Patra Pintu, Klumpp Stefan
Max Planck Institute of Colloids and Interfaces, Science Park Golm, 14424 Potsdam, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Mar;89(3):030702. doi: 10.1103/PhysRevE.89.030702. Epub 2014 Mar 12.
The spatial expansion of a population in a nonuniform environment may benefit from phenotypic heterogeneity with interconverting subpopulations using different survival strategies. We analyze the crossing of an antibiotic-containing environment by a bacterial population consisting of rapidly growing normal cells and slow-growing, but antibiotic-tolerant persister cells. The dynamics of crossing is characterized by mean first arrival times and is found to be surprisingly complex. It displays three distinct regimes with different scaling behavior that can be understood based on an analytical approximation. Our results suggest that a phenotypically heterogeneous population has a fitness advantage in nonuniform environments and can spread more rapidly than a homogeneous population.
在非均匀环境中,种群的空间扩张可能受益于表型异质性,其中相互转化的亚种群采用不同的生存策略。我们分析了由快速生长的正常细胞和生长缓慢但对抗生素耐受的持留细胞组成的细菌种群穿越含抗生素环境的过程。穿越过程的动力学以平均首次到达时间为特征,结果发现其出人意料地复杂。它呈现出三种具有不同标度行为的不同状态,这可以基于一种解析近似来理解。我们的结果表明,表型异质的种群在非均匀环境中具有适应性优势,并且比同质种群能够更快地扩散。