
Sgr021110 (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.ATGGCGGATAATCGCTCCCTGAAGGTCGTTGAGATTTTCAGAGTGGCTCCTCCACCGGAATCCCACTCCCCGGCGTCTCTTCCGCTCACGTTCTTCGACCTCCGATGGCTCAGGTTCCCTCCGGTTCAACGCCTCTTCTTCTACGAAGCTCCGACGACGCCTTTTGACGCCACTGTTTCAAACCTCAAAACCTCGCTCTCTGTCGTTCTCCAACACTATCTCCCTCTCGCCGGAAACCTCGTTTGGCCCCATGACTCCCACGGACCCGTCGTCGAGTCCGTCGAAGGCGACGCCGTTTTGCTGACGGTTGCCGAGTCGGATGCCGATTTCTACGCCCTCACCGGCGATGGATTTCGTGAAGCGATGGAGTATCACCCTCTGGTGCCGGAGCTTCCGGCGTCGGATGAGCGTGCGGCGGTGATTGCTCTGCAAGTTACTTCGTTTCCAAACGTGGGGTTTTGCATTGGAATTACTTCCCACCACGCGATTCTGGACGGCAGAACTTCAACTTCGTTTGTGAAGTCATGGGCGCATGTCTGCAAAATGAACATCGCCGGAGAGTCTGAGGCATATTTTCCGGCGACTGAGCCGATACCCTTCTACGACAGAACCATAATTGAGGATCCGGTGGGTCTTGAAGCCATTTACTTGAGAGACTGGCTCGCCAAGGGAGGTCCCAACAACAGAAGCTTAAAATTCTGGTCGACCAAAACCCCACCCGATGCAGTCCGAGGGACATTCAAGCTAAATCCCCAAAACATTCAAAAACTCAAGAAATGGGTTCTCGGCCACCGGGAGCAGAATCAGCCGCCGATTCACATCTCCACCTTCACGGTGGCGACTGCGTACACGTGGGTCTGCGCCGCCCTGGCCGACGGTTTAACGGTCGACGACGGCAAGATGGCCTTCGGAATGTCCGTGGATGCGGGGCCCCGCTTGGACCCGCCTCTGCCGAAGAACTACTTCGGCAACTGCGTGGTCGCCCAGAAAGCAGTCTTGGAAAGAACCAAGCTGGTGGGGGAAAATGGGGTCGTCGCCGCCGTGGAGGCCATATCTGAAGCTATAAGAAGCTTGGAAGATGGAGCCCTGAGAGGCGCCGAAACTTGGGTTTCGACGAAGAAGGGAGCTGGGAGTAGTCGGAAGCTGCTTACAATCGCCGGGTCGCCGAGATTCGAGGTGTACGGCGTGGATTTCGGGTGGGGGAAGCCGAAGAAGGTGGATATGGTCTCCATTGACGGAACTGGAGCCGTTTGTCTCTCCGACAGCACAGACGGCGAAGGGGTGGAGCTCGGATGGGTGGCGACGAGAACTGTAATGGAGAGCTTCGCTGCATATTTTTCTAAAGGTCTTCAACAACTTTGAAGATGTTTTAATGGTGGTGACTGAAGAACTGCCCACAAAAATCAGTTTCCACAGAAATTAATAAAAGACTTCACTTAGTTGAGAATTGAGATGGAGAATTTTCAATCAAGTTCTTGGCCTTAATTCTGCTAGGTTCAAAACTTTCATTTAATAATTTTTTTTCTATTTTAATTTTTAATGTTGATTAATAATTGAAGGGAGGGAGAAGATGCGAGGGGGAAGAAGGGGAGTCACATAATGGTGGGGCCGGGTTAACAACAATTTCTAGCTGGTGGGCCCAGGTGAATCAAATTTGAGGATGGTGGGGCCGGGCTATAAATTTGGGGCAGGGATACTGTTCAAGTCGGTTGACTTTCCCAATTAAGCTTTGCAAAACTAATTCTTTTCAAAACAAAAAGAAGAGTAAATTAGGATGCGGTGATAAAGAAAAATAAAGAAATAATTAATATAGTGCATGTGAAATGCTATATATACAAAAGACTAAATATATATTTTAGTCTCAATGTTTAGGTATTTTTTTAATTTAATTTTTATTATTTAAAAATTTTAAATTATATCTTTCATATCAGTGAATATTAAAATTGATTGATGATAAACTTACATTATATGATATTTAGTGAATTCGCTAAAATTTAAAGAATAAATTATACCATCTAAAATAAGAAAAATCAAAATTTCTACCAACTTTTTATAAATTTAGATAAAGAATTAGAAAATTTTCACTTTCACATGGTCTAATTTCTTCTCTAAATTTAGGTCAACTCACTAAATACAATATCATGTAAATTTACCATCAGCCAATTTTAACATTAATCGACATGAAAGGTATAATTGAAAAATGTTAAAACATAAGGAACTAAATTGAAACTTTTTAAACAATATAGATTAAATTGAAAAAACACAAACATTAAATATTAAAACATATATTTAGCCTATACAAAATCATACGTGAAATATGGAAGAAAGTGACTTTTCAGTCCAGAAAAACTCGTGAGAGCCACAAACGAAACTCATTAATATCTCTATCTTTTCTTGCTTAATCAACATTAATAACTAATATAGAAAACACCCAACATACTATCACAATAATGCCCAAACCCAATTATAAAATTCTTAAACCTAACCACAAAATCAAGTAGATAAAATATGTTTAAAACAAAGTGATCATTTGAGTTATATTCAAATCAAGTAGATAAAATATGTTTAAATAGGGAAAAAACAACTTAGCTGAGATAATTGAGGTGTAGGAGATACCTCGCTCCTTTTGAAGAATTTTCAACAAAGTTTTTAACTTTAATTGTTTAAAGATTAAAATCTCATTTTTGCCTTTGAACTTTGAGTTATGTTTTCTTTCAATTTCTAAGCTTTCAAAACGTTCTTTTTAATTCTTAAATAAAGTGATCATTTTGGTCCCTATTATTAATATGTCGTCAATGAGAATTAATGGATTCATGATGTGACCTATATATTGAGATGAGTAAGCACCAATGTGTGCTATAAATATGTTGCCAAACAAGCGAGTTGAGTTAAGTCCATCAAAATTGAATATGGGTCGATTTTTAGGGCTGGATTCCATGTTGTTTGTGATATCCATTGGTTTAGCTGGATTTTTTAAAGAAATTGAAACTTTTCTCTCTTAAGTGGTATAATTCGTCTTCTAAATTTCTATCAATTCAGTAAGTATCATACTATGTAAGTTTTTAACTAACCAATTTCAACGTTCATCAACAGAAATGATATAATTAAAAATATTACAACGTAAGAGACTAAATTAAAACACTCGAACATTAGGACTATAACATGTAAATTTAGCCATATTATTTTTACTAATGCCCTTTTTATTTTCTGACCATACCATTACCAACCAATTCCTGGATATTGGGCTCCGCCTAGGCCCAAACGCGGCCCAAAACACGACAGTTGAAATGGAGAGAGAGAGAGAGTCTTCGAACTACTTGCTGAAGAAGAGAAAGCTCACTGACGGTGTGCTAGAGCCAAATGCAACCATTAAACTCCATCGTTTCTCAATCGGCCTGTTCTTAATTCTTTACTTGCAGTTCCTCAGCCGTCGACGGCGCCGATTCTGCGGCGGGCAGCTTCGGAAAAATGATGTCACCAAGGCCGATGTCTGAGGATCGAGGATCTTCGCCTCATTTCAGGTTTTCCATATAGTTTTTTTTTCAAATTTCTTGCTTCTGTCCTAATTGCAAAATTGTAGTCGTTTCTTTAGCCCCTTGGAGACCTCGGGGATATAGAAGAAATTGAAACTTCTGAATCTTGTGGTTGCGGCGACGTTCGAAATGGGAAGTTTCTGCTGTGGGGGGATTAGATTAGTCCGTAGTCAGGGATAATACAGGTTAAAATTTGGATGCCTTATCTTCTACTTGATCTTCTCACCAGCTCAATGGAACTTGCATGGCCACAACTTGACATGTAGTTCGAGTTTTATGAGAATTTATTGGTTGGAAGTGGCTATAATGGAATTGGGGAAGAGATGAAATCAGCTAGGTGAAAAGATCACACAGCCTTAGTCACTACACGATTCGTCCAATTTAGTTAATGAGGAAAATCAATGTTCGATACTTATTTTCCTCTTCCTGTATTCCACACGCTTAACTTCTGGCGAACATTGGTGTGAAGCTGTTGGAAATTGACTCTAAATAGTTCCATTGATTTAGTACGCTGCTATTTTATGCTATTTTAGAGAAGCTAAGCGGGTTCGTTTATTCACTTCCCGGGTTAAAGCTGTACCCCATGCTTTCTTTTATGATTGTTCTTCCATGCTGGTGAATTGACCTTCTTTGCAGGCATACACCGTTGCAGATAATCCACATGGTTGGAAATTTCTTCCGGATATGGTCAATTTATTCCATGTATCGCTATTTTTCCCAGACTGGAGCTTCAGTTGTACTTTTTCTCTTTTGTTGTTTAGCCCCAGCAGCCATTGTATTCTTGACTTTGCAAAAGCCTTGGAAGGGAAAGCCCCTTTCAAATACCCAGGTGAAGTGGAAAATTTAGTTGTAAGAACCAAATGTTACAACCTCTTATACTATTTCATCAGTTTTTTCTTAGATCTAACTTGCTTTTTTAGGTAGTTCCTTCTGTGATAAATGGTGGCATAACAGCTTTATACTTTATCTTGTGGGGAAAGGGCCTTAAAGCATGTGGACCTCTGAGGTGGGTTACCTATGGAAATATATACCACTTGCTCTTTCTTTTTGGCACATACATGAAACATGCATGGATGCACCACACAGACTCATATTTTTCATGGAAAACATCCCAAAATTTTCAAGTAAATTGAGAGGAAAATAATATAATCACACATGTTGATAAGATAGTTTCTTATATTCCTTATCCTCCTAATCTTATATATTGATCAAGAATTTGCTTCAATTTACAGCATATGGCTATGCTATATTTAGGTGACGTGTTTTTCAGAAAACCTAGCCTCATTAGGATTTTAAATGCTAGAACTACAAATTGTTTATAGAATAAGAAAGATTGGATATTATATAATATTCAGATTCTGATCCCCCCCCCCCCCCCCCCCCCCCCCACATAAAAAAAAGGTTTCTCCTCTTGGAAACCATTTGTAGAATAATATGCTTCCGTTTTAATGTAAATCTTCGTATTAAATTCTCATCTAATTCTTCAGATCCTTTGTTTAATTCTTATTATGTCGTTTGCTTTAACAAAACCTCTTTGAAAATTGTGCTTTTATTTGGGTTGTAACTGTAAGAAGTTTCAATAAGAGACCTTACTCATTACTCTTTATCTCCTTCTTCGCAAATTATGTGAAGTGTGATTTATGAATCATTGAATCATTTACTTCATTGTCAGTTTGCAAAAGATTTTGTTTCACACTTCTTTATGAATTTGATGTTCTTTGGATCTTCCCTCAAGGCATATATTTGATTCTTTGTTCAGATATCTTTGGTGGAAGGGCTTAAAGTAGAGAGTTGTATAATTCCTAATGTTTTTAAGTGTTGTGATTTGAAAATAATAAGAGGATTTTGTAAGACAAATTTGGATAAATTGAGAGGACACGGAAATGTACTAAACTAGAGTCATTTTTCCTGTTATCTTTGGTGTAGAAATGTCAAATCAGTCTCTTTTGGTAGTTCGTGTAGTAGATGGAGTTGTTTCTTGTAATTTTTTCTTTTTATGTTTTGAGGGTGCCTTATTTGTTACCTCTTCGTCTTATTCTTTTATACACAGTTCTTGAATTAAAAAAATGAACAGACCACTCTGTATTTCTATCCGGTGCCATGAGTCATCGGGAGCTGATGTAACAGTGATTTAAACTTATAATGGGATGCAATGGGAGTATTTATGGATGCTTTGTTGCTTGGTTATATATTTTCTCTTGCCTTCTGTTCTCGTGGTCCATTTATTTATTGTGTCTTTTTAATTTTCTATTCAATCCCAATTATTCTAGGGCTATACTTGCGGAGTATTCTGGTGCTATTCTTGGAGTTGTTTCTGCTGTTTTGTATGGTCGGGGGGGCTTTGTTTGGAAAAAGGTAGTGTTTAATATACATGTGTATTCTTGGGCTTCTTTATATTTGTTTAATACCCTCATAGGCTGTGTAGAAGTGAGGGCTTCAATTTAATTTAATTTATTTTGAAGATTATATTCTGATAATTTTAGTTTTTTGTTATAATGTCATCCACATATCTACAGTAGGTAGGTTGTAGGGAGTGAATGCATGTATCTTCTTGTAGTAGTCGTGCTTTATCTGAAGTCTTCTTCTAATTTTAGCATGAAATTGGGCTTGCAATTTAAGTTGAGAGGTTCACAGTTGTTATGGTAGGTTATTTCGGTCTTAGATAAATAATCAGATTCCCCTTGATATATCATATCAGGTTGGCGGTCTCATTGCAATGTTGGTATCTTTCTACTTCTTATCCCAAGGGTGGGCCATGGCCACACATTTTCCCTTCTATATCCTTGAAAGTTCAATTGTAACTGTATTTCATGTAGTTGCAACCTTCTGAGGTCTTTTTTTCCCCTTTTTTTTTTTCTTTTAAATATTATTATTATTTTTTATTATTTATTTTTCCCCTCTTTCTTTTAATGTTTCTGTGTTCTCATTTCTATATCAAAATTGTTGCAAACTTTAACTGAGACTACCTGCAAAAGATGGCTCTGACTCTGGGGATCAGACAGAACAAGTGCTTGGTTTAAAAGAAATGACAATTCCCATCTTTGCTGGAATCTTTTCAGCATTGAGAAGGGTCATTGCTCGGCGTGTTTCACTTAAGGTGTTAACTAATATTGAGTTTACTTTATAACCTTCTTTTGATACATAAGCTACCAAATGGCATTCTGATGAGTGATTATTGTTACAATGCGCCCTCAGAATCAACTTAAAAGACGACTTCATGCCATAACAATGGCTTCTGCAACTTGTTTTCTCTTTCCTATAGCCATGTGGGACATGATAATCGTAAGTTTCAGCAATATTTCATGAATGCTCTATTTCTTAAAGTAGTGCTTGATTTTTCTGCATTGTCGTAACTTCAGGGATCAACTTCTGATAACAGTAGAGAGCTTCCTTTCTCCACCTGGGCATTTTAAGCACTATAATTTTGGTGTTATTCTGATATTTTACGTTGACAGCATTGCAGAAGAAAGGTACAATATAAATCAAAATAATGGGGATTCACATGATGGAATTGTTCAGTACTTGTTCCCCATTCTCCCCTCTTGCTATCTTTCCTAGGCATGGTGAACAATTATATTTTTCATTCTTGTCCCCAGCCAATGATTATAACCTCCAAACATGAAAATTGCTAATTAGGAATTGAGCATGGATTGTGAGATGGATGGTGTAGCTAGTATTTGTGTCTACGATCTTTCTAAGAAGAGCATTTTACATTTTGGAATGAAGATTGAACCCCACGTAATTTTGCTCTAATCAATACTGATAAATAATATTCTGTAATGGAAGATGGTGTTTTAATATATTAAGCGACCCTTTGACATTTCTGTAATTTGTGAATTGGCATGCTCTGATTAAAAAATTTCAAAATTCTTGTGACGGCGGGTTCGATGGCTGTGCATGTACTGTCTTTATGTGACAACTATACTTTCTCTCAAACGTAGCTAAAACTTGTAGAATTTTACATTACATTATAGATTACTCATCAGTTTCGTTCATTTGGAAGACTCTGAAAAGGGAGATTTCTTACATGACATAAGTAAATGAACAATACTTATCTTTATTTCTAGATTGCACATGGTTTTTTCTTCTCCAAGACATTTGATGGTAGCTGGTGGAAGCATCATTCTTCTGGAGATTTTATACAAGATGGATTTTTCTCTAGTCGGCTTCATTATCTGCTGCTCAATTTTGGGGTTTGGTATGCTCAAGTTTTTATCCATTTTGTTCATTATGGCAAGAATCTGTACAAGGCCATTGATGAAATTTGCCATATGTGTGCATGAGCCATCTCTTCTCTATTCTCCAATCTTCCTATGCTTTTCAATTCTTCAATTGGATTGACAAATACCAAATGCCAATGCTTGTAGGGATATATGAAGCAACTTCTTTAGACCGCAGCAGAAAAGATTCTTCTCGCAAGCTTGATACATCAAATGGACTGTTGGACGACCAAGATCAGATGTCATCGCTTCCAACTTGATGTATGTTCATATTAAACTTACCTATATTTGTTTTAATTATTTTAGCAGTTGGTTAATTATTGCCCTTATATATGATCTTAAAGAAATTGAAGCTTGAGAAGTAAGAATAGTTGTGTCAATTTGATTTTTCTTTAAATTATTAATCTCCCAAGAGGACCGGCTGTTTTGGTAAAATGATTGGTTTTTATTTAGGGAAAAGTTTAATTTTTACCACTAAACTTGTCGAGTTGTATCAATTTTTATCCTAAACTTTTAATTTCATCAAATTAGACCTTAGACTTGGATAAATGTTGTAATCTTTACCTCTAACTTGCATATGTGTTGAATTTTTTTAATTTTGGGTGATTTATTTAATGTTCGATCTTATGCATTGATTGAACTTAATTTTGTGTAAGATTTGATTTTTGTAGAAATTAGTAAATTATGTGAGATTTTTTTTTTTTTTTTTGTTAAAATTAGTGGTTGAATGTAGTGAAAGCTTAACAAGGGAAAAAATTACAACACTTATCCAAGTCTAGAATTTAATTAGATGACATTGAAAGTTTAGGATAAAAATATACATATTGTCAAGTTCAAGGATAAAAATTGAATTTTTCTCTTTTATTTATCTTTGCACACCGTTGGAGAAAAACTTAACAAGCTTAACCAGGGATTCTGTGGAGAGATATCCAAAATGGAATGATTTTACTTAAAACAAATAAAATATGAAAATTCAATCTTCATACTAATCATGGAAAATTTGACAAATTTATTGGCCATGCACTCATTTCCTTATGGTTTATTGATCTCAACATCACACCTTAAACAATTTGGTGCCCACAGCAATCAGAAGATGTTGGTGGTTTAGGCCATTGTTACTACCCTTATCAGGCCGGAAAACTTGTTTATGTGGCTGCTAATTGTGCTGTACTCAAATGCATTGGGCTCAGATTCTTCTTAGGCACTGGACTCTATCTGCCATCTCTCCTTCGTGCCTCTTGTACAGTCCCTCTCACCATTTTTTTGCTGAAAGTATGTAGTGCTGACCATTTGTAATGCTCTTGAAGCTTAAACAAGCCTCGAATTCACTTCTTTATTGGATCTCTAATTTGTACTTCAAACCGCACTAACTGACCTATAGACCAATGACAATTTTCACACGATGGAATTTCTTTGTTTACTCATTGTTTAATTTTCTATTGCATCTCTACTTCTTAGATTCCGTTGGGCATTACTATGTTTGGAAAGTCGAGAAAAAGCTACTAATCTAGACTGCACTTCTTTCTTTCTCTTCAGAAGTATAGATTGATTCTATGTTGATTCCAGCCGTTAGGGTGCAGTTTTTATGCCATTGTCTAAACTGCAGTGTGGATCAAAACCTGCATTTGAGCTGATGCTATTTATTGAGATTGCTTGCCTTAAACATTGGACTGCAAGAGTTATCAGTCATTGCATTGCAACTGCAAACATCCGTATCTCGTGCTTGAGACAATTGAAGATCAATGGACACTGGTAG ATGGCGGATAATCGCTCCCTGAAGGTCGTTGAGATTTTCAGAGTGGCTCCTCCACCGGAATCCCACTCCCCGGCGTCTCTTCCGCTCACGTTCTTCGACCTCCGATGGCTCAGGTTCCCTCCGGTTCAACGCCTCTTCTTCTACGAAGCTCCGACGACGCCTTTTGACGCCACTGTTTCAAACCTCAAAACCTCGCTCTCTGTCGTTCTCCAACACTATCTCCCTCTCGCCGGAAACCTCGTTTGGCCCCATGACTCCCACGGACCCGTCGTCGAGTCCGTCGAAGGCGACGCCGTTTTGCTGACGGTTGCCGAGTCGGATGCCGATTTCTACGCCCTCACCGGCGATGGATTTCGTGAAGCGATGGAGTATCACCCTCTGGTGCCGGAGCTTCCGGCGTCGGATGAGCGTGCGGCGGTGATTGCTCTGCAAGTTACTTCGTTTCCAAACGTGGGGTTTTGCATTGGAATTACTTCCCACCACGCGATTCTGGACGGCAGAACTTCAACTTCGTTTGTGAAGTCATGGGCGCATGTCTGCAAAATGAACATCGCCGGAGAGTCTGAGGCATATTTTCCGGCGACTGAGCCGATACCCTTCTACGACAGAACCATAATTGAGGATCCGGTGGGTCTTGAAGCCATTTACTTGAGAGACTGGCTCGCCAAGGGAGGTCCCAACAACAGAAGCTTAAAATTCTGGTCGACCAAAACCCCACCCGATGCAGTCCGAGGGACATTCAAGCTAAATCCCCAAAACATTCAAAAACTCAAGAAATGGGTTCTCGGCCACCGGGAGCAGAATCAGCCGCCGATTCACATCTCCACCTTCACGGTGGCGACTGCGTACACGTGGGTCTGCGCCGCCCTGGCCGACGGTTTAACGGTCGACGACGGCAAGATGGCCTTCGGAATGTCCGTGGATGCGGGGCCCCGCTTGGACCCGCCTCTGCCGAAGAACTACTTCGGCAACTGCGTGGTCGCCCAGAAAGCAGTCTTGGAAAGAACCAAGCTGGTGGGGGAAAATGGGGTCGTCGCCGCCGTGGAGGCCATATCTGAAGCTATAAGAAGCTTGGAAGATGGAGCCCTGAGAGGCGCCGAAACTTGGGTTTCGACGAAGAAGGGAGCTGGGAGTAGTCGGAAGCTGCTTACAATCGCCGGGTCGCCGAGATTCGAGGTGTACGGCGTGGATTTCGGGTGGGGGAAGCCGAAGAAGGTGGATATGGTCTCCATTGACGGAACTGGAGCCGTTTGTCTCTCCGACAGCACAGACGGCGAAGGGGTGGAGCTCGGATGGGTGGCGACGAGAACTGTAATGGAGAGCTTCGCTGCATATTTTTCTAAAGGCCCAAACGCGGCCCAAAACACGACAGTTGAAATGGAGAGAGAGAGAGAGTCTTCGAACTACTTGCTGAAGAAGAGAAAGCTCACTGACGCCGTCGACGGCGCCGATTCTGCGGCGGGCAGCTTCGGAAAAATGATGTCACCAAGGCCGATGTCTGAGGATCGAGGATCTTCGCCTCATTTCAGGCATACACCGTTGCAGATAATCCACATGGTTGGAAATTTCTTCCGGATATGGTCAATTTATTCCATGTATCGCTATTTTTCCCAGACTGGAGCTTCAGTTGTACTTTTTCTCTTTTGTTGTTTAGCCCCAGCAGCCATTGTATTCTTGACTTTGCAAAAGCCTTGGAAGGGAAAGCCCCTTTCAAATACCCAGGTAGTTCCTTCTGTGATAAATGGTGGCATAACAGCTTTATACTTTATCTTGTGGGGAAAGGGCCTTAAAGCATGTGGACCTCTGAGGGCTATACTTGCGGAGTATTCTGGTGCTATTCTTGGAGTTGTTTCTGCTGTTTTGTATGGTCGGGGGGGCTTTGTTTGGAAAAAGACAGAACAAGTGCTTGGTTTAAAAGAAATGACAATTCCCATCTTTGCTGGAATCTTTTCAGCATTGAGAAGGGTCATTGCTCGGCGTGTTTCACTTAAGAATCAACTTAAAAGACGACTTCATGCCATAACAATGGCTTCTGCAACTTGTTTTCTCTTTCCTATAGCCATGTGGGACATGATAATCCAATCAGAAGATGTTGGTGGTTTAGGCCATTGTTACTACCCTTATCAGGCCGGAAAACTTGTTTATGTGGCTGCTAATTGTGCTGTACTCAAATGCATTGGGCTCAGATTCTTCTTAGGCACTGGACTCTATCTGCCATCTCTCCTTCGTGCCTCTTGTACAGTCCCTCTCACCATTTTTTTGCTGAAATGTGGATCAAAACCTGCATTTGAGCTGATGCTATTTATTGAGATTGCTTGCCTTAAACATTGGACTGCAAGAGTTATCAGTCATTGCATTGCAACTGCAAACATCCGTATCTCGTGCTTGAGACAATTGAAGATCAATGGACACTGGTAG ATGGCGGATAATCGCTCCCTGAAGGTCGTTGAGATTTTCAGAGTGGCTCCTCCACCGGAATCCCACTCCCCGGCGTCTCTTCCGCTCACGTTCTTCGACCTCCGATGGCTCAGGTTCCCTCCGGTTCAACGCCTCTTCTTCTACGAAGCTCCGACGACGCCTTTTGACGCCACTGTTTCAAACCTCAAAACCTCGCTCTCTGTCGTTCTCCAACACTATCTCCCTCTCGCCGGAAACCTCGTTTGGCCCCATGACTCCCACGGACCCGTCGTCGAGTCCGTCGAAGGCGACGCCGTTTTGCTGACGGTTGCCGAGTCGGATGCCGATTTCTACGCCCTCACCGGCGATGGATTTCGTGAAGCGATGGAGTATCACCCTCTGGTGCCGGAGCTTCCGGCGTCGGATGAGCGTGCGGCGGTGATTGCTCTGCAAGTTACTTCGTTTCCAAACGTGGGGTTTTGCATTGGAATTACTTCCCACCACGCGATTCTGGACGGCAGAACTTCAACTTCGTTTGTGAAGTCATGGGCGCATGTCTGCAAAATGAACATCGCCGGAGAGTCTGAGGCATATTTTCCGGCGACTGAGCCGATACCCTTCTACGACAGAACCATAATTGAGGATCCGGTGGGTCTTGAAGCCATTTACTTGAGAGACTGGCTCGCCAAGGGAGGTCCCAACAACAGAAGCTTAAAATTCTGGTCGACCAAAACCCCACCCGATGCAGTCCGAGGGACATTCAAGCTAAATCCCCAAAACATTCAAAAACTCAAGAAATGGGTTCTCGGCCACCGGGAGCAGAATCAGCCGCCGATTCACATCTCCACCTTCACGGTGGCGACTGCGTACACGTGGGTCTGCGCCGCCCTGGCCGACGGTTTAACGGTCGACGACGGCAAGATGGCCTTCGGAATGTCCGTGGATGCGGGGCCCCGCTTGGACCCGCCTCTGCCGAAGAACTACTTCGGCAACTGCGTGGTCGCCCAGAAAGCAGTCTTGGAAAGAACCAAGCTGGTGGGGGAAAATGGGGTCGTCGCCGCCGTGGAGGCCATATCTGAAGCTATAAGAAGCTTGGAAGATGGAGCCCTGAGAGGCGCCGAAACTTGGGTTTCGACGAAGAAGGGAGCTGGGAGTAGTCGGAAGCTGCTTACAATCGCCGGGTCGCCGAGATTCGAGGTGTACGGCGTGGATTTCGGGTGGGGGAAGCCGAAGAAGGTGGATATGGTCTCCATTGACGGAACTGGAGCCGTTTGTCTCTCCGACAGCACAGACGGCGAAGGGGTGGAGCTCGGATGGGTGGCGACGAGAACTGTAATGGAGAGCTTCGCTGCATATTTTTCTAAAGGCCCAAACGCGGCCCAAAACACGACAGTTGAAATGGAGAGAGAGAGAGAGTCTTCGAACTACTTGCTGAAGAAGAGAAAGCTCACTGACGCCGTCGACGGCGCCGATTCTGCGGCGGGCAGCTTCGGAAAAATGATGTCACCAAGGCCGATGTCTGAGGATCGAGGATCTTCGCCTCATTTCAGGCATACACCGTTGCAGATAATCCACATGGTTGGAAATTTCTTCCGGATATGGTCAATTTATTCCATGTATCGCTATTTTTCCCAGACTGGAGCTTCAGTTGTACTTTTTCTCTTTTGTTGTTTAGCCCCAGCAGCCATTGTATTCTTGACTTTGCAAAAGCCTTGGAAGGGAAAGCCCCTTTCAAATACCCAGGTAGTTCCTTCTGTGATAAATGGTGGCATAACAGCTTTATACTTTATCTTGTGGGGAAAGGGCCTTAAAGCATGTGGACCTCTGAGGGCTATACTTGCGGAGTATTCTGGTGCTATTCTTGGAGTTGTTTCTGCTGTTTTGTATGGTCGGGGGGGCTTTGTTTGGAAAAAGACAGAACAAGTGCTTGGTTTAAAAGAAATGACAATTCCCATCTTTGCTGGAATCTTTTCAGCATTGAGAAGGGTCATTGCTCGGCGTGTTTCACTTAAGAATCAACTTAAAAGACGACTTCATGCCATAACAATGGCTTCTGCAACTTGTTTTCTCTTTCCTATAGCCATGTGGGACATGATAATCCAATCAGAAGATGTTGGTGGTTTAGGCCATTGTTACTACCCTTATCAGGCCGGAAAACTTGTTTATGTGGCTGCTAATTGTGCTGTACTCAAATGCATTGGGCTCAGATTCTTCTTAGGCACTGGACTCTATCTGCCATCTCTCCTTCGTGCCTCTTGTACAGTCCCTCTCACCATTTTTTTGCTGAAATGTGGATCAAAACCTGCATTTGAGCTGATGCTATTTATTGAGATTGCTTGCCTTAAACATTGGACTGCAAGAGTTATCAGTCATTGCATTGCAACTGCAAACATCCGTATCTCGTGCTTGAGACAATTGAAGATCAATGGACACTGGTAG MADNRSLKVVEIFRVAPPPESHSPASLPLTFFDLRWLRFPPVQRLFFYEAPTTPFDATVSNLKTSLSVVLQHYLPLAGNLVWPHDSHGPVVESVEGDAVLLTVAESDADFYALTGDGFREAMEYHPLVPELPASDERAAVIALQVTSFPNVGFCIGITSHHAILDGRTSTSFVKSWAHVCKMNIAGESEAYFPATEPIPFYDRTIIEDPVGLEAIYLRDWLAKGGPNNRSLKFWSTKTPPDAVRGTFKLNPQNIQKLKKWVLGHREQNQPPIHISTFTVATAYTWVCAALADGLTVDDGKMAFGMSVDAGPRLDPPLPKNYFGNCVVAQKAVLERTKLVGENGVVAAVEAISEAIRSLEDGALRGAETWVSTKKGAGSSRKLLTIAGSPRFEVYGVDFGWGKPKKVDMVSIDGTGAVCLSDSTDGEGVELGWVATRTVMESFAAYFSKGPNAAQNTTVEMERERESSNYLLKKRKLTDAVDGADSAAGSFGKMMSPRPMSEDRGSSPHFRHTPLQIIHMVGNFFRIWSIYSMYRYFSQTGASVVLFLFCCLAPAAIVFLTLQKPWKGKPLSNTQVVPSVINGGITALYFILWGKGLKACGPLRAILAEYSGAILGVVSAVLYGRGGFVWKKTEQVLGLKEMTIPIFAGIFSALRRVIARRVSLKNQLKRRLHAITMASATCFLFPIAMWDMIIQSEDVGGLGHCYYPYQAGKLVYVAANCAVLKCIGLRFFLGTGLYLPSLLRASCTVPLTIFLLKCGSKPAFELMLFIEIACLKHWTARVISHCIATANIRISCLRQLKINGHW Homology
BLAST of Sgr021110 vs. NCBI nr
Match: XP_038875303.1 (malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida] >XP_038875311.1 malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida] >XP_038878095.1 malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida]) HSP 1 Score: 564.7 bits (1454), Expect = 1.3e-156 Identity = 285/446 (63.90%), Postives = 338/446 (75.78%), Query Frame = 0
BLAST of Sgr021110 vs. NCBI nr
Match: XP_022948949.1 (phenolic glucoside malonyltransferase 2-like [Cucurbita moschata]) HSP 1 Score: 558.9 bits (1439), Expect = 7.1e-155 Identity = 285/448 (63.62%), Postives = 341/448 (76.12%), Query Frame = 0
BLAST of Sgr021110 vs. NCBI nr
Match: KAG6607032.1 (Phenolic glucoside malonyltransferase 2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 558.9 bits (1439), Expect = 7.1e-155 Identity = 285/448 (63.62%), Postives = 342/448 (76.34%), Query Frame = 0
BLAST of Sgr021110 vs. NCBI nr
Match: XP_008465393.1 (PREDICTED: phenolic glucoside malonyltransferase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 555.8 bits (1431), Expect = 6.0e-154 Identity = 279/447 (62.42%), Postives = 339/447 (75.84%), Query Frame = 0
BLAST of Sgr021110 vs. NCBI nr
Match: XP_023523638.1 (phenolic glucoside malonyltransferase 1-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 555.1 bits (1429), Expect = 1.0e-153 Identity = 283/448 (63.17%), Postives = 340/448 (75.89%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy Swiss-Prot
Match: Q9LJB4 (Malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase OS=Arabidopsis thaliana OX=3702 GN=5MAT PE=1 SV=1) HSP 1 Score: 310.8 bits (795), Expect = 4.4e-83 Identity = 189/464 (40.73%), Postives = 267/464 (57.54%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy Swiss-Prot
Match: Q940Z5 (Phenolic glucoside malonyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=PMAT1 PE=1 SV=1) HSP 1 Score: 306.2 bits (783), Expect = 1.1e-81 Identity = 186/465 (40.00%), Postives = 261/465 (56.13%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy Swiss-Prot
Match: Q9LRQ8 (Phenolic glucoside malonyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=PMAT2 PE=1 SV=1) HSP 1 Score: 298.1 bits (762), Expect = 2.9e-79 Identity = 180/458 (39.30%), Postives = 256/458 (55.90%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy Swiss-Prot
Match: Q589Y0 (Phenolic glucoside malonyltransferase 1 OS=Nicotiana tabacum OX=4097 GN=mat1 PE=1 SV=1) HSP 1 Score: 281.6 bits (719), Expect = 2.9e-74 Identity = 175/458 (38.21%), Postives = 254/458 (55.46%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy Swiss-Prot
Match: Q8W1W9 (Malonyl-coenzyme:anthocyanin 5-O-glucoside-6'''-O-malonyltransferase OS=Salvia splendens OX=180675 GN=5MAT1 PE=1 SV=1) HSP 1 Score: 275.4 bits (703), Expect = 2.0e-72 Identity = 167/456 (36.62%), Postives = 254/456 (55.70%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy TrEMBL
Match: A0A6J1GBE9 (phenolic glucoside malonyltransferase 2-like OS=Cucurbita moschata OX=3662 GN=LOC111452446 PE=3 SV=1) HSP 1 Score: 558.9 bits (1439), Expect = 3.4e-155 Identity = 285/448 (63.62%), Postives = 341/448 (76.12%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy TrEMBL
Match: A0A1S3CNS2 (phenolic glucoside malonyltransferase 1-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103503024 PE=3 SV=1) HSP 1 Score: 555.8 bits (1431), Expect = 2.9e-154 Identity = 279/447 (62.42%), Postives = 339/447 (75.84%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy TrEMBL
Match: A0A6J1K841 (phenolic glucoside malonyltransferase 1-like OS=Cucurbita maxima OX=3661 GN=LOC111492563 PE=3 SV=1) HSP 1 Score: 543.9 bits (1400), Expect = 1.1e-150 Identity = 281/449 (62.58%), Postives = 337/449 (75.06%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy TrEMBL
Match: A0A6J1DCL4 (phenolic glucoside malonyltransferase 1-like OS=Momordica charantia OX=3673 GN=LOC111019505 PE=3 SV=1) HSP 1 Score: 500.4 bits (1287), Expect = 1.4e-137 Identity = 258/461 (55.97%), Postives = 326/461 (70.72%), Query Frame = 0
BLAST of Sgr021110 vs. ExPASy TrEMBL
Match: A0A5N6L5Y8 (Uncharacterized protein OS=Carpinus fangiana OX=176857 GN=FH972_027069 PE=3 SV=1) HSP 1 Score: 491.1 bits (1263), Expect = 8.7e-135 Identity = 243/442 (54.98%), Postives = 313/442 (70.81%), Query Frame = 0
BLAST of Sgr021110 vs. TAIR 10
Match: AT5G38380.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: membrane; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 14 growth stages; CONTAINS InterPro DOMAIN/s: Protein of unknown function DUF6, transmembrane (InterPro:IPR000620); Has 109 Blast hits to 107 proteins in 35 species: Archae - 0; Bacteria - 0; Metazoa - 59; Fungi - 0; Plants - 43; Viruses - 0; Other Eukaryotes - 7 (source: NCBI BLink). ) HSP 1 Score: 323.6 bits (828), Expect = 4.6e-88 Identity = 158/218 (72.48%), Postives = 182/218 (83.49%), Query Frame = 0
BLAST of Sgr021110 vs. TAIR 10
Match: AT5G38380.1 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: membrane; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 14 growth stages; CONTAINS InterPro DOMAIN/s: Protein of unknown function DUF6, transmembrane (InterPro:IPR000620); BEST Arabidopsis thaliana protein match is: Cation efflux family protein (TAIR:AT2G04620.1); Has 123 Blast hits to 121 proteins in 39 species: Archae - 0; Bacteria - 0; Metazoa - 69; Fungi - 0; Plants - 45; Viruses - 0; Other Eukaryotes - 9 (source: NCBI BLink). ) HSP 1 Score: 313.9 bits (803), Expect = 3.7e-85 Identity = 158/243 (65.02%), Postives = 182/243 (74.90%), Query Frame = 0
BLAST of Sgr021110 vs. TAIR 10
Match: AT3G29590.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 310.8 bits (795), Expect = 3.1e-84 Identity = 189/464 (40.73%), Postives = 267/464 (57.54%), Query Frame = 0
BLAST of Sgr021110 vs. TAIR 10
Match: AT5G39090.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 309.7 bits (792), Expect = 6.9e-84 Identity = 184/456 (40.35%), Postives = 265/456 (58.11%), Query Frame = 0
BLAST of Sgr021110 vs. TAIR 10
Match: AT5G39050.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 306.2 bits (783), Expect = 7.7e-83 Identity = 186/465 (40.00%), Postives = 261/465 (56.13%), 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 Position : 0 Zoom : x 1
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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