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Updated: Jul 27, 2026

Infection of Zebrafish Embryos with Intracellular Bacterial Pathogens
Published on: March 15, 2012
The Human Pathogen Mycobacterium tuberculosis and the Fish Pathogen Mycobacterium marinum Trigger a Core Set of Late
Ron P Dirks1, Anita Ordas1, Susanne Jong-Raadsen1
1ZF-Screens B.V., J.H. Oortweg 19, 2333 CH Leiden, The Netherlands.
Abstract:
Zebrafish is a natural host of various Mycobacterium species and a surrogate model organism for tuberculosis research. Mycobacterium marinum is evolutionarily one of the closest non-tuberculous species related to M. tuberculosis and shares the majority of virulence genes. Although zebrafish is not a natural host of the human pathogen, we have previously demonstrated successful robotic infection of zebrafish embryos with M. tuberculosis and performed drug treatment of the infected larvae. In the present study, we examined for how long M. tuberculosis can be propagated in zebrafish larvae and tested a time series of infected larvae to study the transcriptional response via Illumina RNA deep sequencing (RNAseq). Bacterial aggregates carrying fluorescently labeled M. tuberculosis could be detected up to 9 days post-infection. The infected larvae showed a clear and specific transcriptional immune response with a high similarity to the inflammatory response of zebrafish larvae infected with the surrogate species M. marinum. We conclude that M. tuberculosis can be propagated in zebrafish larvae for at least one week after infection and provide further evidence that M. marinum is a good surrogate model for M. tuberculosis. The generated extensive transcriptome data sets will be of great use to add translational value to zebrafish as a model for infection of tuberculosis using the M. marinum infection system. In addition, we identify new marker genes such as dusp8 and CD180 that are induced by M. tuberculosis infection in zebrafish and in human macrophages at later stages of infection that can be further investigated.
Insights
Zebrafish larvae can propagate Mycobacterium tuberculosis for over a week, showing an immune response similar to M. marinum infection. This supports zebrafish as a tuberculosis infection model and identifies new potential biomarkers.
Area of Science:
- Infectious disease research
- Comparative immunology
- Genomics and transcriptomics
Background:
- Zebrafish are natural hosts for various Mycobacterium species and serve as a model for tuberculosis (TB) research.
- Mycobacterium marinum shares virulence genes with M. tuberculosis, making it a useful surrogate.
- Previous studies demonstrated robotic infection of zebrafish with M. tuberculosis.
Purpose of the Study:
- To determine the propagation duration of M. tuberculosis in zebrafish larvae.
- To analyze the transcriptional response of zebrafish larvae infected with M. tuberculosis over time.
- To further validate M. marinum as a surrogate model for M. tuberculosis infection.
Main Methods:
- Robotic infection of zebrafish embryos with fluorescently labeled M. tuberculosis.
- Detection of bacterial aggregates up to 9 days post-infection.
- Illumina RNA deep sequencing (RNAseq) to study transcriptional response in infected larvae.
Main Results:
- M. tuberculosis was propagated in zebrafish larvae for at least 9 days.
- Infected larvae exhibited a specific transcriptional immune response.
- The immune response closely resembled that of zebrafish larvae infected with M. marinum.
- New marker genes, such as dusp8 and CD180, were identified.
Conclusions:
- Zebrafish larvae support M. tuberculosis propagation for over a week.
- M. marinum serves as a valid surrogate model for M. tuberculosis infection studies in zebrafish.
- Transcriptome data enhances zebrafish's translational value for TB research.
- Identified marker genes warrant further investigation in both zebrafish and human macrophages.
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