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Novel bacterial consortia isolated from plastic garbage processing areas demonstrated enhanced degradation for low density polyethylene

机译:从塑料垃圾处理区中分离出的新型细菌聚生菌对低密度聚乙烯的降解作用增强

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This study aimed to formulate novel microbial consortia isolated from plastic garbage processing areas and thereby devise an eco-friendly approach for enhanced degradation of low-density polyethylene (LDPE). The LDPE degrading bacteria were screened and microbiologically characterized. The best isolates were formulated as bacterial consortia, and degradation efficiency was compared with the consortia formulated using known isolates obtained from the Microbial Culture Collection Centre (MTCC). The degradation products were analyzed by FTIR, GC-FID, tensile strength, and SEM. The bacterial consortia were characterized by 16S ribosomal DNA (rDNA) sequencing. The formulated bacterial consortia demonstrated 81 +/- 4 and 38 +/- 3 % of weight reduction for LDPE strips and LDPE pellets, respectively, over a period of 120 days. However, the consortia formulated by MTCC strains demonstrated 49 +/- 4 and 20 +/- 2 % of weight reduction for LDPE strips and pellets, respectively, for the same period. Furthermore, the three isolates in its individual application exhibited 70 +/- 4, 68 +/- 4, and 64 +/- 4 % weight reduction for LDPE strips and 21 +/- 2, 28 +/- 2, 24 +/- 2 % weight reduction for LDPE pellets over a period of 120 days (p < 0.05). The end product analysis showed structural changes and formation of bacterial film on degraded LDPE strips. The 16S rDNA characterization of bacterial consortia revealed that these organisms were novel strains and designated as Enterobacter sp. bengaluru-btdsce01, Enterobacter sp. bengaluru-btdsce02, and Pantoea sp. bengaluru-btdsce03. The current study thus suggests that industrial scale-up of these microbial consortia probably provides better insights for waste management of LDPE and similar types of plastic garbage.
机译:这项研究旨在建立从塑料垃圾处理区中分离出来的新型微生物联盟,从而设计出一种生态友好的方法来增强低密度聚乙烯(LDPE)的降解。筛选LDPE降解细菌并进行微生物学鉴定。最好的分离物被配制为细菌菌群,并将降解效率与使用从微生物培养物收集中心(MTCC)获得的已知分离物配制的菌落进行比较。通过FTIR,GC-FID,拉伸强度和SEM分析降解产物。通过16S核糖体DNA(rDNA)测序来表征细菌菌群。配制的细菌聚生体在120天的时间内分别显示出LDPE条和LDPE颗粒的重量减轻了81 +/- 4和38 +/- 3%。但是,由MTCC菌株组成的联合体在同一时期分别对LDPE胶条和小球分别减轻了49 +/- 4和20 +/- 2%的重量。此外,这三种分离物在其各自的应用中表现出LDPE胶条的重量减轻了70 +/- 4、68 +/- 4和64 +/- 4%,而21 +/- 2、28 +/- 2、24 + / -在120天内,LDPE颗粒的重量减少了2%(p <0.05)。最终产品分析显示在降解的LDPE条带上结构发生变化并形成细菌膜。细菌财团的16S rDNA表征表明,这些生物是新型菌株,被命名为肠杆菌属。 bengaluru-btdsce01,肠杆菌属。 bengaluru-btdsce02和Pantoea sp。孟加拉国-btdsce03。因此,当前的研究表明,这些微生物联合体的工业规模扩大可能为LDPE和类似类型塑料垃圾的废物管理提供更好的见解。

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