Fraebel David T, Gowda Karna, Mani Madhav, Kuehn Seppe
Department of Physics, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Center for the Physics of Living Cells, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
iScience. 2020 Oct 13;23(11):101678. doi: 10.1016/j.isci.2020.101678. eCollection 2020 Nov 20.
Adapting organisms face a tension between specializing their phenotypes for certain ecological tasks and developing generalist strategies that permit persistence in multiple environmental conditions. Understanding when and how generalists or specialists evolve is an important question in evolutionary dynamics. Here, we study the evolution of bacterial range expansions by selecting for faster migration through porous media containing one of four different sugars supporting growth and chemotaxis. We find that selection in any one sugar drives the evolution of faster migration in all sugars. Measurements of growth and motility of all evolved lineages in all nutrient conditions reveal that the ubiquitous evolution of fast migration arises via phenotypic plasticity. Phenotypic plasticity permits evolved strains to exploit distinct strategies to achieve fast migration in each environment, irrespective of the environment in which they were evolved. Therefore, selection in a homogeneous environment drives phenotypic plasticity that improves performance in other environments.
适应环境的生物体在为特定生态任务特化其表型与发展能在多种环境条件下持续生存的通才策略之间面临着一种权衡。理解通才或专才何时以及如何进化是进化动力学中的一个重要问题。在此,我们通过选择能在含有四种支持生长和趋化作用的不同糖类之一的多孔介质中更快迁移的细菌,来研究细菌范围扩展的进化。我们发现,在任何一种糖类中进行选择都会推动在所有糖类中更快迁移的进化。对所有进化谱系在所有营养条件下的生长和运动性的测量表明,快速迁移的普遍进化是通过表型可塑性产生的。表型可塑性使进化后的菌株能够利用不同策略在每个环境中实现快速迁移,而不论它们是在何种环境中进化而来的。因此,在同质环境中的选择驱动了表型可塑性,从而提高了在其他环境中的表现。