Literature DB >> 8394978

Distribution and conservation of sequences homologous to the 1731 retrotransposon in Drosophila.

C Montchamp-Moreau1, S Ronsseray, M Jacques, M Lehmann, D Anxolabéhère.   

Abstract

The distribution of 1731 retrotransposon-hybridizing sequences in the family Drosophilidae has been studied using a 1731 probe from Drosophila melanogaster. Squash blot and Southern blot analyses of 42 species reveal that the 1731 sequences are widespread within both the Sophophora and Drosophila subgenera and are also present in the genera Scaptomyza and Zaprionus. Hence the 1731 retrotransposon family appears to have a long evolutionary history in the Drosophilidae genome. Differences of hybridization signal intensity suggested that the 1731 sequence is well conserved only in the three species most closely related to D. melanogaster (D. simulans, D. mauritiana, and D. sechellia). A survey of insertion sites in numerous different populations of the previous four species by in situ hybridization to polytene chromosomes has shown in all cases both chromocentric hybridizations and a low number of sites (0-5) on the chromosomal arms. This number of sites is among the lowest observed in D. melanogaster and D. simulans when 1731 is compared with other retrotransposon families. In addition, we have observed species-specific patterns of the chromocentric hybridization signal, suggesting rapid modifications of the beta-heterochromatin components since the radiation of the melanogaster subgroup.

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Year:  1993        PMID: 8394978     DOI: 10.1093/oxfordjournals.molbev.a040049

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  8 in total

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2.  Vertical transmission of the retrotransposable elements R1 and R2 during the evolution of the Drosophila melanogaster species subgroup.

Authors:  D G Eickbush; T H Eickbush
Journal:  Genetics       Date:  1995-02       Impact factor: 4.562

3.  Accumulation of functional recombinant human coagulation factor IX in transgenic soybean seeds.

Authors:  Nicolau B Cunha; André M Murad; Gustavo L Ramos; Andréia Q Maranhão; Marcelo M Brígido; Ana Cláudia G Araújo; Cristiano Lacorte; Francisco J L Aragão; Dimas T Covas; Aparecida M Fontes; Gustavo H M F Souza; Giovanni R Vianna; Elíbio L Rech
Journal:  Transgenic Res       Date:  2010-11-11       Impact factor: 2.788

4.  Genomic distribution of retrotransposons 297, 1731, copia, mdg1 and roo in the Drosophila melanogaster species subgroup.

Authors:  Julia Díaz-González; Ana Domínguez; Jesús Albornoz
Journal:  Genetica       Date:  2009-12-11       Impact factor: 1.082

5.  Evolutionary pathways of the tirant LTR retrotransposon in the Drosophila melanogaster subgroup of species.

Authors:  Marie Fablet; Sémi Souames; Christian Biémont; Cristina Vieira
Journal:  J Mol Evol       Date:  2007-03-27       Impact factor: 2.395

6.  Molecular structure of a gypsy element of Drosophila subobscura (gypsyDs) constituting a degenerate form of insect retroviruses.

Authors:  T M Alberola; R de Frutos
Journal:  Nucleic Acids Res       Date:  1996-03-01       Impact factor: 16.971

7.  The LTR retrotransposon micropia in the cardini group of Drosophila (Diptera: Drosophilidae): a possible case of horizontal transfer.

Authors:  Juliana Cordeiro; Lizandra J Robe; Elgion L S Loreto; Vera L S Valente
Journal:  Genetica       Date:  2008-02-08       Impact factor: 1.082

8.  Multiple invasions of Gypsy and Micropia retroelements in genus Zaprionus and melanogaster subgroup of the genus Drosophila.

Authors:  Nathalia de Setta; Marie-Anne Van Sluys; Pierre Capy; Claudia M A Carareto
Journal:  BMC Evol Biol       Date:  2009-12-02       Impact factor: 3.260

  8 in total

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