Department of Applied Mathematics, The University of Western Ontario, London, Ontario, N6A 5B7, Canada.
Bull Math Biol. 2011 May;73(5):1028-51. doi: 10.1007/s11538-010-9551-2. Epub 2010 Jun 8.
I use multitype branching processes to study genetic models for the evolution of social behaviour, i.e. behaviours that, when acted out, affect the success of the actor's neighbours. Here, I suppose an individual bearing a mutant copy of a gene influences the reproductive success of a neighbour by altering its own competitive ability. Approximations based on assumptions about the rareness of the mutant allele and the strength of selection allow me to formulate statements concerning the probability of mutant extinction in terms of inclusive fitness. Inclusive fitness is an idea well known to biologists and can be thought of as a sum of an individual's fitness and the fitness of each of its relatives, weighted by some measure of genetic relatedness. Previous work has led to some confusion surrounding the definition of the inclusive-fitness effect of a mutant allele when individuals carrying that allele experience demographic conditions that fluctuate randomly. In this paper, I emphasise the link between inclusive fitness and the probability of mutant extinction. I recover standard results for populations of constant size, and I show that inclusive fitness can be used to determine the short-term fate of mutants in the face of stochastic demographic fluctuations. Overall, then, I provide a connection between certain inclusive-fitness-based approaches routinely applied in theoretical studies of social evolution.
我使用多分支分支过程来研究社会行为进化的遗传模型,即当表现出来时会影响行为者邻居成功的行为。在这里,我假设携带基因突变副本的个体通过改变自身竞争能力来影响邻居的繁殖成功率。基于对突变等位基因稀有性和选择强度的假设的近似值,使我能够根据适合度包容来表述有关突变体灭绝概率的陈述。适合度包容是生物学家熟知的一个概念,可以被认为是个体适合度与其每个亲属的适合度之和,其权重由遗传相关性的某种度量来确定。以前的工作导致了在个体携带该等位基因时经历随机波动的人口统计学条件下,关于突变等位基因适合度包容效应的定义存在一些混淆。在本文中,我强调了适合度包容与突变体灭绝概率之间的联系。我恢复了恒定大小种群的标准结果,并且表明适合度包容可以用于在面对随机人口统计学波动时确定突变体的短期命运。总的来说,我为理论社会进化研究中经常应用的某些基于适合度包容的方法提供了一种联系。