IVF0016893 (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.ATGAGCCCCACCATGGATCATGGTAACAACAGTCCAAACGAGATTTCTCAACCTGTAATTAATTTCCCTTTTCACCTTCTTACAATTCAATCATTCACTGCTTTTTTAGCTTCAGTTGAGCTAATTCATCACTTCACTTTTGCAGCTCATTTCCATGGAAGAAATCAAGTCCGATTCCACTCCTCACCACCCCCACCGCCTTATCTCGGTGGATTCCGATGTTTTGCTCCCAAAACCGGCGAAATCCAAGCGTCTTGCGTCGCTTGATATCTTCCGAGGTCTCACCGTTGCGGTACTTCTCTTTCCTCTGTTCTTCTCGATATATAATTAAATTCGACTTCATCCATTAACTTAACTTTTAGGTCCTCTTCGGGTCATTTTCCTTACTTGGGTCTTCTTCGTATTTTAGCGCACAAGTGAATGGGTGATTTAAGAGTCCCTTTGATTATTTGATGGATTATTGGATGATACAAGAGAAAAGTTAGTAAGAACAGTTATGATGTATTTGTATATAATTAGCAGTAGCTTTTCTAGTTGTTAGTTGATAATTAGTTAGCAGTTTGGTAGTTAAGTTGTGTTTGATTACTATTTTGTTTTTGTTTTTTTTTTTTGAATCTGTCCTTGTGAGGACTATTTCTTTTACTATGGTTCTTCACCTATCTCAGAATTATTTTGACTATAACCCAAATTAAAGAAACGCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATTAAAAACCAAATTTTAGTTTCTAAAACTTTGTTTGGGTCTTGAAAACATTGATAGGAATTAGATAAAACAACAAAGAAACTTATTATGTTTGGAAGTAGTATTTTTAAATTTAATTTTCGAAGACCGAAACTTGAAAACCCAATGATTATCAAATGTTGCCATAGTTGGTTAACCATGCTCTATTTATACTTTATGGAGGGCTATTCTCTTGTATTAGTATTTTACTTTTTAAGTTTTAAACTATTTTATGCTAGATTGCGTTAATTTCATTGGACAAACTTGGCACCACAATTTTTTTTTTCTTTATACTAGATTTTGAAACATTACTCAATCATCATTGCTGTAGTATTTTGAAAACTTTGAATCCTTGATAAGTACCGACCATAAGAGAGATGGAAATTACTTTGAAAGCGTACAAAGAAAGGAAGCGTATAAGGATAAATCTGGCTTGTTAGGCGATGAACAAGAAAATTGAGGGGAAGAGGGCTCTTTTGATGAGGTTGTTGTTAAGACACTGCCTCGTTCCTTTTCTTTTACTTTCCAAAAACCAGAGTACAGCACAAAAATCAAGTAATAAACACTTCAAAGGTTAAAGACAATAGCCTCTCCAAGGCTTGACAGAACAAAACCAGCTGGTGAAATAAAACACACACAGAATTTAACAACAAAGAACACAGACGAAAACAAGAACGCCCTGAATAATTCCTTCCTCCTTCTCTACAACCTAAGGCTATTTAAGCACACAAAAAACGGTAACCTGGTGTCGCCCCTCCCCTTTCTGGAGGTGGCTGCTCCTACCCTATCTGCTCAAAAACATTCGTACCCCTCTCTGCCCTCCTGTCCCCTTTTTATTGCCCACGACTAACTAACTGTGGGTCCCACTTTCTGGTCCCCATCCTCCTTGCTTTCTTCCCCTTCAACACGTGTTACCTCTGGGTTGGTCTCATGGCCATGATCCTCCTTGCCACTTGTCTCTCTTTCATTGTTTCATGTTTCTTCTTATTTTTCCTATAGTATGTAAATAGGATTGGTGGCCTAGCATCACTCTCCTCTTCCAAATCCACCTTGTCCTCAAGGTGAAAATCTGGAAACTGATATTTCATGTCAGTGCAGCTTTCCCATGTTGCCTCGTGTGGGGGCAATCCCTTCCAACTGATCAGGGCTTCCCACTCCTTCGTTGCTGGATTCTTGCGATAGCTATATACCTCTTCCGGTCGTGTAATCCATTCATGGTTTGCATTCATGTACGGATTCAGTGGTTGTACAGTCTCTCCTCTTCCTACAGCTTTCTTCAATTGTGATACATGGAACACGGGGTGAATAGCAGCAGCTGCGGGGAGTTCTAGTTTATATGCTACCTTTCCGATCCTTTCTAAGACTCGATAAGGCCCGAAATACTTTGGTGATAGCTTTTCATTTCTTTTCTTTCTGAGGGAGGTCTGCCTGTAAGGCCGCAGTTTGAGGAATACCAGATCCCCTTCCTGGAACTCTACTTCTCTTCTCTTATTGTCGGCGTGTTTCTTCATCCTTTCTTGGGCTAGTTTCAAGTGCTCCTTCAGGGCTCCCAATGTTATATCTCTGTCTTTCAGCTGCTGGTCTAGTGTTGAATTAGGTGTCTCCATATCCCCATAGTAAATCAAGGGAGGAGGAAGGCGTCCATACACAGCTTGAAAAGGAGTAATTCCAATGGAACTATGATAAGTTGTATTATACCAATATTCTGCCCAATGTAACCATTGGCTCCACTCGTTCGGTTTTTCCCTACAAAAACACCTCAGATATGTTTCAATACTCTTATTCACCACCTCGGTCTGACCATCTGATTGGGGGTGATAGGAAGAGCTCCGGTTCAGCTTAGTTCCCGCCAAGCGGAAGAGTTCCTTCCAAAAATGGCTTAAGAAAACCTTGTCCCTGTCAGACACTATCGATCTTGGATATCCATGAAGCCTGACCACCTCCTTTACAAATGTTTCAGCCACCATCTTGGCCGAAAACGGATGCTTAAGCAACAGAAAATGCCCATATTTACTCAGCCTATCTACCACCACGAATATCACATCCCATCCCTTGGATTTTGGCAGTCCTTCTATGAAATCCATGGATATATCACTCCATATTGCGTCTGGAATCTTTAAGGGCATCAGTAACCCTGCTGGAGATAAAGCCGATGACTTATTACGCTGGCAGATTGCACATTCTTCACAGTACCGCATGATGTCCTTCTTCATTCCCTTCCAGTAGATCTCTCCAGTCAACCGTTTATAGGTTCTTAAGAATCTTGAGTGCCCTCCGAACACAGAGTCATGGTATGTGTGTAGTATCGTAGGTAGCAATGTAGACTTGCTTGGAATCACCAACCGGCCCTTAAACTTCAACACCCCTTGATGCAGGGTGTAATGGGGTATCTCCATCCCTTCTTCGATTAGTCGGGTGATTTCTTGCAGCGCGGGGTCAAGCCTTGTTTCTTCCTTAATAATTTCCACGTCTATCATCGGGGGAGCTGTAATTTGATTCAGGTGTACTGCTGGAGATATCCTGGATAACGCGTCGGCTGCTTTATTTTCCAGCCCTGGTTGGTAAACCACTTCAAATGAATACCCCAGGAGCTTCGCTACCCACTTCTGATATTGAGGCTGCACAACCCGTTGTTCCAATAAAAACTTAAACGACCTTTGGTCTGTTTTCACTGTGAATTTCCTCCCTAGTAAGTAAGGTCTCCATCTTTGGACTGCAAGAACTACAACAAGTAATTCTCTTTCGTATACTGGTCGTGCTCTGTCCCGCATACTTAGGGTCTTACTGAAATAAGCCACTGGCTTCCGGCATTGAGTCAGCACAGCCCCCACTCCAACTCCCGAAGCATCTGATTCAATTTCGAAAGGTAGGTTGAAATCTGGCATGGTGAGCACAGGGAGAGTCATCATGGCCTTTTTCAGCTTGCTAAAAGCGCCCTCGGCTTCTGCATCCCATTGTACGCTCCTTTCTTAAGTAGCTGGGTGAGTGGTGCTGCTATTGCTCCATAGTTCTTAACAAAACGCCTGTAATAGCCAGTCAGGCCAAGGAAGCCTTTAACTTCCCTCACATTGGATGGAGTTGGCCAGTCACTCACTGCCCTTATCTTTTCTGGATCTGCTTCCAAGCCCTGTTCCGAGATGAAGTGTCTCAAGTAACTAATCCGTGGTTTGGCGAAACTGCACTTCTCCATATTCACATATAACTCCCTGTCTTGTAGTAGTCCTAACACCACTTCTAAGCGCTGAACATGTTCGTCCATCCCTCGGCTGTAGATTAGGATATCATCAAAAAATACCAGCACAAACCTTCTTAAGTATGGCTTGAACACTTGGTTCATCAGCGCCTGGAATGTAGAGGGGGCATTCGTCAATCCGAACGGCATTACCAAGAACTCATAGTGCCCCTCGTGATTCTGAACGCGGTCTTCTCGATATCTTCAGGGCACATCCTAATTTGGTGATATCCGGCTTTGAGGTCTAACTTGGAGAATACGCTAGCCCCCTTCAGTTCGTCAAATAATTCTTCTATCACTGGTATGGGAAACTTGTCTGGTATCGTGACATTGTTCAGCGCTCGATAATCTACGCAGAACCTCCAACTCCCGTCTTTCTTCCTCACTAACAGTACAGGGCTGGAGTATGGACTCTTACTCGGCCGTATGATCCCTGAAGATAGCATCTCATCCACCAATCTCTCCATTTCTTCCTTCTGATGATGCGCGTATCGATATGGCCGTACGTTCACTGGGTCAGTCCCACTCTTCAGGTATATGTGGTGTTCAATGCTGCGCTGGGGTGGAAGGGTCGCGGGCCATTCAAACACGCGGGCGAATTGCTTGAGCAGGGTCGCTATTGGTTCCGCGTTGACCTTTCCCTGCTCCTGATCCTGTTCATCTTCCAACTTCCCGCATTCTAATGTCCTGCATTCTACTAGGAATCCCTGATCGTCAGCTCCCCACGTTTTCACTAGATTCTTCAGACTTACCCTCGTTTTGATCAAACTTGGATCCCCTCGTATCACAACCTTCCTCCCCTGGTGATGAAAAGTAAGCACTAACCTCTTCCAGTCGACTTCGGTCACCCCAAGAGAATGAAGCCACTGCATTGCTAGGATCATGTCAACTCCCCCCAACTGTAGTGGTAGGAAGCTATCGGTCACCTTCCAGCCATCCAATTGCACTTCAACACTTCGGCACATCCCCTTACCTTTGACTGCTGTTCCTGAGCCCAGGATTACTCCATAGTTTGGGGTCTCCTGCAATGTCAATCCTAACCTGGTCACCAAGTCCTCTGCGATGAAGTTGTGGGTCGCTCCACAATCGATCAAGATCACCACTTCTTCTTCTCCCACCTTTCCTTTTACTTTCATGGTTCCCGGATTGTTCAGTCCCACCACTGAGTTGATCGACAATTCAATGTTTAAATTCTCCACGTTCTGCACTTCTACTGGTTTCATCTCAGTTTCGGCATCAAAAAACTCTTCCTCCACAATCTCCAGTTCCTCCCCTCCTTCTTTGACTACCAGCATTCGTAGCTCCTTATGCTCCTTTGACTTGCACCGATGCCCTGCGAAATACTTCTCCCCACAGCGAAAACATAACCCCTTTTCCCTTCGAGCTTGGAACTCGGCATCAGATAATCGTTTTGTGGGCCCTTCCCGACGGTTGTCTCCCGTACCCACCTCTCTCAGTGTTATCGTTCTCATTGGCCAACTTCCACTGACCGTTCCCTCCTTCGTGGCTGCTGCGATGGGGCTCTTAGCCTGCTGTTGTTTATGGCCCGTTTTGCTGTCATAGGCGCTGACCAGCCTGCATTCCCTTCGGACCAGCTCTCTATTTTCTATCTTCAAGGCCAACTTCATCATTTGGGCCAGCCCAATGGGCTCCAGGGTTTCTACCTCCGACTTCAACCATGGATTTAACCCATTCATGAATGTTTCCTCTAGCACCACCGTAGGCAGGGAAGCCACCGGTGCCAGTAGTTTATCGAAACGGTTCCGGTACTCCTCGACAGTGGACTCCTGCTTGATCGTTAAGAATCGGCCCACCAGTGTACCTTCCCTGGTCGCGTGGAATCTCACCAGCATTTTAAGCTTCAAGTCATCCCAACCGGTGAAAGCTTCCCTCTCTTCTTGTGATCGGTACCAGTCCAACGCCGGCCCATCGAAGCTGATCACTGCCACGGTAAGTCTCTCTGAATCCGTCAAGTTATGTATCTTGAAGTATCGGTCTGCTCGGAACAGCCACGAGTCTGGGTCGGTCCCGTCGAAGACTGGCATTTCAACTTTCTTAAATTTGCTCCGATCCACTGATCGCTCCTCCTCTGTTTTTACTTCTAACTTCGGTTCTTCAGCAGTCGCTGGATATATTGCTTCGGCCATGGTGACCTTGCTCGTGGACCCTTCTTCGGTCCTTCGTCCAGGAGAATCATCCTTAACGATTCCCTCAATATACTTCAGTATCACTTGCTGCTGCTGCGCCTGCTTATCGATTTGAGAGTTCATTTCCGCGATGCTTTTGGCTAGTAATGCTATGTTCTCCTCGATCATCGGCAGCCTTTTCATTTCCATCTCAACCGTCTCCAACCGTTCATCTGTTGCCTTCGTCATTGACATGATCTGCCCAGGTATGATGCTCTGATACCAAAAATGTTAAGACACTGCCTCGTTCCTTTTCTTTTACTTTCCAAAAACCAGAGTACAGCACAAAAATCAAGTAATAAAACACTTCAAAGGTTAAAGACAATAGCCTCTCCAAGGCTTGACAGAACAAAACCAGCTGGTGAAATAAAACACACACAGAATTTAACAACAAAGAACACAGACGAAAACAAGAACGCCCTGAATAATTCCTTCCTCCTCCTCTACAACCTAAGGCTATTTAAGCACACAAAATAAACGGTAACCTGGTGTCGCCCCTCCCCTTTCTGGAGGTGGCTGCTCCTACCCTATCTGCTCAAAAACATTCGTACCCCTCTCTGCCCTCCTGTCCCCTTTTTATTGCCCACGACTAACTAACTGTGGGTCCCACTTTCTGGTCCCCATCCTCCTTGCTTTCTTCCCCTTCAACACGTGTTACCTCTGGGTTGGTCTCATGGCCATGATCCTCCTTGCCACTTGTCTCTCTTTCATTGGCTTCATGTTTCTTCTTATTTTTCCTATGGTATGTAAATAGGATTGGTGGCCTAGCAGTTGTCAACAGTCTTTAATACGACTCTTTAGAATAATTTGATGTTGGGTTGATGTGGACTTGTTGGCTTCTGATTATTTTGAGCTGTGGTTTGGTGCCACTGTTGAAGGAACTAGAGTTGACTACAAAAAATCGTAGTCTGATGGAATCAACCATTTGTCAATGGGTCTTTAGAGTACTTGGTCAAGTTGTACATACTAGAATTGATAATCACTTTCATGTAGAACTCTTTGAATACTCAAATATCATGTTGATGCTTATATAATTAATTAATTTATCGTTGGGCTTCTTAACATTTGGCATTTTATTTATCGAGCTCTTCAATGTTTATGGTGCTTGTAGTTGATGATTTTGGTTGATGATGCCGGGGGAGAATGGCCTATGATTGGTCATGCACCATGGTATGGTTGTAATCTTGCGGATTTTGTGATGCCTTTTTTCTTGTTCATTGTTGGGATGGCCATTGCACTCGCCCTGAAGGTTAAACTCTTTCAAAATATTTTTTTTTCTTGCAATGTCTTAAAAAGCTAAAGGCGGCCTTGAGGCTTTTCCTTTCTAAGAGGCGAGCCTCAAGGCGGTGCGGTATGAGGCATAAGCCTCGAATGATGAGTTAAATACATTTTATAAAACCTAAATTGGTATGATCAAGTATTGCTAAACATGATAGTCATATAAAAGTGTAAAAAGAAACCTCACCTCCACAATGTTCACTTAATAAAAAACTCTAAAAGGACATCTTTATCATTATCAATACTGCTATTATTAGTAATAGTGTTGATTTATACTATATATTTTGCTTTCAGCATGCTTTAAGTTCGCAAGAGTGAAAATAGTCCTAGTTCAAATTGTCAAAGCTCAAACCTTAATATTTTTGAAGAATTAGGCAAATCACTATTATGTTCTAATCACTAGGCAAGGCATAGAGATTTTAAGCTTCAGTGCATTTTCGCTAAGGGGTAAGTCTCTTATGGTTCAACAAAGGCATAAGTCTCAAGGATAAAACTTAAAGCCTTGCCTTCAGGCGAGCCTCAAGGCGTAAGCCTCAATAGCTTTTTAAACATTGTTTTCTTGACAGCAATGTATGGGTGGATGTTTTAACACCGTTTTCCATTTCTTGTCTGGTTTTATTTATAGAGAATATCTAACCAACTTATGGCCATTGAAAAGGTCACTCTTCGAACTTTAAAGCTCCTATTTTGGGGCCTTCTATTACAAGGTCAGTTTTGACTTCAACTCTTCTACTTTTAGTGTACTGCACTAAAGATTGAGGTGCAACCTGCTAAACTCTTCTTTTCAATGTCACATCTTGTGCCGTTGTAATGTTCTATTTGATAACTAAAAGGTTATTTTATCTGAAAATCTTGTCGGAGAATTATTGTTACTATGAATTTTTGTTATCCTACTACCATGTATTGACAATCCAAGCATGAAAAGCTTGATGGTTTTCACTTGGGTCAGTGGGACTGGGAGTCTCTACATATGACGGGTAGAGCGGGTTATTGTTAGTACCAATGGTTAGTATTCTAGGAGCAAGGAAGTTCTTTAACAACGTATCTAGGAATTTCCTAACCTCCATGGGTCATTACATAATGTCTTGACAGTGAATATTGGAATTTGATAGAGGCATTCATCTATTTGAATAAGATGAAAAATGCATTCCTCAAGAACCAAAAAAAAAAAAAAAAAAAAGGCTTCAAATTGAATGGTTGTTTCAATGCTAATAGATTTAACAAGACCAAACAGTAGGTTGTTCTTTGAGACAGTATGTACATACATACATATATGCGCACACACACTCACGTATTAATCCTCCTTTTTTTCAGTGTCATAATCTTCACTGCAACGGTGATAAATTAAGGTCTCTACCTTTTGATTATGATAAATTTATTGTTATTAGTTGAAAAGGCTCTTTTTACTGGCACTATATTGTGGAATGCCATTTTTTTTTTATATACTATGATAACACCACCAACAACAAAATGTAACCAATACAATTAGCTTATTTTCCTTAACAGAATTTGACTTTACCTCAACTATTTTGTTAAGGTGGCTATTCGCATGCGCCAGACAAACTGACTTATGGCGTTGATGTGAGAAAGATAAGGTTATTTGGGATTCTCCAGGTATTTAAATATGAAGCTTTGTATTTTTTTTAAAAATGATTACAGGAGTTGCTAATATATTTTTGAGTCATCTTTTATAGAGAATTGCTCTTGCATATTTGGTTGTGGCATTTGTTGAAGTACTTTCAAGACAAACACAATCCAATGTTCAACCATTTAACCATTTCTCTATATTCAAGTCATACTTCTGGAATTGGTAATCACTTGCATTACGATTGATCAGTTATCTTTATTCTTTTCTTGGTTGCAACGAGGGTGATTTTCCTTCTTAAATTGCAGGCTGGTTGCAGCTTGTATTCTTGTAGTATACTTTGCTCTCCTTTACGGAATATATGTTCCGGATTGGCAATTTACTGTCACCGACAGCGATAGTGTTTATTATGGAAGAAACTTCACTGTAGGTTATTTATTTATTTATATTATTATTATGTATTTATTTTTTACCCTCCAAGTTATTCTCAAATTATGAGGGCCATTGGTTATTTGCAACCATTTGTCCAATTGACTTCACGGTGTTTGATCTTGAAGGATCTCGATACAATATGTGTACAAGCATTTTTCTTGAATACTATTTATCAAAATGATTTTTTTTTCCAAGACTAGCTAAGCTATTTTCATATCAAATTTAGGTAGCATGTGGTGTCAGAGGAAGTCTGGATCCTCCATGTAATGCTGTGGGATATATTGACAGAAAAGTGCTGGGAATCAATCACTTGTATGCCCATCCTGCTTGGAGAAGATCTGAAGTGTGTAGATATGTTATTCTTTTTTGAATTTCAGAGAGCTATCATAAGTTGATGACATAAACTTTTGATGGCTTATAATATTTGGTATGGGTTAAGTGCTGCAGGCTTGCACCGAGAATTCTCCATATGCAGGATCTTTCCGAGATAATGCTCCATCATGGTGTTTTGCCCCATTTGAACCTGAAGGAATTTTAAGGTTTGTCATACGTATATAATTCAGTGTTATGGATTCTGATTTATTTAAGAATTCTAGATATGGCATATTCTATTTCTGATTTTTTCCCTTATTGTATTTGGATATGCTGTGTTTGTTGGAAATAATTTGGTACTTGAGCATATAGATGGGTTTACTAGATAGAGATATGGAACCTTAAGACGGCTCTCTCCCCTCTGATTGACATCCCTCTAGAAAAAATCTTCCCATATTCTGAAGTATAACGAAATCTTCTCAGCAATACTGAAATTCTATAATAAGTTCAAAATCATTTAATTTTACAGCTTCATAGAACAGAGAATGGAATGAAATGAAATGTTGAAAAAAATGCCTACTTCTTTCTTCCTTATGAGAAACTTCAAGACAGTAGTTATAAAACTAGATTATTTTGAATTTCATCAAGGATACCCATGCTTGCAACTGCAGCTCTATATCTGCCATTCTGTCCACAATTATTGGAGTGCATTTCGGGCATGTTCTAATCCATTTTCAGGTTAGCTCTTGTTCATTCTAGCCTGTATGGTTTGAACTTTGGTTTAGTTTGATCCCTATGATTGTGAATGTATCCTTTCGGAGTTTCTATAACTGTATTTTAGTTAAATCTTCCATAATACCCTTTCTATTATTGAATGCTACATCTTTCTTGTATTACATAATTTATTTAGATGCCATAGAGAGATGATGAGCTAAGGATTGGTATAAGGTACAAGAGATGTGTGAGGGTTAAATTAGGTGGGTTTGTTGCACATCTTCAAAAACTCTAGTCCCAAAACCCATCTTTTCCTCTCTTTGCTAATATAATAATAATAATAATAATAATAATAATAATAATAATAATATAATAATAATAATAAATGAAAAAAATCATCTTGTAAGGGTAGGGTAGGAAGAATGTTATTGGAGGATTTAACCGAAGTGGTTATAATTTAACTTATAAAACTGTAAGGATCGAAATGAAACAAACCTCAAACGTGAAGTAAAATGTTAATCAAACCATTTTTTTTGCAATTCTTTGTATATCATTAAACTCTCCTTGTTTAAACACAGGATCACTCTGCTAGGCTGAAGCAATGGGTTACAATGGGCTTCACTCTTCTTATCTTAGGACTTGTTCTTCATTTCACTCACGGTGTGGCTCTTTACCCAACTGTCAATTCTGTGCAACTTGTGCTGTATATAACCCATCTTCATTCATTACAAATAACAATAGACATCTTTGATCGATGCAGCAATTCCGTTAAATAAACAGTTGTATACATTTAGCTATGTCTGCGTGACATCGGGAGCTGCAGCGCTGGTTTTCTCAGTCTTCTACATTTTGGTACTTATCTGCTTCTTTAAACTACCTTTAACTGGTTTATGGACAACAATTTTGTACTTCAATGCATGTGAAGTTCTTCAACTTGATTCCTTTCTCCACTGTACCAATAAAGATTTTGTTTTCTTATTTGGACTGAGTCAGGTTGATATCTGGGGCCTGAGGTACTTGTTTCTACCATTGGAGTGGATCGGGATGAATGCGATGCTTGTGTATGTTATGGCAGCTGCTGGCATTTTTGCAGGTTTCATCAATGGGTGGTATTATGAAGACCCCCACAACACACTGGTCCGTTTTTTTCTTTGTTTAAAAATAAATCAAAACCATTTTTCAGTTGTAAACTATTATTTGATAGATTATACCCTTAGATGAAAAAGCAAATGGAAACTGCTCTGAGTTGGTCTAGTTAATGAACACAATGGAAGTATTAAATGGCTTAGCTTAGAGGGAATGAGTTTGACCCATGTTGGCCTACTGCTAGGATTTAGTTGTCCTACAAATTACCTTGACAACGTTATGAAGTAAGATCAGGTGGTCCTATAAGAATGATCGAAGTGCCCACAAGCTGATCAGGCACTCACAAGTGAGGATACACCCCCTCCCCCAAAAATAAAATCATCGTAGAAATATATAATTTTTTCTAAAGAAGACCCAAATAGCAAAGATTAATTTTTCATATTATGCAACTTCAGATCCAGCATGTTTATCAACAACAAACTTGTCTTAGTTTTTAATCAAACAAAAACTGATAGATGAACTGAAATCCATTTTCTACATCCTAGTTCTTGTTTCCCGAGTATGTTCTAGTCCATTATTAACTGTGTAACGTACTACATATCCATGGCAGATATATTGGATAAAGAAGCATCTCTTCATTGGAGTTTGGCATTCCAAAAAAGTGGGTATTCTCCTTTATGTGATATTTGCAGAGATCCTGTTTTGGGGCGTCGTCTCCGGGATCTTGCATCGGTTCGGTTTATACTGGAAGCTGTAA ATGAGCCCCACCATGGATCATGGTAACAACAGTCCAAACGAGATTTCTCAACCTCTCATTTCCATGGAAGAAATCAAGTCCGATTCCACTCCTCACCACCCCCACCGCCTTATCTCGGTGGATTCCGATGTTTTGCTCCCAAAACCGGCGAAATCCAAGCGTCTTGCGTCGCTTGATATCTTCCGAGGTCTCACCGTTGCGTTGATGATTTTGGTTGATGATGCCGGGGGAGAATGGCCTATGATTGGTCATGCACCATGGTATGGTTGTAATCTTGCGGATTTTGTGATGCCTTTTTTCTTGTTCATTGTTGGGATGGCCATTGCACTCGCCCTGAAGAGAATATCTAACCAACTTATGGCCATTGAAAAGGTCACTCTTCGAACTTTAAAGCTCCTATTTTGGGGCCTTCTATTACAAGGTGGCTATTCGCATGCGCCAGACAAACTGACTTATGGCGTTGATGTGAGAAAGATAAGGTTATTTGGGATTCTCCAGAGAATTGCTCTTGCATATTTGGTTGTGGCATTTGTTGAAGTACTTTCAAGACAAACACAATCCAATGTTCAACCATTTAACCATTTCTCTATATTCAAGTCATACTTCTGGAATTGGCTGGTTGCAGCTTGTATTCTTGTAGTATACTTTGCTCTCCTTTACGGAATATATGTTCCGGATTGGCAATTTACTGTCACCGACAGCGATAGTGTTTATTATGGAAGAAACTTCACTGTAGCATGTGGTGTCAGAGGAAGTCTGGATCCTCCATGTAATGCTGTGGGATATATTGACAGAAAAGTGCTGGGAATCAATCACTTGTATGCCCATCCTGCTTGGAGAAGATCTGAAGCTTGCACCGAGAATTCTCCATATGCAGGATCTTTCCGAGATAATGCTCCATCATGGTGTTTTGCCCCATTTGAACCTGAAGGAATTTTAAGCTCTATATCTGCCATTCTGTCCACAATTATTGGAGTGCATTTCGGGCATGTTCTAATCCATTTTCAGGATCACTCTGCTAGGCTGAAGCAATGGGTTACAATGGGCTTCACTCTTCTTATCTTAGGACTTGTTCTTCATTTCACTCACGCAATTCCGTTAAATAAACAGTTGTATACATTTAGCTATGTCTGCGTGACATCGGGAGCTGCAGCGCTGGTTTTCTCAGTCTTCTACATTTTGGTTGATATCTGGGGCCTGAGGTACTTGTTTCTACCATTGGAGTGGATCGGGATGAATGCGATGCTTGTGTATGTTATGGCAGCTGCTGGCATTTTTGCAGGTTTCATCAATGGGTGGTATTATGAAGACCCCCACAACACACTGATATATTGGATAAAGAAGCATCTCTTCATTGGAGTTTGGCATTCCAAAAAAGTGGGTATTCTCCTTTATGTGATATTTGCAGAGATCCTGTTTTGGGGCGTCGTCTCCGGGATCTTGCATCGGTTCGGTTTATACTGGAAGCTGTAA ATGAGCCCCACCATGGATCATGGTAACAACAGTCCAAACGAGATTTCTCAACCTCTCATTTCCATGGAAGAAATCAAGTCCGATTCCACTCCTCACCACCCCCACCGCCTTATCTCGGTGGATTCCGATGTTTTGCTCCCAAAACCGGCGAAATCCAAGCGTCTTGCGTCGCTTGATATCTTCCGAGGTCTCACCGTTGCGTTGATGATTTTGGTTGATGATGCCGGGGGAGAATGGCCTATGATTGGTCATGCACCATGGTATGGTTGTAATCTTGCGGATTTTGTGATGCCTTTTTTCTTGTTCATTGTTGGGATGGCCATTGCACTCGCCCTGAAGAGAATATCTAACCAACTTATGGCCATTGAAAAGGTCACTCTTCGAACTTTAAAGCTCCTATTTTGGGGCCTTCTATTACAAGGTGGCTATTCGCATGCGCCAGACAAACTGACTTATGGCGTTGATGTGAGAAAGATAAGGTTATTTGGGATTCTCCAGAGAATTGCTCTTGCATATTTGGTTGTGGCATTTGTTGAAGTACTTTCAAGACAAACACAATCCAATGTTCAACCATTTAACCATTTCTCTATATTCAAGTCATACTTCTGGAATTGGCTGGTTGCAGCTTGTATTCTTGTAGTATACTTTGCTCTCCTTTACGGAATATATGTTCCGGATTGGCAATTTACTGTCACCGACAGCGATAGTGTTTATTATGGAAGAAACTTCACTGTAGCATGTGGTGTCAGAGGAAGTCTGGATCCTCCATGTAATGCTGTGGGATATATTGACAGAAAAGTGCTGGGAATCAATCACTTGTATGCCCATCCTGCTTGGAGAAGATCTGAAGCTTGCACCGAGAATTCTCCATATGCAGGATCTTTCCGAGATAATGCTCCATCATGGTGTTTTGCCCCATTTGAACCTGAAGGAATTTTAAGCTCTATATCTGCCATTCTGTCCACAATTATTGGAGTGCATTTCGGGCATGTTCTAATCCATTTTCAGGATCACTCTGCTAGGCTGAAGCAATGGGTTACAATGGGCTTCACTCTTCTTATCTTAGGACTTGTTCTTCATTTCACTCACGCAATTCCGTTAAATAAACAGTTGTATACATTTAGCTATGTCTGCGTGACATCGGGAGCTGCAGCGCTGGTTTTCTCAGTCTTCTACATTTTGGTTGATATCTGGGGCCTGAGGTACTTGTTTCTACCATTGGAGTGGATCGGGATGAATGCGATGCTTGTGTATGTTATGGCAGCTGCTGGCATTTTTGCAGGTTTCATCAATGGGTGGTATTATGAAGACCCCCACAACACACTGATATATTGGATAAAGAAGCATCTCTTCATTGGAGTTTGGCATTCCAAAAAAGTGGGTATTCTCCTTTATGTGATATTTGCAGAGATCCTGTTTTGGGGCGTCGTCTCCGGGATCTTGCATCGGTTCGGTTTATACTGGAAGCTGTAA MSPTMDHGNNSPNEISQPLISMEEIKSDSTPHHPHRLISVDSDVLLPKPAKSKRLASLDIFRGLTVALMILVDDAGGEWPMIGHAPWYGCNLADFVMPFFLFIVGMAIALALKRISNQLMAIEKVTLRTLKLLFWGLLLQGGYSHAPDKLTYGVDVRKIRLFGILQRIALAYLVVAFVEVLSRQTQSNVQPFNHFSIFKSYFWNWLVAACILVVYFALLYGIYVPDWQFTVTDSDSVYYGRNFTVACGVRGSLDPPCNAVGYIDRKVLGINHLYAHPAWRRSEACTENSPYAGSFRDNAPSWCFAPFEPEGILSSISAILSTIIGVHFGHVLIHFQDHSARLKQWVTMGFTLLILGLVLHFTHAIPLNKQLYTFSYVCVTSGAAALVFSVFYILVDIWGLRYLFLPLEWIGMNAMLVYVMAAAGIFAGFINGWYYEDPHNTLIYWIKKHLFIGVWHSKKVGILLYVIFAEILFWGVVSGILHRFGLYWKL Homology
BLAST of IVF0016893 vs. ExPASy Swiss-Prot
Match: Q3UDW8 (Heparan-alpha-glucosaminide N-acetyltransferase OS=Mus musculus OX=10090 GN=Hgsnat PE=1 SV=2) HSP 1 Score: 141.0 bits (354), Expect = 3.7e-32 Identity = 126/442 (28.51%), Postives = 210/442 (47.51%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy Swiss-Prot
Match: Q68CP4 (Heparan-alpha-glucosaminide N-acetyltransferase OS=Homo sapiens OX=9606 GN=HGSNAT PE=1 SV=2) HSP 1 Score: 134.8 bits (338), Expect = 2.6e-30 Identity = 136/487 (27.93%), Postives = 230/487 (47.23%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy TrEMBL
Match: A0A1S3BXP3 (heparan-alpha-glucosaminide N-acetyltransferase OS=Cucumis melo OX=3656 GN=LOC103494580 PE=4 SV=1) HSP 1 Score: 1000.3 bits (2585), Expect = 2.7e-288 Identity = 490/490 (100.00%), Postives = 490/490 (100.00%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy TrEMBL
Match: A0A0A0LGG4 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G031710 PE=4 SV=1) HSP 1 Score: 977.6 bits (2526), Expect = 1.9e-281 Identity = 478/490 (97.55%), Postives = 482/490 (98.37%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy TrEMBL
Match: A0A6J1G3Z7 (heparan-alpha-glucosaminide N-acetyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111450529 PE=4 SV=1) HSP 1 Score: 916.4 bits (2367), Expect = 5.1e-263 Identity = 449/481 (93.35%), Postives = 464/481 (96.47%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy TrEMBL
Match: A0A6J1KAR7 (heparan-alpha-glucosaminide N-acetyltransferase isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111493777 PE=4 SV=1) HSP 1 Score: 911.8 bits (2355), Expect = 1.3e-261 Identity = 446/481 (92.72%), Postives = 462/481 (96.05%), Query Frame = 0
BLAST of IVF0016893 vs. ExPASy TrEMBL
Match: A0A6J1KJL0 (heparan-alpha-glucosaminide N-acetyltransferase isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111493777 PE=4 SV=1) HSP 1 Score: 894.0 bits (2309), Expect = 2.7e-256 Identity = 436/469 (92.96%), Postives = 451/469 (96.16%), Query Frame = 0
BLAST of IVF0016893 vs. NCBI nr
Match: XP_008454037.1 (PREDICTED: heparan-alpha-glucosaminide N-acetyltransferase [Cucumis melo]) HSP 1 Score: 994 bits (2571), Expect = 0.0 Identity = 490/490 (100.00%), Postives = 490/490 (100.00%), Query Frame = 0
BLAST of IVF0016893 vs. NCBI nr
Match: XP_004144775.1 (heparan-alpha-glucosaminide N-acetyltransferase isoform X1 [Cucumis sativus] >KGN60963.1 hypothetical protein Csa_021286 [Cucumis sativus]) HSP 1 Score: 972 bits (2512), Expect = 0.0 Identity = 478/490 (97.55%), Postives = 482/490 (98.37%), Query Frame = 0
BLAST of IVF0016893 vs. NCBI nr
Match: XP_031736604.1 (heparan-alpha-glucosaminide N-acetyltransferase isoform X2 [Cucumis sativus]) HSP 1 Score: 936 bits (2418), Expect = 0.0 Identity = 460/472 (97.46%), Postives = 464/472 (98.31%), Query Frame = 0
BLAST of IVF0016893 vs. NCBI nr
Match: XP_022946485.1 (heparan-alpha-glucosaminide N-acetyltransferase [Cucurbita moschata]) HSP 1 Score: 911 bits (2354), Expect = 0.0 Identity = 449/481 (93.35%), Postives = 464/481 (96.47%), Query Frame = 0
BLAST of IVF0016893 vs. NCBI nr
Match: XP_023545272.1 (heparan-alpha-glucosaminide N-acetyltransferase isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 909 bits (2349), Expect = 0.0 Identity = 447/481 (92.93%), Postives = 464/481 (96.47%), Query Frame = 0
BLAST of IVF0016893 vs. TAIR 10
Match: AT5G27730.1 (Protein of unknown function (DUF1624) ) HSP 1 Score: 674.9 bits (1740), Expect = 5.0e-194 Identity = 323/474 (68.14%), Postives = 383/474 (80.80%), Query Frame = 0
BLAST of IVF0016893 vs. TAIR 10
Match: AT5G47900.1 (Protein of unknown function (DUF1624) ) HSP 1 Score: 401.4 bits (1030), Expect = 1.1e-111 Identity = 206/436 (47.25%), Postives = 286/436 (65.60%), Query Frame = 0
BLAST of IVF0016893 vs. TAIR 10
Match: AT5G47900.7 (Protein of unknown function (DUF1624) ) HSP 1 Score: 346.7 bits (888), Expect = 3.1e-95 Identity = 189/422 (44.79%), Postives = 251/422 (59.48%), Query Frame = 0
BLAST of IVF0016893 vs. TAIR 10
Match: AT5G47900.4 (Protein of unknown function (DUF1624) ) HSP 1 Score: 332.0 bits (850), Expect = 8.0e-91 Identity = 180/415 (43.37%), Postives = 254/415 (61.20%), Query Frame = 0
BLAST of IVF0016893 vs. TAIR 10
Match: AT5G47900.6 (Protein of unknown function (DUF1624) ) HSP 1 Score: 315.5 bits (807), Expect = 7.7e-86 Identity = 155/335 (46.27%), Postives = 223/335 (66.57%), 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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