IVF0021405 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGACAGAGTGGATAGATACACAGAGGCCTGACCTAAAATTTGATGAATTGTCAGGGGACAAACAGGTACTTATTGGAATATCTCGTTATCCTAAAAAACAATTTGGCCCATACATCTACTACTTAATATGTTTGGTTCAACATGCATAATGAAAAATGTTCCCGGATGTTTCTTTGTAACTCATTCCATATGCTTCTTGATTCCTTTTGTAATCATTCTAATTATCTAGGTGGAAGATTCCTTTACCCTAGGATCTAACTTCTTGATTTAGTGTTTCTGAGGCAAAATATTGATAGTCTTGCTCTTTTATTATTCTTTCTTTTTTGTTCCATGTTCCTTACTCTATATATGCTTTGACTCAATGCTTATTATTTTTGGCTGGCAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGCATGTTTGAAATATTTCATTAGTTTTTACTATTGACACTTTATTTTATTGTCTCTCTGTTTCACTTCAGCATTTATTTTTTGAATTCTTGATTTGGCCATCACCCAACTGTGGTTGTACATTGATCTTGGAGATGGGAGCGAGTGAGTGTGCAGATAATTTGTTTCCCTGGATTTTGTTAAAGAATATTTTCCCATTATGAAATTATTACAATAGTGAGTCATCCTGATTGAAAAAATATGTTGTACTGAATTTGACTTCTCTAACATTGCTTCTAGAGTCTATCTCATCCATGTTCAATTTTTCAGGTATTAAATAGATTTGTTTTTAATCCACTTGCCATTACTAAAAGATCAAAATTATTAATAAAAACTCAATGTGGTTGATGTTCTATAGTGATTTTGGTAGATCCCGAACTAATCGAAAGTAATTTCTGAATTTTTTTGATGAAATGAATTCAATTACAATGTAGATTGAATTGAGTAATACTTAGGGTAACAAGCCAACTAAATTCCCAAATTTCATATGAGAAGCTTTTCCTGCCCAAACACTTTATTTATACTAACACACACCGACTTCCCACTAACATAACAGACTTCTAACAAACTTACTATAAACTGTCTTTTATTACAATATTGCCACTCCTACTAAACTTTCTTCTTATTTCTTCCGCTGTACTGAAATATTATTAGAGGTCTATCATTACTCCTCCCTTCCAAATTTACCTTGTTACTCCTCCCTTCCAAATTTACCTTGTTACTCCTCCCTTCCAAATTTACCTTGTCCTCAAGGTGAAGATTTGGATATTTACGCTGCACTTCCTCATACATTTCCCAAGTGGTCTCATGATTCGGCAACCTACTTGAAAAGGCATCATGCCTAAAGCCCTCTGGAAAGTGGTATTATACCAGTATTCGGCCCATGACAACCACTTAATCCAATCTCTTGGCTTTTCACTGCAAAGCATCGCAAATATACCTCAACCCCTCTATTCACCACTTCAGTTTGACCGTCGGATTGAGGGTGATATCAGAGCTTCTATTCGATCTTGTTCCAGCTAACCGAAACATTTCCCTCCAAAAGTTACTAAGAAACACCTTATCTCTATCTGATGCAATGGATGTGGGAAATCTATGAAGTCGAACTACCTCCTTGACAAACAATTCAGCTACTGACTTTGCAGAATATGGATGTTTCAATGGCAGAAAATGGCCATATTTACTCAGACGGTCTACTACTACAAATATAACTTCAAAACCAGCCGCCTTAGGAAGACCATCCACAAAATCCATGGATATGTTACTCCAAACCTGTGTACGGATCTCCAATGGCAATAATAAGCCTACTGGAGACAAGCACAAGGTCTTATTCCGTTGACATACCAAGCATTCAACACAATATTTTTTAATGACAGATTTCATCCCTTACCAATATAATTCCCCACCTATCCTCTTATAGGTTCGTAGAAAACCTAAGTGACCCCACGGCTGAATCATGATAGCCCTGCAGAATGGCTGGCATTAACTTGGATGATTTGGACACAACCAGCCTATCTTTGTATCTCAACATGCCATTGTGGATTTTAAACTTGCCATCCATTTGCTCTTGTTCCCCTCTCAATTCAGTTAAAATCTTTTGTAGTCTCTCATCTTTTTCCACTTCTTCTTTAACTGTTTTCAAATCAAGAAAGATCGGAGCTGTCATACTACATAATTATAATTGTGCAGTTGGAGGAATCCTTGAGAGAGCGTTGGCTACTTTATTCTCAACTCCGGGTTTATACACCACCTCAAACATATACCCCAAGAGTTTGGCGATCCATCTTTGATATTGTGGTTGTATTACACGCTGCTCTAACAGGAACTTTAATGATTTCTGATCAGGCCTCACAATAAATCTGGTTCCCAACAAGTATGGTCTCCATCTCTGCACTGCCAAGACCACAACCATTAATTCTCTTTCGTATACTGGTCTGCCCCTGTCTCTTATTGCTAATGTGTGGCTGTAAAAAGCAATAGGGCGTTTATCTTGGATTAATACAGCTCCCACTCCATAACCAGAAGCATCTGTTTTGATCTCAAAAGGTTGGCCAAACTTAGGTAATGCTAAAACAGGTAAAGACATCATTGCTTCCTTCAGTCTGTTAAAGGCCTCATTCGCTTCTTTATTCCATTTGAACCCTCCTTTCTTGAGTAACTGAGTAAGAGGAGCAGCAAAGGATCCATACTGGTGGATAAATCTACGATAGTACCTAGTTAATCCAAGAAATCCTCTTGTTTCCCGCACATTTTTCGGTTTAAGCCAATCAGCTATGGATCTAATTTTTTATGGGTCTACTTCAATTCCATTTTCAGATATTATATGCCCCAAGTACTCTACTCTTGCTTTGCCAAAACTACATTTTTTTCGATTAGCAAACAGCTCATGTTTTCTCAGCACCACGAGTACTACCTCTATATGCTTTAAATGATCATCAATGCTCTTACTATAGATCAATATATCATCGAAAAAGACTAAGACAAACCTTCTCAAATAGGGCTTGAATATCGTGTTCATCAATGATTGGAAGGTAGCGGGAGCATTAGTTAGCCCAAAGGACATTACTAAAAACTCATAATGGTCTTTGTGTGTCCGAAAAGCAGTTTTTTCCACATCGTCATCTGCCATTCTAATCTGATGATAGCCAACCTTCAGATCAATCTTAGTAAATAGTGATGCTCCACTCAATTCGTCAAACAATTCTTCCACTACAGGAATTGGAAACATATCCGGAACTATGACATCATTCGAGGATCGGTAGTCTATACAAAACCGCCAACTACCGTCTTTCTTTTTAACCAGTAATACCGGACTTGAGAATGGACTCACACTCGGCCTTATGACTCCCGAAGCTAAGATCTCCCCAACCAACTTTTTCATTCCTTCCTTTTGATGGTATGCATAGTGGTATGACCTTACATTTACAGGGTTAGTATCCCTTTTTAAATGTATATGATGTTCGATGCTCCTTCTAGGTGGAAGTCCCTCCGGCCACTTAAAGACATCACTGTACTGATTCAACACAGGAGCAATTATTCCTTCTGTTTCATCATTTTCTGCTGTCTCTTAAAAAACTATACCATTCAATTCAATCAGCCCAAGCGATCTACATTCAATCAGATAACCGTGATCTTGATCCTCCCAAGTCTTCAACAAATTTTTCAAACTCACTCTTGCTTTAGTGAGGCTCGGATCACCTTTGATACAGATTTGCTTATCATTATTATCATGGAAGGTTAATGTTAAATTCTTCCAGTCTACCACCGTCACCCCTAGCAAATAAAGCCATTGCATTCCAAGGATAATGTCTACTCCTCCCAATTCTAGAGGTAGAAAGTCTTCCTTTACCTTCCATTCATTCATTTTCACCTCCAAAGACTCACAAACTCCTTTTCCTTGAATAGCTGTGCTCGAACCGAGTATTACACCATAATGAGCAGTCTCCTTGATTGGTAATCGTAAAGACTTTACCAATTTTTCAGACACAAAATTATGTGTAGCCCCATAGTCAATCAAAATTACTACCTCCCTGTCCTGCAACAATCCTCTGACTTTCATTGTTTCCGGATCATTCAGGCCAACCACAGAATTTATCGATAACTCCACACAGGCTGCAATGTTATCTTTCACCTCTGCCATCCTCAGTTCTTTACTCTCGGCTTCGACTTCTTCAACAATTTCAAGTTCTTCATTATTACTATTGACCACAAACATTCTAAGTTCCCGATGCTCTTTCATTTTGCACTTATTATTAGCCAAATATTTCTCATTACACTTGAAATAGAGTCCCTTTTCTCTTCTTAATTGAAATTCTGCATCAGGTAATCTTCTAGTATTTCCTTCCTTGTGCACTTCTCCGGTGTTTGGACTCCTCAGTCTAATCATTCTTATTGGAAACGAAGTGTTTCCTTTGTTATTGCTGGTGAATTGATTTGCTGTGGGCTTCGCATTCGCTACGGCTTGCAGAGGATATTTCCCGCTGGCGAATCCATTCAAATTTGCTTTGCCTCTAATAATCTCTCTGTTTTCCACCAATTGAGCTATCAACATCATTTCCGCTAAACTTTTCGGTCTACAAAATGCCACTTCTGCTCGTAGCCATGGAAATAATCCATTCATAAACGTTTCTTCTACAACTCTTTCTTGTAAATTGGACAGAGGAGCTACCAACTTATCAAACAGATTTCTATATTCCTCTACCATAGTTTTCTGCCGAATTCTTAGGAATTGATCACAAATGGATCCCTTTAGTAGATCCAAATCTTACTAGTAGCCTTTCTTTCAAATTGGACCAGCTCACAAACTTCTCCCTCTCCTCTTGTGAACGGTACCAATTTAATGCAGGACCATAAAAACTAATCGTAGAAACTAACATTTTCTTAGATTCGGATAGCTTATGTATTTGAAAATACCTCTCAGCGCAGAAGAGCCAGGAATTGGGATCGTCGCCGGTGAAGACCGGCATTTCCACCTTCTTGAATTTACTTTGATCCACCGATATTTTGTACGTATTGGCGTTTCTTTCGGCATTGGTTTCTCTGATTTCTTGACTTGAAGTCGCTTCATTCCCTTTCGACTTCGCTGCCGATGACTCCTATAGAGCCGACTCTGTCATCCGTTCACTAATCATCGATCGCTCCTTCGCGTTTGCTTCCATATATGACAATATGGCCTGCTGTTGCTTCTCGGACTGTAGACGCATTAGTTTCATATTCTTTGTAAGTTCGATCAGCGTTGCTTCAATTATTGGCATCTTACTCAACTCCTTTTTAATTCCGGCGATTTCTTGATCGAATGATTCCATCCTCTCTTCGATTCTTGTTGCACCATCGTTAACTTTTCTTTTTCGATGAATTCAATTACAATGTAGATTGAATTGAGTGAAACTCAATTCAATACTTAGGGTACTCTTGTCTTCCCCTCTCAAGAAGAACAAGCCAACTAAATTCCCAAATTTCACATGAGGAGCTTTTCCCGCCCAAACACTCTATTTATACTAACTAACACTGACTTCCCACTAACATAACAGACTCCAAACAAACTTACTATAAACTGTCTTTTATTACAATATTGCCACTCCTACTAAACTTTCTTCTTATTTTTTCTGCTATACTGAAATATTATTGGAGGTCTATCAGATTTCTTCTTCTTCTTGCCTTTTCTTTCCAATTTTTTTTTCTGTTAACTCTGTATAATTCTCTGAGCCTGCTTGCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATGTAAGTAGCCCTGACTCTTGAAGACTTTGAGGACACTAACTTTATGGCACAATTTAAACGATTTACACACTTCTTTACCTGTTATTTAGTTGAAGACTCATAGAACAAGGGATAGTTGCATAATTATTATAGAATTATCAGATAAGCGGCTTGCAAAATTTTGGTAAATGTAAAACAAAATTTTGGTCATGTTTATTAATTGAGGGCCTTAATATAAAGTACTTTTATCGACAAATTTATGTCTCCATCTTCTGAAAGCCTGTTGGTTAGCGACACTTTTGAGGTGACCAATTATGTCAGAAGGCAATCATTTAGACATTATTCAGTTTATATAATGAAGTGCAGAATAAGATGGATTTTCGTTCTTTTTATCTGACAGAATAGTTATGATGAAATTCACGAACATCTTAAACTACATCATGGATCACGAGAATCTATTCGTTTAATATTTCACCAACTCTTATTGACCAGAAGTATCTTCCCCATTAAGAAATCTTCTGATCTAGCAATGTGTCAAGACTGATATTGTGGCTACTGCTCGCCAGAAGATCTTTAATTGTTTTAATAATCCATGATCTTCCATTCTTGCTTAATTATGCTTGGATCTTTTTACATTTGAGTTTCATATCGTTGCCTTTGCCTTCTATAGGAAACTGACTTTAATTTCATTGACATGATGAAATTTTCATAGACAAAAGCCAAATGACAGGAACCCTCTGCAGAACTGGTGCAAATAGTAGCAAAACCAAACGACCAACTCATATGAAGAGTCTCCAAGAGGAGAAAATAACATTATTGTTCTAAACTTCCCCATTGATGAACCCAACCTTGAAATAAATATCCGCCCATTTTTCTCTAGTCAACTTCCCAACGGTAACTCTAATTGCATTGAGCCACCAAATTTAGCTATCCACATTAGAGGAAACCCACTTGCAAATGGAAGTGAACAGAAACTTTCTTCTAAATGAATAAGTGAGCAATTGATTTATCTTGTACACTAGGTTGTCTTGGTTGAATCTTGTCTCAAGCATTCAATCTCCCCAGTCCAGACAATTCTTTTCCTAATTTTCTTAGGACAAGGATGTTCCCAAGGCCTCTCTTAATCTATTAGGTAGCTGATCTATCGCCATAATTGGTATAGTCATTCCTATTAACTTTGATATTCTTATGGGGGTTCTTGTTGAAGGAAAAAACTGGTTATACTATTATATTTCTCTAATTATACCCGATATGATTTGGTACACTCATTTGAGCTTTCTCTCTTCTTATCCAAAAAAATTACTGCTTACGCTCTAATTATTTATCTTTTTATTCTTTCTCAGTTGCTTGTCTTGCATTAATGATTCTGTAAAATTCATTTTAGATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGTGAGTTATTGTAGGCAAAGTTAAGCATCTCACTTCAATGTCATTCTTCAGGTGTGTTTTCCAACAGCTGCTTATCAACCATTTCAAAATTTTCTTAACGTCTAAAATTTTTGGTGGAAATTAGGTCCAGGTCATTAGTATCGTTTTGTTAGTTGTTAGTCAACTACACTTTTATTTACTTATTTTTTAAAAAAAACTCTGGCATGCAGATTTAATATGAGACACGCTATGAAAGTTTAGATAAAGTAACTATAAATTATGAGCAAAGCATCTCTCAGTAATATTAAGATTTTAGTGGCTTTAAATGATTAACCTCTTAACTATAATGTCAGTGATATATAATTAAATTTACCTTCAACCATCACCCTAAGCTTTTGGGCGAATTGGTGGTTTAATATAATAATCGTTTATTAATCAATAAAACAAGATAGATAGAAATAAAAAAGTCAATAAGATAAGCAGACAATTTTCCACAATAAAATTTATTATTGAATATTCTATTCATACAATTGTCTACTAAATTATTAGTTGATAGGAAGGATAAAATTTCTATTTAAGGGTTAGTTTCCAAATTTCACTTTGTGATTGTTTGATTTGGGTTGCAGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGTAAGTTGATTATAATTGTCATGTCATATTGTGCTGATGTTGCTAGATTCTATTATATATTTGGGGAAAAAGATATCAGTTCTAATTTCTTTTTTAAAAGAGACCACTGACCTTCCATTTAAGATTTCTTTCATAAGGTGTTTGGTTTGAACCATGTTCACTTTTTTTCTTAAAATAAGAACTCAACACATTTACAAAAACTCCCAATAAAAAACAGGCAAATAAGAATTCTTCCAAGCAGCCATGTAGCTTCAAAATGGCACTGCACTTGACCAGACTGCAAATTAGAACATTGTTATAAATAAATTTGTTTGCAATGCACCAACTAGAGTCTGAGTGTCTAAAAGATCTCAAATCTCAGGGGAGGTCCAAAGATTTTATTTGAAAACTTCTCTAATTTACAATTGGAGATCGTTTCTGTATTCTTCCGTTGGTGGTCTTCATTCAACAATGAAATTCTTGTTTAGTTTTCCCAAAAGATTTATCTGTTCCTCTCATACATGTCTTCCAAAGTATAGCATAATAGCATTTGAGGAAAGGACTTTTGAGTTTGGCTTCTATTCAGCGTTCTGGATTGCATTCTTATGAAGAACAATTGCTGTTTTACACACGTGAATTCTTATTTTTAAAATCTCTCTTTAAGATGCCTCATTATGATAAAAAAAACAAGGCGTTTGTTTTGGCTGCTGATTGTGAGTAATATTTTCTAGCCTGCCACAACCTGCATAATGTAATTGACTAAGTAGTTAATATACGTCGGTCTTAGTTGCATAGATTGGGCATCAATTCAATCTGGGAATGGGCCAAAAGTTTAAAGAAGGAAGACGACCTATAACTTTTTAAGCTTAAGTTTTCGTCTTCTACTTTTCTCAATTAACTTAATATGGATAAAAATTTTTAGATCACACCTTACATTTTTTTGATAGGCAGGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGGTATGTACTTTTGTTTGGAGTCCAAAGTTTCTTTCTCAAAGTTTCTTTCTCATACTTGCAAAATTTTCTTTTCATGTGTCCGCTGTTTAGCTGATTTCACTAGTAACAATGTTCCGTCACCATTATTGCATTGTTCAGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGGTACGACGCAATATCTGATTTAGTTAAATATTTTGGAGAATTATTTTCTTATTGATCTTTGCTTTTATATGATTTACTGGATTAGCTAACACTGATATGGTGGTATCGCCAATTGAATATGCATTAATGGTTGTTTAGTTAGTAATTAGATGCAGGGGTGTTCACAGTTCGATTCGATTTGGAATTATACCCAACTGAACCATTTGCTTGGTCCAAACCGAGACACGAATATTTGATTCAGTTTTTGGTTTTATATGTATATGGTTCGTTTTGGTTTGGGGTTATATATATATATATATATATAAACGGTTTAGTTCAATTTTGGCTTCGGGATTTAAATCCAAAACAAAAATCAACCAAACTGAAGCTTCAGTAAAAAAAAACTGAAATTTCTGTTTGGTTTGGTCATTTTAGTGCGCACCCTAAATTGGATGGATGATCATGTCTCACGGGAAAAGCTATTAGAAGAGAGGTCAATTGTGATTTTGGCAAAGTGGTCATACGTTCTTCTCTAATTGCTGGCTGATGTTTTTTGAACAATTAACTCTCTGGAGTGAGCTATGGATGAAAACCTTGGACTCTGTCGTAGGTGCTTCTACCGGGGTTGATTTCTCTCATTCATTGCACAATGCTGTGGGTTTTACTATTATGATTTGGTATTATTTATGGCAATTAGATGATCAAAGAGATGACCAGCCAGTAAAATTTTCATCCTTTGCTTGCTCTATCCCCATATCATTAGATGGGGACTGATATCGAGATCTTTGTTACTGGGCACTCTGATCCATTTTGAATTGAGATCTAGCTTAATAGAAATTGGAAACTATATTCCACTGATATGCTACTAATCATATTTACATTTGTATTCTGAAGAGAACAGATTGTACTCATATTGATTAGAGCCCAACAGGCAGTATTGAGGAACAGTAAGATTATTAAGAAAGAGACAATTAGAGCTTGGCTAGGAAGGATTATCTGGTCGAGGTGTTCAAAATTAATATTTGCTTTAACTTCTAAACTAGGTTTTTTCTTTTTCTTTGTTTTTCTTTTTTGTATTTTATTTTATGTATTCTACTCTCAATAGTTTAGTAACCATTATTCATGAATTTTTTATTGGTTTTGGAAATTGAACTTCTTCTTTTGCTCACCTTTTATTTTAATAGTTTATGATACCTTTCGTCACTGCCATCTCTGATTTTCTTCCTATATTCTTAATTCGCCTTGCTTGGAGTTTGTGAATTCTTGTAATTCATACATATGGTTTATTGGTGTAACTTATTTGCAGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGGTATGGTGACCTCAGCATAATATGTATTTTGTTACATTTTTGGTCGAATATCAAATGTCATAGATTCCATTTTATCTTCAATCATTGAATAGGATCCTTGGTTGTAATTTTTAATATTCTCTGATAAAAATTTTAGGAGATCCTTAAAAATTAGGAGTTGTTGCAAATATAACAATCCTACCCAAAGTATTAGCAGATAGTACACAAAACAAAAGAATTTGCAAATATAACAACATTTAGATTTAGCTCTTAGAGTCTATCAGTGATAGACTATATTGCTATAGGAGTCTATTAGCCATGGAATATCACTAATAGGAATCTATTTGTCAACAGTAGAGTCTATCACCGATAGATTTTACTATATTTACATTTTTAATGTTGTTAGACCTAATTATTATCCCTAATAAGACTTCCCATTGCAATTACCCTATAAATTATAGTTATCCTAATCCACTAGGTGTTAGCTTAAACTTTTGAGTCTAATAGTGACATGACTTTCTTAATTACTATTCAATGGGCCCATTGACTTTTCTTTTAAATATTTCTAAGTGTGTGAACCTTTGGTATAAAAGCTATTGGACTTTTGTTTTTGCTTGATCAGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACGTATACTCTTTCCTTTTGCTTTTTATAAATGTTCCAATCAGTGGTTATATTCTACTATCTTTTCACTGCTTTTAGTTAATACAGACACTCTAGCTATCTTTTTCTTCGACACCACAGGCTATTGATTTCATAATAGTTGTCAGTGGTGTTGTTGGTTTAGACTACTGCTCAAGCGAGAATACATTACCTTACTTGCTGCATCTCTTTCTTTCAAACCCAAACAATTATCCTTGGGACACAGGAGAGACCCATTATTCTTAGTATTGTGATAGACAATAGCATTTATAGCATTGTTGGCTCTTGAAGGAGGAACTGGAAAAGAAGGGGGAGCATGCAGTAGGTCATGAGTACCACTCATGGAGACAAGATAGCTCACTCCCTGGTTCCACTCTCTTGAAGAAATTGAAAATGGCTATTCTAGGCGAATATGCTTGAAGCATGGCAATCTGGTCTTTACAAGGCATGTCATTCACCTTCATTAAAATTTGGGGAGTGGAATGGATAAAAATGCATATCAAATATAGATTGAAACACAAAACTCAGGCAAATGTACTACTCAAGCATACTGTTCGAATAAAATTCTGCTACTATGTTACATGTTGGGTGACCTTTTCTTCTTCACACAAGTGAAAAAAGTTGTAAATTATGTAATACTCTTTTGTTTCTTTTTTCATTTAGTATGAATGAGAAACTTGGATTAAGAGATATTTTGCTGATTGGAAAAGCTGGCATCTTGGTGAATCGGGACTGGAAGTACGGAGGAACAGGATCATCATTTAGACTTGAATTGTAACATAAATGTTAGAAATTAAACAAGTAAATAAACAAGGAAGAATAATTACACAGCTCGCCAACATACTGTAGAATCATGTCAAGTTATTTGAGAAGTGGTGGCATAATATTTAGACAATTTCATGATGAGAAATCTGAAATATTCAAGGTCGTTGATGTTGGTATGCTCAACTAGAAAAATGTTGATTTTGTTCGTCTTGTTTATGTTATACTAAATTTATTTCCTGTACTTATTAATAGCGAGAATATCAACATGCTGTGATGCCCCTACAAAGTTACAATGTGATAATTATCGTTGATGAGTGATGATGCCCTTCCAGATTTGACTGCTGATATTATTCTGATCCTATTAACTTTGTTGAGTTTGGGGGTTGTAGCTATGCAGTTTAGAGAGAGAAGTTCCTGAATAGCACTGTGTTGTACAGGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTGAGTACTGCCTTACTTTCTAAAACGCTATCCATGAAGCAGACTCCAAAGGCCTAACCTTTTCACCATTCTGTCATGCTCTGTTCACTTCCCTGAATTTTCACTGTTCACAAACCACCCTCAATTTACATTATTTTTGGAGGATAGGTATCGCTAAATGCTTTAAAATACTGATATCTTAAGGAATTTTGTACTAATGCATTGAGTCATCTGTTTTATGTTATATCTGGGCTGCAGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGGTAAGAAGTGTCTTGATGATTTAGTTGACTTCTGATGTTTCCACTTTCCTTACTGTCAAAGAATATGGTTGTTTCCACTTTCCTTAATGTCAAAGCATATGGTTTACTAGGTTTATTATTATTTCCTTAACACAAAAATGTTGTAGGATCAGACAGATTGTCTGTCTAGTGAAATTAATCTAAGTGTGCTTAAACTGACCTTGACATCGATGGTTATCCAAAAAAAACTAGGTTTAGTATTAAGAAGGCAGTTGATAGATGTGGAAATTGTTTTATAATTTATATTTTCTTCTGTTCTGGTTTTGAAATTTGAAATTCAGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTGGGATCATCGATAATGATTATTATTACAATTAAAAGTTGAATGTTGTTGACTTGTTTTCTTTTTGTTAGTGTTGGAATAGAATGTTCAATTTTGTGAAACATATTGAATCTTAATGATAGTCTAATGACTCAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGA ATGACAGAGTGGATAGATACACAGAGGCCTGACCTAAAATTTGATGAATTGTCAGGGGACAAACAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGA ATGACAGAGTGGATAGATACACAGAGGCCTGACCTAAAATTTGATGAATTGTCAGGGGACAAACAGAAACAATTAGTTGCAGATCTAGTGAAGATACAACGTGATGGGACTGTAAAAGTTGATATAGAGAAGAATGCCCCTGCTGTTTCAGAACTGTTAAAGCTTCATCCTACCTTGGAAGGGTCATCACCCATAGTTGATGACGTCGTTTCTGAGTCCAAAAAATTGATTCCAAGGTTGAAGATTGCAATACTTGTGGTTGGAACAAGAGGAGACGTGCAGCCTTTCTTGGCCATTGCAAGGAGGCTTCAGGAATTTGGCCATCACGTTAGGCTTGCCACTCATACTAATTTCAGAAACTTTGTAAGGTCTGCTGGTGTTAACTTTTATCCTCTGGCTGGCGACTCTCGTGAATTGGCTGAATATATGACCAGAAACAGAGGTTTCATTCCATCTGGACCGGGAGAAATATCTGTCCAAAGGAAGCATCTTAAGGTGATTATAGAGTCCACACTTCCTGCTTGCACTGAACCAGATCTAGAAACTGGAATGCCTTTTAGGGCTCAGGCAATTATTGCAAATGCTCCTGCTTATGGACATACACATGTTGCTGAAGCTCTTCATGTACCATTACATATCTTCTTTACGATGCCTTGGACGCCAACGAACGAGTTTCCTCATCCACTGGCACGTGTACCCCAAAATACAGGCTATTGGCTTTCTTATATCATTGTGGAACTATTGATATGGTGGGGAATAAGGGGATCCATTAACGAGTTCAGGAGGAAGAAGTTGAATCTTCCACCAATTGCATATTTTAGTACATATCGTGGATCAATTTCTCATTTGCCTACTGCCTATATGTGGAGTCCCTCTGTTGTGCCAAAGCCAAAGGATTGGGGGCCTCTAGTAGATGTTGTTGGCTATTGTTTCCTGGACCGTGGATTCAAGTATCAACCTGAAGAGTTGGTCCTCAAGTGGATTCAAAAAGGAACAAAACCCATATATGTAGGATTCGGGAGTATGCCTCTTGCCGAGCCTCAGAGGACAACTCATATCATATTGGAGGCCTTAAAGGATACAGGGCAAAGAGGAATAATTGACCGGGGTTTGGGAGGCCTAGGCAATTGTACAGAACTTCCTGAAGATGTACTCCTTATACAAGACTGCCCTCATGATTGGTTATTTCGTCATTGTTCAGCTGTGGTTCATCATGGTGGTGCTGGAACTACAAGCACAGGACTTAGAGCTGGGTGCCCAACGACCATAGTACCATTCTTTGGAGATCAATTTTTCTGGGGTGAGACAACTCATCAGAAAGGCCTTGGACCTGCACCGATTCCTATATCTCAACTAAACCCCACGCATCTGTCGAATGCGATTAATTTTATGCTCCAGCCTGAGGTTAAATATCGAGCAATTGAAATAGCAAAACTTATTGATAGCGAGGATGGTGTTGTGGCAGCTGTTAATGCATTTCATCATCATTTACCTTCAGAGCTGCCTCTTCCACCTGCATCTGAAGAGGATGAAGACTTTGCAAACCCTCTGCAATGGTTTCTTCTAAAAGTGGAAAAGTGGTGCTGCGTTCCTTGTGGTCTTAGGCTTTGA MTEWIDTQRPDLKFDELSGDKQKQLVADLVKIQRDGTVKVDIEKNAPAVSELLKLHPTLEGSSPIVDDVVSESKKLIPRLKIAILVVGTRGDVQPFLAIARRLQEFGHHVRLATHTNFRNFVRSAGVNFYPLAGDSRELAEYMTRNRGFIPSGPGEISVQRKHLKVIIESTLPACTEPDLETGMPFRAQAIIANAPAYGHTHVAEALHVPLHIFFTMPWTPTNEFPHPLARVPQNTGYWLSYIIVELLIWWGIRGSINEFRRKKLNLPPIAYFSTYRGSISHLPTAYMWSPSVVPKPKDWGPLVDVVGYCFLDRGFKYQPEELVLKWIQKGTKPIYVGFGSMPLAEPQRTTHIILEALKDTGQRGIIDRGLGGLGNCTELPEDVLLIQDCPHDWLFRHCSAVVHHGGAGTTSTGLRAGCPTTIVPFFGDQFFWGETTHQKGLGPAPIPISQLNPTHLSNAINFMLQPEVKYRAIEIAKLIDSEDGVVAAVNAFHHHLPSELPLPPASEEDEDFANPLQWFLLKVEKWCCVPCGLRL Homology
BLAST of IVF0021405 vs. ExPASy Swiss-Prot
Match: Q9XIG1 (Sterol 3-beta-glucosyltransferase UGT80B1 OS=Arabidopsis thaliana OX=3702 GN=UGT80B1 PE=2 SV=1) HSP 1 Score: 779.6 bits (2012), Expect = 2.2e-224 Identity = 364/527 (69.07%), Postives = 434/527 (82.35%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy Swiss-Prot
Match: Q9M8Z7 (Sterol 3-beta-glucosyltransferase UGT80A2 OS=Arabidopsis thaliana OX=3702 GN=UGT80A2 PE=1 SV=1) HSP 1 Score: 583.6 bits (1503), Expect = 2.3e-165 Identity = 268/486 (55.14%), Postives = 355/486 (73.05%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy Swiss-Prot
Match: Q6C8M8 (Sterol 3-beta-glucosyltransferase OS=Yarrowia lipolytica (strain CLIB 122 / E 150) OX=284591 GN=ATG26 PE=3 SV=3) HSP 1 Score: 273.5 bits (698), Expect = 5.2e-72 Identity = 171/538 (31.78%), Postives = 281/538 (52.23%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy Swiss-Prot
Match: A1CYS1 (Sterol 3-beta-glucosyltransferase OS=Neosartorya fischeri (strain ATCC 1020 / DSM 3700 / CBS 544.65 / FGSC A1164 / JCM 1740 / NRRL 181 / WB 181) OX=331117 GN=atg26 PE=3 SV=1) HSP 1 Score: 268.1 bits (684), Expect = 2.2e-70 Identity = 160/463 (34.56%), Postives = 235/463 (50.76%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy Swiss-Prot
Match: Q4WID6 (Sterol 3-beta-glucosyltransferase OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) OX=330879 GN=atg26 PE=3 SV=2) HSP 1 Score: 266.5 bits (680), Expect = 6.3e-70 Identity = 160/463 (34.56%), Postives = 234/463 (50.54%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy TrEMBL
Match: A0A1S4DUQ4 (sterol 3-beta-glucosyltransferase UGT80B1 OS=Cucumis melo OX=3656 GN=LOC103485617 PE=4 SV=1) HSP 1 Score: 1130.5 bits (2923), Expect = 0.0e+00 Identity = 536/536 (100.00%), Postives = 536/536 (100.00%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy TrEMBL
Match: A0A0A0KCL8 (Glyco_transf_28 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_6G056540 PE=4 SV=1) HSP 1 Score: 1094.7 bits (2830), Expect = 0.0e+00 Identity = 521/536 (97.20%), Postives = 527/536 (98.32%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy TrEMBL
Match: A0A6J1FGV7 (sterol 3-beta-glucosyltransferase UGT80B1 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111445283 PE=4 SV=1) HSP 1 Score: 1019.6 bits (2635), Expect = 4.7e-294 Identity = 479/535 (89.53%), Postives = 505/535 (94.39%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy TrEMBL
Match: A0A6J1JX97 (sterol 3-beta-glucosyltransferase UGT80B1 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111489150 PE=4 SV=1) HSP 1 Score: 1018.5 bits (2632), Expect = 1.0e-293 Identity = 478/535 (89.35%), Postives = 504/535 (94.21%), Query Frame = 0
BLAST of IVF0021405 vs. ExPASy TrEMBL
Match: A0A6J1BXM4 (sterol 3-beta-glucosyltransferase UGT80B1 isoform X4 OS=Momordica charantia OX=3673 GN=LOC111006253 PE=4 SV=1) HSP 1 Score: 932.9 bits (2410), Expect = 5.8e-268 Identity = 434/536 (80.97%), Postives = 479/536 (89.37%), Query Frame = 0
BLAST of IVF0021405 vs. NCBI nr
Match: XP_008441512.1 (PREDICTED: sterol 3-beta-glucosyltransferase UGT80B1 [Cucumis melo] >XP_016899450.1 PREDICTED: sterol 3-beta-glucosyltransferase UGT80B1 [Cucumis melo]) HSP 1 Score: 1123 bits (2904), Expect = 0.0 Identity = 536/536 (100.00%), Postives = 536/536 (100.00%), Query Frame = 0
BLAST of IVF0021405 vs. NCBI nr
Match: XP_011656634.1 (sterol 3-beta-glucosyltransferase UGT80B1 isoform X2 [Cucumis sativus] >KGN46137.1 hypothetical protein Csa_005591 [Cucumis sativus]) HSP 1 Score: 1087 bits (2811), Expect = 0.0 Identity = 521/536 (97.20%), Postives = 527/536 (98.32%), Query Frame = 0
BLAST of IVF0021405 vs. NCBI nr
Match: XP_031743332.1 (sterol 3-beta-glucosyltransferase UGT80B1 isoform X1 [Cucumis sativus] >XP_031743333.1 sterol 3-beta-glucosyltransferase UGT80B1 isoform X1 [Cucumis sativus]) HSP 1 Score: 1079 bits (2791), Expect = 0.0 Identity = 521/545 (95.60%), Postives = 527/545 (96.70%), Query Frame = 0
BLAST of IVF0021405 vs. NCBI nr
Match: XP_038885378.1 (sterol 3-beta-glucosyltransferase UGT80B1 [Benincasa hispida] >XP_038885379.1 sterol 3-beta-glucosyltransferase UGT80B1 [Benincasa hispida] >XP_038885380.1 sterol 3-beta-glucosyltransferase UGT80B1 [Benincasa hispida]) HSP 1 Score: 1063 bits (2750), Expect = 0.0 Identity = 504/535 (94.21%), Postives = 520/535 (97.20%), Query Frame = 0
BLAST of IVF0021405 vs. NCBI nr
Match: KAG6578885.1 (Sterol 3-beta-glucosyltransferase UGT80B1, partial [Cucurbita argyrosperma subsp. sororia] >KAG7016415.1 Sterol 3-beta-glucosyltransferase UGT80B1 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1020 bits (2637), Expect = 0.0 Identity = 482/535 (90.09%), Postives = 507/535 (94.77%), Query Frame = 0
BLAST of IVF0021405 vs. TAIR 10
Match: AT1G43620.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 779.6 bits (2012), Expect = 1.6e-225 Identity = 364/527 (69.07%), Postives = 434/527 (82.35%), Query Frame = 0
BLAST of IVF0021405 vs. TAIR 10
Match: AT1G43620.2 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 779.6 bits (2012), Expect = 1.6e-225 Identity = 364/527 (69.07%), Postives = 434/527 (82.35%), Query Frame = 0
BLAST of IVF0021405 vs. TAIR 10
Match: AT1G43620.3 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 779.6 bits (2012), Expect = 1.6e-225 Identity = 364/527 (69.07%), Postives = 434/527 (82.35%), Query Frame = 0
BLAST of IVF0021405 vs. TAIR 10
Match: AT3G07020.2 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 583.6 bits (1503), Expect = 1.7e-166 Identity = 268/486 (55.14%), Postives = 355/486 (73.05%), Query Frame = 0
BLAST of IVF0021405 vs. TAIR 10
Match: AT3G07020.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 583.6 bits (1503), Expect = 1.7e-166 Identity = 268/486 (55.14%), Postives = 355/486 (73.05%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) 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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