Context dependent substitution biases vary within the human genome

dc.contributor.author

Nevarez, P Andrew

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DeBoever, Christopher M

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Freeland, Benjamin J

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Quitt, Marissa A

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Bush, Eliot C

dc.date.accessioned

2011-06-21T17:27:56Z

dc.date.available

2011-06-21T17:27:56Z

dc.date.issued

2010

dc.description.abstract

Background: Models of sequence evolution typically assume that different nucleotide positions evolve independently. This assumption is widely appreciated to be an over-simplification. The best known violations involve biases due to adjacent nucleotides. There have also been suggestions that biases exist at larger scales, however this possibility has not been systematically explored. Results: To address this we have developed a method which identifies over-and under-represented substitution patterns and assesses their overall impact on the evolution of genome composition. Our method is designed to account for biases at smaller pattern sizes, removing their effects. We used this method to investigate context bias in the human lineage after the divergence from chimpanzee. We examined bias effects in substitution patterns between 2 and 5 bp long and found significant effects at all sizes. This included some individual three and four base pair patterns with relatively large biases. We also found that bias effects vary across the genome, differing between transposons and non-transposons, between different classes of transposons, and also near and far from genes. Conclusions: We found that nucleotides beyond the immediately adjacent one are responsible for substantial context effects, and that these biases vary across the genome.

dc.description.version

Version of Record

dc.identifier.citation

Nevarez,P. Andrew;DeBoever,Christopher M.;Freeland,Benjamin J.;Quitt,Marissa A.;Bush,Eliot C.. 2010. Context dependent substitution biases vary within the human genome. Bmc Bioinformatics 11( ): 462-462.

dc.identifier.issn

1471-2105

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https://hdl.handle.net/10161/4335

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en_US

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Springer Science and Business Media LLC

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10.1186/1471-2105-11-462

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Bmc Bioinformatics

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dna-sequence evolution

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nucleotide substitution

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maximum-likelihood

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noncoding regions

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methylation

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rates

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patterns

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oligonucleotides

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cpg

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biochemical research methods

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biotechnology & applied microbiology

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mathematical & computational biology

dc.title

Context dependent substitution biases vary within the human genome

dc.title.alternative
dc.type

Other article

duke.date.pubdate

2010-9-15

duke.description.issue
duke.description.volume

11

pubs.begin-page

462

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