Madof63 forward 840 777 258 2828480

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MaDof63 GSMUA_Achr10P20450_001 chr10:26429380..26430219 forward 840 777 258 28284.80 7.07 35-93 1 Nucleus MaDof64 GSMUA_Achr10P27560_001 chr10:30676190..30676876 reverse 687 687 228 24781.50 7.54 25-83 0 Nucleus MaDof65 GSMUA_Achr11P03360_001 chr11:2438953..2439972 forward 1020 885 294 31463.40 8.82 66-124 2 Nucleus MaDof66 GSMUA_Achr11P09150_001 chr11:7071572..7072496 forward 925 729 242 26754.00 9.46 42-100 1 Nucleus MaDof67 GSMUA_Achr11P10790_001 chr11:8546282..8547172 reverse 891 891 296 32020.90 6.70 28-86 0 Nucleus MaDof68 GSMUA_Achr11P15580_001 chr11:17278080..17281065 reverse 2986 1401 466 51197.50 7.84 100-158 4 Nucleus MaDof69 GSMUA_Achr11P21760_001 chr11:22238338..22239156 forward 819 819 272 29707.40 6.33 65-123 0 Nucleus Page 26 of 38 Genome Downloaded from by San Diego (UCSD) on 09/16/16 nal use only. This Just-IN manuscript is the accepted manuscript prior to copy editing and page composition. It may differ from the final official version o
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27 MaDof70 GSMUA_Achr11P23850_001 chr11:23612441..23613238 reverse 798 798 265 28800.00 7.51 31-89 0 Nucleus MaDof71 GSMUA_Achr11P24420_001 chr11:23974954..23976165 reverse 1212 1080 359 37160.50 9.42 87-145 1 Nucleus MaDof72 GSMUA_Achr11P24600_001 chr11:24072118..24072801 forward 684 684 227 24095.80 4.98 36-94 0 Nucleus MaDof73 GSMUA_Achr11P25090_001 chr11:24332306..24335038 forward 2733 1266 421 46081.60 7.14 94-152 3 Nucleus MaDof74 GSMUA_AchrUn_randomP13230_001 chrUn_random:63755836..63756853 forward 1018 840 279 29919.40 8.75 38-96 0 Nucleus Page 27 of 38 Genome Downloaded from by San Diego (UCSD) on 09/16/16 nal use only. This Just-IN manuscript is the accepted manuscript prior to copy editing and page composition. It may differ from the final official version o
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28 Fig.1 Chromosomal locations of banana Dof genes. The size of a chromosome is indicated by its relative length. To simplify the presentation, we renamed the putative MaDof genes from MaDof1 to MaDof73 based on their order on the chromosomes. Fig.2 Gene structure of 74 MaDof genes in banana. Untranslated5’ and 3’ regions, exons and introns are indicated by bule, green and gray colour, respectively. The scale bar represents 1000bp. Fig.3 Phylogenetic tree representing relationships among Dof domains of Banana, Arabidopsis and Rice. The NJ tree includes 74 Dof proteins from banana, 30 from oryza sativa and 36 from Arabidopsis thaliana. The differents colour indicate different MaDof subgroups. The different shapes indicate different species, triangle represents Dof protein from rice, rhombus represents Dof protein from Arabidopsis and round represents Dof protein from banana. Fig.4 Conserved motif analysis of Dof proteins in banana. Multiple sequence alignments of the Zf-Dof domains is shown. The identical amino acid, conserved amino acid and blocks of similar amino acid residues are shaded in black, charcoal gray and gray, respectively. Fig.5 The conserved domains in the MaDof proteins. Logos of the protein alignment of the Dof domain is shown. The x-axis represents the conserved sequences of the domain. Conservation of each residue across all proteins is indicated by the height of each letter. The y-axis is a scale of the relative entropy, which reflects the conservation rate of each amino acid.
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