CcUC02G021800 (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.ATGTCGAATTCCTCTTCGAACTTGACCCAGAGCCAGAATGGGAATGTTAAAAACAATGATGCTTTATTCACAGTGGATGAGATTGAAGAAAGTGAGTTTGCGAAGCTATTGGATAGGCCAAGGCCGTTGAACATGGAGAGACAGAGGTCGTTTGATGAAAGATCGCTTGGGGATTTGGCGATTGGTTTTTCCCCACGGCTATCGACGAGAGTTTCTTCAGAGAACTTTGGTCGATTGACTGATTATTATGATCAAACTCCATCCCCCGGCAGAAAATCGGATTTCAATACTCCAAGATCACAGACTGGATTCGAGCAGCATCCTATGGTGGCTGAAGCTTGGGAAGCTTTGAGGCGTTCGTTGGTCCATTTCCGTGGCCAACCAGTTGGTACTATTGCTGCGTTGGACTGTACTGAAGAAAATCTTAATTATGATCAAGTAAGAAATAACCCTTTATGAATAGTTACTTGCATTCATCGCTCAATCCCTGTTTGGTTGTGTTTACGATAATGCAGGGTGATGTCTATGCCCTTGCTTGTATTTTATTGCATACAGAATCAGTTTGTAATGATTCAGAAAGCACTTCCTCTGTTTAAACTTTGAAACTCACAACTAATTATGCATTCTTGAAAATAAGAAATCACTATAGATGCTCATAACAATAATGTTATCCATAGTAGTACTTCTCTAGTTATTAGGATTTGGAGTGGTTGCTTTTCATTTAATCTTCGAAACTTTGTGAGCATATGTTGAACACTTGTTAAATGCCATAAACTCGTGTCAAACACTCATGAACATTTTAAGAGTAAAATACATTAAAATGCTTAAGCATTATTGACTTGATATTTCCTTTGAATTAATGTGTGACACCATTTACAAAATTGATGAGTTGGCTTGAATCATAAATGCATTAACATTGTATGTTTTGAAATAAAACACTGTCTCGTGAATGCATAAACATCATTAACTAAGAAGACATTTTAGCATGAAAATCATTAAAATGAATAAATATTTAGAAATGAACTTATGTAATTCTTGTCATGTTCTTAATTGTTAGTTATGAGATTTGTGTTGGTCTGAACCGAGAGCAAAAGCTAACATATGGATACTTTCTTTGTCTGCATAGGTGTTTGTGAGAGACTTCGTCCCAAGCGCATTTGCTTTTCTAATGAATGGGGAGCCTGAAATAGTAAAAAATTTTATCTTAAAAACTCTTCGGCTTCAGTCATGGGAGAAAAAGATTGACAGATTCCAGCTTGGAGAAGGGGTGATGCCTGCTAGTTTCAAAGTGCTTCATGATCCAGTGAGGAATACTGAAACTTTAATTGCAGATTTTGGAGAGAGTGCAATAGGAAGAGTTGCTCCGGTTGACTCTGGATTTTGGTGGATTATATTGCTTAGAGCATACACAAAGTCCACTGGTGATACTTCCTTGGCTGAACTGCCAGAATGCCAAAAGGGAATGCGCCTTATTTTGAGTCTGTGTCTTTCAGAAGGGTTTGACACATTCCCAACCCTTCTCTGTGCTGATGGATGCTGCATGATTGATAGACGAATGGTGCGGTTCTTTCAACCCTTCCCTCTAAGATATAATAATGAAACTAACATGAAGCTTGACTTCTGAAATTCACTTGACAGACGGTTTGAACTGTTAATGGAATGATCACATATCGTTAAAAATCATGGTTTAAATCCTATTTTGGTCTTGGACTTTCAGGTTTGTATCCAGGGACTTTTAAAGGTTTATTTTAGTCTCTAGATTTTAAAAAGAGTAATGATTTTAGTCTTTGATCTTTTAAAAGGTAACTATTTAGGTTATAAAACAACGTACACGAAACAACTAAAATAGTAACTTTTTAAATTTCAGGGAAATAGACATGTTAAAAGTTTAGAATCACAAGCATAAACTGAAAGTTTAGGGATGAAAATATAATAACTTTGAATGTTTAAAAATCGAAATAAGATTTAAACCAAAATTATCTACATTGTCTAGCGGACTCCATTTGATGTACATTTTCTTTTTTCTTTTTCTTACATTTAGGGAGACACAAGGTTTTCATTAAAGACAATATTAACAATACCATGTATCGTCCATGAGTATCTTGCTTTATTGTGTCCTATTAGGTTTGCTTAACAAAATGAGCTGTATGCACTGTGGAGTCTTGAAATCATTTGATTATTGTCCATTCATTTCTTATTCCTTACTGCTTTTATTATTGGTTTCAGGGTGTATATGGCTACCCAATCGAAATTCAAGCTCTTTTCTTTATGGCTTTAAGGTGTGCTTTGCTTTTACTTAAGCAAGACCACGAGGGGAAGGACTTTGTAGAAAGAATAACAAAACGGCTTCACGCCTTGAGCTATCACATGAGAACTTACTTTTGGCTCGACCTAAAGCAACTAAATGATATATACCGATATAAAACTGAAGAATACTCTCACACTGCTTTGAACAAGTTCAATGTAATACCCGATTCTCTTCCCGAATGGATTTTTGACTTCATGCCAACTCGTGGTGGTTACTTTATTGGAAACGTCAGCCCTGCAAGAATGGATTTCCGTTGGTTTTGCTTGGGAAACTGCATTGCAATTCTTTCTGCCTTGGCAACACCAGAGCAGTCCACTGCCATTATGGATCTTATTGAATCACGTTGGGAAGAGCTGGTCGGAGAAATGCCTCTAAAGGTTTGTTACCCTGCCATTGAAAGTCACGAGTGGCGGATTGTAACTGGGTGTGATCCAAAAAATACAAGATGGAGTTACCACAATGGTGGTTCTTGGCCAGGTAAACATCTTTACTCCTAATTGATTGTAAGTTCAAATCCCAAAATCTTGCATTTGTCACCTGATATTTAGTTGACCAGGTAGTTTACACGTTCATAGTTCCCATTTATGATTTGAGTATGTAAATTAGGAAGCTTTTTGAGGATCATTGGTATAATTTTGAATCCCCTAACCTCTGATGTTGCACTAGAACTGAGATATTGACGTTGCTGCAATTCTTGCAGTTCTCCTATGGCTTCTAACAGCTGCATGTATCAAGACCGGGCGACCCCAGATTGCGAGACGCGCACTCGAACTGGCTGAAACCAGGCTACTGAAAGACAACTGGCCAGAATATTATGATGGGACAGTTGGGCGGTACATTGGGAAACAGGCACGAAAGTTTCAGACGTGGTCGATTGCAGGTTATTTAGTGGCAAAGATGATGCTGGAAGACCCATCTCATTCAGGCATGGTGTCCTTGGAGGAAGACAAGCAGATGAAACCTGTAATGAAAAGGTCACATTCATGGACTTGCTAATCCTTCAAAATTTTAGTTTGCTTAGTAATTGAACTTTTGTCTTCACAAGGTTCCCACCAGTAATTTTCTTGTAATGTTTAGTTTTGTTCTGATTTCTAGAAGGGGATATTTTGTTTGAATTTTTCTGGCTAACAGATAAATATAAATGACACAAGTACATTACTAATCCAGTTTACTTTTAGGAGATAAATGTTCTATGTTAGTATGCTACATACATGTTTTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCAATTTTTTTTCTTTTTTATTTTTTTTTTTAATTTAAAAATTTCACATTTCCCAAATAAAATTTTTCGTTTTTTTTTTTTTTTTTTCCCTCTTCTTCTTTAATAAAAATGTTATATGTCCTATATCCTGCTTAAACAGAACTGAAAATTATCTATGATTCTACCATTTTTTAGTTCCTGAAGTATTTAATATTTAGCTGACATACAATTTAATATTTACCTATTTCTTAGTTTCTATTTTTTAAAAAGGGAAAAGTTATGTGAATAATAAACAAATTTATTTTTTAAAATAAAATAAAAATCGAAGGGGTCGTTTGGGTTGGGCCTATTACAGGATTACTATTTCATAACCAACTCAGCATCAGCTTCTAACAAATTTAGGATCAAACCACTACAAAATTTGTTTTCATTTTAATGTTAAATTGTTTACTCAATTTCATAATGTACTCATGTTTTAATGATATTCAATTTATGCTCTGGTGAAACAAAAAAACCTTTCAAAAGAAAAAAAAAAAAAATCCTCCCTAGAAAAACTGAATAAGATAGAGCTTTGAATAGATCAACAATGAGAGATATTTTCAACAAATATTCAAATTTTTGAAAAATGCTTTCAATGACAAAAAGAAAGGGAAAATAAAGTTTAAAATTGGAGAATTTTAGGCTAGCTAAATCAATTTGGGTAGTAATTAAAAAAAAAAAAAAAAAAGCGCTAAATATGATTAGAGAAAGTTGAGATTTTTGTATGGATGACCAAATCTTGGTGGTGTTAATGTGGAATCATCAAATTCAAGAAAACTAATGAAAACAAACCTTTTACTTACATCATAGAACACTCTACCATAGCTCGAAATGCATTATTGCATTATAGGTCTCACCCATCAAGAAATGGTGGGAGCCCTAATGAATTTTTCATTTTTAATCCTCAGTTGGTCAACTGTTGATTTTAGAAAAATGTTGATTGATATGAATATCACCTTAGGACACCTATTATTTCGTAGGAGTGTATATTGGTTGGTAGGTGTTGGTTTTGGGTGAAGACCAGTATTGAAAACTGATCAGAAAAAGTGGTTGAAATTTGACCGATAGTCGGTCGGTTCGGTTGATTCTTTTTTTTAGGACTCACCTCTTTAGAACTTCCTTTTCCATGGACGTGTGGAAAAAGAACTTCCTTGTTCATGGATTTGTTATTTGTACATATGGAAAATAATAAATTTTCTTTTTTATAAAAGAGGGAAAAATACCAATAATACACTATGGTCAGTCATTTGGGGGGGGGGGGTCGATTTTTGGCAGAGAAACTGACCACCAACAGAACATGATACATCCCCGACCGATTATAGTCAATTCAGTTGGTTCCGACTTGTTGGATAAGTTTTCGGTGCCTTCATGTACATCCTTATTGTTTTGAGATGGGAGAGACATTACTAACGCAAAAGTGCTATGTGACATCAGCAGAAGGTTAGTTCTAATTTGTTTTTAAAGATTGAGTCATTCCACATTAATACATTTAAAAATGAGTCTTTCGTATAAAATTACTAGAAAATTGAGGATTAAATTATAAAAAGAAATTAAAAATTGTTCCAAATGAGGAGTAAAAGGTACCAAGGATCCTAAAATAACACTTAATCTTTGCTATTTTCTTTAGTAACAATTGAGGATTGGGGGATTTGAACCTTCCAACTCTAGAATAAAAGGTTATGTCAATTACCATCTAGTTAAACTCACTTTGATAATCCTCGCTACTAATTAACACTATCGTATTTTTATAAATGTTTCTCAAAAGGACCTAAAGTAACAGTTAATCCTTTCTAATTAGTTGATGTGGCATTTTTTCTGTTTGTGCCTTCTTCATTAAGTTGGCTCTACATTTCATCAGCCAAGGATACAGAAGAAGCATGATCATGATGCGTAGAAGTCGAAAACAGAGCAACAAACAAGGGACAGAATGGCTTTATCTTAGCTTGCAATCAGAAGAAACGATTCAATTCATGAACCACAAGAAACACATAGCAATTATAAACAAAACCCACCATTTGTATTTCCCCTATTTATTCATCTTCCTTAAATCCCCCATTCAAAATTCAAACCCCATTTTTCCATTTCTCCCAAAAATTTTAATAACTTTTATTTATTCAAAATATCCAATCCCAAACCGCATCTGCAGCTGAAACACGACAACGACAAGCATCATCTTTCAAACATCTTCTGTCGCCTGCTGCAATGGAGTTCCGACCACGACACTTAGCCTCTCCAAAGGTTAGACCAATCGATGATTCCTAGAATTTCTTGTTTGAATATAAGATGGATAAGATGGGGATGGAGATTCTCCACCCCCTTTTGGGTTTGGGTAAGGTTTCTTCTTCTTCAAACAAGCAAAATCTCAATTGGGTCAGGGTTTGATTTGTCTCAAGTTGTTTAGTTTAATGTGGCTGAGGGAAATGGAACCAAACCCTTTTCCTGCATTTCTTTCTTTGTTTTTGGTAGCTATGTGCTGTTGTTTGGCAGGCATCACTCTTGCCTACTTTGTGGATTTAATTGTCTGGGAATAATATGCTATCTTTTTGCTGTTTGCTTCATTACTTAAGTCTTGAACCATGTGTTTCTTCTGCAGATTGTTACGATCCCTTCGATCCTAATGGAAACATTACCATTACTTATGATATCCAAACTTGGACCACTCGTGGATATGTGGTGAGTTTAATACTTGTACTTTGCCAAAATGTGAAAATCATCCTCGCAAAGATTACTGAGTTTGTTGATTTAGCATTTGAACTTCTAATTTGAGCAATTATTCACCAAATTTATACAACTCAACTACAACATATAAGAACACTAATCCCAAATTAGTCCTTACCCGCCAGGGGTTTTTCTTTCTTTGATTAAAAGAATTCGCTAAGATTGATAAAATGTAATCGACTGTTTCGTGTGCTTTTAGGTCTTTTAGATAGGTGACTTCCCTGTGGAAGTGACTAGCAATTATGTCAACTATCTAAAAGACTGTCAATCACTCTCGCGCTCCATCTTAGATGTTTTCACTACACAAAATAGACAACTTGATTGGATTAACTCCCACAAATGGGACAAGTCTTCATGTCTCTTTCTTCTTTACTATTCATTAAGAAATCGATTCTTTTGCTCTTTTATAGCATTCTTCCTCAGAGTTATTGAAACTACTAAACACAACAGAGTTATAAGTTCAAGCCGCAGAGTGTAATGGCAACAACACCTATCATTCAAAGTTGGTTTTTTCAATTTTGGTTGTTTTTGTTAATTTGGGTATTTTTGGAAGATAGGAAAGCTATGAACTTTATGGCCAACTTGTCATTCTTAGGGGAGGGTCACTGTCCAAAACTACTACCAGTTTCGGCATGTGGAGAAGCCTGGTTGGAGGCTTGGGTGGACATGGACGAGGGGTGAAGTCATCTGGTCAATGAGTGGAGCTTTCGTGACTAAACAGGGAAATTGCTCATTGTTCAAATTTGATCCTCCACATTCCTGTGAGAAGAGCCCTGTCATTCTCGATCTCGTGTCAGAGGCATCATTGGAAAACAGGTCGGAGGGTTGTTGTCGCAGTGGGGTTCTTTCTGCTTGGGCTGTAGACCCTTCCAAATCTTTCTCTTCGTTTGAAATCTCAGTGGGGAGCATGGATGGAAATGGCAATGAGCAACCGCCTGCCAATATTACTCTCATGGCGCCTGGTCCTGGTTACACTTGCAGCCCCTTCTTGGACGCTCATCCAACTGTTTCTTCTCTGATTGATGGCAAAAGACAAGTTCAGGCTTTTAGTAAGTACTTTAAATGTCAATTGAAATGCTAGAGAAAATGCTGTTTTTAGCAGTGGAAATTGCGCAAGTACCAAAAGAATGGCATGGTCTGCTAATTTGATTTTTGAATCCAACTCTCATATGCTACACGGTTGCTTTCCTGATATCAAATATATGGTTTTTTTTAAACTTATTCTTCTTCACTATCTATATACGGTTGCACAAAATAAGTTTTATAATCATAGGCTAAACAAACTGTGGCTTAAATAAACACACAGCGATGAGATATTTGACTCAACAGTTTTATTGAGCTTATCTGCATTTTGGCCTAGACTTCAAAAGTTTTGACTTATGTAATATTGTAACCGTGTTTAGATCGTGTAGGAGAAGAATATCAAAATTTGAATTTGTGTGTATGTGGTGTGTGTTTAGTTCTTTGATTTATGATTAGTAAAAGTCAGTCTGTAGTATAAAAGACATTTTTTCACAAATCAGAGTTTATGTAGTTTGTGGGATCAACAAAGCCATAACTTATAATATACAAACTTACATACAGAATATAGATTCAACTTCTCTTATACAAACTTACATACCAAATATAGATTCAAGTTCTAGTAAATTTAGTTTAGATAAACAAACTCACATACTAATTATCGATTCAAATTTTTGGTAGCTTCAGCTGCACAATCCTAACCTATGAAACAAATACCATTAAAGTGATGTCTTGTGGCTAGGGGCATTTCTTTATTGTGGGATCTTGAGAGAGGAGCAATAGAGTGTCTAGAGGCTTTGGAAAGGGACCTGAGTGATGTGTGGTGTGTGGTCGCTTGCTAGATTTCAATTTTTATGTTTCTCTTTGAGTTTTGGTTACAAAGGTTTTTTTTTTTTGTAATTACTCGTGAGGTGTTATTTTATTATTTTATAGAATTGGAGGCCCTTCCTCCATAAAGGTTGTTTCTCATTATATATATATATGATAAAAAAACCATCTCTTTCTCTTAGTGAACACTTCACCAAATTCCTAAAGCAGAAACTTGACTACTGTTATTTGCAGGAACATGGAAATCAACATGTACTTACTCCATATTTGTGTATAACAAGACACCACTCTGTTGTGTCTCACTCTCAGCATTTTACAATCCCTCCATCACACCTTGCCCTACATGCAGCTGTGGATGCAGAGAAGCAAACCAAACCACTGTTCAATGTACAAGGTATATTGACTACTTGCTAACTTGTTTTTTTTTTTTACTGTCATGCTTTATCCAAGGGTTTTTCAGTAAACTAGTGACATTCATTGATCAATAGCATTCTTTCCATTACCATATGATCAACACGTGTGGTACGACTTTTAAAGAGAATAATTGGGAATATATGGTCACACCGAGTGCAAGGGTGAAAGTTGGGGAAGCATAGTGTATCGAAATTATGTTACAGTTTTTACAAGTGTTGTTGTGTAGATGCCAAGGCAAACCGCCCTATCTTATATTGATTTGTTTTCTTTCTTTCTATGAAATTTCTTCTTCTCTATTCATGTTCTTTCCTATTTTTCACTCTGTTTTCTTGTAACTTGACACCAGAGACAAACTCCAGTTGTCGACCATGGAATCGGCTAATCTTCTTGCCTCAGTACAGTGCTCGGATCACATGTGTCCAGTTCGAGTGCATTGGCATGTTAAGACGAACTACATCGACCACTGGAAGGTGAAACTCACAGTTTCCAACTACAACCACGACAGAAACTACTCAAACTGGAACATCCTAGTGCAGCATCCAGGATTTAGCCAATCAACAGAAGCATTTAGTTTCAATAGTTCACAACTTCCATCCGTCAGATATGGAGGTACATTACACTATTCTTCTTCTGCAATGTTCATTTCGACGTAACGTGTGACCCGGTTGAACAACGACTTTATCAAACCGGGTCGAACTGGCTTTACATGAAAAAAGAAAGTTCGAGTAAAATGCAGCGGATTTGTTGCGTGTTTGCAGATGAGTTGGCTCTCTTTTGGGGCATTGAGTATTACAACACAGAGCTTGTGCAATCCACTGAGAGTAATGTAGGGTATGTGACAACAGATATTCTTCTTGAGAAAGATTTAGAATCATTCACATTAAGTAATGGTTGGGCCCTTCCAAGAAGAGTTTATTTCAACGGAGATAACTGTCAAATGCCTTTACCAGACACCTTCCCAATGCTACCAAATGGGAGTTCTAAGCAAAGCCTCTCACTTTTCATCTCCATTATTCTTTTTTTGAACCTTTTGTTTTGGTGA ATGTCGAATTCCTCTTCGAACTTGACCCAGAGCCAGAATGGGAATGTTAAAAACAATGATGCTTTATTCACAGTGGATGAGATTGAAGAAAGTGAGTTTGCGAAGCTATTGGATAGGCCAAGGCCGTTGAACATGGAGAGACAGAGGTCGTTTGATGAAAGATCGCTTGGGGATTTGGCGATTGGTTTTTCCCCACGGCTATCGACGAGAGTTTCTTCAGAGAACTTTGGTCGATTGACTGATTATTATGATCAAACTCCATCCCCCGGCAGAAAATCGGATTTCAATACTCCAAGATCACAGACTGGATTCGAGCAGCATCCTATGGTGGCTGAAGCTTGGGAAGCTTTGAGGCGTTCGTTGGTCCATTTCCGTGGCCAACCAGTTGGTACTATTGCTGCGTTGGACTGTACTGAAGAAAATCTTAATTATGATCAAGTGTTTGTGAGAGACTTCGTCCCAAGCGCATTTGCTTTTCTAATGAATGGGGAGCCTGAAATAGTAAAAAATTTTATCTTAAAAACTCTTCGGCTTCAGTCATGGGAGAAAAAGATTGACAGATTCCAGCTTGGAGAAGGGGTGATGCCTGCTAGTTTCAAAGTGCTTCATGATCCAGTGAGGAATACTGAAACTTTAATTGCAGATTTTGGAGAGAGTGCAATAGGAAGAGTTGCTCCGGTTGACTCTGGATTTTGGTGGATTATATTGCTTAGAGCATACACAAAGTCCACTGGTGATACTTCCTTGGCTGAACTGCCAGAATGCCAAAAGGGAATGCGCCTTATTTTGAGTCTGTGTCTTTCAGAAGGGTTTGACACATTCCCAACCCTTCTCTGTGCTGATGGATGCTGCATGATTGATAGACGAATGGGTGTATATGGCTACCCAATCGAAATTCAAGCTCTTTTCTTTATGGCTTTAAGGTGTGCTTTGCTTTTACTTAAGCAAGACCACGAGGGGAAGGACTTTGTAGAAAGAATAACAAAACGGCTTCACGCCTTGAGCTATCACATGAGAACTTACTTTTGGCTCGACCTAAAGCAACTAAATGATATATACCGATATAAAACTGAAGAATACTCTCACACTGCTTTGAACAAGTTCAATGTAATACCCGATTCTCTTCCCGAATGGATTTTTGACTTCATGCCAACTCGTGGTGGTTACTTTATTGGAAACGTCAGCCCTGCAAGAATGGATTTCCGTTGGTTTTGCTTGGGAAACTGCATTGCAATTCTTTCTGCCTTGGCAACACCAGAGCAGTCCACTGCCATTATGGATCTTATTGAATCACGTTGGGAAGAGCTGGTCGGAGAAATGCCTCTAAAGGTTTGTTACCCTGCCATTGAAAGTCACGAGTGGCGGATTGTAACTGGGTGTGATCCAAAAAATACAAGATGGAGTTACCACAATGGTGGTTCTTGGCCAGTTCTCCTATGGCTTCTAACAGCTGCATGTATCAAGACCGGGCGACCCCAGATTGCGAGACGCGCACTCGAACTGGCTGAAACCAGGCTACTGAAAGACAACTGGCCAGAATATTATGATGGGACAGTTGGGCGGTACATTGGGAAACAGGCACGAAAGTTTCAGACGTGGTCGATTGCAGGTTATTTAGTGGCAAAGATGATGCTGGAAGACCCATCTCATTCAGGCATGGTGTCCTTGGAGGAAGACAAGCAGATGAAACCTGTAATGAAAAGTCTTGAACCATGTGTTTCTTCTGCAGATTGTTACGATCCCTTCGATCCTAATGGAAACATTACCATTACTTATGATATCCAAACTTGGACCACTCGTGGATATGTGGGGAGGGTCACTGTCCAAAACTACTACCAGTTTCGGCATGTGGAGAAGCCTGGTTGGAGGCTTGGGTGGACATGGACGAGGGGTGAAGTCATCTGGTCAATGAGTGGAGCTTTCGTGACTAAACAGGGAAATTGCTCATTGTTCAAATTTGATCCTCCACATTCCTGTGAGAAGAGCCCTGTCATTCTCGATCTCGTGTCAGAGGCATCATTGGAAAACAGGTCGGAGGGTTGTTGTCGCAGTGGGGTTCTTTCTGCTTGGGCTGTAGACCCTTCCAAATCTTTCTCTTCGTTTGAAATCTCAGTGGGGAGCATGGATGGAAATGGCAATGAGCAACCGCCTGCCAATATTACTCTCATGGCGCCTGGTCCTGGTTACACTTGCAGCCCCTTCTTGGACGCTCATCCAACTGTTTCTTCTCTGATTGATGGCAAAAGACAAGTTCAGGCTTTTAGAACATGGAAATCAACATGTACTTACTCCATATTTGTGTATAACAAGACACCACTCTGTTGTGTCTCACTCTCAGCATTTTACAATCCCTCCATCACACCTTGCCCTACATGCAGCTGTGGATGCAGAGAAGCAAACCAAACCACTGTTCAATGTACAAGAGACAAACTCCAGTTGTCGACCATGGAATCGGCTAATCTTCTTGCCTCAGTACAGTGCTCGGATCACATGTGTCCAGTTCGAGTGCATTGGCATGTTAAGACGAACTACATCGACCACTGGAAGGTGAAACTCACAGTTTCCAACTACAACCACGACAGAAACTACTCAAACTGGAACATCCTAGTGCAGCATCCAGGATTTAGCCAATCAACAGAAGCATTTAGTTTCAATAGTTCACAACTTCCATCCGTCAGATATGGAGATGAGTTGGCTCTCTTTTGGGGCATTGAGTATTACAACACAGAGCTTGTGCAATCCACTGAGAGTAATGTAGGGTATGTGACAACAGATATTCTTCTTGAGAAAGATTTAGAATCATTCACATTAAGTAATGGTTGGGCCCTTCCAAGAAGAGTTTATTTCAACGGAGATAACTGTCAAATGCCTTTACCAGACACCTTCCCAATGCTACCAAATGGGAGTTCTAAGCAAAGCCTCTCACTTTTCATCTCCATTATTCTTTTTTTGAACCTTTTGTTTTGGTGA ATGTCGAATTCCTCTTCGAACTTGACCCAGAGCCAGAATGGGAATGTTAAAAACAATGATGCTTTATTCACAGTGGATGAGATTGAAGAAAGTGAGTTTGCGAAGCTATTGGATAGGCCAAGGCCGTTGAACATGGAGAGACAGAGGTCGTTTGATGAAAGATCGCTTGGGGATTTGGCGATTGGTTTTTCCCCACGGCTATCGACGAGAGTTTCTTCAGAGAACTTTGGTCGATTGACTGATTATTATGATCAAACTCCATCCCCCGGCAGAAAATCGGATTTCAATACTCCAAGATCACAGACTGGATTCGAGCAGCATCCTATGGTGGCTGAAGCTTGGGAAGCTTTGAGGCGTTCGTTGGTCCATTTCCGTGGCCAACCAGTTGGTACTATTGCTGCGTTGGACTGTACTGAAGAAAATCTTAATTATGATCAAGTGTTTGTGAGAGACTTCGTCCCAAGCGCATTTGCTTTTCTAATGAATGGGGAGCCTGAAATAGTAAAAAATTTTATCTTAAAAACTCTTCGGCTTCAGTCATGGGAGAAAAAGATTGACAGATTCCAGCTTGGAGAAGGGGTGATGCCTGCTAGTTTCAAAGTGCTTCATGATCCAGTGAGGAATACTGAAACTTTAATTGCAGATTTTGGAGAGAGTGCAATAGGAAGAGTTGCTCCGGTTGACTCTGGATTTTGGTGGATTATATTGCTTAGAGCATACACAAAGTCCACTGGTGATACTTCCTTGGCTGAACTGCCAGAATGCCAAAAGGGAATGCGCCTTATTTTGAGTCTGTGTCTTTCAGAAGGGTTTGACACATTCCCAACCCTTCTCTGTGCTGATGGATGCTGCATGATTGATAGACGAATGGGTGTATATGGCTACCCAATCGAAATTCAAGCTCTTTTCTTTATGGCTTTAAGGTGTGCTTTGCTTTTACTTAAGCAAGACCACGAGGGGAAGGACTTTGTAGAAAGAATAACAAAACGGCTTCACGCCTTGAGCTATCACATGAGAACTTACTTTTGGCTCGACCTAAAGCAACTAAATGATATATACCGATATAAAACTGAAGAATACTCTCACACTGCTTTGAACAAGTTCAATGTAATACCCGATTCTCTTCCCGAATGGATTTTTGACTTCATGCCAACTCGTGGTGGTTACTTTATTGGAAACGTCAGCCCTGCAAGAATGGATTTCCGTTGGTTTTGCTTGGGAAACTGCATTGCAATTCTTTCTGCCTTGGCAACACCAGAGCAGTCCACTGCCATTATGGATCTTATTGAATCACGTTGGGAAGAGCTGGTCGGAGAAATGCCTCTAAAGGTTTGTTACCCTGCCATTGAAAGTCACGAGTGGCGGATTGTAACTGGGTGTGATCCAAAAAATACAAGATGGAGTTACCACAATGGTGGTTCTTGGCCAGTTCTCCTATGGCTTCTAACAGCTGCATGTATCAAGACCGGGCGACCCCAGATTGCGAGACGCGCACTCGAACTGGCTGAAACCAGGCTACTGAAAGACAACTGGCCAGAATATTATGATGGGACAGTTGGGCGGTACATTGGGAAACAGGCACGAAAGTTTCAGACGTGGTCGATTGCAGGTTATTTAGTGGCAAAGATGATGCTGGAAGACCCATCTCATTCAGGCATGGTGTCCTTGGAGGAAGACAAGCAGATGAAACCTGTAATGAAAAGTCTTGAACCATGTGTTTCTTCTGCAGATTGTTACGATCCCTTCGATCCTAATGGAAACATTACCATTACTTATGATATCCAAACTTGGACCACTCGTGGATATGTGGGGAGGGTCACTGTCCAAAACTACTACCAGTTTCGGCATGTGGAGAAGCCTGGTTGGAGGCTTGGGTGGACATGGACGAGGGGTGAAGTCATCTGGTCAATGAGTGGAGCTTTCGTGACTAAACAGGGAAATTGCTCATTGTTCAAATTTGATCCTCCACATTCCTGTGAGAAGAGCCCTGTCATTCTCGATCTCGTGTCAGAGGCATCATTGGAAAACAGGTCGGAGGGTTGTTGTCGCAGTGGGGTTCTTTCTGCTTGGGCTGTAGACCCTTCCAAATCTTTCTCTTCGTTTGAAATCTCAGTGGGGAGCATGGATGGAAATGGCAATGAGCAACCGCCTGCCAATATTACTCTCATGGCGCCTGGTCCTGGTTACACTTGCAGCCCCTTCTTGGACGCTCATCCAACTGTTTCTTCTCTGATTGATGGCAAAAGACAAGTTCAGGCTTTTAGAACATGGAAATCAACATGTACTTACTCCATATTTGTGTATAACAAGACACCACTCTGTTGTGTCTCACTCTCAGCATTTTACAATCCCTCCATCACACCTTGCCCTACATGCAGCTGTGGATGCAGAGAAGCAAACCAAACCACTGTTCAATGTACAAGAGACAAACTCCAGTTGTCGACCATGGAATCGGCTAATCTTCTTGCCTCAGTACAGTGCTCGGATCACATGTGTCCAGTTCGAGTGCATTGGCATGTTAAGACGAACTACATCGACCACTGGAAGGTGAAACTCACAGTTTCCAACTACAACCACGACAGAAACTACTCAAACTGGAACATCCTAGTGCAGCATCCAGGATTTAGCCAATCAACAGAAGCATTTAGTTTCAATAGTTCACAACTTCCATCCGTCAGATATGGAGATGAGTTGGCTCTCTTTTGGGGCATTGAGTATTACAACACAGAGCTTGTGCAATCCACTGAGAGTAATGTAGGGTATGTGACAACAGATATTCTTCTTGAGAAAGATTTAGAATCATTCACATTAAGTAATGGTTGGGCCCTTCCAAGAAGAGTTTATTTCAACGGAGATAACTGTCAAATGCCTTTACCAGACACCTTCCCAATGCTACCAAATGGGAGTTCTAAGCAAAGCCTCTCACTTTTCATCTCCATTATTCTTTTTTTGAACCTTTTGTTTTGGTGA MSNSSSNLTQSQNGNVKNNDALFTVDEIEESEFAKLLDRPRPLNMERQRSFDERSLGDLAIGFSPRLSTRVSSENFGRLTDYYDQTPSPGRKSDFNTPRSQTGFEQHPMVAEAWEALRRSLVHFRGQPVGTIAALDCTEENLNYDQVFVRDFVPSAFAFLMNGEPEIVKNFILKTLRLQSWEKKIDRFQLGEGVMPASFKVLHDPVRNTETLIADFGESAIGRVAPVDSGFWWIILLRAYTKSTGDTSLAELPECQKGMRLILSLCLSEGFDTFPTLLCADGCCMIDRRMGVYGYPIEIQALFFMALRCALLLLKQDHEGKDFVERITKRLHALSYHMRTYFWLDLKQLNDIYRYKTEEYSHTALNKFNVIPDSLPEWIFDFMPTRGGYFIGNVSPARMDFRWFCLGNCIAILSALATPEQSTAIMDLIESRWEELVGEMPLKVCYPAIESHEWRIVTGCDPKNTRWSYHNGGSWPVLLWLLTAACIKTGRPQIARRALELAETRLLKDNWPEYYDGTVGRYIGKQARKFQTWSIAGYLVAKMMLEDPSHSGMVSLEEDKQMKPVMKSLEPCVSSADCYDPFDPNGNITITYDIQTWTTRGYVGRVTVQNYYQFRHVEKPGWRLGWTWTRGEVIWSMSGAFVTKQGNCSLFKFDPPHSCEKSPVILDLVSEASLENRSEGCCRSGVLSAWAVDPSKSFSSFEISVGSMDGNGNEQPPANITLMAPGPGYTCSPFLDAHPTVSSLIDGKRQVQAFRTWKSTCTYSIFVYNKTPLCCVSLSAFYNPSITPCPTCSCGCREANQTTVQCTRDKLQLSTMESANLLASVQCSDHMCPVRVHWHVKTNYIDHWKVKLTVSNYNHDRNYSNWNILVQHPGFSQSTEAFSFNSSQLPSVRYGDELALFWGIEYYNTELVQSTESNVGYVTTDILLEKDLESFTLSNGWALPRRVYFNGDNCQMPLPDTFPMLPNGSSKQSLSLFISIILFLNLLFW Homology
BLAST of CcUC02G021800 vs. NCBI nr
Match: XP_038888871.1 (probable alkaline/neutral invertase B isoform X1 [Benincasa hispida]) HSP 1 Score: 1147.5 bits (2967), Expect = 0.0e+00 Identity = 552/567 (97.35%), Postives = 560/567 (98.77%), Query Frame = 0
BLAST of CcUC02G021800 vs. NCBI nr
Match: XP_016900464.1 (PREDICTED: probable alkaline/neutral invertase B [Cucumis melo] >KAA0049725.1 putative alkaline/neutral invertase B [Cucumis melo var. makuwa] >TYK12150.1 putative alkaline/neutral invertase B [Cucumis melo var. makuwa]) HSP 1 Score: 1136.7 bits (2939), Expect = 0.0e+00 Identity = 547/567 (96.47%), Postives = 559/567 (98.59%), Query Frame = 0
BLAST of CcUC02G021800 vs. NCBI nr
Match: XP_004144831.1 (probable alkaline/neutral invertase B [Cucumis sativus] >KGN43226.1 hypothetical protein Csa_020324 [Cucumis sativus]) HSP 1 Score: 1134.0 bits (2932), Expect = 0.0e+00 Identity = 544/567 (95.94%), Postives = 559/567 (98.59%), Query Frame = 0
BLAST of CcUC02G021800 vs. NCBI nr
Match: XP_022989039.1 (probable alkaline/neutral invertase B isoform X1 [Cucurbita maxima] >XP_022989040.1 probable alkaline/neutral invertase B isoform X1 [Cucurbita maxima] >XP_022989041.1 probable alkaline/neutral invertase B isoform X1 [Cucurbita maxima]) HSP 1 Score: 1102.4 bits (2850), Expect = 0.0e+00 Identity = 531/567 (93.65%), Postives = 547/567 (96.47%), Query Frame = 0
BLAST of CcUC02G021800 vs. NCBI nr
Match: XP_022928456.1 (probable alkaline/neutral invertase B isoform X2 [Cucurbita moschata]) HSP 1 Score: 1102.4 bits (2850), Expect = 0.0e+00 Identity = 530/567 (93.47%), Postives = 547/567 (96.47%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy Swiss-Prot
Match: Q9SW48 (Probable alkaline/neutral invertase B OS=Arabidopsis thaliana OX=3702 GN=INVB PE=1 SV=1) HSP 1 Score: 983.4 bits (2541), Expect = 1.9e-285 Identity = 471/569 (82.78%), Postives = 520/569 (91.39%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy Swiss-Prot
Match: Q67XD9 (Alkaline/neutral invertase CINV2 OS=Arabidopsis thaliana OX=3702 GN=CINV2 PE=1 SV=1) HSP 1 Score: 901.4 bits (2328), Expect = 9.3e-261 Identity = 420/546 (76.92%), Postives = 479/546 (87.73%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy Swiss-Prot
Match: Q69T31 (Cytosolic invertase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=CINV1 PE=1 SV=1) HSP 1 Score: 894.4 bits (2310), Expect = 1.1e-258 Identity = 428/557 (76.84%), Postives = 481/557 (86.36%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy Swiss-Prot
Match: F4I2X9 (Probable alkaline/neutral invertase D OS=Arabidopsis thaliana OX=3702 GN=INVD PE=2 SV=1) HSP 1 Score: 885.2 bits (2286), Expect = 6.9e-256 Identity = 423/539 (78.48%), Postives = 470/539 (87.20%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy Swiss-Prot
Match: Q9LQF2 (Alkaline/neutral invertase CINV1 OS=Arabidopsis thaliana OX=3702 GN=CINV1 PE=1 SV=1) HSP 1 Score: 863.6 bits (2230), Expect = 2.2e-249 Identity = 404/547 (73.86%), Postives = 472/547 (86.29%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy TrEMBL
Match: A0A5D3CL60 (Alkaline/neutral invertase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold106G00870 PE=3 SV=1) HSP 1 Score: 1136.7 bits (2939), Expect = 0.0e+00 Identity = 547/567 (96.47%), Postives = 559/567 (98.59%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy TrEMBL
Match: A0A1S4DWV7 (Alkaline/neutral invertase OS=Cucumis melo OX=3656 GN=LOC103490310 PE=3 SV=1) HSP 1 Score: 1136.7 bits (2939), Expect = 0.0e+00 Identity = 547/567 (96.47%), Postives = 559/567 (98.59%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy TrEMBL
Match: A0A0A0K5W2 (Alkaline/neutral invertase OS=Cucumis sativus OX=3659 GN=Csa_7G009210 PE=3 SV=1) HSP 1 Score: 1134.0 bits (2932), Expect = 0.0e+00 Identity = 544/567 (95.94%), Postives = 559/567 (98.59%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy TrEMBL
Match: A0A6J1JL97 (Alkaline/neutral invertase OS=Cucurbita maxima OX=3661 GN=LOC111486232 PE=3 SV=1) HSP 1 Score: 1102.4 bits (2850), Expect = 0.0e+00 Identity = 531/567 (93.65%), Postives = 547/567 (96.47%), Query Frame = 0
BLAST of CcUC02G021800 vs. ExPASy TrEMBL
Match: A0A6J1EKW4 (Alkaline/neutral invertase OS=Cucurbita moschata OX=3662 GN=LOC111435262 PE=3 SV=1) HSP 1 Score: 1102.4 bits (2850), Expect = 0.0e+00 Identity = 530/567 (93.47%), Postives = 547/567 (96.47%), Query Frame = 0
BLAST of CcUC02G021800 vs. TAIR 10
Match: AT4G34860.1 (Plant neutral invertase family protein ) HSP 1 Score: 983.4 bits (2541), Expect = 1.3e-286 Identity = 471/569 (82.78%), Postives = 520/569 (91.39%), Query Frame = 0
BLAST of CcUC02G021800 vs. TAIR 10
Match: AT4G34860.2 (Plant neutral invertase family protein ) HSP 1 Score: 983.4 bits (2541), Expect = 1.3e-286 Identity = 471/569 (82.78%), Postives = 520/569 (91.39%), Query Frame = 0
BLAST of CcUC02G021800 vs. TAIR 10
Match: AT4G09510.1 (cytosolic invertase 2 ) HSP 1 Score: 901.4 bits (2328), Expect = 6.6e-262 Identity = 420/546 (76.92%), Postives = 479/546 (87.73%), Query Frame = 0
BLAST of CcUC02G021800 vs. TAIR 10
Match: AT1G22650.1 (Plant neutral invertase family protein ) HSP 1 Score: 885.2 bits (2286), Expect = 4.9e-257 Identity = 423/539 (78.48%), Postives = 470/539 (87.20%), Query Frame = 0
BLAST of CcUC02G021800 vs. TAIR 10
Match: AT1G35580.1 (cytosolic invertase 1 ) HSP 1 Score: 863.6 bits (2230), Expect = 1.5e-250 Identity = 404/547 (73.86%), Postives = 472/547 (86.29%), 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
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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