
ClCG06G011600 (gene) Watermelon (Charleston Gray) v2.5
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.TTCTTCTTCTTCTTCTTCTTCAAGGCTTAATTTTCAAATAATCAGTCCTTTAATTTACTTAATTTTAGCTTCCATTTTAATGGCTTCCTTAGAGTTTTCTCATAAATTCCCTTTCTTTTTACTTCTACCTTTCTTCCTCCTTCTCCTTCTTCTTCTTTGCTTCTTCCCACCAAATTATCAAAACCCTTTCCCTTCCATAATATCCCAAAATCTTCCCTTTTTTCATTCATCCAAACAACCTCGGCCACCGCAGCCACCTCAATCCACCCTTCAATTTCCTCCCGCCGCTCCGCCCTCCGCCGTCTTACCGCCGCCACCACGGCCTTACTCCTCTACCCACAAGGTCTGTTTGGATTGTTTCTGGCGTGTTTGATAATAATTTTATTTGGATCCATTTTGAAAGTATGTGTTTGTTCCTTCCAGTTTTCTTATTACGATAATTTTCTTAAAAACACTTACTTTTTAAATTTGTAATAAGTGAGTAGAAAATTGATAACAAAAACATATTTGAAGTATTAACCTGGTTTTTTAAGGTTTAAAGATAACTTTGTTTGGATTATTTAATTTTGTTTTTATGTATACTTCCTCCCATTTCTTTATTGTAGTTTTTATCTATTAAACAAAAGATTTAAGTTTCTAGTCAATTTTTTTAATACGAGTGAAAAATGATCAAGAAACATAAATGTATCTTAATTTTCAAAAACCATGTTTATCGAATGAGTTTCTTATTTCAATGGATGAGTTTTCTTTTTTTTAGTTATGAAGTAAGCTTAAGTTGATGGATTAAGATAGATTTAATTTAATATTTCATATTACATAGTTGGATTTGTTTAGTGCAGAAATATGAGATGATCGAAGAGGATTTGGTCGAAGCTCGAGCGGCGATCCGAAAAGCCATTGTAACCCGAAACTACTCATCGGAAAAGGAGGAGAGTTTCATACCTAGAGGAAGGGTTTACAGAAACGCATACGCTTTCCATCAGTTAAGATTCCTACTGTCGTATTTAATTTCCTTTCCATCTCCGGCTCTATAAAGTTTCCAAATGCTTTGTTTGTTTCTTGAAAGATAATTATTATATTTATAAGGAAATAAATAATGATGATAACATATTAGGGAAAAAGAAAAACGGATCACATTCTTAGTATTGCATTAAACGTTTCACACCCCAAATCAAGACTCATAAGTTTTCCCTCTATAATTTTTTATCTTCATTTCAATTTGGTGAATAAATGATCTTTTAATTTAAAAACCTAATTTTATGATTTTATGATAAGTTTTTATTTTTTATTTTTTTTTAAAATTTTTTAAATACCATTTTGATTTTATTTTAGCTTATCTACTTTCAATAATAAACTAACAATAGGAGTGAATTTAAGATCTATAAAAAATACAAAGACTTAATTGAACAAATTTCAAAATTTAGGGATTAATATGATATTTTAATTTATTTTTTCAAAATCAAATAAAAATTTTGATGTCATTCTTGGTAATTTTGTTTTTCAATTAAGCCAAATTAATTAAATGTACCGTAAACAAAAAAGGAGTAAATGTGTTGAATACTTCTCTAACAAAATTTGGTGAAAATTTTTACAAATGCAAGATGGAAACTTTCAATTTTCAGGATAAATGTTTTATCAATTATTATTTTTGAATTAAACTCATTTAGCGTGCTTAAGCTATTTTCAAGAGTTCTGTAAAAATAATAATAATAAATAAAATAAACTAAAATAAAAAGCTATTTTAAAATAGTATAATAATTAGGAATGAAAGGGCAGGGGCAGCCTGCCCAGCCGCTTGCCACGGACTAAATCTAGGCTGCCCTAAATAGTCCAACATCGTCTCTATTGACATTGTTCCTTTGTGTTGTTTTTAGCCAAACAGTTGTCCATTCATCTTTAATTTAATTATTTATTTTTATTTATTTATTTACACTTTATTAACACTGCTACAATTGTGCTTTTAGTTCTTCTCTAAGTCCCTAAATTTACATCTTTATTTTGTTTTGTATTTTTATTCCTAAATCTTAAACCCTAAACTTGACTTTTACTAACAACTTCATTTTAGGGTCTATCCTTATTCTCTGAAGTTTGTATTTTATTTTATTTTTTAATTTGATTTGTAGTGACTGAAGGTTAGAATTGGATGATGTGACAATTTTTTCAATTGGTTTGTGAGTTGATGATTTATAAGAGTTGGATGTTTGGTATAAAATTGTAGATTTAAGTACTATTCTAACCTACGTACTTTTAACTTTAATTCGTTTAGTTTGTCCTATGAAAATGTTCATTTTATTTTATGTAAATCCAAAAGTGACTATGTTGTTCCACATTCTATGATAATTTAGAAAATTTCAATATATATGTTATTCATCATAAAAACTCTTTTATATAATTTTATGGTTACATTTTAAGAAGTTTAATAAATAATCGTCGGACTAACATTCTTTGGATAAATATGAAAATAAATAGTCTAAAAATATTCATTAATGTATATAGGAACCAAAATGTACCTTTTGAAACAAGAATGATAAAGAATATTTATATAATAATCAACATTTACTAATGATTTTTTAACTAATAATTTGTATGTATTTATTTATTTGTACATAAGCGCAGGAGTCATATTGAGATGGTGAAGAGGTTCAAAGTATGGACTTACAAAGAAGGAGAGCAGCCATTGGTACATGATGGGCCGATGAAACACATATACTCAATTGAGGGCCATTTCATTGACGAGATGGACGGTGGAAAAAGCCCATTTTCGGCCCATAATCCTGAGGAGGCCCATGTCTTTTTCTTGCCCATAAGCATCGTTTACATTGTGGATTACATATACAAGCCCATCACCACTTACGCACGTGACCGTCTCGTTCGTATTTTCACGGATTACGTGAGCGTTGTAGCCAATAAATATCCCTACTGGAACCGAACCGGGGGAGCCGATCATTTCATGGCCTCCTGCCATGATTGGGTAACTCATTATAACACTCTATCTATTGCTTTTTAATTTGGCTATTAAAAGAATAAATTAAGCAAATTATTATAAATGAAAAAATAATAAACTATTTACAAATAGCAAATTTCATCGATCAACTGGTATAAATTTCTATTGCTCTCTATATCACTGGGCAATAGAATCTATCATGGTTTATCGCTAAAATTTTTCTATATTTGTAAATTTTTTGACTCATTTTATTATATTTAAAAACAATCTAAAAAAATTATTTGTCTGCTCATTTATTTTTAAAAAATTATTCCTAATTTTCTACTCTTAAATATTTTCATTTATATATGAGATAGAAAAGTGTTAGAATTTTGAATGAAAATTGAGGTTTAAATTAGATGTAACCATGTTTTTACTCTCAAATCTCATTTTAGACCACTGTCGCACTATTTAGAGTCTAAGATTATAACAGAATTCTAATTCACGGTTAGTTTTAAAATATTTTTGGTAATATTTTAACTTTTAAAAATATGTTTGATTTTTCTTAAGCATGAAACAAAATTTAATTTAGACTTTTAAATTTAAGCTCATGAATTTCATATTTATGTTTTCTCCAAAATTTAAAAAGTTTTTAATTTTTCTTTGACTGCTCATAGGCTAATAGCTAGGTTTTTCAATTTTCAATTTAGTATCTAGTAAATCCTTCTTTTAATTCACGAGACTTTTGTTTATAAAATTGTAAGATTAGAACTCTTTTGGGTACAAAATTCAATATTAAAATTCATAAAAACCCTAAAACATATTTAGAATTTGATTTATTGAAGTTGTAATTTATCATATGTTTTAATTAGGTTGAATTAGACCTTCAACTTTAAAGGTCATCAAGCTTTTGTGTCATACGGTTTCTTAAGTTAAAAAAGTAAATAAATAAATAAAAGTGTAATATGTTTTTCAATTTTCAATAATGTGTTAATAAATCATTGTTATATTGAAATGTGTGATTTATCTTTTAAATTACACATATATTCTATCCATCCATCTATGAATTAGTAAACAAACATGTTCATTCAACAATATCAATAGGATTTTGCTTTCGCAAATATCATCAAATATTATAACAGTAAATGTTTCAGAATTTACTTTCAATGATGTTCAAATAATTTAAATTTTTTTTAAAATTACTTATTTTCTAAATTAAACACTTAAAAGTTCATCTAAACATGCTCAAAAGGATTTTGCTTCTGCAAATATTATCTTTATAACTCCAAACTAATATTAAATAATGATAGGTTTATAAAATTTTGATTTTTTTTTTTTTAATTTATGTCTAGCTTCCATTTTGTGTGAATGATTTATTAGATAATTTTCTTAAAACTAGAAACGGTTAAAATATGATAGTTTAAATGCCTATGATTTATTTAAACCATATTAATATCTAAATTTGATTAGAAATTTTGTAATATATTTTATTTATAATTTGTGGATGAAGAATTGAGGTTAACAAAATTAATATTTTGGAAAGCTTTCAGGCACCTGAAATCACACGTGAAGATCCTAATCGCTTCAAATATTTCATCAGAGTTCTTTGCAATGCGAACACATCTGAAGGCTTCAGTCCCATGCGAGATGCATCGTTGCCAGAGATTAACTTGCCTCCAAGTTTCCAACTCGATCTTCCTCAATTAGGCCAACCGCCAGAGAAGCGTTCAATTCTAGCATTCTTTGCTGGTGGAGCGCATGGATTCATTCGCCAGATTTTAATCGAGCATTGGAAAGACAAAGATGATGAAGTCCAGGTCCATGAGTACCTTCCTCGAGGACAAAACTACAGCGAATTGATTGGGCGAAGCAAATTTTGTTTGTGCCCTAGCGGATACGAAGTTGCAAGCCCTAGGTTAGTGGAAGCAATCCATGGTGGTTGTGTACCGGTGATAATCTCCGATTATTACTCGTTGCCATTTGATGATGTGCTCGATTGGAGCAAATTCTCTCTACGAATTCCGCCAGAGAGAATTCCGGAGATCAAGAAGATCTTGAAAGAAGTTTCAACGAAGAAGTATTTAAAATTGCAGCGAGGAGTGATGAAAGTGCAAAGACATTTTGAAGTTCATCGGCCGGCAAAGTCATTTGATGTGTTTCATATGGTGCTCCACTCTGTTTGGCTTAGACGGCTCAATATAAAGGTTACACATTGATGCTATTTTATGCCGTGATACTGATAGATATACATAGAATACATGCAGAAAATTTGTCATTAAAGGATTAAAAAGGAAACGAGAAAAAGGGGAATTATGATAATGCCCATTCAAAAGCAAAATGACATGGTGGTGGCTTTAGAATATTAATGAATAATTTGGAAAATATTTATATTGTATATTCTCATTATAGTCAGAGTTTTGACCTGGAGTGATATATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATGTGTAACTATTATATTTATGTTTATTTTAAATTATATATATGAATAATTTGATCGGTAATTATTATTTTTCTAATATAGATTCCCACAAATTTCTCGTGGTGATTCTCCATCCTGACTACAGTGGATTGTGGTGAATTTCATACGAATGGAGAATAAAATGATGAGCAGAGACAAAAAAGTCATCTTGACTTGTGGACATCCTGCCCTCACCACTATTTTTTTCTTTCTCAAGATTAAGCTATCTAGAATTATATTTTTTTGGTTGTGTCTTTACCTATTTAAAGTAATTAAAATATTCATCAATATATTTGTCAAATGAAAGGTTTAGTATAGATGACAAGCATCCATCGATATTTTTCATATCTCATACAATATTCATATATAATAAAAGAAAATAATAATCATCCGTATGAAATAAGTTTGTAAACCATAATCAGTTGACTTAATCATCAACAAAAGAATTGAGAATAATATTACTTGGATGGGAGAGGTTCAATCTATGATAAGTGGTGAAAAAAAATTTAATAATATAAGTTCTAAGATATATTGAGTACTAGTATAATACTAAATTCTTCGTAACCCACCTGCACAACCTCTATGGATGTACTTGAAATTAGTTGGCCAAACACGACTCAAATGGTTCCTTAAAACCCAACCTAGGCTGCCTTCATGACTAACCAGACTCCAAACCGCATCAATATTTAGCTTCCACGAATTGGGAAAAATCAACTAATAGATGACAACTAGTTTGAACTCCTTCCATAACCTATTAGCTTAAGCTTTTGGGTTAATTAATGATTATATTCATGGACGACGTGTTTTATTGTGGATAAGTGTGCAATTATGGGCACTATGGAGCAAACCAATTATGGGTATAATTAAACAGTTTAATTAATCAATCTCAAATCATTAGAATTTGCAAGTCTATTAGGTTCCCTTACTAGCTCATAACAGATTACAGACCAATGTTTTAAAAGAAATAATTTGAAACGTTCAAATCAATTTAGGGAATAATATGTTAATGGTATATAATGTGTATAGATATATCATAATATATTGTTCATTTTGAACTAAACTATGTGATATAGAAGATTAAAAGTTAATATGAATGAGATCCATATAAAAACAATAGGCTATGAGAAATTTATATATTTGAATATGATTCAAATATTCATTTAATTAAATATGAGATGGTGAATTAAAATTTATTAATTATGTATTTATTTAATTTAATTATTCTTTTTGTTATTTAAAAATATTTAAACCAGTTTTGTCATTCAAACCAATTATCTTACTATAATAGTACTATAATTTTTCCGAAAACTGTTAAGACTTTTTTCCATTTATTTATCTTTGACCTAGGGGTAACTAATCTCTCTCTCTCCAATGCTTTTATATATATATATATATATATATATATATATCAAACTACTTAAAACTATTTGTTTTGTGTCTTAATTATTTAATTGTATTTTGAGCGAAGAATATTTGAAGTTTACTACTGTGTGAGTTAAAAAAAAAAAAAGAAAAAATCACGACCTTCTATAATATAGTAATTAAATTATATGCATAAATATATTTGTAAGATTAAATATTGATAACAAAGATCAATTGATATTTTTGATATCTTTGTAATATTCATATATCATAAAAATTATTAATTAATCATTAATATGAACGTAAGTTATTAAATTGGGTTCACCGATGGTCAACAAAAGCATTAAGAATAATAGTGTGCTCCAATATAATAAGTTCAATCGGTGAAAAAAATAAGAAAAAAAAAGAAAAAAACTCATAACGTTATTGTTACCGTGTTAAGATAGTATTAAATTTTACCTAATCTATCTTTTAGTTAATTATTAATTTAACATAATATCATCCAAACATAATAATGTAACATATTCAGATTCATTTTTTTGGTATATTATAAGTCCAAAATTTTGAGTTAACCTTTGATTCCAACGCAATCAAAATTTAAAGGTTAAAATCCAATGGTCCAACTTAAAAACTTTTATCTGCCAAAATGAGAATAGCTTAATAGGCATAATGTTTGTGCTATCAATCTTCAAGTTAGAAAAAAGTAATTCTATTTTTTTCATCGAGTCCGAGTAAATACCAAAGGTCTTGAACAATCAATTAGGTAGAATAATAGATATATGAGTGATAAAAATATAGGTAAATATGGTCCAAGTGCGAGCATACACTATTGGTGAAGTAATAATCTTGGAGTATCCCAAGAATGAATCTCATAAGACTAGTTCAAATTTATTTTTGAGTTGAATGTTTTTAGTTAAAAAAGATATAAAAACAATAAACAATGACAAGTGAACAGAGATATAACTATCCTCCAACCATTCAAGCAATGTGTCTTGAGCAATGCGGTCGCATCATACCAAAATATTAACTTAACATAAGCAAGAAACTTCTTCCATTCGGTATTGTATCAAATTCTTGTAAAAGCTCTAAGCAACTAATCCTATATTTCGATGGTTAACTGGTCCCTGGATTGATTAAATGCAATTCCTTTACCCTATGGTGCACCTTATTTTTAAGGCTACAAAACTGTTTTATTTCGAGACTCTTGGTCTCATACATCTGTTTATGCTTAACCTTCTAAGAAGTAAGACTCCACTAGTATGCAAGTTAAAAAGGGATGAAGCATAAACAATGATTAAACCATACTACCCTAGTATTTATACAACTGAATCCCTCCGAGGTTTTTAGCTCATGATTAATACTAAATGAATGGTTTTCATTGACACATAAACCATGATTACAATAATAGTCACTAAGGAGAAAATGAAAGCAAGTAAGAAAAAAGAAATAAAAGTAGATGGTGCTGGAAGTTGATAAGAACAATTCATTTGGAACACTCCATCTCTTAAATCGATCCCTAAACTTAATTCTCTTATGTCAAGGTCAAATTTCGTCTCTACACTTTATTCTCACAAGGTATGGATGACCTAGAGCTAAAGTACTTTAGAGGAAAAGTAGAGAATTGAGGTATTTCCTGAAGGAAGGTGTGACTCCTCTTTAGGATTGTATGATCTTTGATCATGAACGCTTCGTCATCCTTTTATAGGCCTCCAAATGGTTGTAGGCTGGCTGAAACTGAAATTTCGAGGTTTGATAGTTGATTTCGACATTGAAAAGCAAGTCATAACCAAAGGAATCACAACTAAAATTGATTGGGCTGACTTCTAAATTTTAAGGTTTTGATATGGTCACATTGATTGCAAGTGATGTAGACACGACACAACATTTTCTCCAAAACGGTTGATTTTACCTGTGAAAGTCTACAAATTCATCCCAAATCAGTAAAAAAATACCTTTCTAAATTCATTTTGTACACTTACAACCTTATGATGGGGCAAAATATATTCATATGCTTATTTTCTAAGTAAAAAGTATGAAAATAATAAGCTAAAACATGCATTTCATGCAGTGTATCACATAACAACTCAAAAGATAAATAAGTGCATGAATCACATAACAACTGAAAAGATAAAAGAAGTATTGCTCTAAAATTAAAAAAAAAAAAAAAAAACCTTCTTACATCACATAGAAGTAATTTTTTGTATCACAAAAACCAAACTTCTCTCAAGAGAATAGATGAGAGATCCAATGTAAATCCGACTTTCTATTCACTTTATGGGATTATTTTCTTTTTAGTTCCACACCCTATCCTTGTCCGTACTTTCTATTGACCTTCCTTAAGAACTTAATTAGGTTTCTTTATAAAGATAAAAAAACTACTTAGTGAGGTTAAGGACCAATGCCTAGGGTCTTATCTTTATATAGACATCTCCCATACCACAATTTGTTTTCTATTTTATCTTTTGCTTACTTGGCTAAAAAATAAAATAGTATATAACGTAGATGAGACACATTAATGATAATATTAAATCTAAATAAAATCTAACTAGCTTTTGATAAAATGTATGAGTGATAAAAATATAGGTAGATAAGGGCTGAGTGCAAGCATAAGATGATTATGACTTAAAAGACCAATGAATCTAAGGTAACTAATAAAAGTATTGGGAATGCAAGTTGGAAATGCAAGTAAAAGCAGTAAACGATGATGGATAAATCGGGATAAACAAGGATTCAACCTTCTGGTGATGTGCTTGTGATGCAGCCGCATCATACGAGCTACACATGAACAGAAATCAACAAAGGGAATGCACAAAACAAAGTGTATGAAGTGTCACCACAGGCTTTCATGGGATGGATCTAATGAGGGACTGACTAAATAGCAGAAATGCCCAAGGAGAGTTGTTGCTTGAAATGGAAAGGTTCTACTCCTTTATATAGGGCAAGTTGGTTGAGAAATGACCTAAAATAATCATGTTCTAAACATTTTTTCAGCATTTTAGGTGTTGAATAATAGCTTTGATCGAGAAAATAGCAGCCATAATTGACTAGACGCGAATCTGATAAATTAGGCTTTTTGATGCAGTCACATCACATGGGTGATGCAATCGCATCAAAGTAAAAAATCAACATAAAAGCTCATATAATCAGCCCAAATCACTAAAAACACACTACAATTAAAAGACATGTACTTGTTCATTTTATCTAATTTAAGGTATCATGTGGTCAAAATATAAATCGTTTTACTATAAAAAAAATAATAATAAAATAGATAGTAAAAAACATGCACTTTTTGTATCTATCATGCATGGTGTATATTCTTTTCATTTATCTACATTGTCAAATTGGTGTGATCTTTATTTCAATTAATAAGTTTTCAAAGAATGTACATACCAACAAAAGTAAGACACAATGAATAATGTCATTATAGTATTTCTTTCTTTCTCTTTCTTCCTATCGCCACTTGTAGGGGGAATAGTAATAATACCAAATTACATGTACAATGATGGTTACAAAGTTGTCTCATGATTTTGTATCCGCAATATTTTGTGGCGGGATGAAAATCGCTTAACAAAAATTGTATGTTGAGATTTACAGCACAATTCCCCGTTGCAAGCACATTTTTGGCTACATGGTGCCACTATATTCTTGTAGCCACAACTATTGTCGCGACAAAGTGAAGATACACATTTATGATGCTCGGAATTGGAAATAGGAGGTGGTTGCAAATGTAGTCAAGCACACATGCCATTCTCCCCACCAACACCAACATCATTTCGTGGTACTTTTCTTTTAAAAAGCGTTTCGTCTCGTAGTACTTAATAATACTTTTTTTTTTTTAAAAAATAAAAAGTATTAATAATAACATCATAAATAAAAAATAACATTTTGGAAAGCTTTCAGGCGCCTGAAATCATATAAGAGGATCCTAACCTCTTCAATCAAATGAGAGATGTGTCGTTGAGATTAACTTGCCTCCAAGTTTCTAGCACAATCTTCCTCGATTGGGCCAACCATTAGAGAAACATTTAATTTTGGCATTCTGTTCTGGCGGAGTGCATGACTCTATGTGCCAAATTTTAGTTGAGCATTGGAAAGACAAAGATGATGAACTCTAGCTTCATGAGTACCTTCCTTGAGACTAGAACTACGACTAATTGATCGATCGAAGTGAATTTTGTTAGTGCTCTAGCGGGTATGAAGTTGCAAGACCTAGCTTAGTGGAAGCGATCCACAGTGGTTGTATACTGGTGGTAATCTCTAATTATTACTCCTTGCCGTTCAATGATGTGCTCAATTGGAGCAAACTCTCACTGCGAATTTCGTCAGAGAGCATTCCAAAGCTAAAAAAGATCTTGAAAGGAGTTTCGACAAAGAAGTACTTGAAATTGTAG TTCTTCTTCTTCTTCTTCTTCAAGGCTTAATTTTCAAATAATCAGTCCTTTAATTTACTTAATTTTAGCTTCCATTTTAATGGCTTCCTTAGAGTTTTCTCATAAATTCCCTTTCTTTTTACTTCTACCTTTCTTCCTCCTTCTCCTTCTTCTTCTTTGCTTCTTCCCACCAAATTATCAAAACCCTTTCCCTTCCATAATATCCCAAAATCTTCCCTTTTTTCATTCATCCAAACAACCTCGGCCACCGCAGCCACCTCAATCCACCCTTCAATTTCCTCCCGCCGCTCCGCCCTCCGCCGTCTTACCGCCGCCACCACGGCCTTACTCCTCTACCCACAAGAAATATGAGATGATCGAAGAGGATTTGGTCGAAGCTCGAGCGGCGATCCGAAAAGCCATTGTAACCCGAAACTACTCATCGGAAAAGGAGGAGAGTTTCATACCTAGAGGAAGGGTTTACAGAAACGCATACGCTTTCCATCAGAGTCATATTGAGATGGTGAAGAGGTTCAAAGTATGGACTTACAAAGAAGGAGAGCAGCCATTGGTACATGATGGGCCGATGAAACACATATACTCAATTGAGGGCCATTTCATTGACGAGATGGACGGTGGAAAAAGCCCATTTTCGGCCCATAATCCTGAGGAGGCCCATGTCTTTTTCTTGCCCATAAGCATCGTTTACATTGTGGATTACATATACAAGCCCATCACCACTTACGCACGTGACCGTCTCGTTCGTATTTTCACGGATTACGCACCTGAAATCACACGTGAAGATCCTAATCGCTTCAAATATTTCATCAGAGTTCTTTGCAATGCGAACACATCTGAAGGCTTCAGTCCCATGCGAGATGCATCGTTGCCAGAGATTAACTTGCCTCCAAGTTTCCAACTCGATCTTCCTCAATTAGGCCAACCGCCAGAGAAGCGTTCAATTCTAGCATTCTTTGCTGGTGGAGCGCATGGATTCATTCGCCAGATTTTAATCGAGCATTGGAAAGACAAAGATGATGAAGTCCAGGTCCATGAGTACCTTCCTCGAGGACAAAACTACAGCGAATTGATTGGGCGAAGCAAATTTTGTTTGTGCCCTAGCGGATACGAAGTTGCAAGCCCTAGGTTAGTGGAAGCAATCCATGGTGGTTGTGTACCGGTGATAATCTCCGATTATTACTCGTTGCCATTTGATGATGTGCTCGATTGGAGCAAATTCTCTCTACGAATTCCGCCAGAGAGAATTCCGGAGATCAAGAAGATCTTGAAAGAAGTTTCAACGAAGAAGTATTTAAAATTGCAGCGAGGAGTGATGAAAGTGCAAAGACATTTTGAAGTTCATCGGCCGGCAAAGTCATTTGATGTGTTTCATATGGTGCTCCACTCTGTTTGGCTTAGACGGCTCAATATAAAGTGCTCTAGCGGGTATGAAGTTGCAAGACCTAGCTTAGTGGAAGCGATCCACAGTGGTTGTATACTGGTGGTAATCTCTAATTATTACTCCTTGCCGTTCAATGATGTGCTCAATTGGAGCAAACTCTCACTGCGAATTTCGTCAGAGAGCATTCCAAAGCTAAAAAAGATCTTGAAAGGAGTTTCGACAAAGAAGTACTTGAAATTGTAG ATGGCTTCCTTAGAGTTTTCTCATAAATTCCCTTTCTTTTTACTTCTACCTTTCTTCCTCCTTCTCCTTCTTCTTCTTTGCTTCTTCCCACCAAATTATCAAAACCCTTTCCCTTCCATAATATCCCAAAATCTTCCCTTTTTTCATTCATCCAAACAACCTCGGCCACCGCAGCCACCTCAATCCACCCTTCAATTTCCTCCCGCCGCTCCGCCCTCCGCCGTCTTACCGCCGCCACCACGGCCTTACTCCTCTACCCACAAGAAATATGAGATGATCGAAGAGGATTTGGTCGAAGCTCGAGCGGCGATCCGAAAAGCCATTGTAACCCGAAACTACTCATCGGAAAAGGAGGAGAGTTTCATACCTAGAGGAAGGGTTTACAGAAACGCATACGCTTTCCATCAGAGTCATATTGAGATGGTGAAGAGGTTCAAAGTATGGACTTACAAAGAAGGAGAGCAGCCATTGGTACATGATGGGCCGATGAAACACATATACTCAATTGAGGGCCATTTCATTGACGAGATGGACGGTGGAAAAAGCCCATTTTCGGCCCATAATCCTGAGGAGGCCCATGTCTTTTTCTTGCCCATAAGCATCGTTTACATTGTGGATTACATATACAAGCCCATCACCACTTACGCACGTGACCGTCTCGTTCGTATTTTCACGGATTACGCACCTGAAATCACACGTGAAGATCCTAATCGCTTCAAATATTTCATCAGAGTTCTTTGCAATGCGAACACATCTGAAGGCTTCAGTCCCATGCGAGATGCATCGTTGCCAGAGATTAACTTGCCTCCAAGTTTCCAACTCGATCTTCCTCAATTAGGCCAACCGCCAGAGAAGCGTTCAATTCTAGCATTCTTTGCTGGTGGAGCGCATGGATTCATTCGCCAGATTTTAATCGAGCATTGGAAAGACAAAGATGATGAAGTCCAGGTCCATGAGTACCTTCCTCGAGGACAAAACTACAGCGAATTGATTGGGCGAAGCAAATTTTGTTTGTGCCCTAGCGGATACGAAGTTGCAAGCCCTAGGTTAGTGGAAGCAATCCATGGTGGTTGTGTACCGGTGATAATCTCCGATTATTACTCGTTGCCATTTGATGATGTGCTCGATTGGAGCAAATTCTCTCTACGAATTCCGCCAGAGAGAATTCCGGAGATCAAGAAGATCTTGAAAGAAGTTTCAACGAAGAAGTATTTAAAATTGCAGCGAGGAGTGATGAAAGTGCAAAGACATTTTGAAGTTCATCGGCCGGCAAAGTCATTTGATGTGTTTCATATGGTGCTCCACTCTGTTTGGCTTAGACGGCTCAATATAAAGTGCTCTAGCGGGTATGAAGTTGCAAGACCTAGCTTAGTGGAAGCGATCCACAGTGGTTGTATACTGGTGGTAATCTCTAATTATTACTCCTTGCCGTTCAATGATGTGCTCAATTGGAGCAAACTCTCACTGCGAATTTCGTCAGAGAGCATTCCAAAGCTAAAAAAGATCTTGAAAGGAGTTTCGACAAAGAAGTACTTGAAATTGTAG MASLEFSHKFPFFLLLPFFLLLLLLLCFFPPNYQNPFPSIISQNLPFFHSSKQPRPPQPPQSTLQFPPAAPPSAVLPPPPRPYSSTHKKYEMIEEDLVEARAAIRKAIVTRNYSSEKEESFIPRGRVYRNAYAFHQSHIEMVKRFKVWTYKEGEQPLVHDGPMKHIYSIEGHFIDEMDGGKSPFSAHNPEEAHVFFLPISIVYIVDYIYKPITTYARDRLVRIFTDYAPEITREDPNRFKYFIRVLCNANTSEGFSPMRDASLPEINLPPSFQLDLPQLGQPPEKRSILAFFAGGAHGFIRQILIEHWKDKDDEVQVHEYLPRGQNYSELIGRSKFCLCPSGYEVASPRLVEAIHGGCVPVIISDYYSLPFDDVLDWSKFSLRIPPERIPEIKKILKEVSTKKYLKLQRGVMKVQRHFEVHRPAKSFDVFHMVLHSVWLRRLNIKCSSGYEVARPSLVEAIHSGCILVVISNYYSLPFNDVLNWSKLSLRISSESIPKLKKILKGVSTKKYLKL Homology
BLAST of ClCG06G011600 vs. NCBI nr
Match: XP_038879941.1 (probable glycosyltransferase At5g20260 [Benincasa hispida]) HSP 1 Score: 785.8 bits (2028), Expect = 2.3e-223 Identity = 397/472 (84.11%), Postives = 414/472 (87.71%), Query Frame = 0
BLAST of ClCG06G011600 vs. NCBI nr
Match: XP_008443936.1 (PREDICTED: probable glycosyltransferase At5g20260 [Cucumis melo]) HSP 1 Score: 757.7 bits (1955), Expect = 6.6e-215 Identity = 382/475 (80.42%), Postives = 412/475 (86.74%), Query Frame = 0
BLAST of ClCG06G011600 vs. NCBI nr
Match: XP_011655344.1 (probable glycosyltransferase At5g20260 [Cucumis sativus] >KGN65113.1 hypothetical protein Csa_004562 [Cucumis sativus]) HSP 1 Score: 744.6 bits (1921), Expect = 5.8e-211 Identity = 379/474 (79.96%), Postives = 405/474 (85.44%), Query Frame = 0
BLAST of ClCG06G011600 vs. NCBI nr
Match: XP_022135540.1 (probable glycosyltransferase At5g20260 [Momordica charantia]) HSP 1 Score: 722.2 bits (1863), Expect = 3.1e-204 Identity = 380/480 (79.17%), Postives = 398/480 (82.92%), Query Frame = 0
BLAST of ClCG06G011600 vs. NCBI nr
Match: XP_022987712.1 (probable glycosyltransferase At5g20260 isoform X1 [Cucurbita maxima]) HSP 1 Score: 684.9 bits (1766), Expect = 5.4e-193 Identity = 351/468 (75.00%), Postives = 379/468 (80.98%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy Swiss-Prot
Match: Q3E9A4 (Probable glycosyltransferase At5g20260 OS=Arabidopsis thaliana OX=3702 GN=At5g20260 PE=3 SV=3) HSP 1 Score: 462.2 bits (1188), Expect = 7.5e-129 Identity = 235/459 (51.20%), Postives = 323/459 (70.37%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy Swiss-Prot
Match: Q3EAR7 (Probable glycosyltransferase At3g42180 OS=Arabidopsis thaliana OX=3702 GN=At3g42180 PE=2 SV=2) HSP 1 Score: 447.2 bits (1149), Expect = 2.5e-124 Identity = 252/479 (52.61%), Postives = 312/479 (65.14%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy Swiss-Prot
Match: Q9LFP3 (Probable glycosyltransferase At5g11130 OS=Arabidopsis thaliana OX=3702 GN=At5g11130/At5g11120 PE=3 SV=2) HSP 1 Score: 417.5 bits (1072), Expect = 2.1e-115 Identity = 218/473 (46.09%), Postives = 311/473 (65.75%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy Swiss-Prot
Match: Q94AA9 (Xylogalacturonan beta-1,3-xylosyltransferase OS=Arabidopsis thaliana OX=3702 GN=XGD1 PE=1 SV=2) HSP 1 Score: 397.1 bits (1019), Expect = 3.0e-109 Identity = 207/389 (53.21%), Postives = 265/389 (68.12%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy Swiss-Prot
Match: Q9FFN2 (Probable glycosyltransferase At5g03795 OS=Arabidopsis thaliana OX=3702 GN=At5g03795 PE=3 SV=2) HSP 1 Score: 357.5 bits (916), Expect = 2.6e-97 Identity = 180/381 (47.24%), Postives = 250/381 (65.62%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy TrEMBL
Match: A0A1S3B8R4 (probable glycosyltransferase At5g20260 OS=Cucumis melo OX=3656 GN=LOC103487410 PE=3 SV=1) HSP 1 Score: 757.7 bits (1955), Expect = 3.2e-215 Identity = 382/475 (80.42%), Postives = 412/475 (86.74%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy TrEMBL
Match: A0A0A0LTL1 (Exostosin domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G226410 PE=3 SV=1) HSP 1 Score: 744.6 bits (1921), Expect = 2.8e-211 Identity = 379/474 (79.96%), Postives = 405/474 (85.44%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy TrEMBL
Match: A0A6J1C1B6 (probable glycosyltransferase At5g20260 OS=Momordica charantia OX=3673 GN=LOC111007468 PE=3 SV=1) HSP 1 Score: 722.2 bits (1863), Expect = 1.5e-204 Identity = 380/480 (79.17%), Postives = 398/480 (82.92%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy TrEMBL
Match: A0A6J1JB42 (probable glycosyltransferase At5g20260 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111485184 PE=3 SV=1) HSP 1 Score: 684.9 bits (1766), Expect = 2.6e-193 Identity = 351/468 (75.00%), Postives = 379/468 (80.98%), Query Frame = 0
BLAST of ClCG06G011600 vs. ExPASy TrEMBL
Match: A0A6J1H9Z5 (probable glycosyltransferase At5g20260 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111461454 PE=3 SV=1) HSP 1 Score: 663.3 bits (1710), Expect = 8.2e-187 Identity = 338/468 (72.22%), Postives = 369/468 (78.85%), Query Frame = 0
BLAST of ClCG06G011600 vs. TAIR 10
Match: AT5G20260.1 (Exostosin family protein ) HSP 1 Score: 462.2 bits (1188), Expect = 5.3e-130 Identity = 235/459 (51.20%), Postives = 323/459 (70.37%), Query Frame = 0
BLAST of ClCG06G011600 vs. TAIR 10
Match: AT3G42180.1 (Exostosin family protein ) HSP 1 Score: 447.2 bits (1149), Expect = 1.8e-125 Identity = 252/479 (52.61%), Postives = 312/479 (65.14%), Query Frame = 0
BLAST of ClCG06G011600 vs. TAIR 10
Match: AT5G11130.1 (Exostosin family protein ) HSP 1 Score: 417.5 bits (1072), Expect = 1.5e-116 Identity = 218/473 (46.09%), Postives = 311/473 (65.75%), Query Frame = 0
BLAST of ClCG06G011600 vs. TAIR 10
Match: AT5G33290.1 (xylogalacturonan deficient 1 ) HSP 1 Score: 397.1 bits (1019), Expect = 2.1e-110 Identity = 207/389 (53.21%), Postives = 265/389 (68.12%), Query Frame = 0
BLAST of ClCG06G011600 vs. TAIR 10
Match: AT5G03795.1 (Exostosin family protein ) HSP 1 Score: 357.5 bits (916), Expect = 1.9e-98 Identity = 180/381 (47.24%), Postives = 250/381 (65.62%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (Charleston Gray) v2.5
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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