首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Using experimental evolution to explore natural patterns between bacterial motility and resistance to bacteriophages
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Using experimental evolution to explore natural patterns between bacterial motility and resistance to bacteriophages

机译:利用实验进化来探索细菌运动性和对噬菌体抗性之间的自然模式

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摘要

Resistance of bacteria to phages may be gained by alteration of surface proteins to which phages bind, a mechanism that is likely to be costly as these molecules typically have critical functions such as movement or nutrient uptake. To address this potential trade-off, we combine a systematic study of natural bacteria and phage populations with an experimental evolution approach. We compare motility, growth rate and susceptibility to local phages for 80 bacteria isolated from horse chestnut leaves and, contrary to expectation, find no negative association between resistance to phages and bacterial motility or growth rate. However, because correlational patterns (and their absence) are open to numerous interpretations, we test for any causal association between resistance to phages and bacterial motility using experimental evolution of a subset of bacteria in both the presence and absence of naturally associated phages. Again, we find no clear link between the acquisition of resistance and bacterial motility, suggesting that for these natural bacterial populations, phage-mediated selection is unlikely to shape bacterial motility, a key fitness trait for many bacteria in the phyllosphere. The agreement between the observed natural pattern and the experimental evolution results presented here demonstrates the power of this combined approach for testing evolutionary trade-offs.
机译:细菌对噬菌体的抗性可以通过改变与噬菌体结合的表面蛋白来获得,这种机制可能是昂贵的,因为这些分子通常具有关键功能,例如运动或营养吸收。为了解决这种潜在的折衷,我们将对天然细菌和噬菌体种群的系统研究与实验进化方法结合起来。我们比较了七叶树叶片中分离出的80种细菌的活力,生长速率和对本地噬菌体的敏感性,与预期相反,对噬菌体的抗性与细菌活力或增长率之间没有负相关关系。但是,由于相关模式(和它们的不存在)有许多解释,我们使用存在和不存在天然相关噬菌体的细菌亚群的实验进化来测试对噬菌体抗性和细菌运动性之间的因果关系。同样,我们发现耐药性的获得与细菌运动之间没有明确的联系,这表明对于这些天然细菌种群,噬菌体介导的选择不太可能影响细菌运动,这是叶环中许多细菌的关键适应性特征。此处观察到的自然模式与实验进化结果之间的一致性证明了这种组合方法测试进化折衷的能力。

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