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Extending the range of additivity in using inclusive fitness

机译:在使用包容性健身时延长添加力范围

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摘要

Inclusive fitness is a concept widely utilized by social biologists as the quantity organisms appear designed to maximize. However, inclusive fitness theory has long been criticized on the (uncontested) grounds that other quantities, such as offspring number, predict gene frequency changes accurately in a wider range of mathematical models. Here, we articulate a set of modeling assumptions that extend the range of scenarios in which inclusive fitness can be applied. We reanalyze recent formal analyses that searched for, but did not find, inclusive fitness maximization. We show (a) that previous models have not used Hamilton's definition of inclusive fitness, (b) a reinterpretation of Hamilton's definition that makes it usable in this context, and (c) that under the assumption of probabilistic mixing of phenotypes, inclusive fitness is indeed maximized in these models. We also show how to understand mathematically, and at an individual level, the definition of inclusive fitness, in an explicit population genetic model in which exact additivity is not assumed. We hope that in articulating these modeling assumptions and providing formal support for inclusive fitness maximization, we help bridge the gap between empiricists and theoreticians, which in some ways has been widening, demonstrating to mathematicians why biologists are content to use inclusive fitness, and offering one way to utilize inclusive fitness in general models of social behavior.
机译:包容性健身是社会生物学家广泛利用的概念,因为旨在最大化的数量有机体。然而,包容性的健身理论长期以来一直批评(无可争议的)地,其他数量,例如后代数量,预测基因频率在更广泛的数学模型中准确地改变。在这里,我们阐明了一组建模假设,其延长了可以应用包容性健身的场景范围。我们重新分析了最近进行的正式分析,但没有找到包容性的健身最大化。我们展示(a)以前的模型未使用汉密尔顿对包容性健身的定义,(b)对汉密尔顿的定义进行了重新诠释,使其可以在这种情况下可用,(c)在概率混合的表型混合下,包容性健身确实在这些模型中最大化。我们还展示了如何在数学上进行理解,在一个单独的水平,隐性群体遗传模型中的隐性群体的定义,其中没有假设确切的添加性。我们希望在阐明这些建模假设并提供正式的支持对包容性健身最大化,我们帮助弥合经验主义者和理论者之间的差距,这在某些方面一直在扩大,向数学家展示了为什么生物学家是使用包容性的满足,并提供一个在社会行为一般模型中利用包容性健身的方式。

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