Department of Engineering, Graduate School of Integrated Science and Technology, Shizuoka University, 3-5-1 Johoku, Naka-ku, Hamamatsu, 432-8561, Japan.
Nihon Shokuhin Kako Co., Ltd, 30 Tajima, Fuji, 417-8530, Japan.
Sci Rep. 2018 Mar 6;8(1):4066. doi: 10.1038/s41598-018-22496-2.
We previously developed an industrial production process for novel water-soluble indigestible polysaccharides (resistant glucan mixture, RGM). During the process, an anhydrosugar-levoglucosan -is formed as a by-product and needs to be removed to manufacture a complete non-calorie product. Here, we attempted to isolate thermophilic bacteria that utilize levoglucosan as a sole carbon source, to establish a removing process for levoglucosan at higher temperature. Approximately 800 natural samples were used to isolate levoglucosan-utilizing microorganisms. Interestingly, levoglucosan-utilizing microorganisms-most of which were filamentous fungi or yeasts-could be isolated from almost all samples at 25°C. We isolated three thermophilic bacteria that grew well on levoglucosan medium at 60°C. Two of them and the other were identified as Bacillus smithii and Parageobacillus thermoglucosidasius, respectively, by 16S rDNA sequence analysis. Using B. smithii S-2701M, which showed best growth on levoglucosan, glucose and levoglucosan in 5% (wt/vol) RGM were completely diminished at 50°C for 144 h. These bacteria are known to have a biotechnological potential, given that they can ferment a range of carbon sources. This is the first report in the utilization of levoglucosan by these thermophiles, suggesting that our results expand their biotechnological potential for the unutilized carbon resources.
我们之前开发了一种新型水溶性不可消化多糖(抗性葡聚糖混合物,RGM)的工业生产工艺。在该过程中,会形成无水糖-左旋葡聚糖作为副产物,需要将其去除,以制造完整的非卡路里产品。在这里,我们试图分离能够将左旋葡聚糖用作唯一碳源的嗜热细菌,以建立在较高温度下去除左旋葡聚糖的工艺。大约使用了 800 个自然样本来分离利用左旋葡聚糖的微生物。有趣的是,在 25°C 下,几乎可以从所有样本中分离出利用左旋葡聚糖的微生物,其中大多数是丝状真菌或酵母。我们从 60°C 的左旋葡聚糖培养基中分离出三种能够良好生长的嗜热细菌。其中两种和另一种通过 16S rDNA 序列分析分别鉴定为史密斯芽孢杆菌和嗜热葡糖酸芽孢杆菌。利用在左旋葡聚糖上生长最好的史密斯芽孢杆菌 S-2701M,在 50°C 下 144 小时可完全消耗 5%(wt/vol)RGM 中的葡萄糖和左旋葡聚糖。这些细菌被认为具有生物技术潜力,因为它们可以发酵多种碳源。这是嗜热菌利用左旋葡聚糖的首次报道,表明我们的结果扩展了它们对未利用碳资源的生物技术潜力。