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On the Rate of Evolutionary Processes in Solitary Population Waves: Phase Transitions in Microevolution

机译:关于孤立种群波中演化过程的速率:微演化中的相变

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摘要

It is shown that, like physical systems, populations of species can be in different phases, depending on environmental conditions. These phases, like phases of physical systems, are described by specific state equations. The physical phenomenon of solitary population waves is revealed for the phase of invasion of organisms into their secondary range. The mathematical model has a solution in the form of a solitary wave propagating with a constant speed without changes in shape. The self-organization in solitary waves differs sharply from population processes in the primary species range and is close to the physical foundation of the theory of autosolitons. Solitary waves are impossible within the primary species range. A capacity for the for-mation of solitary waves is only revealed in phylogenetically young “juvenile taxa.” These coenophobes show the highest rates of adaptive changes, are provoked to expand into new areas. Their phase transitions are distinguished not only by an exclusively wide range of fluctuations of population density, but also high phenotypic variability. The macroevolutionary processes can be provided by juvenile taxa in solitary population waves formed as a result of disruption of ecosystems and invasions. Macrotaxa cannot appear in stable successional systems.
机译:结果表明,与物理系统一样,物种种群可以根据环境条件处于不同阶段。这些阶段类似于物理系统的阶段,由特定的状态方程式描述。在生物入侵到其次要范围内的阶段,揭示了孤立种群波的物理现象。数学模型具有孤立波的解决方案,其以恒定速度传播而没有形状变化。孤波中的自组织与原始物种范围内的种群过程有显着差异,并且接近于自孤子理论的物理基础。在主要物种范围内,孤波是不可能的。形成孤波的能力仅在系统发育上的“少年类群”中才显示出来。这些仇外生物显示出最高的适应性变化率,被激发到新的领域。它们的相变不仅以很大范围的种群密度波动为特征,而且具有高的表型变异性。幼年生物分类群可以提供宏观进化过程,这些个体群是由于生态系统破坏和入侵而形成的。大分类群不能出现在稳定的演替系统中。

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