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首页> 外文期刊>BMC Evolutionary Biology >A stochastic version of the Price equation reveals the interplay of deterministic and stochastic processes in evolution
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A stochastic version of the Price equation reveals the interplay of deterministic and stochastic processes in evolution

机译:价格方程的随机形式揭示了确定性过程和随机过程在进化中的相互作用

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Background Evolution involves both deterministic and random processes, both of which are known to contribute to directional evolutionary change. A number of studies have shown that when fitness is treated as a random variable, meaning that each individual has a distribution of possible fitness values, then both the mean and variance of individual fitness distributions contribute to directional evolution. Unfortunately the most general mathematical description of evolution that we have, the Price equation, is derived under the assumption that both fitness and offspring phenotype are fixed values that are known exactly. The Price equation is thus poorly equipped to study an important class of evolutionary processes. Results I present a general equation for directional evolutionary change that incorporates both deterministic and stochastic processes and applies to any evolving system. This is essentially a stochastic version of the Price equation, but it is derived independently and contains terms with no analog in Price's formulation. This equation shows that the effects of selection are actually amplified by random variation in fitness. It also generalizes the known tendency of populations to be pulled towards phenotypes with minimum variance in fitness, and shows that this is matched by a tendency to be pulled towards phenotypes with maximum positive asymmetry in fitness. This equation also contains a term, having no analog in the Price equation, that captures cases in which the fitness of parents has a direct effect on the phenotype of their offspring. Conclusion Directional evolution is influenced by the entire distribution of individual fitness, not just the mean and variance. Though all moments of individuals' fitness distributions contribute to evolutionary change, the ways that they do so follow some general rules. These rules are invisible to the Price equation because it describes evolution retrospectively. An equally general prospective evolution equation compliments the Price equation and shows that the influence of stochastic processes on directional evolution is more diverse than has generally been recognized.
机译:背景进化既涉及确定性过程,也涉及随机过程,众所周知,这两个过程均会导致定向进化变化。大量研究表明,将适应度视为随机变量时,意味着每个人都有可能的适应度值分布,然后,各个适应度分布的均值和方差都有助于方向进化。不幸的是,在具有适应性和后代表型都是精确已知的固定值的假设下,得出了我们对进化的最一般的数学描述,即价格方程。因此,价格方程无法很好地研究一类重要的进化过程。结果我提出了一个方向性演化变化的通用方程式,该方程式既包含确定性过程,也包含随机过程,并且适用于任何演化的系统。这本质上是Price方程的随机形式,但是它是独立推导的,并且在Price的公式中包含没有类似物的项。这个方程表明,选择的效果实际上通过适应度的随机变化而放大。它还概括了人口趋向于适应度最小的表型的已知趋势,并表明这与趋向于适应度呈最大正不对称的表型的趋势相匹配。该方程式还包含一个在Price方程式中没有类似物的术语,它反映了父母的健康状况对其后代的表型有直接影响的情况。结论方向进化受个体适应度的整个分布的影响,而不仅是均值和方差。尽管个体适应度分布的所有时刻都在促进进化变化,但他们的行为遵循一些一般规则。这些规则对于价格方程是不可见的,因为它追溯地描述了演化。一个同样通用的预期演化方程对Price方程进行了补充,表明随机过程对方向演化的影响比通常公认的更为多样。

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