Clc09G16370 (gene) Watermelon (cordophanus) v2
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.ATGGGAAGAAAAAGGGTTTAAAGGGTTTGGGCGCAATAAGAGTACCAAAACCCCGAGTGTTTCAGTCCATAGCTTCGTCCATAGCTTCGTCTATAGCTCTCCTCTTTCTCCGAATCAGTTCGTCAGTTTTGAAGAAGTAATTGGAACAAGCAGCTATTAGATTTAAGTAAATGTGGTATCTCTGTGTGTTCTATCACCGGCTTTTGGATTACAGGAAGGCCGAGGTCGAGTCTCTGGCCGAGTTGTTTCGTGAAAATGGCGACCACAAAGGGGAGAAGTTGGAATGGAAGCTTCCTCTCCATCATCACCCTGATTCTCCTTTCCATTTCGTGAACCTTTCTTCTGACGATCTCGCTCGGAACATCGCCAATCGAAGTCAGCCATTTCGTTTCGTTTTTGGGTTTTGTCTTAATTTGCTTCAGTTTCTTTCATTTAGTTTCGTTTGGTTTGGTTTTTGTGTAGGTATACTAGTGAAGGGGATGTATGAACTGTGGGGTGAAGGAAGTGACTACGAGGAGCTAGAGGAGTCTATTAGAAATTATCCGGAAGAACGGAAGTCGCCATACTTACAACCCGGAAGCTCTTTCAAGATTTCTGTAGAGAGCTTTGGGAAGGCTATCAGCTTCCAGGAACAAAATGAACGTATTCAGGGGCTAGCATACATCCCTTTCAAGGTCTAGTAGCGCCTTTCGGTAATCTAGTTTATGCTCCCTTTTTTATTTATTTTTTATTATTCTGTTTAACTTATGCTTTTGAGCAATTGGAATCCAATCGTTTTGCTTATAATGGATACTAGAGACTTCATGGTTATAGTGTGGAGTGCTCACTTCAGTGGATGGAATCAAATTAATATGTGTTAAGAAACTCTTATAGTGTGGACAGACTATTGAGCTTGAAGGGTTGGTTTAAGTGATGAACCAGAGACAATAAGGCTAGAAGTTATCAATTGTGGTACGACTAATTTTTTATGTAGAGAATTGATAGATAAAAGAATTGCAAAGCAATTTGTGTAGTGGAATTATCGACAAGCTATAAGCACTGAGATTAAATTGAAGTGTTATGGCCGAAGCATATTCTTTTGGTGGTGTGTCAATATAGTGGGATGGGGCAAAAATGGATAGCTTGGTTCCATATCTCCTAGTTGATAAGAAGGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGGTGTTTTTTAGTAATATTTTCAAAATTTTATTTACAAAATAGTTAATAATAAAAATCTCTAAACAAGAAACAATTATTAAAAAGCTATAAAAGAGTACAAAAATTTAAAATCTACGGAGCTCCAAGGTGACAGGAAAGTCTGAGAACCTAGGAGGCCAGCAACAAAGTTCTGTTTGTGAAATGGCCTTGGTGTTTTCCCTTGAGCCTAAAACCCTTTTGCTCAGGTATTTCTCATGGGAAGGAGGGGCAGGAGAACAAACTCATCTTCTCAATTGGAACTAAGGAGACATAAGAATTGGCCTAAGAAGCACGGATACGAGACATGGATACGACATGATAAGAACATGACAACACACCATTTTTTTAAATTTTGGACGTCAACGCGACAAGGACACGTTAATTAAAATATGCATTTAAAGAAATATATATATCATTTTTAACTAGGAAGGAAATTAAAAGTCGATGAGGTTATGCATTGGAAACTTATCTTAGATGGCAAAACTGTTGAAAATATTTACAAATAATAGCAAAATATCACAATCTATTCGCGAAAGACAACAATAGATCGCGATCTTAGATAGTAGTCTATTGCGGTTCATTCGCCGATAGATAGTAAAATTTTGCTATATTTGTAAATATTTTGGTTCATTTTTCTATATTTGAAAACAATCCTTACGCATTTATATGCTTAAATAATTAATTTGATGTATTTTGCTCTCAAAATTTATTTTTGTGTCTTTATATATGTCTACTTAGTATACTTAACACTTGATGTCCAACAAATGTTGGTCCTACTTTGGCTACGTACAACTAGCATTTAATACATCTATTGCACTAACAAATGTCCGATGCGTGTTTAACAAATGTCAGAGTGTCCAAGTGTCTGACATGTGTTGGACATGGTGTATGGACATGCTAGCCAAATTAAATTGTCCATGATTCTTAGGAATTGGCAACTTCAAAAGGAGAAAAAGTTAACCCACCTTGTCAAAATGGTCTCAGATTCTCTTGTTCTTCCACACAAGATTATTGACAGTGAGTATGGGAAGGAAGTTAGACTATGGTTCACAGAAACTAAAAGAGCAATAAAATTAAGATGTCCCTGGAATTTTATCTCTAAACAGGATTACTGGGCCGAGAAACTGTTGCAAGCTTGTTTTGGGCAGTGGGAGAAAAGATTCCCAGACCTTGTGTGAATCTCTTCAAATGAAAGAAGAAAACACCTTTGGAACAATGTTATTAAGGCTCTTCTTTGAGAGTTGTTGGAAAGAAAAGTAGATTTTTTTCCCAACATATTTGGGTTGATAATTATATGAGTCTATCTTTGGTTTTGCATGAGAAAGAAGTCAATTTTTTGTAAAAATAAATTATATTTGTGTTTGGTTAATGGGATTATTTTCTATAATTTTATTCACTTATAAAGCATTAAAATAAATCAAATTTAATTTCCAATACTTAATTTACATTAGTTAATCTTAAATAATTTACGAGAAAGAAAAGCATGTATGAAATATCAAAGAAAAAGAAGAAAAATGATTAAAAAAATTTAAGGATGAGGAAGAGAAGAAAAAATAATAGAAAAAAGAGGAGATAAGTAAACAAGAAGAAGATGGAAGAAGAGTGTCAGAAGAAGAAGAGAAAAATAATAAGTAAGCAGGAGATAAAAGGAAGACGAAGGAAGAAAGAATGTAAAAAATAAAAAAATAAATAAAAAAATAGAAAATAAAAAGAAAAACATAAAAGAGGCAGAAGAAAAACCGGGGAGGGTTTAGTAAAAACCCACCGATGGAGATGGGATTAAAAAGCTCCCAATTGGTGGTTTGGGAAAACATTCTTCCCAACAAATAACTCAAATCCACAACCAAAAATGGGCTTTATATGCCCAAACCCATTCCCTCCCTCTTTTGGATAAAATCAACTTTTATTGAGAAAAAAATGAAATAATACAAGGGCATACAAAAAATCAAACCCACAAAAACCCCACTAGAGAAAGGGGGACCAAGAAAGTAAAATGTTGTCTAAAGAGTAATTACAAAAAGTCTTCAAAATCAAAGTCCAAAGGAAAACATGAAACTTTACCAAGGACCAAACATCATTAGGGTCCCTCTCCACCCCTTTAAAAACTCTGTTATTTCTCACCCCACAAAACCCATAACAGATTGTGCATCCCAACTAACCACAAAAATTGTCCATTCTGCCGAAAAGGTGGATGAAGAAAGAACTCCTAATTGAACTACTAATATCCCTCTATGAGCCAACTTGAAATCAAACTCCTGGAGGAAGTGGTCCTACATCGACCTCACAAACTTACACATCCAAAACAAGTGATTTAGATCTTCCTCCACCTTCAGGCTGAGAATACAATAGAATCGACCAACTAAGGGAAAGAACTTAACTTCTTTTGGAATCTTAATCCTCCAAAGTGAATCAAAGACAAACTCACTAGCGGGAAAGAGATCCAACAAACATTGAAAGGACTTACAAGAGAAACCATCAAAATGACTGAGGCTCTAAACACGAATGCCCCTTCTCCCTAGCCTAAAATCAAACTCTCCTATCAAAAGATAGGATTGAAACAACTGCTGTTGTCACCTTATTGGTCAACAAACAACGGAAACCAAATGAGAAAGAAGCTGAGCTCATTGACCAAATCCTCAAGTTTCCACTAAACCTGCGGGATCCCAACGGCTTGGCCTATGGAAGAAATAAGTATTACAATCTCTCCTCCCTTAGCCCATTTCAATTTCACCTTGGCCTTTTGACACCAACTGATGGATTCTTTTCTGATCACCTCAACAAACTCCCTTTTCAGAAAAACCCTCTCCTCTTTCTCAGCAGCCTCCAAAGGGCCCTCCAGTTCCTTTAAGTCAGGCTCATTGATTTTGTGTAGAATCTTTTGTTTCTTATCCTTAATGTCTGTAAAAACCTCTTAATTCCAAGATTTAAGAGCCCCATTTTCGACCTCTACTTCCACATAAAGCGATCCTTCCCTCTTCCTAGGAACCGCAACATTCCACCAAGAGGAAATATTAGCCTTAAAAGAAGGATGCTCTAAAGTCTAACCACATGTTCTCGAACCAAAACCAAGGACAGGATATTGAGCCAGTGATCTGAAGTAACTCTCAGCCCCATTTCTTCCCTTTGAAAACTCCATGCAAACGGGGTTTAGGTGTTCTTGAGGATTTCTCCTCATCCCATCTGTATTCTTTCAGAAAAAAAAAGAACGAAAGATTTCTCTTTAGAAAAAAAAAAGATAAAAAGAGGAAATATAGAAGGTATATAATTTAATTCATGCATCCAAGTTTAATTGAGAAAGAACTATCCATCTATTCAACTTCTTACTTGTTTCATGCTTGCAAATTTGATTGAGAAAATATGATCAGTTTACTTAATTCTGTACATTTATTTTCATCATGTTTCACATCCTAACCTGGGAGTCTTACTCTTTTTGAAGAAACTCAGTGGCATGTTGATCAACTGGGGCATTTATGCTACCTCATGCTTCATTTATGTTACAATCACTTCTGCTTTTACATTTACTTCTTAACTTAGTCAAGACATGGTCTCATGCAATTATCACGGCTTCTCATCATAAATGGTATCAATCAAGTAGTAGAAGTCCTATCAATGTCATTTTCTTCTGTTAGCTCTTTTAGGTTCTGCAGGTAATACCTGAATTTTGACAGTGTTTTTAATCATTCATTTGCTACACAAGCTCAACATGTCACTGTCTGCATTTTTTAATAAATGGATGCGGATGGAATATTTCAGGGTCAAGTTAATTTAAAAAGTCCAGATCATAAATTCTGTCTTATGGAAACTGCTGATTACGGACTCAATAATGGACTTCCACCAATTGCTCAAAGGAGGATTTTTTTCGGCCGGGAGGTCGGTGGTGCCGACAGGAAGCTTATACCAACATATCAGTTAAAAAGTCGCACTTATCTTGGGCCAACTGCCATGGATGCTGAAATGGCTTTCTTAATGGCCAACCAAGCATTAGCAACAGCAGGAAAACTTGTCTATGATCCTTTTGTTGGCACTGGGAGCATTCTTGTTGGTGCAGCTCATTTTGGAGCAATGACAATGGTAACTACTTTTGCTTTGTATCTTTATTTTTGAAATATGCGAGTATTTGGGTCAAGCTTTAAGTACATCTTAATTAATCCCATAAAGAAATTGTCTGATGTTACAATATTTGGTTGGCAGAAATGAGAAAACCTGTGGGAGGCTTAATATCCTAAATTGATAGCTTTGAACACATTCTCTAAAGTCTCTTACTTTCTTTCACGTACATGAGTCATGGGGGTACTTTTTCTTTGTATTGGATATTAGATTATGAGTTTTGGTTTTCAATCTAGTAATGGACATTCATTGCATTTAGGGAACTTAATTTAAGGTTGTTTACAGTTCCCATAGAATGCATGTGGGAGAGAGAGACCATTTGAATTCAAACTGACCAAAATGTCTCAGGGTGCAGATATTGACATTAGGGTGGTACGTGATGGTCGTGGCCCTGATTGTAATGTTTGGAGCAATTTCAAGCAGGTAAATATCTTTTATAATAAAATTCTAGGTTTAGAAATTTAGTTCATGGTGCAAGTCTTAGTTTATACTGACTGACAAGTACTGTACTATGTTAAAAGTTCGAAACTTTTTGCACGCATGAACTGACAGTTATACATGTGAGGGTGGCAAGCATGATAGAGGATAAACAACTGTTCTGTTGGCATTTTGCTTTTGCAATTTCCTGAGATTCAACTGATTATGATGATATCAAGTTTTGATGCTTTATGTTCCTTTGCATGTAATTACGATCTTAGATGCTTCATGCTGTAGTGGTACTAATCTGTTAATTACTGCTTGCAGTATGGATTACCACCGCCAATTGGACTGTTAAGAGCCGATAATAATCTTCCTCCCTGGCGTCCAGGACTGAAGGAGGTACAGCTGTAATATTTAGCACCTGTACTGTATTTATTTTTCGTTGTGTTTCTGTCTGGTTTGAAGTTCCACTGCCATTGTTATATTCTGATGCTCACTGATTGCTGTGGATATTTACAGCTTAACGTCTGCTTACGGATTTGCAATCATTTACTTTTTATTATTTTTTAACAAGAAACAAAACTTTTAATTGAATAAATGAAAAGGGACTAATACCCAAATAAAAGATGCAAACTCGTGTGGAAGGAAGGGAATAAGGAACATAAATGAGAAAAAAAAGTCAAGGAAGTGCTCAAAAATGAAAAAACTGAGAAAAATCTTGCAAAGAACTTGAGGCTCGAACCGCACTTGAAGCTTCAAAGAACCACAAAACAGAGTGCCGAGAGAATAATAATAATAATAATAATTAAAAGAAAAAAACTTGCAAAGCAAGCCCGCTGGAAGAACACTAAATACAACAATAAGCATGAAAAAACCTCCTCCAAAACATTCGGTAACCTCTAGAGACAAAAACAGCAGGGAAAAAAAACACAGCAACAAAACCAGCTGAAGAGAATCTAGAATCGGAACTGAAATCATCATCAAAGAAGCCAACTGAAAATAATGAAATTTGAAATGTTTATCAATTTTTAAATAGAATTAAAATTTCCTTCTGCAATTATTTTTTATACAATAATTTACTAAAAGTTAAAAATTAACCAAATTCTAACACGTTTCAAGCAATTAAAATTAAATAATATGTAAAAACATATATTGCAAAATGAAACATATTGGGCAAGGCTTGAACCTTGGCCAAAGAATGTGAACAGCATCTCATGCCCCATCACCGATCAAGCAACCGATTTTTTGGAAAAATATCAGAAACTTGTTATACAAATAATTTAAGGGGAGCACCTGCCCCTATGGCCTCAGGAAAGAGTGATCCTTAATTTCATGTTTCTTGTGGGATTTGATTTCGGAGACTTTTTGTTATTATTCTATAGGCAATAATTTACCTAATTGTAATTCCTTTCTTTGGTTCGGTTTTTTCTGTGGGCTATTTTTTTTACTTTTTATTTTTTCATGCTCTTGTATTTTTTCATTTTTTCTTGATAAAAGTTGTTTCCATAATATATCTATATATACACACAATCATACTTGCCAATCTATTGGATAAGACACCAATTATCCCAAGGAGGAGGTTGATAGTTCAATCCTTCGCCCTTGGATTGTTGAGTTCAAAAGAAAATATATTAAATAATACACATTTTAGTTTATGAATACATTATCAAATTTGTAAAACAAACACATCGTTCAACTTGAATGTTAATTATTTCTCATATTAAAACATAAATATTTAGTATCTCATACATTTTAACTTCTATATATTTAATATCCATACCATGAAACATAATCCACCGTCTGAATGGAGCACAAAGAATCTTTCCTTGTTAAAGTTGCTGATTTCGTTTATTCATGTAGCCCCAAAAAATCCAAATGGGGTGCATCCATAGAACTTTCTTACCATCAATCGACGGCCACTCAGCCGGTTAGTGTGTAGTTGAGGAGGCTATTCGGGTCACAAGGGAGAGCCGTAGACCAGCAAAAGGAGGAGAGGATCTCTTTCCAAACCTGTCTGAATGAGATCACGCGAGGCAAAATGTGCTTCTGTGTTTCTGCGGCTGTCATGCGTAGGAGACAGCATTGAGGGGACAAAGAAATGTGAGGTAAGCGGGCTGGAATTTGTCAAATGTGTTGTGTTAATGGCTTGTGGCTTAGCTCCCATGGAAAAATTTTCATTTTCTTAGGGTATTGATCCTTTCAAATTTCTTCATAAAAAAAGTGCTGCGTCGGTTCCAGATTGTGCCAATGTCGATTAGGAGAGATTTTGTAGTGAAAGTTCCTTTAGAACCAATTTTTGAAACCCAAATATCTCTGGATTGTGATAAATTCACAGCTGTCAAGATGTCAGAAAGTCTACGAAAACACTTGAAGCGAGTATTCTTCCTTCAATCCTCTTCAACCGACATACTTTGAGATAAGAGGATGATGACTAGACTAGACTCCTACCGTCGTGACACATTTCAGTGCTAATTAAAGCTAATTTTTCTTCCTCCTAATCCTGACATTCGAATTCATAAATTATTAAAGCTCTCCGTTCGGACTTAAACAATCAGCCTTTTTTTCTTGAGAATCTGTCCTCCCCTTTTCCACCTCAACTTCAGACATGCCATTTCTGCTGCTCACTTACTAAAGGATCATTCGATTCCCCATAAAGCAGGTCTCCATCTCCAACTACTTTCAATCGGTAACTTGAAGACTTTTATCGATTTAATAATTATTGGTCCATCATTTTTCTTTTTTACATTTGTGAGTGTCTTGGCTATTGTTTTCACAAGCATGAGGCGGACTAAAGAGCAAATAGTTGTCCGAAGCTTAGATACAAGGCATAATAGGTAGCCAGGTCTTTTTAATTTTCTTTAATAAAATTGTTTAAATTTTATTTTATGTGGCGCACAATAAGAAAATATAAATACACTTTTTATGTATGAAAACTATAGTATTATAAAGGATAAGATAACAAAAACTTAATAAATTCAGAGGGTCTTTTAAGGAGATTTATTGAGAATTTGAGAGAAATTAATTAGAGGGTTCTCAGGAGTGTCCTAATCTTAGAAATTAATTAGAGGTACTTTTAAAAGATTAACATTTTCTAAAAGTGTTAGTTGACTTATTTGTAAAACGAAGTTTCAGAAAAAGAATTAAAATGGAGAGGCACACATGACTGCCTCACTTTTTTTAAAGGGTGCTTTTTAAAAGAGTGGTTTAGTCCTACTTGCATTTATCTCAACTAATCTTATGGGGCAATTTCCCAAACATATTATTAGATAGTATGGGGTTCCATCTCAAAACCAATTGACAATGAGTAGAGTAGCCCATCTATCTTATTAAGAGTATGAGATCCCTTGCTTTTTTCAATGTAGGATTCTCAATACATATAACATCTGGTTGTCAACAAAACTCATAGGATTAAATCCTTGGTAGGCGGCCATGTCCACTATAACTTTGAACTATTTCCTCTTTTTACTTTCTTTATTGGTTCTAATAACTATTAGGTTAATTATTGATCTATTATTTGACATAGGACGTTCTCCTAGGGGATTCTGTCTGTTTTCTTTATTTGCTTTCCCTTCTCGTGTAATTGCTGTCACTAGTTCTCAAATATGGAACTTGTCAGGGACTTGCAATTATATGTTCATCCCTTGCGGTCTTGCCCCTTCAGCCTGAAAGTGTGATATTTATATTTCATTATTCAATAATTATTTTTGTGCGCTTTCAAATTCCATTTGTAATATAACATTATCTTGAATGATGTATCATTCAGTAGTTCTTGAATGATGTTTTAAATATAAAAAGTGTGATATTTTATATTTCATTATTCAATGATTCTTTTTGTGCACCTTCAAATCCTGTTTGTTAATATAACATTATCTTGAATGATGTGTTATAGTACGGCCAAAGTTTTGAGGAAAAAGCCAAGACTCATGCTAGTTAATGCAGTAGTAACTCATTTGAGGAATGTGATAATAAGGAACATCCGACCTTTTAAAGATAACCACAAGTTGAGGAGAGATTCTTGATTTTGCTAAATTATAATCCTCTTGTTTGTGTGCACCGTTCAAATTCCTTTTCTAGTTCTACTCTCTTTTTTGCTACATATAATCGGAGTTCATTTTTCGTAACTTCTATTAGTAGTCCTTTTCACCCTACCACTGGAAAGTGTTTTACTTGTATTTTTTGGTAGATTTTTTCAAACCATAATGTTAGCAATTTAATAGAATTTGACTTTTATGGGTTGTTTGAAAGTTTTCACCAGGCACACAAGGCGAAGGATATGGCGAAGGCTACACATCCATCATAGTAGAACGATTTAATTATTCATTGATGTGATGCTTGTTACAAGTTATAGCATTATATTTGCAGTCCTGGTTCTGATGCATTTTTACAACTTGCTTCTCACCCAGATGTTTGATGCAATAATTTGTGACCCTCCTTATGGAGTGCGTGCCGGAGGGCGTAAATCTGGCGGTCGAAAATTGTTAAAAGGAACCGTTGCTCCTTACACGGTTCCAGACGACAAGAGAACAGACCATATACCATCAACTGCAGCTTACAGCCTTGTTGAGTGTGTGCATGATTTACTTGACCTTGCTGCCAAGATGCTTGTGATGGGTGGCAGGCTTGTATTCTTCTACCCCGTATTGAGGGAAGAAGATAGTGTGTTTAACCAATTCCCAGAACATCCTTGCTTTACTTTAATCAGTTCCTCCGAGCAGATCCTGAGCTCACGATACAGCCGGGTTTTGCTAACTATGGTAAAAAGAAGTTCATACACTGAAGAAATGGCAGAGACAGCAAGATTAAAACATGAAGAATTCAGGGAGAACCATTTGAAATGGTTACAAGATGGTAATCTCCATTCTGCAGTTTTCAGCCCCTCCATTGATCCCCAACTTGCAGTTGCTGAGAATTGCAATGTGAGTAAAGACCCAAAACCAAAATACAGAGGAAAGTATGTATAATTGGAAGTTAGTGTAGGTGTTGATTTGCTAATTCTCTGAATTTTCTAAGCCCTATGGATTTTGGTTATGTTCATGCAGTTTGAAAGAGTAGTGTGTGGTTCTATTCTTGAATTTTATTAATTTCTAATGTCTGTCAACTTTCAACTTTCAAATATATTTCATAGGTTTCTAACGTTCGAAATTTTAGAAATTAATTGTTATACTAAATGTAAATTTGGATCCTAATAATGTTAAGTAGTTTACTTGCATACAATTTTTAATTTAAGATAAAATATTATCA ATGGGAAGAAAAAGGGTTTAAAGGGTTTGGGCGCAATAAGAGTACCAAAACCCCGAGTGTTTCAGTCCATAGCTTCGTCCATAGCTTCGTCTATAGCTCTCCTCTTTCTCCGAATCAGTTCGTCAGTTTTGAAGAAGTAATTGGAACAAGCAGCTATTAGATTTAAGTAAATGTGGTATCTCTGTGTGTTCTATCACCGGCTTTTGGATTACAGGAAGGCCGAGGTCGAGTCTCTGGCCGAGTTGTTTCGTGAAAATGGCGACCACAAAGGGGAGAAGTTGGAATGGAAGCTTCCTCTCCATCATCACCCTGATTCTCCTTTCCATTTCGTGAACCTTTCTTCTGACGATCTCGCTCGGAACATCGCCAATCGAAGTATACTAGTGAAGGGGATGTATGAACTGTGGGGTGAAGGAAGTGACTACGAGGAGCTAGAGGAGTCTATTAGAAATTATCCGGAAGAACGGAAGTCGCCATACTTACAACCCGGAAGCTCTTTCAAGATTTCTGTAGAGAGCTTTGGGAAGGCTATCAGCTTCCAGGAACAAAATGAACGTATTCAGGGGCTAGCATACATCCCTTTCAAGGGTCAAGTTAATTTAAAAAGTCCAGATCATAAATTCTGTCTTATGGAAACTGCTGATTACGGACTCAATAATGGACTTCCACCAATTGCTCAAAGGAGGATTTTTTTCGGCCGGGAGGTCGGTGGTGCCGACAGGAAGCTTATACCAACATATCAGTTAAAAAGTCGCACTTATCTTGGGCCAACTGCCATGGATGCTGAAATGGCTTTCTTAATGGCCAACCAAGCATTAGCAACAGCAGGAAAACTTGTCTATGATCCTTTTGTTGGCACTGGGAGCATTCTTGTTGGTGCAGCTCATTTTGGAGCAATGACAATGGGTGCAGATATTGACATTAGGGTGGTACGTGATGGTCGTGGCCCTGATTGTAATGTTTGGAGCAATTTCAAGCAGTATGGATTACCACCGCCAATTGGACTGTTAAGAGCCGATAATAATCTTCCTCCCTGGCGTCCAGGACTGAAGGAGATGTTTGATGCAATAATTTGTGACCCTCCTTATGGAGTGCGTGCCGGAGGGCGTAAATCTGGCGGTCGAAAATTGTTAAAAGGAACCGTTGCTCCTTACACGGTTCCAGACGACAAGAGAACAGACCATATACCATCAACTGCAGCTTACAGCCTTGTTGAGTGTGTGCATGATTTACTTGACCTTGCTGCCAAGATGCTTGTGATGGGTGGCAGGCTTGTATTCTTCTACCCCGTATTGAGGGAAGAAGATAGTGTGTTTAACCAATTCCCAGAACATCCTTGCTTTACTTTAATCAGTTCCTCCGAGCAGATCCTGAGCTCACGATACAGCCGGGTTTTGCTAACTATGGTAAAAAGAAGTTCATACACTGAAGAAATGGCAGAGACAGCAAGATTAAAACATGAAGAATTCAGGGAGAACCATTTGAAATGGTTACAAGATGGTAATCTCCATTCTGCAGTTTTCAGCCCCTCCATTGATCCCCAACTTGCAGTTGCTGAGAATTGCAATGTGAGTAAAGACCCAAAACCAAAATACAGAGGAAAGTATGTATAATTGGAAGTTAGTGTAGGTGTTGATTTGCTAATTCTCTGAATTTTCTAAGCCCTATGGATTTTGGTTATGTTCATGCAGTTTGAAAGAGTAGTGTGTGGTTCTATTCTTGAATTTTATTAATTTCTAATGTCTGTCAACTTTCAACTTTCAAATATATTTCATAGGTTTCTAACGTTCGAAATTTTAGAAATTAATTGTTATACTAAATGTAAATTTGGATCCTAATAATGTTAAGTAGTTTACTTGCATACAATTTTTAATTTAAGATAAAATATTATCA ATGTGGTATCTCTGTGTGTTCTATCACCGGCTTTTGGATTACAGGAAGGCCGAGGTCGAGTCTCTGGCCGAGTTGTTTCGTGAAAATGGCGACCACAAAGGGGAGAAGTTGGAATGGAAGCTTCCTCTCCATCATCACCCTGATTCTCCTTTCCATTTCGTGAACCTTTCTTCTGACGATCTCGCTCGGAACATCGCCAATCGAAGTATACTAGTGAAGGGGATGTATGAACTGTGGGGTGAAGGAAGTGACTACGAGGAGCTAGAGGAGTCTATTAGAAATTATCCGGAAGAACGGAAGTCGCCATACTTACAACCCGGAAGCTCTTTCAAGATTTCTGTAGAGAGCTTTGGGAAGGCTATCAGCTTCCAGGAACAAAATGAACGTATTCAGGGGCTAGCATACATCCCTTTCAAGGGTCAAGTTAATTTAAAAAGTCCAGATCATAAATTCTGTCTTATGGAAACTGCTGATTACGGACTCAATAATGGACTTCCACCAATTGCTCAAAGGAGGATTTTTTTCGGCCGGGAGGTCGGTGGTGCCGACAGGAAGCTTATACCAACATATCAGTTAAAAAGTCGCACTTATCTTGGGCCAACTGCCATGGATGCTGAAATGGCTTTCTTAATGGCCAACCAAGCATTAGCAACAGCAGGAAAACTTGTCTATGATCCTTTTGTTGGCACTGGGAGCATTCTTGTTGGTGCAGCTCATTTTGGAGCAATGACAATGGGTGCAGATATTGACATTAGGGTGGTACGTGATGGTCGTGGCCCTGATTGTAATGTTTGGAGCAATTTCAAGCAGTATGGATTACCACCGCCAATTGGACTGTTAAGAGCCGATAATAATCTTCCTCCCTGGCGTCCAGGACTGAAGGAGATGTTTGATGCAATAATTTGTGACCCTCCTTATGGAGTGCGTGCCGGAGGGCGTAAATCTGGCGGTCGAAAATTGTTAAAAGGAACCGTTGCTCCTTACACGGTTCCAGACGACAAGAGAACAGACCATATACCATCAACTGCAGCTTACAGCCTTGTTGAGTGTGTGCATGATTTACTTGACCTTGCTGCCAAGATGCTTGTGATGGGTGGCAGGCTTGTATTCTTCTACCCCGTATTGAGGGAAGAAGATAGTGTGTTTAACCAATTCCCAGAACATCCTTGCTTTACTTTAATCAGTTCCTCCGAGCAGATCCTGAGCTCACGATACAGCCGGGTTTTGCTAACTATGGTAAAAAGAAGTTCATACACTGAAGAAATGGCAGAGACAGCAAGATTAAAACATGAAGAATTCAGGGAGAACCATTTGAAATGGTTACAAGATGGTAATCTCCATTCTGCAGTTTTCAGCCCCTCCATTGATCCCCAACTTGCAGTTGCTGAGAATTGCAATGTGAGTAAAGACCCAAAACCAAAATACAGAGGAAAGTATGTATAA MWYLCVFYHRLLDYRKAEVESLAELFRENGDHKGEKLEWKLPLHHHPDSPFHFVNLSSDDLARNIANRSILVKGMYELWGEGSDYEELEESIRNYPEERKSPYLQPGSSFKISVESFGKAISFQEQNERIQGLAYIPFKGQVNLKSPDHKFCLMETADYGLNNGLPPIAQRRIFFGREVGGADRKLIPTYQLKSRTYLGPTAMDAEMAFLMANQALATAGKLVYDPFVGTGSILVGAAHFGAMTMGADIDIRVVRDGRGPDCNVWSNFKQYGLPPPIGLLRADNNLPPWRPGLKEMFDAIICDPPYGVRAGGRKSGGRKLLKGTVAPYTVPDDKRTDHIPSTAAYSLVECVHDLLDLAAKMLVMGGRLVFFYPVLREEDSVFNQFPEHPCFTLISSSEQILSSRYSRVLLTMVKRSSYTEEMAETARLKHEEFRENHLKWLQDGNLHSAVFSPSIDPQLAVAENCNVSKDPKPKYRGKYV Homology
BLAST of Clc09G16370 vs. NCBI nr
Match: XP_038888658.1 (tRNA (guanine(10)-N2)-methyltransferase homolog [Benincasa hispida]) HSP 1 Score: 958.0 bits (2475), Expect = 3.1e-275 Identity = 464/480 (96.67%), Postives = 470/480 (97.92%), Query Frame = 0
BLAST of Clc09G16370 vs. NCBI nr
Match: XP_031744574.1 (tRNA (guanine(10)-N2)-methyltransferase homolog [Cucumis sativus]) HSP 1 Score: 951.0 bits (2457), Expect = 3.8e-273 Identity = 457/480 (95.21%), Postives = 471/480 (98.12%), Query Frame = 0
BLAST of Clc09G16370 vs. NCBI nr
Match: XP_008447182.1 (PREDICTED: tRNA (guanine(10)-N2)-methyltransferase homolog [Cucumis melo]) HSP 1 Score: 942.6 bits (2435), Expect = 1.4e-270 Identity = 453/480 (94.38%), Postives = 469/480 (97.71%), Query Frame = 0
BLAST of Clc09G16370 vs. NCBI nr
Match: XP_022932935.1 (tRNA (guanine(10)-N2)-methyltransferase homolog [Cucurbita moschata] >XP_023511692.1 tRNA (guanine(10)-N2)-methyltransferase homolog [Cucurbita pepo subsp. pepo]) HSP 1 Score: 938.7 bits (2425), Expect = 2.0e-269 Identity = 451/480 (93.96%), Postives = 466/480 (97.08%), Query Frame = 0
BLAST of Clc09G16370 vs. NCBI nr
Match: KAG7011460.1 (tRNA (guanine(10)-N2)-methyltransferase-like protein [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 933.3 bits (2411), Expect = 8.2e-268 Identity = 448/480 (93.33%), Postives = 465/480 (96.88%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy Swiss-Prot
Match: Q7TNK6 (tRNA (guanine(10)-N2)-methyltransferase homolog OS=Rattus norvegicus OX=10116 GN=Trmt11 PE=2 SV=1) HSP 1 Score: 303.1 bits (775), Expect = 5.5e-81 Identity = 176/476 (36.97%), Postives = 266/476 (55.88%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy Swiss-Prot
Match: Q9CWH5 (tRNA (guanine(10)-N2)-methyltransferase homolog OS=Mus musculus OX=10090 GN=Trmt11 PE=1 SV=1) HSP 1 Score: 302.4 bits (773), Expect = 9.3e-81 Identity = 173/475 (36.42%), Postives = 260/475 (54.74%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy Swiss-Prot
Match: Q5R962 (tRNA (guanine(10)-N2)-methyltransferase homolog OS=Pongo abelii OX=9601 GN=TRMT11 PE=2 SV=1) HSP 1 Score: 300.4 bits (768), Expect = 3.5e-80 Identity = 176/455 (38.68%), Postives = 257/455 (56.48%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy Swiss-Prot
Match: Q7Z4G4 (tRNA (guanine(10)-N2)-methyltransferase homolog OS=Homo sapiens OX=9606 GN=TRMT11 PE=1 SV=1) HSP 1 Score: 297.4 bits (760), Expect = 3.0e-79 Identity = 173/455 (38.02%), Postives = 257/455 (56.48%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy Swiss-Prot
Match: Q05B63 (tRNA (guanine(10)-N2)-methyltransferase homolog OS=Bos taurus OX=9913 GN=TRMT11 PE=2 SV=1) HSP 1 Score: 297.0 bits (759), Expect = 3.9e-79 Identity = 171/454 (37.67%), Postives = 256/454 (56.39%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy TrEMBL
Match: A0A1S3BG98 (tRNA (Guanine(10)-N2)-methyltransferase homolog OS=Cucumis melo OX=3656 GN=LOC103489693 PE=4 SV=1) HSP 1 Score: 942.6 bits (2435), Expect = 6.6e-271 Identity = 453/480 (94.38%), Postives = 469/480 (97.71%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy TrEMBL
Match: A0A6J1F3J0 (tRNA (Guanine(10)-N2)-methyltransferase homolog OS=Cucurbita moschata OX=3662 GN=LOC111439552 PE=4 SV=1) HSP 1 Score: 938.7 bits (2425), Expect = 9.5e-270 Identity = 451/480 (93.96%), Postives = 466/480 (97.08%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy TrEMBL
Match: A0A6J1ICG5 (tRNA (Guanine(10)-N2)-methyltransferase homolog OS=Cucurbita maxima OX=3661 GN=LOC111472466 PE=4 SV=1) HSP 1 Score: 928.3 bits (2398), Expect = 1.3e-266 Identity = 445/480 (92.71%), Postives = 462/480 (96.25%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy TrEMBL
Match: A0A6J1D5Q5 (tRNA (Guanine(10)-N2)-methyltransferase homolog OS=Momordica charantia OX=3673 GN=LOC111017553 PE=4 SV=1) HSP 1 Score: 897.5 bits (2318), Expect = 2.4e-257 Identity = 438/484 (90.50%), Postives = 458/484 (94.63%), Query Frame = 0
BLAST of Clc09G16370 vs. ExPASy TrEMBL
Match: A0A5A7TF32 (tRNA (Guanine(10)-N2)-methyltransferase-like protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold67G003460 PE=4 SV=1) HSP 1 Score: 869.8 bits (2246), Expect = 5.4e-249 Identity = 421/452 (93.14%), Postives = 438/452 (96.90%), Query Frame = 0
BLAST of Clc09G16370 vs. TAIR 10
Match: AT3G26410.1 (methyltransferases;nucleic acid binding ) HSP 1 Score: 742.3 bits (1915), Expect = 2.5e-214 Identity = 359/480 (74.79%), Postives = 409/480 (85.21%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (cordophanus) v2
Date Performed: 2022-01-31
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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