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A roadmap for a computational theory of the value of information in originof life questions

机译:用于终身问题的信息价值计算理论的路线图

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摘要

Information plays a critical role in complex biological systems. Complex systems like immune systems and ant colonies co-ordinate heterogeneous components in a decentralized fashion. How do these distributed decentralized systems function? One key component is how these complex systems efficiently process information. These complex systems have an architecture for integrating and processing information coming in from various sources and points to the value of information in the functioning of different complex biological systems. This article proposes a role for information processing in questions around the origin of life and suggests how computational simulations may yield insights into questions related to the origin of life.Such a computational model of the origin of life would unify thermodynamics with information processing and we would gain an appreciation of why proteins and nucleotides evolved as the substrate of computation and information processing in living systems that we see on Earth. Answers to questions like these may give us insights into non-carbon based forms of life that we could search for outside Earth.We hypothesize that carbon-based life forms are only one amongst a continuum of life-like systems in the universe. Investigations into the role of computational substrates that allow information processing is important and could yield insights into: 1) novel non-carbon based computational substrates that may have “life-like” properties, and 2) how life may have actually originated from non-life on Earth. Life may exist as a continuum between non-life and life and we may have to revise our notion of life and how common it is in the universe. Looking at life or life-like phenomenon through the lens of information theory may yield a broader view of life.
机译:信息在复杂的生物系统中起关键作用。复杂的系统,如以分散的方式免疫系统,蚁群统筹异构组件。如何将这些分散式系统的功能?一个关键组件是如何将这些复杂的系统有效地处理信息。这些复杂的系统具有用于积分和处理来自各种源和点来的信息在不同的复杂的生物系统的运作的值的信息的架构。本文提出了一种信息处理围绕生命起源问题的作用,并提出了如何计算模拟可能产生见解与生命的起源问题。生命起源的这样的计算模型将统一与信息处理热力学,我们将获得为什么蛋白质和核苷酸演变为计算和信息处理的生命系统,我们看到地球上衬底的赞赏。解答这样的问题可能会给我们的生活智慧,我们可以寻找地球以外的非碳基形式。我们推测,碳基生命形式都只有一个之间的连续栩栩如生宇宙中的系统。调查计算底物,其允许信息处理是重要的,可能会产生见解的作用:1)新的非碳的计算可以具有“生命样”性质的基材,和2)如何寿命实际上可能源自非地球上的生命。生命可能存在的非寿险和寿险之间的连续,我们可能需要修改我们的生活概念,以及如何共同它在宇宙中。通过信息论的透镜看生命或栩栩如生的现象可能产生寿命的更广阔的视野。

著录项

  • 作者

    Soumya Banerjee;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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