Literature DB >> 30014335

Efficient Production of Polymalic Acid by a Novel Isolated Aureobasidium pullulans Using Metabolic Intermediates and Inhibitors.

Wei Zeng1,2, Bin Zhang1,2, Guiguang Chen1,2, Mengxuan Li1,2, Zhiqun Liang3,4.   

Abstract

Polymalic acid (PMA) is a linear anionic polyester composed of L-malic acid monomers, which have potential applications as drug carriers, surgical suture, and biodegradable plastics. In this study, a novel strain of Aureobasidium pullulans var. melanogenum GXZ-6 was isolated and identified according to the morphological observation and deoxyribonucleic acid internal-transcribed spacer sequence analysis, and the product of PMA was characterized by FT-IR, 13C-NMR, and 1H-NMR spectra. The PMA titer of GXZ-6 reached 62.56 ± 1.18 g L-1 with productivity of 0.35 g L-1 h-1 using optimized medium with addition of metabolic intermediates (citrate and malate) and inhibitor (malonate) by batch fermentation in a 10-L fermentor. Besides that the malate for PMA synthesis in GXZ-6 might mainly come from the glyoxylate cycle, based on results, citrate, malate, malonate, and maleate increased while succinate and fumarate inhibited the production of PMA, which was different from that of other A. pullulans. This study provided a potential strain and a simple metabolic control strategy for high-titer production of PMA and shared novel information on the biosynthesis pathway of PMA in A. pullulans.

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Keywords:  Aureobasidium pullulans var. melanogenum; Biosynthesis pathway; High-titer; Metabolic control; Polymalic acid

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Year:  2018        PMID: 30014335     DOI: 10.1007/s12010-018-2825-0

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  2 in total

1.  Analysis of the L-malate biosynthesis pathway involved in poly(β-L-malic acid) production in Aureobasidium melanogenum GXZ-6 by addition of metabolic intermediates and inhibitors.

Authors:  Wei Zeng; Bin Zhang; Qi Liu; Guiguang Chen; Zhiqun Liang
Journal:  J Microbiol       Date:  2019-02-05       Impact factor: 3.422

2.  A Novel Strategy to Regulate 1-Deoxynojirimycin Production Based on Its Biosynthetic Pathway in Streptomyces lavendulae.

Authors:  Hao Wu; Ye Guo; Lei Chen; Guiguang Chen; Zhiqun Liang
Journal:  Front Microbiol       Date:  2019-08-22       Impact factor: 5.640

  2 in total

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