Unesco Chinese Center of Marine Biotechnology, Ocean University of China, Yushan Road, No. 5, Qingdao, China.
Appl Microbiol Biotechnol. 2013 Oct;97(20):8931-9. doi: 10.1007/s00253-013-5150-0. Epub 2013 Aug 16.
After over 100 strains of Aureobasidium spp isolated from mangrove system were screened for their ability to produce poly(β-malic acid) (PMA), it was found that Aureobasidium sp. P6 strain among them could produce high level of Ca(2+)-PMA. Fourteen percent glucose and 6.5 % CaCO3 in the medium were the most suitable for Ca(2+)-PMA production. Then, 100.7 g/l of Ca(2+)-PMA was produced using Aureobasidium sp. P6 strain within 168 h at flask level. During 10-l batch fermentation, when the medium contained 12.0 % glucose, 98.7 g/l of Ca(2+)-PMA in the culture and 14.7 g/l of cell dry weight were obtained within 156 h, leaving 0.34 % reducing sugar in the fermented medium. When glucose concentration in the fermentation medium was 14.0 %, 118.3 g/l of Ca(2+)-PMA in the culture and 16.4 g/l of cell dry weight were obtained within 168 h, leaving 0.4 % reducing sugar in the fermented medium. After purification of Ca(2+)-PMA from the culture and acid hydrolysis of the pure Ca(2+)-PMA, analysis of HPLC showed that Aureobasidium sp. P6 strain only produced two main components of Ca(2+)-PMA and minor amount of calcium malate and that the hydrolysate of PMA was mainly composed of calcium malate. This is the first time to report that the novel yeast strain Aureobasidium sp. P6 strain isolated from the mangrove systems can produce such high amount of Ca(2+)-PMA.
从红树林系统中分离出的 100 多株节丛孢菌进行了筛选,以检测它们生产聚(β-苹果酸)(PMA)的能力,结果发现其中的节丛孢菌 P6 菌株能够产生高水平的 Ca(2+)-PMA。在培养基中,14%的葡萄糖和 6.5%的 CaCO3 最适合 Ca(2+)-PMA 的生产。然后,在摇瓶水平下,使用节丛孢菌 P6 菌株在 168 小时内生产出 100.7 g/L 的 Ca(2+)-PMA。在 10 升批量发酵中,当培养基中含有 12.0%的葡萄糖时,在 156 小时内获得了 14.7 g/L 的细胞干重和 98.7 g/L 的 Ca(2+)-PMA,发酵液中还残留 0.34%的还原糖。当发酵培养基中的葡萄糖浓度为 14.0%时,在 168 小时内获得了 118.3 g/L 的 Ca(2+)-PMA 和 16.4 g/L 的细胞干重,发酵液中还残留 0.4%的还原糖。从培养物中纯化 Ca(2+)-PMA 并对纯 Ca(2+)-PMA 进行酸水解后,HPLC 分析表明,节丛孢菌 P6 菌株仅产生 Ca(2+)-PMA 的两种主要成分和少量的钙苹果酸,而 PMA 的水解产物主要由钙苹果酸组成。这是首次报道从红树林系统中分离出的新型酵母菌株节丛孢菌 P6 菌株能够产生如此高含量的 Ca(2+)-PMA。