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基于生物信息学分析的实时 PCR 方法,用于定性和定量检测乳杆菌属基于新型标记物。

Real-time PCR method for qualitative and quantitative detection of Lactobacillus sakei group species targeting novel markers based on bioinformatics analysis.

机构信息

Institute of Life Sciences & Resources and Department of Food Science and Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.

Institute of Life Sciences & Resources and Department of Food Science and Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.

出版信息

Int J Food Microbiol. 2021 Oct 2;355:109335. doi: 10.1016/j.ijfoodmicro.2021.109335. Epub 2021 Jul 26.

Abstract

Latilactobacillus sakei group comprises four closely related species, making it difficult to accurately distinguish them with standard markers such as the 16S rRNA gene. The objective of our study was to mine novel markers for PCR detection and discrimination of L. sakei group species and L. sakei subspecies by comparative pan-genomic analysis. A total of 63 genome sequences of L. sakei group species consisted of 119,899 coding genes, yielding 5741 pan-genomes, 831 core-genomes, 3347 accessory-genomes, and 1563 unique-genomes. The accessory-genome was compared to extract unique candidate genes common only to genomes of the same species. The candidate genes were then aligned with the other bacterial genomes to select marker genes present in all genomes of a given species, but not in the genomes of other species. We identified the arginine/ornithine antiporter, putative cell surface protein precursor, sodium:solute symporter, PRD domain protein, PTS sugar transporter subunit IIC, and phosphoenolpyruvate-dependent sugar phosphotransferase system EIIC as marker genes for L. sakei, L. sakei subsp. sakei, L. sakei subsp. carnosus, L. curvatus, L. graminis, and L. fuchuensis, respectively. Primer pairs were designed for each marker and showed 100% specificity for 48 lactic acid bacterial reference strains. The PCR method developed in this study was used to evaluate 106 strains isolated from fermented foods to demonstrate that the marker genes provided a viable alternative to the 16S rRNA gene. We also applied the method to the monitoring of kimchi samples to quantify L. sakei group species or subspecies. Our PCR method based on novel markers can rapidly identify L. sakei group with high accuracy and high throughput.

摘要

清酒乳杆菌组包含四个密切相关的种,使用 16S rRNA 基因等标准标记物难以准确区分它们。我们的研究目的是通过比较泛基因组分析挖掘用于 PCR 检测和区分清酒乳杆菌组物种和清酒乳杆菌亚种的新型标记物。总共 63 个清酒乳杆菌组物种的基因组序列由 119899 个编码基因组成,产生了 5741 个泛基因组、831 个核心基因组、3347 个附属基因组和 1563 个独特基因组。比较附属基因组以提取仅存在于相同物种基因组中的独特候选基因。然后将候选基因与其他细菌基因组进行比对,选择存在于给定物种所有基因组中但不存在于其他物种基因组中的标记基因。我们确定精氨酸/鸟氨酸反向转运蛋白、假定的细胞表面蛋白前体、钠离子:溶质协同转运蛋白、PRD 结构域蛋白、PTS 糖转运体亚基 IIC 和磷酸烯醇丙酮酸依赖性糖磷酸转移酶系统 EIIC 为清酒乳杆菌、清酒乳杆菌亚种 sakei、清酒乳杆菌亚种 carnous、弯曲乳杆菌、革兰氏乳杆菌和藤仓乳杆菌的标记基因,分别。为每个标记物设计了引物对,对 48 株乳酸细菌参考菌株显示出 100%的特异性。本研究中开发的 PCR 方法用于评估从发酵食品中分离的 106 株菌株,证明标记基因是 16S rRNA 基因的可行替代方法。我们还将该方法应用于泡菜样品的监测,以定量清酒乳杆菌组的物种或亚种。我们基于新型标记物的 PCR 方法可以快速、准确、高通量地鉴定清酒乳杆菌组。

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