首页> 外文会议>Information Sciences and Systems, 2009. CISS 2009 >The physical language of molecular codes: A rate-distortion approach to the evolution and emergence of biological codes
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The physical language of molecular codes: A rate-distortion approach to the evolution and emergence of biological codes

机译:分子密码的物理语言:一种率失真方法,用于生物密码的演化和出现

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The function of the organism hinges on the performance of its information-processing networks, which convey information via molecular recognition. Many paths within these networks utilize molecular codebooks, such as the genetic code, to translate information written in one class of molecules into another molecular ldquolanguagerdquo. The present paper examines the emergence and evolution of molecular codes in terms of rate distortion theory and reviews recent results of this approach. We discuss how the biological problem of maximizing the fitness of an organism by optimizing its molecular coding machinery is equivalent to the communication engineering problem of designing an optimal information channel. The fitness of a molecular code takes into account the interplay between the quality of the channel and the cost of resources which the organism needs to invest in its construction and maintenance. We analyze the dynamics of a population of organisms that compete according to the fitness of their codes. The model suggests a generic mechanism for the emergence of molecular codes as a phase transition in an information channel. This mechanism is put into biological context and demonstrated in a simple example.
机译:生物体的功能取决于其信息处理网络的性能,该网络通过分子识别来传达信息。这些网络中的许多路径都利用分子密码本(例如遗传密码)将一类分子中编写的信息转换为另一类分子。本文从速率失真理论的角度研究了分子密码的出现和发展,并综述了该方法的最新成果。我们讨论了通过优化生物体的分子编码机制来最大化生物体适应性的生物学问题,如何等同于设计最佳信息通道的通信工程问题。分子代码的适用性考虑到了通道质量与生物体在其构建和维护方面需要投资的资源成本之间的相互作用。我们分析了根据其代码适用性进行竞争的生物种群的动态。该模型提出了一种通用的机制,用于在信息通道中将分子代码作为相变出现。将该机制置于生物学环境中,并在一个简单示例中进行了演示。

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