Cla012408 (gene) Watermelon (97103) v1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAAACACCTAAGCCATGGCTAATTTGCATCTTCTTCTTCCTTCTTCTTACTGCATTTCCAGCGGCGGTTTCCGCCCAATTCACCTTCCCGGAAACCACCTCCACGGCGGTTCCTGATCCCAGCAAATTCTTCTCTCCCACGCTCCTCTCCTCTCCACTTCCCACAAATTCCTTCTTCCAGAACTTTGTACTCAACAATGGCGATCTGCCGGAATATATACATCCCTATCTCGTCAGAACAGCAAATTCTTCGCTATCTGTTTCATACCCATCTCGTATTTCCAATTCTTCAATCACTTTGTTGCCGTTCTCTCCCGATCTCACCATTTCTGCACTCAACAGAACTTCCCCTGTTTCTAACACAACCCATTTCATCTCCTCCTTCAGCGATCTCGGTGTTGATTTGGACATTGGCGATTTCAGATTCCATCTTGTTCGTGGAAGTCCTTACTTGACTTTCTCTGTTATGAAAACCTCCTCTGTTTCGATCTCTACCGGCAATGACATCCGATCTGTTGATTCTTACGAGGATTCAACAAAATATATCATTCGGTTGAGCAACGGCCGGAATTGGGTGCTTTATTCCTCGTCCACGATTTATCTGATTAAATCGAAGAACAATCAGATTGTCGCTTCCGGTGGATTTTCCGGCGTGATTCGGGTTGCTGTTTTGCCAAATTCAGCGAAGGAATCGGAAAAAATTCTCGATCGGTACAGTGGATGCTACCCTGTTTCTGGGTTTGTAAAGTTGTCGGAAAATTTTGGGTTTAAGTACAAATGGCAGAAGAAAGGAAGTGGTGGCCTTCTCATGTTGGCTCACCCATTGCACCGGCAAATCTTGTCGGGAAATCAAACGTTTCTTCAGAACCTCCGGTACAGCAGCATCGACGGCGACCTTCTGGGGGTGGTTGGAGATTCGTGGGATTTGAATTTCAATCCGATTCCGATCACTTGGCATTCAATCGACGGAATCGACAGCAAATTCTTCCCTGAGATTGTCGCGGCTCTTAAACGTGACGTCGCGACTTTAAACGTTACAGAGCTTTCGTCAACGGCGGCATCGTATTTCTACGGTAAGTTGCTGGCCAGAGCTGCGAGATTGGCACTGATCGCCGAGGAGGTGGATTACGCTGCCGGCGTGATTCCGGCGGTGGTGAAATTTTTGAAAAATGGCATTCAGCCATGGCTGATCGGGAAATTTCCGAAAAATGGGTTTCTTTATGAAAGAAAATGGAGTGGATTGGTGACAAAGAACGGTGCTACAAGTACAACAGAGGATTTCGGATTTGGAATCTACAACGATCACCATTTCCATTTAGGCTATTTCGTCTACTCAATCGCCGTTCTTGCAAAACTCGACCCAAATTGGGGAAAACAATACAAGCCTCAAGCGTACGCTTTGGTTTACGATTACATGAATTTCAGACCCAAAAAAACCCAATTCTCAATTCCGTTTCGAAACTTCGATTTCTGGAAGCTCCACTCCTGGGCCGCTGGATTGACCGAATTCCCCTTCAGCCGGAATCAGGAGAGCACAACCGAGGCCGTCAACGCCTATTACGCGGCGGCGCTGATGGGTTTGGCTTACGACGATGAGTCCCTAACGGCCGCCGGGTCAACACTGACGGCGGCGGAGATCGCGGCGACACAAACATGGTGGCATGTGAAGAGAGAAAAGAACTGGATTTACGACGAGGGATTTGCAGAGGAAAACAGAGTGGTGGGGATTTTGTGGAGTGGGGCAAGGGAGAGTCGGCTGTGGTTTGCGCCAGCGGAGTGGAGGGAGTGTAGAGTTGGGATACAGGTGTTGCCGGTGTTACCAGTGACGGAGAGGGTGTTTTCCGACGAGGAGTTTGTGAAGGAGGTTGTGGAGTGGGTGTCACCGGCGTTGGAACGGGAAGACGCCGGCGAAGGGTGGAAGGGATTTGCGTATGCTTTGGAAGGGATTTATGATAAGAAGAGTGCAGTTGAGAAGGTAAAGAAGTTGAAGAAACATGATGATGGGAATTCTCTGAGTAATCTTTTGTGGTGGATTTACAGTCGGCCACAGGGGCGAAGTTGAAGACGGTCACCGGGAAACAGGGGAAAACGGATTTTGATTGCCTAGTTTTCCACGTGTTACACGTGTACTATTCTTTTTCTGGCCGTATTCTTTTGGGATTTACTATTAATTAAATTTACATTAAAAATATATATATTAATTTGGCCACTGCCACTACGTCGTGGTTCACATTGTTGTTACTACTTTCTTAATAATTTATCATTTGTTTGTGTCTGAATTGTATTGTGACATGAGGAATTTCAGATTACTTTTTATTTTCTAGCAGAAAGAAAACTAGACACTAACAAAATTAATTTAAAAGCATATTTAATTGAATGATTATCTTTTTTTTTTTTTTTCTTTTTAATCTATTTGTATAGGCATTTTCAAGTACGAAACTTAATTGAGTAGGAATTTACATTCACTCATTTCTTATATCTAAAAAGTTTAAATTTTTATATTATATATCAATTATATTTGCCGGAAAAGAAAGAATATTTTATTTTTTTCTATTATATTTTTATAAACCATTATATTTAAAATAAATAAAATATATTACTAATTCATTTACTATTAATGAATACACTCATTTGTTGTAAATACGTATATATACTATTATTATATTCAATCATGTTGTTTGAAATGTAATTTAAGTTTTTCTAAAAGTTAATAATAACAACAATGCTATTTAAGTATACCCTCAAAAATATAAATAACACAATAGGCATTGAAGCATGTTAAAAAAAGGCAAAGACAAAACTTAAATTTTATGGTGATGTAACAAAATGTTTTGCAGAGTTACCTCTCCCTTGGGAAGAGAAATTTTATTTTGAAAACTACATGTGGATATAGATATTAACGTAAACCTTATAAAGAAATTGTTTGAATCATAAATTTCGTTGTCATATTGATATATTTTTTTTTTTAGCAATATTTTATATTTTTATAGATTTGATATTATATAAGAAACGAATTGATATTTAATTGATAGAAAATTCATATGTTTGGGAGTCTCTGACGATTAATGATTAAATAAACCAAGATTTTACCGTGGGTGCAATTTTAGAGAGATGAGAAAGCGAAAGCCTATAGGATTGTTTCTACAACTAGATAACCAACACTAAAACCATCTCTACATTGGATGGTTTGGTGTTTTAATAATCCCTACCTTATTAGCTGCAACTTCTGTATTTATTAATTGCCTTCATTACTACTCATCTAGTAGATATTGGTGGTATTTGTAGATATGTTTCTGGAACTCTAGTTTATGGAAACAATATTATTTCTAGTGCTAATATTCCTGTTTCTACAGCTATCGGTTTGCACTTTTATCCAATTTGAAAAGTTGTCGTTAATAAATGATTATACAATGGTGGTCCTTATGAGCTAATTATTCTAAAGTTTTTACTTGGTGTAACATGTTACACGGATCAAGAGTGGAAATTTAGTTTTTGCTTGAATATATCATAGAAAAACCACCCAAAAAAAACAATAAAATGTCATTATTATAAATATAATATAAATAATAAAGATATAAGTTGGTTAAAAATTATAAAATATTTATTTGCTAATTTAAGTTTTTTTTTTTTTTTTTTTTTTTTTTATTTTTTTTTTTTTTTTTTTTTTTAATTATTTGTTTCTATAGTTGTTTAGAAATATCTATCAAAATGGAGATTTTGGTAAAATTAAGACATTTCCGTTGACATCCATGTCTGAAAGCTTGATTTAAGTATAAAAGGAAGAGCTTAAAAAGGTGCATGGAAGTTTAGTGAAGAAGAAGAAGGATTGGAAATGTCTTCGTCCAGTGTTTGTTCCGAAATCTCAACCCCCCAACTTCCATGGAAGCACAGAATTACTCTTCGATTCGCTGCTCTGCTCTTCAATACTTCTCTCCGATCAGATCTCACCGTCAATCGTTGGCTTCTCAATCTCATCGACCCCAAAATCCCTCCAAATAATCCACGCCGTGTCCTCTTCCGATCTCACCATCGACACTTCTCGCCACCTCTTCCTTCGAATCTTCACCCCCACCGACGCCGACGCCGACTCTCTCCCGCTGCCCCTCATTTTCTACTTCCACGGCGGCGGATTCGCCTTCGGTTCCGCCGATGCCACTTCAATGGACATGGCTGCTCGCCGCTTTGCCAAAGAACTACGCGCAGTCGTAATCTCCGTCAACTACCGCCTCGCTCCGGAGTTCCGATTCCCCTGCCAGTACGACGACGGATTCGACGCTTTGAAATTCATTGACGAAATGGACGACGGCGGATTGCTGGGGAGGGCAGATCTGAGCCGTTGCTTCATTTTGGGGGAAAGCGCCGGGGGGAATTTGGGGCACCACGTGGCGGTAAGGGCGAGCGAGTACGAGTTGAAGAGAGTGAAGGTGGTTGGATTTATAGCGTCGCAGCCGTTTTTCGGCGGAGAGGAAAGAACAGAGTCGGAGAATCGACTGTGTAAGCAGCTTCCGTTGACTCTGAGCATGACGGATTGGTTTTGGAGGGCGTTTTTGCCGGGCGGGGAAGATCGAGACCATGCGGCGGCGAATGTGAATGGACCCAATGGAAGGGATATCTCGGGATTGAGAAATTTTCCGGCTACAGTGATTTTCGGCGGAGGATTGGATCTGCTGATTGATCGACAAAAGTGTTATTATGAGGGGCTGAAGAGAATGGGAAAGGATGTGAAGTTGGTGGTGTTTTCGAACGCCATCCATGGATTCTTTGGCTTTGCGGATCTGCCGGAATATTCTTTAATGATTAAGGAGGTGAGGGATTTCATTGCAAAGCTCAAATAG ATGGAAACACCTAAGCCATGGCTAATTTGCATCTTCTTCTTCCTTCTTCTTACTGCATTTCCAGCGGCGGTTTCCGCCCAATTCACCTTCCCGGAAACCACCTCCACGGCGGTTCCTGATCCCAGCAAATTCTTCTCTCCCACGCTCCTCTCCTCTCCACTTCCCACAAATTCCTTCTTCCAGAACTTTGTACTCAACAATGGCGATCTGCCGGAATATATACATCCCTATCTCGTCAGAACAGCAAATTCTTCGCTATCTGTTTCATACCCATCTCGTATTTCCAATTCTTCAATCACTTTGTTGCCGTTCTCTCCCGATCTCACCATTTCTGCACTCAACAGAACTTCCCCTGTTTCTAACACAACCCATTTCATCTCCTCCTTCAGCGATCTCGGTGTTGATTTGGACATTGGCGATTTCAGATTCCATCTTGTTCGTGGAAGTCCTTACTTGACTTTCTCTGTTATGAAAACCTCCTCTGTTTCGATCTCTACCGGCAATGACATCCGATCTGTTGATTCTTACGAGGATTCAACAAAATATATCATTCGGTTGAGCAACGGCCGGAATTGGGTGCTTTATTCCTCGTCCACGATTTATCTGATTAAATCGAAGAACAATCAGATTGTCGCTTCCGGTGGATTTTCCGGCGTGATTCGGGTTGCTGTTTTGCCAAATTCAGCGAAGGAATCGGAAAAAATTCTCGATCGGTACAGTGGATGCTACCCTGTTTCTGGGTTTGTAAAGTTGTCGGAAAATTTTGGGTTTAAGTACAAATGGCAGAAGAAAGGAAGTGGTGGCCTTCTCATGTTGGCTCACCCATTGCACCGGCAAATCTTGTCGGGAAATCAAACGTTTCTTCAGAACCTCCGGTACAGCAGCATCGACGGCGACCTTCTGGGGGTGGTTGGAGATTCGTGGGATTTGAATTTCAATCCGATTCCGATCACTTGGCATTCAATCGACGGAATCGACAGCAAATTCTTCCCTGAGATTGTCGCGGCTCTTAAACGTGACGTCGCGACTTTAAACGTTACAGAGCTTTCGTCAACGGCGGCATCGTATTTCTACGGTAAGTTGCTGGCCAGAGCTGCGAGATTGGCACTGATCGCCGAGGAGGTGGATTACGCTGCCGGCGTGATTCCGGCGGTGGTGAAATTTTTGAAAAATGGCATTCAGCCATGGCTGATCGGGAAATTTCCGAAAAATGGGTTTCTTTATGAAAGAAAATGGAGTGGATTGGTGACAAAGAACGGTGCTACAAGTACAACAGAGGATTTCGGATTTGGAATCTACAACGATCACCATTTCCATTTAGGCTATTTCGTCTACTCAATCGCCGTTCTTGCAAAACTCGACCCAAATTGGGGAAAACAATACAAGCCTCAAGCGTACGCTTTGGTTTACGATTACATGAATTTCAGACCCAAAAAAACCCAATTCTCAATTCCGTTTCGAAACTTCGATTTCTGGAAGCTCCACTCCTGGGCCGCTGGATTGACCGAATTCCCCTTCAGCCGGAATCAGGAGAGCACAACCGAGGCCGTCAACGCCTATTACGCGGCGGCGCTGATGGGTTTGGCTTACGACGATGAGTCCCTAACGGCCGCCGGGTCAACACTGACGGCGGCGGAGATCGCGGCGACACAAACATGGTGGCATGTGAAGAGAGAAAAGAACTGGATTTACGACGAGGGATTTGCAGAGGAAAACAGAGTGGTGGGGATTTTGTGGAGTGGGGCAAGGGAGAGTCGGCTGTGGTTTGCGCCAGCGGAGTGGAGGGAGTGTAGAGTTGGGATACAGGTGTTGCCGGTGTTACCAGTGACGGAGAGGGTGTTTTCCGACGAGGAGTTTGTGAAGGAGGTTGTGGAGTGGGTGTCACCGGCGTTGGAACGGGAAGACGCCGGCGAAGGGTGGAAGGGATTTGCGTATGCTTTGGAAGGGATTTATGATAAGAAGAGTGCAGTTGAGAAGGAAGAGCTTAAAAAGGTGCATGGAAGTTTAGTGAAGAAGAAGAAGGATTGGAAATGTCTTCGTCCAGTGTTTGTTCCGAAATCTCAACCCCCCAACTTCCATGGAAGCACAGAATTACTCTTCGATTCGCTGCTCTGCTCTTCAATACTTCTCTCCGATCAGATCTCACCGTCAATCGTTGGCTTCTCAATCTCATCGACCCCAAAATCCCTCCAAATAATCCACGCCGTGTCCTCTTCCGATCTCACCATCGACACTTCTCGCCACCTCTTCCTTCGAATCTTCACCCCCACCGACGCCGACGCCGACTCTCTCCCGCTGCCCCTCATTTTCTACTTCCACGGCGGCGGATTCGCCTTCGGTTCCGCCGATGCCACTTCAATGGACATGGCTGCTCGCCGCTTTGCCAAAGAACTACGCGCAGTCGTAATCTCCGTCAACTACCGCCTCGCTCCGGAGTTCCGATTCCCCTGCCAGTACGACGACGGATTCGACGCTTTGAAATTCATTGACGAAATGGACGACGGCGGATTGCTGGGGAGGGCAGATCTGAGCCGTTGCTTCATTTTGGGGGAAAGCGCCGGGGGGAATTTGGGGCACCACGTGGCGGTAAGGGCGAGCGAGTACGAGTTGAAGAGAGTGAAGGTGGTTGGATTTATAGCGTCGCAGCCGTTTTTCGGCGGAGAGGAAAGAACAGAGTCGGAGAATCGACTGTGTAAGCAGCTTCCGTTGACTCTGAGCATGACGGATTGGTTTTGGAGGGCGTTTTTGCCGGGCGGGGAAGATCGAGACCATGCGGCGGCGAATGTGAATGGACCCAATGGAAGGGATATCTCGGGATTGAGAAATTTTCCGGCTACAGTGATTTTCGGCGGAGGATTGGATCTGCTGATTGATCGACAAAAGTGTTATTATGAGGGGCTGAAGAGAATGGGAAAGGATGTGAAGTTGGTGGTGTTTTCGAACGCCATCCATGGATTCTTTGGCTTTGCGGATCTGCCGGAATATTCTTTAATGATTAAGGAGGTGAGGGATTTCATTGCAAAGCTCAAATAG ATGGAAACACCTAAGCCATGGCTAATTTGCATCTTCTTCTTCCTTCTTCTTACTGCATTTCCAGCGGCGGTTTCCGCCCAATTCACCTTCCCGGAAACCACCTCCACGGCGGTTCCTGATCCCAGCAAATTCTTCTCTCCCACGCTCCTCTCCTCTCCACTTCCCACAAATTCCTTCTTCCAGAACTTTGTACTCAACAATGGCGATCTGCCGGAATATATACATCCCTATCTCGTCAGAACAGCAAATTCTTCGCTATCTGTTTCATACCCATCTCGTATTTCCAATTCTTCAATCACTTTGTTGCCGTTCTCTCCCGATCTCACCATTTCTGCACTCAACAGAACTTCCCCTGTTTCTAACACAACCCATTTCATCTCCTCCTTCAGCGATCTCGGTGTTGATTTGGACATTGGCGATTTCAGATTCCATCTTGTTCGTGGAAGTCCTTACTTGACTTTCTCTGTTATGAAAACCTCCTCTGTTTCGATCTCTACCGGCAATGACATCCGATCTGTTGATTCTTACGAGGATTCAACAAAATATATCATTCGGTTGAGCAACGGCCGGAATTGGGTGCTTTATTCCTCGTCCACGATTTATCTGATTAAATCGAAGAACAATCAGATTGTCGCTTCCGGTGGATTTTCCGGCGTGATTCGGGTTGCTGTTTTGCCAAATTCAGCGAAGGAATCGGAAAAAATTCTCGATCGGTACAGTGGATGCTACCCTGTTTCTGGGTTTGTAAAGTTGTCGGAAAATTTTGGGTTTAAGTACAAATGGCAGAAGAAAGGAAGTGGTGGCCTTCTCATGTTGGCTCACCCATTGCACCGGCAAATCTTGTCGGGAAATCAAACGTTTCTTCAGAACCTCCGGTACAGCAGCATCGACGGCGACCTTCTGGGGGTGGTTGGAGATTCGTGGGATTTGAATTTCAATCCGATTCCGATCACTTGGCATTCAATCGACGGAATCGACAGCAAATTCTTCCCTGAGATTGTCGCGGCTCTTAAACGTGACGTCGCGACTTTAAACGTTACAGAGCTTTCGTCAACGGCGGCATCGTATTTCTACGGTAAGTTGCTGGCCAGAGCTGCGAGATTGGCACTGATCGCCGAGGAGGTGGATTACGCTGCCGGCGTGATTCCGGCGGTGGTGAAATTTTTGAAAAATGGCATTCAGCCATGGCTGATCGGGAAATTTCCGAAAAATGGGTTTCTTTATGAAAGAAAATGGAGTGGATTGGTGACAAAGAACGGTGCTACAAGTACAACAGAGGATTTCGGATTTGGAATCTACAACGATCACCATTTCCATTTAGGCTATTTCGTCTACTCAATCGCCGTTCTTGCAAAACTCGACCCAAATTGGGGAAAACAATACAAGCCTCAAGCGTACGCTTTGGTTTACGATTACATGAATTTCAGACCCAAAAAAACCCAATTCTCAATTCCGTTTCGAAACTTCGATTTCTGGAAGCTCCACTCCTGGGCCGCTGGATTGACCGAATTCCCCTTCAGCCGGAATCAGGAGAGCACAACCGAGGCCGTCAACGCCTATTACGCGGCGGCGCTGATGGGTTTGGCTTACGACGATGAGTCCCTAACGGCCGCCGGGTCAACACTGACGGCGGCGGAGATCGCGGCGACACAAACATGGTGGCATGTGAAGAGAGAAAAGAACTGGATTTACGACGAGGGATTTGCAGAGGAAAACAGAGTGGTGGGGATTTTGTGGAGTGGGGCAAGGGAGAGTCGGCTGTGGTTTGCGCCAGCGGAGTGGAGGGAGTGTAGAGTTGGGATACAGGTGTTGCCGGTGTTACCAGTGACGGAGAGGGTGTTTTCCGACGAGGAGTTTGTGAAGGAGGTTGTGGAGTGGGTGTCACCGGCGTTGGAACGGGAAGACGCCGGCGAAGGGTGGAAGGGATTTGCGTATGCTTTGGAAGGGATTTATGATAAGAAGAGTGCAGTTGAGAAGGAAGAGCTTAAAAAGGTGCATGGAAGTTTAGTGAAGAAGAAGAAGGATTGGAAATGTCTTCGTCCAGTGTTTGTTCCGAAATCTCAACCCCCCAACTTCCATGGAAGCACAGAATTACTCTTCGATTCGCTGCTCTGCTCTTCAATACTTCTCTCCGATCAGATCTCACCGTCAATCGTTGGCTTCTCAATCTCATCGACCCCAAAATCCCTCCAAATAATCCACGCCGTGTCCTCTTCCGATCTCACCATCGACACTTCTCGCCACCTCTTCCTTCGAATCTTCACCCCCACCGACGCCGACGCCGACTCTCTCCCGCTGCCCCTCATTTTCTACTTCCACGGCGGCGGATTCGCCTTCGGTTCCGCCGATGCCACTTCAATGGACATGGCTGCTCGCCGCTTTGCCAAAGAACTACGCGCAGTCGTAATCTCCGTCAACTACCGCCTCGCTCCGGAGTTCCGATTCCCCTGCCAGTACGACGACGGATTCGACGCTTTGAAATTCATTGACGAAATGGACGACGGCGGATTGCTGGGGAGGGCAGATCTGAGCCGTTGCTTCATTTTGGGGGAAAGCGCCGGGGGGAATTTGGGGCACCACGTGGCGGTAAGGGCGAGCGAGTACGAGTTGAAGAGAGTGAAGGTGGTTGGATTTATAGCGTCGCAGCCGTTTTTCGGCGGAGAGGAAAGAACAGAGTCGGAGAATCGACTGTGTAAGCAGCTTCCGTTGACTCTGAGCATGACGGATTGGTTTTGGAGGGCGTTTTTGCCGGGCGGGGAAGATCGAGACCATGCGGCGGCGAATGTGAATGGACCCAATGGAAGGGATATCTCGGGATTGAGAAATTTTCCGGCTACAGTGATTTTCGGCGGAGGATTGGATCTGCTGATTGATCGACAAAAGTGTTATTATGAGGGGCTGAAGAGAATGGGAAAGGATGTGAAGTTGGTGGTGTTTTCGAACGCCATCCATGGATTCTTTGGCTTTGCGGATCTGCCGGAATATTCTTTAATGATTAAGGAGGTGAGGGATTTCATTGCAAAGCTCAAATAG METPKPWLICIFFFLLLTAFPAAVSAQFTFPETTSTAVPDPSKFFSPTLLSSPLPTNSFFQNFVLNNGDLPEYIHPYLVRTANSSLSVSYPSRISNSSITLLPFSPDLTISALNRTSPVSNTTHFISSFSDLGVDLDIGDFRFHLVRGSPYLTFSVMKTSSVSISTGNDIRSVDSYEDSTKYIIRLSNGRNWVLYSSSTIYLIKSKNNQIVASGGFSGVIRVAVLPNSAKESEKILDRYSGCYPVSGFVKLSENFGFKYKWQKKGSGGLLMLAHPLHRQILSGNQTFLQNLRYSSIDGDLLGVVGDSWDLNFNPIPITWHSIDGIDSKFFPEIVAALKRDVATLNVTELSSTAASYFYGKLLARAARLALIAEEVDYAAGVIPAVVKFLKNGIQPWLIGKFPKNGFLYERKWSGLVTKNGATSTTEDFGFGIYNDHHFHLGYFVYSIAVLAKLDPNWGKQYKPQAYALVYDYMNFRPKKTQFSIPFRNFDFWKLHSWAAGLTEFPFSRNQESTTEAVNAYYAAALMGLAYDDESLTAAGSTLTAAEIAATQTWWHVKREKNWIYDEGFAEENRVVGILWSGARESRLWFAPAEWRECRVGIQVLPVLPVTERVFSDEEFVKEVVEWVSPALEREDAGEGWKGFAYALEGIYDKKSAVEKEELKKVHGSLVKKKKDWKCLRPVFVPKSQPPNFHGSTELLFDSLLCSSILLSDQISPSIVGFSISSTPKSLQIIHAVSSSDLTIDTSRHLFLRIFTPTDADADSLPLPLIFYFHGGGFAFGSADATSMDMAARRFAKELRAVVISVNYRLAPEFRFPCQYDDGFDALKFIDEMDDGGLLGRADLSRCFILGESAGGNLGHHVAVRASEYELKRVKVVGFIASQPFFGGEERTESENRLCKQLPLTLSMTDWFWRAFLPGGEDRDHAAANVNGPNGRDISGLRNFPATVIFGGGLDLLIDRQKCYYEGLKRMGKDVKLVVFSNAIHGFFGFADLPEYSLMIKEVRDFIAKLK
BLAST of Cla012408 vs. Swiss-Prot
Match: CXE18_ARATH (Probable carboxylesterase 18 OS=Arabidopsis thaliana GN=CXE18 PE=1 SV=1) HSP 1 Score: 256.5 bits (654), Expect = 1.2e-66 Identity = 136/283 (48.06%), Postives = 179/283 (63.25%), Query Frame = 1
BLAST of Cla012408 vs. Swiss-Prot
Match: GID1_ORYSJ (Gibberellin receptor GID1 OS=Oryza sativa subsp. japonica GN=GID1 PE=1 SV=1) HSP 1 Score: 209.1 bits (531), Expect = 2.2e-52 Identity = 127/302 (42.05%), Postives = 166/302 (54.97%), Query Frame = 1
BLAST of Cla012408 vs. Swiss-Prot
Match: GID1C_ARATH (Gibberellin receptor GID1C OS=Arabidopsis thaliana GN=GID1C PE=1 SV=1) HSP 1 Score: 207.2 bits (526), Expect = 8.3e-52 Identity = 118/292 (40.41%), Postives = 166/292 (56.85%), Query Frame = 1
BLAST of Cla012408 vs. Swiss-Prot
Match: GID1A_ARATH (Gibberellin receptor GID1A OS=Arabidopsis thaliana GN=GID1A PE=1 SV=1) HSP 1 Score: 194.5 bits (493), Expect = 5.6e-48 Identity = 110/288 (38.19%), Postives = 160/288 (55.56%), Query Frame = 1
BLAST of Cla012408 vs. Swiss-Prot
Match: GID1B_ARATH (Gibberellin receptor GID1B OS=Arabidopsis thaliana GN=GID1B PE=1 SV=1) HSP 1 Score: 187.6 bits (475), Expect = 6.8e-46 Identity = 102/290 (35.17%), Postives = 159/290 (54.83%), Query Frame = 1
BLAST of Cla012408 vs. TrEMBL
Match: A0A0A0KW06_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G647400 PE=4 SV=1) HSP 1 Score: 1163.7 bits (3009), Expect = 0.0e+00 Identity = 588/683 (86.09%), Postives = 615/683 (90.04%), Query Frame = 1
BLAST of Cla012408 vs. TrEMBL
Match: A0A142BTQ9_CUCME (Beta-1,3-glucanase 2 OS=Cucumis melo GN=glu2 PE=2 SV=1) HSP 1 Score: 1149.4 bits (2972), Expect = 0.0e+00 Identity = 575/673 (85.44%), Postives = 607/673 (90.19%), Query Frame = 1
BLAST of Cla012408 vs. TrEMBL
Match: W9R5F5_9ROSA (Endo-1,3(4)-beta-glucanase 1 OS=Morus notabilis GN=L484_009128 PE=4 SV=1) HSP 1 Score: 763.1 bits (1969), Expect = 4.4e-217 Identity = 382/657 (58.14%), Postives = 481/657 (73.21%), Query Frame = 1
BLAST of Cla012408 vs. TrEMBL
Match: F6GVR6_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_14s0083g00340 PE=4 SV=1) HSP 1 Score: 753.1 bits (1943), Expect = 4.5e-214 Identity = 375/648 (57.87%), Postives = 479/648 (73.92%), Query Frame = 1
BLAST of Cla012408 vs. TrEMBL
Match: A0A061EHI7_THECC (Glycosyl hydrolase family 81 protein OS=Theobroma cacao GN=TCM_019610 PE=4 SV=1) HSP 1 Score: 752.7 bits (1942), Expect = 5.9e-214 Identity = 376/637 (59.03%), Postives = 469/637 (73.63%), Query Frame = 1
BLAST of Cla012408 vs. NCBI nr
Match: gi|778707755|ref|XP_011656051.1| (PREDICTED: putative endo-1,3(4)-beta-glucanase 2 [Cucumis sativus]) HSP 1 Score: 1163.7 bits (3009), Expect = 0.0e+00 Identity = 588/683 (86.09%), Postives = 615/683 (90.04%), Query Frame = 1
BLAST of Cla012408 vs. NCBI nr
Match: gi|1004356876|gb|AMP41497.1| (beta-1,3-glucanase 2 [Cucumis melo]) HSP 1 Score: 1149.4 bits (2972), Expect = 0.0e+00 Identity = 575/673 (85.44%), Postives = 607/673 (90.19%), Query Frame = 1
BLAST of Cla012408 vs. NCBI nr
Match: gi|659119185|ref|XP_008459519.1| (PREDICTED: putative endo-1,3(4)-beta-glucanase 2 [Cucumis melo]) HSP 1 Score: 1149.4 bits (2972), Expect = 0.0e+00 Identity = 575/673 (85.44%), Postives = 607/673 (90.19%), Query Frame = 1
BLAST of Cla012408 vs. NCBI nr
Match: gi|703103793|ref|XP_010097822.1| (Endo-1,3(4)-beta-glucanase 1 [Morus notabilis]) HSP 1 Score: 763.1 bits (1969), Expect = 6.3e-217 Identity = 382/657 (58.14%), Postives = 481/657 (73.21%), Query Frame = 1
BLAST of Cla012408 vs. NCBI nr
Match: gi|1009127025|ref|XP_015880475.1| (PREDICTED: probable endo-1,3(4)-beta-glucanase ARB_01444 [Ziziphus jujuba]) HSP 1 Score: 753.4 bits (1944), Expect = 5.0e-214 Identity = 367/636 (57.70%), Postives = 468/636 (73.58%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
This gene is associated with the following unigenes:
Analysis Name: InterPro Annotations of watermelon (97103)
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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