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Predation and resource fluctuations drive eco-evolutionary dynamics of a bacterial community

机译:捕食和资源波动驱动细菌群落的生态进化动力学

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Predation and temporal resource availability are among the most important factors determining prey community dynamics and composition. Both factors have been shown to affect prey diversity, but less is known about their interactive effects, especially in rapidly evolving prey communities. In a laboratory microcosm experiment, we manipulated the presence of the predatory protozoan Tetrahymena thermophila and the temporal patterns in the availability of resources for a bacterial prey community. We found that both predation and temporal fluctuations in prey resources resulted in a more even prey community, and these factors also interacted so that the effect of predation was only seen in a fluctuating environment. One possible explanation for this finding could be differences in prey species grazing resistance and resource use abilities, which likely had the greatest effect on prey community structure in fluctuating environments with periodical resource limitation. We also found that prey communities evolved to be more grazing-resistant during the experiment, and that this effect was due to a clear increase in the grazing resistance of the bacterium Serratia marcescens. Our results demonstrate that temporal variability in prey resources and predation can promote more even prey species proportions by allowing the existence of both defensive and competitive prey life-history strategies.
机译:捕食和临时资源的可用性是决定猎物群落动态和组成的最重要因素。这两个因素都已显示出影响猎物的多样性,但人们对其相互作用的影响知之甚少,尤其是在快速发展的猎物社区中。在实验室的缩影实验中,我们操纵了掠食性原生动物嗜热四膜膜虫的存在以及细菌捕食者社区的资源可获得性的时间模式。我们发现,捕食资源的捕食和时间波动都会导致猎物社区更加均衡,而且这些因素也相互作用,因此,捕食的影响只能在波动的环境中看到。这一发现的一个可能的解释可能是猎物物种的放牧抵抗力和资源利用能力的差异,这可能在周期性资源受限的波动环境中对猎物群落结构产生最大影响。我们还发现,在实验过程中,猎物群落的抵抗力逐渐增强,而这种影响是由于粘质沙雷氏菌的掠食力明显增加所致。我们的结果表明,通过允许存在防御性和竞争性猎物生活史策略,猎物资源和猎物的时间变异性可以提高猎物种类的比例。

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