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Randomly-amplified microsatellite polymorphism for preliminary typing of lactic acid bacteria from Bryndza Cheese
Chebeňová V, Berta G, Kuchta T, Brežná B, Pangallo D.
Jazyk angličtina Země Česko
- MeSH
- acidóza laktátová metabolismus MeSH
- DNA bakterií genetika MeSH
- DNA fingerprinting metody MeSH
- DNA primery genetika MeSH
- genotyp MeSH
- Lactobacillaceae genetika izolace a purifikace klasifikace MeSH
- mikrosatelitní repetice MeSH
- sýr mikrobiologie MeSH
- technika náhodné amplifikace polymorfní DNA metody MeSH
A high-throughput, medium-discrimination method for preliminary typing and selecting non-identical isolates of lactic acid bacteria in cheeses was developed. RAMP, a PCR with one microsatellite-targeted and one random primer, was used for preliminary typing of 1119 isolates of lactic acid bacteria from Slovak Bryndza cheese. A total of 59 genotypes were identified based on RAMP profiles consisting of 12-23 DNA fragments of 150-3000 bp. For example, 18, 17, 13 and 7 different RAMP-types were identified in Lactobacillus brevis, L. plantarum, L. paracasei and L. fermentum, respectively. The method facilitated well reproducible, medium-discrimination typing of Lactobacillus spp. and Pediococcus spp. at a subspecies level and proved to be suitable for preliminary typing of lactic acid bacteria isolated from cheese.
Department of Microbiology and Molecular Biology Food Research Institute Bratislava
Institute of Molecular Biology Slovak Academy of Sciences Bratislava
Obsahuje 1 tabulku
Bibliografie atd.Literatura
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- $a A high-throughput, medium-discrimination method for preliminary typing and selecting non-identical isolates of lactic acid bacteria in cheeses was developed. RAMP, a PCR with one microsatellite-targeted and one random primer, was used for preliminary typing of 1119 isolates of lactic acid bacteria from Slovak Bryndza cheese. A total of 59 genotypes were identified based on RAMP profiles consisting of 12-23 DNA fragments of 150-3000 bp. For example, 18, 17, 13 and 7 different RAMP-types were identified in Lactobacillus brevis, L. plantarum, L. paracasei and L. fermentum, respectively. The method facilitated well reproducible, medium-discrimination typing of Lactobacillus spp. and Pediococcus spp. at a subspecies level and proved to be suitable for preliminary typing of lactic acid bacteria isolated from cheese.
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