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Molecular Routes to Specific Identification of the Lactobacillus Casei Group at the Species Subspecies and Strain Level

机译:在种亚种和菌株水平上特异性鉴定干酪乳杆菌的分子途径

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摘要

The genus includes, among others, , and species that are collectively referred to as the group. Many studies have shown that strains belonging to this group may decrease lactose intolerance, the effects of inflammatory bowel disease, diarrhea, constipation, food allergies and even colon cancer. Moreover, evidences exists of positive effects of these bacteria on mucosal immunity and blood cholesterol level. Because of their beneficial influence on human health, many of them are used as food additives and probiotic pharmaceuticals. It should be stressed that health-promoting properties are not attributed at the species level, but to specific strains. Therefore, procedures are necessary to allow specific identification at each phylogenetic level—genus, species and strain. In this paper we present a practical overview of molecular methods for the identification and differentiation of bacteria. The research included 30 bacterial strains belonging to three species: and Among the tested procedures were genus- and species-specific PCR, multiplex-PCR, Real-Time HRM analysis, RFLP-PCR, rep-PCR, RAPD-PCR, AFLP-PCR, and proteomic methods such as MALDI-TOF MS typing and SDS-PAGE fingerprinting. The obtained results showed that multiplex-PCR and MALDI-TOF MS turned out to be the most useful methods to identify the tested bacteria at the species level. At the strain level, the AFLP-PCR method showed the highest discriminatory power. We hope that the presented results will allow for the easy selection of an appropriate procedure, depending on the experiment conducted and the equipment capabilities of any given laboratory.
机译:属除其他外包括和,统称为组的物种。许多研究表明,属于这一类的菌株可能会降低乳糖不耐症,炎症性肠病,腹泻,便秘,食物过敏甚至结肠癌。此外,有证据表明这些细菌对粘膜免疫力和血胆固醇水平具有积极作用。由于它们对人体健康具有有益的影响,因此许多用作食品添加剂和益生菌药物。应该强调的是,促进健康的特性并非归因于物种水平,而是归因于特定的菌株。因此,必须有程序才能在每个系统发育水平(属,种和株)上进行特异性鉴定。在本文中,我们对细菌鉴定和分化的分子方法进行了概述。该研究包括30个细菌菌株,它们属于以下三种: 在所测试的程序中,包括属和种特异性PCR,多重PCR,实时HRM分析,RFLP-PCR,rep-PCR,RAPD-PCR,AFLP-PCR和蛋白质组学方法,例如MALDI-TOF MS分型和SDS-PAGE指纹。获得的结果表明,多重PCR和MALDI-TOF MS被证明是在物种水平上鉴定被测细菌的最有用方法。在菌株水平上,AFLP-PCR方法显示出最高的鉴别能力。我们希望,根据所进行的实验和任何给定实验室的设备性能,所给出的结果将便于选择合适的程序。

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