Department of Microbiology, St. Pius X College Rajapuram, Kasaragod, Kerala, India.
Department of Biotechnology, Dayananda Sagar College of Engineering, Bangalore, Karnataka, India.
J Environ Manage. 2021 Apr 15;284:112030. doi: 10.1016/j.jenvman.2021.112030. Epub 2021 Jan 30.
This study prioritizes the biodegradation potential of novel bacterial consortia formulated from cow dung samples towards low-density polyethylene (LDPE) and polypropylene (PP) in comparison with our previous studies. Ten possible consortia were formulated using 10 selected isolates with >10% weight reduction of LDPE and PP, these were pre-treated under UV for 1 h, and their biodegradation potential was studied for 160 days. The isolates present in prioritized consortia were characterized by standard microbiology and 16SrRNA gene sequencing methods. Out of 10 bacterial consortia formulated, potential consortium-CB3 showed greater percentage degradation (weight reduction) of 64.25 ± 2% and 63.00 ± 2% towards LDPE and PP films, respectively (p < 0.05) at 37 °C compared to other consortia. Significant structural variations due to the formation of bacterial biofilm were observed in CB3 treated LDPE and PP films. The three bacteria-IS1, IS2, and IS3-that constituted CB3 were found to be novel strains and designated to be Enterobacter sp nov. bt DSCE01, Enterobacter cloacae nov. bt DSCE02, and Pseudomonas aeruginosa nov. bt DSCE-CD03, respectively. This novel consortium can be scaled up for enhanced degradation of plastic polymers and probably design cost-effective bio-digester for industrial applications using CB3 as potential inoculum.
本研究优先考虑了从牛粪样本中构建的新型细菌群落对低密度聚乙烯(LDPE)和聚丙烯(PP)的生物降解潜力,与我们之前的研究相比。使用 10 种具有 >10%LDPE 和 PP 重量减少的选定分离株,配制了 10 种可能的群落,这些分离株在 UV 下预处理 1 小时,并研究了其 160 天的生物降解潜力。通过标准微生物学和 16SrRNA 基因测序方法对优先考虑的群落中的分离株进行了表征。在配制的 10 种细菌群落中,潜在的群落 CB3 表现出更大的百分比降解(重量减少),对 LDPE 和 PP 薄膜的降解率分别为 64.25±2%和 63.00±2%(p<0.05),在 37°C 下与其他群落相比。在 CB3 处理的 LDPE 和 PP 薄膜中观察到由于细菌生物膜的形成而导致的显著结构变化。构成 CB3 的三种细菌 IS1、IS2 和 IS3 被发现是新型菌株,并分别被指定为新型肠杆菌 sp nov.bt DSCE01、新型阴沟肠杆菌 nov.bt DSCE02 和新型铜绿假单胞菌 nov.bt DSCE-CD03。这种新型群落可以扩大规模,以增强对塑料聚合物的降解,并且可能使用 CB3 作为潜在接种物为工业应用设计具有成本效益的生物消化器。