National Food Institute, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
DTU Health Tech, Department of Health Technology, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Bioresour Technol. 2022 Mar;348:126776. doi: 10.1016/j.biortech.2022.126776. Epub 2022 Jan 29.
Nisin has a tendency to associate with the cell wall of the producing strain, which inhibits growth and lowers the ceiling for nisin production. With the premise that resistance to the cationic chlorhexidine could reduce nisin binding, variants with higher tolerance to this compound were isolated. One of the resistant isolates, AT0606, had doubled its resistance to nisin, and produced three times more free nisin, when cultured in shake flasks. Characterization revealed that AT0606 had an overall less negatively charged and thicker cell wall, and these changes appeared to be linked to a defect high-affinity phosphate uptake system, and a mutation inactivating the oleate hydratase. Subsequently, the potential of using AT0606 for cost efficient production of nisin was explored, and it was possible to attain a high titer of 13181 IU/mL using a fermentation substrate based on molasses and a by-product from whey protein hydrolysate production.
尼生素倾向于与产生菌的细胞壁结合,从而抑制其生长并降低尼生素的产量上限。基于对阳离子氯己定的抗性可以降低尼生素的结合度这一前提,分离出了对该化合物具有更高耐受性的变体。其中一个抗性分离株 AT0606 在摇瓶中培养时,其对尼生素的抗性增加了一倍,游离尼生素的产量增加了两倍。特性分析表明,AT0606 的细胞壁整体带电量更低且更厚,这些变化似乎与高亲和力磷酸盐摄取系统的缺陷以及使油酸脱水酶失活的突变有关。随后,探索了使用 AT0606 以经济有效的方式生产尼生素的潜力,使用基于糖蜜和乳清蛋白水解产物的发酵基质,可以达到 13181 IU/mL 的高滴度。