CAS Key Laboratory of Systems Microbial Biotechnology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, 300308, China.
National Center of Technology Innovation for Synthetic Biology, Tianjin, 300308, China.
Microb Cell Fact. 2022 Dec 29;21(1):276. doi: 10.1186/s12934-022-01994-z.
Poly γ-glutamic acid (γ-PGA) is a promising biopolymer for various applications. For glutamic acid-independent strains, the titer of γ-PGA is too low to meet the industrial demand. In this study, we isolated a novel γ-PGA-producing strain, Bacillus tequilensis BL01, and multiple genetic engineering strategies were implemented to improve γ-PGA production.
First, the one-factor-at-a-time method was used to investigate the influence of carbon and nitrogen sources and temperature on γ-PGA production. The optimal sources of carbon and nitrogen were sucrose and (NH)SO at 37 °C, respectively. Second, the sucA, gudB, pgdS, and ggt genes were knocked out simultaneously, which increased the titer of γ-PGA by 1.75 times. Then, the titer of γ-PGA increased to 18.0 ± 0.3 g/L by co-overexpression of the citZ and pyk genes in the mutant strain. Furthermore, the γ-PGA titer reached 25.3 ± 0.8 g/L with a productivity of 0.84 g/L/h and a yield of 1.50 g of γ-PGA/g of citric acid in fed-batch fermentation. It should be noted that this study enables the synthesis of low (1.84 × 10 Da) and high (2.06 × 10 Da) molecular weight of γ-PGA by BL01 and the engineering strain.
The application of recently published strategies to successfully improve γ-PGA production for the new strain B. tequilensis BL01 is reported. The titer of γ-PGA increased 2.17-fold and 1.32-fold compared with that of the wild type strain in the flask and 5 L fermenter. The strain shows excellent promise as a γ-PGA producer compared with previous studies. Meanwhile, different molecular weights of γ-PGA were obtained, enhancing the scope of application in industry.
聚γ-谷氨酸(γ-PGA)是一种很有前途的生物聚合物,可用于各种应用。对于谷氨酸非依赖性菌株,γ-PGA 的产量太低,无法满足工业需求。在本研究中,我们分离到一株新型γ-PGA 生产菌株,解淀粉芽孢杆菌 BL01,并实施了多种基因工程策略来提高 γ-PGA 的产量。
首先,采用单因素法考察了碳源和氮源以及温度对γ-PGA 生产的影响。最适碳源和氮源分别为蔗糖和(NH4)2SO4,温度为 37℃。其次,同时敲除 sucA、gudB、pgdS 和 ggt 基因,使γ-PGA 的产量提高了 1.75 倍。然后,在突变株中过表达 citZ 和 pyk 基因,使γ-PGA 的产量提高到 18.0±0.3 g/L。进一步通过补料分批发酵,γ-PGA 的产量达到 25.3±0.8 g/L,生产强度为 0.84 g/L/h,柠檬酸得率为 1.50 g γ-PGA/g 柠檬酸。值得注意的是,本研究使 BL01 及其工程菌株能够合成低(1.84×10^Da)和高分子量(2.06×10^Da)的γ-PGA。
本研究应用最新发表的策略成功提高了新菌株解淀粉芽孢杆菌 BL01 的γ-PGA 产量。与野生型菌株相比,摇瓶和 5 L 发酵罐中的γ-PGA 产量分别提高了 2.17 倍和 1.32 倍。与以往的研究相比,该菌株作为 γ-PGA 生产菌具有很大的应用潜力。同时,获得了不同分子量的 γ-PGA,扩展了其在工业中的应用范围。