Molecular identification of the active ninja retrotransposon and the inactive aurora element in Drosophila simulans and D. melanogaster
スポンサーリンク
概要
- 論文の詳細を見る
How transposable elements evolve is a key facet in understanding of spontaneous mutation and genomic rearrangements in various organisms. One of the best ways to approach this question is to study a newly evolved transposable element whose presence is restricted to a specific population or strain. The retrotransposons ninja and aurora may provide insights into the process of their evolution, because of their contrasting characteristics, even though they show high sequence identity. The ninja retrotransposon was found in a Drosophila simulans strain in high copy number and is potent in transposition. On the other hand, aurora elements are distributed widely among the species belonging to the Drosophila melanogaster species complex, but are immobile at least in D. melanogaster. In order to distinguish the two closely resembled retrotransposons by molecular means, we determined and compared DNA sequence of the elements, and identified characteristic internal deletions and nucleotide substitutions in 5-long terminal repeats (LTR). Analyses of the structure of ninja homologs and LTR sequences amplified from both genomic and cloned DNA revealed that the actively transposable ninja elements were present only in D. simulans strains, but inactive aurora elements exist in both D. melanogaster and D. simulans.
- 日本遺伝学会の論文
- 1998-12-01
著者
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KANAMORI Yasushi
Laboratory for Amphibian Biologym, Graduate School of Science, Hiroshima University
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Kanamori Y
Hiroshima Univ. Higashihiroshima Jpn
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Kanamori Yasushi
Department Of Applied Biology Kyoto Institute Of Technology
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Yamamoto Masa-toshi
Department Of Applied Biology Kyoto Institute Of Technology
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Hayashi Hideki
Department Of Cardiovascular And Respiratory Medicine Shiga University Of Medical Science
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Hayashi Hideki
Department Of Academic Surgery Chiba University Graduate School Of Medicine
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Hayashi Hideki
Department Of Applied Biology Kyoto Institute Of Technology
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Hayashi Hideki
Department Clinical Pharmacology & Genetics, School of Pharmaceutical Sciences, University of Shizuoka
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