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The evolutionary game of interspecific mutualism in the multi-species model

机译:多物种模型中三种相互作用的进化游戏

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Mutualistic interspecific interactions, including Mullerian mimicry and division of labor, are common in nature. In contrast to antagonistic interactions, where faster evolution is favored, mutualism can favor slower evolution under certain conditions. This is called the Red King effect. Since Bergstrom and Lachmann (2003) proposed the Red King effect, it has been investigated only in two-species models. However, biological examples suggest that mutualism can include three or more species. Here, I modeled the evolutionary dynamics of mutualism in communities where involving two or more species, and in which all species mutually interact. Regardless of the number of species in the community, it is possible to derive conditions for stable equilibria. Although nonlinear relationships exist between the evolutionary rates and the evolutionary fate of each species in the multi-species communities, the model suggests that it is possible to predict whether faster evolution is favored or disfavored for the relatively rapidly evolving species; however, it is difficult to predict the evolutionary fate of species that evolve relatively slowly because their evolutionary dynamics are affected by the evolutionary fate of species evolving rapidly. (C)2019 Elsevier Ltd. All rights reserved.
机译:相互主义的间隙相互作用,包括穆勒主义和分工,本质上很常见。与拮抗相互作用相比,在较快的进化受到青睐的情况下,相互主义可以在某些条件下有利于较慢的进化。这被称为红王的效果。由于Bergstrom和Lachmann(2003)提出了红王的效果,只有在两种模型中被调查。然而,生物学实例表明,共生可以包括三种或更多种。在这里,我在涉及两种或更多种物种的社区中建模的共同主义的进化动态,以及所有物种相互相互作用。无论社区中的物种数量如何,都可以导出稳定均衡的条件。尽管在多种社区中每个物种的进化率和进化速率与进化命运之间存在非线性关系,但该模型表明可以预测对相对迅速的不断发展的物种有利或不涉及更快的进化;然而,难以预测物种的进化命运,因为它们的进化动态受到迅速发展的物种的进化命运的影响,因此慢慢地发展。 (c)2019年elestvier有限公司保留所有权利。

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