Título: Complete Genome Sequence of the Probiotic Lactic Acid Bacterium Lactobacillus Rhamnosus
Autores: Kozhakhmetov, Samat; Center for Life Sciences, Nazarbaev University, Astana
Kushugulova, Almagul; Center for Life Sciences, Nazarbaev University, Astana
Supiyev, Adil; Center for Life Sciences, Nazarbaev University, Astana
Tynybayeva, Indira; Center for Life Sciences, Nazarbaev University, Astana
Kairov, Ulykbek; Center for Life Sciences, Nazarbaev University, Astana
Saduakhasova, Saule; Center for Life Sciences, Nazarbaev University, Astana
Shakhabayeva, Gulnara; Center for Life Sciences, Nazarbaev University, Astana
Bapishev, Kenzhebulat; Medical Social Institution for Older People and Invalids, Astana
Nurgozhin, Talgat; Center for Life Sciences, Nazarbaev University, Astana
Zhumadilov, Zhaxybay; Center for Life Sciences, Nazarbaev University, Astana
Fecha: 2014-01-24
Publicador: Central Asian Journal of Global Hearth
Fuente:
Tipo:
Tema: No aplica
Descripción: Introduction: Lactobacilli are a bacteria commonly found in the gastrointestinal tract. Some species of this genus have probiotic properties. The most common of these is Lactobacillus rhamnosus, a microoganism, generally regarded as safe (GRAS). It is also a homofermentative L-(+)-lactic acid producer. The genus Lactobacillus is characterized by an extraordinary degree of the phenotypic and genotypic diversity. However, the studies of the genus were conducted mostly with the unequally distributed, non-random choice of species for sequencing; thus, there is only one representative genome from the Lactobacillus rhamnosus clade available to date. The aim of this study was to characterize the genome sequencing of selected strains of Lactobacilli. Methods: 109 samples were isolated from national domestic dairy products in the laboratory of Center for life sciences. After screaning isolates for probiotic properties, a highly active Lactobacillus spp strain was chosen. Genomic DNA was extracted according to the manufacturing protocol (Wizard® Genomic DNA Purification Kit). The Lactobacillus rhamnosus strain was identified as the highly active Lactobacillus strain accoridng to its morphological, cultural, physiological, and biochemical properties, and a genotypic analysis. Results: The genome of Lactobacillus rhamnosus was sequenced using the Roche 454 GS FLX (454 GS FLX) platforms. The initial draft assembly was prepared from 14 large contigs (20 all contigs) by the Newbler gsAssembler 2.3 (454 Life Sciences, Branford, CT). Conclusion: A full genome-sequencing of selected strains of lactic acid bacteria was made during the study.
Idioma: Inglés

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