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A phylogenetic Gibbs sampler that yields centroid solutions for cis-regulatory site prediction
Author(s) -
Lee A. Newberg,
William A. Thompson,
Sean Conlan,
Thomas M. Smith,
Lee Ann McCue,
Charles E. Lawrence
Publication year - 2007
Publication title -
bioinformatics
Language(s) - English
Resource type - Journals
eISSN - 1367-4811
pISSN - 1367-4803
DOI - 10.1093/bioinformatics/btm241
Subject(s) - centroid , phylogenetic tree , mathematics , statistics , biology , geometry , genetics , gene
Identification of functionally conserved regulatory elements in sequence data from closely related organisms is becoming feasible, due to the rapid growth of public sequence databases. Closely related organisms are most likely to have common regulatory motifs; however, the recent speciation of such organisms results in the high degree of correlation in their genome sequences, confounding the detection of functional elements. Additionally, alignment algorithms that use optimization techniques are limited to the detection of a single alignment that may not be representative. Comparative-genomics studies must be able to address the phylogenetic correlation in the data and efficiently explore the alignment space, in order to make specific and biologically relevant predictions.

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