
PI0021926 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GCCTCTCTCGTTCCCTCTCAGCGCTGGCCTCTCGCGAAACCCGACGACGGCAATACTCCGCTCTCCGCCGCCGCCTCGACCTCCGGCGACACACCAATTCTGGCGGTACTAGGCGAATCCTGAACAAAGGTCAATAGAATTCTGTGGTCTCGTTTTCTTTGTTACTGAAATTTGGTTATTCGGATCGATGGGTCGTTCTCGGATGGTGTCTCGTCCGGAAGATGAGGACTCCAATCAGAGGTTTGTGCTTTTCATTTAAGCGTTCTAGCTATGAATTCGAGCTAATCTGATCCTGAATTGCTGGAAACTTTAGCTTTTGAGAATGCGTTACATTTTGTTTATTGCATGAGACTCCTTATGTTTCGTCTGAATGAATTTATAATTTGTATTAAGTTTTTTGGAAACCGAGCATGAGTTGAAGGGGATACTAGCTAGGCTTCTTTTAATCAAGTCTGCCAAGTTCTTAACTGTCAGAATATATTACTAATCATTTAATCTCAAAATGCCACCTAAACTGAAAGGCGTGGTCTGAGTAGGATCCTGAATTGTTCATTTCATTGGTATGCAAATTTAAAAATGGGATGAACTGAAATTCTTATTCTGTATTTTCTTCTTTTAATCTCTTGTTTGATTGAATGTGTGTGACACTGGAGTTTATCATTTTTGTTTCAGAAGAGTATGTTCTTGGTTAATTTAATTCTTGGTGTGAAGCTGTTCTTTATTTTTGTTCAAAATCCTTATATTTGGTTTTCATGCTGTACTTCTCTGAATCCTTTGTTCAGTAAATCCAAGAGGAAAAGGCCTAGTTCCACAGAGGCTACGAATCCAGCTACAGGTATTCTGCTTTAATATCATTGGAGAGAGAAAAAAATGGGTCCAATCTTTCATTTATGGTTTACTAAAGGTTGTAGTGCCTTATTTCACTCGTAGAAGCAATTTTTACACAATCCTCTAAAGTCATGTTGCGCTTTTTATGAATTAGTGAAGGTTCTGGTTCCTTATTTCACTCATAGATGCAATTTTTACACAATCCCCTAAAGTCATAGTGTGCTTCCAGTAATGTGTTTTCTGCAGTTTCTCAATCTTTTTGGCTCATGTCAACAGTTTCTTTTTTTGAACTGTTAGGATGGTAGGTCTTCAAGCATTGATTGATTAAAGAAGGGCCTTTATAGTTGGGTTACAGTAATGTGATTTCTGCTGTTTTCTGTTTTCTTTTCTTATTTTCCCGACCATTGTATAACTTCAACTCTTATCTTAGTAGGTCAGGAATCGGGAGACGGAAAAGCTGCCTTATACCATTGTAATTACTGCAACAAAGATTTATCTGGAAGGATTCGCATAAAGTGTGTGGCATGTCCAGATTTTGACCTCTGTGTGGAGTGCTTTTCTGTTGGAGCAGAGCTTAGACCTCACAAAAGCAATCATCCTTATAGGGTTATGGTGAGTATCCTTATTAGTATTACTATATGTTATTACCATGGCCCTTGTTACTTAAACCATTGGGTGTAGTTACTTGTGTAGGGTCTGCTATTTATTGAATCTACAGTGAGTGTTCAATCTTCTTCTACGTTTGCAAAAAAACAAGCCCACTAAAACACCCCAACTAAAGGAAGGGGTTCCAACTAAGTAAAATGTTTCCAAGCAAATAAGTACAAAAGGTCATTGTAACCGGAGCCCAAAGGGAGACATGAAATCTAACTAAGGACCAAACCTCACAAGGGTGCCTTTTCCTATCTCTAAACATCCTATCATTCCTCTTCCCCCAAATATCCCATAGTTCAACACACACCCCAACCATCCACAAAAACGGCCTTTCTCTCTAAAAGGCGGATGGAAGAGGAACTCCTTGATTGTCCCACGAACAATTCTCTGGCCAACCAAGCTAAAGTCAAACTTCTGCAGAAAAGAGCTCCATATGGCCCGAACATACTAACAATTCCAAAGAAGATGATCAAGGTCTTCCTCTGCCTTCCAACAAAGGATACGACAAAAAGGCCTGACAAGCGAGGTTTTCCTCCTAGCAAGCCTATCCATAGTGTTGTTCATATGACCAAGCAAAACTTGCCAAATAAAAAAACCTAACTTTCTTAGGAACCTTAATCCTAAAAATCACATAAAAAACAGACTCTCTAGTGGGAGAGGAATCCAACAACAAAGAGAACAAAGTCTTGCATGAAAAACCTTGACTAGGGTTAGGACACCAAATACAGACATCCCTTCTCCCTTTCCTAGACGAGCAGCCCTCAAGCAGAGAAAGAAGAGAAGCCACCTCCGTCATTTCCCTATTGGTTAAATGATGGTGAAACCCGAAAGAAAAGGACACCGAATTCTCAGTCCAGCTCAAAAACACCAAAACCAGACGATTTTTTAAAAGAGGACAAATGATAGAGATGCAGAAACAAAGAGCAAAGAGAAATCTCCCCCACTCACTGATCCTCCCAGAAATATATATCCTTGCTGTCCCACGCCCACTGACCCTCCGATATTCTTTGATTTTTTTCTCAATGAAAGTAGTTGCTTGAAAAAAAAGAAAAGAAAAATCTTCTACACGTTCTTTAACAAATAAATGTTCTACTGTATTAGGAGTGAGAAGTACTTTGCAAACAACTTGATGCTGATAATAATGCAGTTATGAATATCAACTCAAGCTTGCAAATGAGTTATTATTTGTGATGTAACCAAATTTTTATTTCCCGTCTCCTGACATCTGCTTCTTCTTTTTTTTCTGAAATGAAGACAAGCCTCTTCATTAATAATAAAAGAGAGACTAACACTCAAAGTACAAGAGAATTATACGAGTGCAAAAGGGCTTAAACAGATGCAAACAATAACCAAAACAAAGACAGCAATAATAGCGAGCTATTCTTTACTAATGAAAACTAGTATTTATGCTAGTTTATACTAACCCAATCCTTAAGTAACCTGAGTCTCCAACAGCTACATTATCCTTCAAAGCTATTTTCCTATTGACTAGTTGTCGATGGCAAGTTTTACAAATAAAAAAGATTTGGACTGTCAAACCCCCACTCTCATTTACCTCATCCCTTCTCAAAGATCACAGATGTCTATTTTTCAATAGAACCTTAATAAGAAGTTGAGATGAATGTGTGTGTGTGTGGATTTGAGATAGGCTATAATTATAATAATAAAATTGCGTCTCAGACACCATAAGGAAGAGTTCGCTTGTACAGTATAGAAATAGAAATCAACATTGTTAGACTTATCTTCCAAGACCTTCCGATTCCACTCCTTCCAATATCCGAATTTCTCAGAGCTTCCAAATTTCCCAAACGGAGAGCTTGAACTACAATTTTCCACAAAATCTTTGTTTTTCCTTTTAAGGTTCCACCCATTTAAAGCTGTGAAAGCAACTCCACCAAATTTGGCAAGCACAGAGACAAACAAAAAGTCTTCACTAGCAGGTTCCAACCACTCGAAGAAAAAAAGATTCAGATAAATGAATGATCAGTATTTTCTTCATCCCTCAATCATAAGCTACAAGCTGAAGTGGAAAGGCTCCACTAGCAACTTCCTCTGTATTCTGTCATTTGTTTTCAAGCGTTCTAAGAAGCACAAACACTTTAGTTTGGCTAGTAGGTCCATGTTCGACATGTGTCGGACACTTGTTGGACACGTATCAGACATTTGTTAGTGCAACAAATGTGTTAGACAGGCATAGAAAGAACATTTGTTGAGTAGAATGAAAAGACATATATATGACAATAAAAATAAATTTGATTGTGAAATACATCAAACTAATTTTTTAAGCATATAACTGCATGTACTTTGAATTTTCTTCTGGTAAAAAAATGTTATATATTTTTAAAAAGGTAAATTGTAATAAGCATCATGTCTGTGTCCTAAATTTTAAAAATGTGACTTGTCGCTATGTCATGTCTTGTTTGTGTCTCGTATCCGTATCTTTGCTTTTTATCGCAAGTGTTTACAAACCAAATTCCAAAGGAAAATTTAATCTTCTTTGAAACATTAAACTACCATATCACATTTCAACCAGCGGGGTTGTGAGCTTGTGGGAAGTTTCAGTGAGTTTGATGAAAGCTGATTTTGTAGAGAAAAAAAATCCCATTTTTCTCCAGGGAACAGTATGATCAGCCCAACCAAGTCTATCCAACTATCAAGTTCCCTGTCTAGAATGCCTCTTCTAAAACTAAGGTCCCAGTCATTGGTAACCTGATTCCAACATTCTGCGTCTGTGGCTTCTTGTTTCATGGAGAAAAGGTAAATGTCTGGGAAAGATTTCTCCAGAAAAGAGGATCCAAACCACTTGTCTTTTCAAAACATAATTCTGCCCTCATTTTTTACCCCAAAATTTATGAAGTGAAAAAGAAGTCACTGTGTCTTTGTGATCTCGAACCGGCTTACCTTTTGAAATACCCTGCTCCAATCACAATATCAAGTAGATCAAGTTTATTGAAATGATTCCATCATTGTCGTTATGGATCCATTAACCTTCGAAAGCCTTTAAATGGATAAGGTAAAGTTTCCTTTATTACTTCAAGAAAGCTACACTTAAATGTTGCTAAGTTTTAAGATATTTCCACTTTTAAGAGAACAAATAAAAGAGTATGCATATACTGTATTTTTTTAAAGCAAGAAACAAACTTAGTGAAAGTAAAAAGTACAAAGTAAAGTCCAAATGATAAAATCACATTGAAATATGTGTTCCCCTCCCCCCCCCTCAATTTGAATTTATTACAAAGGGAGAGTGGTTTCCTTTTTTTCCCTCTTTGTTTGTTGAAAAACTATCTACACTTTTTGAAACTTAATGATTCTATAACAGTTTTTTTAGTCTATATCCATTATTACTGTTGTCCCTTTATTCAATGGATCTGAGTTGCTTAAAATATTGATTTGACTGTTAACACATTAACTCATTAGATGAAAATACTTTTTCTGACAGGATAATTTGTCATTTCCTCTTCTATGTCCAGATTGGCATGCAGATGAGGAGAGCCTACTTTTGGAGGTATGATCATGATGATTACTTGAGGGTCCATCTACAAGATTTTATTTTCATTCGTAAATCGAGGTTCTAACAAAATATGCAGTGATCATATCTTCTCTCTATTATGAGTTTTATTCTAGCTCCATCCTCTTCTTACGCTGATTTAGGCCACACAATAGTCATCCTCTGTTAAGGTCTAGTCATCAATCTGTTAGGATTCCAATAACGTGAAAAGCAGAAAAATTCCAACAAGCAATAGAAATATACTCTAGGCAATATATTGATGTAGATGATAGAGTTCACAATGATAATAAGGCACTAAAACAAAAGAACAACAACAACAATCCTTATTCCAGCTCCTTAGAGAAGGCTGGCAACCTCTCCCCTAAAAGCATAAAGCAGCTTTTACAAAATAAAACCTAAAACATCAATCCCCAAAACATTCCCTATTTATTTTCCCTACCTAAGGGACCCACCAACACCTCACAATTCACTCCTTCTCTATTTACCTTTCCCACAACAGGTTAATTCCCATTTCTACCCCTCCTCTTATAAGTCTAAATAATGGGAGGTCTAACAATACCGGCCGGTTCGAATTCCACCTTGACAAGGTGGAAGGAGGGAAATTGTTGTTTCATCAACAACACAGACTCCCACGTGGCTTCACTCTCCGATAGCCCCTTCCACTTTACTAACCATTCATTTGCTGCCACTTCTCTATTCCACCTGATCCCCATGATTGTTTCTGGTTTTAATTGGAGCTCAAACTCTTCAGTCAAAACAGGGTAGTCATGTTGGACTCTCTGTGCGTTGCCCAACTTCTGTTCCAATTGGGATACATGGAAGATGTCATGGATACTCGCCTCTGGAGGTAAGTCTAAATGGTAGGCCACTTCTCCAATCCTCTCCACAATTTTATATGGGTCGTAGAATCTTGGGGAGAGCTTTTCACTCTTCTTTCTTGCCCGTGATTTCTGTCTATATTGTCTAAGTTTTAAGTAGACCTCTTTCTCCCACTTGAAAGATTACTTCCTGTTTATGGAGGTCTGCCTGTTTCTTCATCCGATTTTGAGCTATCAGTAGGTTTTCCTTCAACGCATTCAGGATTAGATTTCTTTCCTTTAGTAGTTGATCTGCACTATTGTTGGTGGTCTTCTGTTCCCCATAGAACACAATCAGGGGTGGGGGCCTGCCATAAACTGCCTGATAGGGGGTGGTTTTTGTGGATTCGTGAAAAGTAGTGTTGTACCAAAGCTCGGCCCAAGGAATACACTTATGCCATCTTGCTGGTTGTTCATTGCAGAAGCATCTTAAAAAGGTCTCAAGGCACCTGTTTACCCTCTCTATCTGGTCTCAAGGCTGTGCTCCTTTTTAGGACTGTCCCCATAGTTGCAAAGAGTTCCTTCCAAAAATTACTTAAGAAGATTTTGTCCCTATTAGTGACTATGGACTTAGGGATTTTGTATAAACTCACGATCCTTTCAATGAAAACTTCAGCTACATGTTTGGCAGTAAAGGGATGCTTCAAAGTGATAAAATGACTGAACTTACTCAAACGGTTCACCACCACCATGATTGAGTCAAACCCCCCGGCCTTACGTAGACCCTTTACAAAGTCCATAGTCCAATCCTCTAGGATGAGATCCGGTATAGGCAATGGCTGTAGAAGTCCAACAGGGGACAAAGCTTCATTCTTATTCCTTTGGCATATTTCACAACCTTCCACGTACTTCTTCACATCACTTTTCATACCCACCCAATGAAGTTCCCCACTCATCCTCTTGTAGGTCCTCAAAAACCTGGAGTGGCCCCCCAAAATAGAATCATGGAAGGTGTGTAGAAGAGTTGGTATTAATGATGAAGTGCAGGGTAACACAATCTTCCTTTGTACAAGAGTTGGTCAATAATCCATTCATACCCTGGTTCCCCCTTGGCTCTTTTTTTAGTAATTCAATCAGCTTCTGCAGTTCCTCATCCTCTTTGACCTCTTTCACGATTACTGCTATGTCCACAATTCCTGGGGTTGTCATCATTCTTAATTCCACTGGATGGTTGACTCTAGATAATGCATCAGCAACTTTATTGGTAAGGCCTGGTTGGTAGATAATCTCAAAATCGCATCCCAATAACTTGGTCAGCCATTTTTGGAACTGCGGCTGCACTTCCCTTTGTTCAATTAAGAACTTCAAGGCCTTTTGATCTGAAATCACTGTAAACTTTCTTCCCAGCAGATAGTGACTCCACTTCCCTTTGTTCAATTAAGAACTTCAAGGCCTTTTGATCTGAAATCACTGTAAACTTTCTTCCCAGCAGATAGTGACTCCACTTTTGCACTGAAAGAACCACGACCATCAACTCCCTCTCATACACTGATTTAGCTTGGGCTCAAGGAGAGAGTTTTTGGCTAAAGAAGGCCACCGGTCGTGAGTTCTGTGACAGGACTGCTCCCAAACCGTATCCTGAAGCATCAGTCTCAATGATAAAGGGTAGGGAGAAGTTTGGAAGTGCAAGTACTGGAATGGAGACCATTGCTCTTTTGAGGGATTCAAAAGCTTCGGATGCTTCCTCACCCCATTGGAATGAGTTCTTTTGGAGTAGTTTGGTGAGTGGTGCTGCAATGTCCCCATACTGTTTCACAAATCTCCGATAATATCCTATCAATCCCAAAAATCCCCTCAATTCTATGACATTCTTGGGTTCTGGCCAATTTACCATAGCTAGCACCTTGACCCCATCTGCTTCTACTCCCTTACTAGAGATTCAGTGGCCCAAATACTGAATCCTTCAATGCCCTATCACGCACTTCTTACGGTTGGCATATAATTGATTGTCCCGGAGTATGTTGAACACCGCTCCCCAGTGTCTTTCGTGCTCAGTGATGTCCTTACTGTAGATAAAGATGTCATAAAATGTGGCTGGTTCATCAAGACTAAGATGTGGCTGGGGCATTCCAATAACCTGAAAAGCAGAAAAATCTCAACAAGCAATAGAAATATACTCTAGGCAATATATTGATGTAGGTGATAGAGTTCACAATGATAATAAGGCACTCAAACAAAAGAACAACAGCAACAATCCTTATTTCAGCTCCTTAGAGAAGGCTGGCAACCTCTCCCCTAAAAGCATAAAGCAGTTTTTACAAAATAAAACCTAAAACATCAATCCCCAAAACATTCCCTATTTATATTCCCTACCTAAGGGACCCACCAACAGCTCACAATTCACTCCTTCTCACAACAGGTTAATTTCCATTTCTACCCCTCCTCTTATAAGTCTGAAAAATGGGAGGTCTAACAATCTGAATACAAATCAAGCATTTTAGTTTCTTAAAGCTTATTTGTAATATCTTTTACTTTATGATTTATGATCTCATAAATTCCAATTACACATACCACTTCATCATCTATCATTTCTTCGAAGAGAAATGCTTATCTATACTTAATATGATTGATAATAAATGCTCAACTCTTTACCTGCATTTTATACCATCTATAGGAAGTTGCTCGAAGATACTCTGATCAAGTTTTTCCCATCAGGGATCTTGCTTCTCCCCATAATTTTGAACTCTAGTTATCCTGATCTTGGGCCAAAATCACTCGATATTCAGGGCATTGCAGTGTATGGATTTGGAAACTGGGATGGAGTTGCAGAGCATGTTGGAACAAAAAGCAAGTTGCAGTGTCTCAATCACTATAATGCTATATATATGAACTCCCCTTGCTTCCCTCTCCCTGTAAGACTGTCTGATTAACTCAACATATGTTGGTTTTTCTGTACTACATAATCTGGAACGAAAATAAAAACAGCATTCTCTACTCTATTTAGGACCTGTCACACGTTATGGGTAAGAGCAGGGAGGAGCTCCTTGCCATGGCTACAGTCCCTGGTGAGGTGAAGAACGGTAATGAACCCCCGTTTCTTTGGATAATTGCCTTTTTTTGAAAAGCTGTGGACATAAGCATATTCCTTGACTTCATTCATCAAACGAAAATATATATTGTTATATTTCCTACTACTACTCACATATTTGTTCTTTGTGACCATTGATATTGTATACTGGGCAGTCATCTAATGCACTCATCTTTTTCTGAAATTGAAATCTATGCATGCTTGTTTGTTGGAAATGCACCCTTTTTCATCTAGTGCAGATTTCAGCTAGGAGCTACAAATTTAAATAATCTAGTACAAATTTACAAAACTTTGATTGTGCATTATTTACTGCAGATTTCACAATTTGGACAATCATCTAATATATGTGTATTATTTAATGCAGAGTTTCCTATGGCAGGGGAGCACAACCTTAATGAAGGGTCTTCATTATCAGCGAGAGTCAAGTATAACCATTTTCAACTCTTCTGTTCATGTTCCTCTATTGTCTCTGTTTAATCCCTCTATAAAAATTTCTTATATGTATGTCTTTATCAGATGTGAATCAAAGAAGGAGGACTCTGCCCATCAAACTTCTTCAAGTGGAACTGCAGGTAGCTTAGTAAATACTGTTTTTTTTTCTCTGCACTGTTGTATATGAATGCGTTCCTGGAAAGGAATATGCATTCTTTAACATGTTCAATTTCCGGTTATAATGGATGAAATTGTTTGTAGGTTCAATCAGTGGTAGCACATTTTCAGGTGCAGTAAAGAAGTCAAACAAACCACAGATAAAGAATGAAACCAAGCAAGGAGGTTTGTTTTCTGCATTTTGCAAACTTTTGCTTCTCTGATTGAGTTGCTGTGATATTATTACCATCACTTGTTTGCATCTAAATCAATTTGCTTTGAAGCACATGGAATCTTAATTGCATGTGACTTCATCTTTCGCCAAGAACACGAACATTATATGGCACTTGACATTCTAGCTCACTTAAACCATATTTGAAAGTTCTCTCGTCCAACACATTAACTTATAAGTTGGTTCTAAAAAGGTTTCTTATTTTAGGTATTTTCAAGTGACCACTTTAATTCAATGGAAAATCTGGCATCATCATTGTTAGTTTTATTTATTTATTTATTTTAAATATTTGCAGAATCTGAAGCAGACAGAAGCTTTAGTGAGAAAAAACCCAGGGTATTAGGTGACAGTGGGCCTTCTGTGGTTGAGTTGAGTGGATACAACTTCAAGCGGAAGGAGTTTGATATTGAGTATGACAATGATGCTGAGCATTTATTAGCAGATATGGAATTCAAGGACACTGACTCTGAAGCTGACCATGAACTCAAGCTGAGAATTTTACGCATATACTCAAAGAGGTGCAACAAAACTACTTTAATTAGTATTAACATTACCATCTTAGATAGTGTGATTATTTTGCTGGTTAGAATTTTGTTATTTTGGTATTAAGAGTGTAGTAAATTTGAAATTCTCAGGTCATACTTGATTAGATGATTGTTTGAAAACCCTTGTTTTGTCTTTGACGACCTATTGGCAGGTATTGTCTCTATAAAAATCTCAGGTGGGTCATTTGCAGGAGGAGGATCCTGATACTCCAATTAAAAAATAAAAGCAACATAAAAGCAACATCGTTTGCATTATCATTAGTCATTACCTTAGTAGGAGTGTCTATGCTGTTAATCTGAAGCAATTGTTATCTCTGTTTTTTTTTTTTAAACGGAAACGAGCCTCTTTATTAAATAAATATAAGAGACTAATGCTCAGAGTACAAGAGACATATACCAAGAGCAAAAAGGACTAAAAGAACAGATACAACATAAACCGAGACAAGAGAGAACATAATAAAATTTCAACAAGGTGGACAAGACCCTCTAGAACCCAAGCAAAACAAGAAGAAAATACAAAGCAATTGTTATCCAAACTTCAAAGCATTAATATTGTTATCCTAATTAGTTTCTTCTACTGTGTATGCACTTATGGATTATTAATTTATTGATTCATATGAATTTGGACCTTTTGGCAGGCTTGATGAAAGGAAACGCAGGAAGGATTTCATACTGGACAGAGATCTACTTTACTCCGACCCATTTGAAAAACATTTATCTCCCGAAGAGAGAGCAATATGTCAGCCTTACAAGGTCTTCATGCGGTTCCACTCCAAAGAAGACCATGAAGAGCTTCTCAAGAATCTAATTGAAGAGCATCGCATTGTGAAGAGAATACAAGAACTCCAGGTTTAGTTATTGGCCTGTTGTTGCCTTTTAAGTTATGCAGCTGCTTGATGCAATCAATTCAATGATAGTTGTATTTGGAAAGAGAAATGGAAATAGTCAGGCAAGAATCAATACCGGCAAAAATGAAATAGTAATAGGAAAATTCATTTACTTTAAAAATTGTGAGGGTTCAAGCCCCTCTATCCCCAAAATCCTGAAAAGGTCCATTTGCCTCTTTAATTATTGGTTAAGTACTACTCTGGTCCCTGTACTTTTGTTTTTAGTTCATTTCAGTTCTTGTACTTGCAAAATGTTCATTTTAGGCTCTATACCTTCAACTTTTGTTCATTTTGGTTTTTATTCTTTCAACTTTGGTTGTTTTGGTCCTTGAACTTTCAAAATGTGACATTTTGATCCATTAAAAATTGAAAATTTTGAGAGTACATATCAAAATGAACCAAAGTTGAAAGCTTAGAGACCAAAATGAATATCTTTAAAGTACAAAGATCAAAATGAACCAAAATTAGAAGTACAAGGGCCAATTTTGTATTTGAACCTTAATTATTTAGCATTTCATTAGCAATTCACAACTTGTTATCTAATTTATCTAAATGGAATTGCTGATAAAAGATATACAACTGAAAATGCAAGGGGGCATGGGCATGTTAATATTTGTCTAAATTTGGAGTCTCTTTTTGAATAACTAGTATTTAGACTTCTTTGGTGAACCTTCTTCTTCATGTCCTTGTATTTTTATCGTTTTCATGATGAAACCTCGGTTTGGGTTACTGCATACCTGGGCAGCAGGCTGTTACTCCTATCTCAGAAAGGGGACAAAAGGCTGAAACAATCTAGAATTGATGTTTTTGTGTCATATGACTAAAATTTATTGTTTCAAACTACTTAAATCCATCCTATTGTCAGTAACTCTCTCTATTAGTCTATTATACGATTTAACTAGTAGTATACATCTTGCAAATGTAGGAAGCTCGAGCTGCTGGGTGTCGAACAATTGTCGAATCAAATAAATTTCTTGATCAGAAAAGGAAAGAAACCAGAGAGAGCAGCAAGAGGATTAAGGAAAGTAGTCAAGCTGTTCCATGTGAGGTATCAAATCACCTCAAAGGAGAATGTGATGACATTCCCAGGGGCAATGTAAAGGAATCTCCAAGATCGCAAGGCAGTGGCAAGGATCCATCTTCAACTACTTCGTGGATTTCAAGCTCGGTTCACGATTGGGACATTTCAGAATTTGCAGGCGCCGATTTACTATCTGAAATGGTGAGAATTTTCTTCTAGTCTTCCATACTTCTCTTATTGGACATTGGTTCTCTCCTTGGCTATGACATTGCTAGGCTTAGTTGCCATATTTAGCCAGAGAGAAGGTAACCAGTTGGGGCTGCGATTAACCATTTTAATAGTTTTTCGACGTCTTGATGTATATAGGAGAGGCGACTTTGCTGTGAGATCAGAATATTACCAGCTCATTATCTAAAGATGGTGGATATCATATCAGTTGAGATGTTAAAGGGGAGTGTTACTAAGAAATCTGATGTACATGGTCTGTTCAAGGTGGATCCAAGTAAGATAGATAGAGTTTATGATATGGTTGTGAAAAAGGGTATTTCTCAAGCATGATCCAAAAAGAAATCCTTAGGTTTTTAAACCCATCTGTACAGTTTTGTTTTTGTTAAAACCCAAAACCATATAATTCAATAATTTGAAAGCTGCAACCTTTTTTTTCCACAATTGCAGGTCTTTGGATGGAAACATCGACATTAGATATATGGGTAATTGATGCTTTTATTTACTCAACTATACTTCCTTTATTATGCTTGCTTGCATTTTTCCATCACCAACTCTAAAATTTTGTACTCAAATCTTTTTTTAGTTTTCCTACTTTTATTGTTTAAACGTAGT GCCTCTCTCGTTCCCTCTCAGCGCTGGCCTCTCGCGAAACCCGACGACGGCAATACTCCGCTCTCCGCCGCCGCCTCGACCTCCGGCGACACACCAATTCTGGCGGTACTAGGCGAATCCTGAACAAAGGTCAATAGAATTCTGTGGTCTCGTTTTCTTTGTTACTGAAATTTGGTTATTCGGATCGATGGGTCGTTCTCGGATGGTGTCTCGTCCGGAAGATGAGGACTCCAATCAGAGTAAATCCAAGAGGAAAAGGCCTAGTTCCACAGAGGCTACGAATCCAGCTACAGGTCAGGAATCGGGAGACGGAAAAGCTGCCTTATACCATTGTAATTACTGCAACAAAGATTTATCTGGAAGGATTCGCATAAAGTGTGTGGCATGTCCAGATTTTGACCTCTGTGTGGAGTGCTTTTCTGTTGGAGCAGAGCTTAGACCTCACAAAAGCAATCATCCTTATAGGGTTATGGATAATTTGTCATTTCCTCTTCTATGTCCAGATTGGCATGCAGATGAGGAGAGCCTACTTTTGGAGGGCATTGCAGTGTATGGATTTGGAAACTGGGATGGAGTTGCAGAGCATGTTGGAACAAAAAGCAAGTTGCAGTGTCTCAATCACTATAATGCTATATATATGAACTCCCCTTGCTTCCCTCTCCCTGACCTGTCACACGTTATGGGTAAGAGCAGGGAGGAGCTCCTTGCCATGGCTACAGTCCCTGGTGAGGTGAAGAACGAGTTTCCTATGGCAGGGGAGCACAACCTTAATGAAGGGTCTTCATTATCAGCGAGAGTCAAATGTGAATCAAAGAAGGAGGACTCTGCCCATCAAACTTCTTCAAGTGGAACTGCAGGTTCAATCAGTGGTAGCACATTTTCAGGTGCAGTAAAGAAGTCAAACAAACCACAGATAAAGAATGAAACCAAGCAAGGAGAATCTGAAGCAGACAGAAGCTTTAGTGAGAAAAAACCCAGGGTATTAGGTGACAGTGGGCCTTCTGTGGTTGAGTTGAGTGGATACAACTTCAAGCGGAAGGAGTTTGATATTGAGTATGACAATGATGCTGAGCATTTATTAGCAGATATGGAATTCAAGGACACTGACTCTGAAGCTGACCATGAACTCAAGCTGAGAATTTTACGCATATACTCAAAGAGGCTTGATGAAAGGAAACGCAGGAAGGATTTCATACTGGACAGAGATCTACTTTACTCCGACCCATTTGAAAAACATTTATCTCCCGAAGAGAGAGCAATATGTCAGCCTTACAAGGTCTTCATGCGGTTCCACTCCAAAGAAGACCATGAAGAGCTTCTCAAGAATCTAATTGAAGAGCATCGCATTGTGAAGAGAATACAAGAACTCCAGGAAGCTCGAGCTGCTGGGTGTCGAACAATTGTCGAATCAAATAAATTTCTTGATCAGAAAAGGAAAGAAACCAGAGAGAGCAGCAAGAGGATTAAGGAAAGTAGTCAAGCTGTTCCATGTGAGGTATCAAATCACCTCAAAGGAGAATGTGATGACATTCCCAGGGGCAATGTAAAGGAATCTCCAAGATCGCAAGGCAGTGGCAAGGATCCATCTTCAACTACTTCGTGGATTTCAAGCTCGGTTCACGATTGGGACATTTCAGAATTTGCAGGCGCCGATTTACTATCTGAAATGGAGAGGCGACTTTGCTGTGAGATCAGAATATTACCAGCTCATTATCTAAAGATGGTGGATATCATATCAGTTGAGATGTTAAAGGGGAGTGTTACTAAGAAATCTGATGTACATGGTCTGTTCAAGGTGGATCCAAGTCTTTGGATGGAAACATCGACATTAGATATATGGGTAATTGATGCTTTTATTTACTCAACTATACTTCCTTTATTATGCTTGCTTGCATTTTTCCATCACCAACTCTAAAATTTTGTACTCAAATCTTTTTTTAGTTTTCCTACTTTTATTGTTTAAACGTAGT ATGGGTCGTTCTCGGATGGTGTCTCGTCCGGAAGATGAGGACTCCAATCAGAGTAAATCCAAGAGGAAAAGGCCTAGTTCCACAGAGGCTACGAATCCAGCTACAGGTCAGGAATCGGGAGACGGAAAAGCTGCCTTATACCATTGTAATTACTGCAACAAAGATTTATCTGGAAGGATTCGCATAAAGTGTGTGGCATGTCCAGATTTTGACCTCTGTGTGGAGTGCTTTTCTGTTGGAGCAGAGCTTAGACCTCACAAAAGCAATCATCCTTATAGGGTTATGGATAATTTGTCATTTCCTCTTCTATGTCCAGATTGGCATGCAGATGAGGAGAGCCTACTTTTGGAGGGCATTGCAGTGTATGGATTTGGAAACTGGGATGGAGTTGCAGAGCATGTTGGAACAAAAAGCAAGTTGCAGTGTCTCAATCACTATAATGCTATATATATGAACTCCCCTTGCTTCCCTCTCCCTGACCTGTCACACGTTATGGGTAAGAGCAGGGAGGAGCTCCTTGCCATGGCTACAGTCCCTGGTGAGGTGAAGAACGAGTTTCCTATGGCAGGGGAGCACAACCTTAATGAAGGGTCTTCATTATCAGCGAGAGTCAAATGTGAATCAAAGAAGGAGGACTCTGCCCATCAAACTTCTTCAAGTGGAACTGCAGGTTCAATCAGTGGTAGCACATTTTCAGGTGCAGTAAAGAAGTCAAACAAACCACAGATAAAGAATGAAACCAAGCAAGGAGAATCTGAAGCAGACAGAAGCTTTAGTGAGAAAAAACCCAGGGTATTAGGTGACAGTGGGCCTTCTGTGGTTGAGTTGAGTGGATACAACTTCAAGCGGAAGGAGTTTGATATTGAGTATGACAATGATGCTGAGCATTTATTAGCAGATATGGAATTCAAGGACACTGACTCTGAAGCTGACCATGAACTCAAGCTGAGAATTTTACGCATATACTCAAAGAGGCTTGATGAAAGGAAACGCAGGAAGGATTTCATACTGGACAGAGATCTACTTTACTCCGACCCATTTGAAAAACATTTATCTCCCGAAGAGAGAGCAATATGTCAGCCTTACAAGGTCTTCATGCGGTTCCACTCCAAAGAAGACCATGAAGAGCTTCTCAAGAATCTAATTGAAGAGCATCGCATTGTGAAGAGAATACAAGAACTCCAGGAAGCTCGAGCTGCTGGGTGTCGAACAATTGTCGAATCAAATAAATTTCTTGATCAGAAAAGGAAAGAAACCAGAGAGAGCAGCAAGAGGATTAAGGAAAGTAGTCAAGCTGTTCCATGTGAGGTATCAAATCACCTCAAAGGAGAATGTGATGACATTCCCAGGGGCAATGTAAAGGAATCTCCAAGATCGCAAGGCAGTGGCAAGGATCCATCTTCAACTACTTCGTGGATTTCAAGCTCGGTTCACGATTGGGACATTTCAGAATTTGCAGGCGCCGATTTACTATCTGAAATGGAGAGGCGACTTTGCTGTGAGATCAGAATATTACCAGCTCATTATCTAAAGATGGTGGATATCATATCAGTTGAGATGTTAAAGGGGAGTGTTACTAAGAAATCTGATGTACATGGTCTGTTCAAGGTGGATCCAAGTCTTTGGATGGAAACATCGACATTAGATATATGGGTAATTGATGCTTTTATTTACTCAACTATACTTCCTTTATTATGCTTGCTTGCATTTTTCCATCACCAACTCTAA MGRSRMVSRPEDEDSNQSKSKRKRPSSTEATNPATGQESGDGKAALYHCNYCNKDLSGRIRIKCVACPDFDLCVECFSVGAELRPHKSNHPYRVMDNLSFPLLCPDWHADEESLLLEGIAVYGFGNWDGVAEHVGTKSKLQCLNHYNAIYMNSPCFPLPDLSHVMGKSREELLAMATVPGEVKNEFPMAGEHNLNEGSSLSARVKCESKKEDSAHQTSSSGTAGSISGSTFSGAVKKSNKPQIKNETKQGESEADRSFSEKKPRVLGDSGPSVVELSGYNFKRKEFDIEYDNDAEHLLADMEFKDTDSEADHELKLRILRIYSKRLDERKRRKDFILDRDLLYSDPFEKHLSPEERAICQPYKVFMRFHSKEDHEELLKNLIEEHRIVKRIQELQEARAAGCRTIVESNKFLDQKRKETRESSKRIKESSQAVPCEVSNHLKGECDDIPRGNVKESPRSQGSGKDPSSTTSWISSSVHDWDISEFAGADLLSEMERRLCCEIRILPAHYLKMVDIISVEMLKGSVTKKSDVHGLFKVDPSLWMETSTLDIWVIDAFIYSTILPLLCLLAFFHHQL Homology
BLAST of PI0021926 vs. ExPASy Swiss-Prot
Match: Q75LL6 (Transcriptional adapter ADA2 OS=Oryza sativa subsp. japonica OX=39947 GN=ADA2 PE=2 SV=2) HSP 1 Score: 537.7 bits (1384), Expect = 1.6e-151 Identity = 302/559 (54.03%), Postives = 374/559 (66.91%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy Swiss-Prot
Match: Q9SFD5 (Transcriptional adapter ADA2a OS=Arabidopsis thaliana OX=3702 GN=ADA2A PE=1 SV=1) HSP 1 Score: 517.3 bits (1331), Expect = 2.2e-145 Identity = 285/548 (52.01%), Postives = 371/548 (67.70%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy Swiss-Prot
Match: Q9ATB4 (Transcriptional adapter ADA2b OS=Arabidopsis thaliana OX=3702 GN=ADA2B PE=1 SV=1) HSP 1 Score: 467.6 bits (1202), Expect = 2.0e-130 Identity = 269/544 (49.45%), Postives = 346/544 (63.60%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy Swiss-Prot
Match: Q02336 (Transcriptional adapter 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=ADA2 PE=1 SV=1) HSP 1 Score: 203.4 bits (516), Expect = 7.0e-51 Identity = 143/498 (28.71%), Postives = 224/498 (44.98%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy Swiss-Prot
Match: Q59WH0 (Transcriptional adapter 2 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) OX=237561 GN=ADA2 PE=3 SV=2) HSP 1 Score: 182.2 bits (461), Expect = 1.7e-44 Identity = 144/502 (28.69%), Postives = 219/502 (43.63%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy TrEMBL
Match: A0A1S4DXR8 (Transcriptional adapter OS=Cucumis melo OX=3656 GN=LOC103490126 PE=4 SV=1) HSP 1 Score: 1067.4 bits (2759), Expect = 2.1e-308 Identity = 538/541 (99.45%), Postives = 539/541 (99.63%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy TrEMBL
Match: A0A1S3BI16 (Transcriptional adapter OS=Cucumis melo OX=3656 GN=LOC103490126 PE=4 SV=1) HSP 1 Score: 1062.8 bits (2747), Expect = 5.2e-307 Identity = 538/542 (99.26%), Postives = 539/542 (99.45%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy TrEMBL
Match: A0A0A0K8H2 (Transcriptional adapter OS=Cucumis sativus OX=3659 GN=Csa_7G179630 PE=4 SV=1) HSP 1 Score: 1052.7 bits (2721), Expect = 5.4e-304 Identity = 531/541 (98.15%), Postives = 535/541 (98.89%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy TrEMBL
Match: A0A6J1IMU7 (Transcriptional adapter OS=Cucurbita maxima OX=3661 GN=LOC111476993 PE=4 SV=1) HSP 1 Score: 1007.7 bits (2604), Expect = 2.0e-290 Identity = 507/541 (93.72%), Postives = 522/541 (96.49%), Query Frame = 0
BLAST of PI0021926 vs. ExPASy TrEMBL
Match: A0A6J1IHH2 (Transcriptional adapter OS=Cucurbita maxima OX=3661 GN=LOC111476993 PE=4 SV=1) HSP 1 Score: 1003.0 bits (2592), Expect = 4.9e-289 Identity = 507/542 (93.54%), Postives = 522/542 (96.31%), Query Frame = 0
BLAST of PI0021926 vs. NCBI nr
Match: XP_016900505.1 (PREDICTED: transcriptional adapter ADA2-like isoform X2 [Cucumis melo]) HSP 1 Score: 1067.4 bits (2759), Expect = 4.4e-308 Identity = 538/541 (99.45%), Postives = 539/541 (99.63%), Query Frame = 0
BLAST of PI0021926 vs. NCBI nr
Match: XP_008447715.1 (PREDICTED: transcriptional adapter ADA2-like isoform X1 [Cucumis melo]) HSP 1 Score: 1062.8 bits (2747), Expect = 1.1e-306 Identity = 538/542 (99.26%), Postives = 539/542 (99.45%), Query Frame = 0
BLAST of PI0021926 vs. NCBI nr
Match: XP_004139846.1 (transcriptional adapter ADA2a isoform X2 [Cucumis sativus]) HSP 1 Score: 1052.7 bits (2721), Expect = 1.1e-303 Identity = 531/541 (98.15%), Postives = 535/541 (98.89%), Query Frame = 0
BLAST of PI0021926 vs. NCBI nr
Match: XP_011658944.1 (transcriptional adapter ADA2a isoform X1 [Cucumis sativus] >KGN44365.2 hypothetical protein Csa_015928 [Cucumis sativus]) HSP 1 Score: 1048.1 bits (2709), Expect = 2.7e-302 Identity = 531/542 (97.97%), Postives = 535/542 (98.71%), Query Frame = 0
BLAST of PI0021926 vs. NCBI nr
Match: XP_031744982.1 (transcriptional adapter ADA2a isoform X3 [Cucumis sativus]) HSP 1 Score: 1032.3 bits (2668), Expect = 1.6e-297 Identity = 526/542 (97.05%), Postives = 530/542 (97.79%), Query Frame = 0
BLAST of PI0021926 vs. TAIR 10
Match: AT3G07740.1 (homolog of yeast ADA2 2A ) HSP 1 Score: 517.3 bits (1331), Expect = 1.6e-146 Identity = 285/548 (52.01%), Postives = 371/548 (67.70%), Query Frame = 0
BLAST of PI0021926 vs. TAIR 10
Match: AT3G07740.4 (homolog of yeast ADA2 2A ) HSP 1 Score: 510.4 bits (1313), Expect = 1.9e-144 Identity = 285/555 (51.35%), Postives = 371/555 (66.85%), Query Frame = 0
BLAST of PI0021926 vs. TAIR 10
Match: AT3G07740.3 (homolog of yeast ADA2 2A ) HSP 1 Score: 495.4 bits (1274), Expect = 6.4e-140 Identity = 267/510 (52.35%), Postives = 347/510 (68.04%), Query Frame = 0
BLAST of PI0021926 vs. TAIR 10
Match: AT4G16420.3 (homolog of yeast ADA2 2B ) HSP 1 Score: 468.0 bits (1203), Expect = 1.1e-131 Identity = 269/544 (49.45%), Postives = 343/544 (63.05%), Query Frame = 0
BLAST of PI0021926 vs. TAIR 10
Match: AT4G16420.1 (homolog of yeast ADA2 2B ) HSP 1 Score: 467.6 bits (1202), Expect = 1.4e-131 Identity = 269/544 (49.45%), Postives = 346/544 (63.60%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25 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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