University of Notre Dame, Notre Dame, IN, USA.
J Evol Biol. 2020 Mar;33(3):256-269. doi: 10.1111/jeb.13593. Epub 2020 Feb 11.
Here, we study the evolution of specialization using realistic computer simulations of bacteria that secrete two public goods in a dynamic fluid. Through this first-principles approach, we find physical factors such as diffusion, flow patterns and decay rates are as influential as fitness economics in governing the evolution of community structure, to the extent that when mechanical factors are taken into account, (a) generalist communities can resist becoming specialists despite the invasion fitness of specialization; (b) generalist and specialists can both resist cheaters despite the invasion fitness of free-riding; and (c) multiple community structures can coexist despite the opposing force of competitive exclusion. Our results emphasize the role of spatial assortment and physical forces on niche partitioning and the evolution of diverse community structures.
在这里,我们使用在动态流体中分泌两种公共物品的细菌的现实计算机模拟来研究专业化的演变。通过这种从原理出发的方法,我们发现扩散、流动模式和衰减率等物理因素在控制群落结构的进化方面与适应经济一样有影响力,以至于当考虑机械因素时,(a)尽管专业化的入侵适合度,多面手群落可以抵抗成为专门化的群落;(b)尽管搭便车的入侵适合度,多面手和专门化者都可以抵抗骗子;以及(c)尽管存在竞争排斥的反作用力,但是多个群落结构可以共存。我们的结果强调了空间分类和物理力量在生态位分割和多样化的群落结构进化中的作用。