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Microbial consortia at steady supply

机译:微生物联盟供应稳定

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摘要

Metagenomics has revealed hundreds of species in almost all microbiota. In a few well-studied cases, microbial communities have been observed to coordinate their metabolic fluxes. In principle, microbes can divide tasks to reap the benefits of specialization, as in human economies. However, the benefits and stability of an economy of microbial specialists are far from obvious. Here, we physically model the population dynamics of microbes that compete for steadily supplied resources. Importantly, we explicitly model the metabolic fluxes yielding cellular biomass production under the constraint of a limited enzyme budget. We find that population dynamics generally leads to the coexistence of different metabolic types. We establish that these microbial consortia act as cartels, whereby population dynamics pins down resource concentrations at values for which no other strategy can invade. Finally, we propose that at steady supply, cartels of competing strategies automatically yield maximum biomass, thereby achieving a collective optimum.>DOI:
机译:元基因组学揭示了几乎所有微生物群中的数百种物种。在一些经过充分研究的案例中,已观察到微生物群落可协调其代谢通量。原则上,微生物可以像人类经济一样划分任务以获取专业化的好处。但是,微生物专家的经济效益和稳定性远非显而易见。在这里,我们对竞争稳定供应资源的微生物的种群动态进行物理建模。重要的是,我们在酶预算有限的约束下,明确模拟了产生细胞生物量生产的代谢通量。我们发现人口动态通常导致不同代谢类型的共存。我们确定这些微生物联盟充当卡特尔,从而人口动态将资源集中度固定在其他策略无法入侵的值。最后,我们建议,在供应稳定的情况下,竞争策略的卡特尔会自动产生最大的生物量,从而实现集体最优。> DOI:

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