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关于自生产原细胞出现条件的计算研究。

Computational studies on conditions of the emergence of autopoietic protocells.

作者信息

Ono Naoaki

机构信息

ATR Network Informatics Laboratories, 2-2-2 Hikaridai, Keihanna Science City, Kyoto 619-0288, Japan.

出版信息

Biosystems. 2005 Sep;81(3):223-33. doi: 10.1016/j.biosystems.2005.04.005.

Abstract

It has been pointed out that the acquisition of self-maintaining protocells was one of the most important evolutionary steps in the earliest stage of life. However, there remains little evidence to show what the components of the protocells were and how they were acquired. A theoretical study to investigate the possible process of the emergence of protocells is therefore required. In this paper, we present a computational model that demonstrates the emergence and evolution of self-maintaining and self-reproducing structures to analyze conditions under which precellular autocatalytic molecules could evolve into self-reproducing protocells. We focused on the supply rates of molecular resources as environmental parameters and explored the pathways of evolution from molecular replication to cellular reproduction under various conditions. The results showed that the spontaneous organization of protocells from a random initial state takes place in a parameter region where the metabolism becomes difficult because of an insufficient supply of resources, but once cell structures are organized, they can survive in a wider range of environments. We investigated the evolution in temporally or spatially changing environments and found that the protocells can take over the precellular metabolic system after the transition. These results suggest a possible scenario for the evolution from precellular to cellular reproduction.

摘要

有人指出,获得自我维持的原始细胞是生命最早期阶段最重要的进化步骤之一。然而,几乎没有证据表明原始细胞的组成部分是什么以及它们是如何获得的。因此,需要进行一项理论研究来探究原始细胞出现的可能过程。在本文中,我们提出了一个计算模型,该模型展示了自我维持和自我复制结构的出现与进化,以分析前细胞自催化分子能够进化为自我复制原始细胞的条件。我们将分子资源的供应速率作为环境参数,并探索了在各种条件下从分子复制到细胞繁殖的进化途径。结果表明,从随机初始状态自发形成原始细胞发生在一个参数区域,在该区域由于资源供应不足,新陈代谢变得困难,但一旦细胞结构形成,它们就能在更广泛的环境中存活。我们研究了在时间或空间变化环境中的进化,发现原始细胞在转变后可以接管前细胞代谢系统。这些结果为从前细胞繁殖到细胞繁殖的进化提出了一种可能的情景。

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