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Three-Way Interactions in an Artificial Community of Bacterial Strains Directly Isolated From the Environment and Their Effect on the System Population Dynamics

机译:从环境中直接分离的细菌菌株人工群落中的三元相互作用及其对系统人口动态的影响

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摘要

This work is motivated by previous studies that have analyzed the population ecology of a collection of culturable thermoresistant bacteria, isolated from the Churince lagoon in Cuatro Cienegas, Mexico. In particular, it is aimed at testing a hypothesis from a modeling study, which states that antagonistic and sensitive bacteria co-exist thanks to resistant bacteria that protect sensitive ones by forming physical barriers. We selected three different bacterial strains from the referred collection: one antagonistic, one sensitive, and one resistant, and studied the population dynamics of mixed colonies. Our results show that, although the proposed protective mechanism does not work in this case, the resistant strain confers some kind of protection to sensitive bacteria. Further modeling and experimental results suggest that the presence of resistant bacteria indirectly improves the probability that patches of sensitive bacteria grow in a mixed colony. More precisely, our results suggest that by making antagonistic bacteria produce and secrete an antagonistic substance (with the concomitant metabolic cost and growth rate reduction), resistant bacteria increase the likelihood that sensitive bacteria locally outcompete antagonistic ones.
机译:这项工作受到以前的研究,这些研究已经分析了一系列培养的恒温细菌的人口生态学,从墨西哥Cuatro Cienegas的Churine Lagoon隔离。特别是,它的目的是从一个模拟研究,其中指出,对抗性和敏感细菌并存由于耐药菌测试假设,即通过形成物理屏障保护敏感的。我们选择了来自参考收集的三种不同的细菌菌株:一个拮抗,一个敏感和一种抗性,并研究了混合菌落的人口动态。我们的研究结果表明,虽然所提出的保护机制在这种情况下不起作用,但抗性菌株将某种保护对敏感的细菌赋予。进一步的建模和实验结果表明,抗性细菌的存在间接地改善了敏感细菌在混合殖民地中生长的概率。更精确地,我们的结果表明,通过使拮抗细菌产生并分泌拮抗物质(随着伴随的代谢成本和增长率降低),抗性细菌增加了敏感细菌局部拮抗的抗体的可能性。

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