Monascus Yellow Pigment Production by Coupled Immobilized-Cell Fermentation and Extractive Fermentation in Nonionic Surfactant Micelle Aqueous Solution

Author:

Shi Kan1,Zhao Yuzhu1,Song Da2,Chen Gong3,Wang Chengtao4,Wu Zhenqiang2,Gu Huawei1

Affiliation:

1. College of Enology, College of Life Sciences, Northwest A&F University, Xianyang 712100, China

2. School of Bioscience and Bioengineering, South China University of Technology, Guangzhou 510006, China

3. School of Environmental Ecology and Biological Engineering, Wuhan Institute of Technology, Wuhan 430205, China

4. Beijing Engineering and Technology Research Center of Food Additives, Beijing Technology & Business University, Beijing 100048, China

Abstract

Microbial fermentation with immobilized cells possesses many advantages. However, this fermentation mode is restricted to the production of extracellular products. Our previous study demonstrated that the extractive fermentation of Monascus spp. in nonionic surfactant micelle aqueous solution can export Monascus pigments that are supposed to be mainly intracellular products to extracellular culture broth and, in the meantime, extracellularly enhance the production of yellow pigments at a low pH condition; consequently, this makes the continuous production of yellow pigments with immobilized Monascus cells feasible. In this study, immobilized-cell fermentation and extractive fermentation in Triton X-100 micelle aqueous solution were successfully combined to continuously produce Monascus yellow pigments extracellularly. We examined the effects of cell immobilization and Triton X-100 on cell growth, pigment production, and pigment composition. In the repeated-batch extractive fermentation with immobilized cells, the biomass in Ca-alginate gel beads continued to grow and reached 21.2 g/L after seven batches, and dominant yellow pigments were produced extracellularly and stable for each batch. The mean productivity of the extracellular yellow pigments reached up to 22.31 AU410 nm/day within the first four batches (13 days) and 19.7 AU410 nm/day within the first seven batches (25 days). The results also provide a new strategy for producing such intracellular products continuously and extracellularly.

Funder

National Natural Science Foundation of China

Natural Science Basic Research Plan in Shaanxi Province of China

Fund of the Beijing Engineering and Technology Research Center of Food Additives, Beijing Technology & Business University

Scientific and Technological Innovation and Achievement Transformation Projects of Experimental and Demonstrational Stations of Northwest A&F University

Science Foundation Project of Wuhan Institute of Technology

Publisher

MDPI AG

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Food Science

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