MELO3C017639 (gene) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.AGATCATCGCAGATGGCATTGATCCAAAGCAGCAAACATTCTTCTTCTGGTAAGTCATGTGCACTCTGAAATTTTAGATATCATTATAAATTTGTAAGTTATGATGCTTAACCTCTTGATGTTAATGAGCAACTTTTATCGTCTAATATGTTTTTTCAGCTCAAGGCCTCTCAGACGCAAAAAAGCTAAGAGCGCAGTTCAAAGTGCAAAGCACATACATCCTTTTGTTGTAGAGTCTGAATATTCAGACAAGGCGGATGGTATGTGCTTCTTCACTATTTTTTCTGCTCCGTGATATTTTCTTCTGTACTACTTTTTGAGATTTGTAGGCTTATTCTGTGTACCACTATTTTTGGTTGACTGTGGGGCTGTAATTTTTTTTTGGATTGCTGTCTTGGTGGAGCCTGTTAGATACCAAAATTAGTATAGGGTTAGGGAGTATAAGGGTAATTAGATAATTAGGTGGTTACTAAGAGTAGTGGTTATGGATAGGAGGTTGGTGAGTGAAGAAAGGGGGAGTTGTTGAGTAGTTAGGTCTTGAGTAGTATTCTCAAGAGTGGGATCTCAAGTTCCATAAACATGTTCACATGATGAAAAGGAACTACCTGGGAGCCCTCCACCCTCGCTTGGTTTTTCTCCGCTGAGCATTGTCTTCTTTACAAAATAGGATCCAAATTTGCGGATGTTTTTCTCAAGTTCCATAAACTTGGATATTTTTCCTCTGCTGGTGTTAGATATTTCTTTATAACTTTCTTCCTCTATTTTTCATCATGTGAAAATGCTTCTCTTCGTCCCTCCAACTTCAATAAGATCTCAATCTCTCTTCAACTGCCTCTACTATTTGAAGAGAGATCGAGATCTTATTGAAGTTTGGGTGGACGAAGAGACAAGCATTGTCATATGATGAAAAAGAAAACCAAGCGTGACAACAACTGAGATGATGAATGGGTTGGTGAAAAGTGGCTGAGAAGAAACTATAGAGGAAGGTCGACGACAATTGCTTGTGAGGTCTGAAATGAAGACTCGAGTGAAGAAAAAGTTGTTGCTCAAAGAAGCAGAAGATGGCTGGTTGTGATGGAGAAAGAAGACGTTGGCAGTTCAATGGTTAGGATGGCGAGGAGTTCTGCATCTTCTGGGGAATGAAACCGGTGGGAGAAGCAGGAGATGGAGTCAATTACATGGCAGAAATTTATACGGAACAGGGTTAGGGCAAAAAAACAAACACTAAAGTCTTGGGTTTTACCATTTCGAATGGGTTTCAGCTTATTCTTGTTGGTGATATATAATTAAAATATGCCTTCAACCACCAGCTTAAGCTTTTGGGTGAATTGGCAGTTTAATATGGTATCAGAGCTTAGGTTAGGTCCTGTGTTCAAGCCCCTGCATTGTCGTTTCCTCCCCATTTAAAATTAATTTCCACTTGTTGGGTCTTTCAAAATTTATTTCAGCCCACAAGTGAGGTAAAATTGATTTCCACTTGTTGGGCCTTTCAAATATTTCAAGCCCACAAGTGAGAGGGAGTGTTAGTGATATATAATTAAAATCTGCCTTCAACCATGAGTTTAAGCTTTTGGTGAATTGGCAGTTTAATAATTCAAAATAAAACATTGGAGGCCCAGCATTTTGTAGATGAAGAGGATGGTGAGTTCCAAAAATGGAAGGGAAGAAAAATGTGCCTGTAGGTGGGTCTAGGGAATGAAACCGGTAATGATATGATTTTGGGCTTGATTATGGGTTTTTACTGTTGGAAGATCATGGCTGTTTTTAAGGAGGGTAAAGGTGTGCTGCCCAAAATAACAGGAGTTTGGCACAACAATTTGATTATGGGCCTAGCACATTAAGAAGAAGAGGTTGAATATTAAACACCTGGGGATATGCAAAGGGTTAACTATGGCGACGTGTTTGGAAAAGGGAAGATTCAAGAATATTGGGCTGCTTTATGGGCTGAAGGAAGATGATTCTGGACTATGGGCTGAAGTCAATGGAACTAATTGGAGCCAAGAGCTTTCCAAAGCTGAAGGGAAGGATTTCTTTTCCAACATTGAAGAGCAGACTGCTGGGGATTGTTAATAGAGAAAAAAAAGTTGCCCAATTTTGTGATCATGTTTGTAAGCACTTGAGGACAAGGTGCTTTGAAGGGCGGGGTAGTGTTAGATACCAAGATTAGTATAGGGTTAGGGGTATACGGGTAATTAGATAATTAGGCGGTTACTATGAGTAGTGGTTACAAAATAGGAGGTTGGTGAGTGAAGAAAGAGGGAGTTTCTGAATAGTTAGGTCTTGAGTAGTATTCTCAACAGAGGGGTCCCAAGTACCATAAACTGGGATCATATTGTAGTTCTTCGTTAACTCTCAATATATTTCTCAATATCTGAAATATCGATTCTTGTTAGAAAGTATTCTAACAGAGCCATCATATTCGATTTTGTAAAATTGATTTGGCAATTATTTGTACCAATTGAAGGTGGGTTATATGACCTACTTACCTTGTCTTTAATTTTTGTTGCAATCACACTATTACCATCAAGAGAAAACTTTCTGTGATGGAGCACAGAATCCTCTTTACATTCCCTTAGTTGGTTTGGCTTTTAATCCTGTCTACCCTAATAGCCATCTTCATATGCAAAAGCAGTGATCACCCTAGTCAACCATGTCTTTCAAATGGTAGGAAAATCGTTTGTTTGAAGCGTCTCCTGGTAGGGGATGCTCCGTCCTTGAGTTTTGCTGATAGTTTATAGTTTAAGGAAATTTTGTTAGAAGTAATCAGGGCTGTCCAAGGATTTCTTAGAAAAAAACTTCGGAGATTGCCACCTTTGTAACTTCCTCTCGAAACTCCGCACACATTTTGTTTTATCGTTTTTACTTGGCTCTTGAGCTACTCTCTTTTGTTTACTTTCATCGTTTCAATAAATAGTTCCTTGCTTCCTGTTATTAAAACCTTAATTCAGAGAAAATAATTCTTTTTGTAGGCTAAATAATAGAAAATACTATTGAATTTTGTACCTCATTTCAATAATACCCTTAAACTTAAAAAAGTCCTATTAATGGCCCCATCCTTTCAACAAATAAAAATACGCTTGCCGTTTAGTATGTGGATAGAAAAAGTTTATCAAACTCTTTCCCTCTTCCATTTCCCGACTTTCCTCTCTCATTTTTTACAATCCATTGCCTAGAACTCTCTATTTTTTCATTTTTTCCCTCTCTTCTTGAATACCCTCTTAATCTTCTTCTTCGATTCTCCAATCTCTAAAGCTATCCCTTCTTCCCCTCTTCCAATTTCAGTTCCAAATCCCTCTGCTGTATTGAGAGGCTCCAGATTGCATTTAAAATTAGTCGATGCATGTGCAGAACGTGTACCATTTATAAAAGATACTTTAAGATCTGATTAGATTGATAGTTTGCCTGGGTGTGTGCGATTATGTGAGACATTTGGGGGGTGAGGAATGATTGGGTGTCCTCTCCCTAGGGAGAGGACACATGGTGAGATTTCATCTTTGGTTAGGTTTCAGGTGTCTCTTTGGGCTTTGATTTCAAAGAGATTTTATAATTATTTTATAGGAAACGTTTTACTTATTTGGTTCCCTTTCTTTTAATGGGGTTGCTTCTTTGGACTGGGGTTTTTTTGTATGCCCTTGTATTCTTTCATTTTTTCTCAATTAAAGGCGGTGTTTCATCATAAAAAAATATTATTTTCCCACGGACACAAAAATTTCAATGAAAAATGACTTCAAATTTCACATGCTAACAAACGTGAGTTGATCTCATTGACTATAGATAACACAACACTAGCATGATACCCAACAAATAAGATTATTAACATATAGTTCTCGCATGTAAAACAACCTAGTTCATCATTCCATGGTATCAAATTCGTATACCAAGTTCTAAATTTAATAATACTTCACATCTTCACAAACCACAGGACCAGAATAGCCCAGACTACAGTCCATGAGGGAAATAAGAACGAGGGTTTTGGAAGTGAAATTGGAAAAGAATGGAAGTAGTTTAAGAGACTGGGGTTATGGAAAGCTAAACAAGCGTAGAGTAGCATTAACTGACAACTCCATTGTGGAGCAGGCTTTGGGTAAATACGGCATTATCTGTGTGGAAGATATCTGCACTTGATCATGACTGTCGGACCTCATTTTAAAGAGACAAATAACTTCCTATGGGCATTTAAGTTGAAGGCACCTTTAAGGAATGGATTGGAAAAGAAGAGGAATTACTATGTTGAACGGGGAGATGCAGGTAATCGTGAGAATTATATCAATGAGCTTATCAGGAAATGAACTAGATGAGGAACAAGTTTGACGTTGTTGATTTTTGTTTTGTTAAATCATTGGAAGTATAAGTGTTAGACCATAGTTTGAAGCAGATGAGAGAGAGAAGAGAGAGAGAAGAGAAGAGGGAAATGATGGGGTAAGGATAAATGTTTTCCATCCACCTACTTAGTAGTAAGGGTATTTTTAAAAAAGTTAGAATGCTCAACAGTATTAATGCAACTTTTATAGTTCAGTTGTATTATTGAAATGATGTACATAGATATGGAGAATGTTCTGGAGCTTAGCCTAATATATATGCATCTTTGGAGCTCACTAAACCTGAGCCTTGACTTTTGTATCTAACTCCTTTAAGGTTCTGATTTGAGGATGGTGAGACCAGATTTACACATACCTAAATGGATGTTCTCTTGGCAGGATAAATTGCTTAATTCTTTTTGTTTGAAACTGTCGTTGAGATCTTTTTTCGAATAGTACCCTCTGACAATTCTATCTCAAGTCTGAAATATATTGTATTGGTTTAGATGCCAATGATATTGAAAAAGGGCTTTGGAGGGAGTTTCTTAGCTTGGCCGCCTCTGGCACTTGATTTTATGTAGTTCCTTCTTGTACAGATATCATTATTGAGCAACCACCTTCTTGTTTCAGATGCTCAATCTAGCAAAGGTGAAAAGGCTCAAATATCAGGTGAGAATGCCACCATCGAATGCTGGTATCCACGTTTTAATGTTTCTAGATTATGTCACATATAGCATTAATATTGCAGGTTTTTTAAGTACCACTCTGCATTCATCCTATGATCCTGACTGCGTACAATCAATATCAGGGCACAATGTCGCACCAACTATGCTTCAATTTGCCAAGACAAGAAAATTATCGATTGAACGTGCAGACCCGAGACAGTATGCTTTACATGTTTCTTTCTGCCACTGTAGATATTTTGTCTTTATGCAAGTTCTATTAGGATTCATATGAATTCATGTTGAGTTTCTATTGTGTGAAAGCATCATAGACTATCACTTCCCTTTTAGCCGGTGCACTTTAGTTGAAATTTCATAACCTACAACCTTTTTTCCCCTAAAAAAATGTCTCCGATGAAGAAATATTAAACTAAGAGAATAATTACAAAAAGACTTTGTAACAGAGACCCCCAAAGAAACATATAATCCAGCGAGGGGCAAAATGTCAGAAGGATTAAGCTTCTTCTCTCTAAAGATTCTATTATGCCTCTCTCCTTGACCCCACAAAATCAAAGAGAAAAGAAAAAAGAAACGGAAAGAAAAGAAAAACACTCCTTTCCTCAAAGGGAGTGTGAGTGAGGAACTTCTCGATCATCTCTATACAACCACTATGTGTAGCCAAATGAATACCAAATTATTGGAACCCAATCTCCAACACAGATTCACAATGAAGATGAATTCAAATCTTTATTGATGATAATAATGTAGGGATTACAATGAAAGGAAAATCGAATTGAATGATACTTTCAATCTGATGAAGAAGACTCTCCAAATCTGCCACCCTATCTCTCAAGGATACAACAGAAATGATTTTACCAGAAAAGCTAACTTTCCCTCCCTTTATTTTTATTTATAATCTTCCCTCTACCCAATGGTCCCCCCTTCAGTTACTCTCCTTCACCGCCTTATTCTTTTCTCTTCTCCTGTATTTGATGAATTATTAGTGGTCTATCACAAACTTATCAAAACAAACAAGTCAACACAAACATGGGCCTAGTCCCCAAAGGATATAATCAAGGTACTTAATAATCATTTTACACAAAATGCAACACCATGACCTCATCAAATTAGGCATCTTCCTTGACAACGTGTCAAAGGTGAACCCTACCATGGGGAAACCAGTTAGACAAAAAATTTCACCTTGAAAATTTTCATCCTCCACATCAAGGCAAAAATTTGACTCGGCCAGGGGATAAGAGTTGATAAAGAGAAATATAACGGGGAGGTTAAACTTTGATTCAACGAGGAAATCTTGCGAAATGAAATCGAATGTATAATTTTAAAATGATTTGGAATTTACTTATTTTATCGAGTTTCTTTTCGTTCTATTGGGTTTTTGGATTGAGAGAAATGATAGAGGTTTTAAAGAGGTCGAGAGAGATTGGGTGAAGAAGGTATCAGAGCCCGAGGTCATGAGGTTTAATGCCACCTTGTGAGATGGGGAAGGGGGGGGGTGTGCTCTTGTTATATTTCATCTTTCTTTATCAAGCTCAATTTCTTGCCAAAGATTAGTGGGTGGGGGATAGACCCTCTAGCTCGATTTTTTAGTTTTGTGCATCTTCTTTGAAGGTAGTAAAATCTTGTTAATGAATGCAGTAAAACCATGTAATGACCTGAGTTTAGGAGCGGACATGAATTAACCGAGTCACATTCTTATGAGAGGAATCTTAAGGATATGAAAGTATGGTTAAGAAAGACTTAGGTTACTACCTATACCAACAAAGTGTAACCTTTTTTTGCTAGCTCAATCATAAAAACTTCATAGTTAAGCATGCTTAGCTTAGAGCAATCTTACGTTGGGTGACCTGAGAATTTTTCTAGGAAGCATGTGAATGAGAACAAAGCATGCTGAGGGATTGGTGTTCGTTTTTAGGGACAATTTTCACTCTTAGAAACATTCAAGACAAAAAAATCATGGAGCCACTTGTTGATGACCGAACTTCATGGGGATTGCTCGTGTTGTGCATGAACGTGATTGAATGGATTGTTCTATCTAGAACAATGTTAGAGATGCTATTATTTATAGTACTCAGTTTTGTTAAAACATTAGATCCTGCTAGTAAGAAGTTTTACTGATTGGTACAACCATCCCATATTATGCTAATTCTTTGCTCTGTATGCCCAAGAACAAAAAGGATCATTCAAGACAAGCAAAGATGACATAGCCGGGTCGCAAGGGAATGCCCGAGCCATCAATTGCTGCATTTGAATTCCAAGTCTTGGGCCTTGGGTGTTGTAAACTATTAATTGGAACTTATGACTCAAGAGAAGTAATCCCCTAGTGGAGATACTGGCTGGAAACAAAAATTTGTAGTATAATAGATCTCGACCTTTGAGTAGAGATGCTTGAATGACTCTTAAAGTAGGATAATTGATCCATTTCCTTTCTAGTTTTATTTTTGGCTTGACATTTAGGTTGCTCTTGATCAGCCCTTATTCTCATGAGTTCTGACATCAATTTCTGTTGCTTATTAAGAGCATTATTATCCCATGAAGTTGTTGATGATTGGAATTGATTGTACTTCTGTTTAGAACAACTATTTTGATTAGCTTATTTTGTTAGAACTTGTTCTGTAGTTATAAGATATCAACTTTGATATGATTTTTATCGGTTTGTTTTGGTTAGCTGTACCCTCTTAAGGAAGAGACAGTTCTTTCATTCTCACAGAGCTCAGGTGAATTCCCTTTTTAATTTTTTATCGATCTATAAAATTTTCATGGTGCATATAGATGGGAAGTATTTGTTCATCTGTCTTTTGTGTTACTTTCTCCCTCCACTTTTTGCAATCCTTTGTTAGTTCGTACCTGTGATTCTGATGATAGATACGCTTAAAAAATTCTAGAAATTATCCTAGAGAATATCTGAAGCCTATTCCTTATTTTATCTTAAATACTTTATTCTTGAATCCTTTAGCGACTATTATGGTCAAGTTTGCTCGGTGAAATTATAAAAATGAAGTTGAACTTGCATTGGAGTTCACCTCAATCCTTTCATCTGAGGAGAAGTTTGGTCAGACTGTGGGGTTCGAATAGAAGTCTTCTGTGCTAGCATGGCTTGGGCGATCCATCCTTGTTGTTCTTGCGTGTGTGCGTGTTTTTGTGGAATAAGAAACAAAGGACAACTCCTCTTGGTGCGTTACAAAAGAGCTCCCAAATTTGATATTAAATAAGCTAGATCTTTATATAAACATGTTGATATTTACACCGAAAAAATGCTGGAGAAAAATTCTATCCACAAAACAATCTAGCGGGAAAGTACCTCTGAAAATGCGATCATTTCTTTTGCCTCAAAGTATCCCAAAAATGCTTGAATGAGGGCTGACCATAGAACAAGTGCTATTGGGCCGGGTGCTTGGCTACTGAGCTAATAAGACACGGCTGAATATGCTAAAACTAAGGATTATGGGAACAAAATAAGAAAGAGTTCATCTTATCCACTTGGTTCAATCGGTTACCCATGAGATATTCATTTCTAGTTCTCTGTGTGTAGCTGCTTTTGAAGCAAGAAGCAGTGCATTCCCCCTTTTTTAAACGCATATGAAGAAAAATATCAAATTTATTTTATTTTATGTTATTTATAGTAGAAATAAGGTGATAGTGAAGAATTTAAGAAGTGAAGGGTTTCCTAAGAATAATGTGGTTAATAGATGGGCTTTAGTGCAACATACTTATTTTTTGCATTACTGGATCCCATAGGATGGTGAGATGTATCAGGACCCATAACCCATTGGCCTTTGTGTTGACTAATGATTTAGCAATTTTAGCCTCTTGCAAACCAAGTGTCAGTGTAAGCTACCATTCAAATGGAGGATGAGTGATTGGAACTATCGGACCTTCTCTGGATTATAAGCTTTGTCCTGTTCATTATTGCACATGCCACCTGGGTATGACTGGCATGACGACTTGTTCAATATTCTTTAATCACAAAAAATTCCTTAGCACTCTTTTATTTATTGTACCTTATGGTACTATGTTATATTACAGATCTAGGCCTTAGATAACCTATCTCCAGATTTTAATATCTACATAACATTCTTTACTGTCTAGTTCGGTAAATTTTGGCTTGTTTCGGAAAAGTTTGGTACTTTTTGCAGTCTCCTTAAGTAAGTCATGAGTCGATGGGATTCTTGCAGAGGTAGGTACTGCTAATTCTATGAGTTAGCATGTCATGTGTTGTTGTAATCATTTGGAATTCTTTTCTTTTAGATCTTTTGTTTTGTTATATTGTTCAATGCATATCTGAGTCTTTGTTGTCTAATTATGTTTTTTTCCAATATTTAATGACCTACTTGAAGCCGATGGCATTGGAACAAGTGTTATCTGATCGAGATAGCGAAGATGAAGTTGATGATGATGTTGCAGATCTAGAAGATAGGAGGGTAAGGTTTGAAGTTTTGATGATATCTGATAGCTAAGAGGGGTTTGTTACCTTGTAATGGTGTGATTCTCTCTCATGTGGTCCTCTTTTTTATTACTTTCTTTTATTCTAGTAGTGTTTTACTCAATGATAGTATTACACTAGATGTCAAGGGTATTTGTACATGGTCTAGATTCTTACATTTTCCTGGGAAGTCCTTTATGCTGTGTTTTATGTTTCCTTAATTCATTGGTAATGGATAGTCGAGATTATATGGACGTGTTGAAATTAACTCGAGACCGGCTGTGGGTCAATATGGAGGGAGTTGTGGAGAAGGGCAAGGCCAATAGTGCAAGGGTGACAATGTGATCGTCTGAAGCAGTAGTCCTGTGTGTTTTGTTGTTTTCGGTTTTGGGGGATCATTTATTGTCGTCTTGCTTGATTTTAGAAGTAAAATCCGTTTTAATTTCACAAGACCCCTGCCATTGATCTCTTCCTGACTTTCTGGAGAGATTATAAAATGGATTTTGATTCCTTGTCCTAGTCATATGTAGAAAACATAAATTGATTTTGCAATCATGTAGATGCTCGATGATTTTGTCGACGTAACCAGGGATGAGAAGCGGATGATGCATATGTGGAATTCATTTGTCAGGAAGCAAAGGTGATTAATTCAATGGACACTTTTCTCGGCTTTTATTGTCAGGATATTTTTATTTTTAAATAAAAATAACAGTTACTATCGTTATTTTTATTTTGTTTTTTTTTCTGCATGTGTTGTTATGTTTGTTTCATTTCTGTCGGTTTTTTTTTTTTGGTTTCATTTTGTTGGTTGTCCTTGTTGGCTGTTTTGGATTTGGTTGGCGTTTGTGTTTTGTTCTTGTTTCTTAATATTGTACTATGAGCATTAGTCTCTTTTCATTTGACAATGAAGAGGTCTCTTTTCTTCTAAAAAAGATAAAAAAAAAAGTAAGGTTCAGACTCCAGATCTACATTAAAATTTGAAAGGAGGCTTGCAACATATAATTTTTCATGTTTTTTTTTCTAGGAATATTTAAGAACTATGGTGGATCTATGTGCTATACGTGGATATATAGTACTGTTGTTTGACTAATTTTCAAACATGGTGTTATCTGAACATGATGTTATCCGTTTATAGGGTGCTGGCGGATGGCCATATCCCCTGGGCTTGTGAGGCATTTTCACAATTACATGGACCAAACCTTGTCAAAACTCCGGCTCTACTATGGTAGTTTCTCATCTCTTTATGGTGTTGTGAACCACAAATTCTTCAACTTCTTTCTCAATCTTTCCATACAAAAAATCCTTTATGAACATGAATACTGATTCACGAAGGTTACTGTGCGTAGAGATGTTACCATACTGCCTTTTCTCCTGTCCTGCTAGGAGAATGTTGTGCATTGCACAATCCCATCAACTAACTAAATTATTATACGAGCATATGACATTGTGTGAATCCTATAACAACATCCTCCTCTGTTATTGTATGAAATGGAGAATAATTTGAGATACTTAAATCCTGTTTTCATTTAAACTCTATATCTGACAAACCCGTTGATGCATTGACGTGATCTTTTATGTTTGAACATACTTTTGTGGGGTAATTGGCAGGTGCTGGAGATTGTTTATGATCAAGTTGTGGAACCACGGTCTACTTGATGCAAATTCCATGAACAGTTGTAACATTATTCTTGAAAGAATACATAGTGAAGCTGCAGATCCTAAAAGCTGATCTAAGGAATCCAAATTTATTCATTTCCACTCTGAAAATCAAGATTATTGGTGAAAAGAAAAGGTATTTGTTCACTGCCATTGTCTTATGTGTTGTATTTCTATGCTACAGGACCGTTTTGTCTATTTATTTATTTTTATTATCATTGTTTCTTTTTATAAAATGTAGAGATATCGTGTACTTTGGATTTGGAAACTCCCAGAGAATGAAATTAGAATACAAAAGATTTGGTCTCATGCACCCAATTTTGCTTGGTATGAGATTTCCCAGCTGCA AGATCATCGCAGATGGCATTGATCCAAAGCAGCAAACATTCTTCTTCTGCTCAAGGCCTCTCAGACGCAAAAAAGCTAAGAGCGCAGTTCAAAGTGCAAAGCACATACATCCTTTTGTTGTAGAGTCTGAATATTCAGACAAGGCGGATGATGCTCAATCTAGCAAAGGTGAAAAGGCTCAAATATCAGGGCACAATGTCGCACCAACTATGCTTCAATTTGCCAAGACAAGAAAATTATCGATTGAACGTGCAGACCCGAGACACTGTACCCTCTTAAGGAAGAGACAGTTCTTTCATTCTCACAGAGCTCAGCCGATGGCATTGGAACAAGTGTTATCTGATCGAGATAGCGAAGATGAAGTTGATGATGATGTTGCAGATCTAGAAGATAGGAGGATGCTCGATGATTTTGTCGACGTAACCAGGGATGAGAAGCGGATGATGCATATGTGGAATTCATTTGTCAGGAAGCAAAGGGTGCTGGCGGATGGCCATATCCCCTGGGCTTGTGAGGCATTTTCACAATTACATGGACCAAACCTTGTCAAAACTCCGGCTCTACTATGGTGCTGGAGATTGTTTATGATCAAGTTGTGGAACCACGGTCTACTTGATGCAAATTCCATGAACAGTTGTAACATTATTCTTGAAAGAATACATAGTGAAGCTGCAGATCCTAAAAGCTGATCTAAGGAATCCAAATTTATTCATTTCCACTCTGAAAATCAAGATTATTGGTGAAAAGAAAAGGTATTTGTTCACTGCCATTGTCTTATGTGTTGTATTTCTATGCTACAGGACCGTTTTGTCTATTTATTTATTTTTATTATCATTGTTTCTTTTTATAAAATGTAGAGATATCGTGTACTTTGGATTTGGAAACTCCCAGAGAATGAAATTAGAATACAAAAGATTTGGTCTCATGCACCCAATTTTGCTTGGTATGAGATTTCCCAGCTGCA ATGCTTCAATTTGCCAAGACAAGAAAATTATCGATTGAACGTGCAGACCCGAGACACTGTACCCTCTTAAGGAAGAGACAGTTCTTTCATTCTCACAGAGCTCAGCCGATGGCATTGGAACAAGTGTTATCTGATCGAGATAGCGAAGATGAAGTTGATGATGATGTTGCAGATCTAGAAGATAGGAGGATGCTCGATGATTTTGTCGACGTAACCAGGGATGAGAAGCGGATGATGCATATGTGGAATTCATTTGTCAGGAAGCAAAGGGTGCTGGCGGATGGCCATATCCCCTGGGCTTGTGAGGCATTTTCACAATTACATGGACCAAACCTTGTCAAAACTCCGGCTCTACTATGGTGCTGGAGATTGTTTATGATCAAGTTGTGGAACCACGGTCTACTTGATGCAAATTCCATGAACAGTTGTAACATTATTCTTGAAAGAATACATAGTGAAGCTGCAGATCCTAAAAGCTGA MLQFAKTRKLSIERADPRHCTLLRKRQFFHSHRAQPMALEQVLSDRDSEDEVDDDVADLEDRRMLDDFVDVTRDEKRMMHMWNSFVRKQRVLADGHIPWACEAFSQLHGPNLVKTPALLWCWRLFMIKLWNHGLLDANSMNSCNIILERIHSEAADPKS*
BLAST of MELO3C017639 vs. Swiss-Prot
Match: EMF2_ARATH (Polycomb group protein EMBRYONIC FLOWER 2 OS=Arabidopsis thaliana GN=EMF2 PE=1 SV=2) HSP 1 Score: 273.5 bits (698), Expect = 1.5e-72 Identity = 125/150 (83.33%), Postives = 140/150 (93.33%), Query Frame = 1
BLAST of MELO3C017639 vs. Swiss-Prot
Match: VRN2_ARATH (Polycomb group protein VERNALIZATION 2 OS=Arabidopsis thaliana GN=VRN2 PE=1 SV=2) HSP 1 Score: 223.4 bits (568), Expect = 1.8e-57 Identity = 102/143 (71.33%), Postives = 119/143 (83.22%), Query Frame = 1
BLAST of MELO3C017639 vs. Swiss-Prot
Match: FIS2L_ARATH (Polycomb group protein FERTILIZATION-INDEPENDENT SEED 2 OS=Arabidopsis thaliana GN=FIS2 PE=1 SV=1) HSP 1 Score: 154.5 bits (389), Expect = 1.0e-36 Identity = 69/150 (46.00%), Postives = 98/150 (65.33%), Query Frame = 1
BLAST of MELO3C017639 vs. Swiss-Prot
Match: FIS2C_ARATH (Polycomb group protein FERTILIZATION-INDEPENDENT SEED 2 OS=Arabidopsis thaliana GN=FIS2 PE=2 SV=1) HSP 1 Score: 152.9 bits (385), Expect = 2.9e-36 Identity = 68/150 (45.33%), Postives = 98/150 (65.33%), Query Frame = 1
BLAST of MELO3C017639 vs. Swiss-Prot
Match: SUZ12_XENTR (Polycomb protein suz12 OS=Xenopus tropicalis GN=suz12 PE=2 SV=1) HSP 1 Score: 55.8 bits (133), Expect = 4.9e-07 Identity = 29/89 (32.58%), Postives = 44/89 (49.44%), Query Frame = 1
BLAST of MELO3C017639 vs. TrEMBL
Match: A0A0A0KZ77_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_4G024050 PE=4 SV=1) HSP 1 Score: 331.6 bits (849), Expect = 5.1e-88 Identity = 158/159 (99.37%), Postives = 158/159 (99.37%), Query Frame = 1
BLAST of MELO3C017639 vs. TrEMBL
Match: M5X9X5_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa002685mg PE=4 SV=1) HSP 1 Score: 290.4 bits (742), Expect = 1.3e-75 Identity = 133/159 (83.65%), Postives = 149/159 (93.71%), Query Frame = 1
BLAST of MELO3C017639 vs. TrEMBL
Match: A0A0B5ABX0_9ROSI (Embryonic flower 2a OS=Dimocarpus longan PE=2 SV=1) HSP 1 Score: 288.1 bits (736), Expect = 6.5e-75 Identity = 131/157 (83.44%), Postives = 151/157 (96.18%), Query Frame = 1
BLAST of MELO3C017639 vs. TrEMBL
Match: A0A059DKE9_EUCGR (Uncharacterized protein OS=Eucalyptus grandis GN=EUGRSUZ_A02925 PE=4 SV=1) HSP 1 Score: 281.2 bits (718), Expect = 8.0e-73 Identity = 127/157 (80.89%), Postives = 148/157 (94.27%), Query Frame = 1
BLAST of MELO3C017639 vs. TrEMBL
Match: A0A068UA10_COFCA (Uncharacterized protein OS=Coffea canephora GN=GSCOC_T00020401001 PE=4 SV=1) HSP 1 Score: 281.2 bits (718), Expect = 8.0e-73 Identity = 130/157 (82.80%), Postives = 147/157 (93.63%), Query Frame = 1
BLAST of MELO3C017639 vs. TAIR10
Match: AT5G51230.1 (AT5G51230.1 VEFS-Box of polycomb protein) HSP 1 Score: 273.5 bits (698), Expect = 8.4e-74 Identity = 125/150 (83.33%), Postives = 140/150 (93.33%), Query Frame = 1
BLAST of MELO3C017639 vs. TAIR10
Match: AT4G16845.1 (AT4G16845.1 VEFS-Box of polycomb protein) HSP 1 Score: 223.4 bits (568), Expect = 1.0e-58 Identity = 102/143 (71.33%), Postives = 119/143 (83.22%), Query Frame = 1
BLAST of MELO3C017639 vs. TAIR10
Match: AT2G35670.1 (AT2G35670.1 VEFS-Box of polycomb protein) HSP 1 Score: 152.9 bits (385), Expect = 1.7e-37 Identity = 68/150 (45.33%), Postives = 98/150 (65.33%), Query Frame = 1
BLAST of MELO3C017639 vs. TAIR10
Match: AT4G16810.1 (AT4G16810.1 VEFS-Box of polycomb protein) HSP 1 Score: 144.8 bits (364), Expect = 4.5e-35 Identity = 71/132 (53.79%), Postives = 92/132 (69.70%), Query Frame = 1
BLAST of MELO3C017639 vs. NCBI nr
Match: gi|659107783|ref|XP_008453856.1| (PREDICTED: polycomb group protein EMBRYONIC FLOWER 2 isoform X1 [Cucumis melo]) HSP 1 Score: 334.0 bits (855), Expect = 1.5e-88 Identity = 159/159 (100.00%), Postives = 159/159 (100.00%), Query Frame = 1
BLAST of MELO3C017639 vs. NCBI nr
Match: gi|659107788|ref|XP_008453858.1| (PREDICTED: polycomb group protein EMBRYONIC FLOWER 2 isoform X2 [Cucumis melo]) HSP 1 Score: 334.0 bits (855), Expect = 1.5e-88 Identity = 159/159 (100.00%), Postives = 159/159 (100.00%), Query Frame = 1
BLAST of MELO3C017639 vs. NCBI nr
Match: gi|659107790|ref|XP_008453859.1| (PREDICTED: polycomb group protein EMBRYONIC FLOWER 2 isoform X3 [Cucumis melo]) HSP 1 Score: 334.0 bits (855), Expect = 1.5e-88 Identity = 159/159 (100.00%), Postives = 159/159 (100.00%), Query Frame = 1
BLAST of MELO3C017639 vs. NCBI nr
Match: gi|659107792|ref|XP_008453861.1| (PREDICTED: polycomb group protein EMBRYONIC FLOWER 2 isoform X4 [Cucumis melo]) HSP 1 Score: 334.0 bits (855), Expect = 1.5e-88 Identity = 159/159 (100.00%), Postives = 159/159 (100.00%), Query Frame = 1
BLAST of MELO3C017639 vs. NCBI nr
Match: gi|659107794|ref|XP_008453862.1| (PREDICTED: polycomb group protein EMBRYONIC FLOWER 2 isoform X5 [Cucumis melo]) HSP 1 Score: 334.0 bits (855), Expect = 1.5e-88 Identity = 159/159 (100.00%), Postives = 159/159 (100.00%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
This gene is associated with the following unigenes:
The following mRNA feature(s) are a part of this gene:
The following transcribed_cluster feature(s) are associated with this gene:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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