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质粒消除导致柠檬明串珠菌EFEL2700中异源基因表达得到改善。

Plasmid curing resulted in improved heterologous gene expression in Leuconostoc citreum EFEL2700.

作者信息

Jang Y-J, Kim S-A, Seo S-O, Li L, Han N S

机构信息

Brain Korea 21 Center for Bio-Resource Development, Division of Animal, Horticultural, and Food Sciences, Chungbuk National University, Cheongju, Korea.

Bio Technology Institute (BTI), University of Minnesota, Twin Cities, MN, USA.

出版信息

Lett Appl Microbiol. 2019 May;68(5):430-436. doi: 10.1111/lam.13118. Epub 2019 Feb 20.

Abstract

Leuconostoc citreum EFEL2700 isolated from kimchi was used as a host strain for genetic and metabolic engineering in our previous studies, but the cells of EFEL2700 contained a cryptic plasmid (P-cells). Thus, we created plasmid-free cells (F-cells) using the CRISPR/Cas9 system. In this study, we compared the microbial characteristics of P- and F-cells in terms of growth rate, biochemical properties, transformation efficiency, plasmid copy number and protein expression level. When the growth rate was measured in MRS medium at 30°C, no significant difference (P > 0·01) was observed. Biochemical properties, tested using an API 50CHL kit, showed no differences. Transformation efficiency of F-cells, measured using pCB4270, was higher (1·3 × 10 CFU per μg DNA) than that of P-cells (5·0 × 10 CFU per μg DNA). Copy number after transformation of pCBBgl was 4-fold higher for F-cells than for P-cells. When β-glucosidase activity was assayed in the above experiment, F-cells showed 3·4-fold higher values than P-cells. In conclusion, this study demonstrates that plasmid curing in L. citreum EFEL2700 improves its characteristics as a gene expression host. SIGNIFICANCE AND IMPACT OF THE STUDY: Leuconostoc citreum EFEL2700 (P-cell) isolated from kimchi is a useful food-grade host for expressing heterologous genes. The presence of a cryptic plasmid is thought to limit efficient gene expression. In this study, we compared the microbial and genetic changes after plasmid curing in this strain. The plasmid-free strain showed improved levels of transformation efficiency, copy number and heterologous gene expression without alterations in phenotypes such as the growth rates and biochemical properties. The resulting strain of L. citreum EFEL2701 (F-cell) can be used as an efficient host for genetic engineering.

摘要

在我们之前的研究中,从泡菜中分离出的柠檬明串珠菌EFEL2700被用作基因和代谢工程的宿主菌株,但EFEL2700的细胞含有一个隐蔽质粒(P细胞)。因此,我们使用CRISPR/Cas9系统创建了无质粒细胞(F细胞)。在本研究中,我们从生长速率、生化特性、转化效率、质粒拷贝数和蛋白质表达水平方面比较了P细胞和F细胞的微生物特性。当在30°C的MRS培养基中测量生长速率时,未观察到显著差异(P>0.01)。使用API 50CHL试剂盒测试的生化特性也未显示差异。使用pCB4270测量的F细胞的转化效率(每微克DNA 1.3×10 CFU)高于P细胞(每微克DNA 5.0×10 CFU)。pCBBgl转化后的拷贝数F细胞比P细胞高4倍。在上述实验中检测β-葡萄糖苷酶活性时,F细胞的值比P细胞高3.4倍。总之,本研究表明柠檬明串珠菌EFEL2700中的质粒消除改善了其作为基因表达宿主的特性。研究的意义和影响:从泡菜中分离出的柠檬明串珠菌EFEL2700(P细胞)是用于表达异源基因的有用食品级宿主。隐蔽质粒的存在被认为会限制有效的基因表达。在本研究中,我们比较了该菌株质粒消除后的微生物和遗传变化。无质粒菌株在转化效率、拷贝数和异源基因表达水平上有所提高,而生长速率和生化特性等表型没有改变。所得的柠檬明串珠菌EFEL2701菌株(F细胞)可作为基因工程的有效宿主。

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