It points out that the genetic code can be viewed as a mechanism for efficient representation construction.
Abstract: The gene expression process in nature evaluates the tness of a DNA through the production of different proteins in different cells. The production of protein from DNA goes through transcription that first produces the mRNA and subsequently translates the mRNA to the amino acid sequence in protein. The construction of protein is accomplished by mapping the mRNA sequence using a transformation called the genetic code. This code considers every consequent triplet (codon) of nucleic acids in the... (Update)
Context of citations to this paper: More
...operators) Some examples of approaches to studying genotype to phenotype transformations include the following. Kargupta and Park [20, 21] examine transformations of a fitness function into Fourier space as a way distributing fitness evaluation and show that for a given...
...acid for every three consecutive nucleic acids in the mRNA. This paper investigates the role of genetic code like transformations (GCTs) [25, 31] in learning nonlinear functions from data. It considers the problem of learning a function from a given training data set with...
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BibTeX entry: (Update)
Kargupta, H. \A striking property of genetic code-like transformations ", Technical Report EECS-99-004, Department of Electrical Engineering and Computer Science, Washington State University, (1999). http://citeseer.ist.psu.edu/article/kargupta99striking.html More
@article{ kargupta:01,
author = {Kargupta, H.},
title = {A Striking Property of Genetic Code-like Transformations}, journal = {Complex Systems Journal},
year = {2001},
volume = {13},
number = {1},
pages = {1--32},
url = {citeseer.ist.psu.edu/article/kargupta99striking.html} }
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Documents on the same site (http://www.eecs.wsu.edu/~hillol/pubs.html): More
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