ArticleFrontiers in cellular and infection microbiology2026
Transcriptional changes related to metabolic and iron acquisition strategies of avian pathogenic
Article in Frontiers in cellular and infection microbiology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Introduction: Avian pathogenic Methods: Chicken embryos were experimentally infected with an APEC isolate. Subsequently, RNA sequencing was performed on APEC isolated from the yolk of experimentally infected embryos that either died or survived the infection, alongside Results and discussion: In embryos that died, APEC exhibited a transcriptionally inferred hypermetabolic program, characterized by upregulation of 443 genes involved in anaerobic respiration, nutrient scavenging, and purine and arginine biosynthesis, consistent with increased replication and virulence potential. In contrast, APEC recovered from surviving embryos displayed a transcriptionally inferred low-energy state under host immune pressure, characterized by suppression of central metabolism pathways and concurrent upregulation of genes associated with iron sequestration, toxin production, and cell envelope remodeling. WGCNA suggested the association of low-oxygen respiration and anaerobic metabolism, Fe-S cluster assembly, and purine and arginine biosynthesis genes with host lethality, while siderophore-mediated iron acquisition correlated with host survival. Arginine metabolism showed a positive association with pro-inflammatory host responses, while flagellar motility was associated with both pro- and anti-inflammatory signatures, suggesting a modulatory role of metabolic and motility pathways on host immunity. The analyses indicated that APEC survival and pathogenicity are more dependent on metabolic adaptation and iron competition than individual toxin genes. Additionally, 77 small regulatory RNAs were identified, suggesting potential regulatory roles in
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