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r anatipestifer atcc 11845 genome  (ATCC)


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    Structured Review

    ATCC r anatipestifer atcc 11845 genome
    R Anatipestifer Atcc 11845 Genome, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 38 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/r+anatipestifer+atcc+11845+genome/Riemerella+anatipestifera/pmc12919266-112-1-3
    Average 96 stars, based on 38 article reviews
    r anatipestifer atcc 11845 genome - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Expressing:

    Article Title: Development of the CRISPR/Cas9 system for genome editing in Riemerella anatipestifer
    Article Snippet: The wild-type strain (top panels) shows robust transformant growth, while the ΔdprA mutant (bottom panels) shows transformation deficiency under selection, representing the compromised natural transformation. (C-E) The linear comparison of R. anatipestifer ATCC 11845, its natural transformants, and clinical R. anatipestifer 0-7 or 0-19. .. The antibiotic resistance genes ( ereD, tet (X), erm (F), and bla OXA ) were integrated into R. anatipestifer ATCC 11845 genome. (F) Schematic representation of complementary expression plasmid pCom-dprA construction. (G) Functional complementation assay demonstrating that reintroduction of dprA gene (right panel) restores natural transformation capacity in the ΔdprA mutant (left panel) when challenged with clinical R. anatipestifer 0-7. ..

    Plasmid Preparation:

    Article Title: Development of the CRISPR/Cas9 system for genome editing in Riemerella anatipestifer
    Article Snippet: The wild-type strain (top panels) shows robust transformant growth, while the ΔdprA mutant (bottom panels) shows transformation deficiency under selection, representing the compromised natural transformation. (C-E) The linear comparison of R. anatipestifer ATCC 11845, its natural transformants, and clinical R. anatipestifer 0-7 or 0-19. .. The antibiotic resistance genes ( ereD, tet (X), erm (F), and bla OXA ) were integrated into R. anatipestifer ATCC 11845 genome. (F) Schematic representation of complementary expression plasmid pCom-dprA construction. (G) Functional complementation assay demonstrating that reintroduction of dprA gene (right panel) restores natural transformation capacity in the ΔdprA mutant (left panel) when challenged with clinical R. anatipestifer 0-7. ..

    Functional Assay:

    Article Title: Development of the CRISPR/Cas9 system for genome editing in Riemerella anatipestifer
    Article Snippet: The wild-type strain (top panels) shows robust transformant growth, while the ΔdprA mutant (bottom panels) shows transformation deficiency under selection, representing the compromised natural transformation. (C-E) The linear comparison of R. anatipestifer ATCC 11845, its natural transformants, and clinical R. anatipestifer 0-7 or 0-19. .. The antibiotic resistance genes ( ereD, tet (X), erm (F), and bla OXA ) were integrated into R. anatipestifer ATCC 11845 genome. (F) Schematic representation of complementary expression plasmid pCom-dprA construction. (G) Functional complementation assay demonstrating that reintroduction of dprA gene (right panel) restores natural transformation capacity in the ΔdprA mutant (left panel) when challenged with clinical R. anatipestifer 0-7. ..

    Transformation Assay:

    Article Title: Development of the CRISPR/Cas9 system for genome editing in Riemerella anatipestifer
    Article Snippet: The wild-type strain (top panels) shows robust transformant growth, while the ΔdprA mutant (bottom panels) shows transformation deficiency under selection, representing the compromised natural transformation. (C-E) The linear comparison of R. anatipestifer ATCC 11845, its natural transformants, and clinical R. anatipestifer 0-7 or 0-19. .. The antibiotic resistance genes ( ereD, tet (X), erm (F), and bla OXA ) were integrated into R. anatipestifer ATCC 11845 genome. (F) Schematic representation of complementary expression plasmid pCom-dprA construction. (G) Functional complementation assay demonstrating that reintroduction of dprA gene (right panel) restores natural transformation capacity in the ΔdprA mutant (left panel) when challenged with clinical R. anatipestifer 0-7. ..

    Mutagenesis:

    Article Title: Development of the CRISPR/Cas9 system for genome editing in Riemerella anatipestifer
    Article Snippet: The wild-type strain (top panels) shows robust transformant growth, while the ΔdprA mutant (bottom panels) shows transformation deficiency under selection, representing the compromised natural transformation. (C-E) The linear comparison of R. anatipestifer ATCC 11845, its natural transformants, and clinical R. anatipestifer 0-7 or 0-19. .. The antibiotic resistance genes ( ereD, tet (X), erm (F), and bla OXA ) were integrated into R. anatipestifer ATCC 11845 genome. (F) Schematic representation of complementary expression plasmid pCom-dprA construction. (G) Functional complementation assay demonstrating that reintroduction of dprA gene (right panel) restores natural transformation capacity in the ΔdprA mutant (left panel) when challenged with clinical R. anatipestifer 0-7. ..



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