Furusawa C, Kaneko K
Department of Pure and Applied Sciences, University of Tokyo, Komaba, Meguro-ku, Tokyo 153, Japan.
Artif Life. 2000 Fall;6(4):265-81. doi: 10.1162/106454600300103638.
By introducing a dynamical system model of a multicellular system, it is shown that an organism with a variety of differentiated cell types and a complex pattern emerges through cell-cell interactions even without postulating any elaborate control mechanism. Such an organism is found to maintain a larger growth speed as an ensemble, by achieving a cooperative use of resources, than do simple homogeneous cells, which behave "selfishly." This suggests that the emergence of multicellular organisms with complex organization is a necessity in evolution. According to our theoretical model, there initially appear multipotent stem cells, which undergo stochastic differentiation to other cell types. With development and differentiation, both the chemical diversity and the complexity of intra-cellular dynamics are decreased, as a general consequence of our system. Robustness of the developmental process is also confirmed.
通过引入多细胞系统的动力学系统模型,研究表明,即使不假定任何复杂的控制机制,通过细胞间相互作用也能产生具有多种分化细胞类型和复杂模式的生物体。研究发现,这样的生物体作为一个整体,通过实现资源的协同利用,比那些“自私”行为的简单同质细胞保持更大的生长速度。这表明具有复杂组织的多细胞生物的出现是进化中的必然。根据我们的理论模型,最初会出现多能干细胞,它们会随机分化为其他细胞类型。随着发育和分化,作为我们系统的一个普遍结果,细胞内动力学的化学多样性和复杂性都会降低。发育过程的稳健性也得到了证实。