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On the Accessibility of Adaptive Phenotypes of a Bacterial Metabolic Network

机译:细菌代谢网络适应性表型的可及性

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The mechanisms by which adaptive phenotypes spread within an evolving population after their emergence are understood fairly well. Much less is known about the factors that influence the evolutionary accessibility of such phenotypes, a pre-requisite for their emergence in a population. Here, we investigate the influence of environmental quality on the accessibility of adaptive phenotypes of Escherichia coli's central metabolic network. We used an established flux-balance model of metabolism as the basis for a genotype-phenotype map (GPM). We quantified the effects of seven qualitatively different environments (corresponding to both carbohydrate and gluconeogenic metabolic substrates) on the structure of this GPM. We found that the GPM has a more rugged structure in qualitatively poorer environments, suggesting that adaptive phenotypes could be intrinsically less accessible in such environments. Nevertheless, on average ~74% of the genotype can be altered by neutral drift, in the environment where the GPM is most rugged; this could allow evolving populations to circumvent such ruggedness. Furthermore, we found that the normalized mutual information (NMI) of genotype differences relative to phenotype differences, which measures the GPM's capacity to transmit information about phenotype differences, is positively correlated with (simulation-based) estimates of the accessibility of adaptive phenotypes in different environments. These results are consistent with the predictions of a simple analytic theory that makes explicit the relationship between the NMI and the speed of adaptation. The results suggest an intuitive information-theoretic principle for evolutionary adaptation; adaptation could be faster in environments where the GPM has a greater capacity to transmit information about phenotype differences. More generally, our results provide insight into fundamental environment-specific differences in the accessibility of adaptive phenotypes, and they suggest opportunities for research at the interface between information theory and evolutionary biology.
机译:适应性表型在出现后在不断发展的种群中传播的机制已被很好地理解。关于影响此类表型进化可及性的因素,人们所知甚少,这是它们在人群中出现的先决条件。在这里,我们调查环境质量对大肠杆菌中央代谢网络的适应性表型的可及性的影响。我们使用建立的代谢通量平衡模型作为基因型-表型图(GPM)的基础。我们量化了七个质量上不同的环境(分别对应于碳水化合物和糖异生代谢底物)对该GPM结构的影响。我们发现,在质量较差的环境中,GPM具有更坚固的结构,这表明在此类环境中适应性表型本质上不易获得。然而,在GPM最坚固的环境中,平均〜74%的基因型可以被中性漂移改变。这可以使不断发展的人口规避这种坚固性。此外,我们发现相对于表型差异的基因型差异的归一化互信息(NMI)衡量了GPM传递有关表型差异信息的能力,与不同适应性表型可及性的(基于模拟的)估计值呈正相关环境。这些结果与简单分析理论的预测相一致,该分析理论明确了NMI与适应速度之间的关系。结果表明了进化适应的直观信息理论原理。在GPM具有传输有关表型差异信息的能力的环境中,适应可能会更快。更广泛地说,我们的结果提供了对适应性表型可及性的基本环境特定差异的见解,并且它们为信息论与进化生物学之间的接口研究提供了机会。

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