生命起源模型中的“装配论”:一个批判性的回顾。

IF 2 4区 生物学 Q2 BIOLOGY Biosystems Pub Date : 2025-01-01 Epub Date: 2024-12-20 DOI:10.1016/j.biosystems.2024.105378
David Lynn Abel
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引用次数: 0

摘要

任何体内平衡的原代谢都需要在集成电路中协调不同的生化途径。还需要在适当的时间和地点进行非常特殊的分子组装。装配理论与它的表亲——复杂性理论、混沌理论、量子力学、不可逆非平衡热力学和分子进化理论——结合在一起,具有巨大的自然主义吸引力,人们希望它们能提供所需的精密操纵和控制。它们共同提供了最好的希望,以避免需要主动选择来正式编排真正的正式组织(与混沌理论的自我排序相反)(Abel和Trevors, 2006)。本文特别关注AT对自然主义生命起源模型的贡献。
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"Assembly Theory" in life-origin models: A critical review.

Any homeostatic protometabolism would have required orchestration of disparate biochemical pathways into integrated circuits. Extraordinarily specific molecular assemblies were also required at the right time and place. Assembly Theory conflated with its cousins-Complexity Theory, Chaos theory, Quantum Mechanics, Irreversible Nonequilibrium Thermodynamics and Molecular Evolution theory- collectively have great naturalistic appeal in hopes of their providing the needed exquisite steering and controls. They collectively offer the best hope of circumventing the need for active selection required to formally orchestrate bona fide formal organization (as opposed to the mere self-ordering of chaos theory) (Abel and Trevors, 2006b). This paper focuses specifically on AT's contribution to naturalistic life-origin models.

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来源期刊
Biosystems
Biosystems 生物-生物学
CiteScore
3.70
自引率
18.80%
发文量
129
审稿时长
34 days
期刊介绍: BioSystems encourages experimental, computational, and theoretical articles that link biology, evolutionary thinking, and the information processing sciences. The link areas form a circle that encompasses the fundamental nature of biological information processing, computational modeling of complex biological systems, evolutionary models of computation, the application of biological principles to the design of novel computing systems, and the use of biomolecular materials to synthesize artificial systems that capture essential principles of natural biological information processing.
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