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Journal Abstract Search


510 related items for PubMed ID: 21633114

  • 1. Reconciling gene and genome duplication events: using multiple nuclear gene families to infer the phylogeny of the aquatic plant family Pontederiaceae.
    Ness RW, Graham SW, Barrett SC.
    Mol Biol Evol; 2011 Nov; 28(11):3009-18. PubMed ID: 21633114
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  • 2. Is homoplasy or lineage sorting the source of incongruent mtdna and nuclear gene trees in the stiff-tailed ducks (Nomonyx-Oxyura)?
    McCracken K, Sorenson M.
    Syst Biol; 2005 Feb; 54(1):35-55. PubMed ID: 15805009
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  • 3. Evolution of the RNA polymerase B' subunit gene (rpoB') in Halobacteriales: a complementary molecular marker to the SSU rRNA gene.
    Walsh DA, Bapteste E, Kamekura M, Doolittle WF.
    Mol Biol Evol; 2004 Dec; 21(12):2340-51. PubMed ID: 15356285
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  • 4. Placing paleopolyploidy in relation to taxon divergence: a phylogenetic analysis in legumes using 39 gene families.
    Pfeil BE, Schlueter JA, Shoemaker RC, Doyle JJ.
    Syst Biol; 2005 Jun; 54(3):441-54. PubMed ID: 16012110
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  • 5. Systematics of the lizard family pygopodidae with implications for the diversification of Australian temperate biotas.
    Jennings WB, Pianka ER, Donnellan S.
    Syst Biol; 2003 Dec; 52(6):757-80. PubMed ID: 14668116
    [Abstract] [Full Text] [Related]

  • 6. The vestigial olfactory receptor subgenome of odontocete whales: phylogenetic congruence between gene-tree reconciliation and supermatrix methods.
    McGowen MR, Clark C, Gatesy J.
    Syst Biol; 2008 Aug; 57(4):574-90. PubMed ID: 18686195
    [Abstract] [Full Text] [Related]

  • 7. The serine repeat antigen (SERA) gene family phylogeny in Plasmodium: the impact of GC content and reconciliation of gene and species trees.
    Bourgon R, Delorenzi M, Sargeant T, Hodder AN, Crabb BS, Speed TP.
    Mol Biol Evol; 2004 Nov; 21(11):2161-71. PubMed ID: 15306658
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  • 8. Reconstruction of ancient molecular phylogeny.
    Guigó R, Muchnik I, Smith TF.
    Mol Phylogenet Evol; 1996 Oct; 6(2):189-213. PubMed ID: 8899723
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  • 9. Reconstructing the phylogenetic relationships of the earth's most diverse clade of freshwater fishes--order Cypriniformes (Actinopterygii: Ostariophysi): a case study using multiple nuclear loci and the mitochondrial genome.
    Mayden RL, Chen WJ, Bart HL, Doosey MH, Simons AM, Tang KL, Wood RM, Agnew MK, Yang L, Hirt MV, Clements MD, Saitoh K, Sado T, Miya M, Nishida M.
    Mol Phylogenet Evol; 2009 Jun; 51(3):500-14. PubMed ID: 19141325
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  • 11. Rate asymmetry after genome duplication causes substantial long-branch attraction artifacts in the phylogeny of Saccharomyces species.
    Fares MA, Byrne KP, Wolfe KH.
    Mol Biol Evol; 2006 Feb; 23(2):245-53. PubMed ID: 16207937
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  • 14. Modeling gene family evolution and reconciling phylogenetic discord.
    Szöllosi GJ, Daubin V.
    Methods Mol Biol; 2012 Feb; 856():29-51. PubMed ID: 22399454
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  • 18. Single-copy nuclear genes recover cretaceous-age divergences in bees.
    Danforth BN, Brady SG, Sipes SD, Pearson A.
    Syst Biol; 2004 Apr; 53(2):309-26. PubMed ID: 15205055
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  • 19. Gene trees, species trees, and morphology converge on a similar phylogeny of living gars (Actinopterygii: Holostei: Lepisosteidae), an ancient clade of ray-finned fishes.
    Wright JJ, David SR, Near TJ.
    Mol Phylogenet Evol; 2012 Jun; 63(3):848-56. PubMed ID: 22445447
    [Abstract] [Full Text] [Related]

  • 20. Genome-wide analysis of heat shock transcription factor families in rice and Arabidopsis.
    Guo J, Wu J, Ji Q, Wang C, Luo L, Yuan Y, Wang Y, Wang J.
    J Genet Genomics; 2008 Feb; 35(2):105-18. PubMed ID: 18407058
    [Abstract] [Full Text] [Related]


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