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Adaptation and the cost of complexity

机译:适应和复杂性成本

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Adaptation is characterized by the movement of a population toward a many-character optimum, movement that results in an increase in fitness. Here I calculate the rate at which fitness increases during adaptation and describe the curve giving fitness versus time as a population approaches an optimum in Fisher's model of adaptation. The results identify several factors affecting the speed of adaptation. One of the most important is organismal complexity-complex organisms adapt more slowly than simple ones when using mutations of the same phenotypic size. Thus, as Fisher foresaw, organisms pay a kind of cost of complexity. However, the magnitude of this cost is considerably larger than Fisher's analysis suggested. Indeed the rate of adaptation declines at least as fast as n(-1), where n is the number of independent characters or dimensions comprising an organism. The present results also suggest that one can define an effective number of dimensions characterizing an adapting species. [References: 25]
机译:适应的特征是群体朝着多个字符的最优运动,这导致了适应度的提高。在这里,我计算了适应过程中适应度增加的速率,并描述了随着种群在Fisher适应模型中达到最佳而适应度随时间变化的曲线。结果确定了影响适应速度的几个因素。最重要的问题之一是生物复杂性-当使用相同表型大小的突变时,复杂生物比简单生物适应得更慢。因此,正如费舍尔预见的那样,生物付出了某种复杂性的代价。但是,这种费用的幅度比费舍尔的分析建议的要大得多。实际上,适应率的下降速度至少与n(-1)一样快,其中n是组成生物体的独立字符或维数。目前的结果还表明,人们可以定义一个有效数量的尺寸来表征一种适应物种。 [参考:25]

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