PI0005147 (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.AATGTATCCTACGGTTCCTCGCACTTTTGTTCACTTCCCACCCGACCTTTGCCACAGCGCACACCGCCGCTAACCCACCGGGAATTTTCTTTCTTCTCCCTCGCTCTCCAGCGGCAGCCACACCAACCTTACATTTTGCTGCACACTGTCACCAACCTCACTGCCACGCCCACCTTTGATTTCTAAGGGTTAGTGAGCTCGTTCTTATGCTAATGGCGTCCAAACTTCTTATTCGTACGGGAAATTCTTTGATGAATCGATTGCGATTAAGCTCAGCGCCTCAGAATAACAGGATTTGGGGTAACCAAGCTCTGTCCCATGGCCATGGCGTTGAAGTCACTCCGATGCTTTTTCCTTCAGTCTCTAAGCACCAGACTGCTCATCCTTTGCAGCAGAATGACACCGAATCGTTGAGGCAGCTCCAATCGGAAGGCATTTTCTTTCCTTTTGGGCTTCCGTCGCTCCGGTTCTTTTTGCCTGACGGTATGCTTCTTTTTCTTTTCTTACTTTGCTTGAACTGGTTTTGAAAGTCAATTTATAGTGTATGTGGATTCTGATGCGTGTTAATGTCCCGTATGAGTTAGTAGCATGCTTTTTCACACTGCATCTTTTTGTGGTAGTTTCTAGTTTCAATTAACTGCCTTATATAATCATAAGTGAAAGTGGGATTGTCAAGTATTTCTGCGGCATAACTTTTTGCCTCTCTTGAGGATATGAGAAAATGTAGGGTGCTAGAACTATTAGCCAGTCACTCAAGCTTCAGAAATGGCTGCTCAATTAGTCTTGAGAACCTTCTTGGCAGTGAAGATACTTGCCTGCCAGCGTCACTTTGATCATGCTGAAGGATATCTACTTATTCTGTAAGGAACTGACTTCGGTTCTGGAAAATATCATGTGAAACATGCTTGTCAGTTGAAAGTATGATATTGCAGCTCGATTTTCCCGTAATTCTGGATTTCATTTTATTTTTACCTTTCTTTTATGGGTCTTGCATGGGAGGATTAACACTGTTTCCATGCTGTTGAGCTCTAAGTGGTCTGTTATGTATAGTTTTATTTTTCATTGTCTGATAAGGAAACACAAGAGGTTATGACTCTCCTTTCTTTAATCGGGAAGTTCAAGAATAGACTAGGGAGAAGAGATGTTTGTTTCTGGATCCTGGCTTTTCTTGTAGCTCCTTTCTTCAATGTTTGTTGGGCCCTTATCTCTTTAGGGAATTTTCTTTTTCTCTTATTTGGAAGGTGAACAGTCCAAAAACGGTGAAGTTATTTGTTTGACAAGAAGACACCTTCGCTGGTTGGTCCATTTTGGAGGACCTGAATCATTTATGTTGGAATTGTGATTATACTTTGTTCGTATTGGATTACTTCTTTGGTTTTCTTGGGGGATAGAAACAATTACTTTCATTGAGAAAAAAAGGATGAAAGAATACAAGAGCCAACGAACAAACCATGTCCACAAAATCCCCATTAAAGAAAATGAGTCCAACTAAGTAAAATATTTCCCAAAAAGTAGTTACGGAAGGTCTTCAAAGTTGAAATTTGGAAAGGGAGACATGAAACTTTACCAAGGATTGAACATCACTAGGGTCCCCTTCCACCCCTCTAAACACTCTGTGATCTTTCTCTCCCCATAAATCCCATAGTAAATTGCACTCTGTTACTTCTTTGGTGTGTTTGGGCTTCAACTTGCCCTACATAGAGCCTTTAGAGATATGATCGAGGAGTTCCTCCTCCATCTACATTCTTGAAGGGGAGTTTACTATGGCAAGCCAGGGTTTGTTTTGTATTGTCGGGGCTGGGGTTGGGGCTGGGGGGGGGGGGGGGGGGAAACTATAGAATTTTCAGAAAGGTTGGTAGAGAGTTTTTTGCTGTTTGTAATTATTCAATTGATTGAAGCTTCTTCTTGTAGGATTCTTCCTTTTGTGGGTTTTTTAATGCCCTTGTATTTTTTCATTATTTTTCAATAAAACTTTGTCTTTTATCCAAAAGAAAGTAAAAGGTGGTGTGTTATGCAAATATGCTTTTGATGATAATGTACTTTGGAGACATATCTTAGCCACCTTGATTTAGGGTGTTCTTTGGGCAACTCCGGTGTTCCCTCTAGTAAATTTATGAGGAACTTTGTGGAAAGTGTCCTTCCTTGCTCTCCTTTTTCCTTTTCTTAGTAAACAATTGCTTTCATTAAAAAAAATGAAGGAATACAAGGGTATACAAAAAACCAAGCCCTCAAAAACCTCTCGAGAAAGGGTTTCCAACTAAATAAGATATTTCCTTTTTTGTGGCTTGTTGGGTGTGTGTGCCGTGTTTTGGGATATTTGGGGGGAGAAGAATGATCGGGTGTTTAAAGGTATGGAAAGGGACCCAACCTTGTGAGGTTTGGTTCTTAACTAGATTTAATGTGTTCCTTTGGGCTTCAGTTTCGAAGACCTTTTGTAACTATTCCCTTAGTAACATTTTACTTAGTTGGAACCTCTTGTTTTAGTTGAAGTGTTTTGGTGCACTTGTTTTCTTGTATGCCCTTGTATTCTTTCATTTTTTCTCAATAAACGTTGGTGAGGTTCCATGCCTCATTGGGGTCCCCCTATCCACACCTCTAAACACTTTGGTTTTTCTCTCCCAGTGTTCTAAAAAGCCCTCTCGGGGGCGCGCGCCTATGCCTTATAAAGGTGAGGCTCACAAAATAAGGCGCACCTCAAGCCGCGCCTTTTGTGAAGCCCCAAGGCTCAAAGCCCTGCGCTTTGGGGCTTTTTTAGTTTTCTAAAGAAATAGTAATAATTAAGGATTTTCCTTAATTATTAACTAGAAGAATCAAGTTTACTAAGCCTAAATGCAAAAATTCATATGTTTGAGGTCTTTTTTTTTCCATATTTTCACTTCAACTATGCTTTCTCTTTTTAATGTAATATTTTTATATGTATTGCGCCTAAAAAAAAGCCCACGCCTTTATGCGCAACACTTGTGATGAAAAGAATTTAGTTTCCTTTGGAATCTTAATTCTTCTTAAAACATCAAAGACCAACTCCCAAGCAGGAGAGAAATCCAATAAAATCCTAAAGAAGACTTACAAGAGAAAACCTCCAAAGGATTAAGACTCCAAACACGAGTAGCTTGTCTCCATGCAATAAGTTGAAACCCTCAATTAAAGCAAGAAGTGAGGTGAGGTCACCTTCATCGTTTCTCTAGTGGAGAAAGAGCATAAAAAACCAAAGGAAAAAGACACAGAACTCCCAAGCCAAACCAAAAATTTAGATACCTGAAGAATTTTGAAGGTCAAATGATATAACCAAGGAAACACAGAAAAGAGTTGCCGTTTCCTTGCCCAATGATCTTCTCAAAAATATGATTCCTTCCTTTCCCCCACAACACAAAAGACCAGATGGGAAAAGGAAGGGAGCTCAAAAGAGATCTCTTTCCACAGATGTCGAAGCATGCCTCTAACTCCTTTCGCCAACCATTCCAAGGGGTGAGGACCATTTTTACTCACTATTTTGTGGTATATCTAACCGCAGGGAAATTGGAGAATCTTTATCCGCACTTGAAGCACAAGTGTTTTGTGGCGAAGTAATGATAGGATTGGGAGTAGGGAAAATATGGCAATTAGGAGGGTGATTTATTGGGTGTTTCTCAGGGAGATGTATCAATAAATGAAAGTAGGAAAAATGTGGGGGACTTGTTAGAGGTATATGGGTAAGATTAGTATAGTTTTAGTAAGGGATTAGGGGTAATTAAGGACCTTGGCGGTGTGAAGAATTTGGGTAGTGTCCTTTGTAGGACTTTGGGAGAGAGGTAGCCCTCTCAAAAAGGCTATTATATTTTAATTTCTTTACCAATTGCAATATAGTTATCTCTAGTGTTTACTAGGAATTGGTAATGGGCTCTGTTGCTTGGATTTCTGAAAAAAAATTTCCAGTGTAGTTTGTTCATATTGTATCTATTTTCTATTTTAGAAAGCTGTTTGAAGAGTGAGTTTTTATCTTCTCACCTTTATTCATTCTCTCATTGATGCCAACTTAAAAATACATCATATAAAGATTAGTGTATACGCAGGAGAATCAAGTTAAAGTGCTGGGTACAACAGCTGTGCTTATTTTTAGTGTTTACTTTATTTTTTGTCTGTTCCTATCAAATTGTCATAAGAGCACATTTGTTCTAGGAGCATCAATTTTGACCATAGATTTGGATCTAGAAGTGCTCAATTGTGTGTTAGAGAAGTTGTTGCATGATATTGGGGGTATGGACGGAGTTGTATTGATATCGAATGCAAAAGAGTTTAAGGTTCCAATCAATGAAGCATGGACATGTACAGTGAAAGAGAAAAACAAAATGAATGACAACTATCAAGGCAATGAAAGAAAACGAGAGTAAGAAAATGTCTATTGGATCAAAGATTAGCCACAACTTTGTTTAGAAACTATCAAATCATAAGCGGTATTGAATTGTGGCTTGAAGGCGTCAATATGAGTCGAGAACACCTAAAAGAACTAAAGGGTAAACCAATCGACAAGGCAAAAGAGAAGGAAGGAAAGAAGAATGATGCAAGAGGAGGGTGAACCTACTGACAAAGCTTTGGTTGGAGAGACAATGTAATGTGCAAAGGGAAAATTATCTGGTGGTTAAATGGTTGGAAAAAATGGGATGGCAGGTGGAAGAAGTAACAAATGCAAGCGTTGTCGGAGATGAAGTTTATTGGAAAGCACCGTTGCTAGTTTCATGAGGAGAGCATGAAAGAAATTAGAGAGGGACAACCATGAAGGAACCTGTAAGGCCACCAATAGTTCATACTTATAGAAGAAAAGGGAATAAGGGGCAAAAGAGACATTATTCGGCAAACAAATGATGAGGGAAGGATTGAGGAGGGGATTGTGCCAGATGGGACCCACGGGTAGGAGAGAGAGTGCTATAACTGTATCCTTTTCGGGATTGGGGGATTAGGTTATCTTTAGGTAAAGGCTGCGTATAGCAGAAGGGTTCTCAGCCACCTTTGTAAAGGTGCTGGGTATGTTCTTGCATTATTACTGTTCTTCTTTTGTTATTTCTTGTGGAACTGTGTTATTTTGGCTGAAAGTTATATAAATAACAGAGTGCTGCCTCTGTTTTAGCCCTTTGTTAGGATTTTGGTGTTTTATTCAAATAGAATCTTAACAAATAGATGGAAGAAAGGTTAGAGGGAACGGAAAAGGTCAGAGCCAAGAATTCTGGGGGTGTTCACGCGTTTGATGGCTCAAAAATAGATGGAACAAAGGTTAGAGGGAACGGAAAAGGAAGTTTTGGGATTAAAGGAGATGATGCTGGATCTCAAGAAGGCCGTAGACCGGTTAGCCGAAGATATGAGGGGAAATAACAACACTAAACAGAGGGAAGAGTCATGTGTGTCTAATGGATCATCTTTGAAATTGAAAGGAAAAAGGGAGGAACTAGAGACGGTGATTGAGCTAGGAACAACCTTAGTAGACGGAAGCAAATACAAAAAGCTGGAGATGCCGATGTTTTTAGGAGAGAATCTTGAATCTTGGGTGTATAGAGCAGAGCATTTCTTTGAAATCAATGATCTGTCAGAGTCTGAAAAGGTCAAGGTGGCAGTCGTGAGTTTTGGGCAAGATGAAGTGGATTGGTTTAGATGGAGCAACAATAGAAAGAAAGTGGAATCATGGAGGACCTGAAGATGAGAATGTTCGATTGTTTTCGTGACACTGGGTAGGGGAGTTTAGGAGCTAGATTAATTCGTATTCAACAAGAAGGAACATATAGTGAATATGTAAAGAAGTTCGTGAATTATTCAGCCCCTCTACCGGACATGGCAGAAAGTGTATTGATGGATGCCTTTGTGACCGGGTTGGAACCATCTTTACAGGCTGAAGTGGTTAGTAGACACCCTAAATTGGAAGCATGTATGCGAGAGGCACAGTTGGTCAGCGATAGACATTTAGCCTTGCAATTAGCAAGGGCAGAGAAAGGAGTTGGCGAAACCAGAGGAGGACCCACTCAAGGGAGTAAGAACCAGAGAGAGTTTGAAAGAGGAAATTTCAAGAAAAATGAGTTCCCAATAAAACAAGTGACCATTCCTATCAAAGGGAAATTACATAAGGGGAGAACCAACGGTAAAGAGACTTTCTGATGTGGAATTCCGGGCTCGATTGGATAAGGGACTGTGTTTCAGATGCAATGAGAAATACTCCCCTACTCATCGTTGTAAAGTAAAGGAAAAAAGAGAGCTCATGCTGTTTGTTTGTAATGAAGAAGAAGGATCAGAAGGAGAAGAAAGAGAGGTGGAAGAGGAAGAAGAAACAGTGGAGTTGAAAAATTTAGAAGTTCCTACTAGAACCGAAATGAAGCTGAAGACTATAATGGGTTTTGAAGCAAAAGGGACCATGAAGATGAAAGGTACGCTCAAAGGAAAGGAAGTCGTTGTCCTCATTGACAGCGGGGCCACTCATAATTTGTGCATTAGGCGTTGGTAGACGAGTTGGGCTTAGTGATAGTTCGAGGAACTACTTTTGAAGTAACCATTGGAGATGGAACGGACAGAAGAGGGAAATAACTGTGCAAGAAGGTGGAACTAAAGTTAGCAGAGTTGACCATCATTGCAGACTTCTTAGCCGTGGAGTTAGGGAAAGTGGATATCATCCTAGGAATGAAATGGCTATGTACCACGGGATTCATGAGTGTACATTGGCCATCACAAACAATGGCTTTCATGACTGAAGGGAAAGTGACCATATTAAAGGGTGATCCTTCATTGATTAAAGCAGAATGTTCCTTGAAAACTCTTGAGAATATATGGGAAGACGATGACCCGGGCTTCCTGTTAGAAGTACAAAATTTGGAAGGAGAGGAGGAGGGAAGTTCTAAGGGGGAACCAATAGAAAAAGGAGAGGAGAAAAACCTACCTATGATTCAAGCCTTACTGAAACAGTACCAAGATCTTTTTGCTACACCCACCAAACTTCCACCCAAAAGAGAAGTGGATCATCACATCATGACCTTACCTGAGCAAAAGCCAGTCAATGTTCGACCGTACAAGTATGGACACATTCAGAAGGATGAGATTGAGAAACTTGTCATTGAAATGTTACAAGCCGGAGTGATAAGTCCCAGCCGCAGTCCTTTCTCAAGCCCTGTGCTGTTGGTTAAAAAGAAAGATGGTGGATGGAGGTTTTGTGTCGACTATAGGAAACTCAACAAGATTACAGTATCAGAAAAATTCCCCATCCTAGTTATTGAGGAACTCCTAGATGAACTTCATGGAGCATCCATTTTCTCCAAGTTAGATTTAAATTCAGGATATCATCAAATCAGAATGAAGGAGGAAAACATAGAAAAAACAGCTTTCAGGACACACGAGGGCCACTACGAATTCTTGGTCATGCCTTTTGGTTTGACAAATGCGTCGGCCACTTTTCAGTCTCTCATGAATCAGGTATTTAGACCTTTCCTTAAACGATTTGTACTAGTTTTTTTTTATGATATACTAGTTTATAGTGCGAATGTGACTGAACACAAAAGACACTTGGGAATGGTGTTTGAGATACTTTGGGATAACTAACTATTCACCAACCGGAAGAAGTGTGTTATAGCTCACTCAAGGGTACAATATCTAGGCCACTGGATTTCCAAAAAAGGAGTAGAGGTAGATGAGGAAAAAATACGCGTAATGCTAAACTGGCCTCAACCGAAGGATGTTACTGGCCTGAGAGGGTTTTTGGGATTGACAGGATCTACGGAAAATTTGTGTGGAGATATGGAGAAATTTCAGCTCCCTTGACTAAGCTATTGAAAAAGAATGCGTTCAGATGGAGTGAGGAAGCCACAGAAGCTTTTGAAAACCTTAAAAATGCTATGGTAACTATCCCTGTGCTAGCATTACCGGACTGGTCCCTCCCATTCATCATCGAAACTGATGCTTCAGGATTTGGACTAGGGGCAGTACTTTCACAGCAAGGTCACCCTATTGCCTTCTTTAGCCAACAGTTATCCCAAGAGCTCAAGCCAAATCCATCTATGAGAGAATTAATGGTCGTGGTTCTTTCAGTCCAGAAATGGAGACACTACCTTTTAGGTAGGAAGTTCACTGTCATCTCTGATCAGAAAGCCCATAAATTCCTCTTGGAGCAAAGAGAGGTCCAGCCTCAATTCCAAAAGTGGCTTACTAAATTATTGGGTTATGATTTCGAGATCCTTTACCAACCAGGCCTCCAAAACAAAGCAATGGATGCCCTATCCAGACTAGAACCAGATCCTGAGTTGAGACTTATAACAACTCCAGGGATTGTGGACTTAGTAGTGGCCATGAGAGAGGTTGAAAAAGACAACGAATTGCAGAAGTTGATTGAGAACTTACAGAAACGCCCAGAGGAGGCCAGCAAATACCAGTGGGAGAATGAAAGACTATTGTATAAGGGAAGATTGGTACTATCCAAACAGTCAGTACTCATTCCCACCCTGCTACACACATTCCATGATTCCATCCTTGGAGGTCATTCAGGGTTCTTATGCACTTATAAAAGAATGAGTGGGGAACTGTATTGGAAGGGTATGAAGGCTGATGTGCAGAAATATGTAGAGAAGTGTCATATTTGCCAACGAAATAAGACAGAAGCTACGCGACCAGCTGGTCTATTACAACCTATTCCTATACCGGAATGAATACTAGAAGATTGGTCTATGGACTTTGTGGAAGGACTACCAATAACTGGAGGGATGAATGCGATATTAGTGGTGGTGGATAGGTTAAGTAAGTATGCCTACTTTATTTCACTCAAACACCCTTTTTTGGCCAAACATGTTGCAGAAGTATTCATTGACAAAGTGGTCCGAAAGCATGGAATTCCTAAGTCTATGATTACTGGCCGGGATAAGATTTTTCTTAGTAACTTTTGGAAGGAATTGTTTTCCACCATGGGGACATCTTTGAAGAGGAGCACGACTTTCTACCCACAAACGGATGGTCAAACAGAGAGAGTAAACCGTTGCCTTGAAACATACTTGAGGTGAGCAAATGGTTGAAATTTATCCCTTGGGCCGAACTGTGGTATAACACCACTTTCCAGGCATCAACAAAATCCACCCTTTCCAATTTGTTTTCGGCAGACCACCACCACCCCTCATTTCATATGGAGACACTAAGTCAACCAACAATGAAGTGGAAGAGTTACTCAAGGAAAGAGATTTAGCCATCAGTGCACTAAAGGAGAACTTACAAGTGGCCTTGAACAAGATGAAGAAAATGGCTGACATGAAAAGAAGAGAATTAAAATTCAATATAGGAGATGAAGTATTTTTTAAACTGAGACCTTATCGGCAGAGATCTTTGGCCAGGAAAAGGAGTGAAAAACTAGCTCCGAGGTTTTATGGACCCTACAGAATCATTGAGGAAATTGGGGAATTTGCTTACAGATTACAGCTACTACCAGAGGCAAAGATCCACAACGTTTTGATGTGTCACAATTGAAACTCAGATTGGGAGAAAGACAAAATGTACAGCATCAACCATCAGTTTTGACTGAAGAATTCGAGCTACAATTGTGGCCTGAGACAATGCTAGGTGTTCGTTGGAGTAAAGAATTAGGAGCAAATGAATGGCTAGTAAAATGGAAAAATCTACTGGATTGTGATGCTACATGGGAATCAGTGTATCTAATGAACCAACAATTTCCTACATTCCACCTTGAAGACAAGGTGAATTTGGAACCGAGGGGTATTGTAAGGCTACCAATAGTTCATACTTATAGAAGAAATGGGACTAAGGGCAAAAGAGACATTATTCGGCAAGCAAATGATGAGGGAAGGATTGAGGAGGGGATCCTGCCAGATGGGGCCCACGGGTAGGAGAGAGAGTGCTATAAATGTATCCTTTTTGGGATTGGGGGATTAGGTTATCTTTAGGTAAAGGCTGCGTATAGCAGAAGGGTTCTCGGCCACCTTTGTAAAGGTGCTGGGTATGTTCTTGCATTATTACTGTTCTTCTTTTGTTATTTCTTGTGGAACTGTGTTATTTTGGCTGAAAGTTATATAAATAACAGAGTGCTGCCTCTGTTTTAGCCCTTTGTTAGGATTTTGGTGTTTTATTCAAATAGAATCTTAACAGAACCATTGAAAGATCACTATTGGCGACATGTGTAGGTGTGGCCAAAGAAGAAGTCCCAAAGAAGACAACGCTGTAGGATTCTTTTACAAGTGGGTGCCCATGATGGTAGGTTAGAAACGGAAATAAAAAGACTACTTATTTCGTAATCATGGGTTAGGTAAGTTATGTTTTATGGGACGGATTTTAACCATGGAGATGAGGTTGATTCTCTTGCAAAGTCAGAAAACAAGATTGTTTTGCAAGCTGGATTTCGGTTTGGGTTTTCTTTGTCTTAAACCCAGGACTCTACCCACTATGGTGACATGATACCATACCCATGAGAAGGAACTAACCCTAAGTGCCTGTTATTTTGCTCTTCACTCACACTGTCGACCATCTCTATCGAGCAAGTTAACGTTGCCAGTCATTACATGTGGGTAAGCAAATGCTATCTATCATCAATACCATCTACCACGTCTGTGCCTCCACCACTCACCGCCATCCATTGCTCACGATTGTCAGAGTGCTAACCATCTGTTTTCAATTTTAATTTTGTCAGTGGGTATTAAATTATGTTTTTTTTTTTGTAAAAAAATTGTATATCATTCGACCATTGCCTGATTTTGTCTTTATCATGTTTTCATAAGCACACCTTGAGGACAAGGTTCCTTTGAAGGGTGGGGTGATGTGAGACTACTAGTTAGGGGTATATGGGCAAGATTAGCATGATATTAGTAATAATTAGCAAGGGGTGTCTTGATTATAAACAGAGGGTGTTAAGGATCTTAGAGTTTATGAAGAATTTAGGTAGTGTCCTTTGTGGAACTTTGAGAGACAAGTAACCCTCTTCTATTACATTGTAATTTTTTTTACCAATATTGCAGTATAGTTATCTTTACTGTTCTTTTGTAATTTTTGTGTCCGGGTACTAAACATTGTGTTATTTTGAGTTGCTTATGAGGGGAGGCCGTAGGTGTCAAAGCTCTCATTTTCAGCCTTTCTGAGAGAAATCTCTCTTTAGCATTCTTGATGGAGGTGCACCTGAGTAAAGAAAAACTTGTTTTAGGTAGTTTGTGATTATCTTAACCTTCCTGTGGCTAGCTGTCTAAGTTATGATATATGGATTCCCTTCATTAAATAAAGCTTTGTAGATAACAATTTTTTGGGCTCAGATGATAGTTTAATCTGTTGTTGCTTTTTTGTATTATTATTTTTACAAAATTAAGGCACAATGTTTTGTTTTTGCAGGAGATGCTTCTTCAACACAAGAACCGATGCTCTTATTTCCCAAAAGGACATTTCAACCTAGCACCATCAGGCGAAAAAGGAATCATGGTTTTTTTGCTCGGTATCTCTCCATTGGCTTTTCTGCATGTATATTCTTTTATGTAATGTTCTTACAAAGGAGAGTCTGTAGTTTGCAAATAACGTTATTATTTGCTTAAGCATGCCCTATTAAGTTTTGTGGTAAAGTTCTTTTTTGAGGAAGAAACATGAAGAACTTCATTGATGAATGAAGTGAAAAAAAAGGGGTACAAAAACACTCCCAATCAGCTATAGGCATAGGTGGATTACAAGAACACTCCCATTTGAAAGGCTAAAAGCTCCCGAAGGATGTTAGCTAATAAAGAAAGAATGTTAGAAGTAACCAAATCCTCAACAGTATTAAAGGTGAAGTGACCATTTTTTGAAAATCCACCCATTTCTCTCACGGCGAAGGGTCCAAAAGAATGATTTGTAGAAAGCAAGCCAGAGGGTCTTCTTTTCTCAAAGGGTATCCTAACAAGCCAAAAGATAAAAAATAGTTATAGCCTGGGCATGGCCAAATTCCACCCAGAAGCTCTAACATAAAAGGAAAATCCACCCATTTTGTAGGGAAGTACGAAAGGAAAACAAACTGAAAAGATGTGCTAGAGGGTCGGCATTCGTGTTACACATAACACACCAAGAGTGAGGAGAGAAATGAGGCATCCTTCTTTAAAAACGCTTTGGCATATTAATCTCCACTGACAATTCTCAAAGAAAATTTGAATTTTCTTAGGATATGGCTCTTTCCATATGATCAAATAAAGATTGGTTGTTAATGAGCCATTGACATGTACCAAATCTTCCATTAAAGAACTAATGGAGGACTTCTTTGTGGAGTCTAAGAGGCCTACACCAAAATTACTCACTTTAGTTAGATTGATAGTAGAAAGGTGGAAGAGACTAGCCCACACCAATATTTCCTCATCCTTAAAAGACCCAAGTCCCAGGCTAGATGTATGGAGTTACACTACACTGCTTTAATGTCCCTAGAGGCCTACAGGATAGCCTATTTAACCGCAGAAAGGAAAATGCAATAACACTACAATCAAACCATAAATTAGTTCAAAAAGAAAGTATGATAACGACTGTCAATCTTCCTTTGTAAACAATCGTTAATCAGTTGGACAGTAGTGCATATAAATCTCCAAGGTGTCTTACGATGACTTCTAACTATAGAAGCCGGCCAAATAAAATCTGACACTGCATTATAGTACTTGGCCTTGATAGTCTGGCGCCAAAGAGTGTTTTCTTCAGGTAGAAACCTCCAAAGCCATATAGCAAGGGGAACATCATTCTTAGGCTTTATTTTACGTTTACCAATGCCAAGGCCATCCACGAATTAGGAAAGATAAATTGTTGTCTCAATAAGTATTATGTAATACGTTATCACCACTGTATGCTTCCCAAAATAAAAAAAAATAATAAATAATAAAAAATAAAAATAAATAAATAAATCTCTAAAGAGCTTCTCCATGGCTTTTGTAACCTTGTTGGTTATTTAAACATTGAAAGAAAGTGGATAGGCATATCAGAAAATGTGCCTGGAAATTGGAATGTGTGTATGCCAACCACTACCCTTAGAAACGTACGCATGTTTTCAATTATGAAGCTTGAAGTGAATTCTTACATTAACCAGCGGCCAAAAGATTGAACTACTCTTTCGCTTACTACCCAATGGGAGACAAAAATAGTTGGAAGGCCAAGTACCTAGCTTACAACCAAATTTCCCGTTCAAAAAAGACAATTCTGACTGATTATCATGAATGCCAACATTTCACTCATGCCATAGTTTATTTTCAACCCTGAAGTGGCATCATAGGTTGTCCAGCTTCCTTAATGTAACTAGCTTATCTGCATTGATTATTTGGAGTGAAGAAAAAAAGTTACCAGCCTACAAAAATTAGTTTAGTTGGCTAGATTAGCTTTAGAAGGGAATGTAACAAATCATTTCATAAATGCATCCTTAACAAAAAAAAATTGCAGAATGTGCATTAAAAATCGGTCGTTTTCTTTGAACAGCAAAGCAACCAAGGGTGGACGGAAAGTCATTGCTCGAAGGATTGCAAAGGGGCGGTCAAGAATAACTGCATAATGTTCCATCCCAAGTCAGGTCCATTTGAATTGCCCTGCCAATATCTTGTTGTGTTAGTTTTTTTAATTTAAAATTAACTCAATAGAATGGTATCACTGGCTGAATTATCCCCTTTTGTCGGTTTTCTTCTTAGGCCTCGGAATACAGTTTGTATAAACTTCTGTTTTTAGAATTACCATGCATTAAACCTTCCATATTGAAGTTTCCGTTACTCTTAATCTTTATTTCTTTCTTAACTTAGCTAGAGAATAGTTTACTTTTGGTTCATGGTGGCTGTTGATGCTTGCTCCTGAGCAAATAAACAGAACTCAAGTCTGTGAAAGTTGCAAAAAGGAAGAGGATGTGATTTTTTAAGTCATTTTAGGACTAAAATCGTTACTTATCCGAATTTCCTTTGGTTTTAATATTATTTTCTCATAAAAAATAAATTATAAATAGGCCAAATTGCAAAAACCACCTTCAAAGTATGGGTAGTACTTGTAAAGTTGCAATCACATGTCAAATTTCCAATTGTAAAAATTGAACCCTCGACTTGTATGATTGAAGAAATGG AATGTATCCTACGGTTCCTCGCACTTTTGTTCACTTCCCACCCGACCTTTGCCACAGCGCACACCGCCGCTAACCCACCGGGAATTTTCTTTCTTCTCCCTCGCTCTCCAGCGGCAGCCACACCAACCTTACATTTTGCTGCACACTGTCACCAACCTCACTGCCACGCCCACCTTTGATTTCTAAGGGTTAGTGAGCTCGTTCTTATGCTAATGGCGTCCAAACTTCTTATTCGTACGGGAAATTCTTTGATGAATCGATTGCGATTAAGCTCAGCGCCTCAGAATAACAGGATTTGGGGTAACCAAGCTCTGTCCCATGGCCATGGCGTTGAAGTCACTCCGATGCTTTTTCCTTCAGTCTCTAAGCACCAGACTGCTCATCCTTTGCAGCAGAATGACACCGAATCGTTGAGGCAGCTCCAATCGGAAGGCATTTTCTTTCCTTTTGGGCTTCCGTCGCTCCGGTTCTTTTTGCCTGACGGAGATGCTTCTTCAACACAAGAACCGATGCTCTTATTTCCCAAAAGGACATTTCAACCTAGCACCATCAGGCGAAAAAGGAATCATGGTTTTTTTGCTCGCAAAGCAACCAAGGGTGGACGGAAAGTCATTGCTCGAAGGATTGCAAAGGGGCGGTCAAGAATAACTGCATAATGTTCCATCCCAAGTCAGGTCCATTTGAATTGCCCTGCCAATATCTTGTTGTGTTAGTTTTTTTAATTTAAAATTAACTCAATAGAATGGTATCACTGGCTGAATTATCCCCTTTTGTCGGTTTTCTTCTTAGGCCTCGGAATACAGTTTGTATAAACTTCTGTTTTTAGAATTACCATGCATTAAACCTTCCATATTGAAGTTTCCGTTACTCTTAATCTTTATTTCTTTCTTAACTTAGCTAGAGAATAGTTTACTTTTGGTTCATGGTGGCTGTTGATGCTTGCTCCTGAGCAAATAAACAGAACTCAAGTCTGTGAAAGTTGCAAAAAGGAAGAGGATGTGATTTTTTAAGTCATTTTAGGACTAAAATCGTTACTTATCCGAATTTCCTTTGGTTTTAATATTATTTTCTCATAAAAAATAAATTATAAATAGGCCAAATTGCAAAAACCACCTTCAAAGTATGGGTAGTACTTGTAAAGTTGCAATCACATGTCAAATTTCCAATTGTAAAAATTGAACCCTCGACTTGTATGATTGAAGAAATGG ATGCTAATGGCGTCCAAACTTCTTATTCGTACGGGAAATTCTTTGATGAATCGATTGCGATTAAGCTCAGCGCCTCAGAATAACAGGATTTGGGGTAACCAAGCTCTGTCCCATGGCCATGGCGTTGAAGTCACTCCGATGCTTTTTCCTTCAGTCTCTAAGCACCAGACTGCTCATCCTTTGCAGCAGAATGACACCGAATCGTTGAGGCAGCTCCAATCGGAAGGCATTTTCTTTCCTTTTGGGCTTCCGTCGCTCCGGTTCTTTTTGCCTGACGGAGATGCTTCTTCAACACAAGAACCGATGCTCTTATTTCCCAAAAGGACATTTCAACCTAGCACCATCAGGCGAAAAAGGAATCATGGTTTTTTTGCTCGCAAAGCAACCAAGGGTGGACGGAAAGTCATTGCTCGAAGGATTGCAAAGGGGCGGTCAAGAATAACTGCATAA MLMASKLLIRTGNSLMNRLRLSSAPQNNRIWGNQALSHGHGVEVTPMLFPSVSKHQTAHPLQQNDTESLRQLQSEGIFFPFGLPSLRFFLPDGDASSTQEPMLLFPKRTFQPSTIRRKRNHGFFARKATKGGRKVIARRIAKGRSRITA Homology
BLAST of PI0005147 vs. ExPASy Swiss-Prot
Match: Q47U32 (50S ribosomal protein L34 OS=Colwellia psychrerythraea (strain 34H / ATCC BAA-681) OX=167879 GN=rpmH PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.0e-09 Identity = 32/43 (74.42%), Postives = 37/43 (86.05%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy Swiss-Prot
Match: Q15MS4 (50S ribosomal protein L34 OS=Pseudoalteromonas atlantica (strain T6c / ATCC BAA-1087) OX=342610 GN=rpmH PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.0e-09 Identity = 32/43 (74.42%), Postives = 37/43 (86.05%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy Swiss-Prot
Match: B0TQH4 (50S ribosomal protein L34 OS=Shewanella halifaxensis (strain HAW-EB4) OX=458817 GN=rpmH PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.0e-09 Identity = 32/43 (74.42%), Postives = 38/43 (88.37%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy Swiss-Prot
Match: A3QJT4 (50S ribosomal protein L34 OS=Shewanella loihica (strain ATCC BAA-1088 / PV-4) OX=323850 GN=rpmH PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.0e-09 Identity = 32/43 (74.42%), Postives = 38/43 (88.37%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy Swiss-Prot
Match: A8HAI3 (50S ribosomal protein L34 OS=Shewanella pealeana (strain ATCC 700345 / ANG-SQ1) OX=398579 GN=rpmH PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.0e-09 Identity = 32/43 (74.42%), Postives = 38/43 (88.37%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy TrEMBL
Match: A0A0A0LIB6 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G847215 PE=3 SV=1) HSP 1 Score: 285.4 bits (729), Expect = 1.3e-73 Identity = 145/149 (97.32%), Postives = 148/149 (99.33%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy TrEMBL
Match: A0A1S3BHV7 (uncharacterized protein LOC103490028 OS=Cucumis melo OX=3656 GN=LOC103490028 PE=3 SV=1) HSP 1 Score: 282.0 bits (720), Expect = 1.5e-72 Identity = 143/147 (97.28%), Postives = 144/147 (97.96%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy TrEMBL
Match: A0A6J1GTQ0 (uncharacterized protein LOC111457406 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111457406 PE=3 SV=1) HSP 1 Score: 265.8 bits (678), Expect = 1.1e-67 Identity = 135/147 (91.84%), Postives = 140/147 (95.24%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy TrEMBL
Match: A0A6J1IXD9 (uncharacterized protein LOC111480019 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111480019 PE=3 SV=1) HSP 1 Score: 265.4 bits (677), Expect = 1.4e-67 Identity = 135/147 (91.84%), Postives = 140/147 (95.24%), Query Frame = 0
BLAST of PI0005147 vs. ExPASy TrEMBL
Match: A0A6J1DFJ1 (uncharacterized protein LOC111020350 OS=Momordica charantia OX=3673 GN=LOC111020350 PE=3 SV=1) HSP 1 Score: 255.0 bits (650), Expect = 2.0e-64 Identity = 126/147 (85.71%), Postives = 138/147 (93.88%), Query Frame = 0
BLAST of PI0005147 vs. NCBI nr
Match: XP_004141160.2 (uncharacterized protein LOC101210601 [Cucumis sativus] >XP_031738493.1 uncharacterized protein LOC101210601 [Cucumis sativus] >KGN59796.1 hypothetical protein Csa_001175 [Cucumis sativus]) HSP 1 Score: 285.4 bits (729), Expect = 2.8e-73 Identity = 145/149 (97.32%), Postives = 148/149 (99.33%), Query Frame = 0
BLAST of PI0005147 vs. NCBI nr
Match: XP_008447614.1 (PREDICTED: uncharacterized protein LOC103490028 [Cucumis melo]) HSP 1 Score: 282.0 bits (720), Expect = 3.1e-72 Identity = 143/147 (97.28%), Postives = 144/147 (97.96%), Query Frame = 0
BLAST of PI0005147 vs. NCBI nr
Match: XP_022955352.1 (uncharacterized protein LOC111457406 isoform X2 [Cucurbita moschata] >XP_022955353.1 uncharacterized protein LOC111457406 isoform X2 [Cucurbita moschata]) HSP 1 Score: 265.8 bits (678), Expect = 2.3e-67 Identity = 135/147 (91.84%), Postives = 140/147 (95.24%), Query Frame = 0
BLAST of PI0005147 vs. NCBI nr
Match: XP_022980743.1 (uncharacterized protein LOC111480019 isoform X2 [Cucurbita maxima] >XP_022980745.1 uncharacterized protein LOC111480019 isoform X2 [Cucurbita maxima]) HSP 1 Score: 265.4 bits (677), Expect = 3.0e-67 Identity = 135/147 (91.84%), Postives = 140/147 (95.24%), Query Frame = 0
BLAST of PI0005147 vs. NCBI nr
Match: KAG6581832.1 (hypothetical protein SDJN03_21834, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 263.8 bits (673), Expect = 8.7e-67 Identity = 134/147 (91.16%), Postives = 140/147 (95.24%), Query Frame = 0
BLAST of PI0005147 vs. TAIR 10
Match: AT3G13882.1 (Ribosomal protein L34 ) HSP 1 Score: 157.5 bits (397), Expect = 8.2e-39 Identity = 90/151 (59.60%), Postives = 107/151 (70.86%), Query Frame = 0
BLAST of PI0005147 vs. TAIR 10
Match: AT3G13882.2 (Ribosomal protein L34 ) HSP 1 Score: 124.0 bits (310), Expect = 1.0e-28 Identity = 76/170 (44.71%), Postives = 90/170 (52.94%), 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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