Meszéna Géza, Gyllenberg Mats, Jacobs Frans J, Metz Johan A J
Department of Biological Physics, Eötvös University, Budapest, Hungary.
Phys Rev Lett. 2005 Aug 12;95(7):078105. doi: 10.1103/PhysRevLett.95.078105.
We provide the link between population dynamics and the dynamics of Darwinian evolution via studying the joint population dynamics of similar populations. Similarity implies that the relative dynamics of the populations is slow compared to, and decoupled from, their aggregated dynamics. The relative dynamics is simple, and captured by a Taylor expansion in the difference between the populations. The emerging evolution is directional, except at the singular points of the evolutionary state space. Here "evolutionary branching" may occur. The diversification of life forms thus is demonstrated to be a natural consequence of the Darwinian process.
通过研究相似种群的联合种群动态,我们建立了种群动态与达尔文进化动态之间的联系。相似性意味着种群的相对动态相比于其总体动态较为缓慢,且与之解耦。相对动态较为简单,并可通过种群间差异的泰勒展开式来描述。除了在进化状态空间的奇点处,新出现的进化是有方向的。这里可能会发生“进化分支”。因此,生命形式的多样化被证明是达尔文过程的自然结果。