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Niche partitioning of a pathogenic microbiome driven by chemical gradients

机译:化学梯度驱动的致病性微生物组的生态位分配

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摘要

Environmental microbial communities are stratified by chemical gradients that shape the structure and function of these systems. Similar chemical gradients exist in the human body, but how they influence these microbial systems is more poorly understood. Understanding these effects can be particularly important for dysbiotic shifts in microbiome structure that are often associated with disease. We show that pH and oxygen strongly partition the microbial community from a diseased human lung into two mutually exclusive communities of pathogens and anaerobes. Antimicrobial treatment disrupted this chemical partitioning, causing complex death, survival, and resistance outcomes that were highly dependent on the individual microorganism and on community stratification. These effects were mathematically modeled, enabling a predictive understanding of this complex polymicrobial system. Harnessing the power of these chemical gradients could be a drug-free method of shaping microbial communities in the human body from undesirable dysbiotic states.
机译:环境微生物群落由决定这些系统结构和功能的化学梯度分层。人体中也存在类似的化学梯度,但对它们如何影响这些微生物系统的了解却很少。了解这些影响对于微生物组结构中通常与疾病相关的不良生物转变尤其重要。我们表明,pH和氧气强烈地将微生物群落从患病的人肺中分为两个相互排斥的病原体和厌氧菌。抗菌处理破坏了这种化学分配,导致了复杂的死亡,生存和耐药性结果,这些结果高度依赖于单个微生物和社区分层。对这些效应进行了数学建模,从而可以对该复杂的微生物系统进行预测性了解。利用这些化学梯度的力量可能是一种无毒的方法,可从不良的不良生物状态中塑造人体中的微生物群落。

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