Title
Living is information processing; from molecules to global systems
Abstract
We extend the concept that life is an informational phenomenon, at every level of organisation, from molecules to the global ecological system. According to this thesis: (a) living is information processing, in which memory is maintained by both molecular states and ecological states as well as the more obvious nucleic acid coding; (b) this information processing has one overall function—to perpetuate itself; and (c) the processing method is filtration (cognition) of, and synthesis of, information at lower levels to appear at higher levels in complex systems (emergence). We show how information patterns, are united by the creation of mutual context, generating persistent consequences, to result in ‘functional information’. This constructive process forms arbitrarily large complexes of information, the combined effects of which include the functions of life. Molecules and simple organisms have already been measured in terms of functional information content; we show how quantification may be extended to each level of organisation up to the ecological. In terms of a computer analogy, life is both the data and the program and its biochemical structure is the way the information is embodied. This idea supports the seamless integration of life at all scales with the physical universe. The innovation reported here is essentially to integrate these ideas, basing information on the ‘general definition’ of information, rather than simply the statistics of information, thereby explaining how functional information operates throughout life.
Year
DOI
Venue
2012
10.1007/s10441-013-9179-3
Acta Biotheoretica
Keywords
Field
DocType
entropy,evolution,complex system,network
Complex system,Ecology,Information integration,Information processing,Constructive,Embodied cognition,Analogy,Interaction information,Mathematics
Journal
Volume
Issue
ISSN
abs/1210.5908
2
1572-8358
Citations 
PageRank 
References 
3
0.59
10
Authors
3
Name
Order
Citations
PageRank
Keith D. Farnsworth131.27
John Nelson230.59
Carlos Gershenson339242.34