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Self-organization: the fundament of cell biology

机译:自我组织:细胞生物学的基础

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摘要

Self-organization refers to the emergence of an overall order in time and space of a given system that results from the collective interactions of its individual components. This concept has been widely recognized as a core principle in pattern formation for multi-component systems of the physical, chemical and biological world. It can be distinguished from self-assembly by the constant input of energy required to maintain order-and self-organization therefore typically occurs in non-equilibrium or dissipative systems. Cells, with their constant energy consumption and myriads of local interactions between distinct proteins, lipids, carbohydrates and nucleic acids, represent the perfect playground for self-organization. It therefore comes as no surprise that many properties and features of self-organized systems, such as spontaneous formation of patterns, nonlinear coupling of reactions, bi-stable switches, waves and oscillations, are found in all aspects of modern cell biology. Ultimately, self-organization lies at the heart of the robustness and adaptability found in cellular and organismal organization, and hence constitutes a fundamental basis for natural selection and evolution.
机译:自我组织是指由其各个组件的集体相互作用产生的给定系统的时间和空间的整体顺序的出现。该概念被广泛被认为是物理,化学和生物世界的多组分系统模式形成的核心原理。通过通过维护秩序所需的能量的恒定输入可以与自组装区分开,因此通常发生在非平衡或耗散系统中。细胞,具有恒定的能量消耗和不同蛋白质,脂质,碳水化合物和核酸之间的局部相互作用,代表了自我组织的完美操场。因此,在现代细胞生物学的所有方面都发现了许多自组织系统的许多性质和特征,例如自动组织系统的许多性质和特征,例如模式,反应的非线性耦合,反应,双稳定的开关,波浪和振荡。最终,自组织在于细胞和有机体组织中发现的稳健性和适应性的核心,因此构成了自然选择和进化的基础基础。

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