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Coevolution of multiple species through niche construction modifying shared environments

机译:通过生态位构建修改共享环境,多种物种共同进化

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Niche construction is a process whereby organisms, through their metabolism, activities, and choices, modify their own and/or each other's niches. Our purpose is to clarify the interactions between evolution and niche construction by focusing on non-linear interactions between genetic and environmental factors shared by interacting species. We constructed a new fitness landscape model termed the NKES model by introducing environmental factors and their interactions with genetic factors into Kauffman's NKCS model. The evolutionary experiments were conducted using hill-climbing and niche-constructing processes on this landscape. The results have shown that the average fitness among species strongly depends on the ruggedness of the fitness landscape (K) and the degree of the effect of niche construction on genetic factors (E). Especially, we observed two different roles of niche construction: moderate perturbations on hill-climbing processes on the rugged landscapes, and the strong constraint which yields the convergence to a stable state. Also, we show that the difference in the structures of (direct or indirect) interactions among species drastically changes the coevolutionary process of the whole ecosystem by comparing the evolutionary dynamics of the NKES model with that of the NKCS model.
机译:生态位建设是一个过程,在此过程中,生物体通过其代谢,活动和选择来改变自身和/或彼此的生态位。我们的目的是通过关注相互作用物种共享的遗传和环境因素之间的非线性相互作用来阐明进化与生态位构建之间的相互作用。通过将环境因素及其与遗传因素的相互作用引入考夫曼的NKCS模型,我们构建了一个称为NKES模型的新健身景观模型。在此景观上使用爬山和生态位构建过程进行了进化实验。结果表明,物种之间的平均适应度在很大程度上取决于适应度景观的崎ness程度(K)和生态位构建对遗传因子的影响程度(E)。尤其是,我们观察到了生态位建设的两个不同作用:在崎landscape不平的景观上爬坡过程的适度扰动,以及使收敛趋于稳定状态的强大约束。此外,我们通过比较NKES模型和NKCS模型的进化动力学,表明物种之间(直接或间接)相互作用的结构差异极大地改变了整个生态系统的协同进化过程。

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