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首页> 外文期刊>Journal of evolutionary biology >The onion model, a simple neutral model for the evolution of diversity in bacterial biofilms
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The onion model, a simple neutral model for the evolution of diversity in bacterial biofilms

机译:洋葱模型,一个简单的中性模型,用于细菌生物膜的多样性进化

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摘要

Bacterial biofilms are particularly resistant to a wide variety of antimicrobial compounds. Their persistence in the face of antibiotic therapies causes significant problems in the treatment of infectious diseases. Seldom have evolutionary processes like genetic drift and mutation been invoked to explain how resistance to antibiotics emerges in biofilms, and we lack a simple and tractable model for the genetic and phenotypic diversification that occurs in bacterial biofilms. Here, we introduce the 'onion model', a simple neutral evolutionary model for phenotypic diversification in biofilms. We explore its properties and show that the model produces patterns of diversity that are qualitatively similar to observed patterns of phenotypic diversity in biofilms. We suggest that models like our onion model, which explicitly invoke evolutionary process, are key to understanding biofilm resistance to bactericidal and bacteriostatic agents. Elevated phenotypic variance provides an insurance effect that increases the likelihood that some proportion of the population will be resistant to imposed selective agents and may thus enhance persistence of the biofilm. Accounting for evolutionary change in biofilms will improve our ability to understand and counter diseases that are caused by biofilm persistence.
机译:细菌生物膜对多种抗菌化合物特别有抵抗力。它们面对抗生素疗法的坚持在传染病的治疗中引起重大问题。很少有诸如遗传漂移和突变之类的进化过程被用来解释如何对生物膜产生抗药性,而且我们缺乏细菌生物膜中发生的遗传和表型多样化的简单易处理的模型。在这里,我们介绍“洋葱模型”,这是一种用于生物膜表型多样化的简单中性进化模型。我们探索其特性,并表明该模型产生的定性模式与生物膜中表型多样性的定性相似。我们建议像洋葱模型这样的模型可以明确地调用进化过程,这对于理解生物膜对杀菌剂和抑菌剂的抵抗力至关重要。升高的表型差异提供了一种保险效应,该保险效应增加了一定比例的人群将对施加的选择剂产生抗性的可能性,从而可能增强生物膜的持久性。解释生物膜的进化变化将提高我们理解和抵抗生物膜持久性引起的疾病的能力。

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