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原细胞模型中的可持续增长与同步

Sustainable Growth and Synchronization in Protocell Models.

作者信息

Serra Roberto, Villani Marco

机构信息

Department of Physics, Informatics and Mathematics, Modena and Reggio Emilia University, Via Campi 213/A, 41125 Modena, Italy.

European Centre for Living Technology, Ca' Bottacin, Dorsoduro 3911, Calle Crosera, 30123 Venice, Italy.

出版信息

Life (Basel). 2019 Aug 21;9(3):68. doi: 10.3390/life9030068.

Abstract

The growth of a population of protocells requires that the two key processes of replication of the protogenetic material and reproduction of the whole protocell take place at the same rate. While in many ODE-based models such synchronization spontaneously develops, this does not happen in the important case of quadratic growth terms. Here we show that spontaneous synchronization can be recovered (i) by requiring that the transmembrane diffusion of precursors takes place at a finite rate, or (ii) by introducing a finite lifetime of the molecular complexes. We then consider reaction networks that grow by the addition of newly synthesized chemicals in a binary polymer model, and analyze their behaviors in growing and dividing protocells, thereby confirming the importance of (i) and (ii) for synchronization. We describe some interesting phenomena (like long-term oscillations of duplication times) and show that the presence of food-generated autocatalytic cycles is not sufficient to guarantee synchronization: in the case of cycles with a complex structure, it is often observed that only some subcycles survive and synchronize, while others die out. This shows the importance of truly dynamic models that can uncover effects that cannot be detected by static graph theoretical analyses.

摘要

原细胞群体的增长要求原遗传物质复制和整个原细胞繁殖这两个关键过程以相同的速率发生。虽然在许多基于常微分方程的模型中,这种同步会自发形成,但在二次增长项这种重要情况下却不会发生。在这里我们表明,自发同步可以通过以下方式恢复:(i)要求前体的跨膜扩散以有限速率发生,或者(ii)引入分子复合物的有限寿命。然后我们考虑在二元聚合物模型中通过添加新合成化学物质而生长的反应网络,并分析它们在生长和分裂原细胞中的行为,从而证实(i)和(ii)对于同步的重要性。我们描述了一些有趣的现象(如复制时间的长期振荡),并表明食物产生的自催化循环的存在不足以保证同步:在具有复杂结构的循环情况下,经常观察到只有一些子循环存活并同步,而其他子循环则消失。这表明了真正的动态模型的重要性,这些模型能够揭示静态图论分析无法检测到的效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e74/6789472/9fce3e1589d7/life-09-00068-g001.jpg

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