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vibrio anguillarum atcc 43 314  (ATCC)


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    Structured Review

    ATCC vibrio anguillarum atcc 43 314
    Vibrio Anguillarum Atcc 43 314, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 6 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/43314/Listonella+anguillarum+(Bergeman)+MacDonell+and+Colwell/pm38965554-125-7-9
    Average 93 stars, based on 6 article reviews
    vibrio anguillarum atcc 43 314 - by Bioz Stars, 2026-09
    93/100 stars

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    Related Articles

    Bacteria:

    Article Title: Immune and stress physiology of two captively-housed tortoise species.
    Article Snippet: Funding information Arkansas State University; Memphis Zoo, Grant/Award Number: #5825‐6002; Arkansas Biosciences Institute, Grant/Award Number: #200147; NSF, Grant/Award Number: DUE‐1564954 Abstract Ecoimmunology affords us the ability to better understand immunological processes through consideration of external factors, such as the thermal microenvironment.. This consideration is imperative when examining the immunological processes of ectothermic organisms like reptiles.. Reptiles uniquely rely heavily on their innate immune function but remain poorly understood in immunological studies.

    Article Title: Dataset on phenotypic characterization, on protein and genome analysis of three fluorescent Pseudomonas strains from mid-mountain water
    Article Snippet: , , Trigger factor OS= Pseudomonas fluorescens (strain Pf0-1) GN=tig , TIG_PSEPF , 48.485 , 2 , 24.02 , SwissP_ Bacteria _R. .. , c5 , Elongation factor Tu OS= Escherichia coli O6:H1 (strain CFT073 / ATCC 700,928 / UPEC) GN=tufA , EFTU_ECOL6 , 43.314 , 2 , 25.24 , SwissP_ Bacteria _R. .. Other proteins involved in stress response , p1 , Peptidase, S41 family OS= Pseudomonas fluorescens (strain ATCC BAA-477 / NRRL B-23,932 / Pf-5) OX=220,664 GN=prc , Q4K8E7_PSEF5 , 79.065 , 2 , 70.45 , SwissP_ P. protegens.

    Northern Blot:

    Article Title: Immune and stress physiology of two captively-housed tortoise species.
    Article Snippet: Funding information Arkansas State University; Memphis Zoo, Grant/Award Number: #5825‐6002; Arkansas Biosciences Institute, Grant/Award Number: #200147; NSF, Grant/Award Number: DUE‐1564954 Abstract Ecoimmunology affords us the ability to better understand immunological processes through consideration of external factors, such as the thermal microenvironment.. This consideration is imperative when examining the immunological processes of ectothermic organisms like reptiles.. Reptiles uniquely rely heavily on their innate immune function but remain poorly understood in immunological studies.

    other:

    Article Title: Overview on the role of dietary Spirulina platensis on immune responses against Edwardsiellosis among Oreochromis niloticu s fish farms
    Article Snippet: The phylogenetic tree of sodB gene was rooted on Vibrio anguillarum strain ATCC 43,314 (KU755359.1), which was used as an outgroup.



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    ATCC vibrio anguillarum atcc 43 314
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    ATCC vibrio anguillarum strain atcc 43 314
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    DSMZ potent micromonospora strain 65sh
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    Image Search Results


    The length of the 16S rRNA gene sequences of M. coerulea JCM 3175 T and M. veneta DSM 109713 T are 1,436 bp and 1,438 bp respectively. Maximum-likelihood tree based on 16S rRNA gene sequences, showing the phylogenetic positions of strains DSM 109713 T and JCM 3175 T and related members within the genus Micromonospora . Actinoplanes aksuensis TRM 88003 T (OM 112204) was used as an outgroup. Bootstrap values (expressed as percentages of 1000 replicates) above 50% are shown at the branch points. Bar, 0.01 substitutions per nucleotide position.

    Journal: Scientific Reports

    Article Title: Genome-based reclassification of Micromonospora veneta Kaewkla et al. 2022 as a later heterotypic synonym of Micromonospora coerulea Jensen 1932 (Approved lists 1980)

    doi: 10.1038/s41598-025-13676-y

    Figure Lengend Snippet: The length of the 16S rRNA gene sequences of M. coerulea JCM 3175 T and M. veneta DSM 109713 T are 1,436 bp and 1,438 bp respectively. Maximum-likelihood tree based on 16S rRNA gene sequences, showing the phylogenetic positions of strains DSM 109713 T and JCM 3175 T and related members within the genus Micromonospora . Actinoplanes aksuensis TRM 88003 T (OM 112204) was used as an outgroup. Bootstrap values (expressed as percentages of 1000 replicates) above 50% are shown at the branch points. Bar, 0.01 substitutions per nucleotide position.

    Article Snippet: At the time of writing, based on Parte the genus Micromonospora includes 130 species with validly published names ( https://lpsn.dsmz.de/genus/micromonospora ), widely distributed in various environments, including peat swamp forests root noduless hot spring soils and deep sea environments .

    Techniques:

    Pangenome analysis of the 16 Micromonospora type strains. (A) A pangenome map depicting the functional distribution of core gene clusters and unique genes in the selected Micromonospora genomes. (B) The accumulative curve showing the number of core gene clusters in relation to the number of genomes included in the pangenome analysis. The blue line represents the change in number of core gene clusters as the number of genomes included in the pan-genome analysis increases. The orange line typically indicates the number of non-core gene clusters (or gene clusters, variable gene clusters) as the number of genomes included changes. (C) UpSet plot illustrating the unique genes as well as the genes shared between the Micromonospora strains.

    Journal: Scientific Reports

    Article Title: Genome-based reclassification of Micromonospora veneta Kaewkla et al. 2022 as a later heterotypic synonym of Micromonospora coerulea Jensen 1932 (Approved lists 1980)

    doi: 10.1038/s41598-025-13676-y

    Figure Lengend Snippet: Pangenome analysis of the 16 Micromonospora type strains. (A) A pangenome map depicting the functional distribution of core gene clusters and unique genes in the selected Micromonospora genomes. (B) The accumulative curve showing the number of core gene clusters in relation to the number of genomes included in the pangenome analysis. The blue line represents the change in number of core gene clusters as the number of genomes included in the pan-genome analysis increases. The orange line typically indicates the number of non-core gene clusters (or gene clusters, variable gene clusters) as the number of genomes included changes. (C) UpSet plot illustrating the unique genes as well as the genes shared between the Micromonospora strains.

    Article Snippet: At the time of writing, based on Parte the genus Micromonospora includes 130 species with validly published names ( https://lpsn.dsmz.de/genus/micromonospora ), widely distributed in various environments, including peat swamp forests root noduless hot spring soils and deep sea environments .

    Techniques: Functional Assay