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The evolution of bacterial cell size: the internal diffusion-constraint hypothesis

机译:细菌细胞大小的演变:内部扩散约束假说

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摘要

Size is one of the most important biological traits influencing organismal ecology and evolution. However, we know little about the drivers of body size evolution in unicellulars. A long-term evolution experiment (Lenski’s LTEE) in which Escherichia coli adapts to a simple glucose medium has shown that not only the growth rate and the fitness of the bacterium increase over time but also its cell size. This increase in size contradicts prominent ‘external diffusion’ theory (EDC) predicting that cell size should have evolved toward smaller cells. Among several scenarios, we propose and test an alternative ‘internal diffusion-constraint’ (IDC) hypothesis for cell size evolution. A change in cell volume affects metabolite concentrations in the cytoplasm. The IDC states that a higher metabolism can be achieved by a reduction in the molecular traffic time inside of the cell, by increasing its volume. To test this hypothesis, we studied a population from the LTEE. We show that bigger cells with greater growth and CO2 production rates and lower mass-to-volume ratio were selected over time in the LTEE. These results are consistent with the IDC hypothesis. This novel hypothesis offers a promising approach for understanding the evolutionary constraints on cell size.
机译:大小是影响有机生态和进化的最重要的生物学特征之一。但是,我们对单细胞体大小演变的驱动器知之甚少。一项长期进化实验(Lenski的LTEE)使大肠杆菌适应简单的葡萄糖培养基,结果表明,随着时间的流逝,不仅细菌的生长速率和适应性增加,而且细菌的细胞大小也会增加。大小的增加与突出的“外部扩散”理论(EDC)相矛盾,该理论认为细胞大小应该向较小的细胞发展。在几种情况下,我们提出并检验了细胞大小演变的另一种“内部扩散约束”(IDC)假设。细胞体积的变化会影响细胞质中的代谢物浓度。 IDC指出,可以通过增加细胞体积来减少细胞内部的分子运输时间,从而实现更高的新陈代谢。为了检验这个假设,我们研究了LTEE的人群。我们显示在LTEE中,随着时间的推移,选择了具有更高生长和CO2生产率​​以及更低的质量体积比的更大的电池。这些结果与IDC假设一致。这个新颖的假设为理解细胞大小的进化限制提供了一种有前途的方法。

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