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Evolutionary classification of toxin mediated interactions in microorganisms

机译:毒素介导的微生物相互作用的进化分类

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A trade-off between the parameters of Lotka–Volterra systems is used to give verifications of relations between intrinsic growth rate and limiting capacity and the stability type of the resulting dynamical system. The well known rock–paper–scissors game serves as a template for toxin mediated interactions, which is best represented by the bacteriocin producing Escherichia coli bacteria. There, we have three strains of the same species. The producer produces a toxin lethal to the sensitive, while the resistant is able to protect itself from that toxin. Due to the fact that there are costs for production and for resistance, a dynamics similar to the rock–paper–scissors game results. By using an adaptive dynamics approach for competitive Lotka–Volterra systems and assuming an inverse relation (trade-off) between intrinsic growth rate (IGR) and limiting capacity (LC) we obtain evolutionary and convergence stable relations between the IGR’s and the LC’s. Furthermore this evolutionary process leads to a phase topology of the population dynamics with a globally stable interior fixed point by leaving the interaction parameters constant. While the inverse trade-off stabilizes coexistence and does not allow branching, toxicity itself can promote diversification. The results are discussed in view of several biological examples indicating that the above results are structurally valid.
机译:在Lotka–Volterra系统的参数之间进行权衡,以验证内在增长率和极限容量与所得动力系统的稳定性类型之间的关系。著名的剪刀石头布游戏是毒素介导的相互作用的模板,最能代表产生细菌素的大肠埃希氏菌。在那里,我们有三个相同物种的菌株。生产者会产生对敏感者致命的毒素,而抗药性则能够保护自己免受这种毒素的伤害。由于存在生产成本和阻力成本,因此产生了类似于剪刀石头布的动态变化。通过对竞争性Lotka–Volterra系统使用自适应动力学方法,并假设固有增长率(IGR)与极限容量(LC)之间存在反比关系(权衡),我们可以获得IGR和LC之间的演化和收敛稳定关系。此外,通过使相互作用参数保持恒定,该进化过程导致了具有全局稳定内部固定点的种群动力学的相拓扑。尽管逆向权衡稳定了共存并且不允许分支,但毒性本身可以促进多样化。鉴于几个生物学实例对结果进行了讨论,这些实例表明上述结果在结构上是有效的。

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