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毒素介导的弱动力细菌竞争。

Toxin-mediated competition in weakly motile bacteria.

机构信息

Institute of Integrative Biology, Biosciences Building, University of Liverpool, Crown Street, Liverpool L69 7ZB, UK.

Institute of Integrative Biology, Biosciences Building, University of Liverpool, Crown Street, Liverpool L69 7ZB, UK.

出版信息

J Theor Biol. 2019 Nov 7;480:205-217. doi: 10.1016/j.jtbi.2019.07.013. Epub 2019 Jul 23.

Abstract

Many bacterial species produce toxins that inhibit their competitors. We model this phenomenon by extending classic two-species Lotka-Volterra competition in one spatial dimension to incorporate toxin production by one species. Considering solutions comprising two adjacent single-species colonies, we show how the toxin inhibits the susceptible species near the interface between the two colonies. Moreover, a sufficiently effective toxin inhibits the susceptible species to such a degree that an 'inhibition zone' is formed separating the two colonies. In the special case of truly non-motile bacteria, i.e. with zero bacterial diffusivity, we derive analytical expressions describing the bacterial distributions and size of the inhibition zone. In the more general case of weakly motile bacteria, i.e. small bacterial diffusivity, these two-colony solutions become travelling waves. We employ numerical methods to show that the wavespeed is dependent upon both interspecific competition and toxin strength; precisely which colony expands at the expense of the other depends upon the choice of parameter values. In particular, a sufficiently effective toxin allows the producer to expand at the expense of the susceptible, with a wavespeed magnitude that is bounded above as the toxin strength increases. This asymptotic wavespeed is independent of interspecific competition and due to the formation of the inhibition zone; when the colonies are thus separated, there is no longer direct competition between the two species and the producer can invade effectively unimpeded by its competitor. We note that the minimum toxin strength required to produce an inhibition zone increases rapidly with increasing bacterial diffusivity, suggesting that even moderately motile bacteria must produce very strong toxins if they are to benefit in this way.

摘要

许多细菌物种会产生抑制其竞争对手的毒素。我们通过将经典的二维 Lotka-Volterra 竞争模型扩展到一个空间维度,来纳入一个物种产生毒素的现象。考虑由两个相邻的单一物种群体组成的解,我们展示了毒素如何在两个群体之间的界面附近抑制易感物种。此外,足够有效的毒素会抑制易感物种,以至于形成一个“抑制区”将两个群体分开。在真正非运动细菌的特殊情况下,即细菌扩散率为零,我们推导出了描述细菌分布和抑制区大小的解析表达式。在细菌扩散率较小的更一般情况下,这两个群体的解成为传播波。我们采用数值方法表明,波速取决于种间竞争和毒素强度;哪一个群体以牺牲另一个群体为代价而扩张取决于参数值的选择。特别地,足够有效的毒素允许生产者以牺牲易感者为代价扩张,随着毒素强度的增加,波速的幅度有上限。这个渐近波速与种间竞争无关,是由于抑制区的形成;当群体因此分开时,两个物种之间不再存在直接竞争,生产者可以不受其竞争者的阻碍而有效地入侵。我们注意到,产生抑制区所需的最小毒素强度随细菌扩散率的增加而迅速增加,这表明即使是中等运动能力的细菌,如果它们想以这种方式受益,也必须产生非常强的毒素。

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