Sgr022317 (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.ATGGAGCCCCTATGGAGGAGTTTTCCGGCCATGGCTTCCCTCAAAACGTCTCTCTCCGCCCTGGTTACCGCCGCTGCCTCCCAACCGATCATCCCGATATCTCCCGGAAAAAGCCATGTACAACCTGATGGTGAAATTGTCCTTTGAAACCAATTACCTAAGAAGCCAGACCGTCGAATTTGATTAATAACTACTTCAGGGGCAATGCAATGCAGGTATAGTTGTCGTTATCTTCACGACCTGTTGTACATCGGATGAATTTGCAAAGACAGTGAATCTCAACGGTGACTAGGCTTCGATGCTGATGATACTTTGCTTTCTAAATTTACCTATTTTGTAGAGCATGGATACGGGAAAGTTCTAAATTGATATGTATAAGTTGGCTTAGGCGGGCATTAAATGAGGGTTGAATATTGGGTCTCAAATATGAGCCCATTGTTGTTAAGAATAAGAAAAAACATGGGGTTTCTAATACATTAATTAGGATTGATTCTACATCAACCACAAAATAAGGAAAATGAAGGAGGAAGTTAACTGCAATAATCAAAATAATTTATTTTTTGAAATTTTAAAAATTAAAATAAATATTTTGAAAGTTCACTTATAATGAAATTCTACCAACATTACAACAATATACTTTTTGTTTGCAAATTGACATGTCAGAGGCTAAGAAACTGATTTCAAGTTGACATCTAAAAGTTCAAACTTAATGGTTACATTTTCAAAAAAAAAAAAAGAAACTATATTATAAAAAATAATTAAGGATACAATCATTATTATATTGGGAACTAAAAAAATATTTTAGTTGACTAATATTACATAATTATGATATTTAAAAACTATGAAATACGAGACTTGAGGATCAAGGCAAAGAACGTGTTCAAATTAGAATAGATAGTAGAACTGGTGGAAGAAGGATATAGATTACCTGAAACGTTGGCGATCAATGGAGCTCCCCATCGACAATTCCTAATGCTTATTTCCAAGTTGTAAGGCTAACTATCCTAGCATCTTAACTAAGTTGTATGACCAACTTTTCTATAACTAGTTTTGTCCCATTTATGATTATTATTTAATGATATAGTCCAATTTATAGAGTTTAGTTAAGGTAAACAAATACTAACTAACATAAAGAACTAATTAGAAGTTTAAACTCTCATAATTTTGACGGTTTTTTATATAAAAGAATTTGTTGCAAAATTCAACTTGGGATTTTCTTTTTGAATTATTATAATTCAAATAATGGGACTGGTGTGGTAATGTTTTTAATTTTAGTAATAACTCTATATAGCAAAATATGTCTTTAAATTATCTTATGAAAGTATATTGCAAACATACACTTTAAAGTTCATACACTATTACAAACTTTAAAACATAAAATATAAATTCAAAGAAAAGAATCCAGTAACGTAATATAAGATTTAATAACAAAAGAAAAACATCGTGTGCAGAATTTGACATCCAGAGATTTGTTTGGCCATTACTACAATATCCAAAAGTTTGGGATATTTGTCTAAATAGAGGCGTAAAATATGTGTGGTCCATTAATATCCAAAAGTTTTGGATATTTTCTTTAAATAGAGGTGTAAAAATAGGCCATATTCATTAAAGGTCTGGAGTGTGGTCCAATCAATTGGGCCATCCCCTCTCTATTTCTATCAAAATTTGAATACACAAGAAAAGGTAAATAGGTGCAAAATTATGAGAATTTTATGATAAGATTTTTCGATTAATGAATCAAAATTTAAAAAAAAAAATAGTGAAACAGGAAAATAGAAGTCCTAAAGCCCCGTTTACTTCAAGGGAACGAGAATAAATGAATGAAAATCAAATATTTCATTCACTTTGATGATATTTACTAAAATGCAGGAATGGAATCAATTGGTGGGACCCACCACCAATTTGAGAATCACTTTCCAAAAAAAAGGTAATCTCATTTCTTTCCTACAACCTCTTAAATTCCATTCTCATTCCTTATTTTGTGGATCCCATAACCTTTTCATTTATTACTTTACTACTTTTACCATTTCTCTCTCATCTATTAGTGAAACCTACAACATTTTTATTAATTATTTTACCACTTTTACTCCTTATCTCTTATTTATACAATCAATCATTTTTATTTTAATAAAAAATCATACAAATTTTTTTATTAGCACATATAGTTTTTTTTATAAAATTGTAAATTTCTATTTAATGTGTTAATTATTTAATTTTAATTAGTCATTATTTATTATTTAATTTGTTAAAATAGAATATTGTTATTATAATGTATATAAATAAAATTGATCTATATTTTCTACTAATAAAAAACTATACTAACCTTTTGTTAGTTTATGTGATTTTATTATAAAATATAACAAACTTTCATTTAATTTTACTTTGTTATTATTACTTATTATCAATTAAATTGTTGAAATATAATTCATTATTATCAAATATCATAACAATAAATTTAATAATATTTTATATCAATAATTGTTTTTCTAATAAAAAATTATATTAATCTTTTTTAGTTGATGTAATTATATTTTAATTAGTTACTATTTGTTAATACCAAATAAATTGTTAAAAATATAATTCATTATTATTAAATATCATAACAATAAATTTAATAATATTTATATTAATAATTGTTGTTCTAATAAAATTATATTAATCATTTATAATTGATGCAATTTTATTAATTAATTATTATTTGTTAATATCAAATAAATTATTAAAATAAAAAATATTACTATCAAATAATATAAATTAAAAATTATTATTGGTTATTGATATTTTAATTAAAAAATTATATTAGCATACTATTTAGTTAATACATTTTTAATTGGATAGAAATATGAAAATGGTATTCTATTAATTATTATCTCTTTGATTCCTATTTCAATTCCAGATAATTTTTAGTAAACAACATCAAATGAATAATATTTTGATTCTTATTGATCTCATTCCAATTAATTTTCATTTCGATTTCTTGTCATTTTGATTTTTGATAAGTAAACGGAACCTAAAAGTAGTCCTGCAACATAACAGAAACAATGCAGAAATAAAAAATAGTAAAAAAAAAAAAAGCCGAAACACAAATATAATTAACAACTTTAAAACATAAAATCTAAATTCAAAGAAAAGAACCCAGAAATGTAATCTACGATTTATGGACAAAACGATAACAACGTGTGGAAAATCTAGAATCCAAAGATCTGATTGGCCATTACCAATTTTCAATTGTACACATCGGCTTGGTTCTAGCCTTTTTTACTTAACCTTATCTCAAACAATCTTCTCAACTCACATAAGAGTTTATTCCATGCACAACTAAAATTCTGCAATTGAATGGTTGAGAAATATTATATGATTCGAGAGTTTAACTGTAACAATTTTTATAGTTAAAGATAATTTATATAATTAATATATTTTATTCTTTATTAGAATGGTAGTTATTTTTATGCAATTAAAAAAATTTAAATAATTTTGTAAAATATTTAACATTATTTTAAAAATCTATTTTCATGTATATTTAATGTCAAGAAATTTTTTTAAAAAACGAAATCTAATAAGGAAACTAAAATAAAAACTATAAAAGTAATACATAATATCCACAAACTAAATAATTGTAAATATTAAATAATTGTTATTATTTCATAATTATCAATAACGGGCCTAAAATAGTAATTTAATGTTTTTTTTGTTTTTTATAATATCTTATCTTAATTAGATTTCAGCCACCCGTTTGGTTATCAGAAGGAAGCACGTTTTCAAAGCACATTTGGAAATTGGGATGGGCCCATGAGGTAGAAAATGAGTGAAGAGGATACGATATGTCGTATAGCTGATCATCGTTTTTGGCTCCATCGTCCGATTTGTCGAATCAGACTGCGACCCCTAAGAAACGATTTTTTCACGAGGGAGCCGGGGAGCGAGCGTCGGCAATAAATGCAGCCCTTGTGGAAGAGTTGCTCCACAGTTTTCTGGCCATGGCTTTCCTCAAATCCTTTCTTTTCATTCTTGCCCTTCTTGCCTTCGCTTCCGCCGCCGCCGCAGCCTCCCGACCGATCATTCGGGAATTTCCCAAACAGAGCCTTCTGCGAGCTGTTGGCGGAGCGGATTCGAAATGCGAGAGCTGGAAATTCTCCTTCGAAGCCAATAACCTTAGAAGCCGGACCGTCCCAAAGGAGTGCATTAAATTTGTTGTGAGCTATATGGTGGACAATGGCAGTAATAGTCGTTATTTCTACGACTTGTCGTACGTCGTTGATAGCGCCAATGAATTCGCAGCGACGGTGAATCTCAAAGGCGACGGAAAGGACGCTTGGATCTTCGATATTGACGACACACTGCTCTCCAATGTGCTTTATTTCTTGGAGAGTGGATACGGGCAAGTTCTAAATTTGATCATCAAAGACGATGTTAAATCAAATCTCGTTTTCATCCTTCATTTTTTTCGAAATATTTGTTTTTTATTTTTAACTTTTGAAAAATAATCCAGGTGGGAGAGTTTCAATGAAACTGATTTCAATGAATGGTTGGAAAAGGGGCTGTCATATCCTATATTTTACAACTTATTCCTTTACAAAGGGCTTCAAATCGCGGGCTTCAAGGCTATTATATTAACTGAGAGAGATGAATCTACGAGGAGTTCCACCGAAAATATCCTTCTGAGAAATAGCTACACTGATTGGGAGAAACTTATCATGAGGTATATTTAATTCTTATATATATTAAATCCTCGTATCTATATATAATGTGTTGATCGAGGTTATTAATATCTTTAACTGTTAAATTATGTTCAGATTGACCCATTAGGGGCTTAATGGTTACATTTTTTAAATGTTAAATATATATTTTAGTGCCTAATGTTTAGATTTTTTTTTTCAAAAAAAAAAAAAATACAAGGGGTAAAGTCTTTTATATATATATCAAAATATATTGGAATATCACAGACTTACAATCAGAATATATTCTAATTGATTAATATTATATAATTATGATATTTTAAAACTATGAAATAGGGGACCTGAGGATCAAGGCAAAGAAGTAAGTGTGTTCAAATCAGAAAAGATAGCAGAGTTGGTAGAAGAAGGATATAGATTGCACGGGAATGTCGGAGATCAGTGGAGGGATTTGTTAGGCTCCCCATCGACAACACGTACCTTCAAAATTCCTAATCCTATGTATTATCTTCCCTAAATTCAGTGCTTAATCTTAAGTTATATGGCTGTTGTATGGCTAACTAGCCTGAGATTCTAAGTTATGGCCAACTACTCTATATCTATGTCAATAAAGTATCTCAAACTATAATTCTATAGTTTGAGATTATTATATAGTGTGCCTTCTCGATGTGCATGTATTTATCCTTTTGTAATATAGTCTAAATTGACGTAAACAAAGATCAACTAATGTAATTAAAGAACTAATTAGGAGTTTAAACATACTCTAATAACTTTAAAAGTTTTATACATAAAAGAATATGTTGCGAAACTATTTTGTTTTGTGATTCCAAGGCAATGGATATTGATTCATTGCTTGTTTATTTATTTATTTTTTAGGGAAAAATTGGATTTTTTAAAAGTTATTTATTTTAATTTAATAACAAATATTGTGCTTAATTAAAATTTGATCTATATAGTTTCTTTGGATATAGCAAAGAGAAGAGATGAGTTCGTTCACTTTGATGGAATTTTTCACAATAGAGACTAAATTATTATAAATAAAAACTAAATTATTACATATTAAAGTTTAGAGACTAAATCATTATAAATTTAAAAGTATATGATCTCAATTTTTACATACTAAAGTTAAAAAAACTAAATCATCACTTTAACAAAAAATGTTAAAATGAAAGTTAAAAAAACTAAATCACTGCTTCAACGAAAATACAATCACGATAATGGTTTTTAACCCTCTTTAAACAGTGATGTTGTATGAGATTTGTATAAAAGTGATTGAAAAAGCTAAAGGAAAGTTACCATGCAACCACAAAAAGGGGAACTTTTCTTCGGCAAAGTGAGAGTAGAGAGTGAGAGCTGTCGGGGAAATCCCTCTCTCTCTCTACAATAATTCAATTTTGGCTTCTTTCACAAACCACTCCATACAATAATGTAAAGTGCCATCCTTCTGGGGCCACCAAAACGATATGTTTCAGAGATTGCGATCTCGTGATTTTTTTTTTTAAAAAAAAAAATCTATTTTTATCATAAATTTTTAATTTTATTAAATTATACCTTAAATTTTAATAAATATTACAAAATTTACCTTAAATTTGATAAAGTATTACAACTTTTATCTTTTGATAATTTTTCATTTGAAGAATTGTTAAAAAAATATATTTTTATGTTCATTCAATGAATTATAAAACACATGTCTTGTACTAAATTAATAGGATTTTAGAGAAAACAATATTAGAGCTGATTTTTTTTGTTGAAATTTGTGAGTTTTGACAGAGTTATTTAATAATCGATTTTGTGCAATTATCAAACTTAATTTTGTGCAAAAGCTTGATTTTATTGAAATTAGTGAGTTTTTGGAGACTTTTACATTCTTTTTTTGTAAAAATTAGTAGGTGAATTAGCGGAAATTGAATGGATGGTAAAAATTATAACACTTATCTAAATATAGGGTCCAATTTGATAAAATTGAAAGTTTAGAGTAAAAATTGATACATCTTACCAAGTTTAAGGGTAAAAAATGATTTTTTCATTTTTCTTTTTTTTTTTTAATATCGTGAGTATTCAAGCCAAGTTACGTGTACTTTGACTATTTTTATAGTACAAACCACGAGATCTTACAATGTATAAATATCAAGAAATACTAAAATTTTATTCCAAATAGGTGACCAGCATGCAGTGATATCATGAAATTTGTTCTTGTTTTTTTAAGCCCACAAATTCTTCATAGGATTTGGAGTGGATGTTAGATATTTTAGGAAAATGATTCTTTGTTTAATTTTTTTAATAATTATTTTCAAGAATTATTATTGAATAATTGAAATGTTATTGCCCACATAAAAATTGCCGTCCTCAAACTTGTGGTGTCGGATAAAAATACACTAAAATAAAGCAAGATTAAGGTACGATGATTTAAAAGTAGGCTAAATATATGAAATGATCTTTAATCTTAGATAATTCTAAAAATTGATCTTAATATTTAAATCTCAATTTACTTAAGATAAAAAATCTCGATTAATATCTATATTGATACATATATATTGTTATCATTAATTTTTTTTTTTATATTTGGACACGTAATATGTCACTCAGATGCTACTTGATACATGAAATCTAACTCGAACATCAACAAAATCCGTTTCTTCCAAGTGGCATGTTCAAGTGACATGCCTTTGTGTCAAAATATGTTAATAAAACAATAATTTAATGACACATCAACTTTCTATTAGCAAATTTTAACATATTTTTTTATAGAATGACTTAATTGAAAATTTTTAATATATTAAGGGTAAAATTGAGAATTTTAAAAGATTAAAGACCAAATTGAGAAAAACTTAAAAAATTATGGACCATTTGATATATTTAACCTTAAAAATATGTACATTTTTTTTTAAATATAGGAAATTATTTTGAAAATAATTACCATAGTGATTAAACTGAAACATTTAAAAGTATTAAATTAAAGCCAGAGACAAATAATTATAATGTCTAAAATGATAACTTAACTTAAAATATTGGGCAAAATATATTTTTAGTTTCTAAAGTTTGAGTTTGGTGTCTATTTGATCCTTGAAGTTTCAAAAGAGACACTTTAGTCTTTTAGATTTGAAAATTGTTTTAAATGGTCCATGAACTCATTTGACCTTTAATTGTCTTTGGAATGCTGACGTGGAGATTAACATCTGATTGGCTATTCCATTTCTCTCTCCTTTCTCCCTTCTCCTTCCTCCTCTCTTCTTCTCCCTTCTTCTCCTACAGATCTTGTTGCCTCCATCCGACGCTTGTAGCCGATTGTCAACCACCTTCTGACACTTGTTCGTTTCACATATGGAACGAACCAAATCTGAAACAAACGAACTGGTTGGTTCTAGATCTGGAAGGAACAATTTTGTTCCTTGTTCATGGGAGAACGGGTGGGGGTGGTCGGTAGTTCGCCATGCAACAACAGGTGTCAAACGGTGGTTGAAGGTTGATGGCAAGCGTCGGAAGGAGAAGAGAAAGGAGAAGAAAAGAGGAGGAAGGAGAAGGGAGAAAGGAGTAAGAGAAATGAAATAGCCACATTAGCAGTCCAATCAGCAAAATAAAGTATAAAATTTATATATTCTTGCCACTTAATTTAAAATTACCACGTCATTAGAGTCTAATTAGATGTTAACCGCCACGTCAGTAATCTGTTAAGTCAACTAATGATTAAATAAATTCGGAGATCATTTAGAACAATTTTCTAAACCTTAGGAACTAAAGTATTTATTTTAAAACTTTAAAAACTAAATGACATCAAACTTAATCTTCAAGGAACGAAAGTGTATTTTGCCCTCAAATATTCATAAAAAATTCACCCAAAATATTTTCATATTTATACGAAGAAAAGAAAGAAAAAAGTCATTAAAAAAAAAGAAAAGAAAAGAAAAGAAAAAAGTGATAAGATAATGATAATGGATGTGAGGTGGAAAATTTTTACCATTTTGACACGTGCGTATTTGATGGAAATAATTCACACGTCTGAGCGCCATAAATTCCACTCTGTCCCAGTACCCGCAGCGAACCAGACTCCAGAACTTTCCGGCCATGGCTGCTCCTCCGATCTCGTTTCTCTGTCTTCTCATTCTTCTCGCCACAGCCTCCTCCGCCGTCTCCCAAACGGCGATCAGAATGTATCCGAGGGAACACGTCGTCCGGGCGGAGGGTGACCCGAACTGCGAGAGCTGGAAGTGAATGCGGCCGGATCGTGGAAGTCTGTGCCCCGGCCGTGCGTGGAGTTCGTCCGGGAGTACTTCAACAGCGACCGGTATCTTTCGGACTCTGAGGCGGTGGCAGATTTCTCGTTGAACTTCGCTGAGACGGTGAACGTGGTGGCCGGCGACGGGAAGGACGCTTGGGTTTTCGACGTGGACGAGACGTTGCTTTCGAATTTGCCATATTATAGAGAAAATGGGTTCGGGTAAGTAATTTCTCTTGTATTTTGGTTATAAAATCATCTAAAATAATAATAATAACTGATATAAACGTGTTTTCATGAGTAGTGCCATTTTTGCAAAATATAACAAATCTGTTATTATTTTAATGATGGTCATTATATTAATAATTGAAATAAAACTGCGTAGGTCGGAGCCATACAACGATACTTCTTTCAACGAGTGGGTGAACAAGGGTTTGGCTCCAGCGATACCAGCCAGCTTAAGGCTATACAATAAGCTCAAAAAGCTTGGATTCAAGATTTTTCTTTTAACTGGCCGAAGTGAATCTCAAAGAGCCCCCACCCAACAGAACCTCCATCAAGCTGGCTATTCCAACTGGGACAGCCTCATCTTGAGGTCTTTTTCTTTCTATATTCTTTCTCACCTTAACAATTTCTGACCTCTTTCAACTTTCAAACACAGCACACGCTTCTATTTAAGAATTTGGTTTTCAAGAAATGCCTTTTAAACTTGTCCATTGTTTTCAAAATATGTCTCTTCAATCCCCCTACTTCAACCAGACAAAATAATCGCTTTGGTTTATTTTGTTTGACTTTCATATTCAAGAGACTATTACTTTTTTCAAGAGATCCTAGATTCAAATTCTTTAACTCTCAATTTGTGATATTTTAGAAAAAAAAAAAAAAATCTAAATATAGTGTAAAAAATCCAAATTCACTATCTTAAACGTGCATCTATGACTAAAAACATTAATCCAGCATAAAGTACTACTTGTTTATTCTTTCACGTAGAGTTAGAACTTGATCAACACATTTTAAAAAAACGATTAGGGGATAATTCGAGGATTACAAAACATATTTTAGTGTAAAGTTTCTTGGGATTTTTTTTTTTTCTAGAACTCATTTGACTGAACTTGCAATTCTTGATTCTTGGGAAAAAAAAAATTATGAAATTAGGGGATCTTCTGATGAAGGAAAGAAAGCTATTGCATACAAATCAGAGAAGAGATCTGAATTGGTGAAACAAGGTTACAAAATTCAAGGAAGCTCTGGAGATCAATGGAGTGATTTGGTGGGCTATGCTCTCGCAAAAAGATCCTTCAAGCTCCCAAATCCAATGTATTACATTCCCTAA ATGGAGCCCCTATGGAGGAGTTTTCCGGCCATGGCTTCCCTCAAAACGTCTCTCTCCGCCCTGGTTACCGCCGCTGCCTCCCAACCGATCATCCCGATATCTCCCGGAAAAAGCCATGTACAACCTGATGAAGGAAGCACGTTTTCAAAGCACATTTGGAAATTGGGATGGGCCCATGAGACTGCGACCCCTAAGAAACGATTTTTTCACGAGGGAGCCGGGGAGCGAGCGTCGGCAATAAATGCAGCCCTTGTGGAAGAGTTGCTCCACAGTTTTCTGGCCATGGCTTTCCTCAAATCCTTTCTTTTCATTCTTGCCCTTCTTGCCTTCGCTTCCGCCGCCGCCGCAGCCTCCCGACCGATCATTCGGGAATTTCCCAAACAGAGCCTTCTGCGAGCTGTTGGCGGAGCGGATTCGAAATGCGAGAGCTGGAAATTCTCCTTCGAAGCCAATAACCTTAGAAGCCGGACCGTCCCAAAGGAGTGCATTAAATTTGTTGTGAGCTATATGGTGGACAATGGCAGTAATAGTCGTTATTTCTACGACTTGTCGTACGTCGTTGATAGCGCCAATGAATTCGCAGCGACGGTGAATCTCAAAGGCGACGGAAAGGACGCTTGGATCTTCGATATTGACGACACACTGCTCTCCAATGTGCTTTATTTCTTGGAGAGTGGATACGGGCAAGTTCTAAATTTGATCATCAAAGACGATGTTAAATCAAATCTCGGGCTGTCATATCCTATATTTTACAACTTATTCCTTTACAAAGGGCTTCAAATCGCGGGCTTCAAGGCTATTATATTAACTGAGAGAGATGAATCTACGAGGAGTTCCACCGAAAATATCCTTCTGAGAAATAGCTACACTGATTGGGAGAAACTTATCATGAGGGGACCTGAGGATCAAGGCAAAGAAGTAAGTGTGTTCAAATCAGAAAAGATAGCAGAGTTGGTAGAAGAAGGATATAGATTGCACGGGAATGTCGGAGATCAGTGGAGGGATTTGTTAGGCTCCCCATCGACAACACGTACCTTCAAAATTCCTAATCCTATTACCCGCAGCGAACCAGACTCCAGAACTTTCCGGCCATGGCTGCTCCTCCGATCTCGTTTCTCTGTCTTCTCATTCTTCTCGCCACAGCCTCCTCCGCCGTCTCCCAAACGGCGATCAGAATGTATCCGAGGGAACACGTCGTCCGGGCGGAGGTCTGTGCCCCGGCCGTGCGTGGAGTTCGTCCGGGAGTACTTCAACAGCGACCGGTATCTTTCGGACTCTGAGGCGGTGGCAGATTTCTCGTTGAACTTCGCTGAGACGGTGAACGTGGTGGCCGGCGACGGGAAGGACGCTTGGGTTTTCGACGTGGACGAGACGTTGCTTTCGAATTTGCCATATTATAGAGAAAATGGGTTCGGGTCGGAGCCATACAACGATACTTCTTTCAACGAGTGGGTGAACAAGGGTTTGGCTCCAGCGATACCAGCCAGCTTAAGGCTATACAATAAGCTCAAAAAGCTTGGATTCAAGATTTTTCTTTTAACTGGCCGAAGTGAATCTCAAAGAGCCCCCACCCAACAGAACCTCCATCAAGCTGGCTATTCCAACTGGGACAGCCTCATCTTGAGAACTCATTTGACTGAACTTGCAATTCTTGATTCTTGGGAAAAAAAAAATTATGAAATTAGGGGATCTTCTGATGAAGGAAAGAAAGCTATTGCATACAAATCAGAGAAGAGATCTGAATTGGTGAAACAAGGTTACAAAATTCAAGGAAGCTCTGGAGATCAATGGAGTGATTTGGTGGGCTATGCTCTCGCAAAAAGATCCTTCAAGCTCCCAAATCCAATGTATTACATTCCCTAA ATGGAGCCCCTATGGAGGAGTTTTCCGGCCATGGCTTCCCTCAAAACGTCTCTCTCCGCCCTGGTTACCGCCGCTGCCTCCCAACCGATCATCCCGATATCTCCCGGAAAAAGCCATGTACAACCTGATGAAGGAAGCACGTTTTCAAAGCACATTTGGAAATTGGGATGGGCCCATGAGACTGCGACCCCTAAGAAACGATTTTTTCACGAGGGAGCCGGGGAGCGAGCGTCGGCAATAAATGCAGCCCTTGTGGAAGAGTTGCTCCACAGTTTTCTGGCCATGGCTTTCCTCAAATCCTTTCTTTTCATTCTTGCCCTTCTTGCCTTCGCTTCCGCCGCCGCCGCAGCCTCCCGACCGATCATTCGGGAATTTCCCAAACAGAGCCTTCTGCGAGCTGTTGGCGGAGCGGATTCGAAATGCGAGAGCTGGAAATTCTCCTTCGAAGCCAATAACCTTAGAAGCCGGACCGTCCCAAAGGAGTGCATTAAATTTGTTGTGAGCTATATGGTGGACAATGGCAGTAATAGTCGTTATTTCTACGACTTGTCGTACGTCGTTGATAGCGCCAATGAATTCGCAGCGACGGTGAATCTCAAAGGCGACGGAAAGGACGCTTGGATCTTCGATATTGACGACACACTGCTCTCCAATGTGCTTTATTTCTTGGAGAGTGGATACGGGCAAGTTCTAAATTTGATCATCAAAGACGATGTTAAATCAAATCTCGGGCTGTCATATCCTATATTTTACAACTTATTCCTTTACAAAGGGCTTCAAATCGCGGGCTTCAAGGCTATTATATTAACTGAGAGAGATGAATCTACGAGGAGTTCCACCGAAAATATCCTTCTGAGAAATAGCTACACTGATTGGGAGAAACTTATCATGAGGGGACCTGAGGATCAAGGCAAAGAAGTAAGTGTGTTCAAATCAGAAAAGATAGCAGAGTTGGTAGAAGAAGGATATAGATTGCACGGGAATGTCGGAGATCAGTGGAGGGATTTGTTAGGCTCCCCATCGACAACACGTACCTTCAAAATTCCTAATCCTATTACCCGCAGCGAACCAGACTCCAGAACTTTCCGGCCATGGCTGCTCCTCCGATCTCGTTTCTCTGTCTTCTCATTCTTCTCGCCACAGCCTCCTCCGCCGTCTCCCAAACGGCGATCAGAATGTATCCGAGGGAACACGTCGTCCGGGCGGAGGTCTGTGCCCCGGCCGTGCGTGGAGTTCGTCCGGGAGTACTTCAACAGCGACCGGTATCTTTCGGACTCTGAGGCGGTGGCAGATTTCTCGTTGAACTTCGCTGAGACGGTGAACGTGGTGGCCGGCGACGGGAAGGACGCTTGGGTTTTCGACGTGGACGAGACGTTGCTTTCGAATTTGCCATATTATAGAGAAAATGGGTTCGGGTCGGAGCCATACAACGATACTTCTTTCAACGAGTGGGTGAACAAGGGTTTGGCTCCAGCGATACCAGCCAGCTTAAGGCTATACAATAAGCTCAAAAAGCTTGGATTCAAGATTTTTCTTTTAACTGGCCGAAGTGAATCTCAAAGAGCCCCCACCCAACAGAACCTCCATCAAGCTGGCTATTCCAACTGGGACAGCCTCATCTTGAGAACTCATTTGACTGAACTTGCAATTCTTGATTCTTGGGAAAAAAAAAATTATGAAATTAGGGGATCTTCTGATGAAGGAAAGAAAGCTATTGCATACAAATCAGAGAAGAGATCTGAATTGGTGAAACAAGGTTACAAAATTCAAGGAAGCTCTGGAGATCAATGGAGTGATTTGGTGGGCTATGCTCTCGCAAAAAGATCCTTCAAGCTCCCAAATCCAATGTATTACATTCCCTAA MEPLWRSFPAMASLKTSLSALVTAAASQPIIPISPGKSHVQPDEGSTFSKHIWKLGWAHETATPKKRFFHEGAGERASAINAALVEELLHSFLAMAFLKSFLFILALLAFASAAAAASRPIIREFPKQSLLRAVGGADSKCESWKFSFEANNLRSRTVPKECIKFVVSYMVDNGSNSRYFYDLSYVVDSANEFAATVNLKGDGKDAWIFDIDDTLLSNVLYFLESGYGQVLNLIIKDDVKSNLGLSYPIFYNLFLYKGLQIAGFKAIILTERDESTRSSTENILLRNSYTDWEKLIMRGPEDQGKEVSVFKSEKIAELVEEGYRLHGNVGDQWRDLLGSPSTTRTFKIPNPITRSEPDSRTFRPWLLLRSRFSVFSFFSPQPPPPSPKRRSECIRGNTSSGRRSVPRPCVEFVREYFNSDRYLSDSEAVADFSLNFAETVNVVAGDGKDAWVFDVDETLLSNLPYYRENGFGSEPYNDTSFNEWVNKGLAPAIPASLRLYNKLKKLGFKIFLLTGRSESQRAPTQQNLHQAGYSNWDSLILRTHLTELAILDSWEKKNYEIRGSSDEGKKAIAYKSEKRSELVKQGYKIQGSSGDQWSDLVGYALAKRSFKLPNPMYYIP Homology
BLAST of Sgr022317 vs. NCBI nr
Match: CAD5329430.1 (unnamed protein product [Arabidopsis thaliana]) HSP 1 Score: 412.5 bits (1059), Expect = 6.3e-111 Identity = 235/538 (43.68%), Postives = 316/538 (58.74%), Query Frame = 0
BLAST of Sgr022317 vs. NCBI nr
Match: CAE6170045.1 (unnamed protein product [Arabidopsis arenosa]) HSP 1 Score: 403.3 bits (1035), Expect = 3.8e-108 Identity = 239/557 (42.91%), Postives = 325/557 (58.35%), Query Frame = 0
BLAST of Sgr022317 vs. NCBI nr
Match: KAF3788723.1 (Acid phosphatase 1 [Nymphaea thermarum]) HSP 1 Score: 392.9 bits (1008), Expect = 5.2e-105 Identity = 230/530 (43.40%), Postives = 305/530 (57.55%), Query Frame = 0
BLAST of Sgr022317 vs. NCBI nr
Match: KAF3603479.1 (hypothetical protein F2Q69_00033971 [Brassica cretica]) HSP 1 Score: 380.6 bits (976), Expect = 2.6e-101 Identity = 220/533 (41.28%), Postives = 313/533 (58.72%), Query Frame = 0
BLAST of Sgr022317 vs. NCBI nr
Match: KAG5409474.1 (hypothetical protein IGI04_005793 [Brassica rapa subsp. trilocularis]) HSP 1 Score: 364.8 bits (935), Expect = 1.5e-96 Identity = 237/629 (37.68%), Postives = 341/629 (54.21%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy Swiss-Prot
Match: P27061 (Acid phosphatase 1 OS=Solanum lycopersicum OX=4081 GN=APS1 PE=2 SV=1) HSP 1 Score: 215.7 bits (548), Expect = 1.5e-54 Identity = 104/226 (46.02%), Postives = 151/226 (66.81%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy Swiss-Prot
Match: P15490 (Stem 28 kDa glycoprotein OS=Glycine max OX=3847 GN=VSPA PE=2 SV=1) HSP 1 Score: 182.6 bits (462), Expect = 1.4e-44 Identity = 93/220 (42.27%), Postives = 135/220 (61.36%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy Swiss-Prot
Match: P10743 (Stem 31 kDa glycoprotein OS=Glycine max OX=3847 GN=VSPB PE=2 SV=1) HSP 1 Score: 175.6 bits (444), Expect = 1.7e-42 Identity = 92/219 (42.01%), Postives = 133/219 (60.73%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy Swiss-Prot
Match: P10742 (Stem 31 kDa glycoprotein (Fragment) OS=Glycine max OX=3847 GN=VSP25 PE=2 SV=2) HSP 1 Score: 175.3 bits (443), Expect = 2.2e-42 Identity = 90/216 (41.67%), Postives = 131/216 (60.65%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy Swiss-Prot
Match: O49195 (Vegetative storage protein 1 OS=Arabidopsis thaliana OX=3702 GN=VSP1 PE=1 SV=2) HSP 1 Score: 129.0 bits (323), Expect = 1.8e-28 Identity = 74/219 (33.79%), Postives = 118/219 (53.88%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy TrEMBL
Match: A0A7G2F1H0 ((thale cress) hypothetical protein OS=Arabidopsis thaliana OX=3702 GN=AT9943_LOCUS17021 PE=4 SV=1) HSP 1 Score: 412.5 bits (1059), Expect = 3.0e-111 Identity = 235/538 (43.68%), Postives = 316/538 (58.74%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy TrEMBL
Match: A0A6J1DPG8 (acid phosphatase 1-like OS=Momordica charantia OX=3673 GN=LOC111021888 PE=4 SV=1) HSP 1 Score: 327.8 bits (839), Expect = 9.9e-86 Identity = 164/236 (69.49%), Postives = 185/236 (78.39%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy TrEMBL
Match: A0A6J1KB36 (acid phosphatase 1-like OS=Cucurbita maxima OX=3661 GN=LOC111493858 PE=4 SV=1) HSP 1 Score: 312.8 bits (800), Expect = 3.3e-81 Identity = 153/223 (68.61%), Postives = 175/223 (78.48%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy TrEMBL
Match: A0A7J6EUM8 (Uncharacterized protein OS=Cannabis sativa OX=3483 GN=F8388_023985 PE=4 SV=1) HSP 1 Score: 312.8 bits (800), Expect = 3.3e-81 Identity = 198/540 (36.67%), Postives = 289/540 (53.52%), Query Frame = 0
BLAST of Sgr022317 vs. ExPASy TrEMBL
Match: A0A6J1KFL8 (acid phosphatase 1-like OS=Cucurbita maxima OX=3661 GN=LOC111493856 PE=4 SV=1) HSP 1 Score: 310.1 bits (793), Expect = 2.1e-80 Identity = 155/224 (69.20%), Postives = 171/224 (76.34%), Query Frame = 0
BLAST of Sgr022317 vs. TAIR 10
Match: AT4G29260.1 (HAD superfamily, subfamily IIIB acid phosphatase ) HSP 1 Score: 253.4 bits (646), Expect = 4.6e-67 Identity = 119/216 (55.09%), Postives = 156/216 (72.22%), Query Frame = 0
BLAST of Sgr022317 vs. TAIR 10
Match: AT4G29270.1 (HAD superfamily, subfamily IIIB acid phosphatase ) HSP 1 Score: 232.3 bits (591), Expect = 1.1e-60 Identity = 110/215 (51.16%), Postives = 147/215 (68.37%), Query Frame = 0
BLAST of Sgr022317 vs. TAIR 10
Match: AT5G51260.1 (HAD superfamily, subfamily IIIB acid phosphatase ) HSP 1 Score: 224.2 bits (570), Expect = 3.0e-58 Identity = 107/218 (49.08%), Postives = 152/218 (69.72%), Query Frame = 0
BLAST of Sgr022317 vs. TAIR 10
Match: AT4G25150.1 (HAD superfamily, subfamily IIIB acid phosphatase ) HSP 1 Score: 221.1 bits (562), Expect = 2.5e-57 Identity = 109/218 (50.00%), Postives = 148/218 (67.89%), Query Frame = 0
BLAST of Sgr022317 vs. TAIR 10
Match: AT5G44020.1 (HAD superfamily, subfamily IIIB acid phosphatase ) HSP 1 Score: 172.2 bits (435), Expect = 1.3e-42 Identity = 87/218 (39.91%), Postives = 126/218 (57.80%), 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:
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