Human gut microbiota interactions shape the long-term growth dynamics and evolutionary adaptations of Clostridioides difficile

人类肠道微生物群相互作用决定艰难梭菌的长期生长动态和进化适应

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作者:Jordy Evan Sulaiman, Jaron Thompson, Pak Lun Kevin Cheung, Yili Qian, Jericha Mill, Isabella James, Eugenio I Vivas, Judith Simcox, Ophelia Venturelli

Abstract

Clostridioides difficile can transiently or persistently colonize the human gut, posing a risk factor for infections. This colonization is influenced by complex molecular and ecological interactions with human gut microbiota. By investigating C. difficile dynamics in human gut communities over hundreds of generations, we show patterns of stable coexistence, instability, or competitive exclusion. Lowering carbohydrate concentration shifted a community containing C. difficile and the prevalent human gut symbiont Phocaeicola vulgatus from competitive exclusion to coexistence, facilitated by increased cross-feeding. In this environment, C. difficile adapted via single-point mutations in key metabolic genes, altering its metabolic niche from proline to glucose utilization. These metabolic changes substantially impacted inter-species interactions and reduced disease severity in the mammalian gut. In sum, human gut microbiota interactions are crucial in shaping the long-term growth dynamics and evolutionary adaptations of C. difficile, offering key insights for developing anti-C. difficile strategies.

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