Distinct members of the C. elegans CeMbio reference microbiota exert cryptic virulence and infection protection
Gonzalez, X.; Irazoqui, J. E.
Show abstract
Microbiotas are complex microbial communities that colonize specific niches in the host and provide essential organismal functions that are important in health and disease. A key aspect is the ability of each distinct community member to promote or impair host health, alone or in the context of the community, in hosts with varied levels of immune competence. Understanding such interactions is limited by the complexity and experimental accessibility of current systems and models. Recently, a reference twelve-member microbiota for the model organism C. elegans, known as CeMbio, was defined to aid the dissection of conserved host-microbiota interactions. Understanding the physiological impact of the CeMbio bacteria on C. elegans is in its infancy. Here, we show the differential ability of each CeMbio bacterial species to activate innate immunity through the conserved PMK-1/p38 MAPK, ACh/WNT, and HLH-30/TFEB pathways. Using immunodeficient animals, we uncovered several examples of bacterial cryptic virulence, or virulence that was masked by the host defense response. The ability to activate the PMK-1/p38 pathway did not correlate with bacterial virulence in wild type or immunodeficient animals. In contrast, ten out of twelve species activated HLH-30/TFEB, and most showed virulence towards hlh-30-deficient animals. In addition, we identified Pseudomonas lurida as a pathogen in wild type animals, and Acinetobacter guillouiae as avirulent despite activating all three pathways. Moreover, short pre-exposure to A. guillouiae promoted host survival of infection with P. lurida, which was dependent on PMK-1/p38 MAPK and HLH-30/TFEB. These results suggest that the microbiota of C. elegans is rife with "opportunistic" pathogens, and that HLH-30/TFEB is a fundamental and key host protective factor. Furthermore, they support the idea that bacteria like A. guillouiae evolved the ability to induce host innate immunity to improve host fitness when confronted with pathogens, providing new insights into how colonization order impacts host health.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- NHR-49/PPAR-α and HLH-30/TFEB promote C. elegans host defense via a flavin-containing monooxygenase 96%
- Hosts Manipulate Lifestyle Switch and Pathogenicity Heterogeneity of Opportunistic Pathogens in the Single-cell Resolution 95%
- Neuronal temperature perception induces specific defenses that enable C. elegans to cope with the enhanced reactivity of hydrogen peroxide at high temperature 95%
Similar papers in this journal
- The neuropeptide receptor NMUR-1 regulates the specificity of C. elegans innate immunity against pathogen infection 95%
- Mucolytic bacteria license pathobionts to acquire host-derived nutrients during dietary nutrient restriction 95%
- Dynamic modulation of spleen germinal center reactions by gut bacteria during Plasmodium infection 94%
Similar papers in this journal
- Resistance to host antimicrobial peptides mediates resilience of gut commensals during infection and aging in Drosophila 95%
- Hundreds of antimicrobial peptides create a selective barrier for insect gut symbionts 95%
- Bacteria- and temperature-regulated peptides modulate beta-catenin signaling in Hydra 94%
Similar papers in this journal
- Spatial analysis of gut microbiome reveals a distinct ecological niche associated with the mucus layer. 93%
- Secreted Aeromonas GlcNAc binding protein GbpA stimulates epithelial cell proliferation in the zebrafish intestine 92%
- Dual RNA-seq reveals a type 6 secretion system-dependent blockage of TNF-α signaling and BicA as a Burkholderia pseudomallei virulence factor important during gastrointestinal infection 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.