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Romero-Guillen, A.

Publications and source records attributed to Romero-Guillen, A..

2 recordsLinked to original sources

Genome-scale TraDIS reveals dynamic and conserved fitness requirements of Salmonella Typhimurium across sequential host niches during porcine infection

Non-typhoidal salmonellosis remains a major global cause of foodborne gastrointestinal disease, with pigs representing an important reservoir of Salmonella enterica serovar Typhimurium. The emergence of host-adapted, multidrug-resistant lineages has further reinforced the need to understand the genetic basis of bacterial persistence and pathogenicity within physiologically relevant hosts. Here, we applied transposon-directed insertion sequencing (TraDIS) to systematically define the genetic requirements of a highly host-adapted, multidrug-resistant S. Typhimurium DT104 isolate across sequential host niches during porcine infection. A high-density transposon mutant library ([~]1.2 million mutants) was subjected to in vivo selection in the ileal mucosa and mesenteric lymph nodes, as well as ex vivo infection of primary porcine neutrophils. Across all conditions, we identified 1,813 conditionally essential genes, revealing strong niche-specific fitness signatures and a progressive increase in selective stringency along the infection route. Ileal colonization was primarily driven by determinants of invasion, motility and lipopolysaccharide biosynthesis. In contrast, survival within neutrophils depended on resistance to antimicrobial stresses and extensive metabolic rewiring, whereas persistence in lymph nodes required a broader functional repertoire integrating virulence, motility, envelope remodelling and metabolic adaptation, including bacterial microcompartment-associated pathways. Despite this marked heterogeneity, we identified a conserved porcine host-conditioned essential genome, comprising core invasion functions, RNA metabolism and genome maintenance pathways, and central metabolism. Notably, the outer membrane lipid asymmetry system Mla and the twin-arginine translocation (Tat) pathway emerged as conserved bottlenecks for in vivo fitness across all host-associated environments. Together, these findings establish a hierarchical model of S. Typhimurium adaptation during porcine infection and provide a systems-level view of tissue-specific and conserved genetic requirements underpinning persistence in a major zoonotic reservoir.

microbiology↗

Single-Cell Dissection of Immunometabolic Rewiring in the Porcine Ileum during Salmonella Typhimurium Infection

Salmonella Typhimurium is a major zoonotic pathogen, with pigs acting as important subclinical carriers. To explore the specific intestinal immune response at the cellular level, we used Single-cell RNA sequencing (scRNA-seq), enabling detailed analysis of immune cell types and gene expression profiles during infection. In addition to enterocytes, our results revealed the presence of diverse immune populations, including monocytes/macrophages, dendritic cells, innate lymphoid cells (ILCs), thirteen T cell subtypes and five B cell populations were identified, revealing pronounced infection-driven alterations in cellular composition and transcriptional states. Among T cells, naive and follicular CD4+/CD8+ {beta} T cells and NK T cells were expanded, whereas effector CD8+ T cells and CD2- and SELLhi {gamma}{delta} T cells were decreased. B-cell populations shifted toward activated and cycling states, with decreased antibody-secreting, resting, and transitioning cells. Dendritic cells and monocyte/macrophage populations were expanded, and group 3 ILCs and enterocytes were markedly reduced. Pathway analyses revealed robust cell type-specific immunometabolic remodeling, including enhanced protein-folding and stress-adaptive pathways in T and B cells, heightened inflammatory, interferon, and cytokine signaling in myeloid populations, and coordinated metabolic and immune adjustments in epithelial cells, highlighting the complexity of host responses to Salmonella infection. This study provides the first scRNA-seq landscape of the porcine ileum during S. Typhimurium infection, offering insight into host immune cell dynamics and immunometabolic responses.

genomics↗