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Production of indole diterpenes by Aspergillus alliaceus

โœ Scribed by B. Junker; A. Walker; N. Connors; A. Seeley; P. Masurekar; M. Hesse


Book ID
101721870
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
265 KB
Volume
95
Category
Article
ISSN
0006-3592

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โœฆ Synopsis


Abstract

Production of two related indole diterpenes (differing by a dimethyl leucine side chain) by Aspergillus alliaceus was improved through several pilot scale fermentations. Media were optimized through focus primarily on initial increases, as well as midโ€cycle additions, of carbon and nitrogen sources. Fermentation conditions were improved by varying ventilation conditions using various combinations of air flowrate and backโ€pressure set points. Production improvements were quantified based on total indole diterpene concentration as well as the ratio of the majorโ€toโ€minor byโ€product components. Those changes with a positive substantial impact primarily on total indole diterpene concentration included early cycle glycerol shots and enhanced ventilation conditions (high air flowrate, low backโ€pressure). Those changes with a significant impact primarily on ratio included higher initial cerelose, soybean oil, monosodium glutamate, tryptophan, or ammonium sulfate concentrations, higher broth pH, and enhanced ventilation conditions. A few changes (higher initial glycerol and monosodium glutamate concentrations) resulted in less notable and desirable titer or ratio changes when implemented individually, but they were adopted to more fully realize the impact of other improvements or to simplify processing. Overall, total indole diterpene titers were improved at the 600 L pilot scale from 125โ€“175 mg/L with a ratio of about 2.1 to 200โ€“260 mg/L with a ratio of about 3.3โ€“4.5. Thus, the ability to optimize total indole diterpene titer and/or ratio readily exists for secondary metabolite production using Aspergillus cultures. ยฉ 2006 Wiley Periodicals, Inc.


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