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首页> 外文期刊>Probiotics and Antimicrobial Proteins >Molecular Identification and Typing of Putative Probiotic Indigenous Lactobacillus plantarum Strain Lp91 of Human Origin by Specific Primed-PCR Assays
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Molecular Identification and Typing of Putative Probiotic Indigenous Lactobacillus plantarum Strain Lp91 of Human Origin by Specific Primed-PCR Assays

机译:特异性引物PCR法鉴定人源性益生菌本土植物乳杆菌Lp91菌株的分子鉴定和分型

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In the present scenario, it is now well documented that probiotics confer health benefits to the host and the purported probiotic effects are highly strain specific. Hence, accurate genotypic identification is extremely important to link the strain to the specific health effect. With this aim, specific primed-PCR assays were developed and explored for the molecular identification and typing of a putative indigenous probiotic isolate Lp91 of human faecal origin. PCR with specific primers targeting 23S rRNA gene of genus Lactobacillus and 16S rRNA gene of species L. plantarum resulted positive for Lp91. In addition, BLAST analysis of 16S rRNA gene sequence of Lp91 and multiple sequence alignment of 16S rRNA gene variable (V2-V3) regions along with the reference sequences revealed it as L. plantarum with a sequence identity of more than 99%. Furthermore, resolution of 16S rRNA gene sequences was sufficient to infer a phylogenetic relationship amongst Lactobacillus species. In order to determine strain-level variations, randomly amplified polymorphic DNA (RAPD) banding profiles of Lp91 obtained with OPAA-01, OPAP-01 and OPBB-01 primers were compared with those of reference strains of Lactobacillus spp., and Lp91 could be delineated as a distinct strain. Apart from this, presence of probiotic markers viz. bile salt hydrolase (bsh) and collagen-binding protein (cbp) encoding genes in Lp91 genome could be attributed to its exploitation as a potential probiotic adjunct in the development of indigenous functional foods. Lactobacillus isolates/or strains from the gastrointestinal system, fermented products and other environmental niches could be identified and characterized by employing the PCR methods developed in this study; they are rapid, reproducible and more accurate than the conventional methods based on the fermentation profiles.
机译:在目前的情况下,现已充分证明益生菌可为宿主带来健康益处,并且据称益生菌的作用具有很高的菌株特异性。因此,准确的基因型鉴定对于将菌株与特定的健康影响联系起来非常重要。为了这个目的,开发并探索了特异性的引物PCR测定法,用于人类粪便来源的推定的天然益生菌分离物Lp91的分子鉴定和分型。用针对乳杆菌属的23S rRNA基因和植物乳杆菌物种的16S rRNA基因的特异性引物进行PCR,对Lp91呈阳性。此外,对Lp91的16S rRNA基因序列的BLAST分析和16S rRNA基因可变区(V2-V3)与参考序列的多序列比对显示它为植物乳杆菌,序列同一性超过99%。此外,解析16S rRNA基因序列足以推断乳杆菌属之间的系统发生关系。为了确定菌株水平的变异,将使用OPAA-01,OPAP-01和OPBB-01引物获得的Lp91的随机扩增多态性DNA(RAPD)条带图谱与参考菌株的乳酸杆菌属(Lactobacillus spp。)进行了比较。被描述为一个独特的应变。除此之外,益生菌标志物的存在。 Lp91基因组中的胆汁盐水解酶(bsh)和胶原结合蛋白(cbp)编码基因可以归因于其作为开发本土功能性食品中潜在的益生菌佐剂的原因。通过使用本研究开发的PCR方法,可以鉴定和表征来自胃肠道系统,发酵产物和其他环境的乳杆菌分离株/或菌株。与传统的基于发酵曲线的方法相比,它们具有更快,更重的准确性。

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