Affiliation:
1. Department of Molecular Microbiology, Washington University School of Medicine
2. L. V. Ackerman Laboratory of Surgical Pathology, Washington University Medical Center, St. Louis, Missouri 63110-1093
Abstract
ABSTRACT
Due to its small size, rapid generation time, powerful genetic systems, and genomic resources, the zebrafish has emerged as an important model of vertebrate development and human disease. Its well-developed adaptive and innate cellular immune systems make the zebrafish an ideal model for the study of infectious diseases. With a natural and important pathogen of fish,
Streptococcus iniae
, we have established a streptococcus- zebrafish model of bacterial pathogenesis. Following injection into the dorsal muscle, zebrafish developed a lethal infection, with a 50% lethal dose of 10
3
CFU, and died within 2 to 3 days. The pathogenesis of infection resembled that of
S. iniae
in farmed fish populations and that of several important human streptococcal diseases and was characterized by an initial focal necrotic lesion that rapidly progressed to invasion of the pathogen into all major organ systems, including the brain. Zebrafish were also susceptible to infection by the human pathogen
Streptococcus pyogenes
. However, disease was characterized by a marked absence of inflammation, large numbers of extracellular streptococci in the dorsal muscle, and extensive myonecrosis that occurred far in advance of any systemic invasion. The genetic systems available for streptococci, including a novel method of mutagenesis which targets genes whose products are exported, were used to identify several mutants attenuated for virulence in zebrafish. This combination of a genetically amenable pathogen with a well-defined vertebrate host makes the streptococcus-zebrafish model of bacterial pathogenesis a powerful model for analysis of infectious disease.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Immunology,Microbiology,Parasitology
Reference75 articles.
1. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs
2. Recovery of
Streptococcus iniae
from Diseased Fish Previously Vaccinated with a
Streptococcus
Vaccine
3. Baker C. J. and M. S. Edwards. 1995. Group B streptococcal infections p. 980-1054. In J. S. Remington and J. O. Klein (ed.) Infectious diseases of the fetus and newborn infant 4th ed. W. B. Saunders Philadelphia Pa.
4. Barbazuk, W. B., I. Korf, C. Kadavi, J. Heyen, S. Tate, E. Wun, J. A. Bedell, J. D. McPherson, and S. L. Johnson. 2000. The syntenic relationship of the zebrafish and human genomes. Genome Res.10:1351-1358.
5. Baya, A. M., B. Lupiani, F. M. Hetrick, B. S. Roberson, R. Lukakovic, E. May, and C. Poukish. 1990. Association of Streptococcus spp. with fish mortalities in the Chesapeake Bay and its tributaries. J. Fish Dis.41:251-253.
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