Abstract

BackgroundPolymalic acid (PMA) has many applications in food and medical industries. However, so far it has not been commercially produced by fermentation. Therefore, it is very important how to develop an economical process for a large scale production of PMA by one step fermentation.ResultsAfter over 200 strains of Aureobasidium spp. isolated from the mangrove systems in the South of China were screened for their ability to produce Ca2+-polymalate (PMA), it was found that Aureobasidium pullulans var. pullulans MCW strain among them could produce high level of Ca2+-PMA. The medium containing only 140.0 g/L glucose, 65.0 g/L CaCO3 and 7.5 g/L corn steep liquor was found to be the most suitable for Ca2+-PMA production. Then, 121.3 g/L of Ca2+-PMA was produced by A. pullulans var. pullulans MCW strain within 120 h at flask level. During 10-L batch fermentation, 152.52 g/L of Ca2+-PMA in the culture and 8.6 g/L of cell dry weight were obtained within 96 h, leaving 4.5 g/L of reducing sugar in the fermented medium. After purification of the Ca2+-PMA from the culture and acid hydrolysis of the purified Ca2+-PMA, HPLC analysis showed that A.pullulans var. pullulans MCW strain produced only one main component of Ca2+-PMA and the hydrolysate of the purified Ca2+-PMA was mainly composed of l-malic acid. Mw (the apparent molecular weight) of the purified PMA was 2.054 × 105 (g/moL) and the purified PMA was estimated to be composed of 1784 l-malic acids.ConclusionsIt was found that A. pullulans var. pullulans MCW strain obtained in this study could yield 152.52 g/L of Ca2+-PMA within the short time, the produced PMA had the highest molecular weight and the medium for production of Ca2+- PMA by this yeast was very simple.

Highlights

  • Polymalic acid (PMA) has many applications in food and medical industries

  • After the fermentation tests and carbon source assimilation experiments using the yeast strain MCW were performed [22], our results showed that the characteristics of the yeast strain MCW were closely related to those of the typical strain A. pullulans var. pullulans CBS 584.75

  • Most of the yeast strains which can produce a large amount of PMA have been thought to be A. pullulans [9,10,11, 17, 18]

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Summary

Results

Mn number-average molecular weight, Mp peak-position molecular weight, Mz z-avearge molecular weight. Ca2+-PMA in the culture and 8.6 g/L of cell dry weight within 96 h in the presences of CSL. The purified Ca2+PMA contained only one main component and the hydrolysate of Ca2+-PMA was mainly composed of malic acid. Mw of the purified PMA was 2.054 × 105 (g/moL) and the purified PMA was composed of 1784 l-malic acids. This is the highest molecular mass of PMA obtained so far

Conclusions
Background
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