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v harveyi atcc 35084  (ATCC)


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    Structured Review

    ATCC v harveyi atcc 35084
    V Harveyi Atcc 35084, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 88 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/v+harveyi+atcc+35084/Vibrio+harveyi+(Johnson+and+Shunk)+Baumann+et+al/pmc12756713-269-9-11
    Average 94 stars, based on 88 article reviews
    v harveyi atcc 35084 - by Bioz Stars, 2026-10
    94/100 stars

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    Related Articles

    Bioassay:

    Article Title: Natural products as antivibrio agents: insight into the chemistry and biological activity
    Article Snippet: Disk diffusion assay of the compounds was conducted against V. harveyi ATCC 14126, V. harveyi ATCC 35084, V. alginolyticus ATCC 17749, Vibrio sp. 9M-P5-1, V. fischeri VF-74, V. parahaemolyticus IFO 12711. .. Based on the bioassay compound 15 was active against V. harveyi ATCC 14126, V. harveyi ATCC 35084, and V. fischeri VF-74 at a concentration of 10 μg. .. Crude extract of Pseudomonas haloplanktis INH from scallop hatchery was tested against V. ordalii ATCC 33509, V. algiynolyticus ATCC 17749, V. anguillarum IFO 13266, and V. anguillarum (VAR).

    Concentration Assay:

    Article Title: Natural products as antivibrio agents: insight into the chemistry and biological activity
    Article Snippet: Disk diffusion assay of the compounds was conducted against V. harveyi ATCC 14126, V. harveyi ATCC 35084, V. alginolyticus ATCC 17749, Vibrio sp. 9M-P5-1, V. fischeri VF-74, V. parahaemolyticus IFO 12711. .. Based on the bioassay compound 15 was active against V. harveyi ATCC 14126, V. harveyi ATCC 35084, and V. fischeri VF-74 at a concentration of 10 μg. .. Crude extract of Pseudomonas haloplanktis INH from scallop hatchery was tested against V. ordalii ATCC 33509, V. algiynolyticus ATCC 17749, V. anguillarum IFO 13266, and V. anguillarum (VAR).

    Sequencing:

    Article Title: Microbial bioindicators of Stony Coral Tissue Loss Disease identified in corals and overlying waters using a rapid field-based sequencing approach.
    Article Snippet: Stony Coral Tissue Loss Disease (SCTLD) is a devastating disease.. Since 2014, it has spread along the entire Florida Reef Tract and into the greater Caribbean.. It was first detected in the United States Virgin Islands in January 2019.

    Article Title: Examining Coral Reef Ecosystem Dynamics Using Microorganisms and Metabolites
    Article Snippet: .. ASV20 displayed high sequence identity to V. harveyi ATCC 35084, an isolate obtained from a brown shark kidney following a mortality event (formerly known as V. carchariae (Grimes et al., 1984; Pedersen et al., 1998) (Figure 2-S11). ..

    Activity Assay:

    Article Title: The synthetic peptide GATR-3 shows significant antibacterial and biofilm-inhibition activity against shellfish- and oyster-associated bacteria Vibrio vulnificus and Vibrio parahaemolyticus
    Article Snippet: .. Similar MICs were observed for V. parahaemolyticus SAK11 and V. harveyi ATCC 35084, and moderate activity was observed against V. alginolyticus strains (MIC = 32 μg/mL). .. In contrast, GATR-3 resistance was observed for V. mimicus ATCC 33653 and V. cholerae 9064 (MIC ≥ 128 μg/mL).

    Diffusion-based Assay:

    Article Title: Natural products as antivibrio agents: insight into the chemistry and biological activity
    Article Snippet: .. Disk diffusion assay of the compounds was conducted against V. harveyi ATCC 14126, V. harveyi ATCC 35084, V. alginolyticus ATCC 17749, Vibrio sp. 9M-P5-1, V. fischeri VF-74, V. parahaemolyticus IFO 12711. .. Based on the bioassay compound 15 was active against V. harveyi ATCC 14126, V. harveyi ATCC 35084, and V. fischeri VF-74 at a concentration of 10 μg.

    Inhibition:

    Article Title: Natural products as antivibrio agents: insight into the chemistry and biological activity
    Article Snippet: 14 , Cyclo(D)-trans-4-OH-Pro-(D)-Phe (14) , Streptomyces sp. SCSIO 01689 , V. anguillarum , MIC 0.07 μg mL −1 , Inhibition of the growth , . .. 1 , 2- n -Pentyl-4-quinolinol (15) , Pseudoalteromonas A1-J11 , V. harveyi ATCC 14126, V. harveyi ATCC 35084, V. fischeri VF-74, V. harveyi , Dose 10 μg per disk , Inhibition of the growth , . .. 2 , • Isovaleric acid (16), • 2-methyl butyric acid (17) , Pseudoalteromonas haloplanktis INH , V ordalii ATCC 33509, V. alginolyticus ATCC 17749, V. anguillarum IFO 13266, dose 1 mg mL −1 , Inhibition of the growth , .

    Control:

    Article Title: The synthetic peptide GATR-3 shows significant antibacterial and biofilm-inhibition activity against shellfish- and oyster-associated bacteria Vibrio vulnificus and Vibrio parahaemolyticus
    Article Snippet: V. alginolyticus strain 8653 and V. harveyi ATCC 35,084 revealed that LL-37 had an MIC value >512 μg/mL and is considered resistant. .. Tetracycline was the control ( ); V. harveyi ATCC 35084 and V. alginolyticus 22–08–18 had a MIC of < 0.125 μg/mL, V. cholerae, V. mimicus ATCC 33653, V. alginolyticus 0–04-D1 and 8653, V. vulnificus MO6 and JY1701 MICs were 0.25 μg/mL, V. parahaemolyticus SAK11 MIC was 0.5 μg/mL, and V. parahaemolyticus NY477 MIC was 1 μg/mL. ..



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    Pangenome characteristics of <t>Vibrio</t> <t>harveyi</t> and V. campbellii (A ) Distribution of pangenome statistics (core, soft-core, shell, cloud and total genes) in 315 genomes datasets. ( B ) Distribution of pangenome statistics in the curated dataset of 82 genomes. ( C ) Pangenome accumulation curve based on 315 genomes. ( D ) Pangenome accumulation curve based on the curated dataset of 82 genomes
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    Pangenome characteristics of <t>Vibrio</t> <t>harveyi</t> and V. campbellii (A ) Distribution of pangenome statistics (core, soft-core, shell, cloud and total genes) in 315 genomes datasets. ( B ) Distribution of pangenome statistics in the curated dataset of 82 genomes. ( C ) Pangenome accumulation curve based on 315 genomes. ( D ) Pangenome accumulation curve based on the curated dataset of 82 genomes
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    Image Search Results


    Pangenome characteristics of Vibrio harveyi and V. campbellii (A ) Distribution of pangenome statistics (core, soft-core, shell, cloud and total genes) in 315 genomes datasets. ( B ) Distribution of pangenome statistics in the curated dataset of 82 genomes. ( C ) Pangenome accumulation curve based on 315 genomes. ( D ) Pangenome accumulation curve based on the curated dataset of 82 genomes

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Pangenome characteristics of Vibrio harveyi and V. campbellii (A ) Distribution of pangenome statistics (core, soft-core, shell, cloud and total genes) in 315 genomes datasets. ( B ) Distribution of pangenome statistics in the curated dataset of 82 genomes. ( C ) Pangenome accumulation curve based on 315 genomes. ( D ) Pangenome accumulation curve based on the curated dataset of 82 genomes

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques:

    Comparative analysis of genomic parameters between Vibrio harveyi and V. campbellii and among V. campbellii phylogenetic groups ( A – C ) Comparative analysis of ( A ) GC content, ( B ) genome size, and ( C ) number of protein-coding genes between V. harveyi and V. campbellii . ( D – F ) Corresponding comparisons of ( D ) GC content ( E ) genome size and ( F ) number of protein coding-genes among Gr-L, Gr-LM, and Gr-LD groups of V. campbellii . Difference in genomic parameters between V. harveyi and V. campbellii were analysed using a two-tailed independent t-test. Genomic indices among three groups of V. campbellii were compared using one-way ANOVA followed by Tukey’s multiple comparison. V. campbellii strains were classified into three phylogenetic groups; Gr-L (luminescent), Gr-LD (luminescence-defective), and Gr-LM (luminescent with mobile genetic elements) based on core genome phylogeny and synteny organization. Data represent mean ± SE. The level of significance is indicated as: P < 0.05 (*), P < 0.01 (**), and P < 0.001 (***)

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Comparative analysis of genomic parameters between Vibrio harveyi and V. campbellii and among V. campbellii phylogenetic groups ( A – C ) Comparative analysis of ( A ) GC content, ( B ) genome size, and ( C ) number of protein-coding genes between V. harveyi and V. campbellii . ( D – F ) Corresponding comparisons of ( D ) GC content ( E ) genome size and ( F ) number of protein coding-genes among Gr-L, Gr-LM, and Gr-LD groups of V. campbellii . Difference in genomic parameters between V. harveyi and V. campbellii were analysed using a two-tailed independent t-test. Genomic indices among three groups of V. campbellii were compared using one-way ANOVA followed by Tukey’s multiple comparison. V. campbellii strains were classified into three phylogenetic groups; Gr-L (luminescent), Gr-LD (luminescence-defective), and Gr-LM (luminescent with mobile genetic elements) based on core genome phylogeny and synteny organization. Data represent mean ± SE. The level of significance is indicated as: P < 0.05 (*), P < 0.01 (**), and P < 0.001 (***)

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques: Two Tailed Test, Comparison

    Distribution of luminescence and sucrose operon genes in Vibrio harveyi and V. campbellii Strains sequenced in the present study has been shown in blue color. Luminescence operon ( luxCDABEGH ) has been shown as blue color shaded circle while scrRAKB operon as red shaded square. The empty circle/square represents the absence of gene. The tree was visualized and annotated using iTOL. Vh, V. harveyi ; Vc, V. campbellii

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Distribution of luminescence and sucrose operon genes in Vibrio harveyi and V. campbellii Strains sequenced in the present study has been shown in blue color. Luminescence operon ( luxCDABEGH ) has been shown as blue color shaded circle while scrRAKB operon as red shaded square. The empty circle/square represents the absence of gene. The tree was visualized and annotated using iTOL. Vh, V. harveyi ; Vc, V. campbellii

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques:

    Syntenic organization of luminescence operon ( A ) and scrRAKB operon ( B ) in Vibrio harveyi and V. campbellii Vh, V. harveyi ; Vc, V. campbellii ; Va, V. alginolyticus. T3SS indicates start of T3SS operon by VopD. The luxCDABEGH operon and scrRAKB operon is represented by orange color. Blue color is representing the presence of transposable elements. The tree was generated using EasyFig and annotated using InkScape (version 1.4.2)

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Syntenic organization of luminescence operon ( A ) and scrRAKB operon ( B ) in Vibrio harveyi and V. campbellii Vh, V. harveyi ; Vc, V. campbellii ; Va, V. alginolyticus. T3SS indicates start of T3SS operon by VopD. The luxCDABEGH operon and scrRAKB operon is represented by orange color. Blue color is representing the presence of transposable elements. The tree was generated using EasyFig and annotated using InkScape (version 1.4.2)

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques: Generated

    Maximum likelihood Phylogenetic analysis of concatenated sequence of luminescence (LuxCDABEG) ( A ) and ScrRAKB ( B ) in V. harveyi and V. campbellii. The strains having full set of LuxCDABEG and ScrRAKB were selected for phyologenetic analysis. V. vulnificus ATCC 43382 served as outgroup for bioluminescence and V. alginolyticus ATCC 17749 for ScrRAKB clustering. Strains sequenced in the present study has been shown in blue color. Bootstrap value of more than 0.75 has been shown as star. Increasing size of star indicates higher bootstrap value. The tree was visualized and annotated using iTOL. Vh, V. harveyi ; Vc, V. campbellii ; Vv, V. vulnificus; Va, V. alginolyticus

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Maximum likelihood Phylogenetic analysis of concatenated sequence of luminescence (LuxCDABEG) ( A ) and ScrRAKB ( B ) in V. harveyi and V. campbellii. The strains having full set of LuxCDABEG and ScrRAKB were selected for phyologenetic analysis. V. vulnificus ATCC 43382 served as outgroup for bioluminescence and V. alginolyticus ATCC 17749 for ScrRAKB clustering. Strains sequenced in the present study has been shown in blue color. Bootstrap value of more than 0.75 has been shown as star. Increasing size of star indicates higher bootstrap value. The tree was visualized and annotated using iTOL. Vh, V. harveyi ; Vc, V. campbellii ; Vv, V. vulnificus; Va, V. alginolyticus

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques: Sequencing

    Gel picture showing presence of luxA ( A and B ) and scrA ( C and D ) gene. ( A ) and ( B ): M, 100 bp ladder; L1 to L18 represents 18 V . harveyi strains (L1, ATCC 14126; L2, LMG 7890; L3, LMG 19643; L4, SB1; L5, V2301; L6, V2426; L7, V2427; L8, V2432; L9, V2437; L10, V2438; L11, V2439; L12, V2441; L13, V2452; L14, Y/12–23; L15, Y2/12–23; L16, FCD2023/4; L17, FCD2023/7; L18, FCD2025/2) L19, Negative control for V. harveyi ; L20 to L50 represents 31 V . campbellii strains (L20, LMG11216/CAIM 519 T; L21, BAA-1116; L22 to L50, 29 strains between LB1 to LB516; L51, Negative control for V. campbellii ). ( C )and ( D ): Distribution of scrA gene. M; 100 bp ladder; L1 to L18 represents 18 V . harveyi strains having desirable 698 bp amplicon. L19, Negative control for V. harveyi ; L20 to L50 represents 31 V . campbellii strains with missing scrA gene. L51: Positive control for scrA using V. alginolyticus . L52: Negative control for V. campbellii

    Journal: Scientific Reports

    Article Title: Revisiting bioluminescence and sucrose utilization in aquatic pathogens Vibrio harveyi and V. campbellii using genome-wide in silico mapping and phenotyping

    doi: 10.1038/s41598-026-37651-3

    Figure Lengend Snippet: Gel picture showing presence of luxA ( A and B ) and scrA ( C and D ) gene. ( A ) and ( B ): M, 100 bp ladder; L1 to L18 represents 18 V . harveyi strains (L1, ATCC 14126; L2, LMG 7890; L3, LMG 19643; L4, SB1; L5, V2301; L6, V2426; L7, V2427; L8, V2432; L9, V2437; L10, V2438; L11, V2439; L12, V2441; L13, V2452; L14, Y/12–23; L15, Y2/12–23; L16, FCD2023/4; L17, FCD2023/7; L18, FCD2025/2) L19, Negative control for V. harveyi ; L20 to L50 represents 31 V . campbellii strains (L20, LMG11216/CAIM 519 T; L21, BAA-1116; L22 to L50, 29 strains between LB1 to LB516; L51, Negative control for V. campbellii ). ( C )and ( D ): Distribution of scrA gene. M; 100 bp ladder; L1 to L18 represents 18 V . harveyi strains having desirable 698 bp amplicon. L19, Negative control for V. harveyi ; L20 to L50 represents 31 V . campbellii strains with missing scrA gene. L51: Positive control for scrA using V. alginolyticus . L52: Negative control for V. campbellii

    Article Snippet: 34 , V. harveyi , LMG7890 (ATCC 35084) , – , – , , JF930379.1 (Procured from LMG).

    Techniques: Negative Control, Amplification, Positive Control