MELO3C008339 (gene) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTTATTATTTTTGGCTGGCAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGCATGTTTGAAATATTTCATTAGTTTTTACTATTGACACTTTATTTTATTGTCTCTCTGTTTCACTTCAGCATTTATTTTTTGAATTCTTGATTTGGCCATCACCCAACTGTGGTTGTACATTGATCTTGGAGATGGGAGCGAGTGAGTGTGCAGATAATTTGTTTCCCTGGATTTTGTTAAAGAATATTTTCCCATTATGAAATTATTACAATAGTGAGTCATCCTGATTGAAAAAATATGTTGTACTGAATTTGACTTCTCTAACATTGCTTCTAGAGTCTATCTCATCCATGTTCAATTTTTCAGGTATTAAATAGATTTGTTTTTAATCCACTTGCCATTACTAAAAGATCAAAATTATTAATAAAAACTCAATGTGGTTGATGTTCTATAGTGATTTTGGTAGATCCCGAACTAATCGAAAGTAATTTCTGAATTTTTTTGATGAAATGAATTCAATTACAATGTAGATTGAATTGAGTAATACTTAGGGTAACAAGCCAACTAAATTCCCAAATTTCATATGAGAAGCTTTTCCTGCCCAAACACTTTATTTATACTAACACACACCGACTTCCCACTAACATAACAGACTTCTAACAAACTTACTATAAACTGTCTTTTATTACAATATTGCCACTCCTACTAAACTTTCTTCTTATTTCTTCCGCTGTACTGAAATATTATTAGAGGTCTATCATTACTCCTCCCTTCCAAATTTACCTTGTTACTCCTCCCTTCCAAATTTACCTTGTTACTCCTCCCTTCCAAATTTACCTTGTCCTCAAGGTGAAGATTTGGATATTTACGCTGCACTTCCTCATACATTTCCCAAGTGGTCTCATGATTCGGCAACCTACTTGAAAAGGCATCATGCCTAAAGCCCTCTGGAAAGTGGTATTATACCAGTATTCGGCCCATGACAACCACTTAATCCAATCTCTTGGCTTTTCACTGCAAAAGCATCGCAAATATACCTCAACCCCTCTATTCACCACTTCAGTTTGACCGTCGGATTGAGGGTGATATCAGAGCTTCTATTCGATCTTGTTCCAGCTAACCGAAACATTTCCCTCCAAAAGTTACTAAGAAACACCTTATCTCTATCTGATGCAATGGATGTGGGAAATCTATGAAGTCGAACTACCTCCTTGACAAACAATTCAGCTACTGACTTTGCAGAATATGGATGTTTCAATGGCAGAAAATGGCCATATTTACTCAGACGGTCTACTACTACAAATATAACTTCAAAACCAGCCGCCTTAGGAAGACCATCCACAAAATCCATGGATATGTTACTCCAAACCTGTGTACGGATCTCCAATGGCAATAATAAGCCTACTGGAGACAAGCACAAGGTCTTATTCCGTTGACATACCAAGCATTCAACACAATATTTTTTAATGACAGATTTCATCCCTTACCAATATAATTCCCCACCTATCCTCTTATAGGTTCGTAGAAAACCTAAGTGACCCCACGGCTGAATCATGATAGCCCTGCAGAATGGCTGGCATTAACTTGGATGATTTGGACACAACCAGCCTATCTTTGTATCTCAACATGCCATTGTGGATTTTAAACTTGCCATCCATTTGCTCTTGTTCCCCTCTCAATTCAGTTAAAATCTTTTGTAGTCTCTCATCTTTTTCCACTTCTTCTTTAACTGTTTTCAAATCAAGAAAGATCGGAGCTGTCATACTACATAATTATAATTGTGCAGTTGGAGGAATCCTTGAGAGAGCGTTGGCTACTTTATTCTCAACTCCGGGTTTATACACCACCTCAAACATATACCCCAAGAGTTTGGCGATCCATCTTTGATATTGTGGTTGTATTACACGCTGCTCTAACAGGAACTTTAATGATTTCTGATCAGGCCTCACAATAAATCTGGTTCCCAACAAGTATGGTCTCCATCTCTGCACTGCCAAGACCACAACCATTAATTCTCTTTCGTATACTGGTCTGCCCCTGTCTCTTATTGCTAATGTGTGGCTGTAAAAAGCAATAGGGCGTTTATCTTGGATTAATACAGCTCCCACTCCATAACCAGAAGCATCTGTTTTGATCTCAAAAGGTTGGCCAAACTTAGGTAATGCTAAAACAGGTAAAGACATCATTGCTTCCTTCAGTCTGTTAAAGGCCTCATTCGCTTCTTTATTCCATTTGAACCCTCCTTTCTTGAGTAACTGAGTAAGAGGAGCAGCAAAGGATCCATACTGGTGGATAAATCTACGATAGTACCTAGTTAATCCAAGAAATCCTCTTGTTTCCCGCACATTTTTCGGTTTAAGCCAATCAGCTATGGATCTAATTTTTTATGGGTCTACTTCAATTCCATTTTCAGATATTATATGCCCCAAGTACTCTACTCTTGCTTTGCCAAAACTACATTTTTTTCGATTAGCAAACAGCTCATGTTTTCTCAGCACCACGAGTACTACCTCTATATGCTTTAAATGATCATCAATGCTCTTACTATAGATCAATATATCATCGAAAAAGACTAAGACAAACCTTCTCAAATAGGGCTTGAATATCGTGTTCATCAATGATTGGAAGGTAGCGGGAGCATTAGTTAGCCCAAAGGACATTACTAAAAACTCATAATGGTCTTTGTGTGTCCGAAAAGCAGTTTTTTCCACATCGTCATCTGCCATTCTAATCTGATGATAGCCAACCTTCAGATCAATCTTAGTAAATAGTGATGCTCCACTCAATTCGTCAAACAATTCTTCCACTACAGGAATTGGAAACATATCCGGAACTATGACATCATTCGAGGATCGGTAGTCTATACAAAACCGCCAACTACCGTCTTTCTTTTTAACCAGTAATACCGGACTTGAGAATGGACTCACACTCGGCCTTATGACTCCCGAAGCTAAGATCTCCCCAACCAACTTTTTCATTCCTTCCTTTTGATGGTATGCATAGTGGTATGACCTTACATTTACAGGGTTAGTATCCCTTTTTAAATGTATATGATGTTCGATGCTCCTTCTAGGTGGAAGTCCCTCCGGCCACTTAAAGACATCACTGTACTGATTCAACACAGGAGCAATTATTCCTTCTGTTTCATCATTTTCTGCTGTCTCTTAAAAAACTATACCATTCAATTCAATCAGCCCAAGCGATCTACATTCAATCAGATAACCGTGATCTTGATCCTCCCAAGTCTTCAACAAATTTTTCAAACTCACTCTTGCTTTAGTGAGGCTCGGATCACCTTTGATACAGATTTGCTTATCATTATTATCATGGAAGGTTAATGTTAAATTCTTCCAGTCTACCACCGTCACCCCTAGCAAATAAAGCCATTGCATTCCAAGGATAATGTCTACTCCTCCCAATTCTAGAGGTAGAAAGTCTTCCTTTACCTTCCATTCATTCATTTTCACCTCCAAAGACTCACAAACTCCTTTTCCTTGAATAGCTGTGCTCGAACCGAGTATTACACCATAATGAGCAGTCTCCTTGATTGGTAATCGTAAAGACTTTACCAATTTTTCAGACACAAAATTATGTGTAGCCCCATAGTCAATCAAAATTACTACCTCCCTGTCCTGCAACAATCCTCTGACTTTCATTGTTTCCGGATCATTCAGGCCAACCACAGAATTTATCGATAACTCCACACAGGCTGCAATGTTATCTTTCACCTCTGCCATCCTCAGTTCTTTACTCTCGGCTTCGACTTCTTCAACAATTTCAAGTTCTTCATTATTACTATTGACCACAAACATTCTTTTTAAGTTCCCGATGCTCTTTCATTTTGCACTTATTATTAGCCAAATATTTCTCATTACACTTGAAATAGAGTCCCTTTTCTCTTCTTAATTGAAATTCTGCATCAGGTAATCTTCTAGTATTTCCTTCCTTGTGCACTTCTCCGGTGTTTGGACTCCTCAGTCTAATCATTCTTATTGGAAACGAAGTGTTTCCTTTGTTATTGCTGGTGAATTGATTTGCTGTGGGCTTCGCATTCGCTACGGCTTGCAGAGGATATTTCCCGCTGGCGAATCCATTCAAATTTGCTTTGCCTCTAATAATCTCTCTGTTTTCCACCAATTGAGCTATCAACATCATTTCCGCTAAACTTTTCGGTCTACAAAATGCCACTTCTGCTCGTAGCCATGGAAATAATCCATTCATAAACGTTTCTTCTACAACTCTTTCTTGTAAATTGGACAGAGGAGCTACCAACTTATCAAACAGATTTCTATATTCCTCTACCATAGTTTTCTGCCGAATTCTTAGGAATTGATCACAAATGGATCCCTTTAGTAGATCCAAATCTTACTAGTAGCCTTTCTTTCAAATTGGACCAGCTCACAAACTTCTCCCTCTCCTCTTGTGAACGGTACCAATTTAATGCAGGACCATAAAAACTAATCGTAGAAACTAACATTTTCTTAGATTCGGATAGCTTATGTATTTGAAAATACCTCTCAGCGCAGAAGAGCCAGGAATTGGGATCGTCGCCGGTGAAGACCGGCATTTCCACCTTCTTGAATTTACTTTGATCCACCGATATTTTGTACGTATTGGCGTTTCTTTCGGCATTGGTTTCTCTGATTTCTTGACTTGAAGTCGCTTCATTCCCTTTCGACTTCGCTGCCGATGACTCCTATAGAGCCGACTCTGTCATCCGTTCACTAATCATCGATCGCTCCTTCGCGTTTGCTTCCATATATGACAATATGGCCTGCTGTTGCTTCTCGGACTGTAGACGCATTAGTTTCATATTCTTTGTAAGTTCGATCAGCGTTGCTTCAATTATTGGCATCTTACTCAACTCCTTTTTAATTCCGGCGATTTCTTGATCGAATGATTCCATCCTCTCTTCGATTCTTGTTGCACCATCGTTAACTTTTCTTTTTCGATGAATTCAATTACAATGTAGATTGAATTGAGTGAAACTCAATTCAATACTTAGGGTACTCTTGTCTTCCCCTCTCAAGAAGAACAAGCCAACTAAATTCCCAAATTTCACATGAGGAGCTTTTCCCGCCCAAACACTCTATTTATACTAACTAACACTGACTTCCCACTAACATAACAGACTCCAAACAAACTTACTATAAACTGTCTTTTATTACAATATTGCCACTCCTACTAAACTTTCTTCTTATTTTTTCTGCTATACTGAAATATTATTGGAGGTCTATCAGATTTCTTCTTCTTCTTGCCTTTTCTTTCCAATTTTTTTTTTTTCTGTTAACTCTGTATAATTCTCTGAGCCTGCTTGCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATGTAAGTAGCCCTGACTCTTGAAGACTTTGAGGACACTAACTTTATGGCACAATTTAAACGATTTACACACTTCTTTACCTGTTATTTAGTTGAAGACTCATAGAACAAGGGATAGTTGCATAATTATTATAGAATTATCAGATAAGCGGCTTGCAAAATTTTGGTAAATGTAAAACAAAATTTTGGTCATGTTTATTAATTGAGGGCCTTAATATAAAGTACTTTTATCGACAAATTTATGTCTCCATCTTCTGAAAGCCTGTTGGTTAGCGACACTTTTGAGGTGACCAATTATGTCAGAAGGCAATCATTTAGACATTATTCAGTTTATATAATGAAGTGCAGAATAAGATGGATTTTCGTTCTTTTTATCTGACAGAATAGTTATGATGAAATTCACGAACATCTTAAACTACATCATGGATCACGAGAATCTATTCGTTTAATATTTCACCAACTCTTATTGACCAGAAGTATCTTCCCCATTAAGAAATCTTCTGATCTAGCAATGTGTCAAGACTGATATTGTGGCTACTGCTCGCCAGAAGATCTTTAATTGTTTTAATAATCCATGATCTTCCATTCTTGCTTAATTATGCTTGGATCTTTTTACATTTGAGTTTCATATCGTTGCCTTTGCCTTCTATAGGAAACTGACTTTAATTTCATTGACATGATGAAATTTTCATAGACAAAAGCCAAATGACAGGAACCCTCTGCAGAACTGGTGCAAATAGTAGCAAAACCAAACGACCAACTCATATGAAGAGTCTCCAAGAGGAGAAAATAACATTATTGTTCTAAACTTCCCCATTGATGAACCCAACCTTGAAATAAATATCCGCCCATTTTTCTCTAGTCAACTTCCCAACGGTAACTCTAATTGCATTGAGCCACCAAATTTAGCTATCCACATTAGAGGAAACCCACTTGCAAATGGAAGTGAACAGAAACTTTCTTCTAAATGAATAAGTGAGCAATTGATTTATCTTGTACACTAGGTTGTCTTGGTTGAATCTTGTCTCAAGCATTCAATCTCCCCAGTCCAGACAATTCTTTTCCTAATTTTCTTAGGACAAGGATGTTCCCAAGGCCTCTCTTAATCTATTAGGTAGCTGATCTATCGCCATAATTGGTATAGTCATTCCTATTAACTTTGATATTCTTATGGGGGTTCTTGTTGAAGGAAAAAACTGGTTATACTATTATATTTCTCTAATTATACCCGATATGATTTGGTACACTCATTTGAGCTTTCTCTCTTCTTATCCAAAAAAATTACTGCTTACGCTCTAATTATTTATCTTTTTATTCTTTCTCAGTTGCTTGTCTTGCATTAATGATTCTGTAAAATTCATTTTAGATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGTGAGTTATTGTAGGCAAAGTTAAGCATCTCACTTCAATGTCATTCTTCAGGTGTGTTTTCCAACAGCTGCTTATCAACCATTTCAAAATTTTCTTAACGTCTAAAATTTTTTGGTGGAAATTAGGTCCAGGTCATTAGTATCGTTTTGTTAGTTGTTAGTCAACTACACTTTTATTTACTTATTTTTTAAAAAAAACTCTGGCATGCAGATTTAATATGAGACACGCTATGAAAGTTTAGATAAAGTAACTATAAATTATGAGCAAAGCATCTCTCAGTAATATTAAGATTTTAGTGGCTTTAAATGATTAACCTCTTAACTATAATGTCAGTGATATATAATTAAATTTACCTTCAACCATCACCCTAAGCTTTTGGGCGAATTGGTGGTTTAATATAATAATCGTTTATTAATCAATAAAACAAGATAGATAGAAATAAAAAAAGTCAATAAGATAAGCAGACAATTTTCCACAATAAAATTTATTATTGAATATTCTATTCATACAATTGTCTACTAAATTATTAGTTGATAGGAAGGATAAAATTTCTATTTAAGGGTTAGTTTCCAAATTTCACTTTGTGATTGTTTGATTTGGGTTGCAGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGTAAGTTGATTATAATTGTCATGTCATATTGTGCTGATGTTGCTAGATTCTATTATATATTTGGGGAAAAAGATATCAGTTCTAATTTCTTTTTTAAAAGAGACCACTGACCTTCCATTTAAGATTTCTTTCATAAGGTGTTTGGTTTGAACCATGTTCACTTTTTTTTCTTAAAATAAGAACTCAACACATTTACAAAAACTCCCAATAAAAAACAGGCAAATAAGAATTCTTCCAAGCAGCCATGTAGCTTCAAAATGGCACTGCACTTGACCAGACTGCAAATTAGAACATTGTTATAAATAAATTTGTTTGCAATGCACCAACTAGAGTCTGAGTGTCTAAAAGATCTCAAATCTCAGGGGAGGTCCAAAGATTTTATTTGAAAACTTCTCTAATTTACAATTGGAGATCGTTTCTGTATTCTTCCGTTGGTGGTCTTCATTCAACAATGAAATTCTTGTTTAGTTTTCCCAAAAGATTTATCTGTTCCTCTCATACATGTCTTCCAAAGTATAGCATAATAGCATTTGAGGAAAGGACTTTTGAGTTTGGCTTCTATTCAGCGTTCTGGATTGCATTCTTATGAAGAACAATTGCTGTTTTACACACGTGAATTCTTATTTTTAAAATCTCTCTTTAAGATGCCTCATTATGATTAAAAAAAAAACAAGGCGTTTGTTTTGGCTGCTGATTGTGAGTAATATTTTCTAGCCTGCCACAACCTGCATAATGTAATTGACTAAGTAGTTAATATACGTCGGTCTTAGTTGCATAGATTGGGCATCAATTCAATCTGGGAATGGGCCAAAAGTTTAAAGAAGGAAGACGACCTATAACTTTTTAAGCTTAAGTTTTCGTCTTCTACTTTTCTCAATTAACTTAATATGGATAAAAATTTTTAGATCACACCTTACATTTTTTTGATAGGCAGGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGGTATGTACTTTTGTTTGGAGTCCAAAGTTTCTTTCTCAAAGTTTCTTTCTCATACTTGCAAAATTTTCTTTTCATGTGTCCGCTGTTTAGCTGATTTCACTAGTAACAATGTTCCGTCACCATTATTGCATTGTTCAGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGGTACGACGCAATATCTGATTTAGTTAAATATTTTGGAGAATTATTTTCTTATTGATCTTTGCTTTTATATGATTTACTGGATTAGCTAACACTGATATGGTGGTATCGCCAATTGAATATGCATTAATGGTTGTTTAGTTAGTAATTAGATGCAGGGGTGTTCACAGTTCGATTCGATTTGGAATTATACCCAACTGAACCATTTGCTTGGTCCAAACCGAGACACGAATATTTGATTCAGTTTTTGGTTTTATATGTATATGGTTCGTTTTGGTTTGGGGTTATATATATATATATTATATATAAACGGTTTAGTTCAATTTTGGCTTCGGGATTTAAATCCAAAACAAAAATCAACCAAACTGAAGCTTCAGTAAAAAAAACTGAAATTTCTGTTTGGTTTGGTCATTTTAGTGCGCACCCTAAATTGGATGGATGATCATGTCTCACGGGAAAAGCTATTAGAAGAGAGGTCAATTGTGATTTTGGCAAAGTGGTCATACGTTCTTCTCTAATTGCTGGCTGATGTTTTTTGAACAATTAACTCTCTGGAGTGAGCTATGGATGAAAACCTTGGACTCTGTCGTAGGTGCTTCTACCGGGGTTGATTTCTCTCATTCATTGCACAATGCTGTGGGTTTTACTATTATGATTTGGTATTATTTATGGCAATTAGATGATCAAAGAGATGACCAGCCAGTAAAATTTTCATCCTTTGCTTGCTCTATCCCCATATCATTAGATGGGGACTGATATCGAGATCTTTGTTACTGGGCACTCTGATCCATTTTGAATTGAGATCTAGCTTAATAGAAATTGGAAACTATATTCCACTGATATGCTACTAATCATATTTACATTTGTATTCTGAAGAGAACAGATTGTACTCATATTGATTAGAGCCCAACAGGCAGTATTGAGGAACAGTAAGATTATTAAGAAAGAGACAATTAGAGCTTGGCTAGGAAGGATTATCTGGTCGAGGTGTTCAAAATTAATATTTGCTTTAACTTCTAAACTAGGTTTTTTCTTTTTCTTTGTTTTTCTTTTTTGTATTTTATTTTATGTATTCTACTCTCAATAGTTTAGTAACCATTATTCATGAATTTTTTATTGGTTTTGGAAATTGAACTTCTTCTTTTGCTCACCTTTTATTTTAATAGTTTATGATACCTTTCGTCACTGCCATCTCTGATTTTCTTCCTATATTCTTAATTCGCCTTGCTTGGAGTTTGTGAATTCTTGTAATTCATACATATGGTTTATTGGTGTAACTTATTTGCAGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGGTATGGTGACCTCAGCATAATATGTATTTTGTTACATTTTTGGTCGAATATCAAATGTCATAGATTCCATTTTATCTTCAATCATTGAATAGGATCCTTGGTTGTAATTTTTAATATTCTCTGATAAAAATTTTAGGAGATCCTTAAAAATTAGGAGTTGTTGCAAATATAACAATCCTACCCAAAGTATTAGCAGATAGTACACAAAACAAAAGAATTTGCAAATATAACAACATTTAGATTTAGCTCTTAGAGTCTATCAGTGATAGACTATATTGCTATAGGAGTCTATTAGCCATGGAATATCACTAATAGGAATCTATTTGTCAACAGTAGAGTCTATCACCGATAGATTTTACTATATTTACATTTTTAATGTTGTTAGACCTAATTATTATCCCTAATAAGACTTCCCATTGCAATTACCCTATAAATTATAGTTATCCTAATCCACTAGGTGTTAGCTTAAACTTTTGAGTCTAATAGTGACATGACTTTCTTAATTACTATTCAATGGGCCCATTGACTTTTCTTTTAAATATTTCTAAGTGTGTGAACCTTTGGTATAAAAGCTATTGGACTTTTGTTTTTGCTTGATCAGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACGTATACTCTTTCCTTTTGCTTTTTATAAATGTTCCAATCAGTGGTTATATTCTACTATCTTTTCACTGCTTTTAGTTAATACAGACACTCTAGCTATCTTTTTCTTCGACACCACAGGCTATTGATTTCATAATAGTTGTCAGTGGTGTTGTTGGTTTAGACTACTGCTCAAGCGAGAATACATTACCTTACTTGCTGCATCTCTTTCTTTCAAACCCAAACAATTATCCTTGGGACACAGGAGAGACCCATTATTCTTAGTATTGTGATAGACAATAGCATTTATAGCATTGTTGGCTCTTGAAGGAGGAACTGGAAAAGAAGGGGGAGCATGCAGTAGGTCATGAGTACCACTCATGGAGACAAGATAGCTCACTCCCTGGTTCCACTCTCTTGAAGAAATTGAAAATGGCTATTCTAGGCGAATATGCTTGAAGCATGGCAATCTGGTCTTTACAAGGCATGTCATTCACCTTCATTAAAATTTGGGGAGTGGAATGGATAAAAATGCATATCAAATATAGATTGAAACACAAAACTCAGGCAAATGTACTACTCAAGCATACTGTTCGAATAAAATTCTGCTACTATGTTACATGTTGGGTGACCTTTTCTTCTTCACACAAGTGAAAAAAGTTGTAAATTATGTAATACTCTTTTGTTTCTTTTTTCATTTAGTATGAATGAGAAACTTGGATTAAGAGATATTTTGCTGATTGGAAAAGCTGGCATCTTGGTGAATCGGGACTGGAAGTACGGAGGAACAGGATCATCATTTAGACTTGAATTGTAACATAAATGTTAGAAATTAAACAAGTAAATAAACAAGGAAGAATAATTACACAGCTCGCCAACATACTGTAGAATCATGTCAAGTTATTTGAGAAGTGGTGGCATAATATTTAGACAATTTCATGATGAGAAATCTGAAATATTCAAGGTCGTTGATGTTGGTATGCTCAACTAGAAAAATGTTGATTTTGTTCGTCTTGTTTATGTTATACTAAATTTATTTCCTGTACTTATTAATAGCGAGAATATCAACATGCTGTGATGCCCCTACAAAGTTACAATGTGATAATTATCGTTGATGAGTGATGATGCCCTTCCAGATTTGACTGCTGATATTATTCTGATCCTATTAACTTTGTTGAGTTTGGGGGTTGTAGCTATGCAGTTTAGAGAGAGAAGTTCCTGAATAGCACTGTGTTGTACAGGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTGAGTACTGCCTTACTTTCTAAAACGCTATCCATGAAGCAGACTCCAAAGGCCTAACCTTTTCACCATTCTGTCATGCTCTGTTCACTTCCCTGAATTTTCACTGTTCACAAACCACCCTCAATTTACATTATTTTTGGAGGATAGGTATCGCTAAATGCTTTAAAATACTGATATCTTAAGGAATTTTGTACTAATGCATTGAGTCATCTGTTTTATGTTATATCTGGGCTGCAGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGGTAAGAAGTGTCTTGATGATTTAGTTGACTTCTGATGTTTCCACTTTCCTTACTGTCAAAGAATATGGTTGTTTCCACTTTCCTTAATGTCAAAGCATATGGTTTACTAGGTTTATTATTATTTCCTTAACACAAAAATGTTGTAGGATCAGACAGATTGTCTGTCTAGTGAAATTAATCTAAGTGTGCTTAAACTGACCTTGACATCGATGGTTATCCAAAAAAAACTAGGTTTAGTATTAAGAAGGCAGTTGATAGATGTGGAAATTGTTTTATAATTTATATTTTCTTCTGTTCTGGTTTTGAAATTTGAAATTCAGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTGGGATCATCGATAATGATTATTATTACAATTAAAAGTTGAATGTTGTTGACTTGTTTTCTTTTTGTTAGTGTTGGAATAGAATGTTCAATTTTGTGAAACATATTGAATCTTAATGATAGTCTAATGACTCAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGATCTCCACTGCCATTTGAGGTTTAGGTACAACAATGTATTCTTTTCATTCTTAGCCTTTTTTGTATTTCATTCATTCAAATATCTAATTAATAAAACCTGTTTGATGAAAAATAAAACATTATATTCTTGTAGTATTGTCTTCTCAGTGGTAGTTCAGAATAAGCAAAAGGTAGAAAGTTTAGTATTTAGTGAAATAGTATTCTTTGACAAGCACTTGAATTCTCAAAATATAGATGAACATAAACTGATTAGCTAGAAGGCTTATAGTTCTATTGCCAAGATCTCTTTACTTCTCAAGGAGCATGAACTTCAGGCTGAATGGATGGTGGAAGTGAAGTTGATGGTGGTGTTGGATGATTGTTACCAGTAGTATCACAATAGACTGCTAGAACGTTGGCTTCGTCTGCTGTATATCCCAACGAGCCGAGTAATGTCGGCCAACACTTATGCTGGATGATTTTGACCGATTGACAACATTTAGGACTTAAGTTAATCTTTCCGTTGAGAAAGAATGTGATAATTTCACTGCTACATGCTTCGAGTTGAAACAATGAACCCCAACAATCTGATGCATTGCTTTCTAAATTCAACCGTGTCGCTAGGCTTACTTTAGGGTTTGGCCTAGACTCAACCATGTATGATAAGGCAAAAATTAGAAGGCATGTGAGAATTAAGAGCTTTGAAAGGTAAGCCATTTTGTCTTTTCTTTTGAAGAAGCTAAGTAATGGATGACAAGAAGACTAAATTTCTGTGTGTTGCCATGGATTGTATGAAGCTTTTATATAGGGGGATGGGGATTTTGTTTATTTTGTGTAACATATAAATGGAAAAATGAACAGATTTTATTTAATTATGAAGTGAAGTTG ATGCTTATTATTTTTGGCTGGCAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGCATCCTGCTTGCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGATCTCCACTGCCATTTGAGGTTTAGGTACAACAATGTATTCTTTTCATTCTTAGCCTTTTTTGTATTTCATTCATTCAAATATCTAATTAATAAAACCTGTTTGATGAAAAATAAAACATTATATTCTTGTAGTATTGTCTTCTCAGTGGTAGTTCAGAATAAGCAAAAGGTAGAAAGTTTAGTATTTAGTGAAATAGTATTCTTTGACAAGCACTTGAATTCTCAAAATATAGATGAACATAAACTGATTAGCTAGAAGGCTTATAGTTCTATTGCCAAGATCTCTTTACTTCTCAAGGAGCATGAACTTCAGGCTGAATGGATGGTGGAAGTGAAGTTGATGGTGGTGTTGGATGATTGTTACCAGTAGTATCACAATAGACTGCTAGAACGTTGGCTTCGTCTGCTGTATATCCCAACGAGCCGAGTAATGTCGGCCAACACTTATGCTGGATGATTTTGACCGATTGACAACATTTAGGACTTAAGTTAATCTTTCCGTTGAGAAAGAATGTGATAATTTCACTGCTACATGCTTCGAGTTGAAACAATGAACCCCAACAATCTGATGCATTGCTTTCTAAATTCAACCGTGTCGCTAGGCTTACTTTAGGGTTTGGCCTAGACTCAACCATGTATGATAAGGCAAAAATTAGAAGGCATGTGAGAATTAAGAGCTTTGAAAGGTAAGCCATTTTGTCTTTTCTTTTGAAGAAGCTAAGTAATGGATGACAAGAAGACTAAATTTCTGTGTGTTGCCATGGATTGTATGAAGCTTTTATATAGGGGGATGGGGATTTTGTTTATTTTGTGTAACATATAAATGGAAAAATGAACAGATTTTATTTAATTATGAAGTGAAGTTG ATGCTTATTATTTTTGGCTGGCAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGCATCCTGCTTGCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGA MLIIFGWQKQLVADLVKIQRDGTVKVDIEKNAPAVSELLKLHPTLEGSSPIVDDVVSESKKLIPRLKIAILVVGTRGDVQPFLAIARRLQASCLQEFGHHVRLATHTNFRNFVRSAGVNFYPLAGDSRELAEYMTRNRGFIPSGPGEISVQRKHLKVIIESTLPACTEPDLETGMPFRAQAIIANAPAYGHTHVAEALHVPLHIFFTMPWTPTNEFPHPLARVPQNTGYWLSYIIVELLIWWGIRGSINEFRRKKLNLPPIAYFSTYRGSISHLPTAYMWSPSVVPKPKDWGPLVDVVGYCFLDRGFKYQPEELVLKWIQKGTKPIYVGFGSMPLAEPQRTTHIILEALKDTGQRGIIDRGLGGLGNCTELPEDVLLIQDCPHDWLFRHCSAVVHHGGAGTTSTGLRAGCPTTIVPFFGDQFFWGETTHQKGLGPAPIPISQLNPTHLSNAINFMLQPEVKYRAIEIAKLIDSEDGVVAAVNAFHHHLPSELPLPPASEEDEDFANPLQWFLLKVEKWCCVPCGLRL*
BLAST of MELO3C008339 vs. Swiss-Prot
Match: U80B1_ARATH (Sterol 3-beta-glucosyltransferase UGT80B1 OS=Arabidopsis thaliana GN=UGT80B1 PE=2 SV=1) HSP 1 Score: 749.2 bits (1933), Expect = 3.1e-215 Identity = 359/521 (68.91%), Postives = 425/521 (81.57%), Query Frame = 1
BLAST of MELO3C008339 vs. Swiss-Prot
Match: U80A2_ARATH (Sterol 3-beta-glucosyltransferase UGT80A2 OS=Arabidopsis thaliana GN=UGT80A2 PE=1 SV=1) HSP 1 Score: 557.8 bits (1436), Expect = 1.3e-157 Identity = 266/486 (54.73%), Postives = 349/486 (71.81%), Query Frame = 1
BLAST of MELO3C008339 vs. Swiss-Prot
Match: ATG26_YARLI (Sterol 3-beta-glucosyltransferase OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=ATG26 PE=3 SV=3) HSP 1 Score: 253.1 bits (645), Expect = 6.9e-66 Identity = 157/468 (33.55%), Postives = 249/468 (53.21%), Query Frame = 1
BLAST of MELO3C008339 vs. Swiss-Prot
Match: ATG26_NEOFI (Sterol 3-beta-glucosyltransferase OS=Neosartorya fischeri (strain ATCC 1020 / DSM 3700 / FGSC A1164 / NRRL 181) GN=atg26 PE=3 SV=1) HSP 1 Score: 250.4 bits (638), Expect = 4.5e-65 Identity = 161/468 (34.40%), Postives = 234/468 (50.00%), Query Frame = 1
BLAST of MELO3C008339 vs. Swiss-Prot
Match: ATG26_ASPFU (Sterol 3-beta-glucosyltransferase OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=atg26 PE=3 SV=2) HSP 1 Score: 248.8 bits (634), Expect = 1.3e-64 Identity = 161/468 (34.40%), Postives = 233/468 (49.79%), Query Frame = 1
BLAST of MELO3C008339 vs. TrEMBL
Match: B9SE74_RICCO (Transferase, transferring glycosyl groups, putative OS=Ricinus communis GN=RCOM_0959320 PE=4 SV=1) HSP 1 Score: 811.2 bits (2094), Expect = 7.3e-232 Identity = 385/518 (74.32%), Postives = 445/518 (85.91%), Query Frame = 1
BLAST of MELO3C008339 vs. TrEMBL
Match: B9GTH8_POPTR (UDP-glucose:sterol glucosyltransferase family protein OS=Populus trichocarpa GN=POPTR_0002s06770g PE=4 SV=1) HSP 1 Score: 808.5 bits (2087), Expect = 4.7e-231 Identity = 377/516 (73.06%), Postives = 441/516 (85.47%), Query Frame = 1
BLAST of MELO3C008339 vs. TrEMBL
Match: A0A0D2S844_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_009G254800 PE=4 SV=1) HSP 1 Score: 794.7 bits (2051), Expect = 7.1e-227 Identity = 381/519 (73.41%), Postives = 437/519 (84.20%), Query Frame = 1
BLAST of MELO3C008339 vs. TrEMBL
Match: A0A0D2UTZ4_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_009G254800 PE=4 SV=1) HSP 1 Score: 794.3 bits (2050), Expect = 9.2e-227 Identity = 381/518 (73.55%), Postives = 436/518 (84.17%), Query Frame = 1
BLAST of MELO3C008339 vs. TrEMBL
Match: A0A023NFQ4_GOSHI (Sterol glucosyltransferase 2 OS=Gossypium hirsutum PE=2 SV=1) HSP 1 Score: 792.3 bits (2045), Expect = 3.5e-226 Identity = 380/518 (73.36%), Postives = 435/518 (83.98%), Query Frame = 1
BLAST of MELO3C008339 vs. TAIR10
Match: AT1G43620.1 (AT1G43620.1 UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 749.2 bits (1933), Expect = 1.7e-216 Identity = 359/521 (68.91%), Postives = 425/521 (81.57%), Query Frame = 1
BLAST of MELO3C008339 vs. TAIR10
Match: AT3G07020.2 (AT3G07020.2 UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 557.8 bits (1436), Expect = 7.4e-159 Identity = 266/486 (54.73%), Postives = 349/486 (71.81%), Query Frame = 1
BLAST of MELO3C008339 vs. TAIR10
Match: AT5G24750.1 (AT5G24750.1 UDP-Glycosyltransferase superfamily protein) HSP 1 Score: 83.6 bits (205), Expect = 4.1e-16 Identity = 43/120 (35.83%), Postives = 63/120 (52.50%), Query Frame = 1
BLAST of MELO3C008339 vs. NCBI nr
Match: gi|449446506|ref|XP_004141012.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80B1 [Cucumis sativus]) HSP 1 Score: 1031.2 bits (2665), Expect = 6.4e-298 Identity = 501/520 (96.35%), Postives = 507/520 (97.50%), Query Frame = 1
BLAST of MELO3C008339 vs. NCBI nr
Match: gi|223536384|gb|EEF38033.1| (transferase, transferring glycosyl groups, putative [Ricinus communis]) HSP 1 Score: 811.2 bits (2094), Expect = 1.0e-231 Identity = 385/518 (74.32%), Postives = 445/518 (85.91%), Query Frame = 1
BLAST of MELO3C008339 vs. NCBI nr
Match: gi|1000955128|ref|XP_015577948.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80B1, partial [Ricinus communis]) HSP 1 Score: 811.2 bits (2094), Expect = 1.0e-231 Identity = 385/518 (74.32%), Postives = 445/518 (85.91%), Query Frame = 1
BLAST of MELO3C008339 vs. NCBI nr
Match: gi|224066639|ref|XP_002302172.1| (UDP-glucose:sterol glucosyltransferase family protein [Populus trichocarpa]) HSP 1 Score: 808.5 bits (2087), Expect = 6.8e-231 Identity = 377/516 (73.06%), Postives = 441/516 (85.47%), Query Frame = 1
BLAST of MELO3C008339 vs. NCBI nr
Match: gi|645264804|ref|XP_008237852.1| (PREDICTED: sterol 3-beta-glucosyltransferase UGT80B1 isoform X1 [Prunus mume]) HSP 1 Score: 802.7 bits (2072), Expect = 3.7e-229 Identity = 378/517 (73.11%), Postives = 438/517 (84.72%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
This gene is associated with the following unigenes:
The following mRNA feature(s) are a part of this gene:
The following transcribed_cluster feature(s) are associated with this gene:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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