DocumentCode
797759
Title
Communication theory and molecular biology at the crossroads
Author
May, Elebeoba E.
Volume
25
Issue
1
fYear
2006
Firstpage
28
Lastpage
29
Abstract
This paper endeavors to explore ideas at the crossroads of communication theory and molecular biology from various disciplinary backgrounds and vantage points, providing an overview of the state of research and making compelling observations regarding the nature of biological information transmission in light of the principles of digital communication. The paper also focuses on whether evidence of coding theoretic properties exists in biology and if such evidence supports information or coding theory view of genetics. The successful development of biological information and coding can provide a theoretical basis for understanding, quantifying, and engineering error control in natural and synthesized biosystems. The intersection of communication theory and molecular biology could potentially yield a quantitative framework for engineering fault-tolerant genes, proteins, and genomes that approach an organism´s communication capacity. Immediate applications of coding theory and coding theoretic principles to genomics are presented.
Keywords
encoding; genetics; information theory; molecular biophysics; proteins; biological information transmission; biosystems; communication theory; digital communication; fault-tolerant genes; genetics; genomes; molecular biology; proteins; Biological information theory; Codes; DNA; Digital communication; Error correction; Genetic communication; Image storage; Information theory; Organisms; Proteins; Computational Biology; Information Storage and Retrieval; Information Theory; Molecular Biology; Systems Biology;
fLanguage
English
Journal_Title
Engineering in Medicine and Biology Magazine, IEEE
Publisher
ieee
ISSN
0739-5175
Type
jour
DOI
10.1109/MEMB.2006.1578660
Filename
1578660
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