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从 Weissella cibaria KLC140 中鉴定出一个最小的 pKW2124 复制子及其在 Weissella 表达载体 pKUCm1 构建中的应用。

Characterization of a minimal pKW2124 replicon from Weissella cibaria KLC140 and its application for the construction of the Weissella expression vector pKUCm1.

机构信息

Department of Food Science and Biotechnology, Institute of Life Sciences and Resources, Kyung Hee University Yongin, South Korea.

Department of Hotel Culinary Arts, Yeonsung University Anyang, South Korea.

出版信息

Front Microbiol. 2015 Feb 3;6:35. doi: 10.3389/fmicb.2015.00035. eCollection 2015.

Abstract

A 2.1-kb plasmid was previously isolated from Weissella cibaria KLC140 in kimchi and cloned into pUC19 along with the slpA and gfp genes, resulting in an 8.6-kb pKWCSLGFP construct for use as a novel surface display vector. To reduce the size of the vector, the minimal replicon of pKW2124 was determined. The pKW2124 plasmid contains a putative origin of replication (ori), a potential ribosomal binding site (RBS), and the repA gene encoding a plasmid replication protein. To conduct the minimal replicon experiment, four different PCR products (MR1, ori+RBS+repA; MR2, RBS+repA; MR2', repA; MR3, fragment of repA) were obtained and cloned into pUC19 (pKUCm1, pKUCm2, pKUCm2', and pKUCm3, respectively) containing the chloramphenicol acetyltransferase (CAT) gene. These constructed vectors were electroporated into W. confusa ATCC 10881 with different transformation efficiencies of 1.5 × 10(5) CFU/μg, 1.3 × 10(1) CFU/μg, and no transformation, respectively, suggesting that the putative ori, RBS, and repA gene are essential for optimum plasmid replication. Subsequent segregational plasmid stability testing of pKUCm1 and pKUCm2 showed that the vector pKUCm1 is highly stable up to 100 generations but pKUCm2 was completely lost after 60 generations, suggesting that the putative ori may be important for plasmid stability in the host strain. In addition, a host range test of pKUCm1 revealed that it has a broad host range spectrum including Weissella, Lactococcus, Leuconostoc, and even Lactobacillus. To verify the application of pKUCm1, the β-galactosidase gene and its promoter region from W. cibaria KSD1 were cloned in the vector, resulting in pKUGal. Expression of the β-galactosidase gene was confirmed using blue-white screening after IPTG induction. The small and stable pKUGal vector will be useful for gene transfer, expression, and manipulation in the Weissella genome and in other lactic acid bacteria.

摘要

先前从泡菜中的 Weissella cibaria KLC140 中分离出一个 2.1kb 的质粒,并将其与 slpA 和 gfp 基因一起克隆到 pUC19 中,得到一个 8.6kb 的 pKWCSLGFP 构建体,用作新型表面展示载体。为了减小载体的大小,确定了 pKW2124 的最小复制子。pKW2124 质粒包含一个假定的复制起点 (ori)、一个潜在的核糖体结合位点 (RBS) 和编码质粒复制蛋白的 repA 基因。为了进行最小复制子实验,获得了四个不同的 PCR 产物 (MR1、ori+RBS+repA;MR2、RBS+repA;MR2'、repA;MR3、repA 片段),并分别克隆到含有氯霉素乙酰转移酶 (CAT) 基因的 pUC19 (pKUCm1、pKUCm2、pKUCm2'和 pKUCm3) 中。这些构建的载体分别用电穿孔法转化到 W. confusa ATCC 10881 中,转化效率分别为 1.5×10(5)CFU/μg、1.3×10(1)CFU/μg 和没有转化,这表明假定的 ori、RBS 和 repA 基因是最佳质粒复制所必需的。随后对 pKUCm1 和 pKUCm2 的分离稳定性测试表明,载体 pKUCm1 非常稳定,可达到 100 代,但 pKUCm2 在 60 代后完全丢失,表明假定的 ori 可能对宿主菌株中的质粒稳定性很重要。此外,pKUCm1 的宿主范围测试表明,它具有广泛的宿主范围谱,包括 Weissella、Lactococcus、Leuconostoc,甚至 Lactobacillus。为了验证 pKUCm1 的应用,将来自 Weissella cibaria KSD1 的β-半乳糖苷酶基因及其启动子区域克隆到载体中,得到 pKUGal。在 IPTG 诱导后,通过蓝白筛选证实了β-半乳糖苷酶基因的表达。小而稳定的 pKUGal 载体将有助于 Weissella 基因组和其他乳酸菌中的基因转移、表达和操作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d9/4315094/46b61c6875ee/fmicb-06-00035-g001.jpg

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