16S rRNA gene sequencing versus the API 20 NE system and the VITEK 2 ID-GNB card for identification of nonfermenting Gram-negative bacteria in the clinical laboratory.
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2
Impact of 16S rRNA gene sequence analysis for identification of bacteria on clinical microbiology and infectious diseases.
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Direct automated sequencing of 16S rDNA amplified by polymerase chain reaction from bacterial cultures without DNA purification.
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4
Gram type-specific broad-range PCR amplification for rapid detection of 62 pathogenic bacteria.
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The equine frozen semen industry
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Bacterial phylogeny based on 16S and 23S rRNA sequence analysis.
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Maxam AM and Gilbert W. A new method for sequencing DNA. Proc Natl Acad Sci 1997; 74: 560-564.
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The role of international transport of equine semen on disease transmission
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Mollet C, Drancourt M, and Raoult D. Sequence analysis as a novel basis for bacterial identification. Mol Microbiol 1997; 26: 1005-1011.
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Fertility of frozen equine semen.
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A Molecular View of Microbial Diversity and the Biosphere
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Park YS and Cho GJ. Factors affecting on the motility of semen and the pregnancy rate of artificial insemination in equine. J Emb Trans 2011; 26: 13-17.
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13
16S rRNA Gene Sequencing for Bacterial Pathogen Identification in the Clinical Laboratory
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Estimating the rate of evolution of the rate of molecular evolution.
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The Increasing Significance of International Trade in Equids and Its Influence on the Spread of Infectious Diseases