Clc07G15130 (gene) Watermelon (cordophanus) v2
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.CCACTCCTCAAAGAACATTTCCAATTCTTTAAAAGACTAAACTCCGCCGGGGCAATGGAAGCCTACAAATCCCTAAAAATCGAGCGTCAAAACCCAAACTCCGGCGTATTCCACCTCCGCCTCCACCGTCCGTCGCACTACAACGCCCTCACAACCGAACTCTTCGCCGAACTCCGTCGAGCGTTTTCATATCTGGATCAAAACCCCGACGTCCACGTCATCATCCTCTCCGGATCCGGCAAGCACTTCTGCGCCGGAATCGACCTCAAATCTACGTTCTCCAACTTCCAGAAGCTTCTGTCGGAGGAGCGGGGGCGGGCAGGTGAGAAGCTCCGGCGTGAAATCAAGTGGATGCAGGAGTCGATCACGGCGATCGAGGAGTGCCGGAAGCCGGTGATTGCGAGCATCCACGGAGGTTGCATCGGGGGAGGGGTTGACATAGTGACGGCGTGTGATTTGAGGTATTGCACGGCGGAGGCGGTGTTTTCGGTGAGGGAGGTTAAATTGGGGATTACGGCGGATCTTGGGACTCTGCAGAGGCTGCCGAGGATCGTAGGGTATGGGAAGGCGGTGGAGTTGGCGTTGACGGGCCGGGATTTTTCGGGCTTGGAGGCTAAGGAAATGGGCTTGGTTTCCCAAACTTTTGCTTCCAAGTTGGAACTCCAAGATGGAGTCCTCAAACTTGCTCAAGGTTTTTCAATTCTCTCTATTTACCAATTCCCCTATACCATTCCTTTTTGTTTTTCTTCTTCTTTACTATAGTTTTGAGTCTCCAATTTCAATTTTCATCCACTTATGCTTACTCTTTTAATCCCTTCGATTTAATTAGTGGTTTGACTATTGTTAGACATCAATCTCAGTATTGTATCTAATTAATCACTTAATTTTTTTTTTCTTTTAATTTAGGAGACTTATTAGATATTTCTATAGTTTATTACGGACTATGAATTGTAAAATATGGGTCATTTTTGAAATATGACATCCATATCCATATATGCTATTTCTTAATTTTTGTATGTGCATTCAAATTGTTTGGTGTAAATTGGAAGCTTGTAAGCATAAATAATTGTTCTGTAATGTGTATGAGATTGGGAAAAAGAAATGAAAAGTGGTTGGTGAATGCAGAAATAGCATCAAAATCTCCATTGGCTGTGGTGGGAACAAAGGCAGTGCTACTAAGAAGCAGAGACCTAAATGTAGAACAAGGCTTGGATTATGTTGCAACTTGGAACTCAGGGACTCTACTTTCAGATGATCTCAAGGAAGCCATCTCCGCCCAAGCTAACAAACGCAACCCGACGTTTTCTAAGCTTTGAGACGGAGAGATTCGAACATCTAATCTCGAGAGGATGTCCTCCCATGTCCAAATAAGAACATAAAACGTCATCAGATATGTTCTTTTCCTTTCTATAATCATCTTTTTTTCTTAATAAAAATAAATGGTAAATATATGTTTTAGTCGTATTCTTTTTTAACAATTTAGTCGTCGTCATTTAATTTACTTATAAATGTTGCTTATATTATAGAGATATATTTACTTGAAGAATGATTGAACAGTTCTTTCTTAAAATTTAGATGGAGTTGCGTGATTTGGCAACCAATAGGATGGATTATAAACCAATGTCCATATAATCGAGATGGATTAGATTTGGAAGATTTAAAGGAAAATTAATAAAAAATTAAGGGTTTGTTTGGGAGAAAATTTGAAATCAAATAATTCAATAAAAACAAAGTTGTATTTTATGTTTTTATATATTTATTTGGTAGCAATTTCAAAATTTAGATTTAAATTTAAATAATTGTTTAAAATGTGTTTGATATTATATATTTATAAATCATAAAATTAATTTTAGTTACTTACTAATATTTAGTTGACAGTAAACTATTATTAGTTTATTTATAAATATGATTTGCGTTAAAAATATATATAATTATTATTTTGTAATATTTTATAATTTATTGTATGCTATATATATATATATTTTATAAATATGAATTAAGTTTATAATATTTTTAAATGTTTTTTTTATTATTTATTATAGTTTTGAATTTCAAAAATTAAAATTCAAAATCTAGATACAATGCAAATATAAAAATGTTGTTTTTATAATTTACAATATTTAGATCACAAATTCGTCCAAAACTACCAATGTCAACATTATTGGGTGAACTCATAATCTAAAAATATAAAACATAATTTGAATTCTCCACTCAACAAGTCTTTAATTTTCAAAACTACCAATGTCAACATTATTTTATTTTATGAGTCACACCTCATTCTAAAATGTTTCTTTTATGACAAACAAAGAAAGAAATCCATATTACCATATTTCTATAAACTTTTCAAGTTCATCAGGTCAAACAAATACGTCCCCGATCAATTTGTCAAATTCGTCCAAAATCTTTTAAGAAAAAAGAATTCATTTCAACTAATTTATGTATGGATAAAATTTCAATCTAGTTTGTAGTGGGGGAAAAAATAATATATGTGAACTTAATACACTAGCAAACTGATTACACCTCAACTTGAACAATACTTAATATATAAACAAGACATATGAATTGAAATAACTAAAAAGCATTGTCCACACTGGATGCAAGTAGACTATAACGATCGTCTTAGTAAGATAAAATGACTAACTCTGCTAGAATTGCAACCTCAAACTACTTGGGCAGAACTCTTGGATACTTGTTCTCAACTCAATTTAAGACCGAAGAAATAAAGAAAGGGGAGAGGTGGGATGCTACAAATGGAGAAACGAGTATCTATTTATAGGCTAGCAAATAAATACAAAAATTGAAACATTTGTCAAATTTAACTCAATTTAGTTATTACTTGACAAAAATCAAACATACTCATTCAAATCGAAGAAAATACAAATTTAACTTTCTTACCTATTAAATTTGTATATGAAACATCATCTTAATTTGATGGTTTCAATCCAACAACGAATTTAATCTACACAATTAAATCCATTTTTATGTTACAATATTCAATTGTTTTCACTTTCTTTCACTATATATATCCAGCCGTTTGAATTGAAAGCTACACGGGACTATTTCGATTGAAAATTAAAATGCTTAATTCTTTTCCTTTATAAAAAAAACTTAGAAAGTCAATCTAAGCATTTTAAAACTACTATGGATGTATATTTATTGTTTAAAAAACAAACATAAATATCATTTTTTTGTTTGGTTGAAAGCGTAAATAACTCTTTTTTCTCTCAACAATTAATGTAAAAAAAAAAAAAAAAAAAAAGAAGCCACATAATTTAAATTAAGTTGATATGAAAAAATAGATTGCGTGAATGATGGGAAGTAACAACAATTTTAAACTTCAATATAATTCTAAAAAGAAGTGGTTTTTAAAAAAAAAACAATATTTGAAAACTAAAAAAGAAAAAAGAAAAAAGTGGTTAGAATCAAAATAAGGATTATCCCTAATTTGAGCTTAAGCGGGAATCTAGGGTATTTATTGCCCGAAGGTTGACAAATTTTTCAATTTTCCTTCTCTTTTCTTCATCACAATTCACCCTTTTTTTTCTCATTTCTTCTTCCATCATCTTCCTTAGCGCACACGTCAAATTTCGTCGTCTCTCACAACTTCCTCTTACGAAGGCCCTGGAATTTTCTACCTTGTCGGTGTTGATTTTCCTCCTATTCCTCTGAATTCCCCAATTATGCTGGCTCTACATTCCCCCTTCCCAACCTCCGATGTCTCCACCACCGGTCACATCCTCACCGCCACCGCATTTGCCTTTCCCTCAACCCCGAGGTCAGACGTTCTTCTTCAATCTTTTCATCCACTCAAAAAGGAATCCTTCAATTTCTTGCATTCCTTTGCGTCTGCTCACATTTTGTTCTCTGTTTCATTTTTAGAGGCTAACTTAGTGGAAGATCCAAATGAACCTACATTTAAATCCTCCAAATTCTTGGTGATTGGTCATAGAGGATGCGGGATGAACATCTTGCACTCCTCTGATCCGCGTTTCAAATTCATGAAGGAGAATTCCATTCCCTCCTTCAACGCGGCCACTAGGTTTCCTGTCGATTTCATCGAATTCGATGTTCAGGTCAGAAAATGTCGAACACAAACTACTTATTATTATAATTTGAATGTCGTGTTCCCACTCTGTCTTTAATTTTATAAATGAGTGTTCATATTGTTGCTTGTCGTGAAATGGGTGTGAATGGTTCTTGTGAAATTGTCGTCCAACACTCTCATCTTAATCTGCCCTACTAATTTCTTTGCTCGTTTCTTTGTTTTTTTTTTCTCTTTTCTCTTTCCTTTCCTTTTCTTTAGTAGGAAGAACTTCTTAAGAACCAATTTTTGTAGGTAACCAAAGATGGCTGTCCAGTCATTTTCCATGACTGTTTGATTCTTACCGGGGAAAAGGTTAGTCCCTTCCTTTCCCCCCAACTCATTTCAAATAATTTATTGAACTGCTAAATGAGTATTGGTTTGTTTCAGGGTGCTATTCTGGAGAAAAGAGTTACAGATCTCATGCTGGAAGAATTCCTTTCATATGGGCCACAAGATGATCCTGGAAAGGTGATTTCCATATTTCCTTCTCACACCTTTACAGTAATTGGGGAATGAGAAAGATGAATATCTAAGTCCTGTAACTTTGTTGTATTTGTGAGAATTCAGATGGGTAAGCCTCTATTTAGGAGGACTGTAGATGGGGAAATATTGGAGTGGAAAGTTGAAAACGATGCGCCACTATGCACGCTGCAAGAAGCTTTTGAGAAGGTTGAGCATTCAGTTGGTTTTAATATAGAGTTGAAGTTTGATGATCTGATAATCTACAAAGAGGAGCAACTTGCTCTAATGCTCCAACAAGTTTTACAGGTAGTTGCTTTGCCAAACATATGCAAACTAAGATTGTGTGAGAGATGATATGCTTATAAAAGAAAAGCTTTCTCAGGTAGTGGAAAAGAATGCCAAGGACAGACCTATTATATTTTCAAGCTTTATACCAGATGCTGCTCAGCTAGTTAAGAAACTTCAGAGAACCTACCCTGTAAGATCATTTACTTACCTTATCCTATTCTATATTTTCATTTCTTTCTTCATATTCCATTTTGTTCTGATGTTCAGCAACTATGGAGGCTGTATCCATTTGTAAATACACTGCCAAAGAGTCTTTTACCAAGAATAATAAAATACCTCCTAAAGTCTTTCACAGCTCACATAATAACCTTGTAGGAAGATCTTCACCTAATGAAGAGGAAACGAGTATCAATAGAGGTCTCTTTACATTCACCTGATCTAACAGGTATTCTTCCTGACGAACGGAGGATCGAAAATTTATCCCGATATTAGAAGGAATTCGTTAGAGGAAGCCATTAACGTGTGTATGATGGGAGGTTTGAATGGAATTGTTGCAGAAGTCACATCAATTTTGAGAAATCCTGCAGCAGTTGATAAAATTAGAAATGCAGGACTCTCACTAATAACCTATGGCCAATTGAAGTAAATTTCATATTTGTCTTCCTGCTTTCTTTTCTCTTATAAATGTTCTTTAAATTGTTTGAAGTCCAAGTATGAAACATACTCTGCCCTGCAGTAATCTTCCAGAAGTGGTGTATGTGCAACGTTTGCTGGGTGTTGAGGGAGTAATCGTCGACCTAGTTCAAGAGATAACAGAGGCAGTCTCTGATATCATCTCTTCTGAACGCAAAGAGGGCTCACGTGAGCATCGAATCAACATGAAGGCCGAAACAAAACCCGAATTCTCCCAACAGCAAATGAAGATGAGGCCTTGCTTTCTGATGAACGGCGAGCAGGTATGCTCACAAAATATTAATTTGAGCTCGCACATTGATAATATAATACAGTTTTATCAATGTAAATAAGTAAGCAATGATCTTAATAGCTGTGGCATTAGGCATTGATAATATAATTCAAGTTTATCAATGCATGTAAATAAAACATTGACATTCTTACACTTTCTGACCCATAATATGTAGAAAAAAAGACCAAACATTGGTCGCCATTTTCAATGCATTAAAATTACTTTTCTCTACGTTTGAAATTAGGATGTTGAAAATATTTCTAAAAATGTAAACTATGGAGTTGAAACTTCAGTTCAAGAACTGAATGAATCTATTGAAAAACTCAAGAAAAGGTGGGAGGTTTTATCTCTATTCTCACAAATTACACTGAGTTTAGCAATGAAAAACAATATTTTTGTGTTTTTAGTGTATTTAAATTTTGAATTTGATATTTTAAAATGCAGAATTTTACTAAAAAAGGATTAAAACATTAGCAAATATAATATTTTATGTGATAAACTCAATTATTTTTTAAAATTAAAATATGTATTATATTATATATTATATGATAAAATAATAATTATATAAATTTGTATCTAAAACAAGTTCATAAATTAATTAGTAATAGTTTATATATTTAACTTAATATTTAGTGAGTAATTATAATTAGTCTTATGGTCTATAAATACATTATAAAATACATTTTGAAAAATTTTTTAAATTGAAATTTAATTTTGAATTTGCTATTAAACAAATAGATGAAAACATGAAATACAATTCTGTTTTTGTTGAATTCATTGGAAACATTGCCTGTCAAACCGTCCCTAAATTTCTAAGTACCGAAATTTGTTTGATATTTTCTTTGTAGATTTTTAAAATTTTTATCATTAATTTATTTTTAAATTATATGATCCATTTTGGAAACAACATTTAAAAATGTTACAATAATCGATGTTAAATTATGTACACTGTTGTGGGTAGACACAAGCCACTGAATTGAACCACTTATTTTTTTGGCCAAATCACAGATGATATTTTTTAACTTATTTTTATCGCATGTTTCGGACTCACAATTTTCCAATATCGAATCTTAGACTTCCATCCTTTCTGGCCCCATTGTTTTGTTTTGTTTTGTTTGTCTGTTTTGTTTTTGTTTCCTTATCTTCTTCTTCCCTCCTTCCTAGGTTTATTTGAGTTATTTCTTAAAAAGAAAAAAAAAAAAAAAAAGAAAAGAAAAGAAAAGAAAAATGGTATCTTAACCTTTGTATTAGTGTTAATATATGTGTATATATAATGATAAATTTGGAACTAGTTACGAATTTATTGTGCCTTCTAATTAAATTATAAGACATGTGAAATGCATATTTACAAAATTGTGACATGTGCTAGTTGGGCTTACAACTAATTTAGTTCGAGCTCACCGAATTTGTCCGAAGTTTAGTAATTAGGATTAAGTTCAAATAAGCCCATGCTCAAAAGTTTGGGCCAAAGTCAACCAAACCCATCTCTATATAACATTTCATTAGAACTCTAAAAAAGATGAAGCTACCATTCTTTTTAGCAACCGAAATTCAGACAAGAAATTATAGATTAGAAATACTTTCATAAGATTAGATCTCTCTTATGGTCAAAGACTGTTTGATACATCTAAAGACTAGAATCAACATTTTAATGACAAAAGTTGGAGAAGCAAATAAGATTTTAAGACTTGGATTTTATTTTTAAAACGGTTAACATTCTAGTAGACTAATCCAAGAAGATCAATAAGGTAGCAAGCCGATCCAAGAAAATTGATAAACCAAGTCGGTTGAAAAAAAATTAACATGCAAGTAGGTCACTCAAAATGTTAGCTTCTTGAGCTTTAATTTAGTCGTAGCAAATCAAACATCAAACGAAGAAGTTATAACCACAAAGAGTTTTGAAAACAAAATCCTATTTGGCAATGACGTGACGATATACTAAATGTGGCATGTGGGATGACACAACAATGATGTGCCATCTAACATAGCATACTAATGGTCAAATTTCGGTGATGCGGTATGATGGCATGACATTCTAAAGATTCAATTTGTAGATGTGGCAAATGACATGGACCATTTAAGCGTTATTTCTCCTCCCTTTTGAATTTATCTATCCTCCCCATCTACTTGAAATCTCTCTACAATGTTCTCCATCATTGAATTATTTAAAGTGTAATTCTAGTACATTTTTTTTGTGGGAGATTTTTTTTCCAGAGATTAAATTACTTTTTGTGAGTGCAAAATTGTGTGTTGTGAGAGTTTGTATTTTTATGAAAATTTTATTTTCATTTTATTGGAATTTGTAAAAAAGTGTCGATGCATGTTGGGATGGAGAAAATGATTCAGTTCTAAACATGTAAAAAGATTTGTATATAAAAAATTTGCAGTTGTTTGATCTTAAACTCATTAAAAATGATCGGATCTTAAATTCGTTTTAAAGTCGATATTGGGTTGGATCTTAATCTTGTAAAAGAAATAACAATAAACAACCAAACAACCATGTCTGAGGGATAGAAATGGGCCTAGAGAGAAAGGTGTGGTTGAAATTAGTTTGCCAAGGTTATAGTTGAGCCTGCAAAATCATGCAACTCTCTCCTATGATTTGGCCCAACATGAGCCAAGAGAGAATGACTAACTTGGCCTAAAGCCAAATCAGCTTCTTGCCCTCGGCAGGCTTGCTTACCAAATCATGTTACATAATTTGACACAACATGAACCTAAGGAGAATGGCTCATTGGCCCAAAGCCAAATGAGCTCGCTCAACCTTGGCCTTGGCTAAGACAGAACCCACCAAATCATGTTGTTCTTGCATGATTTAGCCCAACAAAGAAAGAGAGGAATTCGTAAGCAACAAGAAAACTCTAATTGGATAAGATCGCAGTCATCAACTCTATAAGCTCTCCAATAGAATTCCCATAATGAACCTATTCTAGAAAAACTTTAAGTATCAGAGTATGTGTGGCCTATACCACACCGATGCGTAGTTCTTGTTAACTTGCAAGCTATGTTTTCCCTCCTAAATACAAATTTACTATTTTTTGCCACGTGAAGGTCATGCCACTTTGCTTGTCCAAATTTAGGAATCAACACAAGTTTAATATTATTAACCATGTGACCCTCTAATGTTGTCATACAATCATACGCATTAAACAAGCCCAAGATCAAATTTTATATCTAGTGAGAAAGAATCAGAAAATAGATATCAGAAATTGTAAACCACAGGGCATAATCCACATAACAAAGAAACACAGAAGTGACAAGACCAAGAAATAACAAAATTTGGGCAAAAGTAGTACACTAGGCCCAAAACGAGTCTAGAGTTAGCTTGGGCCTTGATCCTAGTCGATGTGCAAGCCTTGCCTATTGGGGCATGCCCGCACATTCCCTAACCTAGGAACATTGTCCTACGATCAACATGGGCCTAGGGAAAGGTGCTCAACCTCGACCTTGGCAAAGGCTGAGCTTAGCAAAATGGCCAATGAGATATACTCCTCGCATATACCCCAACATTGTAAGGAAATAAATGATTATTCTAATGTTTGCTTCAAAACTCTATGGAGGATTACTTAGGTCATTTGTTCGTATAAATACATCACTATAGCTTGAAATGTAAGTCAATTCTCTCTCTAAAATCCTAGAACTCCACACTATTGTAGTCTCTGACCTGAACATTGAAATCACCACACCGGTGTACATGTTTTCCTTTGTTTTGCAGGTCACATTCTTCTCTCATCTAAACAAATTTACCATTGTTGTCATGTAAATGCCAACTTTTTCTCTATTTAGATTTTGGCATCAAAACATATATAAAAATTAATAAAATCAAGTTGATTATTTTATAAATTAAAATCTTTTGAAATTTTGAAACATATAGGAAGAATATGAAAAATGAAACTTAAATGAGAAGGCTAAAATTATATTTCCTTTTTTATTGGGACAAAAATTTTCTAGTATTAAGAAGTTAATATTTTAAGAAAAAAAGGAGGAATTATTTAATAGGATACTGTTAAGGATACTTTCAAATATAGGAAAATCAACCAAAATATTTATAAATATAGTAAAATTTTAATATCTATTTGCAATAGACCGTGATAGACTACTATTTGTGTCATGATAGATATAGATAGTAGTTATCGTCGGCAGAGTAGGCAGCATCGCTTTTCCTCGTGTAGCTATGATGCCATTCAGAAGGAACACAAGAATCAGAAAAAGAAAAAGAAGTATTTCGCGGATTCTTGCCATCACTGGAAAACTAATTGAGCTGTAGGCATCAAGGTAAGGGGCCGGATTATATACTGCAGCAGAAGCGGAATCGGGTTTCAAGGTAAGGATAGCGTGATTGGCCGATTGGTTGGAAGGTAAGGATAGCATGATTGACAGGTTGCGGGTCCCTTGGATCATGGGGACCGCAGCAGACGGGCCCTAGCCTGA CCACTCCTCAAAGAACATTTCCAATTCTTTAAAAGACTAAACTCCGCCGGGGCAATGGAAGCCTACAAATCCCTAAAAATCGAGCGTCAAAACCCAAACTCCGGCGTATTCCACCTCCGCCTCCACCGTCCGTCGCACTACAACGCCCTCACAACCGAACTCTTCGCCGAACTCCGTCGAGCGTTTTCATATCTGGATCAAAACCCCGACGTCCACGTCATCATCCTCTCCGGATCCGGCAAGCACTTCTGCGCCGGAATCGACCTCAAATCTACGTTCTCCAACTTCCAGAAGCTTCTGTCGGAGGAGCGGGGGCGGGCAGGTGAGAAGCTCCGGCGTGAAATCAAGTGGATGCAGGAGTCGATCACGGCGATCGAGGAGTGCCGGAAGCCGGTGATTGCGAGCATCCACGGAGGTTGCATCGGGGGAGGGGTTGACATAGTGACGGCGTGTGATTTGAGGTATTGCACGGCGGAGGCGGTGTTTTCGGTGAGGGAGGTTAAATTGGGGATTACGGCGGATCTTGGGACTCTGCAGAGGCTGCCGAGGATCGTAGGGTATGGGAAGGCGGTGGAGTTGGCGTTGACGGGCCGGGATTTTTCGGGCTTGGAGGCTAAGGAAATGGGCTTGGTTTCCCAAACTTTTGCTTCCAAGTTGGAACTCCAAGATGGAGTCCTCAAACTTGCTCAAGGCCCTGGAATTTTCTACCTTGTCGGTGTTGATTTTCCTCCTATTCCTCTGAATTCCCCAATTATGCTGGCTCTACATTCCCCCTTCCCAACCTCCGATGTCTCCACCACCGGTCACATCCTCACCGCCACCGCATTTGCCTTTCCCTCAACCCCGAGGTCAGACGTTCTTCTTCAATCTTTTCATCCACTCAAAAAGGAATCCTTCAATTTCTTGCATTCCTTTGCGTCTGCTCACATTTTGTTCTCTGTTTCATTTTTAGAGGCTAACTTAGTGGAAGATCCAAATGAACCTACATTTAAATCCTCCAAATTCTTGGTGATTGGTCATAGAGGATGCGGGATGAACATCTTGCACTCCTCTGATCCGCGTTTCAAATTCATGAAGGAGAATTCCATTCCCTCCTTCAACGCGGCCACTAGGTTTCCTGTCGATTTCATCGAATTCGATGTTCAGGGTGCTATTCTGGAGAAAAGAGTTACAGATCTCATGCTGGAAGAATTCCTTTCATATGGGCCACAAGATGATCCTGGAAAGATGGGTAAGCCTCTATTTAGGAGGACTGTAGATGGGGAAATATTGGAGTGGAAAGTTGAAAACGATGCGCCACTATGCACGCTGCAAGAAGCTTTTGAGAAGGTTGAGCATTCAGTTGGTTTTAATATAGAGTTGAAGTTTGATGATCTGATAATCTACAAAGAGGAGCAACTTGCTCTAATGCTCCAACAAGTTTTACAGGTAGTGGAAAAGAATGCCAAGGACAGACCTATTATATTTTCAAGCTTTATACCAGATGCTGCTCAGCTAGTTAAGAAACTTCAGAGAACCTACCCTGTATTCTTCCTGACGAACGGAGGATCGAAAATTTATCCCGATATTAGAAGGAATTCGTTAGAGGAAGCCATTAACGTGTGTATGATGGGAGGTTTGAATGGAATTGTTGCAGAAGTCACATCAATTTTGAGAAATCCTGCAGCAGTTGATAAAATTAGAAATGCAGGACTCTCACTAATAACCTATGGCCAATTGAATAATCTTCCAGAAGTGGTGTATGTGCAACGTTTGCTGGGTGTTGAGGGAGTAATCGTCGACCTAGTTCAAGAGATAACAGAGGCAGTCTCTGATATCATCTCTTCTGAACGCAAAGAGGGCTCACGTGAGCATCGAATCAACATGAAGGCCGAAACAAAACCCGAATTCTCCCAACAGCAAATGAAGATGAGGCCTTGCTTTCTGATGAACGGCGAGCAGGATGTTGAAAATATTTCTAAAAATGTTGCGGGTCCCTTGGATCATGGGGACCGCAGCAGACGGGCCCTAGCCTGA ATGGAAGCCTACAAATCCCTAAAAATCGAGCGTCAAAACCCAAACTCCGGCGTATTCCACCTCCGCCTCCACCGTCCGTCGCACTACAACGCCCTCACAACCGAACTCTTCGCCGAACTCCGTCGAGCGTTTTCATATCTGGATCAAAACCCCGACGTCCACGTCATCATCCTCTCCGGATCCGGCAAGCACTTCTGCGCCGGAATCGACCTCAAATCTACGTTCTCCAACTTCCAGAAGCTTCTGTCGGAGGAGCGGGGGCGGGCAGGTGAGAAGCTCCGGCGTGAAATCAAGTGGATGCAGGAGTCGATCACGGCGATCGAGGAGTGCCGGAAGCCGGTGATTGCGAGCATCCACGGAGGTTGCATCGGGGGAGGGGTTGACATAGTGACGGCGTGTGATTTGAGGTATTGCACGGCGGAGGCGGTGTTTTCGGTGAGGGAGGTTAAATTGGGGATTACGGCGGATCTTGGGACTCTGCAGAGGCTGCCGAGGATCGTAGGGTATGGGAAGGCGGTGGAGTTGGCGTTGACGGGCCGGGATTTTTCGGGCTTGGAGGCTAAGGAAATGGGCTTGGTTTCCCAAACTTTTGCTTCCAAGTTGGAACTCCAAGATGGAGTCCTCAAACTTGCTCAAGGCCCTGGAATTTTCTACCTTGTCGGTGTTGATTTTCCTCCTATTCCTCTGAATTCCCCAATTATGCTGGCTCTACATTCCCCCTTCCCAACCTCCGATGTCTCCACCACCGGTCACATCCTCACCGCCACCGCATTTGCCTTTCCCTCAACCCCGAGGTCAGACGTTCTTCTTCAATCTTTTCATCCACTCAAAAAGGAATCCTTCAATTTCTTGCATTCCTTTGCGTCTGCTCACATTTTGTTCTCTGTTTCATTTTTAGAGGCTAACTTAGTGGAAGATCCAAATGAACCTACATTTAAATCCTCCAAATTCTTGGTGATTGGTCATAGAGGATGCGGGATGAACATCTTGCACTCCTCTGATCCGCGTTTCAAATTCATGAAGGAGAATTCCATTCCCTCCTTCAACGCGGCCACTAGGTTTCCTGTCGATTTCATCGAATTCGATGTTCAGGGTGCTATTCTGGAGAAAAGAGTTACAGATCTCATGCTGGAAGAATTCCTTTCATATGGGCCACAAGATGATCCTGGAAAGATGGGTAAGCCTCTATTTAGGAGGACTGTAGATGGGGAAATATTGGAGTGGAAAGTTGAAAACGATGCGCCACTATGCACGCTGCAAGAAGCTTTTGAGAAGGTTGAGCATTCAGTTGGTTTTAATATAGAGTTGAAGTTTGATGATCTGATAATCTACAAAGAGGAGCAACTTGCTCTAATGCTCCAACAAGTTTTACAGGTAGTGGAAAAGAATGCCAAGGACAGACCTATTATATTTTCAAGCTTTATACCAGATGCTGCTCAGCTAGTTAAGAAACTTCAGAGAACCTACCCTGTATTCTTCCTGACGAACGGAGGATCGAAAATTTATCCCGATATTAGAAGGAATTCGTTAGAGGAAGCCATTAACGTGTGTATGATGGGAGGTTTGAATGGAATTGTTGCAGAAGTCACATCAATTTTGAGAAATCCTGCAGCAGTTGATAAAATTAGAAATGCAGGACTCTCACTAATAACCTATGGCCAATTGAATAATCTTCCAGAAGTGGTGTATGTGCAACGTTTGCTGGGTGTTGAGGGAGTAATCGTCGACCTAGTTCAAGAGATAACAGAGGCAGTCTCTGATATCATCTCTTCTGAACGCAAAGAGGGCTCACGTGAGCATCGAATCAACATGAAGGCCGAAACAAAACCCGAATTCTCCCAACAGCAAATGAAGATGAGGCCTTGCTTTCTGATGAACGGCGAGCAGGATGTTGAAAATATTTCTAAAAATGTTGCGGGTCCCTTGGATCATGGGGACCGCAGCAGACGGGCCCTAGCCTGA MEAYKSLKIERQNPNSGVFHLRLHRPSHYNALTTELFAELRRAFSYLDQNPDVHVIILSGSGKHFCAGIDLKSTFSNFQKLLSEERGRAGEKLRREIKWMQESITAIEECRKPVIASIHGGCIGGGVDIVTACDLRYCTAEAVFSVREVKLGITADLGTLQRLPRIVGYGKAVELALTGRDFSGLEAKEMGLVSQTFASKLELQDGVLKLAQGPGIFYLVGVDFPPIPLNSPIMLALHSPFPTSDVSTTGHILTATAFAFPSTPRSDVLLQSFHPLKKESFNFLHSFASAHILFSVSFLEANLVEDPNEPTFKSSKFLVIGHRGCGMNILHSSDPRFKFMKENSIPSFNAATRFPVDFIEFDVQGAILEKRVTDLMLEEFLSYGPQDDPGKMGKPLFRRTVDGEILEWKVENDAPLCTLQEAFEKVEHSVGFNIELKFDDLIIYKEEQLALMLQQVLQVVEKNAKDRPIIFSSFIPDAAQLVKKLQRTYPVFFLTNGGSKIYPDIRRNSLEEAINVCMMGGLNGIVAEVTSILRNPAAVDKIRNAGLSLITYGQLNNLPEVVYVQRLLGVEGVIVDLVQEITEAVSDIISSERKEGSREHRINMKAETKPEFSQQQMKMRPCFLMNGEQDVENISKNVAGPLDHGDRSRRALA Homology
BLAST of Clc07G15130 vs. NCBI nr
Match: XP_038880101.1 (glycerophosphodiester phosphodiesterase GDPD1, chloroplastic-like isoform X1 [Benincasa hispida]) HSP 1 Score: 567.8 bits (1462), Expect = 1.2e-157 Identity = 294/353 (83.29%), Postives = 310/353 (87.82%), Query Frame = 0
BLAST of Clc07G15130 vs. NCBI nr
Match: XP_038880115.1 (glycerophosphodiester phosphodiesterase GDPD1, chloroplastic-like isoform X3 [Benincasa hispida]) HSP 1 Score: 567.4 bits (1461), Expect = 1.6e-157 Identity = 294/353 (83.29%), Postives = 309/353 (87.54%), Query Frame = 0
BLAST of Clc07G15130 vs. NCBI nr
Match: XP_038880107.1 (glycerophosphodiester phosphodiesterase GDPD1, chloroplastic-like isoform X2 [Benincasa hispida]) HSP 1 Score: 566.6 bits (1459), Expect = 2.7e-157 Identity = 293/350 (83.71%), Postives = 308/350 (88.00%), Query Frame = 0
BLAST of Clc07G15130 vs. NCBI nr
Match: KAA0044559.1 (glycerophosphodiester phosphodiesterase GDPD1 [Cucumis melo var. makuwa] >TYK17025.1 glycerophosphodiester phosphodiesterase GDPD1 [Cucumis melo var. makuwa]) HSP 1 Score: 528.5 bits (1360), Expect = 8.3e-146 Identity = 275/350 (78.57%), Postives = 298/350 (85.14%), Query Frame = 0
BLAST of Clc07G15130 vs. NCBI nr
Match: XP_008454031.1 (PREDICTED: glycerophosphodiester phosphodiesterase GDPD1, chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 528.5 bits (1360), Expect = 8.3e-146 Identity = 275/350 (78.57%), Postives = 298/350 (85.14%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy Swiss-Prot
Match: Q680A6 (Glycerophosphodiester phosphodiesterase GDPD3 OS=Arabidopsis thaliana OX=3702 GN=GDPD3 PE=2 SV=1) HSP 1 Score: 342.0 bits (876), Expect = 1.4e-92 Identity = 172/317 (54.26%), Postives = 231/317 (72.87%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy Swiss-Prot
Match: Q9SGA2 (Glycerophosphodiester phosphodiesterase GDPD1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=GDPD1 PE=1 SV=1) HSP 1 Score: 339.7 bits (870), Expect = 7.2e-92 Identity = 176/325 (54.15%), Postives = 228/325 (70.15%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy Swiss-Prot
Match: Q9FLM1 (Glycerophosphodiester phosphodiesterase GDPD2 OS=Arabidopsis thaliana OX=3702 GN=GDPD2 PE=2 SV=1) HSP 1 Score: 338.6 bits (867), Expect = 1.6e-91 Identity = 179/337 (53.12%), Postives = 240/337 (71.22%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy Swiss-Prot
Match: Q9FHR8 (Delta(3,5)-Delta(2,4)-dienoyl-CoA isomerase, peroxisomal OS=Arabidopsis thaliana OX=3702 GN=DCI1 PE=1 SV=1) HSP 1 Score: 276.9 bits (707), Expect = 5.7e-73 Identity = 137/216 (63.43%), Postives = 171/216 (79.17%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy Swiss-Prot
Match: Q13011 (Delta(3,5)-Delta(2,4)-dienoyl-CoA isomerase, mitochondrial OS=Homo sapiens OX=9606 GN=ECH1 PE=1 SV=2) HSP 1 Score: 172.2 bits (435), Expect = 2.0e-41 Identity = 90/210 (42.86%), Postives = 129/210 (61.43%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy TrEMBL
Match: A0A5D3CZS5 (Glycerophosphodiester phosphodiesterase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold130G001710 PE=4 SV=1) HSP 1 Score: 528.5 bits (1360), Expect = 4.0e-146 Identity = 275/350 (78.57%), Postives = 298/350 (85.14%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy TrEMBL
Match: A0A1S3BXT0 (Glycerophosphodiester phosphodiesterase OS=Cucumis melo OX=3656 GN=LOC103494578 PE=4 SV=1) HSP 1 Score: 528.5 bits (1360), Expect = 4.0e-146 Identity = 275/350 (78.57%), Postives = 298/350 (85.14%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy TrEMBL
Match: A0A0A0KYX1 (Glycerophosphodiester phosphodiesterase OS=Cucumis sativus OX=3659 GN=Csa_4G011780 PE=4 SV=1) HSP 1 Score: 524.2 bits (1349), Expect = 7.6e-145 Identity = 272/357 (76.19%), Postives = 300/357 (84.03%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy TrEMBL
Match: A0A6J1CTU0 (Glycerophosphodiester phosphodiesterase OS=Momordica charantia OX=3673 GN=LOC111014715 PE=4 SV=1) HSP 1 Score: 506.1 bits (1302), Expect = 2.1e-139 Identity = 266/366 (72.68%), Postives = 298/366 (81.42%), Query Frame = 0
BLAST of Clc07G15130 vs. ExPASy TrEMBL
Match: A0A6J1EX43 (Glycerophosphodiester phosphodiesterase OS=Cucurbita moschata OX=3662 GN=LOC111439169 PE=4 SV=1) HSP 1 Score: 473.0 bits (1216), Expect = 2.0e-129 Identity = 252/364 (69.23%), Postives = 289/364 (79.40%), Query Frame = 0
BLAST of Clc07G15130 vs. TAIR 10
Match: AT5G43300.1 (PLC-like phosphodiesterases superfamily protein ) HSP 1 Score: 342.0 bits (876), Expect = 1.0e-93 Identity = 172/317 (54.26%), Postives = 231/317 (72.87%), Query Frame = 0
BLAST of Clc07G15130 vs. TAIR 10
Match: AT3G02040.1 (senescence-related gene 3 ) HSP 1 Score: 339.7 bits (870), Expect = 5.1e-93 Identity = 176/325 (54.15%), Postives = 228/325 (70.15%), Query Frame = 0
BLAST of Clc07G15130 vs. TAIR 10
Match: AT5G41080.1 (PLC-like phosphodiesterases superfamily protein ) HSP 1 Score: 338.6 bits (867), Expect = 1.1e-92 Identity = 179/337 (53.12%), Postives = 240/337 (71.22%), Query Frame = 0
BLAST of Clc07G15130 vs. TAIR 10
Match: AT5G41080.2 (PLC-like phosphodiesterases superfamily protein ) HSP 1 Score: 338.6 bits (867), Expect = 1.1e-92 Identity = 179/337 (53.12%), Postives = 240/337 (71.22%), Query Frame = 0
BLAST of Clc07G15130 vs. TAIR 10
Match: AT5G43280.1 (delta(3,5),delta(2,4)-dienoyl-CoA isomerase 1 ) HSP 1 Score: 276.9 bits (707), Expect = 4.0e-74 Identity = 137/216 (63.43%), Postives = 171/216 (79.17%), 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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