氯苯酚。作为新的代谢产物。

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