MELO.jh102012.1 (gene) Melon (Harukei-3) v1.41
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.ATGGCTACCTCCTCCCTCTTCAACCCCACCATTTCTTTCCCTTCTCGCAACCCCAAGCTTCAATCCACCCCAAAATTCCGCAACCCCATTCTCAGAATCCCTAAAGCTACCTCTGATTCCTCCCCCTCTCCACCAACTGACGGCTCTCCCCCATTGTCCACTCTCAAGAACCGTCGTTCTGCCGACGAGAACATCAAAGATGAAGCCCGTCGCCACTGTGCAGCCTCCGGAGAAGATCGGAGCAACTTCTCGGCCAAGTACGTCCCTTTTAACGCTAGCCTCGACTCCACTGAGTGCTACTCTCTCGACGAGATCGTTTACCGAAGTCGATCTGGTGGGTTACTCGACATTCAACACGACATGGAGGCATTGAAGAAATATGACGGCGCCTATTGGCGAAACCTCTTCGATTCGCGCGTGGGGAAAACTACGTGGCCTTATGGTTCCGGCGTTTGGAGTAAGAAGGAATGGGTGTTGCCGGAGATCGATCCTGACGATATTGTCGGCGCTTTCAAAGGTAACTCAAACTTGTTTTGGGCTGAGCGTTTTGGCAAACAGTTTCTGGGTATGAATGATTTATGGGTTAAACATTGTGGGATTAGCCATACTGGGAGTTTCAAGGATTTGGGTATGACTGTTTTGGTTAGCCAAGTGAATCGGTTAAGGTATGACTGTTTTGGCAAACACTTTCTTGTGAGAGGAACACCTTGTACAGTGTTCACAAAATCTAACGAACCCAAGTTTGTGGAACAAAGAAAACTTCAACAAATTTATAATAGGAAGAAAGTTTTATGGAAGAAAAATGTTTATGAGAAAGGTTAAAAACCAATTCGAAGAAAAAACATATTTATAGATTCATGACCATTTGGATAGTCTATTCCTCAAGTTGGTTAAAATTTGAAATGGTGTCTATTCATAAAGGAACATGCTACTCATGGAGTTAAAAGGATACAACCCTATACGAATAGTTGTCTACAGTTTATTCCAATGTATACAATATACATGGTGAAGTGGACCAAGAATTTTCAACCTTGTTAAAAAAAAAGGATTTATGTGAAGGTTAAGACAAACAGAAAGGTAAAAGATTCTTCTCCTACCCCTCTCTCAACCACTGATAAAGAGCCTAGTTGAATTTGAATTTAAGAGCTAGCTCATGTGAGCAACAATAGAACGACTTTGAATATATAAACTATACAAGAGAAAATGATAAGTATACAATGCTTTAAACTTCCCTTCTTTTCTATGTTTATGCTCAAATCTTGTCTTCATCTTTATTTTTTGTTTGTTTCAAATATTTGGGGAATGCGATTTTGGTTTTGAAACTGATGGAGATGAAATTAAGGAACCAAATGATGAGTGTTTTCAAAAGAAGACGCAACCATGATGTGAACCGAACAGCTTTTAGCTATTGAGGATTAATTTTGGTCGAGGATGGTTCTTTCTTTCTTTTATTATTATTATTATTATTTTTGTGGGTTTTGAACTTTTGTCCTTCTCAATAGATACACCTACTTGACTTGGCCAAAATTGGTAATTCTGATGGTTCCTTAGTTCATCATTCCTCTATGAAATTTTAGTTTTGATTTTAGAAGTATTCTTTCTCTCAGGACTTCCAAATCTATCTTCATACTTCATTTTGATTGACATGGTTTGGATGAATTAGAATAATTTTCAATAGTTTCTGGATGGTGGGGTGGTTAACAAAGTTTGTTGCATGTTTTCTCAATGTGCAATTGTGTTAATTCTAAAATTTGAATTTGTAGTCGCAACTTAAACCATTCACATTTTAAGTGATGGATAGTACAGTTAACATGGATGTGGACAAGACTTTTGTTCGAGATTTGGACTACTGAAACACAACCGTGTCTGGCTATGAGGTAGGTGTTATTCTATGTTTGGATCATCTTTTAATGTATCCCATTTTAAGTGGTTTCTTGTGAATTGAACATCCCCACAGAGTGAAAGAAAAGTTGAGGTACAAGCACTTTCTGTGTGTATTATATGTGGTGTAAATGAAAGTCAATGATTTTGGCTGTTAATTCCTCCCTTTTCAGGGGACACTTTCTTTCTCCTATGAGTCCCCACAGGCTATAGAACTGCTTATTACTATGCTTGACATGTTTGTTTGCAATAATGGAGATGATATCAGATTAAATGGTTTATTTTGATATTGCTTGTAGAATGATTGAAGTCATCAGATTGAAAGCTAATCTGTGAATTTGCTACCAGAAGTCGTTTTTCTTTGCTCTGCTCAACTTATCATTTTGCTTGGTTTCTGAAATCTTGAAATGATTGACCTTGTCTACTTTTCATATCGATATCTTTCTTGTTCCTTTATTTTTTTTGGATAAGAAACAATTTCATTGAATAAATCATTGAAGGGTGCACAAGTAAGATATTGAATTCTCATTCTTTAACATGACAGGATTGTTCTCTCTCTGAAATTGTGTTCTTGTTTATATTATGGAACCAGACAGTCATGGACTTACTAAATCATTGTTTTTTTGTTTTGCAGTTGAATGAGGAAAATAAACTGTACAAGTCCTCTGTGATGGTTACAGCCGGTGCAAATCAGGTGATGATAGTGCAAATCATTGAATTTTTTTATAATAATGAATCAAAACTGGCGAGAATGGCCAGCTTAAGTTGCAGCATTACTTATCTATTAGACATCCTATCATTCATTGGCTTAGAAGTACAAAGGAAAAACTCGGTTAACGCTTGCATATATTATCAGCTTTCGTTTTGGAACACTTCCTTATGTTGATTGTCTTCTTATGGTAAAATGTAGTGCTGATTTTACTGCAGGCATTCGTTAACCTTGTTCTTACATTGTGTGATGCTGGGGATTCTGTGGTTATGTTTGCTCCGTATTACTTCAATGCCTACATGTCTTTTCAAATGACTGGTGTCACTAATATATTGGTTGGTCCCAGTGACCCAAAAACACTTCATCCTGATCCAGGTTAGTCTTACAGGTTGATTTTACATAGCCATGTTACTTTATTCAATTCTTAAGCATTATGTCTTTAGCTCGTCCATTATGACACTTGCTTTTGTTCTTTCATTGCTCTTATTATTTTAGAAAAACATGTGGATATAATGATGAGAAAAGTACTAGCAACTTCTGGTCTTATTATGATGTATAATTTGGGACTGGAACTAGAAAGTCAAGCTTCTGCATATCTGCTTCAGCAAAAGTTTAAAACATATATATTATTATTACAAAAGAGATCTTTAGTTCAGCATAAACTCTTTCTCTGGTTTTGTTTATTATTTATTATTTTAGTTAATTTTTAATGATGTTTATGTTTACTTGGAATGAAATTCCATTGGTGACGTAAGGGACATTTTTTCTTTGCGCTACTTATGCTTACGTTGGACTACAATAAGCTTTACTTTTCAGCTTATTGTGTTGATGTTGCTTATTTCTTTATAGATTGATATTGGTTTTCATAATAATGTTATGTAAAAAAATGTTGATTATTCATTTGGTGGGCAATATTAAGAACTTTTCATCCTTTTCTGCAATTTCAGTACTTCAAACAGCTTTGTTATTCATATAAATGGTTTATTTGGATATTGTTTGTAGATAATTGAAGTGATATCGGGTTGAAAGCTAAGCGATTGTGTAGAAATGGTCAAGCGACCGTTGAAAATTGAAGACTGAGAAGGCATTTAGGATTTTTAATTATTTAATTCTTGTATTAGAATTTTTTTTCATGTACTATTGTAGAAATGTATATATAAACATAATATTAATATTTTATTTTGTGTATTCAAATGTAAAAGACAAATGTTATAGTTTCTAACATAATATGAATTTCATTGATTTGTTGGCGTGTGAAAAACATATTTATCTACATTGACCCAATGTCGGTCTATAGGACAATAATGTAACAATTAAATAAAAATAAATTTGTAAAAATGAATAAAAAAACTAGGCTTTAATGTCGGTTTTAAACCGACATATCAGAGTTCAACCGACATTAAAGAGCTTCAATAACACTATCAAAGATGTCGGTTGAAAACTAACAAACCGACATTAAAGAGGGCTTTAATGTCGTTTTTAAACCGACATTAAAGCCCAACCGACATTAAAGGGCTTCAATAACACCATCAAAGATGTCGGTTGAAAACTGACATTAAAGGCCTTTAATGTCGTTTTTAAACCGACATTAAAGAGGCCTTTAATGTCGTTTTTAAACCGACATTAAAGCCCAACCGACATTAAAGACCTTTAATAACGCTCACAAAGATGTCGGTTGCCAAGTGACATTAAAGGCCTTTAATGTCGGTTTTAAACCGACATTAAAGGCCAAAATTCTTGTAGTGTTAAAACTTTAAAATATATTTGCAACTATCCTTATATGTTAAGGTTTGTTTTTGCAATTTATCATTTTATATCATTCATGCTCTACAGAGATCATAATTAAATATTCATAATTCTAAATTTCAATTCAACGGGGATTCAATTTCGAACCATAACAAAGTATTTTTAAGTTTTATTTTGATACATTTTTTGCTTTCTTTATGTTGTTTGATAACTGTTTAGGTCATGTTTTGTAACAATTTTGCTTTTCTATTTTTCATTTTTAAGTTTATAAACATAAGTTTCATCAGCTGTTTTTAAAGTTCAAAGTTAAAATTTTGAAAACAAAACCTATACACATGTTTGATTATATATTTTTTTTCCTTTCTAATAATTGAAACACAAACCAATCTTGTTTGTTACTTTTTTGGGTTTTCAGATTTTTTAAAGATAAATTACAGGAGATAAAAAGGTGTTTTTAAAGAGAGGCCGGAAAATGTATGAATACATGCAAATAATGATTTAGAAACACAGTACAAATGTTTTAGAGAGAAAAAGTGAAACATGGTAAATTTAGAGATAGAGAGAAAAATATTTAGAGAGAGTTAAATTTCATAAAATTATTAGTTAGAAAAAACAAATATAAAATGTGCATGGAAAGAGATAAATTCTAAAGAGAAAAAAGTCAAATAAAAAAATTGGGCAAAAATAAAAATAAATTTAGAGGGAGAAAGATTAAGAGTAAATGATATTTAGGTATATGGATGAAAAATTGTTTTAAATGAAAAAGTTGTAATTACTAATATAACAAAATTTTATACTCTATCAATAATAAACAATAAATACATCGATAAACACATCGATAAACATATATTAATGTCTATCAACATTATCATAGTAATAGGTGATTGTATCTATTGATGTCTATAAACATCTATTAGTAATACTTTATTATATTGATAAATATTTTAGTTTATTTTATTATATAAAAAACATCGTGAATTAAATATAAATAAAAAAATACAAACAAAAGTGGTAAATAAGAGAAAATATATAGAGCAAAAGAAAAGTCGGGTAGAAGTGTATTTATTAGAGAGAAACAGAACTTATGAGAGAACTCTTAAAAAATAAATAAGTCAGCTAAAGAAAAGTAATTTATTGAAATAGGAAAAATGTTCAAAAAGTTTTACAGGTACATACTAAGAGGAGAGAAAAATTCTACTTTTATTTATCACTTAGAGTATCTTTTAATATAACAAAATGAATCGAAATATTTATAAAATATAAAAAATTTCAAATTTATAATCGATAACTAGACACTAATACATTTCTATCAATAATATTGATAGATACCGGTAAAAGTTTATCAATGTCTATTGCTATCTATCATTGTTACAATCTCAAAGTTGTTATATTTGTAAATATTTCTAATAATTTTGTGATTTACCGTAATTCTCTATTATTTATTTATTTCAAGGTAAAAGAAATAGAAGTGGAACATAAATAACATCAACCATGATATAGAGATAATAAGAAAATTATATAAAGATATGAAAATTTTAGAGTGAGAAAGAGAAATATAATTTAAAAGAATTAGGAAGAGAATGGAGAAATTTTCAGAGAAAGGAAGTTGGAAAAAAGATCATCCGGAAATTAGAAACATGTTAAAGAGGAAAAATAAGTATTAGAAAAAAAAATTGGTTTCTTTTCCATGGTAAAAAAAACGAGTTATCAAAATTGAAAGTTGTTTTTGTAATTTCACCAACGCTCTTGAAATTAAAAAGCAGGAAAATATTTGATTATTAAGAGAAAGAGAAATGATTTTAAATAACAAACTTTTTTTAAATATTTAAAATAATAGATATCGATAAGCAATCATTAAATATTTGGTTATCGATATATAGATATTCATTCGATAATATTTTATTATATTTATAAATATTTTGATTTGATTTACTGTAAATAAAAAAAGAAACTCTTAGATGAAAAGTAAAACAGAAAATTGAAAATAAAATTGTTATTTTCTTAATTCTCTTCAATATTGCACTTAATATTTTTGGACAGATATGACATGCAAAGGTTTAAGATAAAAGGAGAATAGAAAAAAGGTGGGTAGAAGGCAGATAAAAAGTGTCTTCGCTTCACATTGATGTTTGGTGTACGCTTGAATAGTTGAAAATATAATCAATAATATTTAAAATAATTAAGTATGTAATAATATTTTAAAAAATTTGTAAGTATAATAAAATTTATTAAAATTTATGGATGATTTACGATTGATCGATAGACATCAAATTATATTTACAATTGTTTTTAAAGATTGTTATATATTTAATTATTATTATAAAAATTATCATTGATTAATTATCATTTACATTAATACATAAGTACGTTAGAATTCTCATACTTACCAAACAGAATATTTAAAATATGTGATTCATCACACAACAGTAAGGTAAAGCGCAAGAAACCATTGGGTAAAAATCAACTTATTATATCTCTAAATATTTCATCAAATATGAAATGTTTGGTTTTCCGTACACTTACTTATAGGATTTTGGAGAAAATTCACTTTTTTATTATCTAATTTTATTTATTTTTAAATATATGCTAAATTAATGACAGAAAAATCAGAAAATTTTATTTTAAATGATAAAATTATTAAAAATATAAACAAATATAGTAAAACTTTTCTTCCGATGATAATTCAGATTGATTCAAATAGACATCTAACTGCTCCCTTAGTCCATTGTAATCTATCATAAATTCGAAGTAAAATTTTGTTATGTTTATAAATAAGTTAGGTCATTTTTCTATAATTTGGAATTATCATTAAAATTCATCTAAATTGATTCATTAATCAATATTTAGAATTTAAATTGATATTTTATTTGTAGTTCTAATTTGGATAATTATTGTGGATAATAATTTTAGAAAAAATAATCAAGTTTATAATTAACATTTTTAAGAAATTGTAAATACATCAAAATATATTAGTGATAAAACAATATTTAGAATATGAAGTATTAATAATAGACTCTTAGGGGCCGTTTGGGGGAAGGGTTGGATTATAGAGGGTTAGGGTTATGATAAACCTAGGATTATGATAAGATGTGTTTGGGGGAAGAGTTATGGAGGAAGTGTGATGATAAAATGTGTTTGGGGGAAGAGTTATGAAGGAAGTGTTATGATAATGTTTTGATAAGATGTGTTTGGGAGAAGGGTTATGTGGGTAGGGTTAGGATAGATTAAGGAAGAGTTGAAGAAAAGTTGAAGAAGGGTTAAGAAGTGTTGAAGAATGATTGAGAAAAAGTTGAAAAAGGGTTAAGAAGGGTTTGAGGAAGGGTTAAGGGGCTAAAACTAGGGTTACATAATCCTTCCCCCAAACGAGTGTTGGATTACATAACCCTAACCCCCATAACCCAACGCTTCCCCCAAACGTCCCCTTAGAATTTATAGATTCTAACTGATTTGACTATATTTGTAATTTTTTAAAAATGGTACTATATATATATATATGTTAATGTTTTAAATTTAGTTGCTACAATTGCAACTGTCTCTGTCTCTTTCTAGCTTAATGTAATTTCAAATTTGAGACTCAACTAAATAAATCTGTTACTTTGAAATATCTTTTTGAAAAAAAGAAAAACATACAATGTAAAAGCATCAAATTTAACAAAAACGAGAGGGTTGTGGTTGTGGTTGGAGGTAGGGAGCGGATGGCGAATCATACAAAAGGATACATACACAACATTAACTAATATACACACACCTAGAGAGAGATGTATTAATAATATTGATATTCATGATAGCAAGCTATTGAAAGAAACAATGAGAGAAGCTATAACTCGTAGATGAGGGACCATTATATGATATATTTTGTTTTCATATATATATATATATAGATACATATTTCTTTATCAAAGAGGAAAAATTGGACCACGCAACCTTTTGCTGCAGAGAGATATGCATGGGATCCCAACTTGGAAGTGTGTTTTCAAGACTCTAACTACTGACACACACCCATATTCAATTTTAAAACACTAATATTTCCAATCCACACCTACAGCAATTGCAAAAAGAAAATTTAATAATAATAATAATAATAAGAGACAATATTTTAAATTAAAATATTTATCGTAATAAATAATAGAATCAAATTTAAAATTGTGTAAATATTTTGGTAAGCATTTTTTACATTTCTCTAAATAATAATAATAATAAATATATTTTTAGATAAAGAAAGAATTTACCTAAAGCAACTTGTGCTTCTAACACTTAGATTGGACCGACTATTGTGTATCTAAATATTTTTTTCTCTCATAATTAATTTAATTTTCTAAAAATATATATATATAATTTATTGATTTTTGATAGCTAAAGAGTCGTATCCCATTTTCTCTTCTCTTCCTTTTTATACACACATGGGGATTTAAAGAAACTATACTTTGTTTGCCCCCATCTAATTTTATTATTTTATTTTATTGAAAATTAGTTTCAAGGACAAATTTATTAAAAAATAAAAATTATAGTAAATTATAGTAGAATTTTATTATATTTATGATATTTTAATTCATTTTATTAGGCTAAAAAATAACTCCTATTTTATTTATTTAAAATTTAGAACCGCATCAATTAGAAGAAGGGTGATTCATATTTGACTTGAATTGTTTAAAACACATTAAATTAAGCTCGTGTGTTAATCCACAAGCCAACATATACTCTAAATTTTATTCTCATCTTCCTTTTTCCTGCGCATGGTAGCCAAAAGGTGAGTCCAGAAAGCAACTTCGTGTGGAAAAAACAAAGAAAAAGACCAAACTACAAACAGGAAAAAAATATAAATGTAATGAACGAAATTGACCATTAAACACAAAGAATGGTAAAAAAAAAAAAAAATCAATACAGATTTACGTGATTTACTAAAAAATTTTATATAGTTTACTAATAGTGCTTTTATAGAATAAAGAAAAGTTTACTCTTAAAGGGAAAATAACTCCGGAGGACGTTAATAGAATTAAAGTTAGATTTTAGGATATTGTTCCCAAAAACTCCTACCAACACATGTGGGCGTGAACCCTAATTCATTGGCCATAACAAGAGATCTATGCTTGATTATTTGGAGCACTAGATAAACTTAAGAATTAAATATATAAATATAAAAGGAAAAAAGCGGAAGAATATGAAGAAAATTTTTCTTCTAAGTTGAATTGCAAACAAGGAATCATTTTTTCCTATTTATGTATTGTGTCTATGCATTTATATATATCTAGATCTAAGAAAATTAAATCAAACAAAACGAAATGGATTTGACAGATGTCATTGAAAAGATTCAAAAGAAACCCTTTCATTGCAAAGTAGGAAATGTTGAAGGGAAGTTTATGCATGGAAACAATAAAAGAGAGCATATCCTTTTTCTTTTCTCATTCTTTAAAAGAAGACAAGATCAAAAAGAATATCCAAATCCAAGACACTCTTTACTGTTCCAAACAAAGCAACAATTAAATTAAGTGAAAGAAAATTGGTTAAAGTTTTCAATTTGCAAGCTTAAGCTTTAATATATAGTTAAATCCTCGATTCTATATTTCTTTCTCATCCACATTTAATAAATTATATCCTATTTTCTTCAAAATTAAAAAAAAAAAGAAAAAAGAATAGATAAAGATTTTAAGGTTCGAATTAGGGCATTGGGTCTGATAATGGTACTATGAATGCGCGAATATAATTGAAATATTTTGGTACTTCTATCGATGATTATAATGTCTAAAAACTTTAAAATAAACAATAAGTATGCTGAAGGGCAGATTTTACTTTTTTTTTTTTTTTTCTTTTATTTCTTTTTCTCTTTTAGCGAAAGAAGTGGCAGTGTGTTAATTATTGTTCGGAAAGAAAACAACAAAAAGAGAGGATTGAAATGAATGAAAGAAGGTGTGAATAATTAAGGAAATTAGGGTTTTGGAGTAATGAGGGAGTGGGGGCATATCTGAGGGAAGAAAGGATGAATTATTGTTGTTGCTAAAGACACATACTAGTACTGTATCTTCTTGTGTTGTTGACTAACTGATATGTAAAAGGTAAGAGGATGATGATTTACCAATAAATGGTCCCCTTAGATTCTCTTCTCTACACACTGATTTAGGCCTCTCTTTTATGACTCTTCACATTCACTTTCTGAGAGACTACCAGTATATGTCATTTTCTTTTTAATCTGATCACTAATTAATAATTTCTTTATCCTTTTATTTTTATCTTTCCTTTCTGAGTTTTATTTTCCATATGATAGTGTTGATTTGTCAGATCAATCCTTTGGTGTACATTAGAGATAAGTCTTTGTTAAATATCTCAAATTTAGGTCTCATGAAGAAATAAGATTAGTATAGCCAAGTGTGTGGTGAGTTCTTTTCTTAAGACCAAATATTTCATATTTAGGTATCATAAATAATATTAACATAGTTTATACTTTATGACATTTTAAAATTAGGTTTACTCAATACACTTGCACCAATTCAAAATATTATTGTGGCTAAATTGTCAATAACATAACAAATAACAAAGATCAATGTTTGTTAAGGAAACCAAATTCATGCCTTGTCCATTTGAGGGGATAGTAATGAAGGGATGCACTTAGAAGGTAAGATAATCCTATATACTTCAGTATGATTGGTTATTACAGGTAAAAGTTGAGTAATATGTTTTGGAACATGTCATGTCATGTATTATGTCACGCAAGATGTTATATGTTATGCAAATTCTGAGTTGAGATTTTTTTTCTTTATTAAAGGGTGTAGAGAATATTTTGACTTATTTTTCCGATTTATTCCTAATAATCTTTTTTTATCCCTAAAGATCTTTATTAAATATTAAATATGTAACTGATTTAGTTTTATACTAGTTAGTTTGATATTTGATTGGTATTCCACTTTGTTCGAAGCGTGAGAACACCCAAATAAATACTCACAAAGTATAGAATATTTGAGAAAATAAATAAAAAGATTATTTCGAAAACTTTAAAGGAGTATTTTAAAAAATATAACAAAGTGGCAAAATATTTACACTGTATAGAATAATTTCGAAAATGAAAAAAAGCTCACGATCCACAATGAAAAATACAAAAAATGCCCCGTCAACCAAGCCGTCAACAACACGCGTAATATATTTGGTACACGATCGTTTAGATTTGACTATTATTTGATACACGATCGTTTAGTTTTTGTAACGCCCCGAAAATTAAGATAATTTTTGAAATTAATTATCTTAGTTTTGTTTAATTAGGTTTAAAATAGTGGACGTTATTTTAAAAATTCATTAGTTCTTCCTTAGAAATTGGAGTTCAATTAAATAATTTTGAGAGTTTATTTAATTAAATTGGAGAAGTGGATTTTTTTTGTAGAGATTTGAAAAATTTGTGTATATATGGATATATATACGTATAAATATTGTGAAAAATGAAAAGGATAATTATGTTTGTTAAAATATAATTAATTAAAGAAAAGATATGATATTTTGGAGAGAAGAAGATTAAGATAGTTATAATTGTTGAGATATAATTATTTTAGGAAAAATATTGTAAGTGGAAAGAAGATAAAGATAAATTATTCTTGAAGGGTAATTATTTTGGAGAAAGATATTTGTGGAAAGAAAAATAAATTTAAAATAATAATTATATAATGAAACATATAATTATTAAAAGATAATTATGATAAGAAAGAGAAAGTTTGATTGGATGGAGATTTAATTGAGGAGAGAATGTGGATTTTATTTAGTTTGAAAAGGAAAAGAATTGGAAAATATTATTATTATTATTATTATTATCATTATTATTATGTTTATAAAGGTTTCGACTCTCGTGCGTATTATTTACCATCTTCAACCTTTCTTCTTCTTGGTAAACCTGAGTGTCGTCGCCAACCTCTTTACCACCGCCATTGTCGTCGTAAACTCTCTCCGCCATGCTCAACTCTCCGACAACACCCTTATTCGGCTTGCCGTTAGTAACAATTAAAGCAAAGTTGTCTCATGTAGCTGAAGCTCATCGTTTCTAGTTGTGTGTTTCAGCCGCCAAGCACCACCACGCCCCTTCGTCTGTGTTCAGTCGTCGCCGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCGCGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCGTGAGTCGTCTCTCACTCTCAGATTCATGACCTGAGCCGTTATTCCCATTTGAGCCGATCTCTCTTAGCCACGTGTGAGCCATCATCCTTTGCCTAGCCGAGCCGCATCCCTCCCCTAATCCAAGTTGCAAGATTGGTATCTTTTGAACCACTTTTGATGAATTTTAATGGGTTTGGGTATACCCATCAATTGATACTTTTTAGACTCTAAGTAAACTAATTTGGATTTTTATTTGGATTTCTCCTCTGAAGGTTAATTGTCTATTGAGCTTTTTACCCCACAAGTATTGTGATCCTATCTACGGGTCACTCGTACGACTAGGGGTGTTCTTACGGGACCACTCGCACGATTTAGAAGTGTATCTATGGATCACATGCACGGTTAGAGGACAATTATATTGTGTATACGAGGACAATTAATTGAGGAGAGAATGTGGATTTTATTTAGTTTGAAAAGGAAAAGAATTGGAAAATATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATCATTATTATTATGTTTATAAAGGTTTCGACTCTCGTGCGTATTATTTACCATCTTCAACCTTTCTTCTTCTTGGTAAACCTTAGTGTCGTCGCCAGCTCTTTACCACCGCCATTGTCGTCGTAAACTCTCTCCGCCATGCTCAACTCTCCGACAACACCCTTATTCGGCTTGCCGTTAGTAACAATTAAAGCAAAGTTGTCTCGTGTAGCTGAAGCTCATCGTTTCTAGTTGTGTGTTTTAGTCGCCAAGCACCACCCCGCCCCTTCGTCTGTGTTCAGTCGTCGCTGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCACGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCGTGAGTCATCTCTCACTCTCAGATTCATGATCTGA ATGGCTACCTCCTCCCTCTTCAACCCCACCATTTCTTTCCCTTCTCGCAACCCCAAGCTTCAATCCACCCCAAAATTCCGCAACCCCATTCTCAGAATCCCTAAAGCTACCTCTGATTCCTCCCCCTCTCCACCAACTGACGGCTCTCCCCCATTGTCCACTCTCAAGAACCGTCGTTCTGCCGACGAGAACATCAAAGATGAAGCCCGTCGCCACTGTGCAGCCTCCGGAGAAGATCGGAGCAACTTCTCGGCCAAGTACGTCCCTTTTAACGCTAGCCTCGACTCCACTGAGTGCTACTCTCTCGACGAGATCGTTTACCGAAGTCGATCTGGTGGGTTACTCGACATTCAACACGACATGGAGGCATTGAAGAAATATGACGGCGCCTATTGGCGAAACCTCTTCGATTCGCGCGTGGGGAAAACTACGTGGCCTTATGGTTCCGGCGTTTGGAGTAAGAAGGAATGGGTGTTGCCGGAGATCGATCCTGACGATATTGTCGGCGCTTTCAAAGGTAACTCAAACTTGTTTTGGGCTGAGCGTTTTGGCAAACAGTTTCTGGGTATGAATGATTTATGGGTTAAACATTGTGGGATTAGCCATACTGGGAGTTTCAAGGATTTGGGTATGACTGTTTTGGTTAGCCAATTGAATGAGGAAAATAAACTGTACAAGTCCTCTGTGATGGTTACAGCCGGTGCAAATCAGGCATTCGTTAACCTTGTTCTTACATTGTGTGATGCTGGGGATTCTGTGGTTATGTTTGCTCCGTATTACTTCAATGCCTACATGTCTTTTCAAATGACTGGTGTCACTAATATATTGGTTGGTCCCAGTGACCCAAAAACACTTCATCCTGATCCAGCCGCCAAGCACCACCACGCCCCTTCGTCTGTGTTCAGTCGTCGCCGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCGCGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCTCGCCAAGCACCACCCCGCCCCTTCGTCTGTGTTCAGTCGTCGCTGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCACGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCGTGAGTCATCTCTCACTCTCAGATTCATGATCTGA ATGGCTACCTCCTCCCTCTTCAACCCCACCATTTCTTTCCCTTCTCGCAACCCCAAGCTTCAATCCACCCCAAAATTCCGCAACCCCATTCTCAGAATCCCTAAAGCTACCTCTGATTCCTCCCCCTCTCCACCAACTGACGGCTCTCCCCCATTGTCCACTCTCAAGAACCGTCGTTCTGCCGACGAGAACATCAAAGATGAAGCCCGTCGCCACTGTGCAGCCTCCGGAGAAGATCGGAGCAACTTCTCGGCCAAGTACGTCCCTTTTAACGCTAGCCTCGACTCCACTGAGTGCTACTCTCTCGACGAGATCGTTTACCGAAGTCGATCTGGTGGGTTACTCGACATTCAACACGACATGGAGGCATTGAAGAAATATGACGGCGCCTATTGGCGAAACCTCTTCGATTCGCGCGTGGGGAAAACTACGTGGCCTTATGGTTCCGGCGTTTGGAGTAAGAAGGAATGGGTGTTGCCGGAGATCGATCCTGACGATATTGTCGGCGCTTTCAAAGGTAACTCAAACTTGTTTTGGGCTGAGCGTTTTGGCAAACAGTTTCTGGGTATGAATGATTTATGGGTTAAACATTGTGGGATTAGCCATACTGGGAGTTTCAAGGATTTGGGTATGACTGTTTTGGTTAGCCAATTGAATGAGGAAAATAAACTGTACAAGTCCTCTGTGATGGTTACAGCCGGTGCAAATCAGGCATTCGTTAACCTTGTTCTTACATTGTGTGATGCTGGGGATTCTGTGGTTATGTTTGCTCCGTATTACTTCAATGCCTACATGTCTTTTCAAATGACTGGTGTCACTAATATATTGGTTGGTCCCAGTGACCCAAAAACACTTCATCCTGATCCAGCCGCCAAGCACCACCACGCCCCTTCGTCTGTGTTCAGTCGTCGCCGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCGCGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCTCGCCAAGCACCACCCCGCCCCTTCGTCTGTGTTCAGTCGTCGCTGTCTCTTCGTCGAAGCTGTCCATCTGTCACGCACGAAGCCTCGTTTGAAGTATCGAGCCGTATTCTCCATACGCAAGCCTCAGCCGTTCGAGTGTAGTCTGAGCCATCCCGTTAAGCGTGAGTCATCTCTCACTCTCAGATTCATGATCTGA MATSSLFNPTISFPSRNPKLQSTPKFRNPILRIPKATSDSSPSPPTDGSPPLSTLKNRRSADENIKDEARRHCAASGEDRSNFSAKYVPFNASLDSTECYSLDEIVYRSRSGGLLDIQHDMEALKKYDGAYWRNLFDSRVGKTTWPYGSGVWSKKEWVLPEIDPDDIVGAFKGNSNLFWAERFGKQFLGMNDLWVKHCGISHTGSFKDLGMTVLVSQLNEENKLYKSSVMVTAGANQAFVNLVLTLCDAGDSVVMFAPYYFNAYMSFQMTGVTNILVGPSDPKTLHPDPAAKHHHAPSSVFSRRRLFVEAVHLSRAKPRLKYRAVFSIRKPQPFECSLSHPVKLAKHHPAPSSVFSRRCLFVEAVHLSRTKPRLKYRAVFSIRKPQPFECSLSHPVKRESSLTLRFMI Homology
BLAST of MELO.jh102012.1 vs. NCBI nr
Match: KAA0066942.1 (Tryptophan synthase beta subunit-like PLP-dependent enzymes superfamily [Cucumis melo var. makuwa] >TYK30223.1 Tryptophan synthase beta subunit-like PLP-dependent enzymes superfamily [Cucumis melo var. makuwa]) HSP 1 Score: 577 bits (1487), Expect = 1.34e-205 Identity = 284/289 (98.27%), Postives = 284/289 (98.27%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. NCBI nr
Match: TYK10051.1 (threonine synthase 1 [Cucumis melo var. makuwa]) HSP 1 Score: 439 bits (1130), Expect = 1.27e-147 Identity = 222/259 (85.71%), Postives = 228/259 (88.03%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. NCBI nr
Match: TYK27135.1 (threonine synthase 1 [Cucumis melo var. makuwa]) HSP 1 Score: 433 bits (1113), Expect = 5.42e-147 Identity = 218/259 (84.17%), Postives = 229/259 (88.42%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. NCBI nr
Match: KAA0057146.1 (threonine synthase 1 [Cucumis melo var. makuwa]) HSP 1 Score: 433 bits (1113), Expect = 5.42e-147 Identity = 218/259 (84.17%), Postives = 229/259 (88.42%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. NCBI nr
Match: XP_011660008.1 (threonine synthase, chloroplastic [Cucumis sativus] >KGN66271.1 hypothetical protein Csa_006965 [Cucumis sativus]) HSP 1 Score: 437 bits (1124), Expect = 9.90e-147 Identity = 221/259 (85.33%), Postives = 227/259 (87.64%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy Swiss-Prot
Match: Q9MT28 (Threonine synthase, chloroplastic OS=Solanum tuberosum OX=4113 PE=2 SV=1) HSP 1 Score: 298.1 bits (762), Expect = 1.5e-79 Identity = 149/219 (68.04%), Postives = 169/219 (77.17%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy Swiss-Prot
Match: Q9S7B5 (Threonine synthase 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=TS1 PE=1 SV=1) HSP 1 Score: 289.3 bits (739), Expect = 6.9e-77 Identity = 159/264 (60.23%), Postives = 186/264 (70.45%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy Swiss-Prot
Match: Q9SSP5 (Threonine synthase 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=TS2 PE=1 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 1.8e-72 Identity = 151/259 (58.30%), Postives = 173/259 (66.80%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy Swiss-Prot
Match: Q9C969 (Aromatic aminotransferase ISS1 OS=Arabidopsis thaliana OX=3702 GN=ISS1 PE=1 SV=1) HSP 1 Score: 121.7 bits (304), Expect = 1.9e-26 Identity = 58/75 (77.33%), Postives = 65/75 (86.67%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy Swiss-Prot
Match: Q58860 (Threonine synthase OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) OX=243232 GN=thrC PE=3 SV=1) HSP 1 Score: 71.2 bits (173), Expect = 3.0e-11 Identity = 45/121 (37.19%), Postives = 66/121 (54.55%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy TrEMBL
Match: A0A5D3E297 (Tryptophan synthase beta subunit-like PLP-dependent enzymes superfamily OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold595G00410 PE=4 SV=1) HSP 1 Score: 577 bits (1487), Expect = 6.50e-206 Identity = 284/289 (98.27%), Postives = 284/289 (98.27%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy TrEMBL
Match: A0A5D3CDZ3 (Threonine synthase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold16G001840 PE=3 SV=1) HSP 1 Score: 439 bits (1130), Expect = 6.13e-148 Identity = 222/259 (85.71%), Postives = 228/259 (88.03%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy TrEMBL
Match: A0A5A7USK5 (Threonine synthase 1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold741G00070 PE=4 SV=1) HSP 1 Score: 433 bits (1113), Expect = 2.62e-147 Identity = 218/259 (84.17%), Postives = 229/259 (88.42%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy TrEMBL
Match: A0A5D3DUZ0 (Threonine synthase 1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1920G00050 PE=4 SV=1) HSP 1 Score: 433 bits (1113), Expect = 2.62e-147 Identity = 218/259 (84.17%), Postives = 229/259 (88.42%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. ExPASy TrEMBL
Match: A0A0A0M223 (Threonine synthase OS=Cucumis sativus OX=3659 GN=Csa_1G590270 PE=3 SV=1) HSP 1 Score: 437 bits (1124), Expect = 4.79e-147 Identity = 221/259 (85.33%), Postives = 227/259 (87.64%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. TAIR 10
Match: AT4G29840.1 (Pyridoxal-5'-phosphate-dependent enzyme family protein ) HSP 1 Score: 289.3 bits (739), Expect = 4.9e-78 Identity = 159/264 (60.23%), Postives = 186/264 (70.45%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. TAIR 10
Match: AT1G72810.1 (Pyridoxal-5'-phosphate-dependent enzyme family protein ) HSP 1 Score: 274.6 bits (701), Expect = 1.3e-73 Identity = 151/259 (58.30%), Postives = 173/259 (66.80%), Query Frame = 0
BLAST of MELO.jh102012.1 vs. TAIR 10
Match: AT1G80360.1 (Pyridoxal phosphate (PLP)-dependent transferases superfamily protein ) HSP 1 Score: 121.7 bits (304), Expect = 1.4e-27 Identity = 58/75 (77.33%), Postives = 65/75 (86.67%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
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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