PI0006657 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CTCATCTTCTTCCCAAATCGGTCCGATAGTCTCGGCTGTAGCTCGCTTCAGTTGAGATCATCTTCAAGCTCACTAGGTAAGCTCCATCCCTTGCTCGATTCTGTTTGGTCGCCATGTAAAGGAATTAGAAGAAGTACCGGAAATGGCTGCTTTCACGAATTTTTTCCTTGTTTGCTGCTGAATCGGCGTCTCTTTAGTTTTCATTAATTAGCAGCTTCTGAATAAGAAGTTGGATACTTAGCTGTATACCCTACGATGATGGTGATGTTATAGATCGGTGAAACCAAGTAATCTCTCTGATTAATGGTCTCGTCGTAAAATTTTTAAAGTCAAGTAGCTTTTGTAGAAAAAGTATACGAACGCATACCCATCGTGTTGGATGGTACAGTTCGAGTTTGAACAGTATTTGTTGTGGGCTTGTTTTGTTAGTCAAGTGACATGTAGGTTCTCAAGTAGCTGTTGTCTATTTAATTTCGATTTTTGTTTGTATATTTGTATTTGGATTTAGTCACTTATATTATGTATTGAAGTGATGATATTATGGACCAAGTTAACATGTAGAGATCTGATGTCTGAGTTTTTCGATAATCTAATTTTAGAGGTCTGAATTGCACATTAGTCTGCCATCCATTTCATTCTTTTTGTAGAAAAGATTAATATTTGTTTTTTTTTTTTTTTTTGTTTATTCAGTGCAATCATTGTTCTTCTTACTTTTAACAATAGGTTGATACTTGTGTTTGAGGCAAGAAACTGATTTTCATGGATTAACACTGTTATGAAAATGGGGAGTCCATAAGATATGCACACACTGAACAAGAGAGCTCACAAAAGGAGCTCCACGTGGCATTGTAAATAATTATAAAGACCTCTTAAATGGTGGTGGTCGTCTAGTGAATTGAAAGGTTGTGGCTATTTCCTGGTTATAGGGTTGGTATAATGACTATTTGGCAAACTGGAAAGTGAAATGGGATGTGCTATCAAAATTTATTCTAAGCTTCCCAAATCTTTTTGTATTCCTTCTTCTTTGCTTTCATAGACAGTCCTTTATACTTGAAGTAGATAATTGGTCTCCTCAGACCTCGGGATTAAATGTTGTTGTGCTTTTTTTGGTTTAGTGGCGTTTTTCTCATTAACTTTTTTCAGTTTCGTTTGGTGTCCCCCCTAGCAGTGTTATTTGTCTTCTCCAATGGAAGTAGTGTTACTAAAGACGTGACTTCTTTTAAGGTTGAAATACAATTTTGGTCCCTGTAGTCCTTGTACTTTCAATTTCTCAGATTTTTTAAGGCTAAAATACCATTTTGGTCTCTTAGTATGTACTTTCAATAAATAATAAATTTAGTCTCCACTGCTATTTTATTATTAATTTTATAAAATAACTTTTTGTTATTTATTAGCATTTTTACTATAAAATTTGAAAATACAATCACATATTGTATTTCCTTACATGAAAATTATTATTATTATTTCACTGTGCTGATGGAACTACAATATCTATATCATCGTTTACATCATGAGTAGGTAGAAAGTAGAGATCTCTAGATGGAGGTGCCACCAAATGAAGATTCTGATCTCCCAGCTTCTGTTGATACTGTTCATCAAGAACAGGATGACGTGCTGCCTGTCCCTGATACCATAAATGACGGGTATATAAGCACACAATTTATTTCCTGTAATATTTATTTTTTGGTCATGATGTTAGGTTTTGATCTTGTTTTCTTGTAATTAGGTTGTAGCTTCTCGTCTCCCACACTGTAGAATACTAGAATACTTGTTACACTGTTAGTGAATTTACAACTTATATGAGGTTTCAAATTTCATGCTTTTACGTGGCTTATGTTCGCATTTGTCTGTAATGGGAGCAAGTATGGGTTACATTCAAATGGCTTTAATTCCATTTGCATTTTCTGAGGCACGTTTAGAAACTTGTAAAAAGTGACCATTTTCTGCCTTTTGAGTTTTTGTTAGGGTTACCTTTTTCTAGAGAGATTGGTTTCAGGAGGACCATAGCTTTGATGAGCATTTCATGTCCAGCTGTTCTGATTTGTTTCTCTAGTAGGTTATATTTATCTTTTGGTAAGACTAAGAGTATTGAACTTGCAATTTCTAGAGTCATGGAGCAGAAGCAAGAAATCAATGAGGAAGAAGTAAGAAGTACACTGGAAGCGATTGCATCCACAGGAAAATTCTGGTATCTGTCTTCTCCAATTAATTTCTATTGGCTTAGTATGAATATGAAGATGCTACATCAAATGTTTGATCACAGCTCTGACATTGGAAGTGCATGAATTTATATACCTGAGAATCTAAAGCACTTTGATATGTTGAATGCTTACAGCTTCCTGTTGTAATTTAAATAGGGAGGCCAAGGGGTTCTTTGGTTAAATTCTGCTAGACAAGTTTATGAAAGGTTTTGCTTAAAAGAAATAGGAAATTGTATGTTCTTGGAAAAGCTTACAAACTGGGGGAATAATTTTATTGTAGCTCGTGTCCCATTTCAAAGAACAGTGTAACTTCTCCTTTTGTGATTATTTTCATTGAAGTTTCTTTCTTGGTACACTCTTTGGGACGTAGGTCTACCCAAGGAAATTTCATTAGTCAATGAAATTGCGTTTGCTAAAATTTTCCTTTTTTGATATATTATCTATGGGCCTTGTCTTTATGGAATTTCTGTATCCATCATTTTCTGTTTCATAGAGGATTGCCTATGTTCATGATTTAGACCTTATTTTGCCGTCACATTTTCTTTTATTGGAAGCTTTCGTTTTTTTCTTCTATCCAAAAGAAGAAAAATAAATAAATAAAGGTGGTGCCAAAGTGAGCTTAGCTTAGTGGTAATTGGCATCGTCTTCGATCCTAGAGGTGGTAGGTTCAAATCCCCCAACTCCAATTGTTGTACTAAAAAAATAAAATAAAAATAAAGGTGGAAATTTGGGTTTGTACCAGCCTGCTGTCTTTTGTGCCAGTGACTCAGTGCCAAGTGTGTTGAGTTAATAATAATTTTACCATGCAAAAGAATCAGACCAACCATATATTTTCATTGTTTTTAGATTAAGAACCAAAACTTTTCATCTATAAAATTAAAAGAACAGAAAAAGCTCATTGAAGGATTTTGAAAGGAAGCCACACTATAATACCAAAAGGGGTACAATACATAAATAGTTAGATCGACCACACCCTGAGGAAGCTGTGAGTGTGACATTAGAGATGTCTGTGAAAATTCTTAATAAACACTTTTCCTTTATAATTAATTGGTTCTCTGCCGTCTTAATCTATGGCCACACTGCTTTATTTGTACGTCTCCGCAAAAGCTTATTCTTTGTCTTGGAAGTTATGCGTATGCACATGATATTTGTACTGAGCACACAATCAGCTACATAAAATATGAACTGTGTGGATCGTTTAATGTTTTCTTATTAACTTACAATATACATATGTGTATATGTATTTTATGTTCTCAGGCATGATTGGGAGAAGTTGAAGAGCATGCTATCCTTTCAACTGAAGCAGGTATGGGGAGGTACGCATGAATACATTTCTTTTGTTTCTTAGCAGTGGATGTTTTAAGGTTCTTGCATTGCGGGTGTGCATATCATATTTGTTGTATTCAGTTTTAAATGAAAAATTTGTCACTTTCTTATTTTCTTTTTGTTCCCATCTTTGAAGGTGCTGTCAGAGTATCCTGAAGCAAAAGCATCCAGTGAACAACAAAGTACTTTAGGAGAAACCTTCTCAGAGCTGGTAAAGCGGTTGGATGAAGGTTTGTGAGCTTCTCCTATTGTGTTTACTGTAAATTTATGTGAAAAACCAAGTTTGGGCAGTAAATTACACTTTGAATCATTCAAGTGGTTATGCATTTTTGGAGTCACCTATCTGTGTGTAAAATATACTCATTGGTCCCTTTACTACAAAATCCAGTCAAACAGCTGTCCTAGTAAAATAATTCAATGAACTTAGTGAGATTACGGAATTTTAGGTTATAAAGAAACTAATTTTGAAAAGTTTTTATTTGTTTTAAATCTATTTATTGAAAACCATTTTTATGTGAAAACAAAGATTTAGAAAAAATCTAGAGTAATATGAACTGGAAGTTATAAGGAGTTCCACAACCTTCAACTTGTAGATTACAAAGGGGCACCCAGGCTGCGTAATAGATAGAGATTATTTTTTTTAGAGGAAATTGCAAAAACCACCCTTCACTATGGGGTTTGTTACAATTACATCTATGAACTTTTAATTTGATCAATCACCCTTGAACTTTGTGGTTTGTTACAATTACAACCATGAACTTTTAATTTGATTAATTATCTTCCAACAGTTTGTTATTTGTTCCGACCCCTTTGGTTTGTTAATTTTTATTTTTATTTACCCTTGTTTGTGAGCTATATACATATCTTTTAACTAGTTTAATTTATTGAAGGAACATCTGATGAAATGTAATTTTACAAATATATTGATATGAAAAAAAAAAAAAAACTCTCTTTTTCTCAGCTTCTTTATTACTCTCTTGTACTCTGAGATTTATTGTTTTTTTTTAAAAGGAAACAAGTCTCTTTATTAATATAATGAGACAACTGCTCAAAGTACATAAGGATTTTTTTTTTTTGAAAAGAAGACAAGCCTCTTTTATTAATGATAAAATATGAGACTTAAGCTCAATACACAAGAGTATTGTACTAAGAGCAAAAGAACTAGGAGAGAATACAAACTAAAGTGAAAACTTAGGCAACAAGAAGAAGACGACCTAAACAAACGAAGATAAATAGAAACTTAAAAAATAGGATAAAAGCCTTTTCAAGGCAAAACAAACTGAAGAAATCTAAATACAAAGCAAAACTTGACAACTCTATCCAGAGGAGCCCATTTTGCACAACCAAATTTTCTATGTGAGGGGAGAAAGAGAAGGGCCAAGGAGAAGCAGCCGACCGCCTCAAAGTTGTTCTTGTCAGTGCCAACCAGTACCCAGAGAAACTTGAAAAGATCTTCCAAAACAAACATAAACTGATTCCATCGCCCAATGACAGCCAGCTAAGTTTGCATTTCTGGATATAGTTGCACTCTTCGCTTTGATAAATACTGAGTAATTCAGCTTGCAGGGCAGTTCTGAAACCCAGCTCCTCTTCATTTAAACCATTCAACTCAGCCACAGAATCATGTAATTCTAATTCAGATAACAAGTTTTTTTTCTCTTTCTTTTATCTTGGCTTGCGCTGCAAAATTCCATGCTTTTACTGCCATTTTAACTGATCTCAACTGCTCATGTAATATGAAACCAGCCCATCCATAAAAAATTGAGTTACTGACTGTTTCAACAATAATCTGATTACATTCACTAGACAGCAGCCAGCTGTTACAGAACCGAAAGGGGAGAGACCCCAGCAAAACGCACCAGCCTCCAAGAGTAAAGGAAAGTGATCCGAGAAAATACGTGGTTTGCGTGAAACTCGAGAATTATCCAAAAGGCCATCCCACTCCTCATTTATGAAAAATCTATCTAATAAAGATCTGGAAGGAGAGTTACCCTCTCTAGACCAAGTGTACCTTCCGTTTTGCAATGGAATTTCCATAAGATTGACCGAATCAATAAACTTATTGAACAATGAGCACTAGAGGAAAACTTTCATGGGCCCAACGAGTGATGTTAAAATCCCCACCTACACACCAAGCCACAGCCGAACAAGGAGACAAGGAAGACAATTCAGACCAAACTAATTTCCTTTCTCTATATCCACAAGAACCATAGACATTTGTGATCCAGCAGACCTTATTGCACATAGTGAGGCATAGAGAAGTGCCTTTTAATAACCTCAACTACTGAAATTTTGCTACTGGCCCACATGGTAAGAATTCCCCCAGAAGACCCGACAGATGCCACAAATTATCCTTGGAACTCCACAGTGATTTTATAAAAGTCGAATTCAAGTTATCCTTTTTAGACTCTTGAATCAGGACAATATCCGGGTTGCAATTTTTAATGAACTTTTTTAGAGCTGCACGTTTGGAGGAATCTTTCAAACCCCTAGTGTTCCAGGAGACAAGCTTCATGATGGTTGGGAGAAGAAAAGGAAGTCTGCACTTCTAAATTAAGCCAAAATAATTCCACAGTCATTGACTATAGATATCAAATCTTTAGGCAGATCTAGGGGAAGTTTAGTTGCAGGGGAACCCTCATCATTAAACAAAACATTGAGCTCCATCCCTTCAATTACCGAGTCTATATTAAGGTCAACCTTGCTGATGGAATCTGTAGAATCTTCACTACTAATGTTGATAGGAGAGGAAATTTCAAGCTTGTTTTTGAGAGAAATATCATCTTTGCAGGGGGAGCCTTGCAGGGAAAAAGCCTTTGGGTTAGAGGTGGAGGGAATAGAAAAAATGAGACACTTTGATGAAGAATCTTCATTTACTGACCTAATGAAGCGTTCAGGGGCCTGAACTTTAGAGCTGTAGACTTCTAGAAGATCCGGATTATTAGCAGAAACTGAAGGCTTGATGGGTTTGTTCCGAAAAGAATCCAAAGGGGGGATTTTAAGGTCACAGACCCCTTTAAGTTCAGATCTTAAAAGGGCAGTCCACACATTGTTGAAGGTAGTTTGCTTGCGGATATACTGCTTGAGAATTTTTGGAGCGTGAAAGACTTTACTACCTTTGGCACACTTGAAACGGTTGAAAAAACCGACTTCTGATGAAGGATGGCCCCCTGCACTAACAGGATGTCAATTTTCTGGATCTGAAACGTTCTGGACAGAAATCTGCAATAAATTTGCTGAGTTGTCAACCGAATTAAATGGGCAAAAACCGTTGTTATTCATTAAGATATTAAAATGGGCCTTTTGTCCTTTAATCACCTCATTTAATGACTCACAAGGGTGCTCTTCGACTACTGAAATTTTAAAATTGGAGTTATTAACTGTGGACCCCACTGCCTTCTTGCAACAACTGTCTGTCTTGGGCACGACAGAATTAAAAAAAGGAGCCTGTTCAGTTGCCCTCTCATTCAATTCAACTTCAACTTGCCTGCCGGCCACTGTCGCCCTCAACGGTGCTGGAGGGATGATCGGAAAATGCTTCAGAATATCAAAAGGGTTTCTGCTTCTGGGAAGAGTTGCAAAAACTGATTTCGGAATTTTCTGGATTGGTGAAAAGTGGGAAAAATCAACATTTTCATCAAGCATAACTTCTCTTACTCTCAAGCAATCAAGAAGGTTTATAAAATCATCCTATAAGGTTGGGGCTTTCGAGGGGCTAGTAGGATATAGGAATTCAAAGTCGCCAAAATGAAGGAAGATATTTCCCCTCTTAAGGTCAGTAATTTCAATCGTGGATGGCACAAAGCCACATGAGTTCTTAACTTGAATCCGGGCTTCACTAACGTTGATAAAATTCAGAGTTTCGGAGGCTATATCTATGAGACCTCCCAGATGATCCCCAATTGCCTCAAATGTGCTTCTACACCAGTAATCCAAAGGAAGGTTTTTAATTTTGAGCCATCCACCGTAACCTTTTTGAACAAGAGGCCGGCTATGTTTGAAGTTATCCCATCTTACAAATTTGAGATGAAAGTTCCCACAAACCTGCCATTTTCCTTCCTCATGGATAAGATCTAAGATTGATCCTTGGTCAAGACTAATTAGGGCATTCTCATCACATAGAGGATTAATAACAATTTTCGTCTGGAAAAGAACTTCCAGCCTCTTGCGGATCAGTTTCCAGTCATCTGAAACGAATAATTTCGATATAATCCATAAATTTTCGAAATTGACTTTCACCACTTCGTGATTCTTAATCAGCCATTGCTTTTGAATGGAGGGGGGGGAGTGGACAGGCATTTGAATCTTCCATTTTTGACTAGGACTCTGACCTGATACCTTAACTTCAGATCTTGGAATAGGGGAGTTAGAAAGACTTGACTTTGCCATTTCAATATAACTTTTTTTTCCTTTCCAATTTGGGGAATGGGTCTTGGAGGTAGTATCAGAGAGTACCATTTAGCATAGTCCAGATTTTCAACGAATCTGTCCAACATCGAATTGAACAGCTTCCAACCTTGCTGCTCTTTACCTGAACATACTCTGATATTGAATAGTCCCCCTGAATAAGGCCAGTGATCACAACTAAGAATCCATCCAGATTTAGCTTGAAATTTTGAAATTCTTAGTCTTCCTCTGTCAATGTCCCCGAGTTTCCTAAAGTGTCTGTTCGCCGTAGTTCTGAGAAGGTCAAACACTGCTGACTGGGTCCATCTAAGTTGGCTAACGGAAAGGGAAATGCTTATGTCGGCTTCTACATCTTCAATATAGCAGCGATCTCTCTCTTTCTAGATACAGTAGTGTGACTAATCAATTTTGCAACTAACAACTTCCATGGAGGAAAAACAGGCTGCCGGAGAGGGGAGGAGGGAGGAGGGAGGGGAGAGGGGAGAGGGGAGAGAACTTACCTTTTTAGCCTGTCATTCTGAGATTTATTGTTAATAAAGAAATTTGTCTCTGTTCAAAAAAAAAATATATTGATATCAATAACAACATTGGGTTTGATTGCTACAATTGACAAACTATAGAGGCTAATTGATTGAATCCAAAGTCTAAGGGTGTAATTGTAATAGACCACATAGTTGATGAGTGTTTGATCAAATTAAAAGTTTACGGGTGTAATTGTAACAACCTTCTTCAAGGGTGGTTTGTTTAATTTTACCTTATTTTTATATAAACAGTTGAAACGTACAATACCAAAAGACATGAAAGCAACCGATGAGTTACAAAAATCTTCTGTAAGGTGTTCCTTACTAGTATTGATATTGATAACAAAAGTGAAGGGCCTTAAGGGTTACAGTACCCTAGCCGATCACAGAGAGCTGATTCTCTCCCTCCTCCTGACTGCTTGTTATTACAGAAAAAACATACCCTAACCACTGACATTCATTTGTTATATATACACGACCACAGTCACTCCCATAACCATTAGGTGGTCCCCCCTTTCTTAACTAACTTCCCCCTGACTTCCCTTTTACCCCTTCTCGCATATTTCCGTAGAATCAGTGGCCTAACATCTTCATCCTTCGGCACAAATAGAAGTTGTACTCGTAGGATTTTCTACAAGGCCAAAGCCCGAATACAAAATGCTCTCGATCCGATCACAATAAAAGAGCATTTAACTTCCATTACGAACAAGGCTTATTTTATTTATTTTTTATTTATTGTTTTACTTTGCAGCACTTCATAGCTTCGTTGAAGGTCCTCCATTTACCCTTCAAAGGATTTGTGAGGTGATTATCCATATCCACTACAATGCAATTTTTTTATTTAAATTTTCATTTTAACTTTTTAGTTAGCTCATGTTATCCAGCAAATAGAAGGCACAATATCAAAATTTTGAAGCAACCATATCTTGATTTCTCTCTTTTGCCTTTCCTTTTCTGTTATAATACTTTCAAAGATGGAAAATGTTACTATTGAAAGCAACAAACACGAAACCAAAGTTTACGTGGAAACCCGAAAAACCGGGAAGAAAAACCACGATATTGCTGTTTTTATTATTTTCTGATAATTCAATAGGTACAAAGAGGGAGAATAAATAGAATACATAAGGGGATCAAAAAAAGGAAAAGATTTAGGAATTATGGTAAATCTTTCCATAAAAACCCTAAGGGCCAAGGCCCACTAATTCTAACACTCCCCTCAAGTTGGGACGTAAATATCGATGAGGCCCATCTTGCTAACATAAAAGTCGAAGTTCGGTCTGAGAAGCCCTTTGGTGAGAACATCAGCAACCTGTTGGCTCGAAGGGATGTACGGAATGCATATGCTTCCACGGTCAAGTCTTTCTTTGATGAAATGTCGATCAATCTCAACATGTTTAGTTCTATCATGTTGAACTGGATTGTTAGCAATGCTAATTGCGGCTTTATTATCACAAAACAGCTTCAATGGTGTTTCGCATTCCTGATGAAGATCAGACAGAACTTTTTGGAGCCAAATTTCCTCACATATTCCCAAACTCATAGCCCGATATTCAGCTTCAGCACTGCTCCTGGCCACGACACTTTGCTTCTTACTTCTCCAAGTTACAAGATTGCCCCAAACAAAAGTACAATAACCGGAGGTAGACTTTCTGTCAACCACAGATCCTGCCCAATCTGAGTCAGTATATGCCTCAATGGTCTTTCTATCTGTCTTTCTAAACATCAACCCTTTACCAGGTGTCATTTTCAAGTATCTCAAAATTTTGTAGACCGCTTCCATGTGTTCCTCATAGGGAGCCTGCATAAACTGGCTGACAACACTTACAGTGAAGGAAATATCAGGACGAGTATGAGATAAGTAAATCAATTTACCTACGAGGCGCTGATATTGTTCTTTATCAACTGGAACTTGATCATCAGAGTTTCCTAGTTTACAGTTGAATTCAATAGGAGTATCAGCAGGACGACATCCCAACATTCCTGTCTCGGTTAACAAGTCAAGGGTGTATTTCCTCTGACACACGGAGATGCCTTCTTTAGATCTAGCCACCTCCATTCCAAGGAAATATTTCAGATTTCCCAAATCCTTGATTTCAAATTCATCACCCATTCTCTGCTTTAGTTGACTGATTTCTGCCTGATCATCTTCAGACAAAACAATGTCATCCACATAAACTATCAAAACTGCAATCTTTCCTGTCTCAGAAACCTTTGTAAATAAAGTATGATCAGAATGCCCCTGACTATACCCTTGGGACTTGACAAAGGTGGTGAATCTATCAAACCATGCTCTGGGTGACTGTTTTAGACTATAAAGGGATTTCTGGAGTTTACATACCTAGTGACCAAACTGGACTTCAAATCCAGGCGGGGGCTCATGTAGACTTCCTCCACTAGGTCTCCATTCAGAAAGGCATTCTTAACATCCAACTGGTACAGTGGCCAATCTTTGTTCATGACAACAGACAGCAGGACTCTAACAGTGTTCATCTTAGCAACTGGAGAAAAAGTTTCTGAATAATCAACACCATAGGTTTGAGTAAATCCCTTTGCAACTAACCTTGCCTTGTATCTGTCAAGAGTTCCATCTGCTTTGTATTTGAGAGAGCACCCATTTGCATCTCACAGTTTTGTGTCCCTTGGGAAGAGCACAAACCTCCCAAGTTTTATTCTTTTCAAGAGCTTTCATCTCCTCCACGACAGCCTTCTTCCATTCAGGACACTCTAAGGCAGTATAAATATTTTTCGGTATTACGGTAGAGTCAAGGCTTGCTGTAAACGCTCTGAACTGTGGAGAAAGATTATCATAGGAAACATAGTTACAAATGGGATGTTTAGTACATGACCTAGTACCTTTTCTCAGGGCAATGGGAATGTCAAGAGAGGGATCATAGTCATCACGTTTCCCTGTATGGCCATGTTCAACTTCATTATTACTGGTTCCTGCTCTGACCTTAGTCTCATCATCATTGTTTTTTCCTTCCACATTTTCAACAACAGCATCAAACATGTCATTCTCACTCATCTTATTATTAATTTAAAGTTCACTAGGGTTTTCCATACCTTGATCTCGAGGAGGTTCAGAGTCTTGGGCTGGAGCCGGCGGCTGACTAGTAGGGGACCCAACTTCCTTCCTAGGATTCCTCCTATAGTATGTTTTCCAGGGAACTTGGTTTGTGGGTAGGACAATGAGATGAGGATCAAAGTCGGACACAGTACTGGGAGTAGGTTCGATAAACTCCAAGGTATAGTTAGACTCTTCACTCACACTCTCCCCCTGAAGATGGCTAACGGGAAAGTAGGGTTGGTTCTCACAGAAAGTAACATCCATAGTAACGAAGTATTTCCTGGACGGCGGATGAAAGCATTTATAACCGCGCTGATGAAGGAGATACCCAACAAACACACAAGCCTGAGCCCGAGGGGCAAATTTGGTCTGACTAGGGCTGAAATTATGGACATAAGCAGTACACCCAAACACACGAAGGGGAACCTTAGAAATTAGACGAGTAGAAGGGTAGGACTCCTTGAGACAATCTAAGGGAGTCTGAAGGTGGAGGATACGAGAAGGCATTCTATTGATTAAGTAAGCTGCTGTAAGAATAGCATCGCCCCACAGGTACGAAGGAAGGTAAGTAGATAACATAAGGGAACGGGCAACTTCCAAAAGATGGCGGTTTTTTGCTTGGCAACCCCATTTTGTTGAGGAGTATAGGGACACGAGTTTTGGTGAACAATTCCCTTGGAGGCTAGGAATTCACTAAGGTTATGGTTTTGGAATTCTCGACCATTGTCACTCTGAAGAATTGCAATTTTTGTACGGAATTGTGTTTCAATGGTGTGATAGAAGTTTTGGAAAATAGAGGAAACCTCAGATTTATCGGCGATAAGGTAGACCCAGGTAAGACGGGTATGATCATCAATGAAAGTTACGAACCACCGTTTCCCAGATGAGGTGGTGACCTTGGAAGGACCCCAAACGTCACTATGGATGAGGGTAAACGGTTGTGTGGGTTTATATGGTTGTGAGGGAAAGGAAACCCGATGTTGTTTTGCTCGAATACACACATCACAGGATAAAGAGGAGACATCGATTTTAGAAAACAGATGGGGAAACAAATATTTCATATAAGTAAAGTTCGGGTGATCCAACCGAAAATGCCACAACATAAAGTCATGTTGAGAAGTACTAAAGTAGGAGGACAGTAAACTAGTCCTAGATATATTACTACCGGAGGTATCATCATCAAGGATGTAAAGTCCCCTGCTATGCCGGGCAGTACCAATTGTCCTCCCCGAACTCAAGTCCTGAAAACAAACAGATTCAGGTAAGAAAATAGCTTTACAGTGCAGTACACGAGTGATCTTGCTGATAGATAAGAGATTGTAGGAAAGCTTAGGCACATGCAAAACATTCTGGAGAGAAATCGTCAAAGAGAACTATTTGTCCTTTGCCAGCAATCGGGGCTAAAGAGCCATCGGCTATCCGAATTTTCTCATTACCGGCACATGGGGTATAAGAGACAGTGTTCCAAAAAACCTATCAAGTGATCTGTGGCCCCCGAGTCCAAAATCCAGGGATTCTTCCCATCAACACTAATAAGTCCAAGAGACTGAGGCATACCTGACTGAGCGATGGCGCCTAGAGTAAGAGGGTTGGTTAGGCTAGCAGTAGAGCCCGTTGACTGAGAAGTGCTGGCTGTCTCCCGAACATCGGTACGCCCTGAGTTTTGTTGCTTATTGGAGGAACGTTTGTTACCTCTTGGATACCGACCGTGGAGTTTCCAACATTGATCCTTCGTGTGCCATTGTTTCTTGCAATGCTCACATACAAGGACTGGTTTCCCACTATTCTTCTTATTATCACGGGTCGAGAATTGAGCACTAAAGCCAACAGAGTTAGTTATATAATCTGAAGGTACATTAGGGAGCGAAGTTACCGGGTTCTTTGAATACATCGGTAGATTGGTCAATTTAGACTCTGTAGAGGGTGTACCAACTTCAAAAATAGTTCTGCTGTGGATTTGGTTAATCCCGGGACCACAAACATATGGCAGTGAAGGGTTAAATGAGGGCCCTCCATAACTGGAGGGTTCCGGCGGCGCGTAAGGCTGTGGATGACTGGAAGGGTTAGACGGTTGGACAGGTGAGGACACGTAGAAGCAACTGGGCTGGGCGGTGAGATGAATGGACGGCGGCGCGTGGGCCCACGCGCCGTAAGTCAGTTTCTGGCCACTTAGCTACGCGGACGGCGACGAGGGTTGGCCCACTGTGTAGATCGGTAGCCTCTGAGTCCGATGGAGTACTTTTTCCACGACGGTGGCGGCGGTGGCTGCTTCTGGTTTGGTCTGGGTTTTTCCTAAACTGTTTTCTAGGGTTTTGTTGTTGCTATGCTCTGATACCATATTGAAAGCAACAAACACGAAAACAAAGTTTACATGGAAACCTGAGAACCGAGAGAAAAACCACGATATTGCTGTTTTTATTACTTTCTGATAATTCAATAGGTACAAAGAGGGAGAACAAATAGAATACACAAGGGAATAAAAAAAAGGAAAAGATTTAGGAATTAGGGTAAATCTTTCCATAAAAACCCTAAGTGCCAAGGCCCACTAATTCTAACAGTTACAGTAAGAGTTTTCCTTTTTCATAGCTTCTTTCTTTGATGGTCATAAATTGATGTTGCCTAATTATGATTATTATCATTGTTTAAATATTTTCTCCAAAATTGGATGTTCAAACAGATCCTATTGGATGCATGTAGCATTTATCCCAATCTCTCAAAGCTTGCGCTAGCTCTGGAAAAGGTAATGGAGTTCTCTGGTATTGATCTTTTGTGTTTTTCTTTTCTTTTCTTATTTTGGACTTATTCTTTATTTTATTTTGTATATCTGAATGCGGCCTGGTTTTTCTTCCCCATTTTTCATTGTTCATTTAAAACATTTATTGGTGGCCCTTCATTGAACTGTTTATGTATGGTTCTTTATCTTCAAATATGATACTTACTCATTTGTTCAAATTAATGTAAACTAAATTACCGTTTTTATGAAGGCTGAAATAATATGGAAAAGCCTTTTCTGGGAGCTTTGTTCGGGTTGGTTATCTTTTAAATTTAGGAATTTTTCTTCCTCGTTTATCTACCTTGTTACTTCTTCATTTCATCGGGTTTTCTTTCCATGTAAAAGTTGTCTTGAAAGAAGTATTGTGATTTTTAAATTTTTATTTAAATGTTGGTTGCCTTAATATTGAATCATGACTATAGATCTCTTGATGGGTAATGCTCAATGTCATGTCTACATTTATAGAATCTTCTGGTGACATCCACACTTGCCGTCAGTTCTGACCTGCATGTACCGTCCTCCAACCCAAAGCCAAACGAGTCAGATGAACTGGAGAAAGCTGAAGAACAAAAGCTATCCAATGCAGTAGAAAATGGAATTGAACCTATAGCTGGAGACAGGGATGAAGTAATGGTGGAGGTTGAAGAGGCCGATATGAATGATGATATGACGATGGACATGGAAACTTTTGAAGAAATAGTTGGATCATCTGAGACAAATAATGCTCCAAACAGTAATTCTTAGCTTTCTTGGCACACCTTAAAGCTAGCTGCTGTAGTTCGGCTAATCTTTTCATAGTGAGGGAGACATGGGTGGTAATCCATAGTTCTTTGATATATCAATTTGTTCAATCCCAATATAATTCCGTTCGGATGTGTTATCTTACACTTGGGAGAGGAATGGGTGGTTAGTTGCAACTTGGAATTAGCCTACAATATGAGCCTTACTATTTTGGCTTGGATGTTTTCTTGATTAAATATTTGAGTGAACCGATGTTTTTGGTTTCTTAACTTTTGATATCACAATTCTCATTTGGCTAATGAAAATGATTTGGCCCTTTGCAA CTCATCTTCTTCCCAAATCGGTCCGATAGTCTCGGCTGTAGCTCGCTTCAGTTGAGATCATCTTCAAGCTCACTAGGTAGAAAGTAGAGATCTCTAGATGGAGGTGCCACCAAATGAAGATTCTGATCTCCCAGCTTCTGTTGATACTGTTCATCAAGAACAGGATGACGTGCTGCCTGTCCCTGATACCATAAATGACGGAGTCATGGAGCAGAAGCAAGAAATCAATGAGGAAGAAGTAAGAAGTACACTGGAAGCGATTGCATCCACAGGAAAATTCTGGCATGATTGGGAGAAGTTGAAGAGCATGCTATCCTTTCAACTGAAGCAGGTGCTGTCAGAGTATCCTGAAGCAAAAGCATCCAGTGAACAACAAAGTACTTTAGGAGAAACCTTCTCAGAGCTGGTAAAGCGGTTGGATGAAGCACTTCATAGCTTCGTTGAAGGTCCTCCATTTACCCTTCAAAGGATTTGTGAGATCCTATTGGATGCATGTAGCATTTATCCCAATCTCTCAAAGCTTGCGCTAGCTCTGGAAAAGAATCTTCTGGTGACATCCACACTTGCCGTCAGTTCTGACCTGCATGTACCGTCCTCCAACCCAAAGCCAAACGAGTCAGATGAACTGGAGAAAGCTGAAGAACAAAAGCTATCCAATGCAGTAGAAAATGGAATTGAACCTATAGCTGGAGACAGGGATGAAGTAATGGTGGAGGTTGAAGAGGCCGATATGAATGATGATATGACGATGGACATGGAAACTTTTGAAGAAATAGTTGGATCATCTGAGACAAATAATGCTCCAAACAGTAATTCTTAGCTTTCTTGGCACACCTTAAAGCTAGCTGCTGTAGTTCGGCTAATCTTTTCATAGTGAGGGAGACATGGGTGGTAATCCATAGTTCTTTGATATATCAATTTGTTCAATCCCAATATAATTCCGTTCGGATGTGTTATCTTACACTTGGGAGAGGAATGGGTGGTTAGTTGCAACTTGGAATTAGCCTACAATATGAGCCTTACTATTTTGGCTTGGATGTTTTCTTGATTAAATATTTGAGTGAACCGATGTTTTTGGTTTCTTAACTTTTGATATCACAATTCTCATTTGGCTAATGAAAATGATTTGGCCCTTTGCAA ATGGAGGTGCCACCAAATGAAGATTCTGATCTCCCAGCTTCTGTTGATACTGTTCATCAAGAACAGGATGACGTGCTGCCTGTCCCTGATACCATAAATGACGGAGTCATGGAGCAGAAGCAAGAAATCAATGAGGAAGAAGTAAGAAGTACACTGGAAGCGATTGCATCCACAGGAAAATTCTGGCATGATTGGGAGAAGTTGAAGAGCATGCTATCCTTTCAACTGAAGCAGGTGCTGTCAGAGTATCCTGAAGCAAAAGCATCCAGTGAACAACAAAGTACTTTAGGAGAAACCTTCTCAGAGCTGGTAAAGCGGTTGGATGAAGCACTTCATAGCTTCGTTGAAGGTCCTCCATTTACCCTTCAAAGGATTTGTGAGATCCTATTGGATGCATGTAGCATTTATCCCAATCTCTCAAAGCTTGCGCTAGCTCTGGAAAAGAATCTTCTGGTGACATCCACACTTGCCGTCAGTTCTGACCTGCATGTACCGTCCTCCAACCCAAAGCCAAACGAGTCAGATGAACTGGAGAAAGCTGAAGAACAAAAGCTATCCAATGCAGTAGAAAATGGAATTGAACCTATAGCTGGAGACAGGGATGAAGTAATGGTGGAGGTTGAAGAGGCCGATATGAATGATGATATGACGATGGACATGGAAACTTTTGAAGAAATAGTTGGATCATCTGAGACAAATAATGCTCCAAACAGTAATTCTTAG MEVPPNEDSDLPASVDTVHQEQDDVLPVPDTINDGVMEQKQEINEEEVRSTLEAIASTGKFWHDWEKLKSMLSFQLKQVLSEYPEAKASSEQQSTLGETFSELVKRLDEALHSFVEGPPFTLQRICEILLDACSIYPNLSKLALALEKNLLVTSTLAVSSDLHVPSSNPKPNESDELEKAEEQKLSNAVENGIEPIAGDRDEVMVEVEEADMNDDMTMDMETFEEIVGSSETNNAPNSNS Homology
BLAST of PI0006657 vs. ExPASy Swiss-Prot
Match: Q9W2U4 (Serine/threonine-protein phosphatase 4 regulatory subunit 2 OS=Drosophila melanogaster OX=7227 GN=PPP4R2r PE=1 SV=2) HSP 1 Score: 54.3 bits (129), Expect = 2.2e-06 Identity = 43/145 (29.66%), Postives = 68/145 (46.90%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy Swiss-Prot
Match: Q6DCQ0 (Serine/threonine-protein phosphatase 4 regulatory subunit 2-B OS=Xenopus laevis OX=8355 GN=ppp4r2-b PE=2 SV=1) HSP 1 Score: 52.0 bits (123), Expect = 1.1e-05 Identity = 43/151 (28.48%), Postives = 77/151 (50.99%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy Swiss-Prot
Match: Q5M7D6 (Serine/threonine-protein phosphatase 4 regulatory subunit 2-A OS=Xenopus laevis OX=8355 GN=ppp4r2-a PE=2 SV=1) HSP 1 Score: 51.6 bits (122), Expect = 1.4e-05 Identity = 43/153 (28.10%), Postives = 75/153 (49.02%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy Swiss-Prot
Match: Q5ZMU6 (Serine/threonine-protein phosphatase 4 regulatory subunit 2 OS=Gallus gallus OX=9031 GN=PPP4R2 PE=2 SV=1) HSP 1 Score: 50.4 bits (119), Expect = 3.2e-05 Identity = 36/122 (29.51%), Postives = 61/122 (50.00%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy Swiss-Prot
Match: Q5R9U6 (Serine/threonine-protein phosphatase 4 regulatory subunit 2 OS=Pongo abelii OX=9601 GN=PPP4R2 PE=2 SV=1) HSP 1 Score: 50.4 bits (119), Expect = 3.2e-05 Identity = 36/122 (29.51%), Postives = 61/122 (50.00%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy TrEMBL
Match: A0A0A0L0H6 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G092950 PE=3 SV=1) HSP 1 Score: 441.8 bits (1135), Expect = 1.8e-120 Identity = 234/240 (97.50%), Postives = 237/240 (98.75%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy TrEMBL
Match: A0A1S3CHZ8 (serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501186 PE=3 SV=1) HSP 1 Score: 425.2 bits (1092), Expect = 1.8e-115 Identity = 227/240 (94.58%), Postives = 232/240 (96.67%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy TrEMBL
Match: A0A5A7V1D0 (Serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold692G00460 PE=3 SV=1) HSP 1 Score: 425.2 bits (1092), Expect = 1.8e-115 Identity = 227/240 (94.58%), Postives = 232/240 (96.67%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy TrEMBL
Match: A0A6J1J9V8 (serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like OS=Cucurbita maxima OX=3661 GN=LOC111482606 PE=3 SV=1) HSP 1 Score: 345.9 bits (886), Expect = 1.4e-91 Identity = 197/242 (81.40%), Postives = 210/242 (86.78%), Query Frame = 0
BLAST of PI0006657 vs. ExPASy TrEMBL
Match: A0A6J1E6V6 (serine/threonine-protein phosphatase 4 regulatory subunit 2-like isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111430495 PE=3 SV=1) HSP 1 Score: 345.9 bits (886), Expect = 1.4e-91 Identity = 197/242 (81.40%), Postives = 211/242 (87.19%), Query Frame = 0
BLAST of PI0006657 vs. NCBI nr
Match: XP_011653338.1 (serine/threonine-protein phosphatase 4 regulatory subunit 2 [Cucumis sativus] >XP_011653339.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 [Cucumis sativus] >XP_011653340.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 [Cucumis sativus] >XP_031739789.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 [Cucumis sativus] >XP_031739790.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 [Cucumis sativus] >KGN53631.1 hypothetical protein Csa_014711 [Cucumis sativus]) HSP 1 Score: 441.8 bits (1135), Expect = 3.7e-120 Identity = 234/240 (97.50%), Postives = 237/240 (98.75%), Query Frame = 0
BLAST of PI0006657 vs. NCBI nr
Match: XP_008462921.1 (PREDICTED: serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo] >XP_008462922.1 PREDICTED: serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo] >XP_016902951.1 PREDICTED: serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo] >XP_016902952.1 PREDICTED: serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo] >KAA0061358.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo var. makuwa] >TYK14714.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 425.2 bits (1092), Expect = 3.6e-115 Identity = 227/240 (94.58%), Postives = 232/240 (96.67%), Query Frame = 0
BLAST of PI0006657 vs. NCBI nr
Match: XP_038904931.1 (serine/threonine-protein phosphatase 4 regulatory subunit 2 [Benincasa hispida] >XP_038904932.1 serine/threonine-protein phosphatase 4 regulatory subunit 2 [Benincasa hispida]) HSP 1 Score: 382.1 bits (980), Expect = 3.5e-102 Identity = 210/241 (87.14%), Postives = 219/241 (90.87%), Query Frame = 0
BLAST of PI0006657 vs. NCBI nr
Match: XP_022922518.1 (serine/threonine-protein phosphatase 4 regulatory subunit 2-like isoform X1 [Cucurbita moschata]) HSP 1 Score: 345.9 bits (886), Expect = 2.8e-91 Identity = 197/242 (81.40%), Postives = 211/242 (87.19%), Query Frame = 0
BLAST of PI0006657 vs. NCBI nr
Match: XP_022984225.1 (serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima] >XP_022984226.1 serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima] >XP_022984227.1 serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima] >XP_022984228.1 serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima] >XP_022984229.1 serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima] >XP_022984230.1 serine/threonine-protein phosphatase 4 regulatory subunit 2-B-like [Cucurbita maxima]) HSP 1 Score: 345.9 bits (886), Expect = 2.8e-91 Identity = 197/242 (81.40%), Postives = 210/242 (86.78%), Query Frame = 0
BLAST of PI0006657 vs. TAIR 10
Match: AT5G17070.1 (CONTAINS InterPro DOMAIN/s: Protein phosphatase 4 core regulatory subunit R2 (InterPro:IPR015267); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 196.4 bits (498), Expect = 2.6e-50 Identity = 117/210 (55.71%), Postives = 150/210 (71.43%), 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
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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