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1.
J Theor Biol ; 108(3): 459-68, 1984 Jun 07.
Article in English | MEDLINE | ID: mdl-6748702

ABSTRACT

A novel and interesting representation of codon space is introduced in which the 64 codons are grouped and re-arranged as vertices in a tetrahedral lattice. Amino acids are then assigned to the lattice in a suggestive way which, when combined with earlier work, leads to an interesting speculation on the origin and development of the genetic code.


Subject(s)
Codon , RNA, Messenger , Amino Acid Sequence , Codon/genetics , Genetic Code , Macromolecular Substances , RNA, Messenger/genetics
2.
J Mol Evol ; 20(2): 167-74, 1984.
Article in English | MEDLINE | ID: mdl-6433035

ABSTRACT

We construct a "codon space" in which a given DNA sequence can be plotted as a function of its base composition in each of the three codon positions. We demonstrate that the base composition is very highly nonrandom, with sequences from more primitive organisms having the least random compositions. By using cluster analysis on the points plotted in codon space we show that there is a strong correlation between base composition and type of organism, with the most primitive organisms having the highest A or T content in the second and third codon positions. A smooth transition toward lower A + T and higher G + C content is observed in the second and third codon positions as the evolutionary complexity of the organism increases. Besides this general trend, more detailed structure can be observed in the clustering that will become clearer as the data base is increased.


Subject(s)
Codon , RNA, Messenger , Bacteriophages/genetics , Base Sequence , Biological Evolution , DNA/genetics , DNA, Mitochondrial/genetics , Genes , Origin of Life , Probability
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