Title: Comparison of a mitochondrial gene and a corresponding nuclear pseudogene
Abstract: Restricted accessMoreSectionsView PDF ToolsAdd to favoritesDownload CitationsTrack Citations ShareShare onFacebookTwitterLinked InRedditEmail Cite this article Arctander Peter 1995Comparison of a mitochondrial gene and a corresponding nuclear pseudogeneProc. R. Soc. Lond. B.26213–19http://doi.org/10.1098/rspb.1995.0170SectionRestricted accessArticleComparison of a mitochondrial gene and a corresponding nuclear pseudogene Peter Arctander Google Scholar Find this author on PubMed Search for more papers by this author Peter Arctander Google Scholar Find this author on PubMed Published:23 October 1995https://doi.org/10.1098/rspb.1995.0170AbstractNuclear copies of mitochondrial genes have been reported several times. Presented here is a direct comparison of a fragment of the mitochondrial gene coding for Cytochrome b and its assumed nuclear pseudogene in a phylogenetic context. By studying eight such sets of genes a direct measurement of relative rates of several types of substitutions were made. As expected mitochondrial third position transitions are the fastest accumulating substitutions, here indicated to be at least up to 39 times faster than corresponding positions in the supposed nuclear pseudogene. Translocated mitochondrial genes, evolving much slower than their functional 'counterpart', reflect the ancestral-pre-translocated form of the gene. A warning is given against unwanted inclusion of paralogous sequences in phylogenetic analysis and against the use of versatile primers that can promote such incidents.FootnotesThis text was harvested from a scanned image of the original document using optical character recognition (OCR) software. As such, it may contain errors. Please contact the Royal Society if you find an error you would like to see corrected. Mathematical notations produced through Infty OCR. 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Publication Year: 1995
Publication Date: 1995-10-23
Language: en
Type: article
Indexed In: ['crossref', 'pubmed']
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Cited By Count: 227
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