首页> 外文期刊>Indian Journal of Bioinformatics and Biotechnology >Diversity of 2, 4 Dichlorobiphenyl Degrading Consortium of Pseudomonas Isolates GSa and GSb for Degradation of Poly Chlorinated Biphenyl Congeners
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Diversity of 2, 4 Dichlorobiphenyl Degrading Consortium of Pseudomonas Isolates GSa and GSb for Degradation of Poly Chlorinated Biphenyl Congeners

机译:假单胞菌的2、4二氯联苯降解财团分离物GSa和GSb用于降解多氯联苯同源物

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Objective : Polychlorinated biphenyls (PCB) are persistent organic pollutants that are widely distributed in the environment. PCBs are aromatic compounds have more than 210 congeners, nonvolatile, chemically inert and do not undergo oxidation, reduction or addition reactions, elimination or electrophilic substitution reactions except under extreme conditions. Their improper disposal in storage and disposal area has negative impact on the ecosystem. Although Chemical methods are available for the degradation, they tend to emit more toxic chemicals. Alternative the biological methods are safer and cost effective. In this context, 2, 4 Dichlorobiphenyl, (a PCB congener) degrading bacterial isolates which have been evaluated for substrate affinity using PCB congener mix. Methods : In the present study, 2, 3, 5, 6 tetrachlorobiphenyls and 3, 5’, 3, 5 tetrachlorobiphenyl in PCB congener mix degradation by previously characterised Pseudomonas isolates GSa and GSb was studied using GC-MS. Findings : Two constantly overlapping bacterial isolates identified as Pseudomonas sp., capable of degrading 2, 4 Chlorobiphenyl degrading, showed its diversity of degrading other PCB congener mix. On GC-MS analysis of the cell free extract showed 60 and 70% degradation as per the ECD values. Applications : Therefore, the present paper is first of its kind, as 2, 4 CB degrading Pseudomonads in tern degrade other PCB congeners perhaps showing wide application on in situ bioremediation since the contaminated site contains variety of congeners.
机译:目的:多氯联苯(PCB)是持久性有机污染物,广泛分布于环境中。多氯联苯是芳香族化合物,具有210多种同质物,不挥发,化学惰性,除非在极端条件下,否则不会发生氧化,还原或加成反应,消除或亲电取代反应。它们在储存和处置区域的不当处置会对生态系统造成负面影响。尽管可以使用化学方法降解,但它们倾向于释放出更多有毒的化学物质。替代地,生物学方法更安全且成本有效。在这种情况下,已经使用PCB同类物混合物评估了2,4二氯联苯(一种PCB同类物)降解细菌分离物的底物亲和力。方法:在本研究中,使用GC-MS研究了先前鉴定的假单胞菌分离物GSa和GSb降解PCB同类混合物中的2,3,5,6四氯联苯和3,5',3,5四氯联苯。研究结果:鉴定为Pseudomonas sp。的两个不断重叠的细菌分离株能够降解2、4的三氯苯基降解,显示出其降解其他PCB同类混合物的多样性。在GC-MS上,无细胞提取物的分析表明,根据ECD值,降解率分别为60%和70%。应用:因此,本论文是第一篇,因为2、4 CB降解Pseudomonads会降解其他PCB同系物,因为受污染的位点包含多种同系物,可能在原位生物修复中显示出广泛的应用。

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