ClCG09G014930 (gene) Watermelon (Charleston Gray) v2.5
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGTTCCCTTCCAAAAGTAGATGAGGAGAAACAAAGACCCCATGCAATGTTGATTCCATACCCAACTCAAGGCCACATAACTCCAATGCTAAAGCTTGCAAAACTCCTTCACTATAAAGGCTTTCACATAACTTTTGTCAACACTGAATACAACTACAGACGCCTCCTCAAATCTAGAGGCTCCAACTCTTTGGATGGCTTGCCTGACTTTCACTTCAGAGCCATTCCCGATGGCCTCACGCCGTCCGACGGCAACACCTCCCAACATTCTCCTTTACTTTGCTATTCCATCTCCCACAATTTCTTGGCCCCATTTTGCAATCTCATTTCAGAGATCAACTCAAGTTCCGACCTTCCACCGGTGTCTTGTATTATCGGCGACGGGATCATGACTTTCTCCATTTTTGCTGCTCGTCAGTTTGACATTCCGATCGCCATGTTTTGGACGGCCAGTGCTTGTGGCTGCCTTGGATATATGCAGTATGCGAAGCTTGTTGAACAAGGCCTTGTGCCTTTTAAAGGTATTAAACCACATTTTTTCCTTTAAATTCTACATTCCTATTATCTTACCTTTATATTAATCTATAAGAGTTTTTTATAATGTTTTTAATTCCAACCAAATTACTTTTTTTCCTTCAACATAAAATCAAAATTATTTCTTTTTGGAATTTTTTATATTTAATTTCTCCTAGATGGGTATCTTTCATCTATTAAATCATTTATTAAAAGTTGAATCGTTATATTCATGTCATTCTATTTCAGTTTATGATTCTTAAATGTTTAATTTAGGTCATGTTTATCCTAACTAAACGTAATCCATTAAAAGTAAAATAAAAAGTGAGCTCCAATTGATTACATTTGTTGTTGTTTACTTGTATTCTATAATCGTAATGAATTGTGAGGTTGCCTCAAAATCTGTAATAAAAAAGTGCAATCTGATTGAAGAACGAACGATGCTCAATCTGATTATGGTTGAAAATTACAGGGACTCACTACCTTTACCATTACCGTTACAAATAATGTTACAGTAATAATATAAAAATTATAAGTGTGTTATATTTATTGTTACTTTTGCCTTTACTATTACCGTTAAGGTCAAGCAGCAGCAATAATAGTAATAGTAATTGTAACATATTTATAATTGTAAGTGAACAAGATTAAAAGTAATAGAGAAAGAAAATAATCTGACACTAATTGGCTGCCTTAATCTTAATTTTGAAGTTACTAATAATTATTAGTTTAAAGTTGATTTTTATTACCATCAATAAACTAATTATTAGAACTTTATATTTAAGGATAGACACAACCGTTTCATTTTCTTCGACATGATATAGGAGAGAGATTCATTTGTAGAATCTGTAATGGTTTGTACAAATTTAATATGAGTTGAACTATACTCAGTGGACCTGCATAAATATTTTTCTTCATTTAAGGAAAGCTAAAGTTAAAGAAAAATCAAAAGACTCGTTCAGAAAATAATAATAATAATACTAATAATAACAAATAAATAAAAAGGTAACCATACTTTAGTGAGAGGAACCAAGTCTAGGTATTTAAAACTAAAAGAGAACTTGATACTGAAATTACATACCGGAATATATATATATATTCTTTTTGGAAAAGTCGGAATCAAAATAGTATTTTAAATAATATTTACTAAAACATTAATGGTTTTTTTTTTTTTTTTTTAAAAAAAAATTCGTTAACACTTTAAAGTGATGGGTCATTTTCATTAATTTATTTTTTATTTATTTTTAATTTTTCATCATTTTGAAACGTAGTTTTCAGATAATTTTCAATGTGGAATATGCATTTGAACTTATCACAATTGTAACTTGTAAGATAGATAATTCTCTAAGGAGTATACTTAAGTTTATTCAATATGCGCCTATATTTTTATGCATCTCATTCTTTATTTTAAAAACGAAGCAAGAAGAATTTGTGATGTGATAAATTATTACTAGTGAAATTGGTGGAATTAACTTTAAGTTAAAAGAAAATTTTTAATTTAATTTAATTTAATGAAAATTATAATTTAGTAATTTACAATAATTTTACCTTTATCTTTTAGCATTAATTATTTGATTTAAAAAAATTATGGTAAACTTTCACCGTTTTTAATCATGATTACTTTTATATATATATATTGGGTACAACAATGGAGATAGGAGATCGGTCTTCCTCCCTCCTCTAATCTAAGAGGGAAAATCATACCAATTACCACTAAACTGATAAAAATAAAATATTTAAAACTTTAAAAATCGATATAAAAATAATCAAGAAAGGTTTTAAATAATAAATATTCTAGATGTTTTGTTTCTTGAAAATCAAGACAACTAGACTATTTAAATAATAAATTTTCAATGCCATATTTATTCCTCGAAAATATTATAAAGATGCTAAGAATGTATCTTTGTTTTCCTAGAGATGTGAATGAAAATGTGTTGGAATTACGTAAACATACTTTTTAATTTTTAGATAATTTATATATTAATTTAATATAATTAAATTTATATAACATTTAAGCCTCTTTAATAATTTAACATTTAATATTTATGAATTCTATTTATATTTGTTTTACATGTTTTTCTGGTTAAACACGTAAATTTTGTTTTAAATTTTTCGTAAAAAGAAATGATATTAAATATTAATCTTTATTTAAATTTTAAATACATGAACCTATTTGCCAAAAAGGAAAAGTTCTAAATAATTAGCATATTACATGACTAATATTTCACCAGTGTCCTGGAATTTCATAATCTTTCATATAACTAAATTTTAAGGATATTTTAAAACATTTTTAACCTTTTGATGATTCTCTCACATCTTTTAATTTCGTAATATTTAAAAATAATTAATATCATTTTCCGATTTATTATTAATTATATAAAAATTTTATTTTTGAGTTATTTTCAAATATAGCAAAATGAGTCATACTATTTACAAATATACAAAAATGTTACTTTATATCAGCGATGGACCACGATAGACCACAATAGAATTTAATTGCTAAAGCGATAGAAGTTGATCACGACCTATCGCTGATAGACAGTGAAATTTTTCTATATTTGTAAATAGTTTGATATTTTTTTATTCAAAATAATTTCCCTTTATATTTTGAGATATCATTAATTACATTATCTCTCAATTATAAATGTTTGAAACAATTCTTTCCTTATTAACATCATTTTAGGAATTTGACTTTGCTTTTGTTATTTCTTAATTTTGGTTGATATTCATTAAATGCAGGATATTTTAAATTAATTTTTCCTTCATTTTAGTAAATTTTGTTTATTTTTTTCTATATTTCTAGCTGAAAATAGATCACCTCTTTATTTAGATCTCAAGTATATGTCAAATATACTGGAAAACGTAAATGTACATCACTTATGTCATGGTTTATTTTTTTGATGTTTTTTCAAATATATTGGAAAATGTAAATATACGCATAACTTGTTCGGTATATAATTGTAGATATTATCTTCCTCTTGCGCTTATCAAGTACACCCTGATTTATTTTTGGAAAAGTAAAATATAGAGTGTTATAGATATCAAATATAAAACTGTTTTCTCATTTCATGTTTTTTTTTTTGCAGATTCTTGCTTTCATTTATGAGGGCAAATTTTTTTTTGAATTTTGGAGAAACTTTTCTTACTTGTGTAGGTTTTTGAAAAAAAAAAACTGTTTTGGAAAATTCATAACGGCAAGAAACTTTACATGTTTCTTTTATTTATTTATTTATTTATTATTATTATTATTATTATTAAAAAATAGAATGATAAGGAGAGTTGAAAAGGTAAATTAGGTCAGACTTTTGTGTAGAATAATAGTCGGCTATTCATGTAAAGAATAGAAAAGTTTAGACAATTGTGTAACTAGATCTATTTTATTTAAAATATAGGGGTAGAAAGTCAAGAAGACAATGATATAGTTGATAGTGTTTGTTTTTGTGGATTATACTTGTGCATTATGAAAATAGAGAAAAATTAAGAGCAATAATATTAATTGGATAATGACTACCAAATAAGTAAAATAAATTGAAGATTCACTTTGGATTTTAATTGAAAATAAACTATGTTGTATAGTGTACAAATTAAATGGAGCTTAATTTATATGTAAATGGAGCAAATAAATGTAGTTAATCACATCAAGTTGTTTGTGTCAATTTATTTAAGTTGTAAAATGAAAATAAAGTAGAGTGGTATAATATACATAAGAAAAATGAACAAAAAAGTAGAAAGAAGATGTTCGAGATTCCAAATATGATTTTAGTAGGACATTACACGTTACCACAAAATAATCGGTAATTTGATGTCCATCCCATAGAAATCTTAAATTCCAAGAAAATAAACAACACCGGCAAACCATTCATGTAGTTTGGTTTGTCTCTCTCTCCTCACAAAAGTTTTAGGTTCCCATAATGGAACTTAATTTAATTCTTTTTGTACATTCTATAACTCTTCCATTTTTGGAGACCCACCTTTTTATTAATAACTTTGAAAATTCCACAAAGATTTTCACTTGAACGAGATGAATTCTTTTTTGAATCTTGATACATTTTTTCCTCTCATTTTAATCTTTTTATCTTTCTTCCATTTACTCACAACTTGGTTCTTTCACCTTGTAGATGAAGACTTTTTGACAAATGGAGATCTGGAAACAACAATTGAATGGGTCCCAACAATGCCAAAAATTCGTTTGAGAGATATCCCAAGCTTCATTAGAACAACAGACAAAAATGACGTAATGCTCAACTTTTACATCCAGGTATTCGAAACACTTCCAAAAGCCGATGCAATAATCATAAACACATTTGAGTCCTTAGAACACCACGTTTTGGAAGCACTTTCCTCCAAGTTCCCTCCCATTTACCCAATTGGTCCAATCAACTCATTAGGTGCGGAGTTGATCCACAACCAGAAAGTCAAAGACATCCATTCAAATCTATGGATGGAGCAATCAGAATGCATGGAATGGCTTGATTCAAAGGAACCCGACTCAGTGGTTTACGCCAACTTTGGAAGCAACACCGTGATGTCCCATCATGAATTGATGGAATTTGCGTGGGGGCTTGCCAACAGTGGAAAGGCGTTCTTGTGGATTATAAGGCCGGATCTGGTGGAAGGGGAGATGGCGGTGTTGCCGACGGAGTTTGTGGCGGAGATAGAAGGAAGAGGAATGTTGGGGAGTTGGTGTAATCAAGAGGAGGTTTTGAAGCATCCTTCGGTTGGAGGGTTTTTGACTCATAGTGGATGGAACTCGACGTTGGAGAGTATTGTGGGAGGAGTGGCGATCATATCCTGGCCCTTCTTTTCAGAGCAGCATATGAATAGTCATTATTGTGAGACACAGTGGGGAAATGGATTGGAGATTGGGAGTGATGTGAAGAGAGATGAGGTGGAGAAGCTTGTGAGAGAGTTAATGGAAGGAGAAAAGGGTAAAGAAATGAGGAAAAATGCCAAAGAGTGGAAGAGGAAGGCACAGGAGGCTTGTAACTTCTGTGGGTCCTCCTCTACAAACTTGGATCGAGTCATTTCTGATGTTCTTCTTATGAATAACGCCAAAAAATAGTTTTTTCTTTTTTCTTTTTATATATATAAACAACATGTGGGGTTTGTGGATACCTCAAAATTAAATAGTATAAGTTTACGACTATCCATGTTGACGTCTTATCTATATCGTCTAAATGAAAAAAGTATGACTCATTTTTTGTTGTTTTATTTGATTTGTATTAGAGATTTTTGTACATATTACCCACTCTCCAACAGCTAGCGTTAATACAAAATTACCTAATCCTAAAAAATCAATGAAAATTAACCTTCCGATTACGTCATAGGTCACCTAATGACCTAGAATTTAGTATCATATTGAGGGCGTTTTATCCATCACGAAATGGTTGGATCCCTAATGTGATGTTCATATCAATCACATTTTTTTTTTTTTAATTTGTAACCACCGGTCGGCCGATCAAGCTCACAAGTGCCCTCCACCACTATATTATTGAGTAGCCTGTTGCGATTTTGAAAAATTACATTCTTTACCAAGCTTGAAGAACATATGTAATGTTGAAATATTCAAACTTAGCATGCTACGAAGCAACATTATAAATTGAAGTAATTTTATTAAGAAAGTATCATCACCTTTATCTCTGTTGCTCATTATTTTTAGTAATTGATAGAGGTTGGTTTGTTGGGTTTTATACCCTAAAACTCTAGATTGTAAATGTAATAATTTGACCGTAATTAAATCATTAATAAAGAGTTATTGATGTGTTACTTCAATAAGCATCATTGATTGTTTTTTTTTTGTTTTGTCTTAATAACCCTAAATCCAATAAACTAATATCCTAGGTTGTTTTATGAGTCTTAAACTATATGTGGGGACATATGCAGATCAATGTTCAAGATATAGTCTAAAGTGTCTATACTATAAGATTGGGTACTTTATCTTGGTGACACTATAGATACGACCCACTTTGTATTTGATACAAACGCTATGATCTAACGCGTATGTGTAGGTGACATGCGTGTGGGGGTATCCTATGCAATGAGTTTGTATAAGACCGTACCACGAAATAGCGATCACTAGATGTAACTCCGTTGACTAGTTAGATTTCTATTTCAATAGGATGACCTAGGTGTTGTTGGATTTCTATTTTGGGATTTGATTTGAGTTTCATAACTTGTTGCGCATGAATAGATATTATAATTTCTGTACAAAGATGCGTCGAGAATTACTCAAGTATGATCATAAATAAGCAAGTTTTCCTATAAAAGCCCAAGTATAAGCTCTTATAGGTTTCCTGGTGAGTCTAGGGTCGAACGCAGGGATTTGTAATAACTAGGCGTTGAGAATAGATGCATGACTATGCAGTGAACTATACATGTAATATGTGCATGAGTTGTATATACCTAAAACTATACATAAAGAATGAATAAAATTTCCTACAACTAACAATGATGTGGACGCGGCGAGGGTTAGTCAAATGTCATTTAGTGTCAGATAGCATGCGTTGAGAATGACGGTGGAACCATGCGATAAAGGTAGAGTTAACGCAGAAGCTAGTTGTTACTTAAGCATATCGAAGTATAATTACATACCTACAAACTGTGAGTTTGTGAATCCATCTCTCGATGTTTCAAAGCCACATTAATCTTATCTCTAAGACGCATGGTAAGTTTGCGTTGGCAAAAGATGAACTACATCTCTACACCTCATCTGGTCTTGATAAATGCTAAAGATTAACCATCTACTCTCTCAAGCTAGACAGTCGTGCTTGCTACATTTGTTTGTCAGACAAATCTATGCAAGCTAATGATATGCATTAATCAAGATGTAACATACTTAATATTGCTTAAGAAAAACTAACTTCTAACATCTAACTCATTTAGCATTCAAACAACATGATGTAAAGTATTTAATATGGAAATAAATGGAAGATAATCGTCAATCAAACTTATATTAATAAAATAAACCATTCTCTCGAATGTCATTAACAAAACATAAGTAAGAAGGAGGGAAATGGGGATAAAACAGAAATGGAAGACGTCAAGCCGCCATTGGCAACATCTTGCTTCATGGAGGCTTGAGATGGTTTGTAACGGCCCAAAATTTGGTAAATCAATTTTCTCTCTTTAAGTTTAAAAAAAAAAGTAAATAATATTAATAATAATAATATTAAAAGAATCTTGCAGCGGAGGGAGCGTGAAGGGGGTTTGGAAGTCCATGGTCAGTAGGAGGTTTCGGCTCTTTCGGTTGGGGGAAAGGTCCCCGGGTGAATTGTGACCTTGGGGTGTTTTTAGGAGAAGGGAAGAAAGGAGGAGGCAGAAGGAAAAAAAAAAAAAAAGTCTTTTCCTCTCTCGAGTCACCCTTCGTCAGCCATTTTCTCACAACTCCCCCGTCACTCAGTCGCAGTGCTTCAAACCTCACAGTACGGCCTTAATCGCAGCTTTCAGCGTTGCGACATCGTCATAGTTGTTGCGCCGCAGCGTCTTAGTCGTCGCGCCGCAGCATCTCGGTCATCATCACGTCGCATTGTCATGGCCACTGTTCGCTGTATCGTCAATCTTCATTGCCGCGTCACCTGTCCTCTCCGCGACGCATCGTCAGTCTTCATAGTCGCGTCACCTGTTCTCTCCGCGACGCATCGTCAGTTCATAGCCGCGTCACCTGTCCTCTCCACGACGCATCATCTGTCTTCATCACCACGTCGCCTGTCCTCTCCGCGACGCATTGTCACAGCCTTCGTAGCGCGTTGCCGCATTGTAAGGAAGTCGCTTCCTTGTTGACACTCTGAGTCTCGCTGTCTCGCTCGATATCGCTTGGTATCGCTCAGTATCGCTCCAGTCTAGCTCTCGCAGGTAAGGGACTTACTACCAGGTTTTAGTGATGCCTACTGTCTAGTGGTATTGTTGACTATTGAATGTCGTTGTGAACTTTTGTCTCGGATGTTGTTGCTATGATTGTTTAGGCATGCTAAGTTGTAGAGTAACGTTCTTATGCTTATGTGCTTATGACTCTACGAATCTCTGCTATGAATTAGTTATGCCATGACACGTTATAGGTTGCCCTATTGTCGTGCCCCATACCCCTAATGTACTATGCTACGAAGGGTGTCCCTCGGGATCACCACCTATGTTCATGTTACAATTATAGTCAATGCGTACCCTCGGGGTGCTTCCTATGCTTATGCCTACGCTTATGCTTATGCCGGGTATACGGGTGCACATGACAAAAAGGGGTAACAGCTAGGCCTAGTAGTGAGTCTCTTACTGAGTATGTTTACTCACTCTTTTTTTCTATGTTTTTCTCCCAGGTAAGGAGTATGGTGGCCCGGCGCATGGCCGAGGAAATCCGTGATCGTACCATGGGACCGTCACATTGCTTCCGCACCTTAGTCTAG ATGGGTTCCCTTCCAAAAGTAGATGAGGAGAAACAAAGACCCCATGCAATGTTGATTCCATACCCAACTCAAGGCCACATAACTCCAATGCTAAAGCTTGCAAAACTCCTTCACTATAAAGGCTTTCACATAACTTTTGTCAACACTGAATACAACTACAGACGCCTCCTCAAATCTAGAGGCTCCAACTCTTTGGATGGCTTGCCTGACTTTCACTTCAGAGCCATTCCCGATGGCCTCACGCCGTCCGACGGCAACACCTCCCAACATTCTCCTTTACTTTGCTATTCCATCTCCCACAATTTCTTGGCCCCATTTTGCAATCTCATTTCAGAGATCAACTCAAGTTCCGACCTTCCACCGGTGTCTTGTATTATCGGCGACGGGATCATGACTTTCTCCATTTTTGCTGCTCGTCAGTTTGACATTCCGATCGCCATGTTTTGGACGGCCAGTGCTTGTGGCTGCCTTGGATATATGCAGTATGCGAAGCTTGTTGAACAAGGCCTTGTGCCTTTTAAAGATGAAGACTTTTTGACAAATGGAGATCTGGAAACAACAATTGAATGGGTCCCAACAATGCCAAAAATTCGTTTGAGAGATATCCCAAGCTTCATTAGAACAACAGACAAAAATGACGTAATGCTCAACTTTTACATCCAGGTATTCGAAACACTTCCAAAAGCCGATGCAATAATCATAAACACATTTGAGTCCTTAGAACACCACGTTTTGGAAGCACTTTCCTCCAAGTTCCCTCCCATTTACCCAATTGGTCCAATCAACTCATTAGGTGCGGAGTTGATCCACAACCAGAAAGTCAAAGACATCCATTCAAATCTATGGATGGAGCAATCAGAATGCATGGAATGGCTTGATTCAAAGGAACCCGACTCAGTGGTTTACGCCAACTTTGGAAGCAACACCGTGATGTCCCATCATGAATTGATGGAATTTGCGTGGGGGCTTGCCAACAGTGGAAAGGCGTTCTTGTGGATTATAAGGCCGGATCTGGTGGAAGGGGAGATGGCGGTGTTGCCGACGGAGTTTGTGGCGGAGATAGAAGGAAGAGGAATGTTGGGGAGTTGGTGTAATCAAGAGGAGGTTTTGAAGCATCCTTCGGTTGGAGGGTTTTTGACTCATAGTGGATGGAACTCGACGTTGGAGAGTATTGTGGGAGGAGTGGCGATCATATCCTGGCCCTTCTTTTCAGAGCAGCATATGAATAGTCATTATTGTGAGACACAGTGGGGAAATGGATTGGAGATTGGGAGTGATGTGAAGAGAGATGAGGTGGAGAAGCTTGTGAGAGAGTTAATGGAAGGAGAAAAGGGTAAAGAAATGAGGAAAAATGCCAAAGAGTGGAAGAGGAAGGCACAGGAGGCTTGTAACTTCTGTGGAAATGGAAGACGTCAAGCCGCCATTGGCAACATCTTGCTTCATGGAGGCTTGAGATGGGGGTTTGGAAGTCCATGGTCAGTAGGAGGTTTCGGCTCTTTCGGTTGGGGGAAAGGTCCCCGGGTGAATTCCATTTTCTCACAACTCCCCCGTCACTCAGTCGCAGTGCTTCAAACCTCACAGTACGGCCTTAATCGCAGCTTTCAGCGTTGCGACATCGTCATAGTTGTTGCGCCGCAGCGTCTTAGTCGTCGCGCCGCAGCATCTCGGTCATCATCACGTCGCATTGTCATGGCCACTGTTCGCTGTATCGTCAATCTTCATTGCCGCGTCACCTGTCCTCTCCGCGACGCATCGTCAGTCTTCATAGTCGCGTCACCTGTTCTCTCCGCGACGCATCGTCAGTTCATAGCCGCGTCACCTGTCCTCTCCACGACGCATCATCTGTCTTCATCACCACGTCGCCTGTCCTCTCCGCGACGCATTGTCACAGCCTTCGTAGCGCGTTGCCGCATTGTAAGGGACTTACTACCAGGTTTTAGTGATGCCTACTGTCTAGTGGTATTGTTGACTATTGAATGTCGTTGTGAACTTTTGTCTCGGATGGTGTCCCTCGGGATCACCACCTATGTTCATGTTACAATTATAGTCAATGCGTACCCTCGGGGTGCTTCCTATGCTTATGCCTACGCTTATGCTTATGCCGGGTATACGGGTGCACATGACAAAAAGGGGAGTATGGTGGCCCGGCGCATGGCCGAGGAAATCCGTGATCGTACCATGGGACCGTCACATTGCTTCCGCACCTTAGTCTAG ATGGGTTCCCTTCCAAAAGTAGATGAGGAGAAACAAAGACCCCATGCAATGTTGATTCCATACCCAACTCAAGGCCACATAACTCCAATGCTAAAGCTTGCAAAACTCCTTCACTATAAAGGCTTTCACATAACTTTTGTCAACACTGAATACAACTACAGACGCCTCCTCAAATCTAGAGGCTCCAACTCTTTGGATGGCTTGCCTGACTTTCACTTCAGAGCCATTCCCGATGGCCTCACGCCGTCCGACGGCAACACCTCCCAACATTCTCCTTTACTTTGCTATTCCATCTCCCACAATTTCTTGGCCCCATTTTGCAATCTCATTTCAGAGATCAACTCAAGTTCCGACCTTCCACCGGTGTCTTGTATTATCGGCGACGGGATCATGACTTTCTCCATTTTTGCTGCTCGTCAGTTTGACATTCCGATCGCCATGTTTTGGACGGCCAGTGCTTGTGGCTGCCTTGGATATATGCAGTATGCGAAGCTTGTTGAACAAGGCCTTGTGCCTTTTAAAGATGAAGACTTTTTGACAAATGGAGATCTGGAAACAACAATTGAATGGGTCCCAACAATGCCAAAAATTCGTTTGAGAGATATCCCAAGCTTCATTAGAACAACAGACAAAAATGACGTAATGCTCAACTTTTACATCCAGGTATTCGAAACACTTCCAAAAGCCGATGCAATAATCATAAACACATTTGAGTCCTTAGAACACCACGTTTTGGAAGCACTTTCCTCCAAGTTCCCTCCCATTTACCCAATTGGTCCAATCAACTCATTAGGTGCGGAGTTGATCCACAACCAGAAAGTCAAAGACATCCATTCAAATCTATGGATGGAGCAATCAGAATGCATGGAATGGCTTGATTCAAAGGAACCCGACTCAGTGGTTTACGCCAACTTTGGAAGCAACACCGTGATGTCCCATCATGAATTGATGGAATTTGCGTGGGGGCTTGCCAACAGTGGAAAGGCGTTCTTGTGGATTATAAGGCCGGATCTGGTGGAAGGGGAGATGGCGGTGTTGCCGACGGAGTTTGTGGCGGAGATAGAAGGAAGAGGAATGTTGGGGAGTTGGTGTAATCAAGAGGAGGTTTTGAAGCATCCTTCGGTTGGAGGGTTTTTGACTCATAGTGGATGGAACTCGACGTTGGAGAGTATTGTGGGAGGAGTGGCGATCATATCCTGGCCCTTCTTTTCAGAGCAGCATATGAATAGTCATTATTGTGAGACACAGTGGGGAAATGGATTGGAGATTGGGAGTGATGTGAAGAGAGATGAGGTGGAGAAGCTTGTGAGAGAGTTAATGGAAGGAGAAAAGGGTAAAGAAATGAGGAAAAATGCCAAAGAGTGGAAGAGGAAGGCACAGGAGGCTTGTAACTTCTGTGGAAATGGAAGACGTCAAGCCGCCATTGGCAACATCTTGCTTCATGGAGGCTTGAGATGGGGGTTTGGAAGTCCATGGTCAGTAGGAGGTTTCGGCTCTTTCGGTTGGGGGAAAGGTCCCCGGGTGAATTCCATTTTCTCACAACTCCCCCGTCACTCAGTCGCAGTGCTTCAAACCTCACAGTACGGCCTTAATCGCAGCTTTCAGCGTTGCGACATCGTCATAGTTGTTGCGCCGCAGCGTCTTAGTCGTCGCGCCGCAGCATCTCGGTCATCATCACGTCGCATTGTCATGGCCACTGTTCGCTGTATCGTCAATCTTCATTGCCGCGTCACCTGTCCTCTCCGCGACGCATCGTCAGTCTTCATAGTCGCGTCACCTGTTCTCTCCGCGACGCATCGTCAGTTCATAGCCGCGTCACCTGTCCTCTCCACGACGCATCATCTGTCTTCATCACCACGTCGCCTGTCCTCTCCGCGACGCATTGTCACAGCCTTCGTAGCGCGTTGCCGCATTGTAAGGGACTTACTACCAGGTTTTAGTGATGCCTACTGTCTAGTGGTATTGTTGACTATTGAATGTCGTTGTGAACTTTTGTCTCGGATGGTGTCCCTCGGGATCACCACCTATGTTCATGTTACAATTATAGTCAATGCGTACCCTCGGGGTGCTTCCTATGCTTATGCCTACGCTTATGCTTATGCCGGGTATACGGGTGCACATGACAAAAAGGGGAGTATGGTGGCCCGGCGCATGGCCGAGGAAATCCGTGATCGTACCATGGGACCGTCACATTGCTTCCGCACCTTAGTCTAG MGSLPKVDEEKQRPHAMLIPYPTQGHITPMLKLAKLLHYKGFHITFVNTEYNYRRLLKSRGSNSLDGLPDFHFRAIPDGLTPSDGNTSQHSPLLCYSISHNFLAPFCNLISEINSSSDLPPVSCIIGDGIMTFSIFAARQFDIPIAMFWTASACGCLGYMQYAKLVEQGLVPFKDEDFLTNGDLETTIEWVPTMPKIRLRDIPSFIRTTDKNDVMLNFYIQVFETLPKADAIIINTFESLEHHVLEALSSKFPPIYPIGPINSLGAELIHNQKVKDIHSNLWMEQSECMEWLDSKEPDSVVYANFGSNTVMSHHELMEFAWGLANSGKAFLWIIRPDLVEGEMAVLPTEFVAEIEGRGMLGSWCNQEEVLKHPSVGGFLTHSGWNSTLESIVGGVAIISWPFFSEQHMNSHYCETQWGNGLEIGSDVKRDEVEKLVRELMEGEKGKEMRKNAKEWKRKAQEACNFCGNGRRQAAIGNILLHGGLRWGFGSPWSVGGFGSFGWGKGPRVNSIFSQLPRHSVAVLQTSQYGLNRSFQRCDIVIVVAPQRLSRRAAASRSSSRRIVMATVRCIVNLHCRVTCPLRDASSVFIVASPVLSATHRQFIAASPVLSTTHHLSSSPRRLSSPRRIVTAFVARCRIVRDLLPGFSDAYCLVVLLTIECRCELLSRMVSLGITTYVHVTIIVNAYPRGASYAYAYAYAYAGYTGAHDKKGSMVARRMAEEIRDRTMGPSHCFRTLV Homology
BLAST of ClCG09G014930 vs. NCBI nr
Match: XP_038887570.1 (7-deoxyloganetin glucosyltransferase-like [Benincasa hispida]) HSP 1 Score: 839.3 bits (2167), Expect = 2.5e-239 Identity = 398/469 (84.86%), Postives = 433/469 (92.32%), Query Frame = 0
BLAST of ClCG09G014930 vs. NCBI nr
Match: XP_038887938.1 (7-deoxyloganetin glucosyltransferase-like [Benincasa hispida]) HSP 1 Score: 789.6 bits (2038), Expect = 2.3e-224 Identity = 374/467 (80.09%), Postives = 412/467 (88.22%), Query Frame = 0
BLAST of ClCG09G014930 vs. NCBI nr
Match: XP_031744863.1 (7-deoxyloganetin glucosyltransferase [Cucumis sativus]) HSP 1 Score: 782.7 bits (2020), Expect = 2.8e-222 Identity = 366/468 (78.21%), Postives = 420/468 (89.74%), Query Frame = 0
BLAST of ClCG09G014930 vs. NCBI nr
Match: KAE8645796.1 (hypothetical protein Csa_017196 [Cucumis sativus]) HSP 1 Score: 780.8 bits (2015), Expect = 1.0e-221 Identity = 366/468 (78.21%), Postives = 417/468 (89.10%), Query Frame = 0
BLAST of ClCG09G014930 vs. NCBI nr
Match: XP_008455233.1 (PREDICTED: 7-deoxyloganetin glucosyltransferase-like [Cucumis melo] >KAA0031503.1 7-deoxyloganetin glucosyltransferase-like [Cucumis melo var. makuwa] >TYK06956.1 7-deoxyloganetin glucosyltransferase-like [Cucumis melo var. makuwa]) HSP 1 Score: 773.5 bits (1996), Expect = 1.7e-219 Identity = 363/469 (77.40%), Postives = 416/469 (88.70%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy Swiss-Prot
Match: F8WKW1 (7-deoxyloganetin glucosyltransferase OS=Gardenia jasminoides OX=114476 GN=UGT85A24 PE=1 SV=1) HSP 1 Score: 579.3 bits (1492), Expect = 6.1e-164 Identity = 272/458 (59.39%), Postives = 351/458 (76.64%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy Swiss-Prot
Match: F8WLS6 (7-deoxyloganetin glucosyltransferase OS=Catharanthus roseus OX=4058 GN=UGT85A23 PE=1 SV=1) HSP 1 Score: 575.5 bits (1482), Expect = 8.7e-163 Identity = 267/462 (57.79%), Postives = 354/462 (76.62%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy Swiss-Prot
Match: B2XBQ5 ((R)-mandelonitrile beta-glucosyltransferase OS=Prunus dulcis OX=3755 GN=UGT85A19 PE=1 SV=2) HSP 1 Score: 567.0 bits (1460), Expect = 3.1e-160 Identity = 262/453 (57.84%), Postives = 346/453 (76.38%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy Swiss-Prot
Match: Q6VAB3 (UDP-glycosyltransferase 85A8 OS=Stevia rebaudiana OX=55670 GN=UGT85A8 PE=2 SV=1) HSP 1 Score: 558.1 bits (1437), Expect = 1.4e-157 Identity = 259/459 (56.43%), Postives = 342/459 (74.51%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy Swiss-Prot
Match: Q9LME8 (UDP-glycosyltransferase 85A7 OS=Arabidopsis thaliana OX=3702 GN=UGT85A7 PE=2 SV=1) HSP 1 Score: 548.5 bits (1412), Expect = 1.1e-154 Identity = 251/456 (55.04%), Postives = 340/456 (74.56%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy TrEMBL
Match: A0A0A0K1Z5 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G059660 PE=4 SV=1) HSP 1 Score: 776.5 bits (2004), Expect = 9.5e-221 Identity = 363/468 (77.56%), Postives = 416/468 (88.89%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy TrEMBL
Match: A0A5D3C9G1 (7-deoxyloganetin glucosyltransferase-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold13G002690 PE=4 SV=1) HSP 1 Score: 773.5 bits (1996), Expect = 8.1e-220 Identity = 363/469 (77.40%), Postives = 416/469 (88.70%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy TrEMBL
Match: A0A1S3C1P0 (7-deoxyloganetin glucosyltransferase-like OS=Cucumis melo OX=3656 GN=LOC103495446 PE=4 SV=1) HSP 1 Score: 773.5 bits (1996), Expect = 8.1e-220 Identity = 363/469 (77.40%), Postives = 416/469 (88.70%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy TrEMBL
Match: A0A6J1HR84 (7-deoxyloganetin glucosyltransferase-like OS=Cucurbita maxima OX=3661 GN=LOC111467039 PE=4 SV=1) HSP 1 Score: 730.3 bits (1884), Expect = 7.8e-207 Identity = 345/461 (74.84%), Postives = 401/461 (86.98%), Query Frame = 0
BLAST of ClCG09G014930 vs. ExPASy TrEMBL
Match: A0A6J1DLI8 (Glycosyltransferase OS=Momordica charantia OX=3673 GN=LOC111021662 PE=3 SV=1) HSP 1 Score: 723.4 bits (1866), Expect = 9.6e-205 Identity = 344/466 (73.82%), Postives = 399/466 (85.62%), Query Frame = 0
BLAST of ClCG09G014930 vs. TAIR 10
Match: AT1G22340.1 (UDP-glucosyl transferase 85A7 ) HSP 1 Score: 548.5 bits (1412), Expect = 8.1e-156 Identity = 251/456 (55.04%), Postives = 340/456 (74.56%), Query Frame = 0
BLAST of ClCG09G014930 vs. TAIR 10
Match: AT1G22360.1 (UDP-glucosyl transferase 85A2 ) HSP 1 Score: 535.4 bits (1378), Expect = 7.1e-152 Identity = 246/452 (54.42%), Postives = 332/452 (73.45%), Query Frame = 0
BLAST of ClCG09G014930 vs. TAIR 10
Match: AT1G22370.2 (UDP-glucosyl transferase 85A5 ) HSP 1 Score: 535.4 bits (1378), Expect = 7.1e-152 Identity = 244/452 (53.98%), Postives = 331/452 (73.23%), Query Frame = 0
BLAST of ClCG09G014930 vs. TAIR 10
Match: AT1G22380.1 (UDP-glucosyl transferase 85A3 ) HSP 1 Score: 525.0 bits (1351), Expect = 9.6e-149 Identity = 243/460 (52.83%), Postives = 332/460 (72.17%), Query Frame = 0
BLAST of ClCG09G014930 vs. TAIR 10
Match: AT1G22400.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 524.6 bits (1350), Expect = 1.3e-148 Identity = 242/464 (52.16%), Postives = 335/464 (72.20%), 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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