
CcUC10G201810 (gene) Watermelon (PI 537277) v1
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.ATGAGGAGAAAGTCAGTTGTTCTGCTGATGGATTTTTTTATAGCATTTTTCAAAATGTATATTATTGATTACTCATTTGTGCATGCTTTTCCTTTCATTCTCTTGCAAATTATTTATTTCATGCTATTAAAGCTTCGTGGATTAGACATCAATTTTATCATTCGAAAAGTCGGTTGTTTGTCTCCCCCTTGTAATGGTTGAACTAGAAAGAGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATCACTCTTGCCATATCTAAAAGTTCACGACACAGTGCCTTTGAACACTCAGCCAAAGGTTATTTATTTATTTTATTATTATTATTTTAAATTTCAAAATTATGTAATTGTATTATCAAGTAATGACCAACACGAGCATAGCTTAATTAGTATAAGTTTGTACCATCAACCTAATGATCAAAAGTTCAATTCTCTTACTCACTATTGTCGAAATAATAATAATAATAATTTTATAAATTAAAGTGTCATGTATATTTCATAGTGTTTGTATATGTGATCAAAAGGACATTTCAAAATATTTTTTTATAATCACATTTGGTTTTATAATGACCTTTTCAAAATTGTCAAAACACAAGTATGTTTTAATTATGCCCTACAATCTTTGAGGTTTATTAATAGGAAGAACTCAATTAGAATAAATTAATTTAAAGATCATGTTTGATGATTATTTTTATTTTTTATTTTTTAAAAAATTAAAACAAAAGTATATTCTAAAATAGAAAACCAAACTTTAGTTGTGGCTACCATTTTTATTATTTTATTATTATTATTATTATTATTATTTTAAAAAATACAACTCTCAAACATGGTATCCCAACATCAATGACAATTTTATAAATTAAAACTAAAAGTTGGTTAAATTTTAAAAATAGATGGACATTGTTTGTAAGGCTTGGTGCACTTATAGGCTATTTCTCCCATAATGTATTTTTTTTAAGAAATCTTTTTTGAAATTTGAAATGCATGGTTTGGGGAAAAAAATTATTTTTGATATGAAAACCCACATATTCAAAAGAAAGGGGAGAAAGAGTTGGGAATAATTGAATAGAGGGTCCTTTATAGGGCCCACGTAAAAAGTTGACCCAAACTAAGTAAAATTTGGTCGGCTATTGATGCCATCCGTTGTGAAATTATCACTTTTAACCCTTCTTTTCCTTTTTTTCCTTCTTTCTATTTTTTTTTTTCTTTTCTTCTTTTGTTTCTTCTTTCGTTGCTTTCTCTTTTTTTTTTTTTTTTTTTTTCGTCTTTAGTGTATTTCTTATTCTAACTATTCGTTTTTTTGTTGGTTATGCGTTGTTGTCTTCTTCTTCTTCTTTCATTTTTTTATGTGTTCTTCTTCTCTTTTCCTGCATCATCGTCATCGTCATCTTCTTCTTCTTCTTTTCTTTTCCTGCAATTTTCTTCGTCTTCTTTGTTCTCCAAAAATTTCTTCTCTTCCTTCTTCGTTCTGCAGTTTTTTCTTCAATAAAAAAATTGCAGTTCCGTCCAATGTGGAACAAGATGAAGAAGTGAGAAGTTAGAGTGAGAAACGAGAGCGAGAAGCTAGAGGAAGAATCTGAACAAAGAGGAAAATCAAAGGAAAAAAATAAAAGTTGTGCTTGATGAAAAACAAGAAAAAGAAACAATAAACTAGAGCAAGAAGCGAGTGGTAGGAGCAAGAAGCGAGAATCGAGAGCAATAATGCAAACAAAGGAAAAAATCCAAAAAAAAAAAAAAAATGTTGCAGTTGTTTCTAATGAGGAACAAAAGAAAGAAGCGAGAAACGAGAGGAAGGAACAAGAATTCATTTGAACATCAGTCCTTGCACTCGATTTGGGAACTAGATGGTATTTTCACACATGACTGACATAAGCAGAATGCCATTTTTTGAGCAAACTTAAATCTTGGGCCAAATTTCATTAGGTACAAAAACTCCATTACTCTAATCTTAACAAAAACAATTATGTATATACAGTCCTTTAATGATGAAGTTGACAACTCGGTGACAACTTATTTTTATTTTTATTTTATTTTATTTTTTTTAAGGTGGGAACAAAAACTAGGAGACAGCTTCTTGTATTCTGTTTTGTACTGCTGTATGTTGTCTATATCTATTAATTTTATTTTCTGTCTTTTTAGAAGACATTTGTTGTTTTCATATGTTTTTGTTTATTTATTTTGTCTATTCGTATTAAAAAAATTAAACATATCAAAACTAAATTAACGTAGAAATTAATTGATGATTCTACGATTAGTAAATTTACGACTTAATATTTATATGGCCATCATGTTTCAATTTGACCCTTTATATTCACAATTTAAAATTTTTTTTTTTATTTCACTTTTCAATTAAATATGATCTGCCAATAAAGACTGATGCTGGAATAAAAGAAAAACAATATTTTCCATGAGTGTGTGGTATATGTGTAAGTATCCATCTTGGGAGAAAAAATATAATTAACCAAATTCAATTAGAAAAAAAACATGGCACTATTTACTTTTTTACTAAGTAGTTGAATATCTAATATTTAATTATCTTTAAGTACCACATTTTCATTTTCTTTATGCAAAGGTTGAACATTTCTATGAAATAGGTTAAATTATTTGAACTTATTTAAATATATTATTACATGTTTTTTTAAATCGCCCTTAGTACCTAAATTTTAATTAATTTAGATTTTTTATTTTTGTGGGTCAAGAATTATGTCTTTGGATACTTATTTCTTCTAGTTATTGTTAAAGTTGTTTTAGTTAAAATAAAAAGAAAGTTAAAAACATTATCTTGGTCTCTATAATTTAGAGTTTGTTCAATTTTAGTCTCTATACTTTCAAATATATAATTTTAGTCCGTGTAGTTTTAATAAACCTTAAATTTAGTCCATACTACTAGTTTATTGTATATTTTCTCATTATTTTTATTTTTTACTAACATTTTCACTATAAATTTTGAAAAAACACTCACATATTGTATTTCTTTACATGAAAATTATTGTGATTATATTTAATCAATTTTGATAAAAATTAACAGATTTACTTAAAGTATAAGGACTAAAATTGAATAACATAGATACTTCAAATTTCTAACGAAAATTATTTTTATAAGTTTGTTATTATAAACAATACACATAAAAATTAATGGATTTACAAAAAATTATTATTATTATTATTATTATTATTATAAGTTCCTTGTATTTGAAACAACACAGATACTTCAAATTTCTAAATTTGAAAAATAAAAATTACTTAAATGACAAAACTGTTTAAAATATTTATAACAATGACAAAACATTACAGTCTATATGCAATATAGTGCAATAGATTATAATAGATTTCTATGTCTATCACGATAAACACAAATAGTAGTCTATCGCAGATAAATAGTGAAAATTTGCTATATTTGTAAATACTTTTGTTCATTTTTTCTATATTTAAACATCTCTTAAAAAAACAATAATTGTAGTTTTAAAAAAACCATAGAAAAATGAACCTAAATATTTATAAATATAGTAAACTTCAACTGTCTATTTACAATAGACTGCGGTAGACTATTTTATGTGTATATGTGTCGTGGAAGACACAAAATAGTAGTCTATTATAGTCTATCATAGATAGATTGTGATATTTTGCTATTATTTATAAATATTTTTAACAGTTTGATTATTTCAAATAATTTTTTTTTTAAATTTTATATATATATATATATAAAGACTAACTTCAATATTTCACAAATAAATTTTGAAATCTTTATACATTAATAATAAGTTTTACAAATTATAACAATGATATTAAAAAAAACAACAACAACAAAATCCCTAAATTTCCATCATATACTCATTTTGGGAAAATTTTTGTTATATTGTAGCACTTACTACTCGTAATTTGATTTTTTTTTCTATTAATATATTATTATTTTGAAATTTATGGTTGTTTTCAAATTTATTATTTCAAATTTATCATAAAAAGATTCATTCTCTTCATAAGAAATAGGAGGTAGAACCAATAAATATTTATTTTTCGATTCATCCTGGAGTTGAATACCTCATTCAAAAATTGTTTTTTATCCAATCCATAGGAATCAATAGAAAAGGCAAATCCCTTATGCTACACCAAATTCGGCTCGGTTATTGATAGACGAAAAAAATAAAATATTTTCATAATAAATTTTAAAAATAACAATATTAATAAAAAATATTATCTTCAAATATAAAAAAATAGTCAACTTATCCATAAATATAATGAAATCACAGTGAATAATTATAAATATTTATAGCAGTCATTTAAATTAATTATTAAAAAAAAAACATTCAAATTTGACAAATTTATTATTTAAAAATGTTTTAAAGGTGACTTGGCAGTGAAGCGACGAGTGTGAAGTTAACTCCCGTGGAATGGGAGATGATAATAAAGAAAGGAGGGCGTGAGACTATGTGACAGCACGTTTCATGATTACAATGATGGAGGTAGCAAAGTTCAAAGTCCTACCAATTTCAATTATTATTATTATTATTTTTCTTTTTAATTTTCTATGCGCTTTCGATTTCTAATCCAAACGACAAACAATGTTGGGTGCGTCGTGCGCAAATGCCGCGAGAAATTGAAACTTCCGCCTAACACATCATTGCCAGCAACCCCATTTGATCCACGCTAAGAAGAGGAGAAGGAACCTCTGTCTTGGGTTACTCCGCGTTCTTTCAATTTCTGCAAAGCCATTCTTTTCACGATCACACAAGCTCAGCTGGCTTTTTTTTTAATCCAAAAACCTCCCAACCCTTTTCTCCCATTTCTGTTTCTCTTCTCTCACGTGCACCCACGTTGTTTCCTTGAAAAAAATCGACTCCAAACGGGGTTGTTTCTGGTTTCTTGGATCATCTTTTGAATTGGGTTTTGATTTTTGGAGGTGGGTTCGTTTGTTTTTCTTCCATGGCGTTTCTGGTGAACGAATAAGAGCGGGTTGTTCTCTTCTTCCTTGGTTTTGGGAACAGGATTCTCCGAGTTGGGTGGATCGTTCACCGGACTCGGTATGGCCACGCCGAAGAAACCCAAAAGACTTTACCAAGTTTGGAGGGGAAGTAATGTGAGTTCTTAGCCTTTTTGTGTTTTGTTGATGGGTTTGTTTCCAATTCATTCCTTGATTGATTGATTCAATTTGCAATTTGAGATAGTGTTTGATGTATCAGTGACTTTGTTTCTTTCTTTACAATTGATTGATGTTGTTCTAGTTCAACTTGATGATTCTGTTTATGAGCTGAGAACGTTGATGGAATGGAATATCTAAGTTGTGTGTGAGAGTGTTTCTGCTTTCTACAATATCATGTACACAGAATTAACTAGTAAAATTCTTGTGTATTTCATGATCATATACCATGATTTTTTTTCTTCTTTTTGGGGTTAAAAGATTTTGGCTTATGTGCAATTGGTCAAAAGTGTAGATCATCTGCATATAACTTTAGAAACCATAGCTGAGTGTTTGGATATAAAAAAATGATATAAGAATGTGATTCCTGTCTCCTGTATATCAAAGAAGATCAAGCCCATACTACATGGTCAATACTATTTGACAAAAAACGACACTCGTCTTGCTAGGACCCGGCCACTTGCGTTACACTTCTTGCTTCTCATTGCTTCAATACTTAAGAAGTAGTTCAAAGTTTCCAAGTCTTTTGTGACTGTGAAGTCTTGAGGGTTATAATATCCCATGTATCATTTCTAGTGATGACAATATCAATAAATGTGTATGAGTAGTGGAATAATACCTGTCTCAAACTATTTGGTCCTATGAATATTTCTATGCATATTGCATACTTACTCAAATTGATACGATACTTCATTTTTCTTTGTCTTTTCAGAGATTTTTCTGTGGTGGGAGATTGATATTTGGACCTGACGTATCATCTTTGTTGCTCTCCATATGTCTTATTGCTGCCCCTGCAGTTGCTTTCTGCGTAAAGATACTTTTGAAGATTCATGATGAGAAGCCTCCTGGGAACATTCATTGGTATCCTGTATTATTTGGTGGTCTCAGTCTCACTATTCTGGTGAGTTTTGATTTGATTGGACTTAAAACTGCCGCCAATATTTATTTTATACGGGCTACATGAATCTTGCTGTCATTTAATTTTTGCCATAATCGTAGCTTCTGCCATTCCTTTTCTTTTGATAAATTCTTATATTATGTGCCCATCTTATTAGTAAGGCTGTCTATGTAATTGGTGTGAATGAGCTTGAAAGAAAGAAAGAAAACTCTAGAGATGAGACTGTGTAGAATACTTTCTCCCATGATTATTTATTATTATCTCCGGACTTTTTAACTCTTCAGAGTTGTCACTATTCTTCTATGATTATTGACAACAAAATAAGATCTAAAACCGAGCAGTGTATATCAATAACTCTTGACTTAATTGATTATGAAGATTCCATAGTGGTGTTGGCAAGAAACAGGGCGAAAGTTAGTGGTCATAAAGAATAAGCTTTTTGAACAAATGTAGCTGGCAATCCTATAAAAAAGGCATCTGTAGCTGGCAACAGGCATGCTCACACACATTACTTCTCCAATTTTCCAGAGGATTCTTTTGGAGTTTACATCATTTGTAGATCATGGTATCTCTTATGCTGTATTTGCTGCATCAAGAATTGGAAGAATTGAGAAAATCATTTTGGTACTAGATTCGAGCTGTGGCATGATCTTCCGTGAAGTGATAGGGAAACTTAAAATGGAACTATATGGCTGCTTAAGGCTGAAAAGTACTTTAAAATAATTAAAATCATGTTTCAAAATCCTTATGGTGTTTGGTTACGAAGTCGAAAGTGCTTTTTAGAAATTATTGTTATTGTAAGCACTTAATTCACACTTCTCTCAATATTTCTCAAAATGCTTGTTGAAAAAGTGTTTCACCTTTCTCTTACAGATCATTCTACATTCCTTCTAAATGCTCTTTCCACTGTTAGCTACTTAGATGAAAGCTCGTGTGTCAAATCAGTGCATTTTCATTATTCATAAATCAAACAGCATTCTTTGTTTGAATCGGAAAATCACATGCCAAGTAAACTATGTGCAGGATTTGATGTTTCTCATCTTGACTTCCAGTAGAGATCCTGGAATACTGCCTCGAAATTCAAGGCCTCTTGAGTCAGATGAATCAGACGACATGGCTACACCATCCATGGAATGGATCAATGGAAGAACCCCACATTTGAAAATCCCTCGGACTAAAGACGTGAATGTAAATGGTCATATAGTAAAAGTCAAGTACTGTGACACTTGTCTGTTTTATCGGCCTCCTCGTGCATCTCATTGTTCCATATGCAACAATTGTGTTCAGAGATTTGATCACCACTGTCCATGGGTTGGGCAGTGCATTGGAATAGTAAGTTCTCATGCTTAAAACAAAGTGATTAAGCTTTAGCTCAAACCTTGTTCCCATAATTCTGAGGTTTTAAAGGCAATGAAAATTAGTTTGGGTAGGGGCTTTATTATTTCATATAATTGAGAACGCATAGTACACCATGTAAGACCCTCACAAAGTACTAGCAGGTTTTATTTCATTTTATTTGCTAATTTTTGTTGGGTTCTAACTTAGTCTCCATTGTTGTTACTGTTGCAGCGTAATTATCGGTTCTTCTTCATGTTCATAACAACCTCAACTATCTTGTGTGTATATGTGTTGTCGTTTTCGTTGTCCATTCTTGTTCATGATCAAGAAACCTTTTTCAAGGCTGTATCCAAAGATATCCTTTCAGATATTCTAGTAGTGTATTGCTTCATCGCCTTTTGGTTCGTTGGTGGCCTCTCCATATTCCATTCTTATCTTGTATGCACAAACCAGGTAAGCTTCTTAAGTTCTTATACTCTGCCATTTAGATTAACGATTTATGGACTTTATGATCTTACTTCCTTGAATCGTTTCTGCATGTGATTGAATTTATATTTTGTAAGTTTCTAACTTGTGATTAGCTGTCCTCTTAAGGCCAAAATGGCTGCAGAAGTCTTTTCAATAATGAATAAAATGGTAAAAAATTTCTAAACTATCTTGTGAGAAAAACATTGGGGGTACTCTTGTTTATTTATTTATTTCTATACAGGAAAAATAATATTTCATTGATGTGATGAAATATTGCAAAAGAAAGAGGGAAAGAACAGCCATTTCTCCCTTTGATAACATTTCATACTATCATAAAATTGTTTCCTATTAAAAAAAACCTTGCAAACAAGTTTATTTCCTTTTGTTTTCAAAATTATTTCATAGGAAAATGTAAAATTTGTAGCAAAAAAAAAGATTAAAAAAGAAGGATTAGCTCTCCTCTTAAAGCCAAAATGGTTGCATCCGTCTTTTTGATAATTAAAAAACTTGTTTGTTGATAGTATGAAATAGTCAAGGTCTGCGCAAGGTAGTCAGGACACTCACTAGGCTTAGCTCTCCTTTTATGCTGGTGATTTTAGATTTATTAGTTGAAGAGATGAAGGTAACGGGGTTAAGTCCTAACAGTCAGACAGCTCATACTAGAGAGTTCCAGTTCCATTTGCTTTTATCCAGTACAAATGACATTTCTGTTTTACCATTTATACAAATGCTTGCTAAGTGTTGAATATTCTACTTGCTTGCTTGTTCTAATAAAGTCATGTTCAGCTTCTATCATTACTAATCAGTTTTAACTGTCTCTTCTAATACAGACTACCTATGAGAATTTCCGGTATCGGTATGACAAGAAGGAGAATCCATATAACAGGGGAATGGTAAAGAACATTGGAGAAGTATTTTTCTCCAAGATACCACCTTCATCAAATAAGTTCCGATCCATTGTTGAGGATGATCACATGATGGTGGCCATTACTCCTAATCTTGAAGAAGGTGTTCTTAGCTCAAAGGAAAAAATTGATTTTGAAAGGGGAACTAGATTTATGGAGGATGAGGCCTTCCCAATGCCCGAGATATTGAGGAGGTTGGAATTTGATGACGATCTGGAAGATGATTTGAAGACTGTAGAAGGAGAAAGACCTCATGTTGATCCACTATTTCCTCTGGACCAAGAAGTAGAGGAATTTGCTAAAGGTGCCAGTGATCGAATACCTGATCTTCAGCTAGTGTTATCTATGGAAGATAGTGATGCAGTAGCCGTAGAAAATTTCATCCTTAATGAGGTGAACACAGATGGGAGCAAGGATGCACATGACTCATCTCAAGTTGAAGCTTCAAAGTTTTAGGCGTAAAGGTAATCATCTCCCTCTGTCTATTTATTTAATTATTTTATTTTATTTTGAGGTCCATAACATTTGGGGTGAGAAATTTGAACTTTTGATCCCTTAGTCGAGGGTGAATATCTTAACTAGTTAAGCTGCAAAGGGTGGTCATTTCACTTGGTCTATTAAAATACAAGATATAGTTATATATATATGACAAATGGATTGTCGGGGGCTCCACTATTGGAATTATGCTTATAGCTTACCGCCTATCTCGCTAATCCTCCTGCAGGTTGAAGGTGAACTTCAGGGGATGATGAACGTTTTAATTTTAATTAGTAAGGTTCCACTTTCAATTAGGAGCTTCAACGTACAACTTAGGAGGATGTCTCGAAACATCACCAATAAGAATGAGAGTGGGGCTGCGCATGTTTGGGAGTGA ATGAGGAGAAAGTCAGTTGTTGAACATTTCTATGAAATAGGATTCTCCGAGTTGGGTGGATCGTTCACCGGACTCGGTATGGCCACGCCGAAGAAACCCAAAAGACTTTACCAAGTTTGGAGGGGAAGTAATAGATTTTTCTGTGGTGGGAGATTGATATTTGGACCTGACGTATCATCTTTGTTGCTCTCCATATGTCTTATTGCTGCCCCTGCAGTTGCTTTCTGCGTAAAGATACTTTTGAAGATTCATGATGAGAAGCCTCCTGGGAACATTCATTGGTATCCTGTATTATTTGGTGGTCTCAGTCTCACTATTCTGCTGGCAACAGGCATGCTCACACACATTACTTCTCCAATTTTCCAGAGGATTCTTTTGGAGTTTACATCATTTGTAGATCATGATCATTCTACATTCCTTCTAAATGCTCTTTCCACTGATTTGATGTTTCTCATCTTGACTTCCAGTAGAGATCCTGGAATACTGCCTCGAAATTCAAGGCCTCTTGAGTCAGATGAATCAGACGACATGGCTACACCATCCATGGAATGGATCAATGGAAGAACCCCACATTTGAAAATCCCTCGGACTAAAGACGTGAATGTAAATGGTCATATAGTAAAAGTCAAGTACTGTGACACTTGTCTGTTTTATCGGCCTCCTCGTGCATCTCATTGTTCCATATGCAACAATTGTGTTCAGAGATTTGATCACCACTGTCCATGGGTTGGGCAGTGCATTGGAATACGTAATTATCGGTTCTTCTTCATGTTCATAACAACCTCAACTATCTTGTGTGTATATGTGTTGTCGTTTTCGTTGTCCATTCTTGTTCATGATCAAGAAACCTTTTTCAAGGCTGTATCCAAAGATATCCTTTCAGATATTCTAGTAGTGTATTGCTTCATCGCCTTTTGGTTCGTTGGTGGCCTCTCCATATTCCATTCTTATCTTGTATGCACAAACCAGACTACCTATGAGAATTTCCGGTATCGGTATGACAAGAAGGAGAATCCATATAACAGGGGAATGGTAAAGAACATTGGAGAAGTATTTTTCTCCAAGATACCACCTTCATCAAATAAGTTCCGATCCATTGTTGAGGATGATCACATGATGGTGGCCATTACTCCTAATCTTGAAGAAGGTGTTCTTAGCTCAAAGGAAAAAATTGATTTTGAAAGGGGAACTAGATTTATGGAGGATGAGGCCTTCCCAATGCCCGAGATATTGAGGAGGTTGGAATTTGATGACGATCTGGAAGATGATTTGAAGACTGTAGAAGGAGAAAGACCTCATGTTGATCCACTATTTCCTCTGGACCAAGAAGTAGAGGAATTTGCTAAAGGTGCCAGTGATCGAATACCTGATCTTCAGCTAGTGTTATCTATGGAAGATAGTGATGCAGTAGCCGTAGAAAATTTCATCCTTAATGAGGTTGAAGGTGAACTTCAGGGGATGATGAACGTTTTAATTTTAATTAGTAAGGTTCCACTTTCAATTAGGAGCTTCAACGTACAACTTAGGAGGATGTCTCGAAACATCACCAATAAGAATGAGAGTGGGGCTGCGCATGTTTGGGAGTGA ATGAGGAGAAAGTCAGTTGTTGAACATTTCTATGAAATAGGATTCTCCGAGTTGGGTGGATCGTTCACCGGACTCGGTATGGCCACGCCGAAGAAACCCAAAAGACTTTACCAAGTTTGGAGGGGAAGTAATAGATTTTTCTGTGGTGGGAGATTGATATTTGGACCTGACGTATCATCTTTGTTGCTCTCCATATGTCTTATTGCTGCCCCTGCAGTTGCTTTCTGCGTAAAGATACTTTTGAAGATTCATGATGAGAAGCCTCCTGGGAACATTCATTGGTATCCTGTATTATTTGGTGGTCTCAGTCTCACTATTCTGCTGGCAACAGGCATGCTCACACACATTACTTCTCCAATTTTCCAGAGGATTCTTTTGGAGTTTACATCATTTGTAGATCATGATCATTCTACATTCCTTCTAAATGCTCTTTCCACTGATTTGATGTTTCTCATCTTGACTTCCAGTAGAGATCCTGGAATACTGCCTCGAAATTCAAGGCCTCTTGAGTCAGATGAATCAGACGACATGGCTACACCATCCATGGAATGGATCAATGGAAGAACCCCACATTTGAAAATCCCTCGGACTAAAGACGTGAATGTAAATGGTCATATAGTAAAAGTCAAGTACTGTGACACTTGTCTGTTTTATCGGCCTCCTCGTGCATCTCATTGTTCCATATGCAACAATTGTGTTCAGAGATTTGATCACCACTGTCCATGGGTTGGGCAGTGCATTGGAATACGTAATTATCGGTTCTTCTTCATGTTCATAACAACCTCAACTATCTTGTGTGTATATGTGTTGTCGTTTTCGTTGTCCATTCTTGTTCATGATCAAGAAACCTTTTTCAAGGCTGTATCCAAAGATATCCTTTCAGATATTCTAGTAGTGTATTGCTTCATCGCCTTTTGGTTCGTTGGTGGCCTCTCCATATTCCATTCTTATCTTGTATGCACAAACCAGACTACCTATGAGAATTTCCGGTATCGGTATGACAAGAAGGAGAATCCATATAACAGGGGAATGGTAAAGAACATTGGAGAAGTATTTTTCTCCAAGATACCACCTTCATCAAATAAGTTCCGATCCATTGTTGAGGATGATCACATGATGGTGGCCATTACTCCTAATCTTGAAGAAGGTGTTCTTAGCTCAAAGGAAAAAATTGATTTTGAAAGGGGAACTAGATTTATGGAGGATGAGGCCTTCCCAATGCCCGAGATATTGAGGAGGTTGGAATTTGATGACGATCTGGAAGATGATTTGAAGACTGTAGAAGGAGAAAGACCTCATGTTGATCCACTATTTCCTCTGGACCAAGAAGTAGAGGAATTTGCTAAAGGTGCCAGTGATCGAATACCTGATCTTCAGCTAGTGTTATCTATGGAAGATAGTGATGCAGTAGCCGTAGAAAATTTCATCCTTAATGAGGTTGAAGGTGAACTTCAGGGGATGATGAACGTTTTAATTTTAATTAGTAAGGTTCCACTTTCAATTAGGAGCTTCAACGTACAACTTAGGAGGATGTCTCGAAACATCACCAATAAGAATGAGAGTGGGGCTGCGCATGTTTGGGAGTGA MRRKSVVEHFYEIGFSELGGSFTGLGMATPKKPKRLYQVWRGSNRFFCGGRLIFGPDVSSLLLSICLIAAPAVAFCVKILLKIHDEKPPGNIHWYPVLFGGLSLTILLATGMLTHITSPIFQRILLEFTSFVDHDHSTFLLNALSTDLMFLILTSSRDPGILPRNSRPLESDESDDMATPSMEWINGRTPHLKIPRTKDVNVNGHIVKVKYCDTCLFYRPPRASHCSICNNCVQRFDHHCPWVGQCIGIRNYRFFFMFITTSTILCVYVLSFSLSILVHDQETFFKAVSKDILSDILVVYCFIAFWFVGGLSIFHSYLVCTNQTTYENFRYRYDKKENPYNRGMVKNIGEVFFSKIPPSSNKFRSIVEDDHMMVAITPNLEEGVLSSKEKIDFERGTRFMEDEAFPMPEILRRLEFDDDLEDDLKTVEGERPHVDPLFPLDQEVEEFAKGASDRIPDLQLVLSMEDSDAVAVENFILNEVEGELQGMMNVLILISKVPLSIRSFNVQLRRMSRNITNKNESGAAHVWE Homology
BLAST of CcUC10G201810 vs. NCBI nr
Match: XP_038903057.1 (probable protein S-acyltransferase 4 isoform X1 [Benincasa hispida]) HSP 1 Score: 818.1 bits (2112), Expect = 4.2e-233 Identity = 405/467 (86.72%), Postives = 416/467 (89.08%), Query Frame = 0
BLAST of CcUC10G201810 vs. NCBI nr
Match: XP_038903058.1 (probable protein S-acyltransferase 4 isoform X2 [Benincasa hispida]) HSP 1 Score: 818.1 bits (2112), Expect = 4.2e-233 Identity = 405/467 (86.72%), Postives = 416/467 (89.08%), Query Frame = 0
BLAST of CcUC10G201810 vs. NCBI nr
Match: TYK25487.1 (putative protein S-acyltransferase 4 [Cucumis melo var. makuwa]) HSP 1 Score: 815.8 bits (2106), Expect = 2.1e-232 Identity = 402/468 (85.90%), Postives = 417/468 (89.10%), Query Frame = 0
BLAST of CcUC10G201810 vs. NCBI nr
Match: KAA0053918.1 (putative protein S-acyltransferase 4 [Cucumis melo var. makuwa]) HSP 1 Score: 812.8 bits (2098), Expect = 1.8e-231 Identity = 401/466 (86.05%), Postives = 415/466 (89.06%), Query Frame = 0
BLAST of CcUC10G201810 vs. NCBI nr
Match: XP_008443205.1 (PREDICTED: probable protein S-acyltransferase 4 [Cucumis melo]) HSP 1 Score: 788.5 bits (2035), Expect = 3.6e-224 Identity = 389/454 (85.68%), Postives = 403/454 (88.77%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy Swiss-Prot
Match: Q9M1K5 (Probable protein S-acyltransferase 4 OS=Arabidopsis thaliana OX=3702 GN=PAT04 PE=2 SV=1) HSP 1 Score: 464.2 bits (1193), Expect = 2.0e-129 Identity = 256/481 (53.22%), Postives = 312/481 (64.86%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy Swiss-Prot
Match: Q5PNZ1 (Probable protein S-acyltransferase 3 OS=Arabidopsis thaliana OX=3702 GN=PAT03 PE=2 SV=1) HSP 1 Score: 381.3 bits (978), Expect = 1.7e-104 Identity = 201/392 (51.28%), Postives = 254/392 (64.80%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy Swiss-Prot
Match: O80685 (Probable protein S-acyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=PAT02 PE=2 SV=3) HSP 1 Score: 363.2 bits (931), Expect = 4.9e-99 Identity = 182/366 (49.73%), Postives = 234/366 (63.93%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy Swiss-Prot
Match: B3DN87 (Probable protein S-acyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=PAT01 PE=2 SV=1) HSP 1 Score: 334.0 bits (855), Expect = 3.2e-90 Identity = 171/343 (49.85%), Postives = 222/343 (64.72%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy Swiss-Prot
Match: Q0WQK2 (Probable protein S-acyltransferase 7 OS=Arabidopsis thaliana OX=3702 GN=PAT07 PE=1 SV=1) HSP 1 Score: 330.9 bits (847), Expect = 2.7e-89 Identity = 166/338 (49.11%), Postives = 219/338 (64.79%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy TrEMBL
Match: A0A5D3DPC6 (S-acyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold352G006340 PE=3 SV=1) HSP 1 Score: 815.8 bits (2106), Expect = 1.0e-232 Identity = 402/468 (85.90%), Postives = 417/468 (89.10%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy TrEMBL
Match: A0A5A7UFV6 (S-acyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold135G003160 PE=3 SV=1) HSP 1 Score: 812.8 bits (2098), Expect = 8.6e-232 Identity = 401/466 (86.05%), Postives = 415/466 (89.06%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy TrEMBL
Match: A0A1S3B709 (S-acyltransferase OS=Cucumis melo OX=3656 GN=LOC103486856 PE=3 SV=1) HSP 1 Score: 788.5 bits (2035), Expect = 1.7e-224 Identity = 389/454 (85.68%), Postives = 403/454 (88.77%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy TrEMBL
Match: A0A0A0LFD7 (S-acyltransferase OS=Cucumis sativus OX=3659 GN=Csa_3G816150 PE=3 SV=1) HSP 1 Score: 780.4 bits (2014), Expect = 4.7e-222 Identity = 387/457 (84.68%), Postives = 400/457 (87.53%), Query Frame = 0
BLAST of CcUC10G201810 vs. ExPASy TrEMBL
Match: A0A6J1F1K9 (S-acyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111441366 PE=3 SV=1) HSP 1 Score: 755.7 bits (1950), Expect = 1.2e-214 Identity = 371/451 (82.26%), Postives = 391/451 (86.70%), Query Frame = 0
BLAST of CcUC10G201810 vs. TAIR 10
Match: AT3G56930.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 464.2 bits (1193), Expect = 1.4e-130 Identity = 256/481 (53.22%), Postives = 312/481 (64.86%), Query Frame = 0
BLAST of CcUC10G201810 vs. TAIR 10
Match: AT3G56930.2 (DHHC-type zinc finger family protein ) HSP 1 Score: 415.2 bits (1066), Expect = 7.7e-116 Identity = 237/477 (49.69%), Postives = 286/477 (59.96%), Query Frame = 0
BLAST of CcUC10G201810 vs. TAIR 10
Match: AT5G05070.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 381.3 bits (978), Expect = 1.2e-105 Identity = 201/392 (51.28%), Postives = 254/392 (64.80%), Query Frame = 0
BLAST of CcUC10G201810 vs. TAIR 10
Match: AT2G40990.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 363.2 bits (931), Expect = 3.5e-100 Identity = 182/366 (49.73%), Postives = 234/366 (63.93%), Query Frame = 0
BLAST of CcUC10G201810 vs. TAIR 10
Match: AT3G56920.1 (DHHC-type zinc finger family protein ) HSP 1 Score: 334.0 bits (855), Expect = 2.3e-91 Identity = 171/343 (49.85%), Postives = 222/343 (64.72%), 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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