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乳酸菌中一种可反向筛选的无缝诱变系统的开发。

Development of a counterselectable seamless mutagenesis system in lactic acid bacteria.

作者信息

Xin Yongping, Guo Tingting, Mu Yingli, Kong Jian

机构信息

State Key Laboratory of Microbial Technology, Shandong University, 27 Shanda Nanlu, Jinan, 250100, People's Republic of China.

出版信息

Microb Cell Fact. 2017 Jul 5;16(1):116. doi: 10.1186/s12934-017-0731-8.

Abstract

BACKGROUND

Lactic acid bacteria (LAB) are receiving more attention to act as cell factories for the production of high-value metabolites. However, the molecular tools for genetic modifying these strains are mainly vector-based double-crossover strategies, which are laborious and inefficient. To address this problem, several counterselectable markers have been developed, while few of them could be used in the wild-type host cells without pretreatment.

RESULTS

The pheS gene encoding phenylalanyl-tRNA synthetase alpha subunit was identified in Lactococcus lactis NZ9000 genome. When mutant pheS gene (pheS*) under the control of the Lc. lactis NZ9000 L-lactate dehydrogenase promoter (P) was expressed from a plasmid, the resulted PheS* with an A312G substitution rendered cells sensitive to the phenylalanine analog p-chloro-phenylalanine (p-Cl-Phe). This result suggested pheS* was suitable to be used as a counterselectable marker in Lc. lactis. However, the expression level of pheS* from a chromosomal copy was too low to confer p-Cl-Phe sensitivity. Therefore, a strategy of cascading promoters was attempted for strengthening the expression level of pheS*. Expectedly, a cassette 5Pldh-pheS* with five tandem repetitive promoters P resulted in a sensitivity to 15 mM p-Cl-Phe. Subsequently, a counterselectable seamless mutagenesis system PheS*/pGhost9 based on a temperature-sensitive plasmid pGhost9 harboring a 5Pldh-pheS* cassette was developed in Lc. lactis. We also demonstrated the possibility of applying pheS* to be a counterselectable marker in Lactobacillus casei BL23.

CONCLUSIONS

As reported in E. coli, pheS* as a counterselectable marker has been demonstrated to be functional in targeted gene(s) deletion in Lc. lactis as well as in L. casei. Moreover, the efficiency and timesaving counterselectable seamless mutagenesis system PheS*/pGhost9 could be used in the wild-type host cells without pretreatment.

摘要

背景

乳酸菌(LAB)作为生产高价值代谢物的细胞工厂正受到越来越多的关注。然而,对这些菌株进行基因改造的分子工具主要是基于载体的双交换策略,这种策略既费力又低效。为了解决这个问题,已经开发了几种反选择标记,但其中很少有能在未经预处理的野生型宿主细胞中使用的。

结果

在乳酸乳球菌NZ9000基因组中鉴定出编码苯丙氨酰-tRNA合成酶α亚基的pheS基因。当在乳酸乳球菌NZ9000 L-乳酸脱氢酶启动子(P)控制下的突变型pheS基因(pheS*)从质粒表达时,产生的具有A312G替换的PheS使细胞对苯丙氨酸类似物对氯苯丙氨酸(p-Cl-Phe)敏感。这一结果表明pheS适合用作乳酸乳球菌中的反选择标记。然而,来自染色体拷贝的pheS的表达水平过低,无法赋予对p-Cl-Phe的敏感性。因此,尝试了一种级联启动子策略来提高pheS的表达水平。不出所料,具有五个串联重复启动子P的5Pldh-pheS盒导致对15 mM p-Cl-Phe敏感。随后,在乳酸乳球菌中开发了基于携带5Pldh-pheS盒的温度敏感质粒pGhost9的反选择无缝诱变系统PheS*/pGhost9。我们还证明了将pheS*用作干酪乳杆菌BL23中的反选择标记的可能性。

结论

如在大肠杆菌中所报道的,pheS作为反选择标记已被证明在乳酸乳球菌以及干酪乳杆菌的靶向基因缺失中起作用。此外,高效且省时的反选择无缝诱变系统PheS/pGhost9可用于未经预处理的野生型宿主细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c00/5499019/3c2fb9b7dd22/12934_2017_731_Fig1_HTML.jpg

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