Genome-wide investigation reveals pathogen-specific and shared signatures in the response of Caenorhabditis elegansto infection
Open Access
- 17 September 2007
- journal article
- Published by Springer Nature in Genome Biology
- Vol. 8 (9), R194
- https://doi.org/10.1186/gb-2007-8-9-r194
Abstract
Background: There are striking similarities between the innate immune systems of invertebrates and vertebrates. Caenorhabditis elegans is increasingly used as a model for the study of innate immunity. Evidence is accumulating that C. elegans mounts distinct responses to different pathogens, but the true extent of this specificity is unclear. Here, we employ direct comparative genomic analyses to explore the nature of the host immune response. Results: Using whole-genome microarrays representing 20,334 genes, we analyzed the transcriptional response of C. elegans to four bacterial pathogens. Different bacteria provoke pathogen-specific signatures within the host, involving differential regulation of 3.5-5% of all genes. These include genes that encode potential pathogen-recognition and antimicrobial proteins. Additionally, variance analysis revealed a robust signature shared by the pathogens, involving 22 genes associated with proteolysis, cell death and stress responses. The expression of these genes, including those that mediate necrosis, is similarly altered following infection with three bacterial pathogens. We show that necrosis aggravates pathogenesis and accelerates the death of the host. Conclusion: Our results suggest that in C. elegans, different infections trigger both specific responses and responses shared by several pathogens, involving immune defense genes. The response shared by pathogens involves necrotic cell death, which has been associated with infection in humans. Our results are the first indication that necrosis is important for disease susceptibility in C. elegans. This opens the way for detailed study of the means by which certain bacteria exploit conserved elements of host cell-death machinery to increase their effective virulence.Keywords
This publication has 84 references indexed in Scilit:
- A Specific Primed Immune Response in Drosophila Is Dependent on PhagocytesPLoS Pathogens, 2007
- Genomic clusters, putative pathogen recognition molecules, and antimicrobial genes are induced by infection ofC. eleganswithM. nematophilumGenome Research, 2006
- AgDscam, a Hypervariable Immunoglobulin Domain-Containing Receptor of the Anopheles gambiae Innate Immune SystemPLoS Biology, 2006
- p38 MAPK Regulates Expression of Immune Response Genes and Contributes to Longevity in C. elegansPLoS Genetics, 2006
- Extensive Diversity of Ig-Superfamily Proteins in the Immune System of InsectsScience, 2005
- Caenorhabditis elegans as a model for innate immunity to pathogensCellular Microbiology, 2005
- Evolutionary perspectives on innate immunity from the study of Caenorhabditis elegansCurrent Opinion in Immunology, 2005
- Diversity and specificity in the interaction between Caenorhabditis elegans and the pathogen Serratia marcescensBMC Ecology and Evolution, 2004
- Inducible Antibacterial Defense System in C. elegansCurrent Biology, 2002
- Genes that fight infection:what the Drosophila genome says about animal immunityTrends in Genetics, 2000