Influence of nitrogen source and pH value on undesired poly(γ-glutamic acid) formation of a protease producing Bacillus licheniformis strain

Author:

Meissner Lena1,Kauffmann Kira1,Wengeler Timo1,Mitsunaga Hitoshi2,Fukusaki Eiichiro2,Büchs Jochen1

Affiliation:

1. grid.1957.a 000000010728696X AVT. Biochemical Engineering RWTH Aachen University Worringer Weg 1 52074 Aachen Germany

2. grid.136593.b 0000000403733971 Department of Biotechnology, Graduate School of Engineering Osaka University 2-1 Yamadaoka 565-0871 Suita Osaka Japan

Abstract

Abstract Bacillus spp. are used for the production of industrial enzymes but are also known to be capable of producing biopolymers such as poly(γ-glutamic acid). Biopolymers increase the viscosity of the fermentation broth, thereby impairing mixing, gas/liquid mass and heat transfer in any bioreactor system. Undesired biopolymer formation has a significant impact on the fermentation and downstream processing performance. This study shows how undesirable poly(γ-glutamic acid) formation of an industrial protease producing Bacillus licheniformis strain was prevented by switching the nitrogen source from ammonium to nitrate. The viscosity was reduced from 32 to 2.5 mPa s. A constant or changing pH value did not influence the poly(γ-glutamic acid) production. Protease production was not affected: protease activities of 38 and 46 U mL−1 were obtained for ammonium and nitrate, respectively. With the presented results, protease production with industrial Bacillus strains is now possible without the negative impact on fermentation and downstream processing by undesired poly(γ-glutamic acid) formation.

Funder

Bundesministerium für Bildung und Forschung

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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