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Downward causation by information control in micro-organisms

机译:微生物通过信息控制引起的向下因果关系

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摘要

The concepts of functional equivalence classes and information control in living systems are useful to characterize downward (or top-down) causation by feedback information control in synthetic biology. Herein, we re-analyse published experiments of microbiology and synthetic biology that demonstrate the existence of several classes of functional equivalence in microbial organisms. Classes of functional equivalence from the bacterial operating system, which processes and controls the information encoded in the genome, can readily be interpreted as strong evidence, if not demonstration, of top-down causation (TDC) by information control. The proposed biological framework reveals how this type of causality is put in action in the cellular operating system. Considerations on TDC by information control and adaptive selection can be useful for synthetic biology by delineating the irreducible set of properties that characterizes living systems. Through a ‘retro-synthetic’ biology approach, these considerations could contribute to identifying the constraints behind the emergence of molecular complexity during the evolution of an ancient RNA/peptide world into a modern DNA/RNA/protein world. In conclusion, we propose TDCs by information control and adaptive selection as the two types of downward causality absolutely necessary for life.
机译:生命系统中功能对等类和信息控制的概念可用于通过合成生物学中的反馈信息控制表征向下(或自上而下)的因果关系。在这里,我们重新分析已发表的微生物学和合成生物学实验,这些实验证明了微生物中几种功能对等物的存在。来自细菌操作系统的处理和控制基因组中编码信息的功能等效类,很容易被解释为信息控制自上而下因果关系(TDC)的有力证据,即使没有得到证明。拟议的生物学框架揭示了这种因果关系如何在细胞操作系统中发挥作用。信息控制和自适应选择对TDC的考虑,通过描绘表征生命系统的不可还原的属性集,对于合成生物学很有用。通过“复古合成”生物学方法,这些考虑因素可能有助于确定在古代RNA /肽世界演变为现代DNA / RNA /蛋白质世界的过程中,分子复杂性出现背后的制约因素。总而言之,我们通过信息控制和自适应选择提出了贸易顺差,这是生活中绝对必要的两种向下因果关系。

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