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首页> 外文期刊>Environmental Sustainability >Optimization and scale-up of laccase production by Bacillus sp.BAB-4151 isolated from the waste of the soap industry
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Optimization and scale-up of laccase production by Bacillus sp.BAB-4151 isolated from the waste of the soap industry

机译:优化和漆酶生产的扩大芽孢杆菌sp.bab - 4151孤立的浪费肥皂行业

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Laccase is also known as the blue copper oxidase enzyme.Owing to its ability to oxidizes a wide variety of phenolic and non-phenolic substrates,this enzyme has many biotechnological applications.It is produced by plants,fungi,and a wide variety of bacteria.However,bacterial laccases have been studied more due to their merits over other sources.Production of bacterial laccase at the commercial level demands high yielding cultures and optimization of physicochemical parameters for more yields in a shorter period.Hence,the present research was aimed to isolate the potent laccase producing bacteria and to optimize cultural conditions for higher production of laccase.In this study,six laccase positive bacterial cultures were isolated from the waste of the soap industry in Kadi,Gujarat,India.One isolate later identified as Bacillus sp.BAB-4151 produced copious amounts of laccase.The production process of laccase was optimized at shake flask level by using one variable at a time(OVAT)method and scaled-up to 5 L capacity bioreactor.The isolate produced a higher yield of laccase under diverse physicochemical and nutritional conditions.The OVAT approach resulted in 2.9 folds improvement in the yield of laccase,which further increased by 1.4 fold during scale-up at a laboratory-scale bioreactor.The ability of the organism to produce laccase over of range of physico-chemical conditions and to retain the productivity during scale up of the process at bioreactor level suggests that the organism can be of great commercial significance.
机译:漆酶也被称为蓝铜氧化酶酶。各种各样的酚醛和non-phenolic这种酶底物,有许多生物技术应用程序。各种各样的细菌。研究了漆酶更由于他们优点超过其他来源。漆酶在商业水平要求高产生文化和优化物理化学参数更多的产量短的时期。旨在孤立的漆酶生产细菌和优化文化条件提高漆酶的生产。漆酶阳性细菌培养是孤立的从浪费肥皂行业法官表示,印度古吉拉特邦。杆菌sp.bab - 4151大量生产漆酶。通过使用一个优化在摇瓶水平一次变量(OVAT)方法并推广到5L容量生物反应器。高产漆酶的多样化物理化学和营养条件。OVAT方法导致了2.9倍的改善漆酶的产生,进一步增加1.4折在实验室规模的扩大生物反应器。漆酶在物理化学的范围条件和期间保持生产力在生物反应器层面扩大的过程表明有机体可以的商业意义。

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