Division of Pharmacology and Hygiene, Department of Biomolecular Sciences, University of Urbino Carlo Bo, Via S. Chiara 27, 61029, Urbino, Italy.
Department of Biomolecular Sciences, University of Urbino Carlo Bo, Urbino, Italy.
World J Microbiol Biotechnol. 2022 Sep 23;38(12):229. doi: 10.1007/s11274-022-03417-y.
This research investigated the characteristics of Zalaria obscura LS31012019 in terms of growth ability in different media (SDB, YPD and TSB) and temperatures (22, 25 and 37 °C), utilization of several carbon sources (Glucose, Fructose, Lactose, Sucrose, Xylose, Glycerol and Mannitol at 5, 2 and 1%) and several biochemical features (total protein content, Glutathione, pigments), in comparison with those of the phylogenetically related Aureobasidium pullulans ATCC 15233. The best growth of Z. obscura LS31012019 was obtained in YPD at 25 °C with the highest OD value (0.45) after 144 h of incubation, similar to that of A. pullulans ATCC 15233 (0.48). Glucose resulted the preferred carbon source for both the considered yeasts but also sucrose resulted in efficacy supporting the growth of Z. obscura LS31012019 and A. pullulans ATCC 15233, for their ability in converting sucrose to glucose and fructose and the latter into glucose. Interestingly, Z. obscura LS31012019 utilized also glycerol and mannitol. The biochemical analysis showed the similarity of protein profile in Z. obscura LS31012019 and A. pullulans ATCC 15233 (from 90 to 20 kDa) and a reduced GSH content (0.321 and 0.233 µmol/mg). The pigments extraction with hexane generated a yellow oleaginous pellet in both the strains, while a yellow solid matrix more intensely coloured in A. pullulans ATTC 15233 was visible with the following solvent extractions. Overall, our data showed that Z. obscura LS31012019 can grow in different media and temperatures and utilize carbon sources apart from glucose and sucrose, shifting to a non-fermentative metabolism. These results improve the information regarding the characteristics of Z. obscura, opening a new field of investigation for the possible application of new species of black yeasts in human application.
本研究调查了 Zalaria obscura LS31012019 在不同培养基(SDB、YPD 和 TSB)和温度(22、25 和 37°C)下的生长能力、几种碳源(葡萄糖、果糖、乳糖、蔗糖、木糖、甘油和甘露醇,浓度为 5%、2%和 1%)和几种生化特性(总蛋白含量、谷胱甘肽、色素)的特征,与系统发育上相关的 Aureobasidium pullulans ATCC 15233 进行了比较。Z. obscura LS31012019 在 25°C 的 YPD 中生长最好,培养 144 小时后的 OD 值最高(0.45),与 A. pullulans ATCC 15233(0.48)相似。葡萄糖是两种酵母的首选碳源,但蔗糖也能有效地支持 Z. obscura LS31012019 和 A. pullulans ATCC 15233 的生长,因为它们能够将蔗糖转化为葡萄糖和果糖,而后者又能转化为葡萄糖。有趣的是,Z. obscura LS31012019 还利用甘油和甘露醇。生化分析显示,Z. obscura LS31012019 和 A. pullulans ATCC 15233 的蛋白图谱相似(90 至 20 kDa),GSH 含量较低(0.321 和 0.233 µmol/mg)。用己烷提取色素,在两种菌株中都产生了黄色油性沉淀,而在用以下溶剂提取时,A. pullulans ATCC 15233 中可见黄色固体基质,颜色更深。总的来说,我们的数据表明,Z. obscura LS31012019 可以在不同的培养基和温度下生长,并利用除葡萄糖和蔗糖以外的碳源,转向非发酵代谢。这些结果提高了对 Z. obscura 特征的了解,为黑酵母新种在人类应用中的可能应用开辟了一个新的研究领域。