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Complement-Based Self-Replicated, Self-Assembled Systems (CBSRSAS)

机译:基于补码的自我复制,自组装系统(CBSRSAS)

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Self-assembly and self-replication are the main common thematic features of living organism. The life of most living organisms bases on biomolecular systems such as DNA and RNA. Self-replication and assembly are emergent properties of such systems. These biomolecular systems have common thematic features that enable them from self-replicating and self-assembling themselves. In this paper, I try to generalize these common thematic features to generate a generalized model of the complement-based self-replicated, self-assembled systems. In this model, I explained the main requirements for achieving these systems in terms of basic system components and how these components interact with each other through self-assembling rule set and complement-based replication rule set generating systems with potential to be self-replicated machines. After generating this model, I have applied this model to DNA and simulated its basics.
机译:自我组装和自我复制是生物体的主要常见主题特征。大多数生物体的生物基于DNA和RNA等生物分子系统碱基。自我复制和组装是这种系统的紧急属性。这些生物分子系统具有共同的主题特征,使它们能够自我复制和自我组装。在本文中,我尝试概括这些常用主题特征以生成基于补码的自我复制的自组装系统的广义模型。在此模型中,我解释了在基本系统组件方面实现这些系统的主要要求以及这些组件通过自组装规则集和基于补款的复制规则集生成系统来彼此相互交互,具有潜在的自我复制的机器。在生成此模型后,我已将此模型应用于DNA并模拟其基础知识。

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