Department of Biotechnology, Applied and Industrial Microbiology Laboratory IIT Madras, Chennai, 600 036, India.
AMB Express. 2012 Jun 9;2(1):31. doi: 10.1186/2191-0855-2-31.
We isolated a mutant that produced higher levels of curdlan than the wild strain Agrobacterium sp. ATCC 31750 by chemical mutagenesis using N-methyl-N-nitro-nitrosoguanidine. The mutant strain produced 66 g/L of curdlan in 120 h with a yield of (0.88) while, the wild strain produced 41 g/L in 120 h with a yield of (0.62) in a stirred bioreactor. The mutant could not produce curdlan when the pH was shifted from 7.0 to 5.5 after nitrogen depletion as followed for wild strain. In contrast, pH optimum for cell growth and curdlan production for mutant was found to be 7.0. We optimized the downstream processing of curdlan by varying different volumes of NaOH and HCl for extraction and precipitation of curdlan. The molecular weight of the purified curdlan from the wild and mutant strain was 6.6 × 105 Da and 5.8 × 105 Da respectively. The monosaccharide analyses confirm that curdlan from both wild and mutant strain contains only glucose units. From the NMR and FTIR data, it has been confirmed that curdlan was exclusively composed of β (1 → 3)-D-glucan residues.
我们通过使用 N-甲基-N-亚硝基-N-亚硝基胍对农杆菌 sp.ATCC 31750 进行化学诱变,分离出了一种比野生菌株产生更多卷须聚糖的突变体。突变株在搅拌生物反应器中 120 小时内产生 66g/L 的卷须聚糖,产率为(0.88),而野生株在 120 小时内产生 41g/L 的卷须聚糖,产率为(0.62)。当氮耗尽后,野生菌株遵循的 pH 值从 7.0 转移到 5.5 时,突变株无法产生卷须聚糖。相比之下,突变株的细胞生长和卷须聚糖生产的最佳 pH 值被发现为 7.0。我们通过改变用于提取和沉淀卷须聚糖的 NaOH 和 HCl 的不同体积来优化卷须聚糖的下游处理。从野生和突变菌株中纯化的卷须聚糖的分子量分别为 6.6×105 Da 和 5.8×105 Da。单糖分析证实,野生和突变菌株的卷须聚糖仅含有葡萄糖单元。从 NMR 和 FTIR 数据可以确认,卷须聚糖仅由β(1→3)-D-葡聚糖残基组成。