
CcUC10G201380 (gene) Watermelon (PI 537277) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.AAGACTTATAGTAAAGTCCGTCTTTCCACTCCACCCATTCCCATTTCTACCGGATCCACTCACCATCTTCATTTCCCATTACTCCAAACTCAAACACAAAATCAAACTATGAATTCGATGCTTACATTGACTGTCGCGACGCTTGCAGCCGTCGTTGCCATCATCTTCTCGCTTCAAACCCCTTTACTCAAGCTCAATCAGGCCTTTGCGCCGCCACAGATTCCCGGAACCCACGACTATCTCCATTCCGCCACCGTTATTCCCGTCCCCGGAGCAATCGGACCGGAGAGCCTGATTTTTGACCCAAATGGTGAAGGTCCGTACACTGGTGTTGCCGATGGCCGGATTCTCAAGTGGCAAGGCGATGGCCGTGGCTGGACTGATTTTGCTGTTACTAGCTCTCAGAGGTATGATCTTATCTTTATCTTCTTGTGCTGGTTTTGTTTTTGGGAGATGTTTGAACGAATTGGTTATTGATTAATACGTGGATTTTGAATTTTTACCAAAATTGTTTTAGGAGAGGGATTTTTAGCTAAATATTCTGTAGTATGATTATGGAATGGTGTTGCTTGGCTTCAACTTGATATATATATATATATATATATATATTTTTTTTTTTTAATAAGCAGGATCATTGTTGAATTATTGTTTTTGTTTAAAATATTTTGGAGATGGCTGATTAATCACATGTTTTTCCTTTAAAAATGGTGAATATATATGGAAGATGTTTTGGTTGAACTTTTGAAGGATTTACGTGTATTTGGTTAAAATCATTTTGTCAAGTTCTAAATCACTCCAAACACATATCTTGAATCAAAATTATTTTAACGTTTGATTTTACACTTTGAAACACGATTTTCATCCTATCAAAATTGATTTTGAATCATTAAAACAATGCGTCGGAGTGATTTTGAAAATAACAAAAGTGAACTTTATTGTTTTAAAATCACACACATATAGATAGCTAGATAGATATAGCTAAGAGGTTTTGGTTGGACCTTTTAATGTATGGTCGTAAGATATGCTTGGTTTGGAGAATTGATTATCAAATTCTCCTACCTGGACCTGGTCTTTGTTTTCTTCTTGTTCTTTGCCATAAAGCCCATTTCAGGAGGAGTTGGGGGCAGGGTCAACTGCCCTTGGTGCCCTTATGATTGGATATCAACTTGTTGAGGAATCATTTCAAGGCCTTGTCTTTCATGTGTGTCTGGATGAGTTGCTCTGGTCTTGAAAAATTGGTATAATTTGAAAAGAACTATCAAGATTCAAATCCATCTTCTCATTTTGCTCAGTGCATAGATTTTTTCCTTTCATAGGATTTTCCTGGCTTGGTATCATGAAAGGGCTGGCTTGACTATCCCACCTACCAACCCCAAATTCAGGTTCTTGGAGTCGATAAATCTTGTCTATCGTTATTTGTTCTTGGCAACTGCTAGACTTAGTAAGCTTCTCTTTGCTGTCTCATGATTGCTTGAATAAGATATCTCCTGGAGATTAAAACTGGATTGAAACTAGGAAAGGGCACGTCAAAGCTGTCTCCTAGGCCGAAGATAACACATTCATGCTCTCTATAGAATTTGTTTTGAAGTACTTCACTTTTCTGTCTTATAAACTTCACTTGGCTGTTCATTTTGTTACTATTGGAATGTCTGTTTTAGTCTTTAGATGTGGATGTTTGTGTTTTGCTCGCTGGAAACAGGGCTGTGCATATGATTGTTTGGCAAATATTATTCATTTTTCAGGTTTGATTCATTTCGTTTTATGTTCTTGAAGGAGTGAGTGTGTTCGCCCATTTGCACCTGAATTGGAGCATGTTTGTGGGAGGCCATTAGGTCTGCGTTTCGATAAGACAACTGGAGATCTCTACATCGCCGATGCCTATCTCGGTCTTCATGTAGTAGGACCTACTGGAGGTTTGGCAACAAAACTTGTGAGTGAATTCGAAGGCAAGCCACTTCGCTTCACAAATGATCTTGATATTGATGAAGACAACGATATTATATACTTTACTGATAGTAGTACAGTTTTCCAAAGAAGGTAAATTCAGACTCAAAAGCATATATTCATGCCTCATTTTAGCAACTGATCTTAAAGAAGAAAAATCTGATGAAAGAATCTGAAAGTTTTGGTTCCTGAATTTTAATTTCTTTGTCACGTTCAACTGAATTTTTATGTTTCTAATGTCATTGACTCATTGGTTATCTCTGTTTTAACATAACACTTCATTAAGTTTGAAACCGGAACTGCTTATAGTATTACAGTTAACGCGGTCTGAAGTTTGTAGTTCATTAACTGGCTGTGGTATTATTGTTAAACTTCAGTTTTGGTGAATGTTTCGTACTTGCAGACAGTTCATGGCGTCGATATTGAGCAGAGATAGTACGGGCAGGTTATTTAAGTACCACCGAGCTAGTAAACAAGTTACAGTTTTATTACAAGGCCTTGCTTTTGCCAATGGTGTTGCATTAAGCAAAGACCATTCCTATGTGCTTGTGGTTGAGTCCACCTCTGGCAGGATCCTCAGATTTTGGCTTCAAGGCTCTGAAGCAGGAAAGTTCGATGTTCTTGCTCAGGTTCCCGGCTTTCCTGACAACATTAGAAGGAATTCGAAAGGCGAATATTGGGTTGCTTTGCATTCAAAAAAGGGACTTATTGGGAACTTGATTTCTTCAAGATCTTGGTTTGGGAAGCTATTGTTGAAGCTTCCTGTTAACTTCAAGCAATTGCATGCGCTGTTGGTGGGAGGGAAGGCCCATGCAACTGCTGTTAGGTTGAGTGAGGAAGGAGAGGTTTTGGAGATTTTAGAAGATTGTGAAGGGAAAACTTTGAAGTTCATTAGTGAAGTTGAAGAGAAGGATGGAAAACTGTGGTTCGGGTCAGTTCTAATGCCGTTCGTCGGTGTTTATGAACCGAAGTAGGCTCATCTTAAGCTATTTCTCGAAACACGATTCGAGTAGATAGTTCGCTCTTGCTTCTTCTTGTAATTTTAGTTTTCCTTTCTGAAATAGAGCAGCTTTGATGTAGATCAAGATCATAAAAAAGGCTTTGGAACAAAGCTGAAGCTCTTGTTGATCGAACTTTTGGTTAATATATTGAAACTTTCTTCATTTTTTGTCTTTGTGTTTAAGAGATTATGGTTTAGACACACTTGTATGTCAATTGACCTATATGTTTAGTGATACACATTTTTAAGGACTTATTAGACTTAAAATTGAAAGTTCAAATACATATTAAATTAAAACACAAGACATAAATGGTCACATATTAAAGTTTAAATCTTAAATTTGTTATAAAATTCAAATTATAGAGAGTAAGTCCTAAGAATCTACAATTTAGGAGACTAAATTGTTATTTTCATACAATTCTGAAACCAAATATAATGAATTTAACTCAACAATAATTGATAAATATTTACTTTTTTGAGTTTTAAAGTTAAATCTGCCATTCCTGTAAAAAAAAAAAATATGTATTTTAACCTTTAAGAATATAGTAGGGGTTTAAAGTGTAATATGACAATAAATTGTTCCATTAATCTCAATATTAAAGGTTCAAGGGTTAGAGTTGGATTCAAGGTTGAATTCTCCGACTACAAAAAAATAACTTAGACCCCCATTTGTAACATTTCAGTTTTTGTTTTTGTTTTTGAAAATGAAATCTATAGACACTACTTCCACCTTCAAATTTATTTATTTGTTATCTACTTTTTTATCAATGGTTTTGAAAATTAAAAAAATAGCTTTTAAAAATTTGTTTTTGTTTTTGGAATTTGGCAAAGAATTCAACTATTGTACACAGAAATGAGAAGAAAATAGACTTAATTTTAAAAAACAAAAATAAAAAAAGAAATGGTTACTAAACGAGATCTTAGGTGCAACCCAAGTAGGTGTCAAATAAAAACTTTTTTTTATTTTTTATTTTTATTAGGGGTAAAGAGAGGGAAAGCATGAATTAAGTGGCCTTAAGCAAAACCTAATTATTGGTGAATAGAAACATATATGTAAAAGGGCGATAGTTTAGGACTTAGGTGAAACACCAAAATAACCCCATCTCAAACTGAACCCAAACCCAAACCCAATCCCAATCCCAACATTTGGAAATGACAAAACTGCCACTCATTGCCCTTCAAAACAAAATTCACACATCTCATACTTCTCTTCAAATTCTGTTTCTCTCTCTCTCTCTCTTTCTCTCTGTGCAAAACCCATGAACTCCAACCTCTGCCTCACCGCAACCGCAGTTGCCGCCGTCTTCGCCTTACTTTCCATCAACCCAACCAGATTTTCGCCGCCGCCGGAGACCACTTTCGATCATCGGAAAACGGAATATGTAGCAATCCACGGTGGCGTTGGGCCGGAGAGCTTCGCCTTCGACAGTGCCGGAGGCGGACCTTACACCGGCATCTCCGACGGCCGGATTATCAAATGGCTGCCGGAACAACAAAGCTGGATCGATTTCGCCGTTACTTCTCCAAACAGGTAATTTCATTTTCAACTCTCTCTGTGTGCTTTTATTTTTTATTTTTTTTCTAATTATTTAATCAAATGCACGTTGAGTTTATTTTATTTTATTTTTATCTTTTATAGAATTCTGTTGGCCAATTAAATTATTATGTTTACATCAGAAATTTTTAATATGTTGTTGCTGTTTAAATTTTTCTGGCTCCCTTTTTTCCTTGGTTTTCCTTATGAAATTTTTAATCTTAATTTGGATAACCAGTTGGACCCAAAATTTCAAATGACGTGGATTTAAAAAGAAAAAAAAAATGTGAAATGACCCTCGTATTAAGTTTGGATGAAATTATCAAAATGAGTTTGCATACACGAAAAAGCCATCTTGCTCTCTGTCTCACTCTCTCTTCTTTTCCTCACTCACAATCACTCTCATCTTTCTCGCTCACTCTCGTTCTTTCATCCTTTCTTCACTCACAAAATCACTCTCCTCTCTCTCACTCATGCTCTCACTCACTAAAGTTGGTCATGTTGGAGTTGTTCGTGTTGAATTCGTAGTGCCAGAGAAGGAGTAGAAGTCGGAGAAGAAGAAAAAGACGCAGACAAAAAGGAAAAAAGAGAGAGAGAGAGGAGTCAAATGCCCGAGAAGAAGAGAACAAAGAAAAAATCAAGAAGAGTAGGACCGTAACTTTACGTGGTTATGACATCACTAAATGGTCATTTGTCATTTTTTTCAAAAACTAGGTCATTCACCATTTTAGAGCTTTAAAATAAGTTTTTTATGCAATTATTCCAATTTTTTTCATATATTTTTCTCTAAAAATTATTGATACCATTTTAAGGTTACATTAATCATGATCTAATTTATTCTATTTTATTTATTAACCATACGTGTTCCAAACCAACTTAAGCATAATATACAAGATTAAGACAGTAACTTTTTTTTTTTTTTTTTTTACTTTTTTAGTTTTAATTAAAATTTATTTTATTTATTTTATTTTTTTTTTTAACCATACTTTTTCTAATTCATATTAATTATAATTAAAAAAAATAAAACCATAAATTTTTTTTTTTTTTTTACTTTTTTAGTTTTAATTAAAATTTATTTTATTTATTTTATTTTTTTTTTTAACCATACTTTTTCTAATTCATATTAATTATAATTAAAAAAAATAAAACCATAAATTTTTTTTTTTTTTTTACTTTTTTAGTTTTAATTAAAATTTATTTTATTTATTTTATTTTTTTTTTTAACCATACTTTTTCTAATTCATATTAATTATAATTAAAAAAAATAAAACCATAAATTTTTTTTTTTTTTTTTGGTAAGAGATGACTAACATATTCCACATCCAAAATTTGAATGGAGTATATATCAATTACCATTAAGTTATATTTATATTTGACAAATAAATTAAAGTAGCTAAACATAAAAATAAATTTTCAAAATATATCAATTTATACTCTTAACCTTTTGGATTGTATTAATTTTAAATTCTTGATGAACTTTTGCAATTAACTTTATCAATTTACACATTGCATTAAGTTATATTTGGAAAAACATCGTGTTAGACTTATAATTGTATCAATTAGACTTCTAAGCTTTCATAAGTGAATCAATTTATATGTTTATGTATAGAATTGTCAATGGATTGATTCCAATCATCCGTTTTGTAAAACGAAAATTTGAGGAAATCTATACACATGTAAGAATTAACAGATAAATAATTTTCGAATGTAATAGTAACGGAGGGTGTGAATTGATCCGCTTAGAAAAATTGTATGAGTTTAATTGGTACAAATTATAACTTTCACACGATATTTTTCGATCAAAATCTAGAAAATGTAAATTGATCGATACACTTCATTCAAAGTTTAAATTGATATCTATTACTGTTAGTTTATGATTTTAATTATACAGAAGTTAAAGTTCAACCCTGAGAAACCTCAAATTTTAGAGTATAATTTGTAGATGGATTTTTTTTTTCTTTCTAAAATCTAAGACATAAAGGATAAGACTATCAAGTGAATTATTGGTTTCGATATTAATAATTTCGAAATGAATAATTTTGTGTGAGAGTACCTTTGCAAAAAAAAAAAAATAAATAAAAAAAAATTGTGAGAGAAGGATGATAAAAGAACTCTTGATTGGGATAGGATTTATTTTTTATGCATTTTAATAACAATAAAAATGTGGCTGTTGGCTCTTGCTACAAACTATGATTGATAAAATTTCTCCCATAGAAAAAAAAAAGTTGGAAATAGATTTTTTTTTGAAAAATACATTTTTTTTTTATTGATTTTGAATTTAATTTCTATTTAGCCCCTATATCTCAAAAAGGTTACACATTTCGCTCTTAAATTTAAATTTTCAATATTTTACATTTTCAACTCACCTCTTCATTAAATACTCATTTTCAATTATTCACGTCAATGTCTACTAATTAATTTAAAATGATTATGAAGTAAAATTTTAAATTTAATTTAAAAAGTGATAAAAATAATGAAATTTAATTAATTATAATTCGTTTAATTATTTTAAATTTAATGATATACATTAACAATAAAGACGAAAAATGAGTATTTAGTTTAAAATTGAAGTTAGAATTGTAAATTTTGAAATTTAGATACTAAAACAAAAAATGAAATTATAATATTTTGAAATTTAGAGATTAAAATGAAATCAAATTTAAAAAGATTAAATACATAACATTTTGTGACATTTTGAAATTAGAGATCAAATAAAAAATAAATATAAAGTTTAGGGATTTTTGTTGCCTTTTTTTATTTTATGAAAATGAAAGGGGGTTGGTTTTTGTTTTTCATTTATTTTTTTAAAAATGGTTTTCTTTAATTATTTTTTTAGTGAAGATGTGCTTTTAATTATTTCTATCTATATCTATTTTATGAGGCTGAAATGTCGAAGTGGAAACAGCCTTGAAAGGACTGTAAAGGAATCTGATTTTATTTGATTAGTGGAAAAAATTAATTAAATAAATGAGAGATGAATTTATAGAGACTCTTTAATTTTTTTTTTAAAAATTTTTTCTCTCTATTTTTTATTATTATTATTTTTTTATGGCGTTCCCCTTTAATATTAGAGATTCTCAAAAGTCGAAAGAAAAGGAAAGCTTTATTTTGTTATTACGATTTTGGCCCCGGTTCTCGGTTGGCTTTGCATGAGGTCCACGTGTAAGTTGGGGTCAGCTGTTTGTCATTTTTTGTTGGTTCATCACACAATTTTATGTGGTGATATTTTATATTATAAGAAAGTTAAAGTTACAACAACCCAATTATACCTAAACAAAATTAAGGCTAAACTTATAATTTAAGGATTAATAAATGAAATTAAAAATGAAACAGAACAGGTTGTGAAGAGAGAGAAAAAGAGGAGAAGAGAGAAGAGAGATGTGGGAGGCCATTAGGGCTCAGGTTCAAAGACGGCACAGGGAGCGGCGATGGCGATGATTTGTACATTGCGGACGCGTACATGGGATTGCTTCGCGTCGGCGCTAATGGGGGTTTGGCCAAAAAGCTTGATTTTCAAACGGAGGAAGATGAAGTTTGGAAGTTTGGTTCATTAACATTTGCCAATGGTTTGGACATTGATCAACTCTCTGGCCTTATTTATTTCACTGATAGCTCTTCTCACTATCAAAGAAGGTATCCTCTCTCACTCTCATTCTAACTTGTGTGTATATATATTTATTTTTAAAAAAGAATCCTCATTTTTTGTGTAGGAACTTTGCAACTGCAATATTAAGTGGAGACAATTCAGGAAGGCTAATGAAATATGATCCAAAAACCAAACAACTAAGCCTTCTCTTAGGAAACCTCTCATTTCCAAATGGAGTTTCACTAAGCAAAAATAGTGAGTTCCTTCTCCTGGCGGAGACTACCAAGTGCAGGATTCTCAAGTACTGGCTAAAGACCGCTAAGGCCGGGAGGTACGACGTAATCGCCGAGCTCCCTGGCTTCCCCGACAACATCAAAACGAGTCATCGAGGCGGCTTTTGGGTTGGAATTCACTCGAGAAAACGCGGATTGTTGAGGTTCATATTGGCTTACCCTTGGATAGGGAAGGGCTTATTGAAGCTTCCTTTGAGTATAGACAAACTTCATTCTTGTTTGGAAAAATGGATAGGGAATGGTGGGATTGGAATCAGACTTAGTGAAGAAGGTGAAGTAATGGAGATTATTGAAGGCAAAGGAGAGTTGAAATGGAAGTCTTTTTCTGAAGTGGAAGAGAGGGAGGATGGTGTTGTTTGGATTGGCTCTATTAATTCTCCTTTTGCAACCAAGATTAAGATTTGA AAGACTTATAGTAAAGTCCGTCTTTCCACTCCACCCATTCCCATTTCTACCGGATCCACTCACCATCTTCATTTCCCATTACTCCAAACTCAAACACAAAATCAAACTATGAATTCGATGCTTACATTGACTGTCGCGACGCTTGCAGCCGTCGTTGCCATCATCTTCTCGCTTCAAACCCCTTTACTCAAGCTCAATCAGGCCTTTGCGCCGCCACAGATTCCCGGAACCCACGACTATCTCCATTCCGCCACCGTTATTCCCGTCCCCGGAGCAATCGGACCGGAGAGCCTGATTTTTGACCCAAATGGTGAAGGTCCGTACACTGGTGTTGCCGATGGCCGGATTCTCAAGTGGCAAGGCGATGGCCGTGGCTGGACTGATTTTGCTGTTACTAGCTCTCAGAGGAGTGAGTGTGTTCGCCCATTTGCACCTGAATTGGAGCATGTTTGTGGGAGGCCATTAGGTCTGCGTTTCGATAAGACAACTGGAGATCTCTACATCGCCGATGCCTATCTCGGTCTTCATGTAGTAGGACCTACTGGAGGTTTGGCAACAAAACTTGTGAGTGAATTCGAAGGCAAGCCACTTCGCTTCACAAATGATCTTGATATTGATGAAGACAACGATATTATATACTTTACTGATAGTAGTACAGTTTTCCAAAGAAGACAGTTCATGGCGTCGATATTGAGCAGAGATAGTACGGGCAGGTTATTTAAGTACCACCGAGCTAGTAAACAAGTTACAGTTTTATTACAAGGCCTTGCTTTTGCCAATGGTGTTGCATTAAGCAAAGACCATTCCTATGTGCTTGTGGTTGAGTCCACCTCTGGCAGGATCCTCAGATTTTGGCTTCAAGGCTCTGAAGCAGGAAAGTTCGATGTTCTTGCTCAGGTTCCCGGCTTTCCTGACAACATTAGAAGGAATTCGAAAGGCGAATATTGGGTTGCTTTGCATTCAAAAAAGGGACTTATTGGGAACTTGATTTCTTCAAGATCTTGGTTTGGGAAGCTATTGTTGAAGCTTCCTGTTAACTTCAAGCAATTGCATGCGCTGTTGGTGGGAGGGAAGGCCCATGCAACTGCTGTTAGGTTGAGTGAGGAAGGAGAGGTTTTGGAGATTTTAGAAGATTGTGAAGGGAAAACTTTGAAGTTCATTAGTGAAGTTGAAGAGAAGGATGGAAAACTGTGGTTCGGGTCAGTTCTAATGCCGTTCGTCGTTGCCGCCGTCTTCGCCTTACTTTCCATCAACCCAACCAGATTTTCGCCGCCGCCGGAGACCACTTTCGATCATCGGAAAACGGAATATGTAGCAATCCACGGTGGCGTTGGGCCGGAGAGCTTCGCCTTCGACAGTGCCGGAGGCGGACCTTACACCGGCATCTCCGACGGCCGGATTATCAAATGGCTGCCGGAACAACAAAGCTGGATCGATTTCGCCGTTACTTCTCCAAACAGAACAGGTTGTGAAGAGAGAGAAAAAGAGGAGAAGAGAGAAGAGAGATGTGGGAGGCCATTAGGGCTCAGGTTCAAAGACGGCACAGGGAGCGGCGATGGCGATGATTTGTACATTGCGGACGCGTACATGGGATTGCTTCGCGTCGGCGCTAATGGGGGTTTGGCCAAAAAGCTTGATTTTCAAACGGAGGAAGATGAAGTTTGGAAGTTTGGTTCATTAACATTTGCCAATGGTTTGGACATTGATCAACTCTCTGGCCTTATTTATTTCACTGATAGCTCTTCTCACTATCAAAGAAGGAACTTTGCAACTGCAATATTAAGTGGAGACAATTCAGGAAGGCTAATGAAATATGATCCAAAAACCAAACAACTAAGCCTTCTCTTAGGAAACCTCTCATTTCCAAATGGAGTTTCACTAAGCAAAAATAGTGAGTTCCTTCTCCTGGCGGAGACTACCAAGTGCAGGATTCTCAAGTACTGGCTAAAGACCGCTAAGGCCGGGAGGTACGACGTAATCGCCGAGCTCCCTGGCTTCCCCGACAACATCAAAACGAGTCATCGAGGCGGCTTTTGGGTTGGAATTCACTCGAGAAAACGCGGATTGTTGAGGTTCATATTGGCTTACCCTTGGATAGGGAAGGGCTTATTGAAGCTTCCTTTGAGTATAGACAAACTTCATTCTTGTTTGGAAAAATGGATAGGGAATGGTGGGATTGGAATCAGACTTAGTGAAGAAGGTGAAGTAATGGAGATTATTGAAGGCAAAGGAGAGTTGAAATGGAAGTCTTTTTCTGAAGTGGAAGAGAGGGAGGATGGTGTTGTTTGGATTGGCTCTATTAATTCTCCTTTTGCAACCAAGATTAAGATTTGA ATGAATTCGATGCTTACATTGACTGTCGCGACGCTTGCAGCCGTCGTTGCCATCATCTTCTCGCTTCAAACCCCTTTACTCAAGCTCAATCAGGCCTTTGCGCCGCCACAGATTCCCGGAACCCACGACTATCTCCATTCCGCCACCGTTATTCCCGTCCCCGGAGCAATCGGACCGGAGAGCCTGATTTTTGACCCAAATGGTGAAGGTCCGTACACTGGTGTTGCCGATGGCCGGATTCTCAAGTGGCAAGGCGATGGCCGTGGCTGGACTGATTTTGCTGTTACTAGCTCTCAGAGGAGTGAGTGTGTTCGCCCATTTGCACCTGAATTGGAGCATGTTTGTGGGAGGCCATTAGGTCTGCGTTTCGATAAGACAACTGGAGATCTCTACATCGCCGATGCCTATCTCGGTCTTCATGTAGTAGGACCTACTGGAGGTTTGGCAACAAAACTTGTGAGTGAATTCGAAGGCAAGCCACTTCGCTTCACAAATGATCTTGATATTGATGAAGACAACGATATTATATACTTTACTGATAGTAGTACAGTTTTCCAAAGAAGACAGTTCATGGCGTCGATATTGAGCAGAGATAGTACGGGCAGGTTATTTAAGTACCACCGAGCTAGTAAACAAGTTACAGTTTTATTACAAGGCCTTGCTTTTGCCAATGGTGTTGCATTAAGCAAAGACCATTCCTATGTGCTTGTGGTTGAGTCCACCTCTGGCAGGATCCTCAGATTTTGGCTTCAAGGCTCTGAAGCAGGAAAGTTCGATGTTCTTGCTCAGGTTCCCGGCTTTCCTGACAACATTAGAAGGAATTCGAAAGGCGAATATTGGGTTGCTTTGCATTCAAAAAAGGGACTTATTGGGAACTTGATTTCTTCAAGATCTTGGTTTGGGAAGCTATTGTTGAAGCTTCCTGTTAACTTCAAGCAATTGCATGCGCTGTTGGTGGGAGGGAAGGCCCATGCAACTGCTGTTAGGTTGAGTGAGGAAGGAGAGGTTTTGGAGATTTTAGAAGATTGTGAAGGGAAAACTTTGAAGTTCATTAGTGAAGTTGAAGAGAAGGATGGAAAACTGTGGTTCGGGTCAGTTCTAATGCCGTTCGTCGTTGCCGCCGTCTTCGCCTTACTTTCCATCAACCCAACCAGATTTTCGCCGCCGCCGGAGACCACTTTCGATCATCGGAAAACGGAATATGTAGCAATCCACGGTGGCGTTGGGCCGGAGAGCTTCGCCTTCGACAGTGCCGGAGGCGGACCTTACACCGGCATCTCCGACGGCCGGATTATCAAATGGCTGCCGGAACAACAAAGCTGGATCGATTTCGCCGTTACTTCTCCAAACAGAACAGGTTGTGAAGAGAGAGAAAAAGAGGAGAAGAGAGAAGAGAGATGTGGGAGGCCATTAGGGCTCAGGTTCAAAGACGGCACAGGGAGCGGCGATGGCGATGATTTGTACATTGCGGACGCGTACATGGGATTGCTTCGCGTCGGCGCTAATGGGGGTTTGGCCAAAAAGCTTGATTTTCAAACGGAGGAAGATGAAGTTTGGAAGTTTGGTTCATTAACATTTGCCAATGGTTTGGACATTGATCAACTCTCTGGCCTTATTTATTTCACTGATAGCTCTTCTCACTATCAAAGAAGGAACTTTGCAACTGCAATATTAAGTGGAGACAATTCAGGAAGGCTAATGAAATATGATCCAAAAACCAAACAACTAAGCCTTCTCTTAGGAAACCTCTCATTTCCAAATGGAGTTTCACTAAGCAAAAATAGTGAGTTCCTTCTCCTGGCGGAGACTACCAAGTGCAGGATTCTCAAGTACTGGCTAAAGACCGCTAAGGCCGGGAGGTACGACGTAATCGCCGAGCTCCCTGGCTTCCCCGACAACATCAAAACGAGTCATCGAGGCGGCTTTTGGGTTGGAATTCACTCGAGAAAACGCGGATTGTTGAGGTTCATATTGGCTTACCCTTGGATAGGGAAGGGCTTATTGAAGCTTCCTTTGAGTATAGACAAACTTCATTCTTGTTTGGAAAAATGGATAGGGAATGGTGGGATTGGAATCAGACTTAGTGAAGAAGGTGAAGTAATGGAGATTATTGAAGGCAAAGGAGAGTTGAAATGGAAGTCTTTTTCTGAAGTGGAAGAGAGGGAGGATGGTGTTGTTTGGATTGGCTCTATTAATTCTCCTTTTGCAACCAAGATTAAGATTTGA MNSMLTLTVATLAAVVAIIFSLQTPLLKLNQAFAPPQIPGTHDYLHSATVIPVPGAIGPESLIFDPNGEGPYTGVADGRILKWQGDGRGWTDFAVTSSQRSECVRPFAPELEHVCGRPLGLRFDKTTGDLYIADAYLGLHVVGPTGGLATKLVSEFEGKPLRFTNDLDIDEDNDIIYFTDSSTVFQRRQFMASILSRDSTGRLFKYHRASKQVTVLLQGLAFANGVALSKDHSYVLVVESTSGRILRFWLQGSEAGKFDVLAQVPGFPDNIRRNSKGEYWVALHSKKGLIGNLISSRSWFGKLLLKLPVNFKQLHALLVGGKAHATAVRLSEEGEVLEILEDCEGKTLKFISEVEEKDGKLWFGSVLMPFVVAAVFALLSINPTRFSPPPETTFDHRKTEYVAIHGGVGPESFAFDSAGGGPYTGISDGRIIKWLPEQQSWIDFAVTSPNRTGCEEREKEEKREERCGRPLGLRFKDGTGSGDGDDLYIADAYMGLLRVGANGGLAKKLDFQTEEDEVWKFGSLTFANGLDIDQLSGLIYFTDSSSHYQRRNFATAILSGDNSGRLMKYDPKTKQLSLLLGNLSFPNGVSLSKNSEFLLLAETTKCRILKYWLKTAKAGRYDVIAELPGFPDNIKTSHRGGFWVGIHSRKRGLLRFILAYPWIGKGLLKLPLSIDKLHSCLEKWIGNGGIGIRLSEEGEVMEIIEGKGELKWKSFSEVEEREDGVVWIGSINSPFATKIKI Homology
BLAST of CcUC10G201380 vs. NCBI nr
Match: KAG7027703.1 (Protein STRICTOSIDINE SYNTHASE-LIKE 10 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1222.6 bits (3162), Expect = 0.0e+00 Identity = 609/764 (79.71%), Postives = 666/764 (87.17%), Query Frame = 0
BLAST of CcUC10G201380 vs. NCBI nr
Match: KAF7819103.1 (protein STRICTOSIDINE SYNTHASE-LIKE 10 [Senna tora]) HSP 1 Score: 836.6 bits (2160), Expect = 1.6e-238 Identity = 436/779 (55.97%), Postives = 547/779 (70.22%), Query Frame = 0
BLAST of CcUC10G201380 vs. NCBI nr
Match: QCD97013.1 (strictosidine synthase [Vigna unguiculata]) HSP 1 Score: 810.8 bits (2093), Expect = 9.5e-231 Identity = 423/794 (53.27%), Postives = 540/794 (68.01%), Query Frame = 0
BLAST of CcUC10G201380 vs. NCBI nr
Match: XP_038905395.1 (protein STRICTOSIDINE SYNTHASE-LIKE 10-like [Benincasa hispida]) HSP 1 Score: 705.7 bits (1820), Expect = 4.3e-199 Identity = 347/371 (93.53%), Postives = 358/371 (96.50%), Query Frame = 0
BLAST of CcUC10G201380 vs. NCBI nr
Match: BBH07203.1 (Calcium-dependent phosphotriesterase superfamily protein [Prunus dulcis]) HSP 1 Score: 704.9 bits (1818), Expect = 7.3e-199 Identity = 382/730 (52.33%), Postives = 478/730 (65.48%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy Swiss-Prot
Match: Q4V3D9 (Protein STRICTOSIDINE SYNTHASE-LIKE 10 OS=Arabidopsis thaliana OX=3702 GN=SSL10 PE=2 SV=1) HSP 1 Score: 493.0 bits (1268), Expect = 5.7e-138 Identity = 243/372 (65.32%), Postives = 294/372 (79.03%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy Swiss-Prot
Match: Q8VWF6 (Protein STRICTOSIDINE SYNTHASE-LIKE 3 OS=Arabidopsis thaliana OX=3702 GN=SSL3 PE=2 SV=1) HSP 1 Score: 355.5 bits (911), Expect = 1.4e-96 Identity = 175/320 (54.69%), Postives = 230/320 (71.88%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy Swiss-Prot
Match: Q9SLG8 (Protein STRICTOSIDINE SYNTHASE-LIKE 2 OS=Arabidopsis thaliana OX=3702 GN=SSL2 PE=2 SV=1) HSP 1 Score: 352.1 bits (902), Expect = 1.6e-95 Identity = 181/343 (52.77%), Postives = 239/343 (69.68%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy Swiss-Prot
Match: Q9M1J6 (Protein STRICTOSIDINE SYNTHASE-LIKE 9 OS=Arabidopsis thaliana OX=3702 GN=SSL9 PE=2 SV=1) HSP 1 Score: 332.0 bits (850), Expect = 1.7e-89 Identity = 172/365 (47.12%), Postives = 229/365 (62.74%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy Swiss-Prot
Match: F4IJZ6 (Protein STRICTOSIDINE SYNTHASE-LIKE 1 OS=Arabidopsis thaliana OX=3702 GN=SSL1 PE=3 SV=1) HSP 1 Score: 312.0 bits (798), Expect = 1.8e-83 Identity = 158/327 (48.32%), Postives = 205/327 (62.69%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy TrEMBL
Match: A0A4D6M860 (Strictosidine synthase OS=Vigna unguiculata OX=3917 GN=DEO72_LG6g1723 PE=3 SV=1) HSP 1 Score: 810.8 bits (2093), Expect = 4.6e-231 Identity = 423/794 (53.27%), Postives = 540/794 (68.01%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy TrEMBL
Match: A0A4Y1RTW7 (Calcium-dependent phosphotriesterase superfamily protein OS=Prunus dulcis OX=3755 GN=Prudu_019072 PE=3 SV=1) HSP 1 Score: 704.9 bits (1818), Expect = 3.5e-199 Identity = 382/730 (52.33%), Postives = 478/730 (65.48%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy TrEMBL
Match: A0A0A0LFI7 (Str_synth domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G821600 PE=3 SV=1) HSP 1 Score: 686.4 bits (1770), Expect = 1.3e-193 Identity = 337/372 (90.59%), Postives = 354/372 (95.16%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy TrEMBL
Match: A0A5D3DPF5 (Protein STRICTOSIDINE SYNTHASE-LIKE 10 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold352G006850 PE=3 SV=1) HSP 1 Score: 681.0 bits (1756), Expect = 5.5e-192 Identity = 338/372 (90.86%), Postives = 352/372 (94.62%), Query Frame = 0
BLAST of CcUC10G201380 vs. ExPASy TrEMBL
Match: A0A1S3B7L5 (protein STRICTOSIDINE SYNTHASE-LIKE 10 OS=Cucumis melo OX=3656 GN=LOC103486896 PE=3 SV=1) HSP 1 Score: 681.0 bits (1756), Expect = 5.5e-192 Identity = 338/372 (90.86%), Postives = 352/372 (94.62%), Query Frame = 0
BLAST of CcUC10G201380 vs. TAIR 10
Match: AT3G57030.1 (Calcium-dependent phosphotriesterase superfamily protein ) HSP 1 Score: 493.0 bits (1268), Expect = 4.1e-139 Identity = 243/372 (65.32%), Postives = 294/372 (79.03%), Query Frame = 0
BLAST of CcUC10G201380 vs. TAIR 10
Match: AT1G08470.1 (strictosidine synthase-like 3 ) HSP 1 Score: 355.5 bits (911), Expect = 1.0e-97 Identity = 175/320 (54.69%), Postives = 230/320 (71.88%), Query Frame = 0
BLAST of CcUC10G201380 vs. TAIR 10
Match: AT2G41290.1 (strictosidine synthase-like 2 ) HSP 1 Score: 352.1 bits (902), Expect = 1.1e-96 Identity = 181/343 (52.77%), Postives = 239/343 (69.68%), Query Frame = 0
BLAST of CcUC10G201380 vs. TAIR 10
Match: AT5G22020.1 (Calcium-dependent phosphotriesterase superfamily protein ) HSP 1 Score: 342.8 bits (878), Expect = 6.8e-94 Identity = 173/345 (50.14%), Postives = 225/345 (65.22%), Query Frame = 0
BLAST of CcUC10G201380 vs. TAIR 10
Match: AT3G57020.1 (Calcium-dependent phosphotriesterase superfamily protein ) HSP 1 Score: 332.0 bits (850), Expect = 1.2e-90 Identity = 172/365 (47.12%), Postives = 229/365 (62.74%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (PI 537277) v1
Date Performed: 2022-01-31 Position : 0 Zoom : x 1
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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