首页> 外文会议>European Conference on Advances in Artificial Life(ECAL 2005); 20050905-09; Canterbury(GB) >Slime Mould and the Transition to Multicellularity: The Role of the Macrocyst Stage
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Slime Mould and the Transition to Multicellularity: The Role of the Macrocyst Stage

机译:粘液霉菌和向多细胞性的转变:大囊期的作用

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The transition from unicellular to multicellular organisms is one of the mysteries of evolutionary biology. Individual cells must give up their rights to reproduction and reproduce instead as part of a whole. I review and model the macrocyst stage in slime mould (Dictyostelium) evolution to investigate why an organism might have something to gain from joining a collective reproduction strategy. The macrocyst is a reproductive cartel where individual cells aggregate and form a large zygotic cell which then eats the other aggregating cells. The offspring all have the same genetic code. The model is a steady state genetic algorithm at an individual cellular level. An individual's genetic code determines a threshold above which it will reproduce and a threshold below which it will join a macrocyst. I find that cycles in food availability can play an important role in an organism's likelihood of joining the macrocyst. The results also demonstrate how the macrocyst may be an important precursor to other cooperative behaviours.
机译:从单细胞生物到多细胞生物的转变是进化生物学的奥秘之一。单个单元必须放弃其复制权,而复制作为整体的一部分。我回顾并模拟了粘液霉菌(Dictyostelium)进化过程中的大囊肿阶段,以研究生物体为什么可以通过加入集体繁殖策略而有所收获。大囊肿是一个生殖卡特尔,其中单个细胞聚集并形成一个大的合子细胞,然后吞噬了其他聚集的细胞。后代都具有相同的遗传密码。该模型是单个细胞水平的稳态遗传算法。一个人的遗传密码决定了一个阈值,高于该阈值,它将繁殖;以及一个阈值,低于该阈值,它将接合大囊肿。我发现食物可获得性周期在生物体加入大囊肿的可能性中起着重要作用。结果还表明,大囊肿可能是其他合作行为的重要先兆。

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