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A simulation study of mechanisms of group selection of the slime mold Dictyostelium discoideum

机译:粘液菌盘基网柄菌群选择机制的模拟研究

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Slime molds are fascinating organisms, they can either live as an organism consisting out of a single cell (protozoa) or they can form a multi-cellular organism (pseudoplasmodium). So from the biological point of view, the slime molds are studied in order to understand the evolutionary step from a single cell organism to a multi-cellular organism. Studies have shown that the behavior of cooperating single cell organisms exhibit synergistic emergent intelligence, for example finding shortest paths. Just recently, simulation and experiments with a real slime mold (Physarum polycephalum) have been used for traveling salesman like problems. In this work we present a simulation model for the slime mold Dictyostelium discoideum. Different to other studies, here the whole life-cycle is modeled and simulated. This model is used to study the mechanism of cooperation of single cells: We compare the mechanism of altruistic group selection against individual and egoistic selection. It turns out that simple signaling mechanisms are sufficient for a complex behavior of Dictyostelium discoideum, that allows altruistic behavior on cell level, helping the whole population to survive.
机译:粘液霉菌是令人着迷的生物,它们可以作为由单个细胞组成的生物(原生动物)生活,也可以形成多细胞生物(假疟原虫)。因此,从生物学的角度出发,对粘液霉菌进行了研究,以了解从单细胞生物到多细胞生物的进化步骤。研究表明,协作的单细胞生物的行为表现出协同的紧急情报,例如找到最短的路径。就在最近,针对真正的粘液霉菌(Physarum polycephalum)的模拟和实验已被用于旅行商等问题。在这项工作中,我们提出了粘液菌盘基网柄菌的模拟模型。与其他研究不同,这里对整个生命周期进行了建模和模拟。该模型用于研究单细胞协作的机制:我们比较利他主​​义群体选择与个人和利己主义选择的机制。事实证明,简单的信号传导机制足以应对迪斯科网状菌的复杂行为,从而在细胞水平上实现利他行为,从而帮助整个种群生存。

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