Sgr016883 (gene) Monk fruit (Qingpiguo) 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.ATGCTCAACTTACAGGTTTCTGATGCGCTATCTTCATTTGGGTATTTCTCTTTCCTCCACTTGATGGACAATTTACATGTTACTGCTTGGTATTCAGGTGAGGGGAGACCCACTCTACTGATAGTGGGATTGCAACTCCGTGGGTATAGGAAAGCCAAGGCAACTCTATTCCAGAGCTTACTCGGTACTGTTGGTGCTCTGTGCTTGGGGCATTCATGGAGGATTTGCAGAGTGCTCTAAACGACCGCGGGTTAACAGTTTCTTTTCTGCCGGAGAAGGGCCGGAGCCTCTTTACCACCAGGGATTTCCATCCAGGTCGTTTTCTTTCGTCTTCCTTCCTCGCTCGTATTAATTATCTTCATTACTTCCTGAAACTGAGAGAACTCAAAAGCTACCGTCTTTTCGTTGCTTAAGTAAACAGGCTCATACTGGGGCTCAACTATGGCTTGCTTGTAGCTTATGGTTGCTTGGATAGATTTGAACTCCTCGTACCGCTGTAGGTTTAAGACATGAATGGCCAACATTGGGCCGCAAAATTGAAAAATAAAGACAATTACAGGCTTCTCCTTCCTAGTTCAGACCTTGGGTCTATGAAAAGTCGCTTGGGATCTGGTTTAGTGTAAAGCATTTTAGTTATGTACCATAACCTGATTGCTATATTTAAGTCTATTAAAATTATGCTGGTTACTGAAATCTCATTCTACAACGAAAGGAGCCTCATGCTTTTGATTGGATTAATTATTGATCCAGTCAGTTGGAATGTAGAACCAAACTGTATCCAATGTTTATTACCGCATTTTCTGAAGTGGAAATTGCAGAAGATATGTACTCTCACTTATGTTGGTTTTACTTTTATCAGATATCATATGTAATTTTTTAGGCCATGAATCTTTATCAAATGCCTGACAGGTATCTCCTGTAATTAGGAAATCCATTCCCACCAGGCTTTATTCATAAGCTACTCATTTCAAACTTCGGAATTCAGAGAGTTTTGATCTCTCCCACAGATTTTCCTTTCCTCCTTCCATTCATCTCCATTCACTGCCTACATATAACAATCAGGCCATGTATTTTCCTAACCAATCCTTTCTAACCATCTAAGCAGTCAACTAACAGAAATAACTTCCTTCTTATACGTACTAACTGCTTAGCTGTTGTCCATACCCATTCACATATTTAAATTTCATAGTCGCCTTAGAATTCCCATCAAGGCTTTCAGGAGTTGGGTCAAAATAAAGAAATAAAGTTAGCTTCAGCTCCATATGTTACTCGGTAAGGGCTATGGTCTCTGTGTTGGTCTCTGTGTTGCACAATCATGCATGGAGCTCTCCAATAAATGAAAATTTCCACTCTGGAGTTTTTCTTTACACAAACAATTGTACTTCAAAGTTTGTGTGGTGCCGTTAGTATCTGTTGATGGAACTTTCAACATAAACAAAAAATTATGGGACTTATTATGTTTAATGTTGCAGGAGAAGAAATAATTAGCCAAGAACCTTATGTTTGTGTCTCAAATAACTCAACAGTCGAGTCAAGATGCGACAGATGTTTCACCTCAATAAACACTAAGAAGTGCTCAGCTTGCAAAGTTGCATGGTATTGCAGCAGCATGTGCCAGGTATGTGAGACAGACGGAGTCTTTTGTGTTTCTTTTCCCACTATTATATGCATCATTGAATTTAACCATCTTACTATAAAACTTAAGCTGAAGATTGAACATTGCTTGTGACTTTTTTGTTGCATGTTAGGACTGTGCAAGAAACTAAACCAAATTTGAGAACTTTCGAGCGAATGTTAGGACATGTAACTCTTGTTTAAAAGTATGACTTCAAATCCATTATGATCTCAAATCCATAACTCTTGCAAAAAGAAGAAAAGGAAGATCATGCTCTGTCGATACTGGTGTGACAGAACGCCATTTATATTTTACAAATTTAATATTCTTCCTAAAAGCCCTTTTTATGTAGTGACTAGCAGATGGGTTGTATTGGTGGCTTGGCCTCTTATAACAACTTAGCATGGTTGAACAATGGGAGTTGACTAGTTTATACTTAATGACTTTCAGAAGTTAGAGTGGAAGTTGCATCGTCTTGAATGTGATGCTCTTGCAAGGCTTGACAAGGATAGGCACAAATCTGTTACTCCATCTATACGGTTGATGATCAAACTCTTTATTCGAAGAAAATTGCAAAGTGAAAAGGTAAAATTTTGCCCTCCACTTTTAATCAAATTCTCCTGTTTGTATGACGTTTTTCATGTTTATTATCTGAAAACTTCTGTTGGGAAATATTTGCTAGCTTCATGCTTTCCATGTTAGACTTGTTCGTGACAAATAATAGAACAAAAGCCAACATGAGCATAGTTTAATAGTTAAGGCATCTCTACTTTCTCTAAGGGATCGTACATTCAAATCCCCACTCCCGCATTTACAAAATCGAAAGAAAAAAAAATAATAGGGCAGGAAACTAAATTAGAAGTGTGGTTTGGCCTTAAAGCTTTATTGGCAGTTGAAATGAGCAGCAAGATGATAAATTATTCCTATGGGTCTTTTTGGCTGTAGATAAGGATGCCTAATACGAGGCAACAAAAACAATCAAGTCCTACACATCAATCCAGGAGACTTTCCAACAAATAGCAAAGATACCACTGCATCAAAGAAGATTTTTCTTCCCTTTGAAGGGGTGACCTTCCAGCACCTGCAATATAAAATCCTCCAAGGAATTTGGCCAAAAGGACCGCCAACCAAAGATATTGGAAAACTTTCCACTGAACTTTCCACATAAAAATACAGTCCACGAAAATATGGTTGGAGGTCTCTTCTTCTTGCTTACAAAGAATACACCAACGTGGAGAGATTAAAATTTGGATTTCCTTTTTGAACCATATAAGTATTTACCCTTCCTGGACTGATAGAAAGACCTTGCATTTCTTAGTTACCCTTTCTTTACCCTTTTGCATTTCTTAGGTCCGAACAAAGACCTTGCATTTAATTACCCTTTTGTATTCTTTCATTCCTCTAAAAGAAAGCTTGGTTTTTCATTTAAAAATAAATAAAATCCCAGATTATGTTACAGAGATCTTCATTAAGGGCCTCTTCTCCATGCGTATCTTGTTCAAAAAAATAAAATTAAATTAAGGGCCTCTTCTCCAGCAATCAGCTTAGCATACGGGATTTAAGACCACACAATGAAACCTTGGTTAGACTTAGAAGAGGAGCGGAAAGAGTCCAAAATATAGCAAAGGGTAGCCTGTTCCTTCACTTCTCTATCAATCAGAAGGATTGTGAACCTGAGGTTCCAACTTGTCATGTAACTATCCCGCATTCCTATGTACTGTGAGCTGAGAAGCCTTTCGAGTCAGCTAGAGCATTAAGTTGGGGGATGGGGAATATCAATAAAGGCTTTACTAGAACACCAATCATCCTCCCAAAATTTCACACTTGTTCCATCTCCTAATTTGAACACGAGGAAATGATTGAACGCGGTAATAACTTTGGCCATTTCCTTCTACAGGCTTTTAGAAGTGGAGTAGCTACAGGAACCTACAAAAAAAATGCAAGAAATCCTTGCCCTATTTGCTAAGAACTATCTTAAGTCAAAATGTGTTGGCTTCTCGAGGAAAGGAAACTAAAGCGAAGGGTTCTATTCAATGTCTGATGTTTACAATAGGCTGCTACAAGAAAATCAGTTTATATTGGTTCGTGAAAATATATTTGCACACTACTACGTCTATTTGATCAAGCTCCAAAGACCATGATGTGACAGTAGTGGTGTTAGGCAGTTAATAATTCCTGTTCAACCATGTATTTGCTACACATAACTTTGGCATGATTAAGTGCAAGAGCTTATAAGCATACGATATACAAGAAGAAATGGTATTTTCTTTTTGCTAAATTATAACCCAAATGAATGATTATAAGTCAGTGTTGATTTATGCTTTAAAATTTTAGAGTTGTTGCCAGACTTTTCCTCATTTGCTGGCTTACTTTGACAGATTCTGAGACTACCAGCAGATTAAACTGTTGAAACTTATAAATCTAGTTTTTTGGTTTCTATTCTAATGATTAATTGTGACAGCTGTACAATCTCAATTAGTATTGCTAGCCATATATGTATATAGAAATACTATATATTTTTTCCTGACTTCAAATTTTGTGGATAAGTTATTTGATTTGTTAAAATCTAGTGTCTGTGTTGGGTATTGATTTTAGTTGAGTTTGCGGTGCTAGCTTTGAGCCTTTTTTTGTTGTTTTATTTTGTGACTATGTTAAGGATTTTTGTAGGTGAATTTAGGCATTTTTGGAGCTAAATTTTGTATGTTTATTAATTGGATTTTGGGTAACTTATTGATTGTTTTTTGGGTCATTTTCTAGATTAATTTCAAGGAGGATATTAAATTTTACCATTTGATAACATTAGAACTATTCATTTTGCTAAGTATGGGTGAAAAATGAGGTTTTTCCTTCTATTTACTTTCTTGATAAATTTAATATGCATACTTATGTTAATGTGACCTAGTTGTTGGCAGTCAAACCATTTGGGTTATGACTTTGTAATTCTATTATAATATGTATATTTCTTTGTCTTGTCTTTTTGAACATTCTCTGATAAGTTTTTATTTGTAATTATTCATGTTTACATTTTAATGTTACAAATAATAAATCTTAAAGTATGATGTGGAACTTCTATGTCTTGTGCAATAAATTGTCTTAAAACTTAATAACCTGAAACTTCTATATATATATATATATATATATATATATATTATTCTTTTTAATTTGCAATGTATAAATATATCTTTCTTTTATTGTCAGGTCATACCAACGATTGCTACAGACAATTATAAATTGGTGGAGGCACTAATAGATCGTATCCTCGTTTAAGGAAGTTCTCAATCTAAATACATTGTGTATGATGCATTGCTATAATAACTATAGCATTCAACTTGGTAATTTTGTTTTGTTTAACCATTTTTCCAACCAGACATGTCTAGCATAGATGAAAAGCAATTGGTGTTGTATGCTCAGATGGGAACTCTTGTGAATTTGATTCTGCAGTGGCCAGAAATTAACGTAAAAGAAATTGCAGGAAACTTTTCCAAGGTCCTACATTTAACATTTATATTCTTATATATTCTATACTGTAGCTGAGCATGACTACTGCTCACTAGGAACCCTAAAATTCAAAATTTAAACAGCCTCGTGTTTCTTGGCATTCTTATTCATAAATTGGACTGTCTAACAACAAGTTTCATTTAGTAATGGTCATCTAACTGGATGAAGATCACATTAGCCATAATTTTATCTTGGCTAGTACGCACTTTCAGATGGGCAGTAGTTGAATTAACTGTTAGTATCTTAACATGTATTTTGGTGTAAATTTACCTAGGCCATCTTTTAAACATTAGTTTTTCACGATTGTGTACTTCCTGTGCTGTTGTTATTTGATATTTTCGCCTAAAATAAGTTATGATGCCAATTCTTATTTCCATTAGCACAAGGTCTTATAAGATCAGTTTTGCATCAATTCTTCTGAAGTCTAACCCTATTCATTTGAATGCAGCTTGCGTGTAATGCACATACCATATGTGACAGTGAACTCAGACCTTTAGGGACTGGACTATATCCTGTAATCTCCATTATAAATCATAGGTGACTCCTCACGAAACATATGTTCTGGATTTACATTCATAACTTCATCGTAATAATCTACTAAGTTACTAATTGGTTTTGGTGCTATAGCTGCTTGCCCAATTCAGTTTTGGTATTTGAGGGAAGATCTGCTGTGGTCCGTGCAGTGCAACACATACCTGCAGGTGCTGAGGTATTTACAACTTTTCTATCTGCATACATCTTTTTCTCGCCTAGTTCTCTAGGTAATAGTCTAGTTCTCTATGTTTTGCTATGTCAATGAACGTGAATGTAGTTCAAAAAAAAAAAAAAAAAAAAAAGAACGTGAATGCATGCGAAGAGGCTGGAACGTTTCAGGTTTCTGGTTTGGAAATTAATTTCCTCAAGTCAGAAGTGGTTTTTATTAATCGCATTGAAGGTAGAGGTAGCTAACTTGCTCTCTCGTGAGGTTGGCTCTTGGCCCCTAAACTACTTGAGAATGCCTCTGGAGGAAATTTGTCATCTAGGAGCTTCTGGGACCTGATCACTGACAGTTTATGCGGGAAGTTTTCTAGAAGGAAGAGTCTCCTCCCTTCTAAGGGAGGAAGGTTACCTCATCTGTAATGATTCCTCTCTTCAATTCCTTTGTATTATATGTCTCTCTTCAAGTTGCCTACTAAGGTAGCTAACACTTAAGAAAGATCACTAGAGACTTTATTTGGGAAGACAGACAATGGGAAAAAGGGAGCCACCTAATGTATTGGACGACAACTTGCCTTCCCTATGATTGGGGGTGGGAAATTTGAGGAAGAGAAATATTGCCCTTATAAGTTATAACTAAGTAGTGGCTTTGGAGATTTCCTGTTGTGAGCAAATGGCCTTCACAGTCAGGGTTGGCGCACAAAGGAGGTCAAGAAAGCAAACAGAAGAAGCCATTGGGTTATCATTTCTAAATTCAAAAGACATTTTCTTCGCTCGTGTTATTTATAGAAATTTCCTTTTTTGGGAAGAAATTTGGCTCAATAGAGAACCCTTTGGTATTACCTTTCTGCGCCTTTATGCCTTAGCAAATAGCAAGGTCAAGATGCTGTCTCAATGCTGGAACGGTGAGCGTGAGCAAAATACTTCTTACTTAATTTCATAAGCAATTCTAGAGATGTTAAAGTGGAAGAGGGATTTCTCTTGTTGAGATACTGAAGTCTGTGGTTCTTAAGGATGGGGAAGGCACTTTACTGTGGTCTCTTGAAGGTTCGAACAACTTCACTGCCAAAACATTGTCCAAGAAGTTAACTAGTGGCCATGGTACCCCAAAGTAGGGCTCTAACAAACTGAGTTGGAAGAGCAAGAGCCCTGGAAAGATCAAATTCTTCTTGTGGACTTTAATCTTAAATAAGTTGAATATTATGGATCAGATCCAAAAGAGAAATCCTAATACTACTGCCTTATGCCCCTCTTGTGTTCTATGCTACCAGAGTAATGAAGATCTCAAGCATATTTTCCTTCATTGTGAGTTGATCTAAAAGTTTGCAGCTCGGTGCTGGAGGAGTTTGGGCTTAAACGGTATTTCCTAGAGAGGCTTCTTCTTTGTCTGCCAATTCCTATATGGAGCTCCCTTTGAAAGATAAGGCAAAGTTTTTTGGAAGAATGCTGTGAGAGTTAGGGTGTGGAAAATTTGGCTCAAAAGAATTGCTAGCTTTACAAAAGACGGGGAAAAACATACTAGTGTTGTCAAGTTTACTGCTTCTTTTTGGTGCTCTAGATCAAAGTTATTCTAGAATTATTCCCCCCTTTTGATTTCCGCCAATTGGAGAGCTTTTTTGTAATCTCTCTTGGTTTTTGTAGGTTGGGAGATGTCTTATCTCCCCTGTTGTAACCTACTTTTTGGTAACGAAAAGTCTGTTTCTGATGAAAAAAAAAAAAAGAATGCCATGATTGTGGTATGGAGCATTCTCATACCATCGTGCATATTTCATATTCATGTAGAACAGTATATGCTTCGTTATGAAAATAAGTTATTAGCAAAGAGAAATTTGGAAGCCATTAGGTAAAACAAATGATAATTTGCATCTTTACAATCTATAACTAAGAAATTCAAGTAATCTGATGGACCCCAAGTCACCAAGTTCTATACAATAGGCAAGGGAAAGGAGGGAGGCCACGTAATGAGTGAGGGCATGTGTCATGTGGGCCCAAAGGAATATTGTTAGTTGGGAGAGTGCACGCTAGGTGAGCTTTTAGGGGTTTATGTATGTACAGGGCGGGGAAAAAACGGTAGTTTTTGGGTATCATTTTGTAAGGCTCATATTTTGAGAGTTTTGGGAGAGGCAGGGGGCTCTCGAATCTCCCTTAGCTTGGATGAATTCTTTACATCAATAAATTGAGCCTTATCATAATCATCTAAGTGATAGGGAAATAGATAATTGGTACTTGATAAAGAGTTGACTTTGGACATCAAATTTAACAGAAATTCATGCGAGATTTTTTTGTTTTATCAGTTAAGGTTGAAATTGTATACACTTCAAGCAAACTAAGTATTAAAACTACCATTGAATTCAAAAACTTAAGCATATAGGTTACGCAATATTTAATCATTTATTCATATTCTTAACATGGGCCTTCACTTATGAGCTTGGAAATGAGTATGGCCCAACAAGTAGCTATTAATATTAATTGGGAAGGAAATGATATTCGGTTCGAACACATGACCTTCTATTCTGATACCATGTTAAAACTAACATTGAACTCAAAAGCTTAAGCTTATAGGTCATAGTATATTTAATCCTTTGTTCATATTCTTAACACCAAGTAACAAATTTTGTATATGTTCGGAAGCAAGACAGCTTTGTTAAAACGCTAGTGGACAACATCCTTTTTTCCCCCTCTCTTTGGGAATAGCATTTGTACTATTACGTTGTTCTTTTCTACAGACTAATCGATTATGTAGGTAAAAGCTTCCCTTTGAAAAAAAGAAAGGAAGAAAGAAAATAAAACTATCCATATTGCCATGATAATTGTTAGGAGCCTTCCTTTGAAGATTTAAGAAACAAACATCCATTTAGATTCATGGATTAGGTTGGTCTGATGAGCTGTACCTAGTGAGTTATCTAGACAGACAAGTTTCTAATTCCTCCCAATCTACAATTACTTAACAATGAGTTAGGTTCGTTTGATCACTTATACCTAGTAAATATTTTCTTCCACATGCCAGCGTCGCAGGCTGCACCCCCCCCCCAACTCAAAAATAAAACAATCTTGAGGACCAAGGATTGTTGACAGGTTGCAGCGATGTTGTCATTTTTTATCCGTGCATCATGTCTGCAGTAGCTCTATTTTATTGTTCTTTTGTCACCGTTGTTTTATGATTAATTTTCCCCAGTTCCATGTCTAATTATATTTATCTTGTGATATTTTGTTAGGTGTCAATAAGTTACATTGAAACTGCTGGAAGCACTATGACTCGGCAAAAGGCTCTAAAAGAAAACTACTTTTTCACTTGCACTTGCTCTCGATGCGTTAAAGTTGTAACTGATAATTTCATCTTTTAGACGTATTTCATCCTTGATTTAAAATACATTTTGTTTGATCGGAATAATTGGAGTTGTAATTTATATGATCAGTTTTTTCCCCCTTTCAAAAACTTAAAAGGTTCAAGGAGATGAAATCAAAGAAAGTGCAATTTTGGAGGGCTACAGGTGCAAAAATGACCAATGTGATGGTTTCCTGCTCCGTAATTCTGGTATGTGATATTTCACTACTGTATCAGTAACTGAGAACGTGCTATTATTTAAATGTTCCTTTTAACATACATGCAGATGACACTGGATTCGTGTGCCAGCAATGTGGACTTGTTCGAAATAAGGAAGAGATAAAAAATATTGCTAGTGAAATAAAATCAATATCAGATGAAGCTTTTACTTCTATGTCTTCCCACAGTATCCTTTTGTGTTTGACTATAAAGCATAAATGGTAGTCGGGTTCTGTCACTGATTTAAATATTTTTAAAATATAGGTGTTCTCTTTCATCTGAATAAGCTAGGTCTGGTGCTGTTCCTATAGAGTCTGAAATCTTTAGGAATAATATTTATGACTTGTAATATTACGTTCAATATGATCTTTGACCAAATTCAGATTATGCAGAAGCGTTAACTATGTATGAAAAAATTGAGAAACTCCAAAAGATATTATGCCATCCTTACTCCATCAGTTTGATGCAAACTCGAGAAAAGCTCCTCAAGGCAAGCTAGCTACCAATACTTTTCACTTTTCCCTTTTCTTGTTATCATCCCTTACCTTCGTTTGTAATTATTTGCGTGTTATATGCCAAAATTATTTGTTCAACCAATCTTTGAAATCTGAGTATGATGATGTTACTTTTTGGTGCATTTTCAATCTGATGAATACGCTATTATTTAGATATCAGGAGCAAGTAGCATTTAAGATGGGGATTCTTGACTTGACCTTGAGTCTATCTAGAAGCACTATCTTAGCTCTTTTGTTAATATATGATTTAATAAAGTTTCACACTGTTTTCTAATTATTATTTTTCTAATTAATGCTAGTTGGAATAATTTTGTGTAGTCTCCTTTGCCCTCGAGTGGGTGGACATATTATCTGCCCCCTTTTTAATAATATTGGTTTGGAGTTCTTATCATGAAGTTCGTGTTTGCTCTCCCCACCAACCAAAAATAATAATAATAAAATGATACAGTGGCACATATAGCCGATACTTCACCATACCCCTTAATGTTTTAATATAAATGATACCCATATCTTTATCACCTATAAGCATAATTCGCAATTGATTTCTGTTTAATCTTTCTAGTTATTTCAAGTTCTATACTTGAGCGGTTAACTGTTTTTCATGATGCCACTCCTAAACCGCTCACTGTTATGCTACACAGAACGGACTGTTATGTTTGCACAGCTTGTGTGAGATATGTTACATTAGTTTGTGATCAAATGTCGCTTGCAGATTTCGATGGAGCTAGAGAATTGGATAAAAGCTCTAGCATACTGCAAATTGACGATTTTGGTTTATCAGAGTATGTCTTTTCTTATTATTCTTCTGGTAAATCAGTTGTTTTGGGATAATAAGTGGATTATGTGCTTTATACAACTGCAAAATTTACTCTTTTGTTTCTAAGCTTTGAATTTAAATTGAGATATTACACGCCAACCAGAGCATCAACGGTTAACGTTGTACGTTCAAATCCCCACTCCCATATTTATGATGTAATATTTTTTTAAAATAATTTTTGAGATACTACACATGAAAAGGGAGGTGGAAGACAGATTTGTAGATTTGTGAAAAAAACGAAGTGGTAAAAGGATATTCTGCACTGAAGTGGGTTACCCCACTTTCTATTTGGTCAAAGCCCAAAGGTTCACCATCCTGTGTTATAAGATTTGTGTGGGAAGTAGAGTGGCCCGGATGTTTACAATCATCACCTAAATGCAGAATTAATAACTTTTGAATTTCTTGACTCTAATATTGTAGAGCTAGAAAGTTGTTAAAATTAATGGAGGTGCATGCAAACTAGCTCAAACACCTCTGGTTATAAAAAAGTATATGGGAATAAGAGTAAAGCATGGAGTTAACGATGCTTTAAGGATGAGTTATCATTTATTCTGCATGCATAAATGAACAAATGCAGGATGAGTGGTCGTAGGAGGAGATATAGCAAACTTTGATAAGCTAGCATATTTGATTTGGTTGTTGGCAAGGATTACCTTTTTATTTGTATTACCTGATTTTTACAAAAAAAAATTTTAAACTGGCTTCACTCAAAAAAGTTCTGGCATAAAAGTTGAAAGAATTTATAGAAAAACATTCAAGTAAGGGTTTGTAGTAGTTTTTCTAATACCAGACATGGCCTTTTCAGTACATAGAAAAACATATACAAAGCTAGCCAAAAGTTGATGGAGATTACAGAAACGCTCAACGATTGACATTGCAAAAAAGGGGAATAATTACAAAAAAACTGAATGTGGAAGGACTCCGAGAAGAGGCTAAAAAACACACCAACACCTCAAGGATTTACAGCTTTGTAAACTTCTTATCTGAAGCATTAGCAACATGCTGACATTCAGGATTTATTTCCCCAGTTATAGTCGTCTTCACATTATAGGGTTGGTGTCAATTTGATCCCTAGATTACAATTTGGTTTATTTCAATTTAGTGGTTTTGTTGTTTTCAGCTTGCATGCATGTTGTATTTTTTTTCTTTTTTTTGATAAGAAATGATATATATATATTCAAAAGAAAGAGCAGGGAACAACCTAGGCCGGGGTTGAGGAAGCCCCCACCCACCAAAACTAATGAAGCATAGCCTTCCAATTGTTAAAAATCATAGAAAGGCTGTAATTACAAAAGAATTTTGTATGATTAGCGCACCACTAAGAAACAGTATGCTGCACGCTACTACAAAAAGAATTTAAAGAAGAACTCTTATCTTCAAAGTATGCTACACCAAGAAACATAGTATGCTTGCATGCATGTTGTAGTAATGCCATATCAGCCACCAGATGGAATATGCTCTAAAACATCAAGAGTTATTTCAAAATGTTGGTCCCTGGGAATCCTCCTCATAAACTACCATTATAGTTTTGCTTGGACGTTGTAGACTCTGTTTGATCTTGTGTTACGAAGTTACATAGTTTAACAGTTTATATTCTGAGTCAATTCTCTTTGATTGCAGCACTATACCCAGGGTTCCATCCATTGCTTGGATTGCAGTTCTATACATGTGGGAAACTAGAATGGTTTGTAATGCACGAAGATATTGTTTCATTTACCAGTCCTCCCCTTTCCTATAGCCAGAAAACACATGGAAAAGCAGAAAAAGAAACCAAAGATAAAACCGTTCTATACCTTATTTTATTTTCTAAAGCTCAAAATTCTGCGTGATTACATTGGTTGGGATGTATCAATTTTGCAACTGCCATACATGCCTTATTAAACCCAGTTGGAAGCCTTTTTGTTTCAAACATTTACCAACTAGAGAGAGAGAGAGAGTAATGTAGTATTTCTTTTACCAACGATAATGATTTTAATATTGGTAAGTATACTTACAGACTTTCAAACATTTACCAACTGTTCTATCACAAATGGGGGGGGGGGGGTGTTGCCTCTGTTATCATGTACCTGTACCCTGAAGCACTGTCAGCTGCTTTATGTCTGGAGTTTTTCTGCTAACTAGATTTTTGTTTCACGTGTCATTACGCTGCTTACTGTAGACTCATCACTCATGAAGGGGTTGTTCCCTTCCTATTTGATGATGGGAGGGCTCTTGTCTCTGTTTCCAAACTCAGATTAACTTCTTTTCAAGAACTGGGAAATTGTTACATTGACTTCTCAAAAATGTGATGCCATTTCATTTGCAGGCTACTTGGGTATACAGAGGATGCTGTAAAATCTTATACCAAGGCATTTGATATACTGCAAATTACTCATGGGACTAATTCAAGTTTCATGAAGGAACTGCTGCTAAAGTTGGAGGAAGCTCGTGCTGAAGCTACTTATAATCTCTCATCTATTGATGAGTAG ATGCTCAACTTACAGGTTTCTGATGCGCTATCTTCATTTGGGTATTTCTCTTTCCTCCACTTGATGGACAATTTACATGTTACTGCTTGGTATTCAGGTGAGGGGAGACCCACTCTACTGATAGTGGGATTGCAACTCCGTGGGTATAGGAAAGCCAAGGCAACTCTATTCCAGAGCTTACTCGAGTGCTCTAAACGACCGCGGGTTAACAGTTTCTTTTCTGCCGGAGAAGGGCCGGAGCCTCTTTACCACCAGGGATTTCCATCCAGGTCGTTTTCTTTCGTCTTCCTTCCTCGCTCGCTCATACTGGGGCTCAACTATGGCTTGCTTGTAGCTTATGGTTGCTTGGATAGATTTGAACTCCTCGTACCGCTAAGTGCTCAGCTTGCAAAGTTGCATGGTATTGCAGCAGCATGTGCCAGGACTGTGCAAGAAACTAAACCAAATTTGAGAACTTTCGAGCGAATGTTAGGACATAAGTTAGAGTGGAAGTTGCATCGTCTTGAATGTGATGCTCTTGCAAGGCTTGACAAGGATAGGCACAAATCTGTTACTCCATCTATACGGTTGATGATCAAACTCTTTATTCGAAGAAAATTGCAAAGTGAAAAGGTCATACCAACGATTGCTACAGACAATTATAAATTGGTGGAGGCACTAATAGATCACATGTCTAGCATAGATGAAAAGCAATTGGTGTTGTATGCTCAGATGGGAACTCTTGTGAATTTGATTCTGCAGTGGCCAGAAATTAACGTAAAAGAAATTGCAGGAAACTTTTCCAAGCTTGCGTGTAATGCACATACCATATGTGACAGTGAACTCAGACCTTTAGGGACTGGACTATATCCTGTAATCTCCATTATAAATCATAGCTGCTTGCCCAATTCAGTTTTGGTATTTGAGGGAAGATCTGCTGTGGTCCGTGCAGTGCAACACATACCTGCAGGTGCTGAGGTGTCAATAAGTTACATTGAAACTGCTGGAAGCACTATGACTCGGCAAAAGGCTCTAAAAGAAAACTACTTTTTCACTTGCACTTGCTCTCGATGCGTTAAAGTTCAAGGAGATGAAATCAAAGAAAGTGCAATTTTGGAGGGCTACAGGTGCAAAAATGACCAATGTGATGGTTTCCTGCTCCGTAATTCTGATGACACTGGATTCGTGTGCCAGCAATGTGGACTTGTTCGAAATAAGGAAGAGATAAAAAATATTGCTAGTGAAATAAAATCAATATCAGATGAAGCTTTTACTTCTATGTCTTCCCACAATTATGCAGAAGCGTTAACTATGTATGAAAAAATTGAGAAACTCCAAAAGATATTATGCCATCCTTACTCCATCAGTTTGATGCAAACTCGAGAAAAGCTCCTCAAGATTTCGATGGAGCTAGAGAATTGGATAAAAGCTCTAGCATACTGCAAATTGACGATTTTGGTTTATCAGACACTATACCCAGGGTTCCATCCATTGCTTGGATTGCAGTTCTATACATGTGGGAAACTAGAATGGCTACTTGGGTATACAGAGGATGCTGTAAAATCTTATACCAAGGCATTTGATATACTGCAAATTACTCATGGGACTAATTCAAGTTTCATGAAGGAACTGCTGCTAAAGTTGGAGGAAGCTCGTGCTGAAGCTACTTATAATCTCTCATCTATTGATGAGTAG ATGCTCAACTTACAGGTTTCTGATGCGCTATCTTCATTTGGGTATTTCTCTTTCCTCCACTTGATGGACAATTTACATGTTACTGCTTGGTATTCAGGTGAGGGGAGACCCACTCTACTGATAGTGGGATTGCAACTCCGTGGGTATAGGAAAGCCAAGGCAACTCTATTCCAGAGCTTACTCGAGTGCTCTAAACGACCGCGGGTTAACAGTTTCTTTTCTGCCGGAGAAGGGCCGGAGCCTCTTTACCACCAGGGATTTCCATCCAGGTCGTTTTCTTTCGTCTTCCTTCCTCGCTCGCTCATACTGGGGCTCAACTATGGCTTGCTTGTAGCTTATGGTTGCTTGGATAGATTTGAACTCCTCGTACCGCTAAGTGCTCAGCTTGCAAAGTTGCATGGTATTGCAGCAGCATGTGCCAGGACTGTGCAAGAAACTAAACCAAATTTGAGAACTTTCGAGCGAATGTTAGGACATAAGTTAGAGTGGAAGTTGCATCGTCTTGAATGTGATGCTCTTGCAAGGCTTGACAAGGATAGGCACAAATCTGTTACTCCATCTATACGGTTGATGATCAAACTCTTTATTCGAAGAAAATTGCAAAGTGAAAAGGTCATACCAACGATTGCTACAGACAATTATAAATTGGTGGAGGCACTAATAGATCACATGTCTAGCATAGATGAAAAGCAATTGGTGTTGTATGCTCAGATGGGAACTCTTGTGAATTTGATTCTGCAGTGGCCAGAAATTAACGTAAAAGAAATTGCAGGAAACTTTTCCAAGCTTGCGTGTAATGCACATACCATATGTGACAGTGAACTCAGACCTTTAGGGACTGGACTATATCCTGTAATCTCCATTATAAATCATAGCTGCTTGCCCAATTCAGTTTTGGTATTTGAGGGAAGATCTGCTGTGGTCCGTGCAGTGCAACACATACCTGCAGGTGCTGAGGTGTCAATAAGTTACATTGAAACTGCTGGAAGCACTATGACTCGGCAAAAGGCTCTAAAAGAAAACTACTTTTTCACTTGCACTTGCTCTCGATGCGTTAAAGTTCAAGGAGATGAAATCAAAGAAAGTGCAATTTTGGAGGGCTACAGGTGCAAAAATGACCAATGTGATGGTTTCCTGCTCCGTAATTCTGATGACACTGGATTCGTGTGCCAGCAATGTGGACTTGTTCGAAATAAGGAAGAGATAAAAAATATTGCTAGTGAAATAAAATCAATATCAGATGAAGCTTTTACTTCTATGTCTTCCCACAATTATGCAGAAGCGTTAACTATGTATGAAAAAATTGAGAAACTCCAAAAGATATTATGCCATCCTTACTCCATCAGTTTGATGCAAACTCGAGAAAAGCTCCTCAAGATTTCGATGGAGCTAGAGAATTGGATAAAAGCTCTAGCATACTGCAAATTGACGATTTTGGTTTATCAGACACTATACCCAGGGTTCCATCCATTGCTTGGATTGCAGTTCTATACATGTGGGAAACTAGAATGGCTACTTGGGTATACAGAGGATGCTGTAAAATCTTATACCAAGGCATTTGATATACTGCAAATTACTCATGGGACTAATTCAAGTTTCATGAAGGAACTGCTGCTAAAGTTGGAGGAAGCTCGTGCTGAAGCTACTTATAATCTCTCATCTATTGATGAGTAG MLNLQVSDALSSFGYFSFLHLMDNLHVTAWYSGEGRPTLLIVGLQLRGYRKAKATLFQSLLECSKRPRVNSFFSAGEGPEPLYHQGFPSRSFSFVFLPRSLILGLNYGLLVAYGCLDRFELLVPLSAQLAKLHGIAAACARTVQETKPNLRTFERMLGHKLEWKLHRLECDALARLDKDRHKSVTPSIRLMIKLFIRRKLQSEKVIPTIATDNYKLVEALIDHMSSIDEKQLVLYAQMGTLVNLILQWPEINVKEIAGNFSKLACNAHTICDSELRPLGTGLYPVISIINHSCLPNSVLVFEGRSAVVRAVQHIPAGAEVSISYIETAGSTMTRQKALKENYFFTCTCSRCVKVQGDEIKESAILEGYRCKNDQCDGFLLRNSDDTGFVCQQCGLVRNKEEIKNIASEIKSISDEAFTSMSSHNYAEALTMYEKIEKLQKILCHPYSISLMQTREKLLKISMELENWIKALAYCKLTILVYQTLYPGFHPLLGLQFYTCGKLEWLLGYTEDAVKSYTKAFDILQITHGTNSSFMKELLLKLEEARAEATYNLSSIDE Homology
BLAST of Sgr016883 vs. NCBI nr
Match: XP_022141531.1 (histone-lysine N-methyltransferase ASHR1 [Momordica charantia]) HSP 1 Score: 744.2 bits (1920), Expect = 8.2e-211 Identity = 372/398 (93.47%), Postives = 382/398 (95.98%), Query Frame = 0
BLAST of Sgr016883 vs. NCBI nr
Match: XP_038875919.1 (histone-lysine N-methyltransferase ASHR1 [Benincasa hispida]) HSP 1 Score: 739.6 bits (1908), Expect = 2.0e-209 Identity = 368/398 (92.46%), Postives = 379/398 (95.23%), Query Frame = 0
BLAST of Sgr016883 vs. NCBI nr
Match: XP_011655177.1 (histone-lysine N-methyltransferase ASHR1 [Cucumis sativus] >KGN51238.2 hypothetical protein Csa_009308 [Cucumis sativus]) HSP 1 Score: 722.2 bits (1863), Expect = 3.3e-204 Identity = 359/398 (90.20%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. NCBI nr
Match: XP_022993816.1 (histone-lysine N-methyltransferase ASHR1 [Cucurbita maxima]) HSP 1 Score: 721.5 bits (1861), Expect = 5.7e-204 Identity = 362/398 (90.95%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. NCBI nr
Match: XP_022938883.1 (histone-lysine N-methyltransferase ASHR1 isoform X2 [Cucurbita moschata]) HSP 1 Score: 718.0 bits (1852), Expect = 6.3e-203 Identity = 360/398 (90.45%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy Swiss-Prot
Match: Q7XJS0 (Histone-lysine N-methyltransferase ASHR1 OS=Arabidopsis thaliana OX=3702 GN=ASHR1 PE=1 SV=2) HSP 1 Score: 500.7 bits (1288), Expect = 2.1e-140 Identity = 244/392 (62.24%), Postives = 318/392 (81.12%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy Swiss-Prot
Match: Q9CWR2 (Histone-lysine N-methyltransferase SMYD3 OS=Mus musculus OX=10090 GN=Smyd3 PE=2 SV=1) HSP 1 Score: 136.7 bits (343), Expect = 7.8e-31 Identity = 107/392 (27.30%), Postives = 186/392 (47.45%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy Swiss-Prot
Match: Q7ZXV5 (N-lysine methyltransferase SMYD2-A OS=Xenopus laevis OX=8355 GN=smyd2-a PE=2 SV=1) HSP 1 Score: 132.5 bits (332), Expect = 1.5e-29 Identity = 103/388 (26.55%), Postives = 185/388 (47.68%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy Swiss-Prot
Match: Q9H7B4 (Histone-lysine N-methyltransferase SMYD3 OS=Homo sapiens OX=9606 GN=SMYD3 PE=1 SV=4) HSP 1 Score: 131.3 bits (329), Expect = 3.3e-29 Identity = 108/392 (27.55%), Postives = 183/392 (46.68%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy Swiss-Prot
Match: Q6GN68 (N-lysine methyltransferase SMYD2-B OS=Xenopus laevis OX=8355 GN=smyd2-b PE=2 SV=1) HSP 1 Score: 127.9 bits (320), Expect = 3.6e-28 Identity = 97/386 (25.13%), Postives = 183/386 (47.41%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy TrEMBL
Match: A0A6J1CJG4 (histone-lysine N-methyltransferase ASHR1 OS=Momordica charantia OX=3673 GN=LOC111011880 PE=4 SV=1) HSP 1 Score: 744.2 bits (1920), Expect = 4.0e-211 Identity = 372/398 (93.47%), Postives = 382/398 (95.98%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy TrEMBL
Match: A0A0A0KMW3 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G376270 PE=4 SV=1) HSP 1 Score: 722.2 bits (1863), Expect = 1.6e-204 Identity = 359/398 (90.20%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy TrEMBL
Match: A0A6J1JXE1 (histone-lysine N-methyltransferase ASHR1 OS=Cucurbita maxima OX=3661 GN=LOC111489711 PE=4 SV=1) HSP 1 Score: 721.5 bits (1861), Expect = 2.8e-204 Identity = 362/398 (90.95%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy TrEMBL
Match: A0A6J1FK58 (histone-lysine N-methyltransferase ASHR1 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111444953 PE=4 SV=1) HSP 1 Score: 718.0 bits (1852), Expect = 3.0e-203 Identity = 360/398 (90.45%), Postives = 375/398 (94.22%), Query Frame = 0
BLAST of Sgr016883 vs. ExPASy TrEMBL
Match: A0A1S3CQ44 (histone-lysine N-methyltransferase ASHR1 isoform X5 OS=Cucumis melo OX=3656 GN=LOC103503403 PE=4 SV=1) HSP 1 Score: 714.5 bits (1843), Expect = 3.4e-202 Identity = 357/396 (90.15%), Postives = 371/396 (93.69%), Query Frame = 0
BLAST of Sgr016883 vs. TAIR 10
Match: AT2G17900.1 (SET domain group 37 ) HSP 1 Score: 500.7 bits (1288), Expect = 1.5e-141 Identity = 244/392 (62.24%), Postives = 318/392 (81.12%), Query Frame = 0
BLAST of Sgr016883 vs. TAIR 10
Match: AT1G33400.1 (Tetratricopeptide repeat (TPR)-like superfamily protein ) HSP 1 Score: 69.3 bits (168), Expect = 1.1e-11 Identity = 34/105 (32.38%), Postives = 52/105 (49.52%), Query Frame = 0
BLAST of Sgr016883 vs. TAIR 10
Match: AT1G26760.1 (SET domain protein 35 ) HSP 1 Score: 60.1 bits (144), Expect = 6.6e-09 Identity = 28/73 (38.36%), Postives = 44/73 (60.27%), Query Frame = 0
BLAST of Sgr016883 vs. TAIR 10
Match: AT2G19640.1 (ASH1-related protein 2 ) HSP 1 Score: 60.1 bits (144), Expect = 6.6e-09 Identity = 38/106 (35.85%), Postives = 55/106 (51.89%), Query Frame = 0
BLAST of Sgr016883 vs. TAIR 10
Match: AT2G19640.2 (ASH1-related protein 2 ) HSP 1 Score: 60.1 bits (144), Expect = 6.6e-09 Identity = 38/106 (35.85%), Postives = 55/106 (51.89%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Monk fruit (Qingpiguo) v1
Date Performed: 2022-08-01
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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