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Within-host evolution of Helicobacter pylori shaped by niche-specific adaptation intragastric migrations and selective sweeps

机译:利基特异性适应胃内迁移和选择性清除形成的幽门螺杆菌宿主内进化

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摘要

The human pathogen Helicobacter pylori displays extensive genetic diversity. While H. pylori is known to evolve during infection, population dynamics inside the gastric environment have not been extensively investigated. Here we obtained gastric biopsies from multiple stomach regions of 16 H. pylori-infected adults, and analyze the genomes of 10 H. pylori isolates from each biopsy. Phylogenetic analyses suggest location-specific evolution and bacterial migration between gastric regions. Migration is significantly more frequent between the corpus and the fundus than with the antrum, suggesting that physiological differences between antral and oxyntic mucosa contribute to spatial partitioning of H. pylori populations. Associations between H. pylori gene polymorphisms and stomach niches suggest that chemotaxis, regulatory functions and outer membrane proteins contribute to specific adaptation to the antral and oxyntic mucosa. Moreover, we show that antibiotics can induce severe population bottlenecks and likely play a role in shaping the population structure of H. pylori.
机译:人类病原体幽门螺杆菌显示出广泛的遗传多样性。虽然幽门螺杆菌在感染过程中会进化,但胃环境内部的种群动态尚未得到广泛研究。在这里,我们从16例幽门螺杆菌感染的成年人的多个胃区域获得了胃活检,并从每次活检中分析了10例幽门螺杆菌分离株的基因组。系统发育分析表明特定位置的演变和细菌迁移之间的胃区域。相比于胃窦,the体和眼底之间的迁移更为频繁,这表明胃窦和胃黏膜之间的生理差异有助于幽门螺杆菌种群的空间分配。幽门螺杆菌基因多态性和胃壁ni之间的关联表明趋化性,调节功能和外膜蛋白有助于对胃窦和胃黏膜的特异性适应。此外,我们表明,抗生素可引起严重的人口瓶颈,并可能在塑造幽门螺杆菌的人口结构中发挥作用。

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