
ClCG02G013390 (gene) Watermelon (Charleston Gray) v2.5
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.ATGGCGATCTCAACCTCGCTATTCCCTTTTCCTCTAACTCCCAAGCTTCGGAATCCCCCATTACCTCTCTACGCCACTACTACCTTCCTGTCCACCAGGAGATTTGACCTCTTGTCATCTTCTTCCTCTACCCACATTCTGAAAGTTTCCACCGTTTTCGATACAGTTACTGTGGGGGAGGATTTTCCGGTCAACTATGGCGAATGGTTCCCGGAGTCGGATCCTGACATTCGGCGAAGAGCTGGTGTTCTGCTACATCCTACGTCGTTTCGAGGACCTTATGGCATTGGTGATCTTGGAGATCAGGCGTTTAGATTTGTAGACTGGCTTCATGAAGCGGGATTCTCTGTTTGGCAGGTTCTTCCTCTTGTCCCTCCAGGAAGGAAGGCCAACGAAGAGGGATCACCCTACTCAGGCCAGGTGATGACTTATCTAGTCAAGCAATCTTTTAATTCTCCTTTTTTTCCTTCTCCCCTCCTCTATCTCCTGTTTCTTTTATCCTTCCAATGTTTAAGGTGGGGGATGGGACGGAGTGATTAGTGAGGAGGGATTACCTCAATGTAGAAATAGGGAATACACATTCAAAAAGAAATTTGCTTGGTCTCTATCGCTATGAATATCGAATACCGTAAAGAAAGTAGGTTTGGCCATTTGGCAACAGGTTCATGCATTTTGTTATTCACATCCCAATTATGTATGGGCTTGAGTAAGGCATTCATTACCAGCATACTGAGAGGAAGGTGCAGCAAGACTCAGTATTACCCCTGTATTGAATTCTTATTGAAATTGCCACTTTATTTTGCCCCATTATGTCCATTGTTTTGAAATGTTTAGTTTATCGAAGATGAAGTTTAGATCACATCTGGTCTCATCTGAATTTTAGAAAATGAATGCTGCAAAGATTCTACTCATTATTTAGAATTATATTGCCCTTGAGAAAGTTATTTCCTTCACTAGAATTAAAAATAGAACCACTGGCCATGACTGTGTTTGAAGTACAGCAAATATGGGATGAAAATTCAAACTTTTAACTTTAAAGAAAGGTGTAGATGTCATGACTGTTGAGCTATGTTCATGTTGGCTGTATTTGAAATTACTTTTATAGGTCATGTGGGAGTTTACTCCACAAAATTGTAAAGCAGAAATGGGGATAGATGCAATTAAGTGGTGGGTTTATATGGTGGATCAAGCATAAAATTTGCCAACAGAAAGGTTGTTTGCTGGAGAACCTTCTATAAATAATATAGGTCCTTTACTCCCAAATTGGGAGATGAACGTAAATAATTATGATTAGTGATTAGCAGTGGTTTTTAGGTGGTCTATGCTAATCTATATTTCCCAGATCCTGTTAATGATCGTGTTCACACTCCAAGGACATTAGTCATCCTGAAAGTAGCATGGTTGTTTCTTTCATCCCTCAGTTAGCTGACTTTCTGTGCTTGTTATGTTTTCTGGACCTCTTCAATCACACAAGTATTTATTTTGACGAGACTCTTGGTGTGTCTGGTTGTTATAGATCATGTTGCTCATTGATGGAGGTGGTGAGGAAACACAAACAGAAAATAGATCCTTTGGCTGACCTTTAACTCTTTTGATATGGTGGCTATCAGGATGTGTGTTCCAGAGTGAAGCCAGTTTTTAGTAATGGGTATATTCAACATGTTTTATGACTCACCATTTTAGGTTAAGGGAGAAATCCTATGATGTGCAACTTCTTTTTTTTTCCCCCTTCTATTTCATAGAATAGTTGACTTTGAGAAAAGTAGGGGAATTTTTAGAGGGGTTAGCCCTTGGAGGAAGGATGATTTATGGCTAGTTTTCTTTCCACTTTTTGGGTGTCTATTTCTAAGAGTATTTATAGCTGTTTATTATCTCTTACTCCTAGCAATGGGAGCCTATTTTGTAATGTTGGGTTTTTTAATTTGTACAAGCTTCCTAGGCTCTCCTTTTTTGTGGGTTTCTATTTTCTTAGAAAATATTATTATGAAGTCTTTTTTTGTCCATTTGTATTCTTCCATTTGTCTTAGTGGAAGCTTGGTTTTACATTAACAAAATGTTTATTTACACCATCAATTTCAACAGTTTTATTGATCTGTTTACTCTTGGTACATTATTTTCTCTGTTTTATAACTTTCAGGATGCAAATTGTGGAAACACTCTCTTGATCTCTCTTGATGAGCTTGTCAAGGATGGTTTGCTCACAAAAGACGAGTTGCCAAAGCCAGTGTAAGAAACTTTACTTTTTGGCAGATTTAGATTAATTGTTTGCATCCCCTTTATTATCTCTCTTGAAAGGGACACTATGAAGTAATCCTGTCCATGAATGGATACTCGCAGCGACCATGACCATGTAAACTTCTCTGCTGTTGCTGATATAAAGGATCCCTTAATAGCAAAGGTTAGTAATTAATCTTTCCTCTCTCAAGACTCACGAGTGGTTATTATTGGCTGATTGTAATCTGTTATACCTAATCTGTAACGTAATCTTTTATTTCCTCTTTGTTACCTATTATACTGAGCTGTTTAGAGTTTGTTATCAAGATGACAGTATCTAATACTGAGCTGTTTAGAGTTTGTTATCAAGATGACAGTATCTATAAATACTGATCCTTTGTACTGCTAATATATGAATTATATCACTCTTCTAACTCTTAGTAGGAGATTTCCGTTGCATGTCAAAATTCATCTATAGCTTTTATGAGTAGTGACTTGAAAATGAATATCAGCTTCGAATCGGTCTCCTAAGCTTCCTCCATTTTCAAAGTCATCCTTATTAGTTTTGTACAGGAAATTGTGTTTGTGTTATATTATATTTAAAAGAAAGGAGGAACAACTTTACAGCCAGGGGTAGGGTGAACCATCTCCGAGAAAACAGCAAGTACAGAAGACCTCTCCAATCCAAATTAATCGTAAAAAAGTTGTGATTACAGCTCAGCAATTTGGGTAGGGAACTTCAACAAGAGGCTGTACAATATACAAGCTCACTAAGAAGCATCAGAAGAGGATAGTTAACTTGGAAGATCCTATTATTTCTTTCAAGCCATAGAATCTACAAAAAAGATCCAACTGTACACTTCCATAGCACTTTAGCTGTGTCTTTCAGCCACGAATCCGTTAAAGCTTCAGGAAGCCAAATATGTTCATAAAAAAGACCATCCTCTAAAAGCAAAGGATAATTTGTGTACAAATGGTCAAGTCATAATATGAGTTCTTTTGTAACAATGTACAAATTACTTCTCTCTTTGTGGTGTTTAGGACACAACAAATGTTTTTTGTAATCATAGCCTAGCTCAAATCCTCCAAGATTGGGGGGTGGTGCTTCACTAGTTTTTTTAGGGGTATTCACCACTCTGTCCTAAACCTGCTTTTCCTTTTTTGGAATACAAATCTGTTTCTCTTAATAAATAAGTAAATGATAATAAGAGAGAAGAAATGGTCGAGGGATTTAGAATTATAGAACCTATCTTTGAAATTTACTCAATTTTTAAAGTTCAAGTGTTGATTAAATAATCGAAGAGGTTTTAATTTCATAGTTTTTAAGCCTATGCAATACGACAAAATAAACTCGATAAGGAGGTACCAACTTGTTTCATCATTGGAGGAAGCATTGCTATTAATGAAAAATGCAAAGTAAAACACACTGTGCTTATATCGTCTGGGTTGTCCTATGACACCTAAATATTGTAGGTCAAGCGGGTTATCCCGTGTGATTAGTCAAGTCAAGGTACGCGTAAGTTGGCCCGGACACTCGCCGATATAAAAAAAATAATAATAAAAGTAAAAAAATTGTGCGTCAGATTCAGAGGGGTGATCTCATGTTTACATTCCAGTGTATATTGCTTTGTGATCAACAAAGATTTACAAGCACACTGATGACTTCCAATTTCGTTTTATTTTTATATTACCTGAGTATTTCTTTAATTATTTTCTTTGGTTTTGTCTTAGGCTGCAGAAAGGTTAATTCAAAGTGATGGTGAACTTAAAAGACAGCTTGAAGAATTTTGTAGAGACCCTGATATATCAAGTGAGTTTTAATATAATCCAACTGATGTCAGGGATCACCCATAATATTTTGCAGAACTTCTAGTTTGTATTAATATTTAGATCTTATTGATTGTTAAAAATTATACATGATACACTATCTAAGCTACCTAATTCATCCTTTCTACCTTGCTAAAAAATAAGAAGCTAATGTTTGTCAGACAATAAATCGCCTTTACTTGAATTTTTCTAAGATCTGTCAATTTAGTTCAAGCCCTCAATTTTCAAGAAAAGGCGTTCAAATTAGACTGCTAAAACCTCCTCAATGGCTGGATCTGGTCAGCTGTAGAGTTGGTATCTGCTACCAAAATTCAGTTATGCTGAGCTGCCAAATGTATTTCAGCATGAAACCTTTCATGAACCAGCTTGTTAATACATAATTAATTGTAAAGTTTTTCCTCCTTTAGTATAGGAACACCAAACACATATACTTCAAAAGCTCTCATTCAAAAGTCTCTTTGCCACTGTTGGATTTAGAAGAAGAAAAAGAGAAAAAAGAATTCAAAGATGGTCTCCCAGGTTCTAGTTGATATCGATAGTTTGGAAATTATCCCCTAATTTTCAGTTTTACTGAATGACGCCTCAAATACACTTGTGATAGATTGACTATTCAATAAAGTCTGCTGGTTAATTAATTAATCATCTAACTTAATAGTTTAGAACAATTTTTACTTTTTATCAATGAAAAGTTCCCTTAAAAAACTAATAAAAAAAGTGGAACAGCTCTTCTTACTTCATTTCACTCTTTCTCTCTCATTCTTGTTGTTCAATTCTGCAGGCTGGCTTGAAGATGCAGCTTATTTTGCTGCTATTGATAATAGACTAAATTATTTCAGTTGGTATGAATGGCCAGAACCCTTAAAAAATCGGCATCTTTCAGCTTTAGAAGATGTTTACCAAAGGGAAAGAGATTTCGTAAGAATTGAGTGACTTCTTTAGTTTGACTTTTGTGCTTACAGTCTCTGTAGTCCGTTGCCTAATTGTTCACATGTACTGTTGTTCTTGCAGATAAATATATTCATTGCTCAACAGTTTTTATTCCAGAGACAATGGCAAAGAGTTCGTAGCTATGCAAATATGAAGGGTATTGCTATAATGGGGGACATGCCTATATATGTTGGCTATCAGAGTGCAGATGTTTGGGCTAATAAGAAGCAATTTTTGCTGGTATATGTTGCTTCTCGATGAATAGAGACAGATAAAAGTCTACTATGGGATGTTCTAATTATGTTGACTGCTAAATGCTAATGATAATCATATGTTCTGGCAGAACAGGAAAGGTTTTCCCGTGTTAGTGAGTGGTGTGCCTCCAGATGCATTTAGTGAAACTGGTCAACTATGGGGAAGGTGTGTCATGCACTTGTCTCAGACTCTCAATGGTTGATTGTACATTCTTTCATGAAATTTGTTTTCCATTTTTCCCGTAGTTCTTACACATGGTCATATTCCTTGTCTAGTTTCATAGAATTAGTTTTTTAAGACTTGATTTTAAAGAGAGTTCATTTCGAAGTAGATATTGTTTAGGAAATTGGTTCCAATCAAGGAAAACAAAAGAGAAAAATAGAAAATATAATCATGGGCAGCCATCACGAACGTAGCTTAGTGGTTAAGGTATCTCGCTTCTTCTAACAGGCCATGGGTTTAAATCCCCCGTCAAAAAAAATAATAATAAATATAAATATAAAAATATAAACATATAAAAAATAAAATCCATTGAAGTGGTTAAGGTATCTCACTTCTTCTAAGAGGCCGTGGGTAGTCCCCTGTAAAAAAAAATATATATATGTATAAAATATAAAAATATAAAAAATAAAATCCATTGTGATTTTTCATTATATCATCGTAATTGTTTCCTGTTATTTTCTTTTATCTAATACTTCTCAAAATTATTCCAGTGTTTGCGTTAATTCTAGTTTGTTAATTTTGTTTGGTGTAAACCTGCCAAGAAATAGCTTTCTAATAAATTGATGTCTGCTTGGAACTTGAAAGTCCTCTATATGATTGGAAAGCCATGGAGAAAGATGGTTTTTCTTGGTGGATACGGCGCATTAAACGTGCACAGAATCTATATGATGAATTCCGGATTGATCATTTTAGAGGATTTGCTGGTTTCTGGGCAGTTCCTTCTGGTAGGCTTTAATGAAATAAATTTATCAGGTTACATAACATGTTTCTTTGTTTAGTTCATTGTGCTAACATGTTGCAAATGTACAGAGGCAAAAATTGCTACAGTTGGACGGTGGAAGGTCAGACTTATAATTAATTTGGCAGGTTTCTTTTAGATTGTAATTTCATATCATGGTATCTTCTTCAATAGTATCTTTTATGACAGTAGGCAGGGCCTGGAAAATCTTTATTTAATGCCATATCCAGAGCGGTTGGGAAGATCAACATATTTGCAGAAGATTTGGTATGTTTTTATGGATAAACAAGTAATGAAATCATAGCGATCTATTCAATGCTCATTACATTGTGGATGTGATTTCTTGTATTGTTTCCAATATCGTTCTTGTTTAAAATTTTCAGACTAACTACTTTGGGTTCGGAATTTATTTTTGAAGCCAGAAGCTTAAGGTTAAAAACTTGTCACCAACTCATCATAACACCGTCTGTTTGGTGTCTAACATGTCACTCATGAATTAATTAATGTGCACTTGTATTTAGGAAAGTAAAAGAGCATAATTCCACTTTGTTTTGTATCGTTTAGCTCTGTGGTTTCATCATTTCTTATCAGTCATGAAAAAGGAAATACTCATGGAGATTATTTGATTAGTGCTACCATTTCCGACCCCCACAAATTTCAATTGAGTCTGTTTTCTTTTAGTTTTAGCTACATTTTGCATTGGTTTAACCATCTTATAACAGGGAGTTATTACTGAAGATGTGGTTCAGCTCAGAAAGTCTATAGGGGCACCTGGAATGGCTGTCCTCCAATTTGGTATTACTGTTATATATTGTCTCTGTTTTGAAGAGATTGCCTTCAAATGTTTATTCTCGGTAATTGATATATTTTGTTCAAACAGGTTTTGGAAGTGATTCTACTAATCCGCATTTGCCCCACAATCATGAATCTAACCAAGTTGTCTACACGGGAACTCATGATAATGACACAGTAATAATTTCCATGTTTGCTATCTCCTTGTTTGCAATATGTCGTAAAAAAATCTGATGTTGGCAATAGACAAGCATCTTTGAATTACTGGTTTTAATCTGATTTAAGTAAATAAAACTGGTCTCTCCTGGTGTCATTCTGTTAATTGTTCAAGTGTTTTAATGCAGATTCGTGGCTGGTGGGACAATTTGAATGAAGGAGAAAAATCCAATGTTCGCAACACCTTCTCTGAACCTTAACACATTCATACATGCAAAAACTACAATAGTTTCTGAATATTGTTTCAAAGCTGCCAACTTTTGTATTAGTTTGAACATACATGAAAACACAGTAACATTAGTAACAATATGAATAAACAAAAATAGACATTTGAAGAAATCCGGAGGGAGGTCCATTGAAGGAAATGAAATTCATATGAACTACACAGGCTATGCTCCCAAGGAGAGAGAAAATGGGGCCTCAAAGATGAGACACATGGAAAGTGAGTTTAAGCAGGAGAGTTACGACAATCGAAGTAAGGGGAGAAGATGATGGTACTATGGTAGGTACCTTGCAAAACCAATTTGAAAAAAAAGGAGGAAAATGAGGAGAATGCGTTAGCGACTAATCCAATTGGAGAACTAAAGCATTTTACAAGGCTGAAAGGGAAAGTTTTGAGCAGAAGAGAAGACCGTGCCCATCCCTTTGCAGCCACATACCTGACACAAGAAGAGGACAAGAGGCTTAGACTCGAAAAGAATCCTTAGAGGGTGGTCCGATAGAGTATGTGAAGAAATCCAGAGCATATTTAACACCCATTACAAAAAGATTAAGGGGAAGTGGAAGACCAACGGTAGGAGAAAATGTTTTTGGGAAATATTTTTTCTCGTTTCAGAAAGATTCCCAAGTACTATAGTAAAAGAGCTATAGTCGAGGATGTTTCAGGTAGTGACATTGTGTATAGAAGGGTAGTTGAATCATTATGAAGCTCGTAGGGAATTGGATAGGCAAAAGTTGAACCATACGCTAGAGCTCGGGGAATGTTAATCTATTGAAAACCTTGCTGATTCTCAATCTTATTGGGGATGTTATCACCAAAAGTTTCATTGATGACCTACCCCACTTCATTCTCCTCCATCACCCTTTGAGTGCTAAGACTGGGCAGCTTTTTTTTTTTTTTTTTAAGTAGTGTGTCTCCATGAGTTTCCGCTATTGTTCATCTTTGATCGGATCAAAATCTTCATTAGTCATTTCTTGGACAAAGCTTTATTTATCATCCAGGGTATCCAATTCCAGCAATGTAAGCCTACCACCCACAAAGGGGCAATCAATCTGAGATCAATCTGGTTTGGAAGCGTACCTTTGATGCTTTTGTTATGGAAAGCCAAAACAGAAAAGGACGAAGCACATCTGTCTTTCATTGTTCTTTTGGGTGGAAATTCTGGGATTCTCAGTTTCAAATGCTTTGATCGTTCTAGGGTCTTTGTTCAGTTGTGGTCACAGATTTATAGTATGGCTAAAATTCTACGCATTACTGATAGAAAAACAACAATTTTCAGGATATGTTGTGAAAGAATTCAGAGATTTTCTGGAAAGAAAGTGTCTAATTTGGGAAAGAAGTGTTGAATAATCAAACTACTATGCATCTTCTTGGTGTGCCCTTTCGAATTTTTTTTCATTACTATACTTCCCATGTAATTAATATATTAGGGAAATGAAATAAGGTGTGACATGTCTTGTGTTACAGGTACTGAAGTATCTTTCAGCTACTGAGAAAGATGATATCCCCTGGGTTCTCATCCGGGCAGCATTGTCTTCTGTGGCACAAACTGCCATAATACCTTTGCAAGATGTTCTTGGGTTAGGGAGTTCTGCAAGGATGAACATTCCAGCAACACAGGTAAGTTTATACCTTCATACTCAGGTACCCAATTAGTCTTGTTAATTGTCATAAAGCTCAACATTAAGCATTTGAGTCAGAATACAATCCAGACATTTCCTTGCCTGTTATTTCACCATACAAGAGTACTAAGATCTGCACAGCAAATGATATTTTCTAAAATTTATATGATTTACAATTAACTTCAGTAGCTCATGAGTGCACACTGGTGCTTTCAGTGGTACCAGAAGATATTAACAACCCACAAAATCCTTCATCTTTTGATTCTTTTACTTTATACCATCTTAATCTGTGTAGTGTAGGAAAAAAGACCATGCATTCAATAGGAAACTTTGTTTTGAAGAAAAAATGTGAAGAAGTTTAGATTGTCTAAGAATGAAATATGATATCTATGGATTTGATTGTGATAATGGTTCATTGTGTAAGATATGTTTGTACTTGTCACACAGTTTGGAAACTGGAAATGGAGAATACCTAGTTCCTTAAGCTTTGAGAGTTTGGAGACAGAAGCCAGCAAATTGAAGGATATGATTTCATTGTATGGCCGGCTGTAG ATGGCGATCTCAACCTCGCTATTCCCTTTTCCTCTAACTCCCAAGCTTCGGAATCCCCCATTACCTCTCTACGCCACTACTACCTTCCTGTCCACCAGGAGATTTGACCTCTTGTCATCTTCTTCCTCTACCCACATTCTGAAAGTTTCCACCGTTTTCGATACAGTTACTGTGGGGGAGGATTTTCCGGTCAACTATGGCGAATGGTTCCCGGAGTCGGATCCTGACATTCGGCGAAGAGCTGGTGTTCTGCTACATCCTACGTCGTTTCGAGGACCTTATGGCATTGGTGATCTTGGAGATCAGGCGTTTAGATTTGTAGACTGGCTTCATGAAGCGGGATTCTCTGTTTGGCAGGTTCTTCCTCTTGTCCCTCCAGGAAGGAAGGCCAACGAAGAGGGATCACCCTACTCAGGCCAGGATGCAAATTGTGGAAACACTCTCTTGATCTCTCTTGATGAGCTTGTCAAGGATGGTTTGCTCACAAAAGACGAGTTGCCAAAGCCAGTCGACCATGACCATGTAAACTTCTCTGCTGTTGCTGATATAAAGGATCCCTTAATAGCAAAGGCTGCAGAAAGGTTAATTCAAAGTGATGGTGAACTTAAAAGACAGCTTGAAGAATTTTGTAGAGACCCTGATATATCAAGCTGGCTTGAAGATGCAGCTTATTTTGCTGCTATTGATAATAGACTAAATTATTTCAGTTGGTATGAATGGCCAGAACCCTTAAAAAATCGGCATCTTTCAGCTTTAGAAGATGTTTACCAAAGGGAAAGAGATTTCATAAATATATTCATTGCTCAACAGTTTTTATTCCAGAGACAATGGCAAAGAGTTCGTAGCTATGCAAATATGAAGGGTATTGCTATAATGGGGGACATGCCTATATATGTTGGCTATCAGAGTGCAGATGTTTGGGCTAATAAGAAGCAATTTTTGCTGAACAGGAAAGGTTTTCCCGTGTTAGTGAGTGGTGTGCCTCCAGATGCATTTAGTGAAACTGGTCAACTATGGGGAAGTCCTCTATATGATTGGAAAGCCATGGAGAAAGATGGTTTTTCTTGGTGGATACGGCGCATTAAACGTGCACAGAATCTATATGATGAATTCCGGATTGATCATTTTAGAGGATTTGCTGGTTTCTGGGCAGTTCCTTCTGAGGCAAAAATTGCTACAGTTGGACGGTGGAAGGCAGGGCCTGGAAAATCTTTATTTAATGCCATATCCAGAGCGGTTGGGAAGATCAACATATTTGCAGAAGATTTGGGAGTTATTACTGAAGATGTGGTTCAGCTCAGAAAGTCTATAGGGGCACCTGGAATGGCTGTCCTCCAATTTGGTTTTGGAAGTGATTCTACTAATCCGCATTTGCCCCACAATCATGAATCTAACCAAGTTGTCTACACGGGAACTCATGATAATGACACAATTCGTGGCTGGTGGGACAATTTGAATGAAGGAGAAAAATCCAATGTACTGAAGTATCTTTCAGCTACTGAGAAAGATGATATCCCCTGGGTTCTCATCCGGGCAGCATTGTCTTCTGTGGCACAAACTGCCATAATACCTTTGCAAGATGTTCTTGGGTTAGGGAGTTCTGCAAGGATGAACATTCCAGCAACACAGTTTGGAAACTGGAAATGGAGAATACCTAGTTCCTTAAGCTTTGAGAGTTTGGAGACAGAAGCCAGCAAATTGAAGGATATGATTTCATTGTATGGCCGGCTGTAG ATGGCGATCTCAACCTCGCTATTCCCTTTTCCTCTAACTCCCAAGCTTCGGAATCCCCCATTACCTCTCTACGCCACTACTACCTTCCTGTCCACCAGGAGATTTGACCTCTTGTCATCTTCTTCCTCTACCCACATTCTGAAAGTTTCCACCGTTTTCGATACAGTTACTGTGGGGGAGGATTTTCCGGTCAACTATGGCGAATGGTTCCCGGAGTCGGATCCTGACATTCGGCGAAGAGCTGGTGTTCTGCTACATCCTACGTCGTTTCGAGGACCTTATGGCATTGGTGATCTTGGAGATCAGGCGTTTAGATTTGTAGACTGGCTTCATGAAGCGGGATTCTCTGTTTGGCAGGTTCTTCCTCTTGTCCCTCCAGGAAGGAAGGCCAACGAAGAGGGATCACCCTACTCAGGCCAGGATGCAAATTGTGGAAACACTCTCTTGATCTCTCTTGATGAGCTTGTCAAGGATGGTTTGCTCACAAAAGACGAGTTGCCAAAGCCAGTCGACCATGACCATGTAAACTTCTCTGCTGTTGCTGATATAAAGGATCCCTTAATAGCAAAGGCTGCAGAAAGGTTAATTCAAAGTGATGGTGAACTTAAAAGACAGCTTGAAGAATTTTGTAGAGACCCTGATATATCAAGCTGGCTTGAAGATGCAGCTTATTTTGCTGCTATTGATAATAGACTAAATTATTTCAGTTGGTATGAATGGCCAGAACCCTTAAAAAATCGGCATCTTTCAGCTTTAGAAGATGTTTACCAAAGGGAAAGAGATTTCATAAATATATTCATTGCTCAACAGTTTTTATTCCAGAGACAATGGCAAAGAGTTCGTAGCTATGCAAATATGAAGGGTATTGCTATAATGGGGGACATGCCTATATATGTTGGCTATCAGAGTGCAGATGTTTGGGCTAATAAGAAGCAATTTTTGCTGAACAGGAAAGGTTTTCCCGTGTTAGTGAGTGGTGTGCCTCCAGATGCATTTAGTGAAACTGGTCAACTATGGGGAAGTCCTCTATATGATTGGAAAGCCATGGAGAAAGATGGTTTTTCTTGGTGGATACGGCGCATTAAACGTGCACAGAATCTATATGATGAATTCCGGATTGATCATTTTAGAGGATTTGCTGGTTTCTGGGCAGTTCCTTCTGAGGCAAAAATTGCTACAGTTGGACGGTGGAAGGCAGGGCCTGGAAAATCTTTATTTAATGCCATATCCAGAGCGGTTGGGAAGATCAACATATTTGCAGAAGATTTGGGAGTTATTACTGAAGATGTGGTTCAGCTCAGAAAGTCTATAGGGGCACCTGGAATGGCTGTCCTCCAATTTGGTTTTGGAAGTGATTCTACTAATCCGCATTTGCCCCACAATCATGAATCTAACCAAGTTGTCTACACGGGAACTCATGATAATGACACAATTCGTGGCTGGTGGGACAATTTGAATGAAGGAGAAAAATCCAATGTACTGAAGTATCTTTCAGCTACTGAGAAAGATGATATCCCCTGGGTTCTCATCCGGGCAGCATTGTCTTCTGTGGCACAAACTGCCATAATACCTTTGCAAGATGTTCTTGGGTTAGGGAGTTCTGCAAGGATGAACATTCCAGCAACACAGTTTGGAAACTGGAAATGGAGAATACCTAGTTCCTTAAGCTTTGAGAGTTTGGAGACAGAAGCCAGCAAATTGAAGGATATGATTTCATTGTATGGCCGGCTGTAG MAISTSLFPFPLTPKLRNPPLPLYATTTFLSTRRFDLLSSSSSTHILKVSTVFDTVTVGEDFPVNYGEWFPESDPDIRRRAGVLLHPTSFRGPYGIGDLGDQAFRFVDWLHEAGFSVWQVLPLVPPGRKANEEGSPYSGQDANCGNTLLISLDELVKDGLLTKDELPKPVDHDHVNFSAVADIKDPLIAKAAERLIQSDGELKRQLEEFCRDPDISSWLEDAAYFAAIDNRLNYFSWYEWPEPLKNRHLSALEDVYQRERDFINIFIAQQFLFQRQWQRVRSYANMKGIAIMGDMPIYVGYQSADVWANKKQFLLNRKGFPVLVSGVPPDAFSETGQLWGSPLYDWKAMEKDGFSWWIRRIKRAQNLYDEFRIDHFRGFAGFWAVPSEAKIATVGRWKAGPGKSLFNAISRAVGKINIFAEDLGVITEDVVQLRKSIGAPGMAVLQFGFGSDSTNPHLPHNHESNQVVYTGTHDNDTIRGWWDNLNEGEKSNVLKYLSATEKDDIPWVLIRAALSSVAQTAIIPLQDVLGLGSSARMNIPATQFGNWKWRIPSSLSFESLETEASKLKDMISLYGRL Homology
BLAST of ClCG02G013390 vs. NCBI nr
Match: XP_038901901.1 (4-alpha-glucanotransferase, chloroplastic/amyloplastic isoform X5 [Benincasa hispida]) HSP 1 Score: 1150.2 bits (2974), Expect = 0.0e+00 Identity = 553/577 (95.84%), Postives = 564/577 (97.75%), Query Frame = 0
BLAST of ClCG02G013390 vs. NCBI nr
Match: XP_038901900.1 (4-alpha-glucanotransferase, chloroplastic/amyloplastic isoform X4 [Benincasa hispida]) HSP 1 Score: 1145.6 bits (2962), Expect = 0.0e+00 Identity = 553/578 (95.67%), Postives = 564/578 (97.58%), Query Frame = 0
BLAST of ClCG02G013390 vs. NCBI nr
Match: XP_038901898.1 (4-alpha-glucanotransferase, chloroplastic/amyloplastic isoform X2 [Benincasa hispida]) HSP 1 Score: 1119.8 bits (2895), Expect = 0.0e+00 Identity = 553/645 (85.74%), Postives = 564/645 (87.44%), Query Frame = 0
BLAST of ClCG02G013390 vs. NCBI nr
Match: XP_038901897.1 (4-alpha-glucanotransferase, chloroplastic/amyloplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 1115.1 bits (2883), Expect = 0.0e+00 Identity = 553/646 (85.60%), Postives = 564/646 (87.31%), Query Frame = 0
BLAST of ClCG02G013390 vs. NCBI nr
Match: XP_008457890.1 (PREDICTED: 4-alpha-glucanotransferase, chloroplastic/amyloplastic [Cucumis melo] >KAA0045884.1 4-alpha-glucanotransferase [Cucumis melo var. makuwa] >TYK13703.1 4-alpha-glucanotransferase [Cucumis melo var. makuwa]) HSP 1 Score: 1107.8 bits (2864), Expect = 0.0e+00 Identity = 540/581 (92.94%), Postives = 553/581 (95.18%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy Swiss-Prot
Match: Q06801 (4-alpha-glucanotransferase, chloroplastic/amyloplastic OS=Solanum tuberosum OX=4113 GN=DPEP PE=1 SV=1) HSP 1 Score: 878.2 bits (2268), Expect = 4.9e-254 Identity = 413/576 (71.70%), Postives = 484/576 (84.03%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy Swiss-Prot
Match: Q9LV91 (4-alpha-glucanotransferase DPE1, chloroplastic/amyloplastic OS=Arabidopsis thaliana OX=3702 GN=DPE1 PE=1 SV=1) HSP 1 Score: 847.4 bits (2188), Expect = 9.3e-245 Identity = 390/528 (73.86%), Postives = 451/528 (85.42%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy Swiss-Prot
Match: Q8LI30 (4-alpha-glucanotransferase DPE1, chloroplastic/amyloplastic OS=Oryza sativa subsp. japonica OX=39947 GN=DPE1 PE=2 SV=2) HSP 1 Score: 785.0 bits (2026), Expect = 5.7e-226 Identity = 363/522 (69.54%), Postives = 429/522 (82.18%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy Swiss-Prot
Match: P72785 (4-alpha-glucanotransferase OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=malQ PE=3 SV=1) HSP 1 Score: 414.5 bits (1064), Expect = 2.0e-114 Identity = 227/507 (44.77%), Postives = 296/507 (58.38%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy Swiss-Prot
Match: O66937 (4-alpha-glucanotransferase OS=Aquifex aeolicus (strain VF5) OX=224324 GN=malQ PE=1 SV=1) HSP 1 Score: 410.2 bits (1053), Expect = 3.8e-113 Identity = 215/499 (43.09%), Postives = 296/499 (59.32%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy TrEMBL
Match: A0A5D3CP83 (4-alpha-glucanotransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold299G002270 PE=3 SV=1) HSP 1 Score: 1107.8 bits (2864), Expect = 0.0e+00 Identity = 540/581 (92.94%), Postives = 553/581 (95.18%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy TrEMBL
Match: A0A1S3C639 (4-alpha-glucanotransferase OS=Cucumis melo OX=3656 GN=LOC103497466 PE=3 SV=1) HSP 1 Score: 1107.8 bits (2864), Expect = 0.0e+00 Identity = 540/581 (92.94%), Postives = 553/581 (95.18%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy TrEMBL
Match: A0A6J1DIV2 (4-alpha-glucanotransferase OS=Momordica charantia OX=3673 GN=LOC111021480 PE=3 SV=1) HSP 1 Score: 1106.3 bits (2860), Expect = 0.0e+00 Identity = 533/582 (91.58%), Postives = 554/582 (95.19%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy TrEMBL
Match: A0A0A0LQ32 (4-alpha-glucanotransferase OS=Cucumis sativus OX=3659 GN=Csa_2G296010 PE=3 SV=1) HSP 1 Score: 1100.5 bits (2845), Expect = 0.0e+00 Identity = 530/577 (91.85%), Postives = 550/577 (95.32%), Query Frame = 0
BLAST of ClCG02G013390 vs. ExPASy TrEMBL
Match: A0A6J1DL91 (4-alpha-glucanotransferase OS=Momordica charantia OX=3673 GN=LOC111021480 PE=3 SV=1) HSP 1 Score: 1095.9 bits (2833), Expect = 0.0e+00 Identity = 533/598 (89.13%), Postives = 554/598 (92.64%), Query Frame = 0
BLAST of ClCG02G013390 vs. TAIR 10
Match: AT5G64860.1 (disproportionating enzyme ) HSP 1 Score: 847.4 bits (2188), Expect = 6.6e-246 Identity = 390/528 (73.86%), Postives = 451/528 (85.42%), Query Frame = 0
BLAST of ClCG02G013390 vs. TAIR 10
Match: AT2G40840.1 (disproportionating enzyme 2 ) HSP 1 Score: 122.1 bits (305), Expect = 1.5e-27 Identity = 88/333 (26.43%), Postives = 146/333 (43.84%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (Charleston Gray) v2.5
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.
|