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利用常压室温等离子体处理对球形红细菌进行诱变以高效生产辅酶Q10。

Mutagenesis of Rhodobacter sphaeroides using atmospheric and room temperature plasma treatment for efficient production of coenzyme Q10.

作者信息

Zou Rong-Song, Li Suyan, Zhang Le-Le, Zhang Chong, Han Yi-Jun, Gao Ge, Sun Xiangyang, Gong Xiaoqiang

机构信息

College of Forestry, Beijing Forestry University, Beijing 100083, China; R&D Center, Shenzhou Biology & Technology Co., Ltd., Nei Monggol 010206, China.

College of Forestry, Beijing Forestry University, Beijing 100083, China.

出版信息

J Biosci Bioeng. 2019 Jun;127(6):698-702. doi: 10.1016/j.jbiosc.2018.12.005. Epub 2019 Jan 29.

Abstract

Coenzyme Q10 (CoQ10) plays an important role in the human respiratory chain and is widely used as medicine and dietary supplement. To improve the fermentation efficiency of CoQ10, a modified version of atmospheric and room temperature plasma (ARTP) treatment was used to mutate Rhodobacter sphaeroides. Meanwhile, Vitamin K3, a structural analog of CoQ10, was used as an inhibitor for mutant selection. In the first round of screening in 24-well plates, three mutants were obtained, with the production of CoQ10 at 311 mg/L, 307 mg/L, and 309 mg/L, which were increased from the parent's production at 265 mg/L. Furthermore, a second round of mutation and screening was performed based on the mutant strain with the highest production in the first round, leading to the identification of a mutant AR01 with the production of CoQ10 at ∼330 mg/L. Finally, 590 mg/L CoQ10 was obtained for AR01 after 100 h fermentation, which was ∼25.5% higher than that of the original parent strain. It is the first report of ARTP treatment usage for the selection of CoQ10 producing bacteria and the results show that plasma jet, driven by helium-based ARTP, can be a feasible strategy for mutation feeding.

摘要

辅酶Q10(CoQ10)在人体呼吸链中发挥着重要作用,并且被广泛用作药物和膳食补充剂。为了提高CoQ10的发酵效率,采用了一种改良的常压室温等离子体(ARTP)处理方法对球形红细菌进行诱变。同时,将CoQ10的结构类似物维生素K3用作突变体筛选的抑制剂。在24孔板中进行的第一轮筛选中,获得了三个突变体,其CoQ10产量分别为311 mg/L、307 mg/L和309 mg/L,相比亲本产量265 mg/L有所提高。此外,基于第一轮中产量最高的突变菌株进行了第二轮诱变和筛选,从而鉴定出一个CoQ10产量约为330 mg/L的突变体AR01。最终,AR01在发酵100小时后获得了590 mg/L的CoQ10,比原始亲本菌株高出约25.5%。这是首次报道使用ARTP处理来筛选产CoQ10的细菌,结果表明由氦基ARTP驱动的等离子体射流可以成为一种可行的诱变策略。

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