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Application of Potent Actinomycete Strains for Bio-Degradation of Domestic Agro-Waste by Composting and Treatment of Pulp-Paper Mill Effluent

机译:高效放线菌菌株在纸浆厂废水堆肥和处理生物降解生活垃圾中的应用

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Actinomycetes are known to produce an extensive range of bioactive compounds as well as variety of enzymes having multiple biotechnological applications. They are an important source of lignocellulose hydrolyzing enzymes and constitute considerable proportion of the soil or aquatic micro-flora responsible for degradation of biomass in natural environment. Presently, most of the commercially exploited lignocellulases and commercial biodegradation processes rely mostly on fungal or bacterial micro-organisms. Actinomycetes are relatively less explored for biodegradation processes that utilize lignocellulases for solid agro-waste management and waste water treatment. There is also a need to search and explore novel actinomycete strains for various biodegradation applications. This study involved examining the possibility of using only potent actinomycetes strains for the composting process by creating the consortium of such strains that could produce thermo-tolerant and alkali-tolerant key enzymes necessary for the degradation of cellulose, hemi-cellulose and lignin. The newly developed actinomycete consortium was tested for the composting activity and the composting process was optimized. The analysis of the composted material generated under ideal condition, demonstrated desirable physical and chemical characteristics. Paper pulp effluent poses a hazard to waterways due to toxicity. The toxicity of this mill effluent can be attributed to a compound called lignin and its chlorinated derivatives that are let out during the treatment of lignocellulosic constituents. Current study also involves the use of a strain of actinomycete having ability to produce enzyme laccase, which is active under alkaline condition for the treatment of paper pulp effluent. Enzyme laccase is known for its ability to attack phenolic components of lignin and common hazardous component of effluent, polycyclic aromatic hydrocarbons (PAH). Aerobic treatment of effluent by actinomycete strain indicated 21% reduction in COD at pH 7.5 after 14 days under optimum condition. This strain was identified as Streptomyces rochei based on molecular fingerprinting and was reported to be the producer of laccase probably for the first time. LCMS analysis of the treated effluent sample showed the presence of degradation compounds forming after 7 and 14 days of treatment. These compounds showed the degradation of lignin components and other phenolic, non-phenolic components of the effluent by intra molecular re-arrangement, oxidation and ring opening reactions. Overall, potent thermo-tolerant and alkali-tolerant actinomycete strains were successfully isolated and applied for bio-degradation of domestic agro-waste by composting and treatment of pulp-paper mill effluent. The consortium of these strains may be further utilized for scale-up studies in order to assess its commercial feasibility for biodegradation processes.
机译:已知放线菌产生广泛的生物活性化合物以及具有多种生物技术应用的多种酶。它们是木质纤维素水解酶的重要来源,并占土壤或水生微生物区系的很大一部分,负责自然环境中生物质的降解。当前,大多数商业开发的木质纤维素酶和商业生物降解过程主要依赖于真菌或细菌微生物。放线菌对于利用木质纤维素酶进行固体农业废物管理和废水处理的生物降解过程的研究相对较少。还需要搜索和探索用于各种生物降解应用的新型放线菌菌株。这项研究涉及通过建立这样的菌株联盟来检查仅使用强力放线菌菌株进行堆肥的可能性,这些菌株可以产生纤维素,半纤维素和木质素降解所必需的耐热和耐碱关键酶。测试了新开发的放线菌群的堆肥活性,并优化了堆肥过程。对理想条件下产生的堆肥材料的分析显示出理想的物理和化学特性。纸浆废水由于毒性而对水路构成危害。该工厂废水的毒性可归因于一种称为木质素及其氯化衍生物的化合物,它们在木质纤维素成分的处理过程中释放出来。当前的研究还涉及使用具有产生酶漆酶的能力的放线菌菌株,该酶在碱性条件下具有活性,用于处理纸浆流出物。酶漆酶以其攻击木质素的酚类成分和流出的多环芳烃(PAH)的常见有害成分的能力而闻名。放线菌菌株对废水进行好氧处理,表明在最佳条件下放置14天后,pH 7.5时COD降低了21%。根据分子指纹图谱,该菌株被鉴定为罗氏链霉菌,据报道可能是首次产生漆酶。经处理的流出物样品的LCMS分析表明,在处理7天和14天后存在降解化合物的形成。这些化合物通过分子内重排,氧化和开环反应显示出木质素成分和其他酚类,非酚类成分的降解。总体而言,成功地分离了强力的耐温和耐碱的放线菌菌株,并通过堆肥和纸浆厂废水的处理来将其用于生活垃圾的生物降解。这些菌株的联合体可进一步用于规模研究,以评估其在生物降解过程中的商业可行性。

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