Infant acquisition of Stickland-metabolizing bacteria prevents Clostridium botulinum infection
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Infant botulism is caused by intestinal colonization with Clostridium botulinum , whereas healthy adults are resistant. Although the gut microbiota has long been implicated in protection against C. botulinum , its bacterial basis has remained unknown. Here, we show that specific amino acid-metabolizing bacteria confer resistance to C. botulinum colonization through nutrient competition. Longitudinally collected human infant microbiotas exhibited a transition from susceptibility to resistance after transplantation into germ-free mice. 5-Aminovalerate marked the resistant microbiota, implicating Stickland metabolism. Resistant microbiotas were enriched in Stickland-metabolizing Clostridia, including Clostridioides difficile . Metabolomics revealed overlapping amino acid utilization, and C. difficile suppressed C. botulinum expansion through amino acid competition. These findings demonstrate that acquisition of Stickland-metabolizing Clostridia during infancy prevents C. botulinum infection through competition for shared amino-acid-dependent nutritional niches.