Rissho University, Department of Business Administration, Tokyo, 141-8602, Japan.
Soka University, Department of Business Administration, Tokyo, 192-8577, Japan.
Sci Rep. 2017 Mar 9;7:44146. doi: 10.1038/srep44146.
Although various norms for reciprocity-based cooperation have been suggested that are evolutionarily stable against invasion from free riders, the process of alternation of norms and the role of diversified norms remain unclear in the evolution of cooperation. We clarify the co-evolutionary dynamics of norms and cooperation in indirect reciprocity and also identify the indispensable norms for the evolution of cooperation. Inspired by the gene knockout method, a genetic engineering technique, we developed the norm knockout method and clarified the norms necessary for the establishment of cooperation. The results of numerical investigations revealed that the majority of norms gradually transitioned to tolerant norms after defectors are eliminated by strict norms. Furthermore, no cooperation emerges when specific norms that are intolerant to defectors are knocked out.
尽管已经提出了各种基于互惠的合作规范,这些规范在进化上可以抵御搭便车者的入侵,但规范的交替过程和多样化规范的作用在合作进化中仍不清楚。我们阐明了间接互惠中规范和合作的共同进化动态,并确定了合作进化所必需的规范。受基因敲除方法(一种遗传工程技术)的启发,我们开发了规范敲除方法,并阐明了合作建立所必需的规范。数值研究的结果表明,在严格规范将叛徒淘汰后,大多数规范逐渐过渡到宽容规范。此外,当对叛徒不容忍的特定规范被敲除时,就不会出现合作。