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Sequence diversity of a domesticated transposase gene, <Emphasis Type="Italic">MUG1</Emphasis>, in <Emphasis Type="Italic">Oryza</Emphasis> species
Authors:Soon-Jae Kwon  Kyong-Cheul Park  Jae-Han Son  Thomas Bureau  Cheul-Ho Park  Nam-Soo Kim
Institution:(1) Department of Molecular Biosciences, School of Biosciences and Biotechnology, Kangwon National University, Chunchon, 200-701, Korea;(2) Department of Biology, McGill University, Montreal, Quebec, H3A 1B1, Canada;(3) Department of Plant Biotechnology, Kangwon National University, Chunchon, 200-701, Korea;(4) Institute of Biosciences and Biotechnology, Kangwon National University, Chunchon, 200-701, Korea
Abstract:MUG1 is a MULE transposon-related domesticated gene in plants. We assessed the sequence diversity, neutrality, expression, and phylogenetics of the MUG1 gene among Oryza ssp. We found MUG1 expression in all tissues analyzed, with different levels in O. sativa. There were 408 variation sites in the 3886 bp of MUG1 locus. The nucleotide diversity of the MUG1 was higher than functionally known genes in rice. The nucleotide diversity (π) in the domains was lower than the average nucleotide diversity in whole coding region. The π values in nonsynonymous sites were lower than those of synonymous sites. Tajima D and Fu and Li D* values were mostly negative values, suggesting purifying selection in MUG1 sequences of Oryza ssp. Genome-specific variation and phylogenetic analyses show a general grouping of MUG1 sequences congruent with Oryza ssp. biogeography; however, our MUG1 phylogenetic results, in combination with separate B and D genome studies, might suggest an early divergence of the Oryza ssp. by continental drift of Gondwanaland. O. longistaminata MUG1 divergence from other AA diploids suggests that it might not be a direct ancestor of the African rice species. These authors contributed equally to this work.
Keywords:domesticated gene            MUG1            nucleotide diversity            Oryza            phylogenetics  purifying selection
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