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How prokaryotes ‘encode’ their environment: Systemic tools for organizing the information flow

机译:代理人“编码”的环境:用于组织信息流的系统工具

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摘要

AbstractAn important issue related to code biology concerns the cell’s informational relationships with the environment. As an open self-producing system, a great variety of inputs and outputs are necessary for the living cell, not only consisting of matter and energy but also involving information flows. The analysis here of the simplest cells will involve two basic aspects. On the one side, the molecular apparatuses of the prokaryotic signaling system, with all its variety of environmental signals and component pathways (which have been called 1–2-3 Component Systems), including the role of a few second messengers which have been pointed out in bacteria too. And in the other side, the gene transcription system as depending not only on signaling inputs but also on a diversity of factors. Amidst the continuum of energy, matter, and information flows, there seems to be evidence for signaling codes, mostly established around the arrangement of life-cycle stages, in large metabolic changes, or in the relationships with conspecifics (quorum sensing) and within microbial ecosystems. Additionally, and considering the complexity growth of signaling systems from prokaryotes to eukaryotes, four avenues or “roots” for the advancement of such complexity would come out. A comparative will be established in between the signaling strategies and organization of both kinds of cellular systems. Finally, a new characterization of “informational architectures” will be proposed in order to explain the coding spectrum of both prokaryotic and eukaryotic signaling systems. Among other evolutionary aspects, cellular strategies for the construction of novel functional codes via the intermixing of infor
机译:<![cdata [ 抽象 与代码生物学相关的重要问题涉及细胞与环境的信息关系。作为一个开放的自我生产系统,生活细胞需要各种各样的输入和输出,不仅由物质和能量组成,而且涉及信息流量。这里最简单的细胞的分析将涉及两个基本方面。在一侧,原核信号传导系统的分子装置,具有各种环境信号和组件途径(已被称为1-2-3个组件系统),包括迄今为止的几个第二信使的作用也在细菌中。在另一边,基因转录系统不仅根据信号传导输入而且对因素的多样性。在能量的连续之外,物质和信息流动,似乎有证据表明信令代码,大多数围绕生命周期阶段的排列,在大代谢变化中,或者与Conspecifics(法定传感)的关系以及微生物内的关系生态系统。此外,并考虑到从原核生物到真核生物的信号传导系统的复杂性生长,四个途径或“根”的推进将出现。将在两种细胞系统的信号策略和组织之间建立比较。最后,将提出“信息架构”的新表征,以解释原核和真核信号传导系统的编码谱。在其他进化方面,通过infor混合构建新型功能码的细胞策略

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