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Effects of noise on ecological invasion processes: Bacteriophage-mediated competition in bacteria

机译:噪声对生态入侵过程的影响:噬菌体介导的细菌竞争

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Pathogen-mediated competition, through which an invasive species carrying and transmitting a Pathogen can be a superior competitor to a more vulnerable resident species, is one of the principle driving forces influencing biodiversity in nature. Using an experimental system of bacteriophage-mediated competition in bacterial populations and a deterministic model, we have shown in Joo et al. [Proc. R. Soc. B 273,1843-1848 (2006)] that the competitive advantage conferred by the phage depends only on the relative phage pathology and is independent of the initial phage concentration and other phage and host parameters such as the infection-causing contact rate, the spontaneous and infection-induced lysis rates, and the phage burst size. Here we investigate the effects of stochastic fluctuations on bacterial invasion facilitated by bacteriophage, and examine the validity of the deterministic approach. We use both numerical and analytical methods of stochastic processes to identify the source of noise and assess its magnitude. We show that the conclusions obtained from the deterministic model are robust against stochastic fluctuations, yet deviations become prominently large when the phage are more pathological to the invading bacterial strain.
机译:病原体介导的竞争是影响自然生物多样性的主要驱动力之一,通过竞争,携带和传播病原体的入侵物种可以成为更具脆弱性的居留物种的竞争者。我们在Joo等人的研究中使用了噬菌体介导的细菌种群竞争实验系统和确定性模型。 [过程R. Soc。 [B 273,1843-1848(2006)]认为,噬菌体所赋予的竞争优势仅取决于相对噬菌体病理,并且与初始噬菌体浓度以及其他噬菌体和宿主参数无关,例如引起感染的接触率,自发性以及感染引起的裂解速率和噬菌体破裂大小。在这里,我们研究了随机波动对噬菌体促进细菌入侵的影响,并检验了确定性方法的有效性。我们使用随机过程的数值和分析方法来识别噪声源并评估其大小。我们表明,从确定性模型获得的结论对随机波动具有鲁棒性,但是当噬菌体对入侵的细菌菌株更具病理性时,偏差会变得明显。

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