Yersinia Ruckeri

Yersinia ruckeri is a Gram-negative bacterial pathogen of freshwater and marine fish, best known for causing enteric redmouth disease, an economically important infection in salmonid aquaculture. Following exposure through water or contaminated material, the bacterium colonizes mucosal tissues and can enter the bloodstream, producing systemic infection, inflammation, hemorrhage, and characteristic reddening around the mouth. Understanding Yersinia ruckeri biology supports disease diagnosis, outbreak surveillance, vaccine development, and improvements in aquaculture biosecurity and husbandry. Research on its transmission and virulence also helps reduce fish mortality and protect sustainable production.

Yersinia Ruckeri - Related Videos

Research

JoVE Journal - Genetics
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Multi-locus Variable-number Tandem-repeat Analysis of the Fish-pathogenic Bacterium Yersinia ruckeri by Multiplex PCR and Capillary Electrophoresis

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Cited by 5 •

2019

The Multi-Locus Variable-number tandem-repeat Analysis (MLVA) assay presented here enables inexpensive, robust and portable high-resolution genotyping of the fish-pathogenic bacterium Yersinia ruckeri. Starting from pure cultures, the assay employs multiplex PCR and capillary electrophoresis to produce ten-loci MLVA profiles for downstream applications.

Research

JoVE EoE - Bacterial Growth and Techniques

Improved Differential Isolation of Yersinia Species Using a Modified Cefsulodin-Irgasan-Novobiocin Agar

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2025

Begin with cultures of Gram-negative Yersinia species and non-Yersinia Enterobacteriaceae.Using sterile needle inoculators, dot the cultures onto both traditional Cefsulodin-Irgasan-Novobiocin or CIN agar and modified CIN agar.Incubate the plates to promote bacterial growth.Both traditional and modified CIN agars support the growth of Yersinia and non-Yersinia Enterobacteriaceae that ferment mannitol to produce acidic byproducts.Acid production lowers the pH and triggers a color change,...

Analysis of Yersinia enterocolitica Effector Translocation into Host Cells Using Beta-lactamase Effector Fusions

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Cited by 5 •

2015

Effector translocation into host cells via a type III secretion system is a common virulence strategy among gram-negative bacteria. A beta-lactamase effector fusion based assay for quantitative analysis of translocation was applied. In Yersinia infected cells, conversion of a FRET reporter by the beta-lactamase is monitored using laser scanning microscopy.

Thermal Lysis-Based Genomic DNA Extraction from a Pathogenic Bacterium

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2025

Source: Gulla, S., et al. Multi-locus Variable-number Tandem-repeat Analysis of the Fish-pathogenic Bacterium Yersinia ruckeri by Multiplex PCR and Capillary Electrophoresis. J. Vis. Exp. (2019).This protocol extracts genomic DNA from Yersinia ruckeri by suspending isolated colonies in ultrapure water and applying heat to lyse the cells. Centrifugation separates the DNA-containing supernatant from cell debris, yielding template DNA suitable for PCR-based genotyping and epidemiological analysis.

Quantifying Yersinia pseudotuberculosis Type III Secretion System Activity Following Iron Starvation and Anaerobic Growth

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Cited by 2 •

2024

Bacteria colonize host tissues that vary in oxygen and iron bioavailability, yet most approaches to studying bacteria use aerated, rich media. This protocol describes culturing the human pathogen Yersinia pseudotuberculosis under varying iron concentrations and oxygen tension, and quantifying activity of the Yersinia type III secretion system, which is an important virulence factor.

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