Clc08G13960 (gene) Watermelon (cordophanus) v2
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGTTAGATTAAATTGAGTTAAGTCTTAGCGTGGACAACTATTAAATAATAATTAATCTCTGACTAGTTATTCAGATTATTTGCCTAGAATTGGTTTCATTTGATAATTATTTAGTTTTTTATTTTTAATTTTTAAAAATTAAGTCTATAAACTTTTATTTCACCTATAAATTTCTTTATTTGATATCTTATTTTCTTCATGTTTTCAAAAACTTAGTCAATTTTTAAAAACTAAAAAAAGTAGTATTTAAATATTTTTTATTTTTTTTCAAATTTGGCTAATAATTCAACTCTTCCACTTAAGTTGATACAAACTATGGTAAGAAAAATGAGGGAAAATAGACATGATTTTCAAAAACCAAAACTAGAAACAAAATAGTTAACAAAGATACCTGAATTTTTATTTTAAAAAGAAAAGTGAATTCTTAAAATCAATAACATCACTTTGTTTATTTTCAAATTCAAAGTTGAGACTAATAACACAATTGTAATATTTATTATGGCAAATACTTTTTAAAAATTAGGGAAAATAACAATTTATACTAGTAAGCTTTGGGAGTTAGATCTATTAAAATTCTAAATTAATAATTGTTTTAATTTAAGCGTCGGATTTTTGTAAATGTATCAACTCACATCCTTATTTAGATTTTGTTTATCAATTCTCTTTAAATATTAGTTTTATAAAATGGACAAATAAAATTTATGAATGGACGATTCTTAGAGGAAATCTAACTAAGAGTCTAAATTCATATATTCAAAAAGTTTAGAAATTTAATCGATACAATCATAAGTTTCCTATGATATCTTTTCAAACAAATTACATTGAAATTAAATGGGTAAATTGATACTATTACACAAATTTATAGTTTAAGTTGAGACAAATATTTTCATGAAATTTTAATTGATATTTTTCCAAACGAAATAAAATTGAATGTGTAAATTGATACTATTACAAAAGTTTATAGTTTAAATTTGATACAAATATTTGTACAAGACTTTACTTAATACAAATCTCAAAATTTATGATATATATTGATATTTACGATATACTGATATTTTTTGGAAAAAAAATATTGTTCAACATAGTAGTTGAGTAATAGTCTAAAAAGAGTATGAAATGGAATAAACTTAAAATAAATATGCGTATATATAACATTTATAAATAATATAGAAATATTTTATTCGTATTGATTGATTCAAATCGCCTAATTTTAAGTGAATCCATAAATCTCTTTAAGCTATCAAGCTTTTATTTATTTTTTAAAGTCAACTTAACTTAAATTGTATTTTTTGGATTGTAAATTTTTTTAGGTCATAAGTTCAAACCATACAGTTATAAAAGGGAGTTTCTTGTTTTTATAAGGTAAGTTTTTTTATAAGATAAATTGTTATGACTTGTGGGCGTTACTTTGAATTTTCCTCTTAATAATTTTGAATGTAACATAAAAAAAAAAAAATATATATATATATATATATATATATATATATATATATATAGTTTGAAGACTTCAACCAAATCCAAAGCCTCACAAATCATTGCATATATGGAAAGACAAATCATAGGGAAACAAAATTAAATTAAATTTACTCACTTGTCTAAGTTGCATCAATTTAGACTCTAATTTTATCTAATTTTGTCTAATTGTATTTCAAATTTAGATAAATGTTGAACTTTATCAGAACCCAAAAATAAAAAAGTATTCACAAAGGATTTCAATCAGTTATAGAACATAGATATTGAACAAAATTGACAAAAGAACTTTGAAAGAAAACAGCTATAGTTTTGTTAAAATTTGCAAGTTTTGATAACATTATTCAATAGTTAATGTTTGTGTGCATTGATAAAAAAAAATAGATGTGTGCAAAATTTGACTATACCTTGTGTTTTTGGATGAGTTAGCTAAAAATGAATAAAGATTAAAAAAAAATTATAGCATATGTGTACTAATTCTATGGTTTTGAGAGTGATTTTAGAATTTTTAAAATCATATTTGTCATATTTAAAATTAATGCAAAATATATTTTTAAACATACAAAATTAATTTAATATTTATCTTTATAATTTTAAATACAATTCATATATCATCAAAATTGGTTTTGAATAAATAAAAACATGTTTTTAAATTATTTTGCAAATGATAAATTTTTTTTTCTAATACAAAAATTAAATGTTGTATTAAATCGTATTGTAATAAATTTGAATTCACCAAATTATAATAATACAACTAATACAAGTATGACTTTATAAATGATCAATTTCAAATTCGAGTGACGATGTCTAATCAAATTTTGAATGGGTCTACAGAGTGGAGAGGGAAGGGGTTAGGCAAGAAATTATAGAATGGCGCCAGGAAGGAACGGGCCAAGCCCATTTGTGTGATTGTGTGGACCTTCGAAACTGCGTATACTGGCAGGCGAGATCTCAACGACTCTGCCTTCTTCTTCCTTTTGCAGTGAGTTTCCATTACTGATTTCCTTCCTTGTTTCTTTTTCCCTTTTATGTCAATTTGTCTCTCTGTAGCCATCCATACATTGGCTCCCAACACCAACAATTTCTGCGTTTAGACCAAAATCCCTCTCTCTGTCTCCATCTCGCTCTTGCTCCTCAAGATTGACGAGATGGAGAGTTTGCCCACCACCGCCAAACCCGAAAGACGTCCTCGATCCAAGCCTCTTCACGCCTCCAAACCCTCCGTACTTCTTGCATTCTTCTCTTGTCTTGCGTGGCTCTATGTTGCTGGCAGGTATCTTCTTCTTCTTCTTCTATTTCATGGCAATGTTGGACGGCAGAATCTGAATCCGGGAAATTAAGCCATAATCATACTGCACTTTTATTCTTGTTGTTGTTTAGGCTCAATTCGATCTTCTTATTGCATTCGATTGTTTTTTCTATTGCAATTTTTGTATGATCTTATGGTCATCAGGAAATGCATTCCCCGGGGGGAGGTAGAAATTTGATTGTTAGTATTGCGATAATCTATTGCATTTCACTTGACTTTTCTTATAATTTCGTATGTTCTCCTTATTGTTGGTCTGCTTTCTTCAGGCTATGGCAGGATGCAGAAAATAGGAAATTACTGGCTAGTCTTTTACGGAAGAATGCATCCCAGGTATATTGATTATGAGTACTTTCTCAATTCTGGGAGAAATATACTGGAATTGTTTCCAATTTCTTGCATCTCTTTTAATTAAATTGAAATTTTGAATGAATACTTCACGCATATTGGTTAATAGCTAGTATCCGATATTTCTAGTTTTACATGTAATCGTTTGCCTTCACGTCCAGCCATTAATTCGCGATGTATCTGTAGATTTTGCGATTCATTGTATAGCGTCAGTCCATTAAAATTCTGTCATCGTATGCAGAGACCCGTGATTTTGAGCGTTGAAGATAAGCTGCAAGTCCTGGGTTGCAAGTATGTGCCTAATTTTCCTTTCTTGATTCTCATATGGAACCCGATCTTTGTTTCGTAAATTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGCTTTTCTAAATGATCTGCGATTCTCCTACGTCTTTCTTGTGAGAGTTTGACGTTTTCTTTCCCTTTCATTCCTTGTATAGTTTGCTTTTGTTTACGTAGTTACTAATATAAATACCAATCTTTTATGTTTTAAATATTACTGAACTAAAAATTTTATGTAATTTTATTAAGAGATTTGGAGAGAAGGATTGTGGAAGTTGAGATGGATTTAACACTAGCAAAGAGCCAAGGGTACCTGAAGAATCAACTGCGACAAAGTGGATCTTCTTCTGACCCTGGCCGTAAGCTCCTTGCTGTTATCGGTGTTTATACAGGATTCGGAAGTCGACTAAGGCGCAACGTATTCAGAGGATCGTGGATGCCAAAAGGTCAGTTAAGGTTTAGATATTATTGATTGGGGGTGTAAAACAGCTTAGATCTTCATTTCAAGTGACAATTTATTACCTTATTGTACTTAACTCTTCCAGTGATCTCAAAATTTTTTTCTTGTTTGTTTTCCTTTCCAAATCTATAATGATCCGGGTTCTATCAAGTATCAGAAAATTGATTATCGATTCATTTTTTAGAACTAGCAAAGCTCCATTGGAGTATTAGCTCAACTCAAATAAACAGTAACTATAATTCTAATATTCAATAGGAATGATTCATATAGTATACTTAAAATCATAGGAGATCTTGCATGCCCATGGTATCAATGATGGGTAACTGGTCTTGTTGATATTGACATTTTTCCTTGGAAATGAAAGACTTCCTCCTATTGTAGGGGCCTGTAATAGGTATGCAGAAAGAATGAGAATATCTTGCAATTCAACCTGGTTTATTAAACAGGGGAGAAAAAAGTTAGGAAGAGCCATGCTTCACATAAAATAGATCTTGAAAGTGATGCTTGGATTAGAGTGAAACTGATGTTTGGATTCAACTCAAGAATCTTCTCATCTTTGCGTTGCAGAAATGTGTTTGAAGGATATTATAAAGTATAGTAGGGGAATGATTTCTCTGCTAGAATATTTAAATCTTATAAAATTATTGTAAATTTTTCAATATTTGAAGAAACATTGACTGGTTTAATTTTCTGGATTGTGTGCAAGAACATGTAATTGATGATATATGATAATAGTTCTTTTGGCATTTATAGGTGATGCGTTAAAAAAGCTGGAGGAAAGAGGGGTGGTCATACGCTTTGTTATTGGTCGGAGGTTTTCCTTTCCACTTTCAACTCTATTTTCATATCAATGTTCTTCACTTCCATTTATTTCATTTGATGACATTTTGCTTTCGTCTCTTTGTTGTTATGTGTCATGGCTATTTTGTGTACTCCTCTCGTAACTTTATTGATTTGGCATTGGCAGTGCAAACCGAGGTGATAGCTTAGACCGCAATATTGACAAGGAAAACCAGTCAACTAAGGACTTCTTGATACTTGTATGTTATCAAAGTTCTAGCCTTGCGTATATCACCTGTTCCAATCACTTAGAATTAGCAAAGACTTTCAGCTCAACTGTTTGGTTCATGGTTCTCGTGGTAGTAATAGTTGTGCTTGCATGTTCTCTGGTTTCCATTGTGGACTAGAATCTAGGTAATATCATCCGTAGATGGTTTGCTAAAGAGTATCTGATTATGTATTGAGATTGTACAGAATATAGAATTGTTATTTTATATGTATGTTTGATGTGATTCTTCACGCCACCAACCGCTTGGCAGCTCTCAACACGTGTTCCCTATATTATGTAGGAAGGTCATGAAGAAGCTGATGAAGAGTTACCTAAAAAGGCCAAGTTCTTTTTCAGTACAGCAGTTCAAAATTGGGATGCAGAATTTTACGTGAAAGTCGATGATAACATTGACCTTGATCTTGGTTGATCATCTAATCAACAACCTCTATTTCTAAGAAATTTATTTATTGGCTTGGTGATTAATTTAAACCTTTTTTTGGCCAAGTAGAGGGTTTAATTGGGCTTCTTGAACATCGCCGTGGTCAAGATGGTACTTACGTTGGATGCATGAAATCTGGAGAAGTAATTGCTGACGAGTATGAACTCTACTATTTCTTTTTTATTATGAAATGCATGATATATGAATTCTATTCTCCAACTTCTACTTTTTAAATTGATTGAAGAAATTGTTTTCACCTCCTTAAGCTTCGTGTCTTTTATAGCAAATGTTCTTCATTCTTTGTTTTTGCCAAGTCAAGATTTTATGGTAATCGTGGTTTTGTTAATTAAACCACTGCTCTCATCAGTTGAAATGCTATGTTTTTTTTTTCCAGAGGAAAGCAGTGGTATGAACCAGAATGGTGGAAGTTTGGAGATGAGAAATCGTATGTAATCTAGCTTCAAGATGCGGCCATTAAGAAATTTTGAAATTATGTTCATATTGAATACTGCCTGGACTGCAGGTGTAAAACATGATCAATTTTTGCATCCTTTAGGTACTTCCGGCATGCGTCTGGTGCACTTATTATCCTCTCCAAGAATTTGGCTCAGTATATTAATATTAACAGGTAATTTTAAAACCTCGAGTACCAGAAGATGGTTTACTCGATCAAAGGAATATCATCCGTGCTTAGAAGTCTAGGACTGCAATCTTAATTTACTCCTTGATGATTTAATGTGAAATGAATATTTTTATTAAAACAAAACTCAAATTATCTTTTTCCAGTAGAATTATCATCAACAAGTTGGCAGGCTTTCTTTGAACTATTTGAAGCTAGAACATAAAAGCATTCTGGTTTTCCTTGTCACGAGGAAATAAACTCTTTGTGCAAAATTATACAACTAAAACAAATTAACTCTGGTACTCTGCTCTATAAAATAGATAAGAATCTTATTTTTGAAATTTCTCATGAATCCTTTTTTCAGGTTAATTTCTAGAATCTATTTCTTGGTTATGTCATGTATTATAATTGTCCTGCCTCTGAAATCATTGTTAAATGTTTGTGTTATTTGCAGTGCGTCTTTGAAGACTTATGCACACGATGATATATCAGTGGGGTCATGGATGATTGGTCTCCAGGCTACTCATATAGATGATAATCGACTATGCTGCAGTAGCGTTAGACAAGGTGAATGTGCCTCCATTCCATTATTATAGTAGTTTTTTTCTCATATTTCCACCACATTGTTTTAAAGTTCTACATTTGATTTGGAAAATTGATGAGAGCGGATCAGAGGTGCTCTGGTGCAAATTTTTTGCCACTCATCATCCACCCCCAAATCTTTGTCCTCAGTTTCTGGTCATTTTTCATGACTACCCAACACGGGCATATAGGAAGAATAAAAAACTCGACTAGAAACAGATATGTGATAATAACTTCATTTACTTTTATAACTTAGTTTTGGACTAAATTTGCAAATTGGTTTATAATGTTTATAGCATTTTTAAAAAAAATTCTGGCCATCGTCTTCTACACTTTCTTTTTGATCCTTAAATGTTTCAGTTTAGTTCAATCACTTCCTTCTGTGAAGAAAAGGTTAGAGTTCCGCTGTTATAGAATTAAAAATTGGTTAAGAGAATCTCCATTTTATGTAATGTTGCTCAATGCTCAGAACTCGATGTTCTTCTTCCTATTAATCTAAAGTTCCTCCTTAAATTCCCTCTTTCTTACTCCCTTTCCCTCATTGCCTGTATCCTACACATTCCATAGAACCCTCTCATTTACTCAATATCTCACATATCTTTCTTTGTTCAAGTAGTAGCAATTAGGGAAAATACGAATAGTATGAGTTAAGTGGCTGAAGGTGATTTTGGTTTATGATCATATACACTTTTGCCAATGATGGACATGTTCTTTTTTCAGACAAGGTGTGTTCCGTGGTTTAATTGATCCTGAATAACCGAGGGCGTTAGTTTATCTGGAAATGCAGCAAATTTTGCGGAGCTTAGAAAATTCTTTTGCTACAGTTTTTATGTGCTTGAGTTCACCCCCGGCTGAGCTGATGCAGTGGAATCTCGACGTGTTTGCTAGGTTCCTCTTTTCAGATGCTGAGGTACACAGCAATTTCTTTTTTCCCTTCTTCTCGGGATAATAGTGACAGGTTGACTGAACTGAATATCCTCTTGTTAATATTAGAAAGTACAAAATTAGTTTGATACATGTAATGGATATATTGAAATATCACAGTTCTTTTTTCCTTCTCCTTTCTTCCTCATAAACATTTCTTTCTTCTTTCTGAAGAGAAGATTTTTGTCTTCAAATAAAGATGTTATATTCAGCATGATGCTAGTGTTACATTTACAGTTTGTGCCACATTACTTCAATCCATAGGACGGGGTTTCCCATATGAGATTGAGTGGAATGTGGCCAATGTAGAGAACGCACAAGTTAGTCCGAGTCCAAGAGATAAGTTTTCTGTTTCAAGTATGAAACTTTTAAGAACTGTATTTTGCTATGTGGGGAACATAAGCGGTTGATTAGAAAATTTTGAAACTAAGAACTTTTCAGAATTTTATACTTTTGGTTACGAGATTTGGGTTTAGTAGAATTTTGGTCATGTCGTTACTGTAGCTAATGAAAATTGACGTGATAATTTATTTCTATATTAATTTTTTATGTAAAAAATATGAAAGGAAAGAGAGGAAAGAAGAAGATAGAGAGATGGTGACCATGGAAGGTGAAATATATATATATATAATTTAAAAATAAAAATAAATAAAAGTAAAAACTCGCCATAGCTTCCTTTAGCAACAGGAATTGAAAATTGACGCCAGAAAATCATACGTGTATTTACCCCAAAGTTTAATGTTTAACATCGAACGTATCTGAAAAACTAATTATAGTGGTTAAAATTATGTTACATTTTAGGGCTTGTTTGATGAGGCTCTTTCATTAAAAAAATGTTTGGTAGGAAAAAAATCACTTTAACCTAATGTTTGGTAGGAAAAAAAACACTCTAACCATCATAGGTTAACTTAGGTTCAATCCATCGTGGTCATCTACACATTAAAAAATGTTCTGAGTTTTCTTGATACCCAATTATTGTAAGATTAGGCAAATTAGTTGAGATACGCTTAAATTGGCCCGAGTACTTATGATATAAAGAAATCATTTTTATTTTTTTTTTCTCTAAAATTTTAAATTAAAGATGTCAAAAAAAAATATTTGGAGAATAGTTTTTAAAATTTAGTAGATATTTATAACGTGCATGGTAAACGTATGCTTCAGTTTCACTTACGTTTTGGAACTAGTGGAAAACAAACGCAAATATGGAAACTTGGTTTCTTTTTTCTTTCAAAATCCCTACGCAAACATTTCTTAGAAATGAGAACCAAGAAGCTTCACCAAATGCTCCTGTTTTTTAAAAATAAAACAAAATTTTGGAACGTTTTCAAACGACTCTGACCATTCCAATTTAATAAATGCTAACTTTTTAATCTATGGAATATTTTGGAACAGAATTGTAGAGTAGCCGATGTTTGTGTGCTTCATGATGAAACCTTGAACTTGTTCTTCATTGGAATCTCCAGGATAGTTGTTAAATTTTCCGATCTCCAAGATGTTTGGTAA ATGGGTCATAAGTTCAAACCATACAGTTATAAAAGGGAGTTTCTTGTTTTTATAAGAGTGGAGAGGGAAGGGGTTAGGCAAGAAATTATAGAATGGCGCCAGGAAGGAACGGGCCAAGCCCATTTGTGTGATTGTGTGGACCTTCGAAACTGCGTATACTGGCAGGCGAGATCTCAACGACTCTGCCTTCTTCTTCCTTTTGCAACCAAAATCCCTCTCTCTGTCTCCATCTCGCTCTTGCTCCTCAAGATTGACGAGATGGAGAGTTTGCCCACCACCGCCAAACCCGAAAGACGTCCTCGATCCAAGCCTCTTCACGCCTCCAAACCCTCCGTACTTCTTGCATTCTTCTCTTGTCTTGCGTGGCTCTATGTTGCTGGCAGGCTATGGCAGGATGCAGAAAATAGGAAATTACTGGCTAGTCTTTTACGGAAGAATGCATCCCAGAGACCCGTGATTTTGAGCGTTGAAGATAAGCTGCAAGTCCTGGGTTGCAAAGATTTGGAGAGAAGGATTGTGGAAGTTGAGATGGATTTAACACTAGCAAAGAGCCAAGGGTACCTGAAGAATCAACTGCGACAAAGTGGATCTTCTTCTGACCCTGGCCGTAAGCTCCTTGCTGTTATCGGTGTTTATACAGGATTCGGAAGTCGACTAAGGCGCAACGTATTCAGAGGATCGTGGATGCCAAAAGGTGATGCGTTAAAAAAGCTGGAGGAAAGAGGGGTGGTCATACGCTTTGTTATTGGTCGGAGTGCAAACCGAGGTGATAGCTTAGACCGCAATATTGACAAGGAAAACCAGTCAACTAAGGACTTCTTGATACTTGAAGGTCATGAAGAAGCTGATGAAGAGTTACCTAAAAAGGCCAAGTTCTTTTTCAGTACAGCAGTTCAAAATTGGGATGCAGAATTTTACGTGAAAGTCGATGATAACATTGACCTTGATCTTGAGGGTTTAATTGGGCTTCTTGAACATCGCCGTGGTCAAGATGGTACTTACGTTGGATGCATGAAATCTGGAGAAGTAATTGCTGACGAAGGAAAGCAGTGGTATGAACCAGAATGGTGGAAGTTTGGAGATGAGAAATCGTACTTCCGGCATGCGTCTGGTGCACTTATTATCCTCTCCAAGAATTTGGCTCAGTATATTAATATTAACAGTGCGTCTTTGAAGACTTATGCACACGATGATATATCAGTGGGGTCATGGATGATTGGTCTCCAGGCTACTCATATAGATGATAATCGACTATGCTGCAGTAGCGTTAGACAAGACAAGCAAATTTTGCGGAGCTTAGAAAATTCTTTTGCTACAGTTTTTATGTGCTTGAGTTCACCCCCGGCTGAGCTGATGCAGTGGAATCTCGACGTGTTTGCTAGGTTCCTCTTTTCAGATGCTGAGCATGATGCTAGTGTTACATTTACAGTTTGTGCCACATTACTTCAATCCATAGGACGGGGTTTCCCATATGAGATTGAGTGGAATGTGGCCAATGTAGAGAACGCACAAAATTGTAGAGTAGCCGATGTTTGTGTGCTTCATGATGAAACCTTGAACTTGTTCTTCATTGGAATCTCCAGGATAGTTGTTAAATTTTCCGATCTCCAAGATGTTTGGTAA ATGGGTCATAAGTTCAAACCATACAGTTATAAAAGGGAGTTTCTTGTTTTTATAAGAGTGGAGAGGGAAGGGGTTAGGCAAGAAATTATAGAATGGCGCCAGGAAGGAACGGGCCAAGCCCATTTGTGTGATTGTGTGGACCTTCGAAACTGCGTATACTGGCAGGCGAGATCTCAACGACTCTGCCTTCTTCTTCCTTTTGCAACCAAAATCCCTCTCTCTGTCTCCATCTCGCTCTTGCTCCTCAAGATTGACGAGATGGAGAGTTTGCCCACCACCGCCAAACCCGAAAGACGTCCTCGATCCAAGCCTCTTCACGCCTCCAAACCCTCCGTACTTCTTGCATTCTTCTCTTGTCTTGCGTGGCTCTATGTTGCTGGCAGGCTATGGCAGGATGCAGAAAATAGGAAATTACTGGCTAGTCTTTTACGGAAGAATGCATCCCAGAGACCCGTGATTTTGAGCGTTGAAGATAAGCTGCAAGTCCTGGGTTGCAAAGATTTGGAGAGAAGGATTGTGGAAGTTGAGATGGATTTAACACTAGCAAAGAGCCAAGGGTACCTGAAGAATCAACTGCGACAAAGTGGATCTTCTTCTGACCCTGGCCGTAAGCTCCTTGCTGTTATCGGTGTTTATACAGGATTCGGAAGTCGACTAAGGCGCAACGTATTCAGAGGATCGTGGATGCCAAAAGGTGATGCGTTAAAAAAGCTGGAGGAAAGAGGGGTGGTCATACGCTTTGTTATTGGTCGGAGTGCAAACCGAGGTGATAGCTTAGACCGCAATATTGACAAGGAAAACCAGTCAACTAAGGACTTCTTGATACTTGAAGGTCATGAAGAAGCTGATGAAGAGTTACCTAAAAAGGCCAAGTTCTTTTTCAGTACAGCAGTTCAAAATTGGGATGCAGAATTTTACGTGAAAGTCGATGATAACATTGACCTTGATCTTGAGGGTTTAATTGGGCTTCTTGAACATCGCCGTGGTCAAGATGGTACTTACGTTGGATGCATGAAATCTGGAGAAGTAATTGCTGACGAAGGAAAGCAGTGGTATGAACCAGAATGGTGGAAGTTTGGAGATGAGAAATCGTACTTCCGGCATGCGTCTGGTGCACTTATTATCCTCTCCAAGAATTTGGCTCAGTATATTAATATTAACAGTGCGTCTTTGAAGACTTATGCACACGATGATATATCAGTGGGGTCATGGATGATTGGTCTCCAGGCTACTCATATAGATGATAATCGACTATGCTGCAGTAGCGTTAGACAAGACAAGCAAATTTTGCGGAGCTTAGAAAATTCTTTTGCTACAGTTTTTATGTGCTTGAGTTCACCCCCGGCTGAGCTGATGCAGTGGAATCTCGACGTGTTTGCTAGGTTCCTCTTTTCAGATGCTGAGCATGATGCTAGTGTTACATTTACAGTTTGTGCCACATTACTTCAATCCATAGGACGGGGTTTCCCATATGAGATTGAGTGGAATGTGGCCAATGTAGAGAACGCACAAAATTGTAGAGTAGCCGATGTTTGTGTGCTTCATGATGAAACCTTGAACTTGTTCTTCATTGGAATCTCCAGGATAGTTGTTAAATTTTCCGATCTCCAAGATGTTTGGTAA MGHKFKPYSYKREFLVFIRVEREGVRQEIIEWRQEGTGQAHLCDCVDLRNCVYWQARSQRLCLLLPFATKIPLSVSISLLLLKIDEMESLPTTAKPERRPRSKPLHASKPSVLLAFFSCLAWLYVAGRLWQDAENRKLLASLLRKNASQRPVILSVEDKLQVLGCKDLERRIVEVEMDLTLAKSQGYLKNQLRQSGSSSDPGRKLLAVIGVYTGFGSRLRRNVFRGSWMPKGDALKKLEERGVVIRFVIGRSANRGDSLDRNIDKENQSTKDFLILEGHEEADEELPKKAKFFFSTAVQNWDAEFYVKVDDNIDLDLEGLIGLLEHRRGQDGTYVGCMKSGEVIADEGKQWYEPEWWKFGDEKSYFRHASGALIILSKNLAQYININSASLKTYAHDDISVGSWMIGLQATHIDDNRLCCSSVRQDKQILRSLENSFATVFMCLSSPPAELMQWNLDVFARFLFSDAEHDASVTFTVCATLLQSIGRGFPYEIEWNVANVENAQNCRVADVCVLHDETLNLFFIGISRIVVKFSDLQDVW Homology
BLAST of Clc08G13960 vs. NCBI nr
Match: XP_038886517.1 (hydroxyproline O-galactosyltransferase HPGT3-like [Benincasa hispida]) HSP 1 Score: 676.8 bits (1745), Expect = 1.6e-190 Identity = 333/341 (97.65%), Postives = 338/341 (99.12%), Query Frame = 0
BLAST of Clc08G13960 vs. NCBI nr
Match: XP_004138719.1 (hydroxyproline O-galactosyltransferase HPGT3 isoform X1 [Cucumis sativus] >KGN62966.1 hypothetical protein Csa_022064 [Cucumis sativus]) HSP 1 Score: 670.2 bits (1728), Expect = 1.5e-188 Identity = 328/341 (96.19%), Postives = 337/341 (98.83%), Query Frame = 0
BLAST of Clc08G13960 vs. NCBI nr
Match: XP_008445237.1 (PREDICTED: hydroxyproline O-galactosyltransferase HPGT3-like [Cucumis melo]) HSP 1 Score: 670.2 bits (1728), Expect = 1.5e-188 Identity = 328/341 (96.19%), Postives = 339/341 (99.41%), Query Frame = 0
BLAST of Clc08G13960 vs. NCBI nr
Match: KAA0064912.1 (hydroxyproline O-galactosyltransferase HPGT3-like [Cucumis melo var. makuwa]) HSP 1 Score: 659.8 bits (1701), Expect = 2.0e-185 Identity = 329/362 (90.88%), Postives = 341/362 (94.20%), Query Frame = 0
BLAST of Clc08G13960 vs. NCBI nr
Match: KAG7020396.1 (Hydroxyproline O-galactosyltransferase HPGT2 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 647.9 bits (1670), Expect = 7.7e-182 Identity = 319/355 (89.86%), Postives = 340/355 (95.77%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy Swiss-Prot
Match: Q5XEZ1 (Hydroxyproline O-galactosyltransferase HPGT3 OS=Arabidopsis thaliana OX=3702 GN=HPGT3 PE=2 SV=1) HSP 1 Score: 542.0 bits (1395), Expect = 7.9e-153 Identity = 268/345 (77.68%), Postives = 305/345 (88.41%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy Swiss-Prot
Match: Q94A05 (Hydroxyproline O-galactosyltransferase HPGT2 OS=Arabidopsis thaliana OX=3702 GN=HPGT2 PE=1 SV=1) HSP 1 Score: 530.4 bits (1365), Expect = 2.4e-149 Identity = 261/344 (75.87%), Postives = 295/344 (85.76%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy Swiss-Prot
Match: Q94F27 (Hydroxyproline O-galactosyltransferase HPGT1 OS=Arabidopsis thaliana OX=3702 GN=HPTG1 PE=1 SV=1) HSP 1 Score: 295.4 bits (755), Expect = 1.3e-78 Identity = 142/327 (43.43%), Postives = 216/327 (66.06%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy Swiss-Prot
Match: Q9ZV71 (Probable beta-1,3-galactosyltransferase 3 OS=Arabidopsis thaliana OX=3702 GN=B3GALT3 PE=2 SV=1) HSP 1 Score: 235.7 bits (600), Expect = 1.2e-60 Identity = 146/360 (40.56%), Postives = 208/360 (57.78%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy Swiss-Prot
Match: A8MRC7 (Probable beta-1,3-galactosyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=B3GALT2 PE=2 SV=1) HSP 1 Score: 232.6 bits (592), Expect = 1.0e-59 Identity = 136/359 (37.88%), Postives = 205/359 (57.10%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy TrEMBL
Match: A0A0A0LSK0 (Hexosyltransferase OS=Cucumis sativus OX=3659 GN=Csa_2G382400 PE=3 SV=1) HSP 1 Score: 670.2 bits (1728), Expect = 7.1e-189 Identity = 328/341 (96.19%), Postives = 337/341 (98.83%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy TrEMBL
Match: A0A1S3BCY2 (Hexosyltransferase OS=Cucumis melo OX=3656 GN=LOC103488325 PE=3 SV=1) HSP 1 Score: 670.2 bits (1728), Expect = 7.1e-189 Identity = 328/341 (96.19%), Postives = 339/341 (99.41%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy TrEMBL
Match: A0A5A7V979 (Hexosyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G002300 PE=3 SV=1) HSP 1 Score: 659.8 bits (1701), Expect = 9.5e-186 Identity = 329/362 (90.88%), Postives = 341/362 (94.20%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy TrEMBL
Match: A0A6J1GHL5 (Hexosyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111454259 PE=3 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 3.8e-182 Identity = 319/355 (89.86%), Postives = 340/355 (95.77%), Query Frame = 0
BLAST of Clc08G13960 vs. ExPASy TrEMBL
Match: A0A6J1BSF9 (Hexosyltransferase OS=Momordica charantia OX=3673 GN=LOC111005130 PE=3 SV=1) HSP 1 Score: 644.4 bits (1661), Expect = 4.1e-181 Identity = 316/341 (92.67%), Postives = 329/341 (96.48%), Query Frame = 0
BLAST of Clc08G13960 vs. TAIR 10
Match: AT2G25300.1 (Galactosyltransferase family protein ) HSP 1 Score: 542.0 bits (1395), Expect = 5.6e-154 Identity = 268/345 (77.68%), Postives = 305/345 (88.41%), Query Frame = 0
BLAST of Clc08G13960 vs. TAIR 10
Match: AT4G32120.1 (Galactosyltransferase family protein ) HSP 1 Score: 530.4 bits (1365), Expect = 1.7e-150 Identity = 261/344 (75.87%), Postives = 295/344 (85.76%), Query Frame = 0
BLAST of Clc08G13960 vs. TAIR 10
Match: AT5G53340.1 (Galactosyltransferase family protein ) HSP 1 Score: 295.4 bits (755), Expect = 9.1e-80 Identity = 142/327 (43.43%), Postives = 216/327 (66.06%), Query Frame = 0
BLAST of Clc08G13960 vs. TAIR 10
Match: AT5G53340.2 (Galactosyltransferase family protein ) HSP 1 Score: 295.4 bits (755), Expect = 9.1e-80 Identity = 142/327 (43.43%), Postives = 216/327 (66.06%), Query Frame = 0
BLAST of Clc08G13960 vs. TAIR 10
Match: AT2G32430.1 (Galactosyltransferase family protein ) HSP 1 Score: 235.7 bits (600), Expect = 8.6e-62 Identity = 146/360 (40.56%), Postives = 208/360 (57.78%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (cordophanus) v2
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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