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A Quantitative Test of Hamiltons Rule for the Evolution of Altruism

机译:汉密尔顿利他主义演变规律的定量检验

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摘要

The evolution of altruism is a fundamental and enduring puzzle in biology. In a seminal paper Hamilton showed that altruism can be selected for when rb − c>0, where c is the fitness cost to the altruist, b is the fitness benefit to the beneficiary, and r is their genetic relatedness. While many studies have provided qualitative support for Hamilton's rule, quantitative tests have not yet been possible due to the difficulty of quantifying the costs and benefits of helping acts. Here we use a simulated system of foraging robots to experimentally manipulate the costs and benefits of helping and determine the conditions under which altruism evolves. By conducting experimental evolution over hundreds of generations of selection in populations with different c/b ratios, we show that Hamilton's rule always accurately predicts the minimum relatedness necessary for altruism to evolve. This high accuracy is remarkable given the presence of pleiotropic and epistatic effects as well as mutations with strong effects on behavior and fitness (effects not directly taken into account in Hamilton's original 1964 rule). In addition to providing the first quantitative test of Hamilton's rule in a system with a complex mapping between genotype and phenotype, these experiments demonstrate the wide applicability of kin selection theory.
机译:利他主义的演变是生物学中一个基本而持久的难题。汉密尔顿(Hamilton)在开创性论文中指出,当rb − c> 0时,可以选择利他主义,其中c是利他主义者的适应度成本,b是受益者的适应度收益,r是他们的遗传相关性。尽管许多研究为汉密尔顿法则提供了定性支持,但由于难以量化帮助行为的成本和收益,因此尚无法进行定量测试。在这里,我们使用觅食机器人的模拟系统来实验性地控制帮助和确定利他主义演变的条件的成本和收益。通过在具有不同c / b比的人群中进行数百代选择的实验进化,我们证明了汉密尔顿法则总是准确地预测利他主义进化所必需的最小相关性。考虑到多效性和上位性效应的存在,以及对行为和适应性具有强烈影响的突变(在汉密尔顿最初的1964年规则中未直接考虑到这种影响),因此这种高精确度是非凡的。除了在基因型和表型之间具有复杂映射的系统中提供汉密尔顿法则的首次定量检验之外,这些实验还证明了亲属选择理论的广泛适用性。

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