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Evolving strategies for single-celled organisms in multi-nutrient environments

机译:多营养环境中单细胞生物的进化策略

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摘要

When micro-organisms are in environments with multiple nutrients, they often preferentially utilise one first. A second is only utilised once the first is exhausted. Such a two-phase growth pattern is known as diauxic growth. Experimentally, this manifests itself through two distinct exponential growth phases separated by a lag phase of arrested growth. The dura- tion of the lag phase can be quite substantial. From an evolu- tionary point of view the existence of a lag phase is somewhat puzzling because it implies a substantial loss of growth op- portunity. Mutants with shorter lag phases would be prone to outcompete those with longer phases. Yet in nature, diauxic growth with lag phases appears to be a robust phenomenon. We introduce a model of the evolution of diauxic growth that captures the basic interactions regulating it in bacteria. We observe its evolution without a lag phase. We conclude that the lag phase is an adaptation that is only beneficial when fit- ness is averaged over a large number of environments.
机译:当微生物处于具有多种营养素的环境中时,它们通常优先优先利用一种微生物。仅在第一个用尽后才使用第二个。这样的两阶段生长模式称为双生生长。从实验上讲,这通过两个不同的指数增长阶段表现出来,分别由停滞增长的滞后阶段分隔开。滞后阶段的持续时间可能非常长。从进化论的角度来看,滞后阶段的存在有些令人费解,因为这意味着增长机会的大量丧失。滞后阶段较短的突变体容易胜过滞后阶段的突变体。然而,在自然界中,具有滞后相的双生生长似乎是一种强有力的现象。我们介绍了双生生长的进化模型,该模型捕获了在细菌中调节它的基本相互作用。我们观察到它的发展没有滞后阶段。我们得出的结论是,滞后阶段是一种适应,只有在将大量环境中的适应度取平均值时,它才是有益的。

著录项

  • 作者

    Chu Dominique; Barnes David J.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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