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Journal Abstract Search


141 related items for PubMed ID: 15634196

  • 1. A detailed look at 7 million years of genome evolution in a 439 kb contiguous sequence at the barley Hv-eIF4E locus: recombination, rearrangements and repeats.
    Wicker T, Zimmermann W, Perovic D, Paterson AH, Ganal M, Graner A, Stein N.
    Plant J; 2005 Jan; 41(2):184-94. PubMed ID: 15634196
    [Abstract] [Full Text] [Related]

  • 2. Genomic sequencing reveals gene content, genomic organization, and recombination relationships in barley.
    Rostoks N, Park YJ, Ramakrishna W, Ma J, Druka A, Shiloff BA, SanMiguel PJ, Jiang Z, Brueggeman R, Sandhu D, Gill K, Bennetzen JL, Kleinhofs A.
    Funct Integr Genomics; 2002 May; 2(1-2):51-9. PubMed ID: 12021850
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  • 3. The eukaryotic translation initiation factor 4E confers multiallelic recessive Bymovirus resistance in Hordeum vulgare (L.).
    Stein N, Perovic D, Kumlehn J, Pellio B, Stracke S, Streng S, Ordon F, Graner A.
    Plant J; 2005 Jun; 42(6):912-22. PubMed ID: 15941403
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  • 4. Transposable elements, genes and recombination in a 215-kb contig from wheat chromosome 5A(m).
    SanMiguel PJ, Ramakrishna W, Bennetzen JL, Busso CS, Dubcovsky J.
    Funct Integr Genomics; 2002 May; 2(1-2):70-80. PubMed ID: 12021852
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  • 5. Microcolinearity and genome evolution in the AdhA region of diploid and polyploid cotton (Gossypium).
    Grover CE, Kim H, Wing RA, Paterson AH, Wendel JF.
    Plant J; 2007 Jun; 50(6):995-1006. PubMed ID: 17461788
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  • 10. A whole-genome snapshot of 454 sequences exposes the composition of the barley genome and provides evidence for parallel evolution of genome size in wheat and barley.
    Wicker T, Taudien S, Houben A, Keller B, Graner A, Platzer M, Stein N.
    Plant J; 2009 Sep; 59(5):712-22. PubMed ID: 19453446
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  • 12. Illegitimate recombination is a major evolutionary mechanism for initiating size variation in plant resistance genes.
    Wicker T, Yahiaoui N, Keller B.
    Plant J; 2007 Aug; 51(4):631-41. PubMed ID: 17573804
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  • 13. IS1096-mediated DNA rearrangements play a key role in genome evolution of Mycobacterium smegmatis.
    Wang XM, Galamba A, Warner DF, Soetaert K, Merkel JS, Kalai M, Bifani P, Lefèvre P, Mizrahi V, Content J.
    Tuberculosis (Edinb); 2008 Sep; 88(5):399-409. PubMed ID: 18439874
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  • 15. Characterization of Tpn1 family in the Japanese morning glory: En/Spm-related transposable elements capturing host genes.
    Kawasaki S, Nitasaka E.
    Plant Cell Physiol; 2004 Jul; 45(7):933-44. PubMed ID: 15295077
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  • 16. Grass genome organization and evolution.
    Devos KM.
    Curr Opin Plant Biol; 2010 Apr; 13(2):139-45. PubMed ID: 20064738
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  • 17. Analysis of a contiguous 211 kb sequence in diploid wheat (Triticum monococcum L.) reveals multiple mechanisms of genome evolution.
    Wicker T, Stein N, Albar L, Feuillet C, Schlagenhauf E, Keller B.
    Plant J; 2001 May; 26(3):307-16. PubMed ID: 11439119
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  • 18. Hominoid lineage specific amplification of low-copy repeats on 22q11.2 (LCR22s) associated with velo-cardio-facial/digeorge syndrome.
    Babcock M, Yatsenko S, Hopkins J, Brenton M, Cao Q, de Jong P, Stankiewicz P, Lupski JR, Sikela JM, Morrow BE.
    Hum Mol Genet; 2007 Nov 01; 16(21):2560-71. PubMed ID: 17675367
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  • 19. Alu retrotransposition-mediated deletion.
    Callinan PA, Wang J, Herke SW, Garber RK, Liang P, Batzer MA.
    J Mol Biol; 2005 May 13; 348(4):791-800. PubMed ID: 15843013
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  • 20. Mapped Ds/T-DNA launch pads for functional genomics in barley.
    Zhao T, Palotta M, Langridge P, Prasad M, Graner A, Schulze-Lefert P, Koprek T.
    Plant J; 2006 Sep 13; 47(5):811-26. PubMed ID: 16889649
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