MELO3C018180 (gene) Melon (DHL92) v4
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TCTACTTTCCATTCCAATATCTCCAACCCATTACAATGATCCAATATCTCTCCTCAACTGTTGGATGCTTTTGATTTGGGCTGCCAAACTGAAAGAACGGGAAGAAAAGAAACAAAACCTTTAAACCCTTTTGAACGGTTAGTTTATCACTTTACCTTCAGCCGTTCAACTTCCCGGCAGCCGCCACCAAAACTGATTTTCGGCGTTCGAGTTGTTCTCCAATGAGATTATGGTTACAAAGCTCTTCCTGACGCCACAATCGCTTCCTCTCACTGCCTTTACCCCGAAATTCATCTTCCCCCGTAAGAATTTTCTCCCGATATGCTTCACCTCACCGTTTTACTCCACCACAGTCCACTCCCAATCTCAATTCTCTCACCAAAGCCTCCCCTATGGACCTTCTCTTTGCAAGGGTATCCATCCATTTCCCTCAGTTTCCAGACAGTCTCCAATCGATCATTCTCCACTTCTCAAGACCCTAACCGGAAACCTGGAGAGAGAGCAGTTGCAAAACGAGGAAAGTGAAGGAGCTATATTGGACGAAGATGCCTTCACCCGGATTTTCGACGTTGCTGCACTTCGAGTTCCTTCCAAAGGCTGTTTCGAGCTTGAGAATCGACTGCGTGGCCATCTCTTGAACTGGCCGAGGATTCACAACATTGCTAGAGTTCCGGGGGATGAGGTTGAAGCCGAATTGGTGGAGCTTGTGGGAGAGCAGAATTGGAGCAGTTCCGATGATGGAGATGGAACTAGTATTGATTTGTTGCACCGAAGAATTTATGGGAAAGCTGAGGGTGATGGGGAGCCTCTGAGTCCCGTGTTGTACAGGGAAAAGCTAGTGAAAACGTTCGATTCAAAAGGATATGTGAACTTCAGACATTTGGCGAAAATGTCAAGGTTGAAGAGAAGGAAGGAGAAGAAGGAAGAAGGGAGAGATGAAGAGATGAGAAGAATGGGAAAAAGTGAATTTGCCATTGTAGAGGTTGTGGAGAGTGAGGAACTGGAAGTGGATGATATGAAGGGATTGTTGGGAGATGAGTTTAAGGGTGGAAAATGGAGGGGTTCGACTAGGTTGTTGCTTTTGGATGAACAATATGCAGCCAAAGGCGTAGTAGAGCTTCCAGAGGCGATTAAGGTAGCTGTTATAGTACTTGTTCAACAATTTGATATAAGAATCTGTACTTCATTCATGTTTCTTTCTTTGGGTTTAATGTTTCTGTACATCTCTCTCATTAGCCTGAAGTTGAGGAGAGCCTTGTCTTGTGTCTCACTTGTATTTTTGGAACCAATTTTCTCTTGGTTTCTTCTACTGCAGGCTCTGCTGAAAGGAGATACCCAGGAAAGGATGAAACCGACAATTGAGCTTGTGAGGTGCAGACTTACTTTATTTTATGATTATTGGCAGATGAATGAGGTATTCACAAAATGGGAGAATTTAGGTGTGTTTGTTATTTATTTATTTTTAATCTAATTCATTCCATCATTTTAATTTTCAATTTTGATCAATTGCTTTTATCATTGAGGAGATACTACGATAGTCTCTAATTGATCTTCGAAGGGAACCAAATTAATTGATTTTGTTAAGGTCTCACTCGGTTATGAGATTTAGTAATGCCTTTTTCAGTTTTCCATGTTGTATCAATTCATTTTGATAAAAGAATTATAGGTTTCAGAAAAATTTAGTGTTCAATCATTTCTTTGATTAGTTAAGAAGTCCCAACGTACATAAATTTGGGCATCTGATTTTTTCTGAAGCTAAGAAGTGGAAATGCTACATCTACTTGACCATATATTATCTTCTAAAAGATCGGATAGGGCATGCTATTGCACATGCACGCGATTCACTGCATAATTGATATATTACTAATGATGATGATGTCAAATTGAGCATAGCTCATTTCATTTTAGCATAACCAAGAGTTTAGATATTCGAATGTTTCCAACTCTTTATATTGTTGAACTGAAAAAATATCAATAATTTTGGTCGATTTCAACACAAAACTTGGAAGCATCTCATTTACTGAAACAAAAGAACCTTTAGAATTGCATATTCCCTGTCAGCCCCTAAAGATGACTTCACCCTTGCGCATATATATATATATATCTTTTGTTCTCTAAGTTGTTTTGTTTACACATTGTATTGGTTATTATGTTAAAAAGGTTATGTTTTAGTTCTCCCAACTAAACTATTATACACCTTGCAAAACCTTACTATTCTGGCCAAATGATATCAGTATATTGTTCGTCTGTGTGATGAATGTAAGAATGCACAATCTGGCTGGTGAAATTCACTATTGAATGTCCCTTTGCACTACTTTCAGGTTTTGGAGGCTTTGCTTCCAAAGGATATGATTATTCCTTCAGCATTTGAAACCGTTGGACACATTGCACACCTAAACCTTAGAGATGAACATCTCCCATACAAAAAGCTTATAGCGAAGGTAAATTAGAGCATATGTCTTCTATCAAATATAATGGAATTCAATTGTGTTCTCATAAGAAAGCAGGCTTTCCATTCAGGTTGTTTTGGATAAAAATAAGCCAAAGATACAAACAGTAGTGAATAAGAGTGATGCCATCAGCAATGATTACAGGACAATGCAACTTGAGGTTTTAGCTGGGAACCACTCCCTTGTGACCACAGTAGTTGAGAATGGTTTACGATTTCATTTGGACTTGGCAACAGTGTAAATTTTCCTCCCCTCAAAACTAGTACAAAACTAATTGATATTTCTTCCCTTTTATTCAACTGTCGTGATTGTATCGTGGATGATAATATAACATATTGTAGGGCATATGGAGAGCGATGTTGAAATGGTTAGTCATGTTCAAAACTCACAACCAAACTTACCTTAAATTATTCAAAATCAATTTTGATGATATGAAGTCACATTTAAAAGTATATAAGTTAAATGTTAAATTGATTTTGAAGGATGAAAGGGGTGTGTGGAAGTAGTTTTGAATTTTGTACTTGACAAAATTGATCTTAACCATTTCAAAATTACTCCCGCACTATCCCTTCAAAATGACTAACTTGATAATCTCTCTCCCTTGCAAGTAAGGGCATTTTCTTAGAAGGATTTTTAATCTCTCCCCTTTCAGGTATTGGAATTCAAGGCTCGCAACTGAGAGACAGAGGCTACTAAGTGTCTTTACCTGCAATGATGTCGTTTGTATGTTTGTCTTAGATTCTAAAGTTAACTTTCTGCTTCCCGTAGTTACAGGGGCAAAAATAATAATTTGACCATTTCCTTTTCCTTTCTTCTTCTAAAAATGGGAATGAACAGGTGATGTCTTTGCTGGAGTTGGTCCAATATCAATATCTGCTGCAAGAATAGTAAAGAAAGTATATGCTAATGATTTGAATCCCTATGCGGTTGAGTATCTGGAAAGAAATAGTGTTGCCAATAAACTCGAGAGGAAGATTGAGGTATGAGATCTTTAAAATTTGCAACTTCGATCATGCTTTCTTGTTTGAAGATAAAGGGTAGAATGATACTCTCTTTATTGGTGTTAGTAGTGGGCTTAGGCCAAAGGAGAGATTAACCCTAATATTCTTTCCTTTTTTACATCAAGCTTGTTGTCTATTTATTTTTCCCTATTGTACCTTTGTTAATATAAGAAAATAATAAGAAAGTTAGATCATGGTTTTTCTCCCGATTCTCGGGTTTCCATGTAACTCGATGTCATATTTTCTTTTACCGCTTTCAATATGGTATTAGAGCAGGGTAAAGGCAAAACCCTAGACACTAACATTCATGGAACCCAAACAGAGACTAACCACGAGAGAGCTGCCACTATTGCCGTCGTTGCCGCCATGGAAAAACTACTCCACCAGCTTCCAACATTGCTAGTGAGCAGTTTGGGCCCACCCTTGGAGCCAACGACACTGCCTAGTGAAGGAATCCAGCTGCACGCGCCGCTATCCACCTTCTCTACTATTCAACCGACCTACTCCTAACCATTTTTCTCTATCCAGTCACGAAACAATTTTGGTCAGCTACTGATCCACGCGCCACTGTTGCTAGGGTCATACATCCACATGCCGTCGTTGCCCTCTTTTCACGCGCTGCTGACTCACTCTTCAGCCCAATCTAAACTAACCGACTTGCTGATGTATTCCAAGAATCGAGGTAAACTTTGTTTCCTACTTTGTCCTCCAATTATATAACTAGTTTTCTGGTACCATCTACGGGTGTCTTTTCAGGGGAAAAGCTTAATGGTCAAAACTATTTTTCTTGGTCACAATCGGTCAAAATGATTCTTGAGGGACACAACCAATTTGGTTTTTTGACAGGAGAGACTCTTCGTCCCCCATCTGGTGATTCCAGGAACGATTCTAGAGAGGGGAGAATTCTCTTATACGGTCCATGTTGATTAATAGTATGGAACCACAGGTTGGTAAGCTGTTGTTATATGCAACAACTACTAAGGACCTATGGGATACTACTTAAAAGCTCTATTCTAAGCGTCAGAACACCTATTGTCTATATATGCTGAGGAAACAAATCCATGAATGCAAGCAGGGAATTCTGGATGTAACCCCTTACTTTAACTAACTTTCCCTAATTTGGCAAGAGATGAATCTAAGCAGTGATTGTCTGGGACACTCATAAGGATGGCATACAGTATGCTAAAATTGAAGAAGAAGATCTGATTTATGATTTCCTTGTAGGTCTCAACCCCAAGTTTGACATAGTTTGTGGTTGTATACCGGTGTAGAGATCTCTTCCCTCCTTAATGGTAGTGTGTTATGAAGTCCATCTCGAAGAAAATTATATGAGTGTCACGAGTGTTCTGACTACTCCTACTGCTGATTTCGCTGTCTTCAGCGCGAGATCCTATACTCAGTGAGATGAACAACAGAAAATTGATTCCTATATGTGAGCATCGTAAGAACTAATGTCACACTAAGAATCAGTGTTGGAAATTACATGTCGTCCTCCAGGAGGTAAGAAACGTTTCTCAAATGATAAACAAAATTCAGTGCGTGCTTATTATATGAATGAGTCTGCTAGAACCTTTCAACCACCTGACCCTATTGTAAACTAGAACGGTCCCTCCACCCTCGTAGCCATTGCTCAATCAGGTATGTCAGTCCTTTAGTCTTATCAGTGTCGATGGGAAGAATCCCTAGATCCTAGACTCGGGTGCTACAGATTGCTTGACAAATTCCTCTGAGAATTTTGTGTCTTATATTTCGTGTGTTGGTAATGTGAAGATTAGAATAGTCGATGGTTCCTTGGCTCCAATTGTTGGAAAGGGGCAAATTTTTCCCTTTGAGGGGATACCCCTCCAGAATGTGTTGCATGTGTTTAATATTTCATGTAGTTTAAGTTAGATTACCCATGAGCTGAACTGCAAAGCTACTTTCTTCCCTGATTATGTTTCTTTTCAAGATCTAAGTTCGAGGAGGAAGATTGGCACTGCCCAGTATAGCAAGGGACTCTACCTCCTTGACGATGATACCTCCACTGGTAGTAACTCTAGGACCAATTTATTATCTCTATACTTTACTACTTCTGAATAAATTTGTATGTTGTGGCATTCTCGGTTTGGCCACCCAAATTGTCAATATTTGAAGTATTTATTTCCTCATTTCATCTCTAAAGTTGATGTCTCCTCTTTATCTTGTGATGTGTGTATTCAGGCTAAACAACATCGAGTATCCTTTCACTCACAACCATATGAACCAACCCGACTGTTCGTCCTTATCCACAATGACGTTTGGGGTCCATCTAAGGTCACTACCTCTTTTGGGAAACGATAGTTTGTGACCTTTATTGATGATCATACTCGTCTTACCTAGGTCTTCCATATCAATGATAAATTCGAGGTTTCCTCTATATTCCAAAATGTCTATCATACCATAGAAACACAATTCAATGCAAAAGTTACAATTCTTCAAAGTAATAATGGTCGTGAGTTTCAAAATCATACTATTAGTGAGTTTCTGTCCTCCAAAGGGATTGTTCACCAAAGTTCATGTGCTTACACCCTTCAACAAAATGGGGTTGCTACGGAAAAATTGTCACCTTTTGGAAGTAGCCTGTTCCCTTATATTGTCTACTTTCCTTTCCTCCTATCTGTGGGGATATGTTGTTCTTACTGCAGCTTATCTCATCAATAGGCTGCCCTCTCGTGTCCACTTCTAGACTCCCTTAGAATGTCTCAAGGAGTCGTATCCCTCTACCCGCCTCACTTTTGAGGTTCCCTTTCGAGTGTTTGGGTGTATCGCCTATGTTTATAGCTGATTGAATTTACCTCTCGGGCTCAGGTGTGTGTGTTTGTTGGGTATCCTCTTCATCAACAGGGTTATAAATGTTTCCATCCTCCTCGTAAATACTGTCACTATGGATGTCACCTTTCTTGAGAATTAGCCTTTCTTTTCTGTAGGAATCTTCAGGGGAGAGTGTGAGTGAAGTGTCTGTTCCGTAGAGTCTACTAGTCCTACCCTTGTTACTTTACCTGATCTCAATCCTCATCACATGGTCCTGCTTACAAACCAAGTTCCTGGAAAACCTACTATAGGAGAAATCTCATAAGGGAAATTGGGTCCCCTATTGATCAATCGGTTTCGATCCAAGACTCTGAACCACCGCGAGATCAAGCTATGACTAATTCTATTGACTCATGTGTTGACAGTAAAATGAGTGAGAATAACAGGTCTGATGTAGCTATTCCTGAAGATATGGGAGAAAATGAAAGTGTTGATGAGATTGAGGTTAGAGTAGAAACTGTTGGTAATGAGGTTGAACTGGATCATCAAGGTAATCTAGATAAGTATGATCCTTCTCTTGACATTCCTATCACACTGAGGAAAGGTACTGGGTTCTGCACGAAACACCCTATCTGTAACTATATTCTTATAAGAGCCTATCACCACAGTTCATAGCCTTTATAGCCAGCCTTGACTCTACCATGATCCTTGAAAATATCCACATTACTTTAGAGTGCCTTGAGTGGAAAAGTGCAGTTATGGAAGTGAATTAAGCTCTTGAAAAGATCAAGACTTGGGAGATATGTACTCTCCCTAAGGGACATAAAACCGTGGGATGTAAATGGGTGTTTACACTCAACCACAAGGCAGGTTAGTTGTAAAAGGGTTTACTCAGACCTACGGAGCCGATTACTTTGGAACTTTTACCCAGTTGCAAAATTGAATACCGTTAGAGTCCTAGTTATCTGTTGTTGTGAATGAAGAATGACCCCTATACCAGCTAGATGTTAAGAATGTGTTCTTGAACAGAGACTTGGAAGAGGAAGTCTATATGAGCCCCCTCCAAGGTTTGAACCCAATTTGATCATCGGGATTGCAAACTTCAGAAATCCTTGTATGGTCTAAAGAAGTCGTCGAGAGCATAGTTTGATAGGTTTACTACCTTTATCAATTCCCAAGGGTACAATCAGGGGCACTATGATCCATTTTGTTTATGAAAGTCTCCAAAGTTGGGAAGATCGTTGTGTTGATTTTCTATGTTGATGACATTGTATTATCTAGGGACGACACCATCGAGATCATCCAACTGAAGAAGATGGGTGATGAGTTTGAAATTAAAGACTTGAAAAATCTGAAGTATTTCCTTGTGATTGAGGTAGCTAGATCAAAATAAGGTATCTTTGTATCTCAAAGGAAGTAGACCCTTGATTTGCTGACTGAGACATGTATGTTGGGATGTCGTCCTGCTGATACTCTTATTGAATTTAACTATAAATTGGAAAATTCAGGTGATAAAGTTCCTGTTGATAAAAAAAAAAATATCAGCAACTTATGGGAAAGTTGATCTACTTGTTACAAACTAGACCATATCTCTTATGCTGCAATTGTCCTTAGTCATTTCATGCAGGCCCCTATGAGGAACACATGGAGGCAGTTAACAGAATTCTGAGGTACTTAAAAACAACTCCTGATAAGGAGTTGATGTTTAGGAAGACCGACAAGAGAGTCATTGAGACATATACTGATTCTGACTGGGCAAGGTCCGTTGTTGACAGGAAATCCACCTCTGGCTATTGTACATTTGTATGGGGCAATCTCGTAACTTCGAGAAGTAAGAAACAAGGGGTTGTGGCCAGAAGCAGTGCTGAAGTTGAGTACAAGGTGATGAATTTGGGATATGTGAGGAAATTTGGCTACAGAAGGTTTTATCTAACCTTCATCAGGACTATGAGGTGCCGATGAAACTATTCTGTGATAATAAGACAGCTATTAGCATCATTAACAATCCAGTTCAACATGATAGAACTAAACATGTAGAGATTGATAGACACTATTAAAGAAAAACTGGATAAGGGTAGCATATGTATTTCGTACATCCTCTCGAGTCAACAGGTTGTTGATACTCTCACTAAGGGTCTTTTAGACAAATTTTTGATTCATGTGTTAGCAAGTTGGACCTTATTGATATTTACGTCTCAACTTTAGGGGAGTGTTAGAATTAGTGGGCTTAGGCCCAAGGAAAGATTAACTCTAATATTCCTTCCTTTTTTATATTAAGCTTGTTGTCTATTTGTTGTAGCTTTGTTAATATGAGAAAATATTAAGAAAGTCAAATCGTGGTTTTTCTCTCGGTTCTCGGGTTTTCACATAACTCAGTGTCATATTTTCTTTTGCCGCTTTCAATAATGGGAAGTCATCATCTCTGCAGTGTCATACTTGATTATGAGGTAGCTAGCAGCATGTTTTCTCATTCGTTACTATGTCTTTCCACTATCAAGGTTTTTAACATGGAAGGAAGGAGATTCATCAGCGCTATGTTTGCAAGTGAGAAAGCTCCTAAAATAACACAAGTCGTCATGAATTTGCCAAATGATGCTGCTGAATATCTAGGTTTGATTCAAAGCCCTTTTCCCTCACATCAGCATCATACTACAACCATCACACATGCCATACCATAAAATATATTAGGATTCAGACAGTATCTCTTTTTGGATCATGAATTTGGTTTATTCTGAATTTAATAGTATCTCACTTCAGAACTGCTTATGCTTACCCTGCCTCGCCCCATTACTGTCTTTCTTCCTATACTGCAGATGCTTTCAAAGGAATACTGAGAGACCGATCGGATAAAGAGTTTACATTGCCGATAATCCATGTTTATGGATTCTCTAAAGCTCGAGATCCAGAATTCGACTTTCATGAGGTTTGAAGCTAATAGTAGAGTTCAATTTTATTTTATTTTTTCACATTTTCTGCTAATATGCTTCTCTTCATCCTTTTCCTACATGATGACTCTCTATGGTTGTAATTGATGTGAATATTGCAGAGGATAAGAATTGCAATAACTGAGGTTGCAGTTGATGTGAATGTGCGAAGGGTCCGACATGTCGCACCAGGAAAATGGATGCTATGTGCTTCATTTAGACTTCCTAGAAGTGTAGCTTTATCAAAGCCTACACTTAATGACATATGAATTACATTAACCTTTTTTCCCCTGATATGATATGTTTTATTGTTCACCATAAA TCTACTTTCCATTCCAATATCTCCAACCCATTACAATGATCCAATATCTCTCCTCAACTGTTGGATGCTTTTGATTTGGGCTGCCAAACTGAAAGAACGGGAAGAAAAGAAACAAAACCTTTAAACCCTTTTGAACGGTTAGTTTATCACTTTACCTTCAGCCGTTCAACTTCCCGGCAGCCGCCACCAAAACTGATTTTCGGCGTTCGAGTTGTTCTCCAATGAGATTATGGTTACAAAGCTCTTCCTGACGCCACAATCGCTTCCTCTCACTGCCTTTACCCCGAAATTCATCTTCCCCCGTAAGAATTTTCTCCCGATATGCTTCACCTCACCGTTTTACTCCACCACAGTCCACTCCCAATCTCAATTCTCTCACCAAAGCCTCCCCTATGGACCTTCTCTTTGCAAGGGTATCCATCCATTTCCCTCAGTTTCCAGACAGTCTCCAATCGATCATTCTCCACTTCTCAAGACCCTAACCGGAAACCTGGAGAGAGAGCAGTTGCAAAACGAGGAAAGTGAAGGAGCTATATTGGACGAAGATGCCTTCACCCGGATTTTCGACGTTGCTGCACTTCGAGTTCCTTCCAAAGGCTGTTTCGAGCTTGAGAATCGACTGCGTGGCCATCTCTTGAACTGGCCGAGGATTCACAACATTGCTAGAGTTCCGGGGGATGAGGTTGAAGCCGAATTGGTGGAGCTTGTGGGAGAGCAGAATTGGAGCAGTTCCGATGATGGAGATGGAACTAGTATTGATTTGTTGCACCGAAGAATTTATGGGAAAGCTGAGGGTGATGGGGAGCCTCTGAGTCCCGTGTTGTACAGGGAAAAGCTAGTGAAAACGTTCGATTCAAAAGGATATGTGAACTTCAGACATTTGGCGAAAATGTCAAGGTTGAAGAGAAGGAAGGAGAAGAAGGAAGAAGGGAGAGATGAAGAGATGAGAAGAATGGGAAAAAGTGAATTTGCCATTGTAGAGGTTGTGGAGAGTGAGGAACTGGAAGTGGATGATATGAAGGGATTGTTGGGAGATGAGTTTAAGGGTGGAAAATGGAGGGGTTCGACTAGGTTGTTGCTTTTGGATGAACAATATGCAGCCAAAGGCGTAGTAGAGCTTCCAGAGGCGATTAAGGCTCTGCTGAAAGGAGATACCCAGGAAAGGATGAAACCGACAATTGAGCTTGTGAGGTGCAGACTTACTTTATTTTATGATTATTGGCAGATGAATGAGGTTTTGGAGGCTTTGCTTCCAAAGGATATGATTATTCCTTCAGCATTTGAAACCGTTGGACACATTGCACACCTAAACCTTAGAGATGAACATCTCCCATACAAAAAGCTTATAGCGAAGGTTGTTTTGGATAAAAATAAGCCAAAGATACAAACAGTAGTGAATAAGAGTGATGCCATCAGCAATGATTACAGGACAATGCAACTTGAGGTTTTAGCTGGGAACCACTCCCTTGTGACCACAGTAGTTGAGAATGGTTTACGATTTCATTTGGACTTGGCAACAGTGTATTGGAATTCAAGGCTCGCAACTGAGAGACAGAGGCTACTAAGTGTCTTTACCTGCAATGATGTCGTTTGTGATGTCTTTGCTGGAGTTGGTCCAATATCAATATCTGCTGCAAGAATAGTAAAGAAAGTATATGCTAATGATTTGAATCCCTATGCGGTTGAGTATCTGGAAAGAAATAGTGTTGCCAATAAACTCGAGAGGAAGATTGAGGTTTTTAACATGGAAGGAAGGAGATTCATCAGCGCTATGTTTGCAAGTGAGAAAGCTCCTAAAATAACACAAGTCGTCATGAATTTGCCAAATGATGCTGCTGAATATCTAGATGCTTTCAAAGGAATACTGAGAGACCGATCGGATAAAGAGTTTACATTGCCGATAATCCATGTTTATGGATTCTCTAAAGCTCGAGATCCAGAATTCGACTTTCATGAGAGGATAAGAATTGCAATAACTGAGGTTGCAGTTGATGTGAATGTGCGAAGGGTCCGACATGTCGCACCAGGAAAATGGATGCTATGTGCTTCATTTAGACTTCCTAGAAGTGTAGCTTTATCAAAGCCTACACTTAATGACATATGAATTACATTAACCTTTTTTCCCCTGATATGATATGTTTTATTGTTCACCATAAA ATGGTTACAAAGCTCTTCCTGACGCCACAATCGCTTCCTCTCACTGCCTTTACCCCGAAATTCATCTTCCCCCGTAAGAATTTTCTCCCGATATGCTTCACCTCACCGTTTTACTCCACCACAGTCCACTCCCAATCTCAATTCTCTCACCAAAGCCTCCCCTATGGACCTTCTCTTTGCAAGGGTATCCATCCATTTCCCTCAGTTTCCAGACAGTCTCCAATCGATCATTCTCCACTTCTCAAGACCCTAACCGGAAACCTGGAGAGAGAGCAGTTGCAAAACGAGGAAAGTGAAGGAGCTATATTGGACGAAGATGCCTTCACCCGGATTTTCGACGTTGCTGCACTTCGAGTTCCTTCCAAAGGCTGTTTCGAGCTTGAGAATCGACTGCGTGGCCATCTCTTGAACTGGCCGAGGATTCACAACATTGCTAGAGTTCCGGGGGATGAGGTTGAAGCCGAATTGGTGGAGCTTGTGGGAGAGCAGAATTGGAGCAGTTCCGATGATGGAGATGGAACTAGTATTGATTTGTTGCACCGAAGAATTTATGGGAAAGCTGAGGGTGATGGGGAGCCTCTGAGTCCCGTGTTGTACAGGGAAAAGCTAGTGAAAACGTTCGATTCAAAAGGATATGTGAACTTCAGACATTTGGCGAAAATGTCAAGGTTGAAGAGAAGGAAGGAGAAGAAGGAAGAAGGGAGAGATGAAGAGATGAGAAGAATGGGAAAAAGTGAATTTGCCATTGTAGAGGTTGTGGAGAGTGAGGAACTGGAAGTGGATGATATGAAGGGATTGTTGGGAGATGAGTTTAAGGGTGGAAAATGGAGGGGTTCGACTAGGTTGTTGCTTTTGGATGAACAATATGCAGCCAAAGGCGTAGTAGAGCTTCCAGAGGCGATTAAGGCTCTGCTGAAAGGAGATACCCAGGAAAGGATGAAACCGACAATTGAGCTTGTGAGGTGCAGACTTACTTTATTTTATGATTATTGGCAGATGAATGAGGTTTTGGAGGCTTTGCTTCCAAAGGATATGATTATTCCTTCAGCATTTGAAACCGTTGGACACATTGCACACCTAAACCTTAGAGATGAACATCTCCCATACAAAAAGCTTATAGCGAAGGTTGTTTTGGATAAAAATAAGCCAAAGATACAAACAGTAGTGAATAAGAGTGATGCCATCAGCAATGATTACAGGACAATGCAACTTGAGGTTTTAGCTGGGAACCACTCCCTTGTGACCACAGTAGTTGAGAATGGTTTACGATTTCATTTGGACTTGGCAACAGTGTATTGGAATTCAAGGCTCGCAACTGAGAGACAGAGGCTACTAAGTGTCTTTACCTGCAATGATGTCGTTTGTGATGTCTTTGCTGGAGTTGGTCCAATATCAATATCTGCTGCAAGAATAGTAAAGAAAGTATATGCTAATGATTTGAATCCCTATGCGGTTGAGTATCTGGAAAGAAATAGTGTTGCCAATAAACTCGAGAGGAAGATTGAGGTTTTTAACATGGAAGGAAGGAGATTCATCAGCGCTATGTTTGCAAGTGAGAAAGCTCCTAAAATAACACAAGTCGTCATGAATTTGCCAAATGATGCTGCTGAATATCTAGATGCTTTCAAAGGAATACTGAGAGACCGATCGGATAAAGAGTTTACATTGCCGATAATCCATGTTTATGGATTCTCTAAAGCTCGAGATCCAGAATTCGACTTTCATGAGAGGATAAGAATTGCAATAACTGAGGTTGCAGTTGATGTGAATGTGCGAAGGGTCCGACATGTCGCACCAGGAAAATGGATGCTATGTGCTTCATTTAGACTTCCTAGAAGTGTAGCTTTATCAAAGCCTACACTTAATGACATATGA MVTKLFLTPQSLPLTAFTPKFIFPRKNFLPICFTSPFYSTTVHSQSQFSHQSLPYGPSLCKGIHPFPSVSRQSPIDHSPLLKTLTGNLEREQLQNEESEGAILDEDAFTRIFDVAALRVPSKGCFELENRLRGHLLNWPRIHNIARVPGDEVEAELVELVGEQNWSSSDDGDGTSIDLLHRRIYGKAEGDGEPLSPVLYREKLVKTFDSKGYVNFRHLAKMSRLKRRKEKKEEGRDEEMRRMGKSEFAIVEVVESEELEVDDMKGLLGDEFKGGKWRGSTRLLLLDEQYAAKGVVELPEAIKALLKGDTQERMKPTIELVRCRLTLFYDYWQMNEVLEALLPKDMIIPSAFETVGHIAHLNLRDEHLPYKKLIAKVVLDKNKPKIQTVVNKSDAISNDYRTMQLEVLAGNHSLVTTVVENGLRFHLDLATVYWNSRLATERQRLLSVFTCNDVVCDVFAGVGPISISAARIVKKVYANDLNPYAVEYLERNSVANKLERKIEVFNMEGRRFISAMFASEKAPKITQVVMNLPNDAAEYLDAFKGILRDRSDKEFTLPIIHVYGFSKARDPEFDFHERIRIAITEVAVDVNVRRVRHVAPGKWMLCASFRLPRSVALSKPTLNDI Homology
BLAST of MELO3C018180 vs. NCBI nr
Match: XP_008454621.1 (PREDICTED: tRNA (guanine(37)-N1)-methyltransferase 1 [Cucumis melo]) HSP 1 Score: 1241.9 bits (3212), Expect = 0.0e+00 Identity = 624/624 (100.00%), Postives = 624/624 (100.00%), Query Frame = 0
BLAST of MELO3C018180 vs. NCBI nr
Match: XP_004146841.1 (tRNA (guanine(37)-N1)-methyltransferase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 1181.4 bits (3055), Expect = 0.0e+00 Identity = 595/620 (95.97%), Postives = 608/620 (98.06%), Query Frame = 0
BLAST of MELO3C018180 vs. NCBI nr
Match: XP_031738903.1 (tRNA (guanine(37)-N1)-methyltransferase 1 isoform X2 [Cucumis sativus]) HSP 1 Score: 1101.7 bits (2848), Expect = 0.0e+00 Identity = 553/577 (95.84%), Postives = 566/577 (98.09%), Query Frame = 0
BLAST of MELO3C018180 vs. NCBI nr
Match: XP_038900022.1 (tRNA (guanine(37)-N1)-methyltransferase 1-like [Benincasa hispida]) HSP 1 Score: 1090.9 bits (2820), Expect = 0.0e+00 Identity = 552/624 (88.46%), Postives = 577/624 (92.47%), Query Frame = 0
BLAST of MELO3C018180 vs. NCBI nr
Match: KAG6591998.1 (tRNA (guanine(37)-N1)-methyltransferase 1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1073.9 bits (2776), Expect = 4.8e-310 Identity = 545/623 (87.48%), Postives = 572/623 (91.81%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy Swiss-Prot
Match: F6H2F8 (tRNA (guanine(37)-N1)-methyltransferase 1 OS=Vitis vinifera OX=29760 GN=VIT_19s0014g03930 PE=3 SV=1) HSP 1 Score: 800.4 bits (2066), Expect = 1.4e-230 Identity = 417/625 (66.72%), Postives = 493/625 (78.88%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy Swiss-Prot
Match: Q6NQ64 (tRNA (guanine(37)-N1)-methyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=At4g27340 PE=2 SV=1) HSP 1 Score: 710.3 bits (1832), Expect = 1.9e-203 Identity = 381/638 (59.72%), Postives = 478/638 (74.92%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy Swiss-Prot
Match: F6VSS6 (tRNA (guanine(37)-N1)-methyltransferase OS=Xenopus tropicalis OX=8364 GN=trmt5 PE=3 SV=1) HSP 1 Score: 259.6 bits (662), Expect = 9.0e-68 Identity = 145/349 (41.55%), Postives = 203/349 (58.17%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy Swiss-Prot
Match: F4NUJ6 (tRNA (guanine(37)-N1)-methyltransferase OS=Batrachochytrium dendrobatidis (strain JAM81 / FGSC 10211) OX=684364 GN=TRM5 PE=3 SV=1) HSP 1 Score: 255.8 bits (652), Expect = 1.3e-66 Identity = 158/392 (40.31%), Postives = 217/392 (55.36%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy Swiss-Prot
Match: B8A5G9 (tRNA (guanine(37)-N1)-methyltransferase OS=Danio rerio OX=7955 GN=trmt5 PE=3 SV=1) HSP 1 Score: 255.8 bits (652), Expect = 1.3e-66 Identity = 140/304 (46.05%), Postives = 192/304 (63.16%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy TrEMBL
Match: A0A1S3BZU2 (tRNA (guanine(37)-N1)-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103494988 PE=3 SV=1) HSP 1 Score: 1241.9 bits (3212), Expect = 0.0e+00 Identity = 624/624 (100.00%), Postives = 624/624 (100.00%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy TrEMBL
Match: A0A0A0LFW2 (tRNA (guanine(37)-N1)-methyltransferase OS=Cucumis sativus OX=3659 GN=Csa_3G851170 PE=3 SV=1) HSP 1 Score: 1181.4 bits (3055), Expect = 0.0e+00 Identity = 595/620 (95.97%), Postives = 608/620 (98.06%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy TrEMBL
Match: A0A6J1FD97 (tRNA (guanine(37)-N1)-methyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111443059 PE=3 SV=1) HSP 1 Score: 1073.2 bits (2774), Expect = 4.6e-310 Identity = 544/623 (87.32%), Postives = 571/623 (91.65%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy TrEMBL
Match: A0A6J1IJI4 (tRNA (guanine(37)-N1)-methyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111476849 PE=3 SV=1) HSP 1 Score: 1060.4 bits (2741), Expect = 2.8e-306 Identity = 541/623 (86.84%), Postives = 569/623 (91.33%), Query Frame = 0
BLAST of MELO3C018180 vs. ExPASy TrEMBL
Match: A0A6J1CDC1 (tRNA (guanine(37)-N1)-methyltransferase OS=Momordica charantia OX=3673 GN=LOC111010505 PE=3 SV=1) HSP 1 Score: 1048.1 bits (2709), Expect = 1.4e-302 Identity = 533/623 (85.55%), Postives = 568/623 (91.17%), Query Frame = 0
BLAST of MELO3C018180 vs. TAIR 10
Match: AT4G27340.1 (Met-10+ like family protein ) HSP 1 Score: 710.3 bits (1832), Expect = 1.4e-204 Identity = 381/638 (59.72%), Postives = 478/638 (74.92%), Query Frame = 0
BLAST of MELO3C018180 vs. TAIR 10
Match: AT3G56120.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 229.2 bits (583), Expect = 9.2e-60 Identity = 148/418 (35.41%), Postives = 205/418 (49.04%), Query Frame = 0
BLAST of MELO3C018180 vs. TAIR 10
Match: AT4G04670.1 (Met-10+ like family protein / kelch repeat-containing protein ) HSP 1 Score: 58.9 bits (141), Expect = 1.7e-08 Identity = 55/197 (27.92%), Postives = 94/197 (47.72%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (DHL92) v4
Date Performed: 2022-08-06
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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