Related Experiment Video
Updated: Dec 8, 2025

High-throughput Assay to Phenotype Salmonella enterica Typhimurium Association, Invasion, and Replication in Macrophages
Published on: August 11, 2014
Transcriptome profiling analysis of caeca in chicks challenged with Salmonella Typhimurium reveals differential
Samiullah Khan1, Kapil K Chousalkar2
1School of Animal and Veterinary Sciences, The University of Adelaide, Roseworthy, South Australia, 5371, Australia.
Abstract:
Temporal regulation of global gene expression in the caeca of chickens infected with Salmonella Typhimurium has not been investigated previously. In this study, we performed the transcriptome analysis of the caeca of Salmonella Typhimurium challenged chicks to understand the regulation of the mucosal immune system in a temporal manner. The Salmonella infection resulted in the activation of the caecal immune system by the upregulation of the differentially expressed genes (DEGs; false discovery rate (FDR) < 0.05; log2 fold change > 1) involved in biological pathways such as Toll-like receptor signaling pathway, Salmonella infection, cytokine-cytokine receptor interaction, phagosome, apoptosis and intestinal immune network for IgA production. The activation of biological pathways such as RIG-I-like receptor signaling pathway, ErbB signaling pathway and cellular senescence showed a time-dependent response of the host immune system. A 49% increase in the DEGs on day 7 compared with day 3 post-infection (p.i.) suggested a time-dependent role of multiple genes such as AvBD1, AvBD2, AvBD7, IL2, IL10, IL21, SIVA1, CD5, CD14 and GPR142 in the regulation of the immune system. Nested network analysis of the individual biological pathways showed that IL6 played a significant role in the immune system regulation by activating the pathways, including Toll-like receptor signaling pathway, Salmonella infection, intestinal immune network for IgA production and C-type lectin receptor signaling pathway. The downregulated DEGs (FDR < 0.05; log2 fold change < -1) showed that Salmonella challenge affected the functions of pathways, such as tryptophan metabolism, retinol metabolism, folate biosynthesis and pentose and glucoronate interconversions, suggesting the disruption of cellular mechanisms involved in nutrient synthesis, absorption and metabolism. Overall, the immune response was temporally regulated through the activation of Toll-like signaling receptor pathway, cytokine-cytokine interactions and Salmonella infection, where IL6 played a significant role in the modulation of caecal immune system against Salmonella Typhimurium. KEY POINTS: • The immune response to Salmonella Typhimurium challenge was temporally regulated in the caeca of chickens. • Many newly identified genes have been shown to be involved in the activation of the immune system. • Toll-like receptors and interleukins played a key role in immune system regulation.
Insights
The chicken immune system
Area of Science:
- Immunology
- Microbiology
- Genomics
Background:
- Salmonella Typhimurium infection in chickens can impact the mucosal immune system.
- Understanding the temporal dynamics of gene expression during infection is crucial for developing effective interventions.
Purpose of the Study:
- To investigate the temporal regulation of global gene expression in chicken caeca following Salmonella Typhimurium infection.
- To elucidate the role of specific genes and pathways in the host immune response.
Main Methods:
- Transcriptome analysis of chicken caeca at different time points post-Salmonella Typhimurium infection.
- Differential gene expression analysis (FDR < 0.05; log2 fold change > 1 or < -1).
- Pathway enrichment analysis and network analysis.
Main Results:
- Salmonella infection activated caecal immune pathways including Toll-like receptor signaling, cytokine-cytokine receptor interaction, and IgA production.
- A time-dependent immune response was observed, with a significant increase in differentially expressed genes (DEGs) by day 7 post-infection.
- Interleukin-6 (IL6) was identified as a key regulator, influencing multiple immune pathways.
- Downregulated genes indicated disruption of metabolic pathways such as tryptophan and retinol metabolism.
Conclusions:
- The immune response in chicken caeca to Salmonella Typhimurium is temporally regulated.
- Toll-like receptors, interleukins (especially IL6), and newly identified genes play critical roles in modulating the immune response.
- Salmonella infection disrupts host cellular mechanisms involved in nutrient metabolism.

