首页|市售益生菌产品中15株乳杆菌的精准鉴定及毒力基因和耐药基因研究

市售益生菌产品中15株乳杆菌的精准鉴定及毒力基因和耐药基因研究

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目的 采用多种手段对13批市售益生菌产品中15株乳杆菌进行鉴定研究,比较不同鉴定技术鉴定结果差异,旨在建立一套能够快速、精准鉴定乳杆菌的标准方法,并对乳杆菌进一步开展安全性评价。方法 参照《GB 4789。35-2023食品安全国家标准食品微生物学检验乳酸菌检验》方法对13批市售益生菌产品中15株乳杆菌进行分离纯化,分别采用基质辅助激光解析电离飞行时间质谱(matrix-assisted laser desorption/ionization time-of-flight mass spectrometry,MALDI-TOF MS)、16S rRNA基因测序技术和全基因组测序技术(Whole Genome Sequencing,WGS)3种技术对15株乳杆菌进行鉴定,同时,利用WGS和生物信息学方法,对15株乳杆菌进行序列组装、基因预测和功能注释,深入挖掘乳杆菌菌株中毒力基因和耐药基因等信息。结果 采用MALDI-TOF MS、16S rRNA基因测序技术和WGS技术,15株乳杆菌中分别有4、7、5株菌鉴定结果与标签明示菌名不一致。A04标签菌名为嗜酸乳杆菌,3种测序技术鉴定结果均为副干酪乳杆菌,提示该批产品存在菌名混乱的情况。Venn图结果分析MALDI-TOF MS与16S rRNA基因测序技术有5株菌鉴定结果不一致;16S rRNA基因测序技术与WGS有6株菌鉴定结果不一致;MALDI-TOF MS与WGS有3株菌鉴定结果不一致。采用WGS和生物信息学方法研究发现,15株乳杆菌中均未检测到毒力基因和耐药基因。结论 本研究证实了 5批次市售益生菌产品存在实际菌名与产品标签明示不一致的现象。MALDI-TOF MS、16S rRNA基因测序技术和WGS 3种鉴定技术鉴定结果存在一定差异,WGS技术可以获得完整的基因组信息,实现对乳杆菌的精准鉴定及对毒力基因、耐药基因进行精准解析,因此,可以作为乳杆菌鉴定及基因组安全性分析的标准方法。
Accurate Identification of 15 Strains of Lactobacillus in Commercially Available Probiotics and Study on Virulence Genes and Drug Resistance Genes
OBJECTIVE With the development of microbial identification technology and the change of species classification and nomenclature rules,resulting in confusion of bacterial names.In this study,15 strains of Lactobacillus from 13 batches of probiotics were identified by various methods,and the results of different identification methods were compared,the aim of this study was to establish a rapid and accurate standard method for the identification of Lactobacillus.Meanwhile,Whole Genome Sequencing(WGS)and bioinformatics methods were used to further evaluate the safety of Lactobacillus.METHODS According to the method of"GB 4789.35-2023 National food safety standard-Food microbiological examination-Lactic acid bacteria test",15 strains of Lactobacillus were isolated and purified from 13 batches of commercial probiotic products.The 15 strains of Lactobacillus were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry(MALDI-TOF MS),16S rRNA gene sequencing and WGS,respectively.At the same time,WGS and bioinformatics methods were used to sequence assembly,gene prediction and functional annotation.In-depth excavation of information such as virulence genes and drug resistance elements of Lactobacillus strains.RESULTS MALDI-TOF MS,16S rRNA gene sequencing and WGS technology were used to identify 4,7 and 5 strains of Lactobacillus in 15 strains,respectively.The identification results were inconsistent with the label name.A04 was identified as Lactobacillus acidophilus,and the identification results of three sequencing techniques were all Lactobacillus paracasei,suggesting that there was confusion in the names of the products.Venn diagram analysis showed that the identification results of 5 strains were inconsistent between MALDI-TOF MS and 16S rRNA gene sequencing technology.The identification results of 6 strains of bacteria by 16S rRNA gene sequencing technology and WGS technology were inconsistent.The identification results of 3 strains of bacteria by MALDI-TOF MS and WGS were inconsistent.Using WGS and bioinformatics methods,it was found that no drug resistance elements and virulence elements were detected in 15 strains of Lactobacillus.CONCLUSION In this study,three identification techniques,MALDI-TOF MS,16S rRNA gene sequencing and WGS,were used to confirm that the actual bacteria names of 5 batches of commercially available probiotic products were inconsistent with the product labels.There are some differences in the identification results of the three identification technologies,but WGS can obtain complete genomic information to achieve accurate identification of Lactobacillus and accurate analysis of virulence genes and drug resistance genes.Therefore,it can be used as a standard method for Lactobacillus identification and genome safety analysis,and realize tracking evaluation and supervision of commercially available probiotic products.

probioticsLactobacillusaccurate identificationvirulence genesdrug resistance genes

李珏、王银环、郑小玲、王征南、王庭璋、高雯雯、钱凌、王知坚

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浙江省食品药品检验研究院,国家药品监督管理局药品微生物检测与预警重点实验室,浙江省药品接触材料质量控制研究重点实验室,杭州 310052

浙江省微生物技术与生物信息学研究重点实验室,杭州 310012

益生菌产品 乳杆菌 精准鉴定 毒力基因 耐药基因

2024

中国现代应用药学
中国药学会

中国现代应用药学

CSTPCD北大核心
影响因子:0.877
ISSN:1007-7693
年,卷(期):2024.41(19)