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Growth-dependent drug susceptibility can prevent or enhance spatial expansion of a bacterial population

机译:生长依赖性药物易感性可以预防或增强细菌种群的空间膨胀

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As a population wave expands, organisms at the tip typically experience plentiful nutrients while those behind the front become nutrient-depleted. If the environment also contains a gradient of some inhibitor (e.g. a toxic drug), a tradeoff exists: the nutrient-rich tip is more exposed to the inhibitor, while the nutrient-starved region behind the front is less exposed. Here we show that this can lead to complex dynamics when the organism's response to the inhibitory substance is coupled to nutrient availability. We model a bacterial population which expands in a spatial gradient of antibiotic, under conditions where either fast-growing bacteria at the wave's tip, or slow-growing, resource-limited bacteria behind the front are more susceptible to the antibiotic. We find that growth-rate dependent susceptibility can have strong effects on the dynamics of the expanding population. If slow-growing bacteria are more susceptible, the population wave advances far into the inhibitory zone, leaving a trail of dead bacteria in its wake. In contrast, if fast-growing bacteria are more susceptible, the wave is blocked at a much lower concentration of antibiotic, but a large population of live bacteria remains behind the front. Our results may contribute to understanding the efficacy of different antimicrobials for spatially structured microbial populations such as biofilms, as well as the dynamics of ecological population expansions more generally.
机译:随着人口波的扩展,尖端的生物通常经历丰富的营养素,而前面的那些人变得营养消耗。如果环境还含有一些抑制剂(例如有毒药物)的梯度,则存在权衡:富含营养的尖端更暴露于抑制剂,而前部后面的营养饥饿区域较小。在这里,我们表明,当有机体对抑制物质的反应时,这可以导致复杂的动态与营养可用性相连。我们模拟一种细菌种群,该细菌群在抗生素的空间梯度下扩大,在波浪尖端的快速生长细菌或生长缓慢,前方的资源有限的细菌更容易受到抗生素的影响。我们发现增长率依赖性易感性对扩大人口的动态产生强烈影响。如果缓慢增长的细菌更容易受到影响,人口波将进入抑制区,留下尾迹尾部的迹象。相反,如果快速生长的细菌更容易受到影响,则在抗生素的浓度低下,波被阻断,但大量的活细菌仍然留在前面。我们的结果可能有助于了解不同抗菌剂对空间结构的微生物种群如生物膜的疗效,以及更普遍的生态人口扩展的动态。

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