
CcUC10G196790 (gene) Watermelon (PI 537277) v1
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.ATGGCGGAAAAGAAGAGGAACTCCTTTCCTTTTCCAGTGTTTGTCATCTTCTTCCTACTATCTCTACCTGGTCCTCTTTTTGTTCGTTCCTACTGCAACCAAAAGCCAGTTATTTTCAACTTCGGCGACTCGAATTCTGATACGGGTGGTTTCTCTGAAGGACTTGGCCTCAAATTTGGCCTCCCAACTGGCCGTACATTCTTCCATAAACCATCAGGAAGATTATGTGACGGACGTCTAATGATTGATTTTCTATGTATATACTCTGATCCAAGAAAACAAATTCTCAATAGCTTAATTTTCTTACTAAAATGCATTATCTTCCTCAGGTGAAAGTGTGAGTTCTGATTATTTGACCCCATATCTGCGATCTGTGGGCCCAAATTTCACCAATGGAGCCAACTTTGCTATATCTGGTTCAGCTACTCTGCCAAAGGATCGTCCATTTAATTTGTTTATTCAAATTATGCAATTCCTTCAATTCCAATCACGCTCCCTCGAGCTTATTCCGAAAGGTATATCTCGTTCAATATAGTAGTTGATTAGACACACATTCTTACTCGATATCTCTACAATTTTTATTGGATGGGAAGAATCTCTTCATTCTACTATTGACTAAGGTTTCTAACCCAAGTGAACTGATGTAGGCTATAAAGACTTGGTTGATGAAGAGGGCTTCAATAATGCACTTTACGCAATTGACATCGGACAAAATGATCTTGCTGGCGCATTCACTTACTTGTCTTATCTGCAAGTCATTCAGAAAATCCCATCTTTTGTTTCTGAGATAAAAAATGCCATATGGGTTAGCCCTCAATTTCTACACCGTTGAATTACTATTTACCACATAAGAGTATAAGCTAATAAGTCATGATAAATCTTCTAATTATTCTCAACACTCCACCTCATGTGTTAGGCTCGAATATGAGTAGATATAAGATATAATAAGAATTGACATTATAAAAGTTTGAAGTTAGCCCTGAAGTTTAGTTAAAGATCATGTTGTAAAGATTTCTTCTGGCCTTGGAAGTAGAAGTTGAAGAAGGAAACTCTCTGGATTCCTGTGTTTTTGCTTTGTTACTCCCCCTTAATTGGTTTTCAATCCAAATGTAGACTTTATATGAACATGGAGGAAGAAATTTTTGGGTACACAACACAGGGCCATTGGGTTGTTTACCTGAAAAGCTTGCATCAACTTCTGCAAATGCCAGTGACATTGACAATCATGGATGCCTCCAATCCCTCAACAATGCTGCAAAAGAGTTCAACACTCAATTAAAAGCTGCATGTGGAGAACTAAGATCTGCTTTGACAAATGCCACCATTGTGTATGTCGACATCTACGCCATCAAATACGACCTCATAGCCAACTCCGTCTCAAACGGTATTGCCAATTATCATCATGTAACAAGAATCAGCAACATTGTCATCTTGGCTCAAGCTGTTTCCTACATTGTGCAGGGTTTGAGAATCCATTGATGGTGTGTTGTGGCTATGGAGGACCACCATACAACTTCAACCAGAGCGTTACTTGCGGCCAACCGGGCTTCAACACGTGCAACGAAGGATTGAAGTATTTAAGTTGGGATGGAGTTCACTATACAGAAGCAGCAAATGCTGTGTTTGCCTCCAAGATACTTTCTTCTCAATACTCTTCTCCAAAACTTCACTTTAATTTCTTCTGTAACAAGTGATGATTGGATTCATATTGACCCCAACCTAAAAAGCTTTTGATTGGAAATTCTGTAGGACGTTTGCTCTTTTTACTGTGTTATCGAGAGTTTTGGCAAAACTGTAATCAAGGAAAAGCAAGGGGTGCCATACAAAAACTTATTAATAAAGAAAATCATAGAAAGCAAACATTTCAAAGTTATTAACGGTGTTCGTATTGTTAACGTAAGTTATGGTTTATGTTTACAAGTCCGAATTTTTCTAATTAGGATTTTCTTTTACTTTTTTTTATGCTATTTTTTATTTCGTCAATTTATTCTTTCATTCACCATTATAAAGGTGGGTTGATTATTTAATAAAATACACAAAAACAACGAGTATATGTTATTCTTAAGTTTGTAATATATATTACATATTCTTAAGTTTATAATACATATAAATATAGAGGGTGGAAGATTTGTACAGTTCCATACCAATTGTGAAAAAAAAAAACACACACACACAAAGTTATTTATAAACTTAACTTAGAAGGGTAAAATATCTTTGTGGTTTGAAATCATATCCTTTTGCCATTGAAGTTTCAATAATGCTCTCTTTTGGTTTCCAGTGCAATGGAGCTATTATTATCTGTCAGTACTCTAATGGAATGTCGACATGTGGCAAAAATATTTGTGCTATGGCAAGCATAAAAATATTTTAAATACCAATCTCTCTTTACACTAGATGATTCCCACCCTCAATCTATATTCTATTTTCGATTTACATTAATGATATTTTGTTATTTATCTTTTATATTGTATGAACTTTTAATGTTGATTTATTCCTTATGTTGATATGAAATTTATGAAAATGTGGAAATCTCAATAAACGTATCTACACGTCGACGAAAATTTAATACCATAGTTAAGGGATTTTGAAAATTAAATTTATAAAGCCTTCTATTGTATCTTGAAATTTATGATTTTTTTCTAATTTTTTAATTATGATTTTCATATATGTTAAAGAAACATTTGATTTTTTAGTCAAATTCTAAAAACAAAAACAAGTTTTGTAACAATCCCAAATCGTTGGGGTAAATCCTCCTACTAAATAAATTTAAGTTATTATGTGTGAAAAGGAAAAAAAAAAGATATAGTTATTTTTATGTATTCATGCCTTTATTTAAGCTAAGATGGAAAATTTCAAATTTAAGGAAAAATTTTGGGATTTGGAAAAGGATAATTTTATCTTGGGGCAAGTAAAATAAGGTGATTAATTTTGGTGGGATTGGATAATTGAAGTAAATCTTAGTTGTAGGAGATTTTATTTGATTTTATTTTGTTTGGTTGGAAAAGAAAAGGGAAAAAAGGAAGGATTAGGGAATTAGGGTTTTTATAAATAAGCCTCGGTTTGCGTGCCAAAATAAAACAAAAAAAAGAGAAAAGGGAATTTTTTTCCTTCTTCTCTCTCTCGCGCGCTGCCCCCCCCCCCCCCCCCCCCCCCCCNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCCCCCCCCCCCCCCCGATTCTTCTTCTTCTTCTTCTTCCTCGCGACTGGACCGCCGCCGCCGCCGCCGGCTCGATTTTTCTTCTCCTTCTTGTCGCCGCCGCGAACCAGCAGCCGCGCCGTCGATTTTCTCCTGTTTCCTCGCGGCTGCAGCGCCGCCGCGCCGGCGTCGATCTTCTCTCTCTCTCTCTTCAGCACCGCTGCCGGTCTCTCTCTCTCTTCGGCAGCCGCCGCTGGCGTTGGTTCTCTCTTCTGCTGCCGGTTTCTCTCTCTTCCGCCGCCGGTTCTCCTCCGCTGCCGTTTCAGTCAAACACTCGCCTGATTACTCGTCACCGAACCGGTAACGTTCGAGTAAGTACCTCGGACCCAAGGAAAATTTATGGCGTAATTTGGTAAAACTATTGATGCTTGAGACTTATGTGATAAAAATTCTCTTAGGTGGCCGGAAGTTGTGTTGGGTAAAAAGGATTGGAGCAACTGCAAGTTAAGCCACGCTTGGGTAAGAACACTTTTTAATTTACTTGGAAATTAACTTGTGGTGAGACTAGACTTGTGGACTAATCAAAGTTGGAGGAATTTTATTCACAGTTGACCAAAAACTTTTCAACAGACTGCCGTGTGGATAAGTTAATATAATTGCTCAGGTAAGTGGTCTTACTACCTGAACCGCTTTCCCGCCATATGTTTAGTTGCCATGATGAGTAAAATTTCTACGCCCCATGTGAGATAGCATGCTTGTATGAATTACCCATGTTTAAAGAATGTGTGTGAAATTGCCATATGTATAGTTGCTTTGATGAGTAAAATTCCTAAGCCCCATGTGATATAGCATGCTTGTATGAGATTCTCATGTTTTAAGGGATGTATGTGAAGTGCATATGCTTGTGTTTTGAGATGTTTGTAAACAGCGCTGTTAATGTATGAATTCATGGAAGGAAAGGAGTGAGAATTTAATTGGTCATGTGTGCTGGGTAGTGGTAACTCCCCTACGTCGGTTGGATGTTCACTAGAGGTTGTGGTCCTTCGGGGTCACTAGAGGTTGTGGTCCTTCGGGGTCACTAGAGGTTGTGTTCCTTCGGGTTCACCAGAGGTTATGGTCCTTCGAGGTCACTAGAGGTTGTGTTCCTTTGGGTTCACCAGAGGTTGTGGTCCTTCGGGGTCACCAGAGGTTGTGTTCCTTCGGGTTCACCAGAGGTTGTGGTCCTTCGGGGTCACTAGAGGTTGTGTTCCTTCGGGTTCACCAGAGGTTGTGGTCCTTCGGGGTCACCAGAGGATGTGTTCCTTCGGGTTCACTAGAGGTTGTGGTCCCTCGGGATCACCAGAGGTTTGTGATTCTTTGGGATCACCAGAGGTAAGAGTTCCTTCGGGGCTCCAGAGGTTTGTGGACATCCAAAACCAACTGTAGGGAGAGTATAACCAGTTCCCTATGAAAGTATGTTAGATATGCCTGTCGTATGACTAATGCACTTAAAGGACTTGGGTGCCTAGCCCGACTCCGGTAGTGGAGTCACTTACTGAGTAATATAATTGCTCACCCTTTCATCTTTTTTTTTTTTCAGGTAAGGGAAAGAACGTGCTGGCGAATGACAAGAGGAATCCTTGATGGCTTCACGGGACCCGCAGTAGCTTCCGCTTAGAACTGCATGTTTTAATGAGTTTTGTTAAATTGTCAAATTTTGTTTTGAAGTTTGTCTTTTATTTTGCATGTGGATTCCTGTTCATGAAATTTTATTGATTTTGATAGGGGTACCCCGAACCAAAATTCTCTTTTATATGTTACGCATTGTTTTCTTGAGTTTTAATAAACAAAAATTTCCATGGAAAACATTGCAACTTTCTTACTATCCGTACAGTGTCTTTCTTGAAAATTTCATGCATTGAGTAATGGTCCGTTTAGAATGTATTAGTCGGGTCGTTACAAGTTTCTTAAAACTATTTTTTTTAGTTTTTAAAACTCAGTTTGGTTTTTGGAAATATGAGTAAAAAATGGAAAACAATACATAAAAACTTATAGGGGAGTGATGTTTCACCTTAATTTCAAAACATTAAAATAAAAAACCAAAAGTCATTGAATCTAATTACATAACTAAACCAAAATGAGCATTCAACATATGCCTAATAAAATACACATAGTAACAAGTCAAGTGGTTATCAAATAGGGTCTAAGTTTCTTTGTTTTATTATAGATGGTGGTGGTATCAATTTCATTTTTAGTTATCATAGTTGAGTTCCTAAGGGATAGATATGTTGTTAGTTACCTTCTTACATGGTTGAACCGGCCAAAATAATTACATCCTAATTTATGAATAATATATTATAATCTAAAAATGCCATTAAAGATTAATTATAAATAGTATATAAATAATTAATTATTGGTTATCAATAGAGTACACAACTAATTAATTATTAACCGTCAATAATAAGTATAATAGAAACTCAAAGGTTGGAATGTAAAAGGTTTCTCCTACTTAATTTTTTTCTTTCATTTAATTCAAAAATAAAAATTTAATAGCTTTAGAATTAAAAAAGTTTTGTAACTCTTGATTTCTACTACTATAAAAATTAGTTTTCTTGATTACCATTCTCCATCATCACCTAAAGCTTCAATTTTTGTTTTTTGTTCTCTCTATGCATTATTCTCCAAGACTCTTCAATCTTCAAAGCCTCTCAAGATATTGGTACATTCAAGTTGCATATATTGCACCTCAACTTTGATGGATTTGAATGAGAGTGCTTGTCAACCTATTGTTATGAAGAAATAATTGTATAGCTAAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTACTTTTTTTTTATTTTTGTCTTTTATATTCAAAGTAGTTTTGTTTAAATATTTGGTGAAAAAAAACTAAAAATTCATTGGTCTACCTAATTTGAAGAAAGGGTATAAACTAACATCTTGAATTTTCTTGGTTACTTTTTATAGGGATGCTTTTTTTAATTGTTCTTATATCATTATTTTATTGAAAATGAAGGTTAAAAAAAATAATAGATCAATCTCTTACGTGCTTACCTTTTGTTTTGAATAAAAAATCATGTAACTTATACCCAAATTTTTCTTTAATCAATTATAATTAGCAAAATTGATTAATTGTCAACAAAAATTAAAAATAATAAAAGTTGTAATTAAAAACTAAAACGATAGAACACAAAAGGTTTTATTACTTCATCCACAAATAACTTAAATAATTTTCCTTTAATTATAAGAATTAGCTTAAGTATAATATGAAATCAAATTATTAAATTAATTTTATTGATTTTGAAAAGTTATATTATATGACAAAAAAAAAAAAAAAAGTTAACATTGGAATTTATATAATTCTTAATAAGCAAACAAAGTAATTAAAAAATGGTTTAAAAGTGGAAAATAACATTAAAAGTCATACCAAAGATTTTTTTTTAAAAAAAAAATTGAGAAGCACTATATATATAAATATTTAATTTACATTATAAAAAAATGTAATCTAAAATTCATTAAGGAGGTGGTAAGAAACAAATCAATATGATTTTAAGAAACCTATGAATATTGAATAAATGAAATTTGAAAAGTTATAATAAATTAATTATAACTAATTATATTTAATTATAACTAAAACATGAGATAAAGATAATTAATAAACTAACTAAGATTTTGATGGTAGAATAACTTTGTTTAAAAAAATTGACCATTAAAAAATATGCATCCAAGATGTTTCTATCATTATAAAATGTTTTATATAATTACTTATATATATATAATCGAGAATTAGCTCTAGATGTTTGTAAATTTTAAGTTTTGAACATATTTTTATTAATAATAATGATGATTTTTTCATTGCTTTTCTTTCTCTCTCCCACTCATCAATTCACATTCATCCCTCTTAATCTTCCACCTTCCACCTATTCACATTTTCTTTTCTCTCTCAAAATGACTCTTCATTATTATCTCTCTTAACCCTTCCAATTCCTCCTCTCTCAAACCTTTTGGTGTAAATACATAGTTTTCTCTCTTTTCATTTATGCTCACAAAGTCACGTAAAAAAGCTAGAAGATGAAAAAAATAAAATAAAATTACATCACTCTCTTCTAATATTTCATTTTTGTTGTATCTAAATTTTTTATAGGTATGTTTGTGCGTATTTTTTTCCTTTTTTTCTGTTTTTTTTTTAGAAGTGTAGAGAAGAAAAATGCAAGATTCGAACACTTCAAGAATTTAAGGTATTCTTTGTTCTCTCTATTATTGTACCTATGATTTCTTATAGAGGTGTTTGTACGTATCTTTTTTCGTATTTCATATTTTTAATAGGGGAATGAAGATTGGAGCCACTCACAATACACCTTAATACTACTTCAATCACAATGATAACAAATGTCTTATCTAATAACCATTTCTACTCATCAAACTATATAAAAACCTCTCACTCAACTATTTTCTACAAAATAAAATGTTTGTATTTGTCGATATATTCTCATTTGTGCTCTTTTTCCTGATTTTTTTTTTTTTTTTTTAAATTTAGTGTGTCATTGCTCAGTTAAGTTTTTCTTTTCTTTATTCTTGTTCCTTTCTCTTTTTATTTTTTTTAGATAAATGCATGACTAGAATTGCTTGGTACTTTTTCAATCATATTGACAATAAGTTTATGATTGGAATTCATACCAAAAACTTACACGTCGATGCTTGTTGAATTATAGAAAAACGATATTTGTAATAATTTATATTATTGCAAGTGTACATGTAAAATAAAATGTTCTTGACTTAATAAGAGAGAGGTTTGAATCTCCCATTGAAAAAATAAAAAAGAAAAAAAATTAATAAGATAGACTTTCCCTTTTGAGTGTGTTCTCGATATAAGAACAAGGAAAAAAAAAAAAAAACCGTATTTGATCTTTGAATTTTTATGGAAAAAACAATTTAGTATTTGAATTTTAGTTCGTAACAATTTAGTCTCAAATATTGCAACAACCCAGGATATTGGGTTTTTTTGGATTAACTTAAAAAATAAATGTTTTTCATCTTTTTCATTTAAACACTTTAAATAAGAAGTGTTTAAAATAAAGACGCTAATGGCTTTCTTTGAGTGGTTGTCAAACACTTGTATTTCTCTTAAAATGACTTATTTTTTTTAAAATTAGATATTTGAAAAGGTATTCCAAACACATCTTTAGTCTTTGAACTTTAGTATTTAACAATGTACTCATTACCATGATAAATTTTTCATCAAAATTAAGTGCCCATTTTTATTTGGTGATGACTTAATCTTCTATGAACAAATTCGATCTCTAATTAATTTATCAATCCACGTGTATGGAATTTAATTAATTCTTAATAATATTTTTTTTACAATAACGATTAAATCGTTACAAACTATAAAATTTAGGGAATAAATTGTTACTTATTTAAGTTTAGAGACAAAATTCTTACAATTTTGAAACTCTAGGGACTAAATCGTCACAAAATTAAACTTCAAGGACTAAATTATTACTTTCTTAACAGTTTATGGACCCAAAATATCATTCAGCATTCCCATTCTATTGTAAAAATGTTAGGTTAAAATATGAATAGTTTCAATTCTCTTAAAAATAGTCTACAAACAGTGCAAAGAAGGTCTAAAGAGAGGCCTTAAAATCCAATATGAAAAACTTATTTATAGCAAAAGAGCATGAAGATGCTCGAAACAATGATTCGACGCTACCCTAATTTTTATAAAATAACCTATAACGAATGAGGGCACCTATTTTCCATAAAATTATGTAGCGTCTTGGCATTGTTACTTCAGTTGTTGCTAAAACAAATGCTATTTGCAACGGTGTCTCCACACTTTCTGCTCATGTTTGACTTGGACTTCTTGATTCTCAATTTAGATCCAATTAGCTCAATTCTTTCACGCTCATATATTAAACAACTCCACATTGTTCCAACTCTATAAAATAGACAATTAAACATGAGAGAGTAACAAAATTAAACATGAATTTTGGGGTTGCACAACTTTTAAGGCTAAACACATATCTTGGGCTTTGTACAAATAGAAGAAGCCCAACCCAAGTTCAAATAAAAATTAGTGAGATATGCTTGAGTCAAACAAACAAGTCAACAAATTGTATGGTATTTTTGGACAATTCCAGTGGTAAAGATATATACTAATTTATACATAAACTACTTCTTTCTTTCTCCTCTGCTTACTAAAGCCCACAAATTGATTGCATGCTTTAAATTCAAAACTAAATAATATCATATATTCATAATTATTATCTGTTCAACCGACAAAATCAAAATAGTAAAGATTCCAATCTCTGATTTTTTAGTCTTACAAATGTTTTAAAGAGGTAGAGTTATGCTAGGATTATTCATTACGGCAGTTGCAAATATAACAATTAGACTCAAAATATTAGCTGATATAGCATAACACACAAAAAAAAAAAAAAAAATTGCAGATATAGCCGCCAATTTTAAATCTAGACCTGTAAGTCTATCAGTGATAAACTATATTGTTGGTAGAAGTCCATTAGCGAGAGTCTATCACTAACAAATTTTGTTAAAAAATAATGATGCTATACACTTAGGCCATGTTTACTATTCAGTATTAAAGTTGTTGCAATTGTTAATGAATTTTGTGTATTATCATAATTCACATAATATTATTAACTGGTTTTATGAAAATGTTTTTGAATGGTGCTATCCAGTGCACAAATTAACTTGATGTGAAGTAAAAAGTCAACCATGAAATAAAGATTTGTTTATGTAGAATCAAACCCGACCAAAAGTCAACATCTGCCAGCAGATAATCTTAAATTTAATAACAACTTGGGTTAAACCCTAAACTATTCTTTCTTCTGATTTAAAAATTATGAGAAAACAATGGAGTGAAGACTTACAAAACAACCCCTAATCAATTTCAGTATCAACCAAAAAAAGAAACAAACAAAAAGATGACCAAATCAAGATCAAGAAGAACATTATTGTTTAATCCGAAGAAGCTGAACAACCCCTTTTGGGTTTGTGTCATTTCCCTTGCCATATTCATTCCATCAAGAAGCTGCAGCCCTACATCACCAACTTTGATCAACTTCGGTGACTCGAACTCTGATACCGGTGGCGTTCTTGCCGGGACTGGACTCCCCATTGGCCTCCCCCACGGCATTACCTTCTTCCACCGCGGTACCGGGCGGCTAGGTGATGGCCGGTTGATAATTGACTTCTTCTGTGAGTTCCCCATACTACTAGTTAGGGTTTATATTATTATATGTTTGGTTTGAGATTAGGTAGTGAAAAGTTTGATATGTTTTGGTTTTTAGGTGAAGAATTGAAATTGAGCTATTTGAGTCCATATTTGGAGGCTTTAGCTCCAAATTTTTCAAGTGGAGTGAACTTTGCAGTGAGTGGAGCAACTACACTTCCACAGTTCGTCCCTTTTGCTCTTGATGTTCAAGTTCGTCAATTCATTCACTTCAAGAACCGTTCTCTTGAGCTTCAATCATTAGGTATGTTTTCCCTTTTCAATTTTAGTTTCTCCCTTCTTTTTTAAATTAATTGAATAATTTGGTCTCCATTTCATATTAACCATTTTATTTTTTATTTTTAGTTTTTGAAAATTAAGTTTATAAGCACCCTTTTCAGCTCTAAATTTCTTGTTTTATTCTCCATTTTTTAGGAATTTTTTGAAAACCAAGTCAAGTTTTAAAAATTAAATAAAATAGTTTTTAAAAACTTGTTTTTTTAGATGTGGCTAATAATTCTACTCTTTTTACTCAAGGAATATGAAAATAATAGTAAGAAATTTGAGAAGAAATAGACTCACTTTTCAAAAACTAAATAGTTACTAAATGGGATTTTGATTTTTTATTTGTATTTTTTGAAAACGATATCTTTGTTTTGTTAATTACTTTATAACAAAAAAAGAAAAAAAAAGTTTTAAAAAAAAAAATTTTACTTTTAAAATTCAACTCAGAATTTAGAAGTTATTGAAAAAAGAAAAAACCATCATAGAGAAAATAAACCCGAATCTCAAAAATAAAAATCTTCAAACGAAACTTAAAATATTAGAACCTAAATTAAACGAACTCACACAAAGCTTCTAATTCAATCTAATACAGATGGGTTTGGGATGAAACATATTTTGAGTACCATTTTGGAATAAAGAGATGAATTTGATGGCAGGTAAAATAGAGAAGATGATGGATGAAGAAGGTTTCAAGAAAGGAGTATACATGATTGACATTGGACAGAATGATCTCTTAGTTGCCCTTTATGCTTCAAATTTAACCTATAAACCAGTTGCCCAAAAAATCCCTTCTTTTCTTGCTGAGATCAAACTGGCCATTCAGGTTAATCAACCTCTTCTTTTTTTTTTTTTTTTTTTTTTTTCCCCTCTCTTTAAAGCTTCTTTCTCTTTTCCCCCTCTTCCTAATTATCAACACTCCAAAAATAATTAATATTACAACAAATTGCCTTTCTCTCTTTTGAATTTTATATATATACAACTTTATCATAGACCAGGAATCTTTTGGATCATGTGAAGTATTTTAATGTACAGGTGAGTGTGTTTGTTGGTTTAAGATGTATTGCTATAGTTTATTTTCTTTGAAAAAATTAAGATTGTTTAGAGCAAGCGACAATACTTTTTTTTTTTTTTTTTTTTGGATAAATAGTGATAGTGTTCTTATGATGTCATATTGATGAAAAAATATTTTTGAAATCCTAGTTAAAATCCATTTTTAAATGGTTTTCCACTGTTAGTCAAAATTATTTGGTAGTAGACCATACGGAGAAAATAGTCTATTGAATAAATCTTAGGGATCAAAAACATAATTAATCTTAAAAATAAAAAAATAAAAAATAAAAAAAAAAAGACATTTGAGGCTTTTCAAGTCCTCGTATAAGTTTTGCCGTCTGGACATTCTTAGTCTTTATATTATATAGCCTATACATCTATCATTGTCGATTTCTTTTTGTTTTGATTTGATTTCAGGTTATGAGACGCTTTTGGTTTTTTTCGTCTGTTTATATAATAATTATAAATTTTGTACAGAATTTATATGCAAATGGTGGGAGAAAATTTTGGATACACAACACAGGACCATTAGGTTGTTCTCCAAAAGAGCTGGCATTGCATCCCCACAGCCACAAGGATGTTGACCAAATTGGCTGCCTTAGGGTTCACAATCAAGTTGCTAAATCCTTCAATAAAGGCCTAAAGAGTGTATGCAAAGAGTTAAGATCTCAGTTTAAGGACGCTATCATTGTCTACGTTGACGTATACACCATCAAATATAATCTCTTCACCTATCCCAAAACATACGGTATGATTTTTTTCACTTCATATATATATATATCTCGTAGAATAGCATGTTAGAAGAGAAAAATGTGTGAATGACACAAGTGTGAAAAGAAGTGATAATTTCATTCAACCAAACATGCTCTTATACAGGCTTATAAAATAGCCATAGAATATCAATGGTTAAAGAAACCATAAATATTACTAAATGCTCCATAATTTCACCCACAAATATAATAAAACTCCCAAAGAATTCAAAACCCACTAAGGTTACGAAACACCAAGTCTTTAATGCTAAAACCTTTCATTTTCTCATTATTAATGAAACCTTTCATTTTCTCAATATAGCGTGCATGACACACACACACATACATACACTAAAGCAATCATCTTGTCAAGTTTACTATTTTATAAAATAAGAGTTTAAAGATAAAAAAGGGAAAAAAATTAGGGTTTCATCTCCTTTATATGAACAGATTTCAAACTCACTGCTCCTATGAGAAATAGACTTTTATATAGGCTTATAGTATTGAATTTGTGTTTTAGAATATGCTCTTGGCTTTGGGGTGTTTGGAAGGTGTTACGGATGTGTTAACCTAGTTGAGATATTGCAGTATACCTACCAGTCCCTCTTAAGACTAAAAGCTTTAAAAAAAATTGTGTTTTACAATAATAAGATAGCTTAGAAATCTGTTACAATCAAATGTTTAAATTACATACTAAGTTTAGCTTATGAATATTCATATGTCTATGTGCCTCTAAACATTAAATATATTATTTATAATAGTTCTCAAAACTATAAGAAAATGTCAAAATAGGTCTATGAATTTTCAATTTTGTGCCTAATGGAAATTCCTAACCTATTTTCACGAATCTATTAAACATAAAATTAAATTTTGTATCTCACACATGAGATGAGACATTAGACTTTCAATTTTGTGTTCATAAATTTGTTCATATTTTTTTTTAAATATAAAAAGTGTCACATATATATATATATATATACACAGTGTCAATGACCTCTATTTGTTGAATATAAGTTTGAGAGACTTATTAAACATAAATTTAAATATTTTGAAACATACCATTAGAAACTTTTGAAAGTTGGAGAAGAAAAGTTTTAGAGAGATAATGTATATTTTGGTTTGTGGAAATGAAGGGTTGGAGAATGATCCATTGATGGCATGTTGTGGGTATGGAGGGCCACCAAACAATTACAATGTGAAAGCAACATGTGGGCAACCTGGTTATTCCATATGCTCCAATCCTTCAAAATCTATCATTTGGGATGGAGTTCATTACACTGAAGCTGCTAATCATCTTGTGGCTTCTGCTATCTTATCTTCTCATTTCTCTACTCCTAACCTTACCCTTCCTCAGATTTCCTATTCTTAA ATGGCGGAAAAGAAGAGGAACTCCTTTCCTTTTCCAGTGTTTGTCATCTTCTTCCTACTATCTCTACCTGGTCCTCTTTTTGTTCGTTCCTACTGCAACCAAAAGCCAGTTATTTTCAACTTCGGCGACTCGAATTCTGATACGGGTGGTTTCTCTGAAGGACTTGGCCTCAAATTTGGCCTCCCAACTGGCCGTACATTCTTCCATAAACCATCAGGAAGATTATGTGACGGACGTGAAAGTGTGAGTTCTGATTATTTGACCCCATATCTGCGATCTGTGGGCCCAAATTTCACCAATGGAGCCAACTTTGCTATATCTGGTTCAGCTACTCTGCCAAAGGATCGTCCATTTAATTTGTTTATTCAAATTATGCAATTCCTTCAATTCCAATCACGCTCCCTCGAGCTTATTCCGAAAGGCTATAAAGACTTGGTTGATGAAGAGGGCTTCAATAATGCACTTTACGCAATTGACATCGGACAAAATGATCTTGCTGGCGCATTCACTTACTTGTCTTATCTGCAAGTCATTCAGAAAATCCCATCTTTTGTTTCTGAGATAAAAAATGCCATATGGACTTTATATGAACATGGAGGAAGAAATTTTTGGGTACACAACACAGGGCCATTGGGTTGTTTACCTGAAAAGCTTGCATCAACTTCTGCAAATGCCAGTGACATTGACAATCATGGATGCCTCCAATCCCTCAACAATGCTGCAAAAGAGTTCAACACTCAATTAAAAGCTGCATGTGGAGAACTAAGATCTGCTTTGACAAATGCCACCATTGTGTATGTCGACATCTACGCCATCAAATACGACCTCATAGCCAACTCCGTCTCAAACGGGTTTGAGAATCCATTGATGGTGTGTTGTGGCTATGGAGGACCACCATACAACTTCAACCAGAGCGTTACTTGCGGCCAACCGGGCTTCAACACGTGCAACGAAGGATTGAAGTATTTAAGTTGGGATGGAGTTCACTATACAGAAGCAGCAAATGCTGTGTTTGCCTCCAAGATACTTTCTTCTCAATACTCTTCTCCAAAACTTCACTTTAATTTCTTCTGTAACAAGATGACCAAATCAAGATCAAGAAGAACATTATTGTTTAATCCGAAGAAGCTGAACAACCCCTTTTGGGTTTGTGTCATTTCCCTTGCCATATTCATTCCATCAAGAAGCTGCAGCCCTACATCACCAACTTTGATCAACTTCGGTGACTCGAACTCTGATACCGGTGGCGTTCTTGCCGGGACTGGACTCCCCATTGGCCTCCCCCACGGCATTACCTTCTTCCACCGCGGTACCGGGCGGCTAGGTGAAGAATTGAAATTGAGCTATTTGAGTCCATATTTGGAGGCTTTAGCTCCAAATTTTTCAAGTGGAGTGAACTTTGCAGTGAGTGGAGCAACTACACTTCCACAGTTCGTCCCTTTTGCTCTTGATGTTCAAGTTCGTCAATTCATTCACTTCAAGAACCGTTCTCTTGAGCTTCAATCATTAGGTAAAATAGAGAAGATGATGGATGAAGAAGGTTTCAAGAAAGGAGTATACATGATTGACATTGGACAGAATGATCTCTTAGTTGCCCTTTATGCTTCAAATTTAACCTATAAACCAGTTGCCCAAAAAATCCCTTCTTTTCTTGCTGAGATCAAACTGGCCATTCAGAATTTATATGCAAATGGTGGGAGAAAATTTTGGATACACAACACAGGACCATTAGGTTGTTCTCCAAAAGAGCTGGCATTGCATCCCCACAGCCACAAGGATGTTGACCAAATTGGCTGCCTTAGGGTTCACAATCAAGTTGCTAAATCCTTCAATAAAGGCCTAAAGAGTGTATGCAAAGAGTTAAGATCTCAGTTTAAGGACGCTATCATTGTCTACGTTGACGTATACACCATCAAATATAATCTCTTCACCTATCCCAAAACATACGGGTTGGAGAATGATCCATTGATGGCATGTTGTGGGTATGGAGGGCCACCAAACAATTACAATGTGAAAGCAACATGTGGGCAACCTGGTTATTCCATATGCTCCAATCCTTCAAAATCTATCATTTGGGATGGAGTTCATTACACTGAAGCTGCTAATCATCTTGTGGCTTCTGCTATCTTATCTTCTCATTTCTCTACTCCTAACCTTACCCTTCCTCAGATTTCCTATTCTTAA ATGGCGGAAAAGAAGAGGAACTCCTTTCCTTTTCCAGTGTTTGTCATCTTCTTCCTACTATCTCTACCTGGTCCTCTTTTTGTTCGTTCCTACTGCAACCAAAAGCCAGTTATTTTCAACTTCGGCGACTCGAATTCTGATACGGGTGGTTTCTCTGAAGGACTTGGCCTCAAATTTGGCCTCCCAACTGGCCGTACATTCTTCCATAAACCATCAGGAAGATTATGTGACGGACGTGAAAGTGTGAGTTCTGATTATTTGACCCCATATCTGCGATCTGTGGGCCCAAATTTCACCAATGGAGCCAACTTTGCTATATCTGGTTCAGCTACTCTGCCAAAGGATCGTCCATTTAATTTGTTTATTCAAATTATGCAATTCCTTCAATTCCAATCACGCTCCCTCGAGCTTATTCCGAAAGGCTATAAAGACTTGGTTGATGAAGAGGGCTTCAATAATGCACTTTACGCAATTGACATCGGACAAAATGATCTTGCTGGCGCATTCACTTACTTGTCTTATCTGCAAGTCATTCAGAAAATCCCATCTTTTGTTTCTGAGATAAAAAATGCCATATGGACTTTATATGAACATGGAGGAAGAAATTTTTGGGTACACAACACAGGGCCATTGGGTTGTTTACCTGAAAAGCTTGCATCAACTTCTGCAAATGCCAGTGACATTGACAATCATGGATGCCTCCAATCCCTCAACAATGCTGCAAAAGAGTTCAACACTCAATTAAAAGCTGCATGTGGAGAACTAAGATCTGCTTTGACAAATGCCACCATTGTGTATGTCGACATCTACGCCATCAAATACGACCTCATAGCCAACTCCGTCTCAAACGGGTTTGAGAATCCATTGATGGTGTGTTGTGGCTATGGAGGACCACCATACAACTTCAACCAGAGCGTTACTTGCGGCCAACCGGGCTTCAACACGTGCAACGAAGGATTGAAGTATTTAAGTTGGGATGGAGTTCACTATACAGAAGCAGCAAATGCTGTGTTTGCCTCCAAGATACTTTCTTCTCAATACTCTTCTCCAAAACTTCACTTTAATTTCTTCTGTAACAAGATGACCAAATCAAGATCAAGAAGAACATTATTGTTTAATCCGAAGAAGCTGAACAACCCCTTTTGGGTTTGTGTCATTTCCCTTGCCATATTCATTCCATCAAGAAGCTGCAGCCCTACATCACCAACTTTGATCAACTTCGGTGACTCGAACTCTGATACCGGTGGCGTTCTTGCCGGGACTGGACTCCCCATTGGCCTCCCCCACGGCATTACCTTCTTCCACCGCGGTACCGGGCGGCTAGGTGAAGAATTGAAATTGAGCTATTTGAGTCCATATTTGGAGGCTTTAGCTCCAAATTTTTCAAGTGGAGTGAACTTTGCAGTGAGTGGAGCAACTACACTTCCACAGTTCGTCCCTTTTGCTCTTGATGTTCAAGTTCGTCAATTCATTCACTTCAAGAACCGTTCTCTTGAGCTTCAATCATTAGGTAAAATAGAGAAGATGATGGATGAAGAAGGTTTCAAGAAAGGAGTATACATGATTGACATTGGACAGAATGATCTCTTAGTTGCCCTTTATGCTTCAAATTTAACCTATAAACCAGTTGCCCAAAAAATCCCTTCTTTTCTTGCTGAGATCAAACTGGCCATTCAGAATTTATATGCAAATGGTGGGAGAAAATTTTGGATACACAACACAGGACCATTAGGTTGTTCTCCAAAAGAGCTGGCATTGCATCCCCACAGCCACAAGGATGTTGACCAAATTGGCTGCCTTAGGGTTCACAATCAAGTTGCTAAATCCTTCAATAAAGGCCTAAAGAGTGTATGCAAAGAGTTAAGATCTCAGTTTAAGGACGCTATCATTGTCTACGTTGACGTATACACCATCAAATATAATCTCTTCACCTATCCCAAAACATACGGGTTGGAGAATGATCCATTGATGGCATGTTGTGGGTATGGAGGGCCACCAAACAATTACAATGTGAAAGCAACATGTGGGCAACCTGGTTATTCCATATGCTCCAATCCTTCAAAATCTATCATTTGGGATGGAGTTCATTACACTGAAGCTGCTAATCATCTTGTGGCTTCTGCTATCTTATCTTCTCATTTCTCTACTCCTAACCTTACCCTTCCTCAGATTTCCTATTCTTAA MAEKKRNSFPFPVFVIFFLLSLPGPLFVRSYCNQKPVIFNFGDSNSDTGGFSEGLGLKFGLPTGRTFFHKPSGRLCDGRESVSSDYLTPYLRSVGPNFTNGANFAISGSATLPKDRPFNLFIQIMQFLQFQSRSLELIPKGYKDLVDEEGFNNALYAIDIGQNDLAGAFTYLSYLQVIQKIPSFVSEIKNAIWTLYEHGGRNFWVHNTGPLGCLPEKLASTSANASDIDNHGCLQSLNNAAKEFNTQLKAACGELRSALTNATIVYVDIYAIKYDLIANSVSNGFENPLMVCCGYGGPPYNFNQSVTCGQPGFNTCNEGLKYLSWDGVHYTEAANAVFASKILSSQYSSPKLHFNFFCNKMTKSRSRRTLLFNPKKLNNPFWVCVISLAIFIPSRSCSPTSPTLINFGDSNSDTGGVLAGTGLPIGLPHGITFFHRGTGRLGEELKLSYLSPYLEALAPNFSSGVNFAVSGATTLPQFVPFALDVQVRQFIHFKNRSLELQSLGKIEKMMDEEGFKKGVYMIDIGQNDLLVALYASNLTYKPVAQKIPSFLAEIKLAIQNLYANGGRKFWIHNTGPLGCSPKELALHPHSHKDVDQIGCLRVHNQVAKSFNKGLKSVCKELRSQFKDAIIVYVDVYTIKYNLFTYPKTYGLENDPLMACCGYGGPPNNYNVKATCGQPGYSICSNPSKSIIWDGVHYTEAANHLVASAILSSHFSTPNLTLPQISYS Homology
BLAST of CcUC10G196790 vs. NCBI nr
Match: TXG63247.1 (hypothetical protein EZV62_010241 [Acer yangbiense]) HSP 1 Score: 949.5 bits (2453), Expect = 1.7e-272 Identity = 477/736 (64.81%), Postives = 558/736 (75.82%), Query Frame = 0
BLAST of CcUC10G196790 vs. NCBI nr
Match: OMO64051.1 (Lipase, GDSL [Corchorus capsularis]) HSP 1 Score: 900.2 bits (2325), Expect = 1.2e-257 Identity = 444/730 (60.82%), Postives = 533/730 (73.01%), Query Frame = 0
BLAST of CcUC10G196790 vs. NCBI nr
Match: PON88735.1 (Lipase [Trema orientale]) HSP 1 Score: 788.9 bits (2036), Expect = 3.8e-224 Identity = 408/742 (54.99%), Postives = 508/742 (68.46%), Query Frame = 0
BLAST of CcUC10G196790 vs. NCBI nr
Match: PON61786.1 (Lipase [Parasponia andersonii]) HSP 1 Score: 778.9 bits (2010), Expect = 3.9e-221 Identity = 403/742 (54.31%), Postives = 504/742 (67.92%), Query Frame = 0
BLAST of CcUC10G196790 vs. NCBI nr
Match: OVA16702.1 (Lipase [Macleaya cordata]) HSP 1 Score: 765.4 bits (1975), Expect = 4.5e-217 Identity = 399/787 (50.70%), Postives = 523/787 (66.45%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy Swiss-Prot
Match: Q6NLP7 (GDSL esterase/lipase At3g62280 OS=Arabidopsis thaliana OX=3702 GN=At3g62280 PE=2 SV=1) HSP 1 Score: 457.6 bits (1176), Expect = 2.6e-127 Identity = 228/353 (64.59%), Postives = 270/353 (76.49%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy Swiss-Prot
Match: O80522 (GDSL esterase/lipase At1g09390 OS=Arabidopsis thaliana OX=3702 GN=At1g09390 PE=2 SV=1) HSP 1 Score: 401.4 bits (1030), Expect = 2.2e-110 Identity = 207/370 (55.95%), Postives = 259/370 (70.00%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy Swiss-Prot
Match: Q9FXB6 (GDSL esterase/lipase LIP-4 OS=Arabidopsis thaliana OX=3702 GN=LIP4 PE=2 SV=1) HSP 1 Score: 384.8 bits (987), Expect = 2.2e-105 Identity = 197/365 (53.97%), Postives = 242/365 (66.30%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy Swiss-Prot
Match: Q3ECP6 (GDSL esterase/lipase At1g54790 OS=Arabidopsis thaliana OX=3702 GN=At1g54790 PE=2 SV=1) HSP 1 Score: 285.0 bits (728), Expect = 2.3e-75 Identity = 158/386 (40.93%), Postives = 216/386 (55.96%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy Swiss-Prot
Match: Q9LIN2 (GDSL esterase/lipase At3g26430 OS=Arabidopsis thaliana OX=3702 GN=At3g26430 PE=1 SV=1) HSP 1 Score: 258.8 bits (660), Expect = 1.8e-67 Identity = 148/353 (41.93%), Postives = 193/353 (54.67%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy TrEMBL
Match: A0A5C7I1R6 (Uncharacterized protein OS=Acer yangbiense OX=1000413 GN=EZV62_010241 PE=3 SV=1) HSP 1 Score: 949.5 bits (2453), Expect = 8.1e-273 Identity = 477/736 (64.81%), Postives = 558/736 (75.82%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy TrEMBL
Match: A0A1R3H175 (Lipase, GDSL OS=Corchorus capsularis OX=210143 GN=CCACVL1_22079 PE=3 SV=1) HSP 1 Score: 900.2 bits (2325), Expect = 5.6e-258 Identity = 444/730 (60.82%), Postives = 533/730 (73.01%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy TrEMBL
Match: A0A2P5ETA7 (Lipase OS=Trema orientale OX=63057 GN=TorRG33x02_154410 PE=3 SV=1) HSP 1 Score: 788.9 bits (2036), Expect = 1.8e-224 Identity = 408/742 (54.99%), Postives = 508/742 (68.46%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy TrEMBL
Match: A0A2P5CL77 (Lipase OS=Parasponia andersonii OX=3476 GN=PanWU01x14_144450 PE=3 SV=1) HSP 1 Score: 778.9 bits (2010), Expect = 1.9e-221 Identity = 403/742 (54.31%), Postives = 504/742 (67.92%), Query Frame = 0
BLAST of CcUC10G196790 vs. ExPASy TrEMBL
Match: A0A200R1V4 (Lipase OS=Macleaya cordata OX=56857 GN=BVC80_1543g145 PE=3 SV=1) HSP 1 Score: 765.4 bits (1975), Expect = 2.2e-217 Identity = 399/787 (50.70%), Postives = 523/787 (66.45%), Query Frame = 0
BLAST of CcUC10G196790 vs. TAIR 10
Match: AT3G62280.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 457.6 bits (1176), Expect = 1.9e-128 Identity = 228/353 (64.59%), Postives = 270/353 (76.49%), Query Frame = 0
BLAST of CcUC10G196790 vs. TAIR 10
Match: AT1G09390.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 401.4 bits (1030), Expect = 1.6e-111 Identity = 207/370 (55.95%), Postives = 259/370 (70.00%), Query Frame = 0
BLAST of CcUC10G196790 vs. TAIR 10
Match: AT1G56670.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 384.8 bits (987), Expect = 1.5e-106 Identity = 197/365 (53.97%), Postives = 242/365 (66.30%), Query Frame = 0
BLAST of CcUC10G196790 vs. TAIR 10
Match: AT1G54790.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 297.7 bits (761), Expect = 2.5e-80 Identity = 157/360 (43.61%), Postives = 214/360 (59.44%), Query Frame = 0
BLAST of CcUC10G196790 vs. TAIR 10
Match: AT1G54790.3 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 294.3 bits (752), Expect = 2.7e-79 Identity = 158/360 (43.89%), Postives = 215/360 (59.72%), 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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