Cross-feeding between intestinal pathobionts promotes their overgrowth during undernutrition.
K E HuusT T HoangA Creus-CuadrosM CirsteaS L VogtK Knuff-JanzenP J SansonettiP VonaeschBarton Brett FinlayPublished in: Nature communications (2021)
Child undernutrition is a global health issue associated with a high burden of infectious disease. Undernourished children display an overabundance of intestinal pathogens and pathobionts, and these bacteria induce enteric dysfunction in undernourished mice; however, the cause of their overgrowth remains poorly defined. Here, we show that disease-inducing human isolates of Enterobacteriaceae and Bacteroidales spp. are capable of multi-species symbiotic cross-feeding, resulting in synergistic growth of a mixed community in vitro. Growth synergy occurs uniquely under malnourished conditions limited in protein and iron: in this context, Bacteroidales spp. liberate diet- and mucin-derived sugars and Enterobacteriaceae spp. enhance the bioavailability of iron. Analysis of human microbiota datasets reveals that Bacteroidaceae and Enterobacteriaceae are strongly correlated in undernourished children, but not in adequately nourished children, consistent with a diet-dependent growth synergy in the human gut. Together these data suggest that dietary cross-feeding fuels the overgrowth of pathobionts in undernutrition.
Keyphrases
- endothelial cells
- pseudomonas aeruginosa
- multidrug resistant
- young adults
- global health
- induced pluripotent stem cells
- mental health
- pluripotent stem cells
- physical activity
- weight loss
- healthcare
- klebsiella pneumoniae
- public health
- oxidative stress
- metabolic syndrome
- escherichia coli
- type diabetes
- risk factors
- big data
- deep learning
- gram negative
- small molecule
- binding protein
- data analysis
- genetic diversity