生物
调节器
水平基因转移
基因
遗传学
细菌
氧气
实验进化
微生物学
基因表达调控
进化生物学
转录调控
生态学
细胞生物学
极限氧浓度
氧气张力
共生
氧气输送
作者
Youssef El Mouali,Caroline Tawk,Kun D. Huang,Pavaret Sivapornnukul,Claudia Mengoni,Nicola Segata,Till Strowig
标识
DOI:10.1016/j.chom.2026.04.006
摘要
In the human gut, oxygen levels decrease with increasing distance from the epithelium, creating a gradient that dictates the spatial distribution of commensal bacteria based on varying oxygen tolerance. However, dietary and lifestyle changes can disrupt this ecosystem. Segatella copri, a prevalent ancestral commensal, typically displays greater oxygen sensitivity than Bacteroides species. Here, we find that the transcriptional regulator PerR controls a genetic network underlying S. copri's oxygen response that is critical for gut colonization. Notably, a subset of S. copri strains have acquired an additional oxygen response regulator, OxyR, likely through horizontal gene transfer from other Bacteroidales, conferring enhanced oxygen tolerance. Interestingly, OxyR-positive strains are more prevalent in industrialized countries yet absent in contemporary humans with traditional lifestyles and in ancient human samples. These findings point to recent evolutionary pressures on Segatella, potentially driven by lifestyle changes, which may impact the spatial distribution of the human gut microbiome.
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