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Author Report for: Grigoriev IV

Name Class
Grigoriev IVPaperBerka_2011_Nat.Biotechnol_29_922
Condon_2013_PLoS.Genet_9_E1003233
Curtis_2012_Nature_492_59
Fernandez-Fueyo_2012_Proc.Natl.Acad.Sci.U.S.A_109_5458
Floudas_2012_Science_336_1715
Kubicek_2011_Genome.Biol_12_R40
Morin_2012_Proc.Natl.Acad.Sci.U.S.A_109_17501
Ohm_2012_PLoS.Pathog_8_E1003037
Padamsee_2012_Fungal.Genet.Biol_49_217
Suzuki_2012_BMC.Genomics_13_444
Andersen_2011_Genome.Res_21_885
Banks_2011_Science_332_960
Blanc_2012_Genome.Biol_13_R39
Blanc_2010_Plant.Cell_22_2943
Colbourne_2011_Science_331_555
de Wit_2012_PLoS.Genet_8_E1003088
Duplessis_2011_Proc.Natl.Acad.Sci.U.S.A_108_9166
Eastwood_2011_Science_333_762
Ellison_2011_Genetics_189_55
Fritz-Laylin_2010_Cell_140_631
Gobler_2011_Proc.Natl.Acad.Sci.U.S.A_108_4352
Goodwin_2011_PLoS.Genet_7_E1002070
Hellsten_2010_Science_328_633
Hu_2011_Nat.Genet_43_476
Manning_2013_G3.(Bethesda)_3_41
Ohm_2010_Nat.Biotechnol_28_957
Olson_2012_New.Phytol_194_1001
Prochnik_2010_Science_329_223
Simakov_2013_Nature_493_526
Sucgang_2011_Genome.Biol_12_R20.1
Tisserant_2013_Proc.Natl.Acad.Sci.U.S.A_110_20117
Wohlbach_2011_Proc.Natl.Acad.Sci.U.S.A_108_13212
Gostincar_2014_BMC.Genomics_15_549
Riley_2014_Proc.Natl.Acad.Sci.U.S.A_111_9923
Toome_2014_New.Phytol_202_554
Floudas_2015_Fungal.Genet.Biol_76_78
Hori_2014_PLoS.Genet_10_E1004759
Mosier_2016_Front.Microbiol_7_238
Chang_2015_Genome.Biol.Evol_7_1590
Gazis_2016_Fungal.Biol_120_26
Kis-Papo_2014_Nat.Commun_5_3745
Nagy_2016_Mol.Biol.Evol_33_959
Read_2013_Nature_499_209
Grigoriev_1999_Proc.Natl.Acad.Sci.U.S.A_96_14318
King_2008_Nature_451_783
Martin_2008_Nature_452_88
Merchant_2007_Science_318_245
Putnam_2008_Nature_453_1064
Putnam_2007_Science_317_86
Rensing_2008_Science_319_64
Srivastava_2008_Nature_454_955
Bowler_2008_Nature_456_239
Jeffries_2007_Nat.Biotechnol_25_319
Martinez_2009_Proc.Natl.Acad.Sci.U.S.A_106_1954
Palenik_2007_Proc.Natl.Acad.Sci.U.S.A_104_7705
Worden_2009_Science_324_268
Coleman_2009_PLoS.Genet_5_E1000618
Paterson_2009_Nature_457_551
Martinez_2008_Nat.Biotechnol_26_553
Tyler_2006_Science_313_1261
Firrincieli_2015_Front.Microbiol_6_978
Couturier_2015_Biotechnol.Biofuels_8_216
de Vries_2017_Genome.Biol_18_28
Wu_2017_Appl.Microbiol.Biotechnol_101_2603
Urquhart_2018_Front.Microbiol_9_3058
Riley_2016_Proc.Natl.Acad.Sci.U.S.A_113_9882
Koike_2013_Ind.Biotechnol_9_352
Kjaerbolling_2018_Proc.Natl.Acad.Sci.U.S.A_115_E753
Knapp_2018_Sci.Rep_8_6321
Lopez_2018_Front.Microbiol_9_276
Martino_2018_New.Phytol_217_1213
Murat_2018_Nat.Ecol.Evol_2_1956
Grum-Grzhimaylo_2018_Mol.Ecol_27_4808
Miyauchi_2018_Biotechnol.Biofuels_11_201
Park_2019_Appl.Microbiol.Biotechnol_103_8145
Varga_2019_Nat.Ecol.Evol_3_668
Wu_2018_Genome.Biol.Evol_10_3250
Blanc-Mathieu_2017_Sci.Adv_3_e1700239
Mondo_2019_Biotechnol.Biofuels_12_229
Raudabaugh_2018_Mycol.Prog_17_191
Chen_2018_New.Phytol_220_1161
Freyria_2022_Commun.Biol_5_500
Sipos_2017_Nat.Ecol.Evol_1_1931

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