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Cooperation and competition shape ecological resistance during periodic spatial disturbance of engineered bacteria

机译:工程菌周期性空间扰动下的合作竞争竞争生态抗性

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摘要

Cooperation is fundamental to the survival of many bacterial species. Previous studies have shown that spatial structure can both promote and suppress cooperation. Most environments where bacteria are found are periodically disturbed, which can affect the spatial structure of the population. Despite the important role that spatial disturbances play in maintaining ecological relationships, it remains unclear as to how periodic spatial disturbances affect bacteria dependent on cooperation for survival. Here, we use bacteria engineered with a strong Allee effect to investigate how the frequency of periodic spatial disturbances affects cooperation. We show that at intermediate frequencies of spatial disturbance, the ability of the bacterial population to cooperate is perturbed. A mathematical model demonstrates that periodic spatial disturbance leads to a tradeoff between accessing an autoinducer and accessing nutrients, which determines the ability of the bacteria to cooperate. Based on this relationship, we alter the ability of the bacteria to access an autoinducer. We show that increased access to an autoinducer can enhance cooperation, but can also reduce ecological resistance, defined as the ability of a population to resist changes due to disturbance. Our results may have implications in maintaining stability of microbial communities and in the treatment of infectious diseases.
机译:合作是许多细菌物种生存的基础。先前的研究表明,空间结构可以促进和抑制合作。发现细菌的大多数环境都会受到周期性干扰,这可能会影响种群的空间结构。尽管空间干扰在维持生态关系中起着重要的作用,但是关于周期性空间干扰如何影响依赖于生存合作的细菌尚不清楚。在这里,我们使用经过工程改造并具有强大Allee效应的细菌来研究周期性空间干扰的频率如何影响合作。我们显示在空间干扰的中间频率,细菌种群合作的能力受到了干扰。一个数学模型表明,周期性的空间扰动会导致在获取自动诱导剂和获取营养素之间进行权衡,这决定了细菌的协作能力。基于此关系,我们更改了细菌访问自动诱导剂的能力。我们表明,增加与自动诱导剂的接触可以增强合作,但也可以降低生态抵抗力,生态抵抗力是指人们抵抗干扰引起的变化的能力。我们的结果可能对维持微生物群落的稳定性和治疗传染病具有重要意义。

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