ClCG00G001080 (gene) Watermelon (Charleston Gray)
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.ATGGCTAATGATCAGCTAAAGCATTCTCCATCTCAGTTTTCCCAAATCTTCCATTTTCTCTTCTTACTTATTGGCTTCTCCTTTGGAATGGCTATCAGTTTGAACCTTAAGAGCTTCTCATCCTTTAACATCCACCTCCCTAACTTTTCCTTTCCATCTTCACCATCAACAACACTAGTGTTTATCAGACAACAGCAGCAACAAACTCCAGCCTCATCGTCACCCCCACCACTTCAACCGCCGTCGTCGTCACCGGCGTCTCCTTCTTTGGTTGACTTTGACAATCAGTTACTCGAGGCGAACGTAGAGCCGCCTCTGATGCATAAAATGAGTGATGATGAGGTGTTTTGGAGAGCATCCATGGTTCCAATGATAAAAAAGTTTCCATATGAACGTGTGCCAAAAATTGCTTTCATGTTTTTGATAAAAGGGGCATTGCCTTTAGCTCCTTTGTGGGAAATGTTCTTCAAAGGACATCAACATTTGTTTTCAATTTATGTGCATACTCATCCATTGTATAATGTTTCTTCTTCTCTGCCTCCAAACTCTGTCTTCTATGGAAGAAGAATCCCAAGCCAGGTCAGGTTATACCTATTTTAATTTTTTTTTTAAAAATCTCTTGATCTCTAAATTAAGGCAGTATTTATTTTGACTAAAATTTCCTTTTAATTCTATGATTGTATGATTAGGTTAGGGTGAATATTTGATCTTTTTTTAATTAAATTGCGAGGAAGATATTTAAATCTCTGACTTATTGATTATAATTTAATAACTAATTGAGTTATGATTAGGTTCACAACGAGTGCACTTTACACACATTAAGGTTTGATATAAAAAATAATTTTTAGAAAACAAAACATACAAAGTTGTATAGTTAATTTTAACTTTTAAATATAACAAAATGAGTCAAATTATTTACAAATATAAAAAAATTTTACGCTCAAGGCCTATCGTTGATAGACAGTAAATTTTATTATTATTATTATTTTTGTTTATATTTGTAGATAGTTTGATATTTTTTCTATTTATAATAATTTTTCTATTATGCATTTTACAATAAAAAAAATCAATAAATAAAGTATGCATGTTTATGTTTTTGAAAAATTGGTAACAAAAAATATTAATTTTTTAATATTTATATAATCTAGGAAGTGTTTTTGGGCTTCTCTCTAATCCTTCTCACCCAATTTTGTACCGAGTCCCTCTGTACTTTATTGTTATATCAATGAAATGAGTAGTGGGATATGATGAGAGTGTTAAAGAATCTGTCAATCTAATTGAGATATTCTGGTGCACCTATACTAACATACGTCGTATCTTTCTAAATAAAATTTTTCTTTTAATAATAATTTGTAATTTAAAAAAAAAATTCAATGGCTATATGGTTTTAATTTTTTTTTATTATTTATTTTTATTTTTTATTTAAACATGAGTAACAATATTAAAGAGAACACTACTAATTTATGTCATGCTTAATTGTGAAAAAACAACTAGATGCTAACTCCATCATTTTTTTATAGGATGCGTTTTTACATTTTCTAATTTTATATATATGCTACCATTGTCTCTAGTTCTAAGAAAGCTATGAAACTTTGCACTTTGAATGAACATAGGCAGTGCAATGGGGAAGACCCTCCATGATCGACGCCGAGCGCCGTCTTCTAGCAAACGCCCTTCTTGACTTCTCTAACGAAAGATTCGTCCTCCTCTCCGAAACTTGTATTCCTCTCTACAACTTCACAACTGTCTACAATTACCTCATTAATTCTCAACACACCTTCGTTTCTTCCTACGACGATCCTCGAAAGATCGGCCGTGGTCGTTACAACCCCAAGATGTTTCCCATCGTGTCGATCGCTGACTGGCGAAAAGGATCGCAGTGGTTTGAAGTTGATCGAACGGTAGCCGTCGAGATAATCTCCGACAAAACATATTACCCTATCTTCAGAGACCATTGCGGGCCACCGTGTTACATGGACGAGCATTACATTCCTACGTTGGTTAACATTGTTTTGCCGGACCGGAATTCCAACAGAACCGTTACATGGGTTGATTGGTCCAAAAACGGTCCGCATCCCGGCAGATTTGGGAGGCGGGAGATCTCGGTCGAGTTTTTGAACCGGGTTCGGTTTGGTTTCAATTGTACTTATAATAATGGAAACGGCACCGTTTCTCCATGCTTTCTGTTTGCTCGGAAATTCATGCCGGATTCTTTACAACCTCTGCTGAAGATTTGGCCATCTCTGTTGGAAGGTTTGGTTTAACCTTAAATAATAATATAATGTTGGTAAATTCTAAATTATTATTCAATATTTTTACACAAATTGATGTAATCTTGATTTAAACTATATACTGAAGAATGATACGAGATACACAAAAAAATTAGTTTCTTTGCTCATTTTTTCTTTGAATTTCATTTGTTTATGAGACCCTTGATTATTAAATATAAATATATTATTTAGATTTAATAAATATCAACTAATACATTTATCATTGAAATTTTATGTTATGTTAACTATTTATTATAAGATTTTATCATTAATTCTAATTAATTTATATTTATTTAACTGTTTTATTATTAAATAAAATAATTTAAATAGTGTTTAATTAAAAAAATATTCATTTATTGATATTTGAAGTGATTGAATGATTAAAATTATTTATGATTACATTAATTGTTCTCCTACATTTTCATTAAATAATTATTTAGTTTGGATTTCTATATACTAGTAAATCAAACACATTAATTTAACTTTCAAACATTAATTATCATACATATCCAAACACAGACATTAATTATCTCAAACATTTAAAATCCAGACATTTGAATTCTTAACATTTAACATCCATACTTATAATCTGCGATTCAAACGGCCTTAGATTATTCAACATAGTACGTAATAATATAATGCATTCTAAATATTATTTTTATGTCGTTCCCTAATAATAACAACATAACTATCATTTGTAACAAACTTAAAGAGGGGGAATAACGAGAATTTAGAGCAAACACTACTGATAGAGGGTGATCTTTAAGCCAAATTTTTGTTACTTCTAATATATATATATTGAAGTGTCACCATGTAGTTGACAAAGAGAGTTTTTATGGACTGGATATGCAGTTGTATGATGAAGATTATAAAGGGAGTCAATAAAAAGACTAGAATTCGTTTAGGTAATGGTATTTTCCAATTAGAAGGTCTCAAAATATGGAATTTTGCTTTAGTCCAAAGAGGTTGAATGCAACCTCAGGCATTTTGGTTGTATGTCTCCATAGAGAGTTACCGCTTCAACAAGTTCAATAAAACATCCAAACTGAAGTTGAAATAATTACCTTCGCATTTGCTAGAAATTTGTAAAAATAACCGACCCATTTTCACTATGTGTTGTCAATTTTATTTGGTAATATTGCATATATCAATTTCTATACCATATTTAGAAATTAATTAAATAATATTATATGTGATCGATCTCAGAATTTTTGTCAAAATGAAATATATTTAGTTAAGCCATAATTGACATGTTTATTCTTTGTCTTGAGATCGAAAGTTCAAAATTCTATACTTAAGATTTATTATATTTAAAAAAAATGAAAAAAAAAAAATCAAGAGCTAGGATTCACACAAATTCTTAGACTAGGGATCCAAAACTTCTTACTCGTATGATGTTGCCAATTTTGTTTTTTTTGTTTAGCAGATATCATATTCTTAGCTATTTTAAGAAACTTAGAAATCAATTAAATAATATTACAAGGTGACAAATTTTTTTTGTTTAGCAGATATCATATTCTTAGCTATTTTAAGAAACTTAGAAATCAATTAAATAATATTACAAGGTGACAAACTACAAAAAAAAAAAAAAAATTATTAATATATAATATGCTAGATGAATACTGAACTATTAACTTTAAAATTAGAATTGATATCGTATATACTTAGTTATGTTTGGATCCACAATATATATGTTTAAGTTTAATATGTATACCATGTCAAAGTAAATATGATTCAATTATCCTATGATAGTGGATGGACCCTAGATATATATATATTAATTATTGACAAACTTTATTTCGAATATCTAATTTTACAACCGCCAAACTGGCCATATCTTTAGTCAACGAGAGAATAAGATTATATAAAAATGATGATAGTAAACGTGTTGACACAAATAATACTTCACTATGTTACTCAACCTANTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCTTTCTTTATTCTTCTTCTTCTTCTTCTTCTTTTTAAAAAATTTGTTTTAAACACGTTCCAACTTCTTATTTAAGAAGAATTTTGTTTGCATTATGGACCAGTGAAATAAGCCAAAAAATCCAATATATATATATATAAAATAAGATAAAGATAATATTTAATCCTGACTTATTTGCGATTAGACAAAATTCATATCCTAATTTTTATATGATTAAGATAAACGCTAGATCAAATCTTTTGTATAGCTCTATATAAGGTAATTTAAACTTTTGACTTCTTTTACAATTATAGTATTTTCGTTCTGATTTTGGTATCGAAACTCTTTTTATTTGTTTTGTAAGTATTCTCTTCCCCAAATTACAAATTTACTATTGCCATTACGTGAAAGTTAGGTGCATTTTTTTCAATCCAAATTTGGATACCAACAATTTAGATGGTATTAAAATAATGACTAAATATAAATAAGGGCAAACTGCACTTTTAGTCCCTGAGGTTTGAGCTTAGTATCTATTTGGTCCATGAAGTTTCAAAATGAACACTTTAGTCTCCGAGATTTGAAAGATGCTTCTAAATGGTTTTTGAATTAATTTGACTATTAGTTGGCTAATAGAAAAGTGACATGGAGTGTCGAGTGGGCACATTTTAAATGAATGGGCATGTTTAGTTAACAATTTTAAATGAGGCGGCCATTTGTAGTACTTTATTTTTTAAAAAATTCTATATTAGGTGGATTTTTTTTCTCTTTCTTTTGTTTCTCTCCTCCCCGGGGACTAAAAGTGCAAGATTTAAAATGTTGATATTGACGAGAATATTGAAGTCTCAATTTTACAAAAAAATATACCTCCCCGGGGACTAAAAGTGCAAGATTTAAAATGTTGATATTGACGAGAATATTGAAGTCTCAATTTTACAAAAAAATATTAATAAAAATATCGATAAAAATATCGATAAAATGTCAATGTTGATAGATATTTTTGAAAAAAATTACAAAAACAAAAAATTCAAAATAATATTTAATTTAGTAAATAAATATTCTAAGGTTTTTAAACCAATTAAAATGTATACCATTTATATTATACATTGACATTAGTGACATTTTATTGCTTATTTAAATCAATAAACAAACATAACTTTAAAATATCTATTATATTACATTGACATAATTGAATTTAAGAGCAAAATTAGAGCTAATTTTAAAAAAAACAAACATAACTTTAAAATATCTATTATATTACATTGACATAATTGAATTTAAGAGCAAAATTAGAGCTAATTTTAAAACTTAAGAGACTAAATAAATGCAAACTCCAAATCTTAAATACAAAAAACATATCTTAATTTACTAATCGTCGTGGATGTGAGGTTATATATATAATTGATTGCAGAAAGATGGAGGGAATAATAAACAAATATGTCTCCATTGATCCTTAATTCAACATCCTTGTATGTAAAATAAAAATATCAATATCCTTAATTTTAATAAGATATATTTATTAATATAATGACATGAATGCTTTAACGTTTGATTTGAAGTATACGTGCAAGGTAGTAATTGGTCTCAACGCATATGTATCTCCAAATTATATATTTCTATGAAGATTCATCAAATAACATAAGCTATTATTCTTTGGGATATAATCAATTACAATAATTAAAATTAATTGCAATAACATCATCTAATTATTACAAAACAACATTAATATTGGAGCAGCAGTAGTGTGTAGTCAATATCTAACCAAAATTCCAACCTTGATAGTGGCCGCCACCTTCTTTTTCTTCCTCCATTATTTTACATTCAAAAAGTGGGGTTATAACGAACTAATAAATACGCATAAAATTAAATCAATCCCAAAATAATAATAATAATAATAATAAAATAATAAATAGACGATTTTAATTTTAATTTGGTCTTGATTTGCTTTATTTCATTCCCACAGCCACGGTTAAGAGAAATTAGCGACGGCAGCCGCACATGGCGGAGCCGACGGCGAAGGTCCTTCAGGGCGTTCAGTTTCATCAACTTAGTATCCTAATATCTCACTTTCTTGTGTTTGGGTTAGGATTGGTTATTGGGATTAGTTTTAATTTCTCGGTTAGTGGTTTATCTTCGACTTTTCAGCTTAGCCAGTGGCCGGTTACTCCGCCGACGCTACCGGCGGGGGTGGTGGGGTTGAGGGAATTTAGGAGCTCAAAAAGTGTGGGCCAGGAGATGAGAAAGTTGCCGGGGAAGGTGGCGTTCATGTTCTTAACGAGAGGGGATTTGCCGTTGAGGGCACTTTGGGAAAGATTTTTCAATGGAAATGAAGGATTATACTCAATTTATGTGCATTCTCATCCTTCTTTCAACGGAACTTACCCAAAAAATTCCGTCTTCTATGGCTGTAGTATCCCTAGTAAGGTCAGTAAATCCTTTCTTTTTCCTTTATTTATTTATTTATTTATCGTTTATTTTCTCTCCTTGAAAATTAGCTAACCCCAACTAAATTTCAAGGTTTAAAATGTAAATAAAAATGTGAAGTCTCTATTTTATGAAAATATCGATAAAATTTCGATAGCAATGAATATTATGAAAAAAATTATTCGAACAAAAAAAAATCATATGCTTTATATTTTATCCAAAAAATATATATATATATACGAAAACCCTAACGAATTAAAATTAAGAACTCTTTAAATATGAGAATTTCTAATCCTCAATCACTAAAATACCCTAATCGATATGATTTCAACCCTAAAGATTAGGGTTAGACACAGATTGTCTTAAGACCAAAGTTCTTGAGACCAAAAAAAAAAAAAAAAAAGTCCCTTAGCCCAAGATTCGAATACTCCAGATTAATCCTACTTGAATATTCTTGACATGCAACTCAACACATGAATTGCGAAATTAAAGAAGCTTTCGAGCTAAACTTGAAAGAGAAAGCACAAAAACCAAATTTAATTCATCATTAAAACTTAACTAATCAAACATTCTAATAACAAGCCTTTAAATAACATCCCAATAAAAACCCTAATGCATCATAGTAAAAAGACAAAATTACCCTTACTTAATACACGTAATTAAATAATAATTTGATGCCTAAGACGGTTTATATATATATATATATATATATATATATATATATATTTTCTTATTATGGTTCATGAATTTTTTATGATAATGAAAATTTCAATTCACCTTTCATGTTGATGATAAATCCATTGCCAATGTGGAAATGTTGACAAAAAGCTAAAACAAAAAAATTAGTTATCAAGTACAACTTTTTCCTTATAAAAGCTTAGTTAAGCGATAATTGATAAGTTTTTCTTAAGGGAAAAAAAACTTTAAATAAAAATGTTACCTTTACAATTATGGATGAAAATAGATGTTTGCATGAAAAATGAAAAAAAATTCATGTTCTAACTTATAAGTCAATTTACGAATAATTCAAACTAAAAAGATAAAATTGAATTCTCACCTCCCCATATTGTTTTTTAATTAGATAAAAGAACTTGCTATATATTGTATCCAATTCTTAACATTTTGTTAGGGAAAATGAGAAAAAGAAAAAAAAACTTAAAACTCCTAAATTGTCTACGTAATTATTTCTAATTAATACATGCCAACTTTGATGCGAATATTGATTTTGTGGACATCTTTGAGAAAAAAGACAACTTTTTTGTATGGGTTGATATAAAAATCTTTACAAAATAGAAAATGATCAGAAACTTTTAATTACACTATAATGTGAGAAAATTTTAAATTAAAATATCATATTATGTAACATGTAATTAGTTACCTTTCCGTTGTATTAGGTGGGAGTATAGGTACGTATTCAAACTTCCAATGACTTTAATAGAAATCACTAGAGAACGGATTATATGCCTATTATCGTTGTCTGTTTAATAAAATTGATTTATTTTCTAACATAACAACGTTTTTAAGTAGGTTAATTATAAAGATCAACCATAATTGTTGGAATACTAATAAAACTACACATGCAATCAAAACCCCGGCTAATCTATGACACAAAAGGATTTGATGACATATAATTATTTTATGTCATCAATTCACGTGTTGTTTTTAATCTAGCTATAAACAAATACTATATATTAATATAAATAATTTAAAATATTTTAATGAGACACGTGTAAGTATTAAGTTTTATGTTAACGATAAAATGTATTCTTATTATTTTGGTACTTTCATAAGCGATTAAAAAAATACTCTTAAATTAAAAATTCTTTAGAACTTTGTACGGCATTTGAGATATGAAATGATGTAGAGAATAACTTAGAACGAAAATTTGGATCATTATATTGTTCTAGGTCTTTGCAACACAATTTTAAGTCTTCATTTCTTTCGTTTTTGGAGATTTATTTCAAACGTACTTGTGAAATATTTTATGAATGTTGAGAAGTAAAAGTTGAAATATTTATTATAATTTAGCTTAATTTCTATTCAAATTGTTGATAAATAAGAAAATATTAAATTTGACAGGAAGTTGAATGGGGTCAGCCGAGCATGATTCAGGCAGAGCGACGTCTCTTAGCCAACGCTCTTCTCAACTTCTCTAACGAACGATTTGTCCTCCTTTCCGAGTCTTGCATTCCCGTCTTCAATTTCACCACCGTCTACAATTATCTTATGGGCTCGGCCCATGTCTTCGTCGAGTCCTACGACTTACCGGGCCGTTTGGGCCGCAACCGGTACAGGCCCAAAATGAAGCCCACAATCACCAAGGCCCAATGGCGGAAAGGCTCTCAGTGGTTCGAAATGGACCGACGGACGGCAACGGAGGTGGTGGCGGACCAGAAGTACTTCCCACTCTTCGAAAAGCACTGCCGCCCGGGTTGCATTTCGGATGAGCACTACTTGCCGACGATGGTGGGTATACGGTTCGGGGAGAGGAATTCGAACCGGACTCTGACTTGGACTGACTGGTCGAAGCAGGGGCCTCACCCGACCGGGTTCGGGAGCGGCAATGTCACGGTTGGGCTTCTGGAAAGTATAAGGAACGGCAGCACTTGCGAGTATAATGGACAAAGCACTAGAATTTGCCATTTGTTTGCGAGAAAATTTATGGCAAGTGGTTTGGATCGGCTGCTGGAAATTGCTTCACAAGTCATGTTCATCCCTTGA ATGGCTAATGATCAGCTAAAGCATTCTCCATCTCAGTTTTCCCAAATCTTCCATTTTCTCTTCTTACTTATTGGCTTCTCCTTTGGAATGGCTATCAGTTTGAACCTTAAGAGCTTCTCATCCTTTAACATCCACCTCCCTAACTTTTCCTTTCCATCTTCACCATCAACAACACTAGTGTTTATCAGACAACAGCAGCAACAAACTCCAGCCTCATCGTCACCCCCACCACTTCAACCGCCGTCGTCGTCACCGGCGTCTCCTTCTTTGGTTGACTTTGACAATCAGTTACTCGAGGCGAACGTAGAGCCGCCTCTGATGCATAAAATGAGTGATGATGAGGTGTTTTGGAGAGCATCCATGGTTCCAATGATAAAAAAGTTTCCATATGAACGTGTGCCAAAAATTGCTTTCATGTTTTTGATAAAAGGGGCATTGCCTTTAGCTCCTTTGTGGGAAATGTTCTTCAAAGGACATCAACATTTGTTTTCAATTTATGTGCATACTCATCCATTGTATAATGTTTCTTCTTCTCTGCCTCCAAACTCTGTCTTCTATGGAAGAAGAATCCCAAGCCAGGCAGTGCAATGGGGAAGACCCTCCATGATCGACGCCGAGCGCCGTCTTCTAGCAAACGCCCTTCTTGACTTCTCTAACGAAAGATTCGTCCTCCTCTCCGAAACTTGTATTCCTCTCTACAACTTCACAACTGTCTACAATTACCTCATTAATTCTCAACACACCTTCGTTTCTTCCTACGACGATCCTCGAAAGATCGGCCGTGGTCGTTACAACCCCAAGATGTTTCCCATCGTGTCGATCGCTGACTGGCGAAAAGGATCGCAGTGGTTTGAAGTTGATCGAACGGTAGCCGTCGAGATAATCTCCGACAAAACATATTACCCTATCTTCAGAGACCATTGCGGGCCACCGTGTTACATGGACGAGCATTACATTCCTACGTTGGTTAACATTGTTTTGCCGGACCGGAATTCCAACAGAACCGTTACATGGGTTGATTGGTCCAAAAACGGTCCGCATCCCGGCAGATTTGGGAGGCGGGAGATCTCGGTCGAGTTTTTGAACCGGGTTCGGTTTGGTTTCAATTGTACTTATAATAATGGAAACGGCACCGTTTCTCCATGCTTTCTGTTTGCTCGGAAATTCATGCCGGATTCTTTACAACCTCTGCTGAAGATTTGGCCATCTCTGTTGGAAGGATTGGTTATTGGGATTAGTTTTAATTTCTCGGTTAGTGGTTTATCTTCGACTTTTCAGCTTAGCCAGTGGCCGGTTACTCCGCCGACGCTACCGGCGGGGGTGGTGGGGTTGAGGGAATTTAGGAGCTCAAAAAGTGTGGGCCAGGAGATGAGAAAGTTGCCGGGGAAGGTGGCGTTCATGTTCTTAACGAGAGGGGATTTGCCGTTGAGGGCACTTTGGGAAAGATTTTTCAATGGAAATGAAGGATTATACTCAATTTATGTGCATTCTCATCCTTCTTTCAACGGAACTTACCCAAAAAATTCCGTCTTCTATGGCTGTAGTATCCCTAGTAAGGAAGTTGAATGGGGTCAGCCGAGCATGATTCAGGCAGAGCGACGTCTCTTAGCCAACGCTCTTCTCAACTTCTCTAACGAACGATTTGTCCTCCTTTCCGAGTCTTGCATTCCCGTCTTCAATTTCACCACCGTCTACAATTATCTTATGGGCTCGGCCCATGTCTTCGTCGAGTCCTACGACTTACCGGGCCGTTTGGGCCGCAACCGGTACAGGCCCAAAATGAAGCCCACAATCACCAAGGCCCAATGGCGGAAAGGCTCTCAGTGGTTCGAAATGGACCGACGGACGGCAACGGAGGTGGTGGCGGACCAGAAGTACTTCCCACTCTTCGAAAAGCACTGCCGCCCGGGTTGCATTTCGGATGAGCACTACTTGCCGACGATGGTGGGTATACGGTTCGGGGAGAGGAATTCGAACCGGACTCTGACTTGGACTGACTGGTCGAAGCAGGGGCCTCACCCGACCGGGTTCGGGAGCGGCAATGTCACGGTTGGGCTTCTGGAAAGTATAAGGAACGGCAGCACTTGCGAGTATAATGGACAAAGCACTAGAATTTGCCATTTGTTTGCGAGAAAATTTATGGCAAGTGGTTTGGATCGGCTGCTGGAAATTGCTTCACAAGTCATGTTCATCCCTTGA ATGGCTAATGATCAGCTAAAGCATTCTCCATCTCAGTTTTCCCAAATCTTCCATTTTCTCTTCTTACTTATTGGCTTCTCCTTTGGAATGGCTATCAGTTTGAACCTTAAGAGCTTCTCATCCTTTAACATCCACCTCCCTAACTTTTCCTTTCCATCTTCACCATCAACAACACTAGTGTTTATCAGACAACAGCAGCAACAAACTCCAGCCTCATCGTCACCCCCACCACTTCAACCGCCGTCGTCGTCACCGGCGTCTCCTTCTTTGGTTGACTTTGACAATCAGTTACTCGAGGCGAACGTAGAGCCGCCTCTGATGCATAAAATGAGTGATGATGAGGTGTTTTGGAGAGCATCCATGGTTCCAATGATAAAAAAGTTTCCATATGAACGTGTGCCAAAAATTGCTTTCATGTTTTTGATAAAAGGGGCATTGCCTTTAGCTCCTTTGTGGGAAATGTTCTTCAAAGGACATCAACATTTGTTTTCAATTTATGTGCATACTCATCCATTGTATAATGTTTCTTCTTCTCTGCCTCCAAACTCTGTCTTCTATGGAAGAAGAATCCCAAGCCAGGCAGTGCAATGGGGAAGACCCTCCATGATCGACGCCGAGCGCCGTCTTCTAGCAAACGCCCTTCTTGACTTCTCTAACGAAAGATTCGTCCTCCTCTCCGAAACTTGTATTCCTCTCTACAACTTCACAACTGTCTACAATTACCTCATTAATTCTCAACACACCTTCGTTTCTTCCTACGACGATCCTCGAAAGATCGGCCGTGGTCGTTACAACCCCAAGATGTTTCCCATCGTGTCGATCGCTGACTGGCGAAAAGGATCGCAGTGGTTTGAAGTTGATCGAACGGTAGCCGTCGAGATAATCTCCGACAAAACATATTACCCTATCTTCAGAGACCATTGCGGGCCACCGTGTTACATGGACGAGCATTACATTCCTACGTTGGTTAACATTGTTTTGCCGGACCGGAATTCCAACAGAACCGTTACATGGGTTGATTGGTCCAAAAACGGTCCGCATCCCGGCAGATTTGGGAGGCGGGAGATCTCGGTCGAGTTTTTGAACCGGGTTCGGTTTGGTTTCAATTGTACTTATAATAATGGAAACGGCACCGTTTCTCCATGCTTTCTGTTTGCTCGGAAATTCATGCCGGATTCTTTACAACCTCTGCTGAAGATTTGGCCATCTCTGTTGGAAGGATTGGTTATTGGGATTAGTTTTAATTTCTCGGTTAGTGGTTTATCTTCGACTTTTCAGCTTAGCCAGTGGCCGGTTACTCCGCCGACGCTACCGGCGGGGGTGGTGGGGTTGAGGGAATTTAGGAGCTCAAAAAGTGTGGGCCAGGAGATGAGAAAGTTGCCGGGGAAGGTGGCGTTCATGTTCTTAACGAGAGGGGATTTGCCGTTGAGGGCACTTTGGGAAAGATTTTTCAATGGAAATGAAGGATTATACTCAATTTATGTGCATTCTCATCCTTCTTTCAACGGAACTTACCCAAAAAATTCCGTCTTCTATGGCTGTAGTATCCCTAGTAAGGAAGTTGAATGGGGTCAGCCGAGCATGATTCAGGCAGAGCGACGTCTCTTAGCCAACGCTCTTCTCAACTTCTCTAACGAACGATTTGTCCTCCTTTCCGAGTCTTGCATTCCCGTCTTCAATTTCACCACCGTCTACAATTATCTTATGGGCTCGGCCCATGTCTTCGTCGAGTCCTACGACTTACCGGGCCGTTTGGGCCGCAACCGGTACAGGCCCAAAATGAAGCCCACAATCACCAAGGCCCAATGGCGGAAAGGCTCTCAGTGGTTCGAAATGGACCGACGGACGGCAACGGAGGTGGTGGCGGACCAGAAGTACTTCCCACTCTTCGAAAAGCACTGCCGCCCGGGTTGCATTTCGGATGAGCACTACTTGCCGACGATGGTGGGTATACGGTTCGGGGAGAGGAATTCGAACCGGACTCTGACTTGGACTGACTGGTCGAAGCAGGGGCCTCACCCGACCGGGTTCGGGAGCGGCAATGTCACGGTTGGGCTTCTGGAAAGTATAAGGAACGGCAGCACTTGCGAGTATAATGGACAAAGCACTAGAATTTGCCATTTGTTTGCGAGAAAATTTATGGCAAGTGGTTTGGATCGGCTGCTGGAAATTGCTTCACAAGTCATGTTCATCCCTTGA MANDQLKHSPSQFSQIFHFLFLLIGFSFGMAISLNLKSFSSFNIHLPNFSFPSSPSTTLVFIRQQQQQTPASSSPPPLQPPSSSPASPSLVDFDNQLLEANVEPPLMHKMSDDEVFWRASMVPMIKKFPYERVPKIAFMFLIKGALPLAPLWEMFFKGHQHLFSIYVHTHPLYNVSSSLPPNSVFYGRRIPSQAVQWGRPSMIDAERRLLANALLDFSNERFVLLSETCIPLYNFTTVYNYLINSQHTFVSSYDDPRKIGRGRYNPKMFPIVSIADWRKGSQWFEVDRTVAVEIISDKTYYPIFRDHCGPPCYMDEHYIPTLVNIVLPDRNSNRTVTWVDWSKNGPHPGRFGRREISVEFLNRVRFGFNCTYNNGNGTVSPCFLFARKFMPDSLQPLLKIWPSLLEGLVIGISFNFSVSGLSSTFQLSQWPVTPPTLPAGVVGLREFRSSKSVGQEMRKLPGKVAFMFLTRGDLPLRALWERFFNGNEGLYSIYVHSHPSFNGTYPKNSVFYGCSIPSKEVEWGQPSMIQAERRLLANALLNFSNERFVLLSESCIPVFNFTTVYNYLMGSAHVFVESYDLPGRLGRNRYRPKMKPTITKAQWRKGSQWFEMDRRTATEVVADQKYFPLFEKHCRPGCISDEHYLPTMVGIRFGERNSNRTLTWTDWSKQGPHPTGFGSGNVTVGLLESIRNGSTCEYNGQSTRICHLFARKFMASGLDRLLEIASQVMFIP
BLAST of ClCG00G001080 vs. TrEMBL
Match: A0A0A0LVS2_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G042430 PE=4 SV=1) HSP 1 Score: 759.2 bits (1959), Expect = 4.6e-216 Identity = 361/409 (88.26%), Postives = 381/409 (93.15%), Query Frame = 1
BLAST of ClCG00G001080 vs. TrEMBL
Match: A0A0A0LVS2_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G042430 PE=4 SV=1) HSP 1 Score: 343.6 bits (880), Expect = 6.0e-91 Identity = 158/266 (59.40%), Postives = 198/266 (74.44%), Query Frame = 1
HSP 2 Score: 706.4 bits (1822), Expect = 3.5e-200 Identity = 371/719 (51.60%), Postives = 477/719 (66.34%), Query Frame = 1
BLAST of ClCG00G001080 vs. TrEMBL
Match: A0A118JXU9_CYNCS (Glycosyl transferase, family 14 OS=Cynara cardunculus var. scolymus GN=Ccrd_000274 PE=4 SV=1) HSP 1 Score: 389.8 bits (1000), Expect = 7.3e-105 Identity = 193/389 (49.61%), Postives = 261/389 (67.10%), Query Frame = 1
HSP 2 Score: 527.7 bits (1358), Expect = 2.2e-146 Identity = 263/348 (75.57%), Postives = 290/348 (83.33%), Query Frame = 1
BLAST of ClCG00G001080 vs. TrEMBL
Match: A0A0A0LTP2_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G042440 PE=4 SV=1) HSP 1 Score: 327.8 bits (839), Expect = 3.4e-86 Identity = 164/332 (49.40%), Postives = 221/332 (66.57%), Query Frame = 1
HSP 2 Score: 505.8 bits (1301), Expect = 9.1e-140 Identity = 250/405 (61.73%), Postives = 303/405 (74.81%), Query Frame = 1
BLAST of ClCG00G001080 vs. TrEMBL
Match: A0A061FW11_THECC (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein OS=Theobroma cacao GN=TCM_012379 PE=4 SV=1) HSP 1 Score: 344.0 bits (881), Expect = 4.6e-91 Identity = 157/267 (58.80%), Postives = 201/267 (75.28%), Query Frame = 1
HSP 2 Score: 490.3 bits (1261), Expect = 4.0e-135 Identity = 237/416 (56.97%), Postives = 296/416 (71.15%), Query Frame = 1
BLAST of ClCG00G001080 vs. TAIR10
Match: AT1G68390.1 (AT1G68390.1 Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 401.4 bits (1030), Expect = 1.2e-111 Identity = 211/396 (53.28%), Postives = 265/396 (66.92%), Query Frame = 1
HSP 2 Score: 341.3 bits (874), Expect = 1.5e-93 Identity = 158/269 (58.74%), Postives = 201/269 (74.72%), Query Frame = 1
BLAST of ClCG00G001080 vs. TAIR10
Match: AT5G11730.1 (AT5G11730.1 Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 377.9 bits (969), Expect = 1.4e-104 Identity = 174/306 (56.86%), Postives = 224/306 (73.20%), Query Frame = 1
HSP 2 Score: 316.2 bits (809), Expect = 5.2e-86 Identity = 154/329 (46.81%), Postives = 209/329 (63.53%), Query Frame = 1
BLAST of ClCG00G001080 vs. TAIR10
Match: AT5G25970.1 (AT5G25970.1 Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 372.1 bits (954), Expect = 7.9e-103 Identity = 173/300 (57.67%), Postives = 217/300 (72.33%), Query Frame = 1
HSP 2 Score: 295.0 bits (754), Expect = 1.2e-79 Identity = 139/267 (52.06%), Postives = 177/267 (66.29%), Query Frame = 1
BLAST of ClCG00G001080 vs. TAIR10
Match: AT1G10280.1 (AT1G10280.1 Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 366.7 bits (940), Expect = 3.3e-101 Identity = 172/301 (57.14%), Postives = 220/301 (73.09%), Query Frame = 1
HSP 2 Score: 318.9 bits (816), Expect = 8.0e-87 Identity = 148/268 (55.22%), Postives = 189/268 (70.52%), Query Frame = 1
BLAST of ClCG00G001080 vs. TAIR10
Match: AT1G10880.1 (AT1G10880.1 Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 365.9 bits (938), Expect = 5.7e-101 Identity = 180/332 (54.22%), Postives = 227/332 (68.37%), Query Frame = 1
HSP 2 Score: 297.4 bits (760), Expect = 2.5e-80 Identity = 138/250 (55.20%), Postives = 176/250 (70.40%), Query Frame = 1
BLAST of ClCG00G001080 vs. NCBI nr
Match: gi|778657267|ref|XP_011650566.1| (PREDICTED: uncharacterized protein LOC101207079 [Cucumis sativus]) HSP 1 Score: 759.2 bits (1959), Expect = 6.6e-216 Identity = 361/409 (88.26%), Postives = 381/409 (93.15%), Query Frame = 1
BLAST of ClCG00G001080 vs. NCBI nr
Match: gi|778657267|ref|XP_011650566.1| (PREDICTED: uncharacterized protein LOC101207079 [Cucumis sativus]) HSP 1 Score: 343.6 bits (880), Expect = 8.6e-91 Identity = 158/266 (59.40%), Postives = 198/266 (74.44%), Query Frame = 1
HSP 2 Score: 750.4 bits (1936), Expect = 3.0e-213 Identity = 363/412 (88.11%), Postives = 383/412 (92.96%), Query Frame = 1
BLAST of ClCG00G001080 vs. NCBI nr
Match: gi|659066744|ref|XP_008459135.1| (PREDICTED: uncharacterized protein LOC103498310 [Cucumis melo]) HSP 1 Score: 337.8 bits (865), Expect = 4.7e-89 Identity = 155/267 (58.05%), Postives = 196/267 (73.41%), Query Frame = 1
HSP 2 Score: 706.4 bits (1822), Expect = 5.0e-200 Identity = 371/719 (51.60%), Postives = 477/719 (66.34%), Query Frame = 1
BLAST of ClCG00G001080 vs. NCBI nr
Match: gi|976910980|gb|KVH97644.1| (Glycosyl transferase, family 14 [Cynara cardunculus var. scolymus]) HSP 1 Score: 389.8 bits (1000), Expect = 1.0e-104 Identity = 193/389 (49.61%), Postives = 261/389 (67.10%), Query Frame = 1
HSP 2 Score: 527.7 bits (1358), Expect = 3.2e-146 Identity = 263/348 (75.57%), Postives = 290/348 (83.33%), Query Frame = 1
BLAST of ClCG00G001080 vs. NCBI nr
Match: gi|778664757|ref|XP_011660346.1| (PREDICTED: uncharacterized protein LOC101207320 [Cucumis sativus]) HSP 1 Score: 327.8 bits (839), Expect = 4.9e-86 Identity = 164/332 (49.40%), Postives = 221/332 (66.57%), Query Frame = 1
HSP 2 Score: 516.9 bits (1330), Expect = 5.7e-143 Identity = 261/356 (73.31%), Postives = 288/356 (80.90%), 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.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of watermelon (Charleston Gray)
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene: None The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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