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[生物反应器中木质素分解酶的生产]

[Production of ligninolytic enzymes in bioreactor].

作者信息

Gao Da-wen, Wen Xiang-hua, Qian Yi

机构信息

ESPC State Key Joint Laboratory, Department of Environment Science and Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Huan Jing Ke Xue. 2006 Feb;27(2):333-7.

Abstract

Production of ligninolytic enzymes under nitrogen limited conditions(C/N = 56/2.2) was studied in a 5-L stirred tank bioreactor with a working volume of 2 L for obtaining higher production of ligninolytic enzymes by white rot fungus Phanerochaete chrysosporium BKM-F-1767 and its control strategy. Results show that the manganese peroxidase (MnP) and laccase (Lac) reached peak at the sixth day and the seventh day, respectively, and the variation of them with time in a batch cultivation are similar to the results by agitated Erlenmeyer flasks; however higher enzyme activity was not achieved by applying a fed-batch strategy, in which nitrogen limited medium was fed to the reactor. In addition, variation of pH during cultivation was related to the growth of P. chrysosporium and enzymes production during both batch and fed-batch cultivation. The pH value of liquid medium began to decline when the enzyme activity occurred in the system, and the decline became more and more slow along with the decrease of enzyme activity at the end of fermentation. So, pH would be as a control parameter to find out the growth of P. chrysosporium and enzymes production during incubating P. chrysosporium. However, fed-batch strategy still need further study.

摘要

在5升搅拌罐式生物反应器(工作体积为2升)中研究了氮限制条件(C/N = 56/2.2)下木质素分解酶的产生情况,以通过白腐真菌黄孢原毛平革菌BKM-F-1767获得更高产量的木质素分解酶及其控制策略。结果表明,锰过氧化物酶(MnP)和漆酶(Lac)分别在第6天和第7天达到峰值,它们在分批培养中随时间的变化与在摇瓶培养中的结果相似;然而,通过向反应器中补料氮限制培养基的补料分批策略并未实现更高的酶活性。此外,培养过程中pH值的变化与黄孢原毛平革菌的生长以及分批和补料分批培养过程中的酶产生有关。当系统中出现酶活性时,液体培养基的pH值开始下降,并且随着发酵结束时酶活性的降低,下降变得越来越缓慢。因此,pH值可作为一个控制参数,以了解黄孢原毛平革菌培养过程中的生长情况和酶产生情况。然而,补料分批策略仍需进一步研究。

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