PI0002218 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGGGAAGGAAAAGAAAGCAAAGCCATGAAGAACAAGGTTGATTTGGACAACCACGATGATGCTTCTTGGTGGTTGATTCATAAAGGAGTTAAAGCTATTTTTTTGTCCATATCTTTGTTTGCTTTGCTGGTCCGAGTGGCAGTCTCCCTTCATCCTTACTCGGGTGTGGGCAACCGTCCAAAGTATGGCGACTATGAGGCACAGAGGCATTGGATGGAAATCACCATCAACCTTCCAGCTAAGGACTGGTACCGGAACAGTACCACTAATGACCTCAACTATTGGGGACTTGATTATCCACCCCTAACAGCCTATCAGAGTTTCATTCATGGTCTTTTCCTCAAGTTATTTGATTCAGATTCAGTTTCACTGTTTACTTCGCGAGGTTATGAGTCCTATTTTGGGTGAGTATGATCATACTTTACATCTTTTAATAAATCACTCTATTTTTTTCTTCAGACTTCATTACATTTGAAGTTTTCTCCCTTTTGTTGGCTTCTTTGCAGAAAACTTCTTATGAGATGGACAGTTTTATCCTCTGATGTGCTGATTTTCTTTCCTGCAGTTTTCTATTTTGTTCTTGCATATTTTAGTGATAACTCCAGGTTTCGTAAAAGTGATATAGCATGGCAAATTGCAATCCTTCTCATCAACCCGTGTCTCATCTTAATTGATCATGGGCATTTTCAGGTTTTTACTCGTACATAGCTATGTTTTCCATGGGTTTTCTCATATATATATTTTAAAATTTTTATTTTAAATTTGGAAGCATGTTGAGTCTTCACCTTTTATCCTTTGTCACAGTATAACTGTATAAGCTTGGGCCTTACTGTGGGAGCTATTGCTGCCATATGTAGGGACAAAGATCTTGTGGGTAGTTTTCTATTTACTCTTGCTCTGAATCATAAGCAGGTACGTTTCAACTGTCTCTTCCCTAAGCATTATATCTTTACTTTTTGCTCTAAATAATAAACATATATTCTGTTTTTTTTTTGTCAATAGCGTATATGATTTTATGTTAAATGGTAGAAAAGAGAACACAAGGCTTACGTGGAAAACCCTAGAATAGAAAAAAAAACCACGATAGTCTCTTTATTATTTTCACCCACCTTGAAAGTTACAAGAAAAGACAACTTTATAATGTGTTATAGACAAATTTAAGTATTTTAAGCTGATAAAGAAAAAATAAATAACTCGACAACCCAATCCAACTCAACCCGAATTTTAAGGATTGGGTTGTCAACCTGAACAAAAGATCTCTATAACTCGACCCGACCTGACCCGACCCAACCCATGTACACTCCTACCCCACACAAGGGAGGGGGGAGGGTGGGGCTCATATAAACTTCTTATTCCAATTCACCATTTAGAAATGCATCTTTCACATCAAGTTGATGGAGAGGCCAGTCTGTATTAACTGAAAAGACCTGGACTGTGTTTAAATTCGCTAGAGGGGAGAAAATCTTAGAATAATCTATACCATAAAGTTTGGGTAAACCCTTTTGCTACAAGTCTAGCCTTGTACCTATCTAGAGTTCCATCTGATTTATACTTTAGAGTGAACACCCATTTGCACCAATTTCCATAGCTATATGTATGTTTTTCGGTATTGTTGCTGTATCAAGGCTGACAGTGAATGCTTTGAATTTAGAAGACAGATTACTGTAAGACAGAAAGCTATACATGGGGTACTTGGTGCAGGACCTGGTGCCCTTTCTCAATGCAATAGGCATGTTAGGAGAGATATCATAATCCCCTGATTTGTTTGATTCTTCATTTGTAATGGGTTTTGGATTACCTTTTCCAGCCTGATGAAGAGTCTCACCCTCTTGTGTTTCTGTCGAAGTTCTATCACTACTTGAAACCTCGTTATTCTTTGGAACTAACACATCAATCCAATCATTCTTAGCCAAATCAACAATTTCATCCTCAACACACAAGTTAGTATTATCAGGGCCAATAGTACCTCGAGCTTGTATTGGTTCAGATCCATGGACGACAAGTGGAGTAGTAGGGGACACCGTTTTTTTTTAGATTTTCCTGTAGTAAGTTATCCAAAGGACTTGTTCAGTGGGTAGAACAGTGTCATGGGCACATAGGATGGGTTTAGGAAGGTCAGTAGGGACAGAAGATGTGGACCAATTAGTCTCTTCACTTGTACTCTCCCCTGAAGATGACTAATCGGGAAGAAAGGTTGATCATGAAGAAATGTTACATTCATGGAGATGAAGTAATTTCGGGAAGAAGGGTGGAAACATTTATACCCTCGCTGGTGAAGGAGATAGATACTCAACGAAGACACATTTTTGAGCACGATGGATAAACTTAGTTTGGTTAGGGTCATGATTATGGACAAAGGGAATGCATCCAAAAACCCAGAGAGAGACATTGGGAATAAGCAGAGGGGTTTGGAGTTGGAGGACACGGGAAGGCATTCAATTAATAAGATGAGCTGAGTGAGAATTGCATCCCTCCATAAGTACAATGGAAGTGAAGTAGACATCATGAGTGATCGTGAAACCTTGAGGAGGTGACAATTTTTTCTTTCAACCACCCCATTCTGTTGAGGGGTATAAGCACACGAGCTCTGGTGGACAATGCCTTTAGAAGACAGAAAGTCATGAAGGGTATTATTAAGGAACTCACGATCACTACGAATAATAACAATTTGTGTTGAATTCAGTCTCAATAGTAGTGGAAAATTGTCGAAATATTGATGAAACCTCAGATTTATTAGTGAGGAGAAAAACCTATGTGAGACGGGTATGATCATCAATAAAGGTCACAAACCAACGTTTCCTTGAAGAGGTGGTAATACTCAAGAGACCTTAAACATCACTATGAATAAGGGTCCTATGCTGAGAAGGTTTATAAGGTTGAGACAGAAAGGTGGCTATGCTGTTTTGCATGAATGCACACATCACAAGACAAAGAAAAGACATCATCTTTATTAAATAAATGAGGAAATAAATATTTCATATATTGGAAATTCGGGTGGCCAAGGTGAAAATGTCACGATGTACAATCTTTTTCTGAAGTTGAAAAATAAGAAAACAGCAAGCTAGTCCTATAACAATTCCTAGAGGGAGCATCATTGTCAAGGAGATAGAGTCCTTTATTGTGTTGTGCGGTGCCAATTGTCTTCCCCGAGCAAGTCCTGAAAGAAAACACTATTTGGTGAGAAGGCAACTTGACAATTCAGATCTCTAGTTATCTTACTAATAGATAGTAAATTGTAAGATGTTTTGGGTACGTGCAACACATTTTGTAAAGTTAAACCATTAAAGGGAGAAATATGACCCTTGCCTAGGAGCGAAGGACCTGTCTGTCGTTCGAATCTTTTCATTACCAGCACTCGTAAGATATGATAGAAAATTATCATAGCATCCAAACAAATAATCTGTAGCTCCTGAATGAGTATCCATGGTTTCTTACCATTTATGCTGAGGAGACTTAAGGATTGAGAGGTACCTGATTGAACAATAGCCTGAAGGGAGAGACACTAGGGTAACTTTCACAATATTCGCCCGACTAGAGTTTGGCTTGTCATTTGGAGGACGTCTTCTTCCATTTGGTGGTCTACCATGTAACTTCTACCATGTAACTTCCAACACTTTTCTTTTGTATGCCAGGGTTTCTTGCAATGTTCACACACTGGGGTTTGTTTTCCATTTTGCTTGTCACTATCAGAACCAGATAATTTCTCACGGAATGTAGCAAAATCAATAGTAGATACAGTCGTGATGTTCATGGCATCGACTCTGTCTTCATCTAGTTGCACCTCAAAACTCACTTACATAAGAGAAGGTACAAGCCCCTATCTCAATATACGACTTCGCACTACGTCGAACTTGGATTTCAAACCAGCTAGGAAATCATAAACACAATTGATTGGACACCTTCACACAAACAATCCCAGATAATTTCACGACACAGATCCATCTCCTGCTAGATTAGGGACAATTTGTTAAAGTATGAAGTGACATCCATTGTCCCCTGTTTGCACTTATGAGCCTGTTTACGCAGTGTGTAAATACGAGACATATTTTGTCTTTTAGAATATAATTTCTGAACTGCGTCCCAGATATCTTGAGTAGTCGCAGCATACAACAACGATTTCCCAATCTAAGGTTCCATACTACTAATTAGCAGTGATCGAAGCAGGGAGTCTTTTCCTTTCCAAATGCGCTCCTGAGGATCCCCTGGTCTAGGTCTTTGTATCTCACTAGTTAGATACCCAAACTTGTGACGCCTCTCAAGGACCATTTTAATGGTCTAGGACCAAGGAAAATAATTTTGACCATTCAACTTTTCTCCTACAATTAACCTTGTGAAATTTTCCATAGAGTCAGACAAATAGTTTGCAGTAGTTAAAGTAGGGAAAGAGATTACCAGATTCTCTGGATACGTTGGTAGACCGGAAGGAATGTCGGAATTCACTGTACTGAAATTTAGGTTTGTGGAAGCACTTAGGGCTGTCCCAAATTCAGTGATTTGTTGCTGAAAATTTGTCTGAAAATTAGCCAACTGTTGTTGTATCATTATCAGAGATAAACTAACCGAACCTTGATGTTCATAACTAGGTGACGTGTCAGATCCCTAGATCTAACATCGAGCACAATGAGAGGTTAGCCGTGGCTTGGGGCCAAAAGGGGTTGATTGACAAGTGACATACGATTGACTGTCCAAAGACTAGGTTAGTGGAGACCAAGTCAATGCATGAAAGACCTCCACCTATCGGCAGAGGTGGGCGAGACAGGAACATTAATGTCTTGGCTTTGAGGGAGGTCGGACAGAACATGGCACCTACAAAGGAGGACATGGCGCTCGACACATTCGGTGACATCAATGTGGCTGTGCCAACCTCCTTGCGCGAAGCGGACAAAGGGTAGTGAGTGGGACAAGCGCGCACTTGTTGTGGGGCGCGTGCGCGAGACATGCGTAGGGGTGGTGAACATGAGGGGCGACCGCCACAAGGAGCGTGCGCTCGCGATGACACGCCAAGGAGGGCACACGCACACATGCCAGTAGTTCCATGGACGATATTGTCATGGGGTTGGGCAGACACGCCACCAGCCCCTCAGGCATTAAAGGTCCAATGCCCCACCGTTCGAGCAACTGTCCAAAAGAGCTTCACCTGGATACGTGGCATTATAGGAAGCGGTCATTGGAGTGACACGTGTCATCCATCCAAGGAAGCTACGAGGCGGTTAGAATGGTCATTAGTGGGAGGGAGTTATTTTGGAAGTTGAAGTCCACTACCCCATTTGATTAGCCTAGAAAATATGGTAGTTAATAAAGGAGTGGCCAAGCATGTAAAGTGGGAAAACTAACTACCCACTAAGGCCACTCCCCTAGTCTTTAGCTCCGAGTAACATCGCACGTTGTTGCACACCTAGCTTTCGCTAACCTTGCTTTGGCGCACGCCAGTGCCCTTTGGCCGCCCCATTGCGTGCACACGCTTTGCTCCCTGACTCGAATCCCGTGACATGATGCATGATGAGGAAGACCTAGTTGCTACGAGAAGCTTGTTGCCGCGGTAGGGAATTTACCTTTGTGGTAGGCAAATGACTCACTTATATCGATTTCATGGTGTATGTTTCGGCTAGGGTTTCCATCAAAGAATTGTGGCGACACTAGAATTGGATGGATATGCAAGGGCTGAAGATAGCGATCAATGGCAGCTTGGACAGTAGTGGCAATGCGGCAGCGAAAAAATCCACGGCTCCGATGACGGCGACAAGATTGGTGGAGAACTTTGGTTATCTTGCACCGCTTGGTTTTCGCCAATGGTGCTAGGTTTTCGTGACCCCTCTCTGATACCATGTAAAACGGTAGAAAAGAGAACAAAAGGTTTATGTGGAAAACCCTAGAACAAGGAGAAAAAGCCACGATAGAGTCTCTTTTATTATTTTCACACACCATAAAAGTTACAAAAGAAGACAACTTTATGGGCTCTAACCAGCCCTAATACTAAAAGGAAATAAACTTAGGTTAAAGTAAAATACTAAAACACCCTTGGGGCTATAAACTATCAACAAAGCTTTTTATTTCCAACAGATTCCATTTATGTTGGCTTGGTTTTGTTGATCTGACATATTAATTCAGTAGAATAAATACATAATATATACATCTGGAAATATCTTATATTTTCTCAGCAGTTCACCATATAGTTTTTTATCAGAACTTTTCCCAACTAATTTTTAGGTCATGAACTTGAGGACAGTGTTAAATTTATTATTTAAAATTTTGTGTATTAACCTTAACTAGAGCGAATGCTGAAGTTACTTGATGTCTTGCAGATGAGTGCATATTTTGCTCCAGCATTTTTCAGCCATCTCCTGGGTAAATGCATGAGGCGTAGAAAACCCATTGTTGAGGTGTTAAAATTGGGCGTGGTCGTCTTGGGAACTTTTGCTATTATTTGGTTGCCATACCTTCATTCAGTTGATGCCCTTTTGCAGGTACGAAGAATTGTCAAATAATGTAATCATTATTTGTGACTCTGCCAGTATACCTTCAAGAGTCAAATAATGTTCTTTATTCAGAATAAAGCAGATTTCCTTTTCTCCCCTCCTAGCCTTTTTCGTGTAGACTTCACTCTCTTCAAAATTGTTTTTGGAATGTGTTCATGATTAAGGGCTTGATAATCCTCACTATACTTTTTTTTTTTAAACGGAGACAAGCTTTTTTATTAATATAAAACTCATAGTATAAGAGAATTATACAATGAGAATAATAGGGAAATCTAAAAATAAAATTATCACCATATTGACAACTATTGTCTGGTTCAATCAACAAAATTGGGCTGAAGAAGGGCTTCAACTAATATATGCTTGTGTTGAAAGAGAGATTGTTGCCCTCTTTAGACATTCTAGAGTTCTGAGGATCTCTCGAATGTTACATGCATGCTCCCCTTTTAGCATAATAAAACACACCGGTCTCTTTTCTACCTTATCGAATTAAAGGTGGAATATGTGTTTTCTGGGAAAAAAAGGTTTGCTCTCTCCTCTCCCCTCTCTCCTCTCTCCTCTCTCCTTCCCCCTTTCCTCTTTTCCGATCACCCTTCTTCCCCCTTTGCCTCCTTCCCCGATCTGCTTCCCTTCCCGACCACTAGAATTTAGCATCCTCCAACAGTCCAGCCGTCATAAACAAGTCTTCTCTTTGTGCCCTTAGTATTTCATTTTATTATGGAAGTCAAGAGTTGCAATGTTAATGGTTTTATTTCTGCACTTGGTTTGAAGGTGGTAAGTATTTTGTGGAGGATGTAGAAAATAAAAAATCCTTGTCACTAGTCAAATCTCATTTAGATTGGTTTGTGGATTGAATTTCGGAGCTTCTGCAGATACAAGTTACTGAGTTCTTTGCTCGTAGAGCCAAGGACGATGCAAGGGTTGTTAAAATCTCCAAATTTTCTGCCTCTTGTGGATGGGTATTGAGATGCACTGTATGGCCTGAAACTGGAGGATGTTGTTACTTGCATGTTCTGGTGGGTCCGAATTAATAGGGGTGGATATCTTTTGCCAATATGATTAAAGACTTCCTTTCCATATCAACAAGCAAGGAAGACACGAAGATGAGGGGAGTTGATATGTTAGAATTGGCAGCCTTTCATCATAAAGTTGCTTCAAAGTATGGTAGCATTGAATTAAATCATTGTTCCTCTACCTCAGCTCCGGCAATACATATCACATTTCTAAAGCATGGTAAGTCATCCTTTTGGGTTCATAAGAACAGTGAGGTGCTCAGAGAATATTCTAAATAGTCTGTGGGTCATTATTCGTCTGTTTGAGTTTAATGATTGGAAAGATATTAAAATAGTGCTGGAGGATCATTTCCATTCCAAAATAACCATTAATCCTTTATCTGCGGATAAAGCAAATAATTAAATCTCCCTTATGCAATCTTAAAGACAAGGTTGAGTTCCCAGGCGAGTGGCAGAGATATGGTCTCTTCCATATATTATTTGAAAAGTGGAATGGCTCAAAACATAGTACACTAGATGTGCACGATTATTTATGGCTTGTCGGAGTGTGCGCGATTATTTGGGACATTTGGGGTGAGAGGAACGAGAGGGTGTTCTGGGGGGAGAGAGGGAGTTTAGCGAGATTTGGTCTTTGATTAGATATCATGCGTCGCTTTAGGCTTCGATTTCGAAGATCTTTTGTAACTATTCCATAGACAATATTTTACTTAGTTGGCCCCCTTTTTGTAAGTGGGGTGGCTTGTTGGACTGGTTTTTTTGTATGCCCGTGTATTCTTTCATTTTTTTTGAATGAAAGTTGTTGATTTCATAAAAGAAAAAAAAACACATAGTAGACCAGATGTTGTGAAAGGTTATGGCGGCTGGATCTCTATTAAAAACTTACCGTTGGATTATTTGAGCGTTGACGTTTTTAAAGCCATTGGAGGGTAAATTGGAGGTCATGAAAGCATCTCTTTAGAAACCATGAATCTGATTAACTGTTCGGAGGCCAAAATAAAGGTCAGTCGAAATCTTTGTGGTTTTCTGCCAGCTACAGTTGAATTACGAGATGCATTTAGAGGCAATATTTTCTTAAATTTCGGGGACATAAAAGCATTAGAAGCTCCAAAGGCCATCGAAAAAGCTTTGTTCATTGGCGACTTCAACAATCCGATTGATCTACTTAGGATAAATCAAGTTCTTTTAGACGAAGGAGAATCTCCGAATATGCTGAAACCGGAATAGGCCTTTCTTTCCTCAAAATACTCGAAACCAGGATTTTCGAGGAACCCTTTTGAAGTTTTGATGGAAAAGGAGGCTAGCTGGGCATGGAAACCCCATCATCAAGTTTCAAAGTTGCCGGAGAAACACAAATCAGTCAGTAGAGAAGTTGAGGAAGTTGAAAAGTCTAATTTATTGAAGACAGAGAAAGTTACGGCCAAGCCAAAACCATCACCCAATAAGAAATCAAAGGAAGTTGAGAAGGCGTTTTTAAGGAGGACCGAGAAAAGAGTAGATATTTTAATCAATTCGACCAATCAGTCCTCAAGCATTAATAAGGTTATTAAAGAAAAATCAAAAGTTATCTCGGGTGGAAGTCTCAATATAGAAGATCAAAATTCTAGTGGACTCAGTTCAATCATTCCTTTGTTGTTTAACAGCAGGTCATTATCCCCAGTTTCTTCCACTTAATTAGCTCCATTATCAGGCAATAGTTCTCATAATATCAAAGGTTCAACTGCCAAAAGCTCCAACAGTTATTCTTCCACTCAATCGTCCTCTTCTTCAGCCATCTCCCTTTCGGGTAGAATAAGGAGCAAAACAGGGGCACAACGAAATTCGAAAGCACAAAAAGCTTCTCTTCCTTTTAAAGCTTTTCCAAAGCACTTTGTTAGAAGAAAGAGAAAGAAGGCCGTTGCCAAGAAGATCTCATCAAAGGCCAAGCTGATTTTAGAGGTTAATCCGGATATTTTAGAAGAGAAGTGCACACAGGTTCAAGTTCCTACACAGAGTACTAGATTAGAGCCTAAAAAGTCAACACCCCCGAAGTTCCAATACTTTGTTTTCTCCCTACCTAATGCTAAGTTGAACTTTCTAAGAGGCACACCGGTTCACACTCCAATCTTTCCTCACCAGAAGAAAGGTAAAGCCGATTTGGTCTCCATAGCGGCAGACTTAGGTGTTCTCTTTCAGGGTGTTGAAGAGCCGTCAGAAGATCAGAAGATTACTAAAATCTCTTTACAATCCCAGTGCAGTGAAGTTTGCGCTCACCTGAAATCAGTGGTAGAAGACTGCAATCTTATTTTAGCTTAACTTTCAACTTTACTCTTTTTTCAAAGCAGGGGATGCTAGTATGAAAATTGTTGAGAGGATTAAAAGATCCAAAGGAGACTGAACCTCAAGAGATTCTTGAAAACACATAATCTGAAGATTGTTTTAATCCAAAGATAAAAAAAGATGAATTTGACATAGGTTTTATCAAATCAATCTGGAGCTCCAAGGAAGCAGGCTGGGATTTTGTGGAATGAGACGGATATGCGGGAAGATTGCTCACCATTTGGAAATGAGCAGATTAATTGTTTTAGAATCTTTAAAGGGAGGTTACTCTCTGACTGTCAAATGCCTCACTCTGTGTATAAAGTTTGTTGGATCACTAATATGTATATCCAATGACTAGGGAGAAATTTTTTATGGCCAGAATTACTCTCTCTGTCCCCTATTGGAAGGGCTACCAGAGGTATGAGAAAGTTCAATAATTTTATTGATAAAGCTAACCTTCTGGACTCTTAGTAATGACAGGTTCACATGTTCCCGCGAAGGCTTGGTTGCAAGGTCTTTAATGGGCAGATTTTTTATCCCCAAAGACTGGGATGATGCTTTTGAGGATTCAAGGGTCAATAGACAGTCTCGAATTTTCTCTGATCACTTCCCCTTAATTCTTGAAGTTGGTTTAATTAGTTGGGGCCCCTCTCCCTTTAGATTCTCCAACAGTTGGTTGATGGATAAAGCTTGTGTAACCGTGATCAAAAGATCTCGGAGGCAAAGTGGTGTTGCAGGGTGGGCAGGATTTGTTCTAAGTGTCAATCTCAGAAAAGTGAAAGAGGCAGTGAAAGCCTGGTTTGCTCAATTTCAGGAGAATCAGAAAAGAAGAGAAAAGGAGCTGCTTGATGAAATTGAAAGGTGGGATCTGCTGGCAGAAGAGGAGCACCTCACAGACTGGGAAAGTGATTTAAGATCTTCCTTGAAAACAGATTTAATGTCCTTGTACTGGATTGAAGAGACAAGTTTAATCCAGAAAAGTAAGCTTAATTGGCTAAAATTGGGAGACGAAAATACAAGCTTCTTCCACAGATTTTTGGCATCAAGAAAAAGAAAGGATATGTTCACAGAATTGATTGATGATCATGGCGCGTTAACTAATTCATTCAAGGAAATTGAAGGCTTAATCCTGAATTTTTATGAACAACTTTATTCAAAAAGCCCAGGCTTTGACCAGAAATGTGCAACTCGAAGGCCAAATTCAACACTCATAGCTCCTTCTTCAGAAGTGGAGATAAAGGCAGCCATCACAATGCTTGGCAAAAATAAAGCACCTGGCCCAGATCGTTTTACAGCAGAGTTTCTTTTAAAATTTTGGGGGACTATGAAGCCAAATATCCTAGCTCTCTTCAATGACTTCTATGAGAATGGAAGGTTAAATGCTTGGGTTCAAGAGAACTTCATCTGTTTAATTCAGAAAAAGGAGCTAGCAGTCGCTGTGAAAGACTATAGGCCTATTAGTTTAACTACATTGTCATACAAGGTTATTGCCAATGTCTTAGCGGAGAGACTAAAAAAGGTTATGCCATCCATCATTACTGAGACTCAGAGTGCTTTCATAGGAGGAAGAAAAATCTTGGACCCCATTCTTGTCGCTAATGAGGTAGTGGAGGAATATCGGGTTACAAAGAAGAAAGGATGGATCCTTAAACTTGACCTTGAGAAAGCATTCGATCGTGTTGACTGGGACTTTTAGAAAAAAAGTTGTAGAATCAAAAGTTTGAGCCAACTTGGATTAAATAGATTATGGGATGTGTAAAGAACCCAAGATATTCCATCTTCATCAATAGAAGACCAAGAGGAAGAATATTGGCTACTAGGGGGATTCGGCAAGGTGATCCTCTCTCACCTTTTCTTTTCCTCATGGTGAGTGAAGTTTTGGGAGCGCTTGTTGACAGAATTTACCTAAATGGTCAATATGAAGGCTTCATGGTGGGAAAAGAAGAAGTCCATGTTTCTATTCTCCAGTATGCAGATGACACCCAGTTTTGCAAATATGACAGCCAAATGTTATATAAGCTAAAACAGGTGATAGAGTTTTTTGAATGGTGTTGGGGGCAAAAGTTGAATTGGGAAAAATCAGCATTATGTGAAATTAATATAGAGGAAGACGAACTGGAGGCCATGGCTGTAAATCTGAAGTGTAAGGTGGAACATACTCCTTTCTTATAACTGGGTCTCTCATTGGAGGATTATCCAAAACAATCTTCTTTTTGGCAACCAGTAATAGATAAGATCCATGCTAAACTTGACAAATGGAAAAGATTCAATCTTTCAAGAGGGTGCCGAGCCACACTTTGTAGGTTAGTACTTTCCAGCATTCCAACTTCATGTCTTCCTTTCTAATGCCCAAAGGGGTTATATCTTCATTATATCGAATATTGAGGAATTTCTTCTGGAAAGGGCATAGCGGTGACAAAGTTAGCCACTTAATCAAGTGGAAATCGATCAGTACTTCGGCTAAGGATGGAGGCCTCAGGCTAGGGGGATTCGAAGCTAAAAATGTGGCCCTCATTGCCAAGTGGGGAGGGCGGTATTTTGAGGAAGAGGAGGCTTTATGGCACAAGGTGGTGTGTAGCATTCACAGAAAGGACTTGTTTAATTGGCACACAGCTGGAAAGGAGGGTAAAAGCTTGAGAAGCCCTTGGGTTAGTATTTCTCGCGCTTGGTTAAAAGTGGAAGCTTGGCTAAATTCAAACTTGGGAATGGTAGGCAGATCGCCTGTCAGATACATTGGAGGGAGACACCTCTTTTAATAGCCGGTTTTCAAAACTGTTTAGAATTACATCACTTCTGAAAGGATTGATTGCGAAGCATTGGGATCTAGAGTTGAACTCTTGGTCTATTAATTTTCGCCGATAACTAAAGGAAGATGAGATTGCGGAATTTCAGAGTTGATTGGTATTATTTCAGGAAGAAGAGTACTCGAGACACTTGATAAAAGAATCTGGTCTCTAGAGAGACGGTTTATTCTCGGTTAAATCTCTAACCTCTCATCTTTCACCCTCTTCCCCATTAGATAAAGTGATGTACACGACTATATGGAAGACTAAAAGCCCAAGAAGGGCGAATATTCAGGTTTGGGTTATGCTGGTTGGTCAATTGAATGTGTCTATTGTTTTGCAGAGAAAATTACCAAATAGTTGTCTTTCACCATCAATCTGCCTGTTTTGCCTCCAGCATGAAGAAGATCCTTCTCACCTCTTTTTCTTTGCTCATATGCAGCCAATTGTTGGGAAAAGCTTTTCTCCATCTTTAAAATGTGTTGTGTGTGTCACTTGGAGAGTAGAGAATCGGTTAGACAACTCTTAGGAGGGCCTCGTTTTAATAAGACTGCACAGATTCTTTGGTGGAACGCAGTCAAAGCCTTATTGGCCGATTTGTGGTTTGAAAGAAACCAAAGGACTTTCCTCAACAAATTTCTCCGTTGGTTCGAACGTTTTGTAAATGCTCATCAAAATGCCTCCTCGTGGTGCATTCTTCCTAAGGAATTCGACATGTACAGCATCTCTGAATTAAATCTGAATTGGGGTGCTTCCATTTCAGCAATCTAATCAAGGCTCAGAGTTTTTTGGTCTCTTTCCTTACTTATTGGTGCTTTTGGTCAGTCTAGTTTTGGTGTATTAGACCTTGGATCTTGGTTTTTCGATTTGCTTTATATTTGCTTGTGCTGTAGAGGCCTTCATTTGTCCTCATTTTGTATGTTCTTAGTAGTTTGTACGGATATGATTAGGACGCTAAGGGGGGTGTCAACCTAGTTGAGATATCCAAGTGCGTCTACTGATCCCTAGATTCTTATGCTCATTGTATAATTCTCTTGTACTTTGAGCTTTTGTCTCATTATTAATATTAATAAAATAGACTCGTTTCCTTAAAAAAAAAAAAAAAAAAAAAAGTGTTTGGTGGGTGGGTACGAAAACAAAACATTGTTTCTACCACTGTGGAGGCAGGAATGAAACACAACTTAAGATTTGTAGTCTAATTATTCTGACAATACAATCTTACAGTTGGTAGTACATTAGTTTATCTCCTGATTTTGTTTGCATCTGTTCTGATATTTGAAGTTTAATCCAAGTCTGGTTGGCTTAGGTTCTATCACGTCTTGCTCCCTTCGAGAGAGGATTGTATGAAGATTATGTGGCGAACTTTTGGTGTACCACGTCTGTCCTTATTAAGTGGAAGAGATTATTTTCAGTGAAATTACTGAAAATTTTCAGCTTCACTGCTACACTGTCAACTTGTTTACCTTCCATGATTCAACAGATTCGGGTCCCAAGTAACCAGGGGTTTCTTTATGGTCTTCTATGCAGTTCTTTCTCATTCTACCTGTTCTCATTTCAAGGTACTTGCTCTATCCCTCTCCCTCTCTTTCTCTCTCTCCACGAGCTAGGATGATATTTTTATGAAGATAGTCTAATTTACCGCCTCTCATTAACATTGCAGTGCATGAGAAGTCTATTCTTCTTCCTCTTCTTCCTGCAAGCATGTTGGCACTGGATGAACCTTCATTATTTATACATTTTCTACACTATGCATTGCTTTCAATGTTTCCTCTTGTAGTTCGAGACAAACTGGTTCAAGCATATCTTGCCATTTATGCTCTTACCTTCCTTATTATCAATGCATTAAATAAAGGAAAGCAAAAGGGGGAGTATTTCATTCTGCGGGGTTTTATTTGGATGCTTCCTGTTTTGTTCACTTATTCTCCACGTTGTGTACTTGGTGGTGCGGCCTCCTGAGAGGTATCCCTTTCTCTTTGAGGCAGTTATTATGCTTCTTTGCTTTTCTCAATTCATCTTCCTTGTGATCTTCTCCAATGTAAAGCAATGGACGCTGTCTAAAGCTGTTCCACAGATGCAGAAGCAAAAGCTTAATTAG ATGGGGGAAGGAAAAGAAAGCAAAGCCATGAAGAACAAGGTTGATTTGGACAACCACGATGATGCTTCTTGGTGGTTGATTCATAAAGGAGTTAAAGCTATTTTTTTGTCCATATCTTTGTTTGCTTTGCTGGTCCGAGTGGCAGTCTCCCTTCATCCTTACTCGGGTGTGGGCAACCGTCCAAAGTATGGCGACTATGAGGCACAGAGGCATTGGATGGAAATCACCATCAACCTTCCAGCTAAGGACTGGTACCGGAACAGTACCACTAATGACCTCAACTATTGGGGACTTGATTATCCACCCCTAACAGCCTATCAGAGTTTCATTCATGGTCTTTTCCTCAAGTTATTTGATTCAGATTCAGTTTCACTGTTTACTTCGCGAGGTTATGAGTCCTATTTTGGAAAACTTCTTATGAGATGGACAGTTTTATCCTCTGATGTGCTGATTTTCTTTCCTGCAGTTTTCTATTTTGTTCTTGCATATTTTAGTGATAACTCCAGGTTTCGTAAAAGTGATATAGCATGGCAAATTGCAATCCTTCTCATCAACCCGTGTCTCATCTTAATTGATCATGGGCATTTTCAGTATAACTGTATAAGCTTGGGCCTTACTGTGGGAGCTATTGCTGCCATATGTAGGGACAAAGATCTTGTGGGTAGTTTTCTATTTACTCTTGCTCTGAATCATAAGCAGATGAGTGCATATTTTGCTCCAGCATTTTTCAGCCATCTCCTGGGTAAATGCATGAGGCGTAGAAAACCCATTGTTGAGGTGTTAAAATTGGGCGTGGTCGTCTTGGGAACTTTTGCTATTATTTGGTTGCCATACCTTCATTCAGTTGATGCCCTTTTGCAGGTTCTATCACGTCTTGCTCCCTTCGAGAGAGGATTGTATGAAGATTATGTGGCGAACTTTTGGTGTACCACGTCTGTCCTTATTAAGTGGAAGAGATTATTTTCAGTGAAATTACTGAAAATTTTCAGCTTCACTGCTACACTGTCAACTTGTTTACCTTCCATGATTCAACAGATTCGGGTCCCAAGTAACCAGGGGTTTCTTTATGGTCTTCTATGCAGTTCTTTCTCATTCTACCTGTTCTCATTTCAAGTGCATGAGAAGTCTATTCTTCTTCCTCTTCTTCCTGCAAGCATGTTGGCACTGGATGAACCTTCATTATTTATACATTTTCTACACTATGCATTGCTTTCAATGTTTCCTCTTGTAGTTCGAGACAAACTGGTTCAAGCATATCTTGCCATTTATGCTCTTACCTTCCTTATTATCAATGCATTAAATAAAGGAAAGCAAAAGGGGGAGTATTTCATTCTGCGGGGTTTTATTTGGATGCTTCCTAGGTATCCCTTTCTCTTTGAGGCAGTTATTATGCTTCTTTGCTTTTCTCAATTCATCTTCCTTGTGATCTTCTCCAATGTAAAGCAATGGACGCTGTCTAAAGCTGTTCCACAGATGCAGAAGCAAAAGCTTAATTAG ATGGGGGAAGGAAAAGAAAGCAAAGCCATGAAGAACAAGGTTGATTTGGACAACCACGATGATGCTTCTTGGTGGTTGATTCATAAAGGAGTTAAAGCTATTTTTTTGTCCATATCTTTGTTTGCTTTGCTGGTCCGAGTGGCAGTCTCCCTTCATCCTTACTCGGGTGTGGGCAACCGTCCAAAGTATGGCGACTATGAGGCACAGAGGCATTGGATGGAAATCACCATCAACCTTCCAGCTAAGGACTGGTACCGGAACAGTACCACTAATGACCTCAACTATTGGGGACTTGATTATCCACCCCTAACAGCCTATCAGAGTTTCATTCATGGTCTTTTCCTCAAGTTATTTGATTCAGATTCAGTTTCACTGTTTACTTCGCGAGGTTATGAGTCCTATTTTGGAAAACTTCTTATGAGATGGACAGTTTTATCCTCTGATGTGCTGATTTTCTTTCCTGCAGTTTTCTATTTTGTTCTTGCATATTTTAGTGATAACTCCAGGTTTCGTAAAAGTGATATAGCATGGCAAATTGCAATCCTTCTCATCAACCCGTGTCTCATCTTAATTGATCATGGGCATTTTCAGTATAACTGTATAAGCTTGGGCCTTACTGTGGGAGCTATTGCTGCCATATGTAGGGACAAAGATCTTGTGGGTAGTTTTCTATTTACTCTTGCTCTGAATCATAAGCAGATGAGTGCATATTTTGCTCCAGCATTTTTCAGCCATCTCCTGGGTAAATGCATGAGGCGTAGAAAACCCATTGTTGAGGTGTTAAAATTGGGCGTGGTCGTCTTGGGAACTTTTGCTATTATTTGGTTGCCATACCTTCATTCAGTTGATGCCCTTTTGCAGGTTCTATCACGTCTTGCTCCCTTCGAGAGAGGATTGTATGAAGATTATGTGGCGAACTTTTGGTGTACCACGTCTGTCCTTATTAAGTGGAAGAGATTATTTTCAGTGAAATTACTGAAAATTTTCAGCTTCACTGCTACACTGTCAACTTGTTTACCTTCCATGATTCAACAGATTCGGGTCCCAAGTAACCAGGGGTTTCTTTATGGTCTTCTATGCAGTTCTTTCTCATTCTACCTGTTCTCATTTCAAGTGCATGAGAAGTCTATTCTTCTTCCTCTTCTTCCTGCAAGCATGTTGGCACTGGATGAACCTTCATTATTTATACATTTTCTACACTATGCATTGCTTTCAATGTTTCCTCTTGTAGTTCGAGACAAACTGGTTCAAGCATATCTTGCCATTTATGCTCTTACCTTCCTTATTATCAATGCATTAAATAAAGGAAAGCAAAAGGGGGAGTATTTCATTCTGCGGGGTTTTATTTGGATGCTTCCTAGGTATCCCTTTCTCTTTGAGGCAGTTATTATGCTTCTTTGCTTTTCTCAATTCATCTTCCTTGTGATCTTCTCCAATGTAAAGCAATGGACGCTGTCTAAAGCTGTTCCACAGATGCAGAAGCAAAAGCTTAATTAG MGEGKESKAMKNKVDLDNHDDASWWLIHKGVKAIFLSISLFALLVRVAVSLHPYSGVGNRPKYGDYEAQRHWMEITINLPAKDWYRNSTTNDLNYWGLDYPPLTAYQSFIHGLFLKLFDSDSVSLFTSRGYESYFGKLLMRWTVLSSDVLIFFPAVFYFVLAYFSDNSRFRKSDIAWQIAILLINPCLILIDHGHFQYNCISLGLTVGAIAAICRDKDLVGSFLFTLALNHKQMSAYFAPAFFSHLLGKCMRRRKPIVEVLKLGVVVLGTFAIIWLPYLHSVDALLQVLSRLAPFERGLYEDYVANFWCTTSVLIKWKRLFSVKLLKIFSFTATLSTCLPSMIQQIRVPSNQGFLYGLLCSSFSFYLFSFQVHEKSILLPLLPASMLALDEPSLFIHFLHYALLSMFPLVVRDKLVQAYLAIYALTFLIINALNKGKQKGEYFILRGFIWMLPRYPFLFEAVIMLLCFSQFIFLVIFSNVKQWTLSKAVPQMQKQKLN Homology
BLAST of PI0002218 vs. ExPASy Swiss-Prot
Match: Q9FF17 (Probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase OS=Arabidopsis thaliana OX=3702 GN=At5g38460 PE=2 SV=1) HSP 1 Score: 605.9 bits (1561), Expect = 4.1e-172 Identity = 302/503 (60.04%), Postives = 369/503 (73.36%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy Swiss-Prot
Match: Q54QG6 (Probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase OS=Dictyostelium discoideum OX=44689 GN=alg6 PE=3 SV=1) HSP 1 Score: 354.0 bits (907), Expect = 2.8e-96 Identity = 200/408 (49.02%), Postives = 265/408 (64.95%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy Swiss-Prot
Match: Q802T2 (Dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase OS=Gallus gallus OX=9031 GN=ALG6 PE=2 SV=1) HSP 1 Score: 335.5 bits (859), Expect = 1.0e-90 Identity = 183/392 (46.68%), Postives = 247/392 (63.01%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy Swiss-Prot
Match: Q9Y672 (Dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase OS=Homo sapiens OX=9606 GN=ALG6 PE=1 SV=2) HSP 1 Score: 331.3 bits (848), Expect = 1.9e-89 Identity = 181/382 (47.38%), Postives = 241/382 (63.09%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy Swiss-Prot
Match: Q9VKX7 (Probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase OS=Drosophila melanogaster OX=7227 GN=gny PE=2 SV=2) HSP 1 Score: 330.5 bits (846), Expect = 3.3e-89 Identity = 200/474 (42.19%), Postives = 273/474 (57.59%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy TrEMBL
Match: A0A6J1F3L5 (Alpha-1,3-glucosyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111441865 PE=3 SV=1) HSP 1 Score: 874.0 bits (2257), Expect = 3.0e-250 Identity = 444/516 (86.05%), Postives = 465/516 (90.12%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy TrEMBL
Match: A0A6J1IZY6 (Alpha-1,3-glucosyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111482205 PE=3 SV=1) HSP 1 Score: 874.0 bits (2257), Expect = 3.0e-250 Identity = 445/516 (86.24%), Postives = 465/516 (90.12%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy TrEMBL
Match: A0A6J1D3E9 (Alpha-1,3-glucosyltransferase OS=Momordica charantia OX=3673 GN=LOC111016925 PE=3 SV=1) HSP 1 Score: 867.1 bits (2239), Expect = 3.6e-248 Identity = 434/516 (84.11%), Postives = 460/516 (89.15%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy TrEMBL
Match: A0A2I4H4F6 (Alpha-1,3-glucosyltransferase OS=Juglans regia OX=51240 GN=LOC109013415 PE=3 SV=1) HSP 1 Score: 700.3 bits (1806), Expect = 5.9e-198 Identity = 346/515 (67.18%), Postives = 410/515 (79.61%), Query Frame = 0
BLAST of PI0002218 vs. ExPASy TrEMBL
Match: A0A5B7BIZ4 (Alpha-1,3-glucosyltransferase OS=Davidia involucrata OX=16924 GN=Din_038270 PE=3 SV=1) HSP 1 Score: 696.4 bits (1796), Expect = 8.5e-197 Identity = 348/515 (67.57%), Postives = 412/515 (80.00%), Query Frame = 0
BLAST of PI0002218 vs. NCBI nr
Match: XP_004145659.1 (probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucumis sativus] >XP_031738402.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucumis sativus] >KGN57761.2 hypothetical protein Csa_011615 [Cucumis sativus]) HSP 1 Score: 926.4 bits (2393), Expect = 1.0e-265 Identity = 473/516 (91.67%), Postives = 477/516 (92.44%), Query Frame = 0
BLAST of PI0002218 vs. NCBI nr
Match: XP_038874304.1 (probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase [Benincasa hispida] >XP_038874310.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase [Benincasa hispida] >XP_038874318.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase [Benincasa hispida] >XP_038874325.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase [Benincasa hispida] >XP_038874332.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase [Benincasa hispida]) HSP 1 Score: 909.1 bits (2348), Expect = 1.7e-260 Identity = 462/515 (89.71%), Postives = 469/515 (91.07%), Query Frame = 0
BLAST of PI0002218 vs. NCBI nr
Match: XP_023527286.1 (probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucurbita pepo subsp. pepo] >XP_023527287.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 876.7 bits (2264), Expect = 9.5e-251 Identity = 445/516 (86.24%), Postives = 468/516 (90.70%), Query Frame = 0
BLAST of PI0002218 vs. NCBI nr
Match: KAG6581176.1 (putative dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 874.4 bits (2258), Expect = 4.7e-250 Identity = 444/516 (86.05%), Postives = 466/516 (90.31%), Query Frame = 0
BLAST of PI0002218 vs. NCBI nr
Match: XP_022934798.1 (probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucurbita moschata] >XP_022934799.1 probable dolichyl pyrophosphate Man9GlcNAc2 alpha-1,3-glucosyltransferase isoform X1 [Cucurbita moschata]) HSP 1 Score: 874.0 bits (2257), Expect = 6.1e-250 Identity = 444/516 (86.05%), Postives = 465/516 (90.12%), Query Frame = 0
BLAST of PI0002218 vs. TAIR 10
Match: AT5G38460.1 (ALG6, ALG8 glycosyltransferase family ) HSP 1 Score: 605.9 bits (1561), Expect = 2.9e-173 Identity = 302/503 (60.04%), Postives = 369/503 (73.36%), Query Frame = 0
BLAST of PI0002218 vs. TAIR 10
Match: AT5G38460.2 (ALG6, ALG8 glycosyltransferase family ) HSP 1 Score: 605.9 bits (1561), Expect = 2.9e-173 Identity = 302/503 (60.04%), Postives = 369/503 (73.36%), Query Frame = 0
BLAST of PI0002218 vs. TAIR 10
Match: AT2G44660.1 (ALG6, ALG8 glycosyltransferase family ) HSP 1 Score: 119.0 bits (297), Expect = 1.1e-26 Identity = 111/413 (26.88%), Postives = 183/413 (44.31%), 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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