Sgr030118 (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.ATGAGCGTAGTGGGCGCTGAACAGATAAGATTCCGAAAATGGCAGCGGCTCGGCTTCCATACCATATGCCAACCAAAAGGAATAAGGGTTTTCGCTATAACGTCACTTCTCTCTGCCCATATATTTTTGGAATCCCAGGAATCGGTTCAAAGATTTCAGATACAAAGTCTTCCCGAGTTATCTGAAAGTCCCCTTTTGTTTCAGTTTCCGATTGATTAAACTAACTGTTCTTGCCTTCTTCGACTTTGATTTTGCAAAGAGTAGCATGGATCTGATCTGATTAGAATCCCCATTTGAGTTTTACTTCATATCGCCGCTGATTCAGCATTGGAACTCCCGGGTGAAATCCGCAGCTTGTGCTTTCTTTTTCGGGTTTGCTCTTGCATTTCAAGCTATTTTCCATTAATATTTTAAGTGTTGGATTCCTTTCTAACTATGCGAGTAGCACAAGACGACCACCATGTGTTTGTAAATTGTCCCGATGAAATCCTGATCGAGATCCTTTCATATTTACCTGTGAAATCGCTTCTGCGATTCAGATGTGTAAGCAAAGCATGGAACAAATTAGTTCAGACACCGTTGTTTGTTATCGCGCATTTGGAAAAGAGAATCCCAAATTCTCTGCTCATAATCAATAACTCCAACACAGACCAGATGGGTTAGTCTGCATTTCATCTGCAAGTCTGTTGGTTGTGGATCCCGTTTATATATGGAACCCATCTGTCAGAAAAACTAGGAAACTACCCAGCGGCTTGATTCCCAAACAGGACCACTGTTGGCCTCTAAACTACCTTGGGTTTGGCTTCCACCAAGCAACGAATTATCACATAGTGGTGAGAATTGTGAGGTTTGAGCAATGGAGTTGCTGCTATCAAGTGGAAATTTATAGTCTTAAAGCTGACTGTTGGAGGAGAGTTCCTGCTGCACCCCCAATTCCCTCTGTACTTAACTGCAGATTGTTGCCCAAATCCATCTGCTTCAATGGACTTGCCTATTGGATTGTGAAGCACAAAAATGGTGGAATTCCCAATTCCATTCTTTCTTTTGACATGGCCACTGAGGAGTTTCATAGGCTAATGTTACCTGACTGTTTGGTTTACACAGACACTCCACCATTATCTCTGGGGGTGGTCAAGGAATCACTTTCCCTTTTCCATTGCAGGCCCGATGGTGGGAAGCAACTGTATGACACATGGGCTTTGAAAATGTGTTCTTGGTGAGATTAAACACCATTGTTCTGCCGCTGCATGGGAAAATAACAAGACCTTGCGGCCTGTTAAATTAGAAAATTTTCCTTGTAAGGCAGATTGAAGGGCTGGAAAACTCTAGTCTGGCACTGTTTGACCCTGAGCTGGAACACATTGAGGATGTTAGGATTGAATTGGGGTCTCTTTGGGTTTGTGCAGATTCTTATGCTGAGTCTTCTTCTACTTTGACAAGTTCTGCAACTTAAGGTACTATTCGATAACAATTCAATTTTTAGACTTCTATTTTTAAAAATTACCTTCTTTACTGAAAAAAAAAATTTATAATCACATCATGGATAAATAAGATCTAATAGAATAAGAATCTTTATGTGTAATTCTTGTGCCACATTGATCTACTCTTCGAGAAATCTCATAAGAATCTTTAAATGGTTTGAATGATATCTTTTATGCCATAGACTTCCAATTTACTTTCTTAATATGTTGCTATTACAATAACCTTGAACTCAAGGCAATGGACCACAAAATAATTATTACATTCAATGACACAGAGAATAACACCAATGTACAGCCATGAGGTTGTTAGGTTCCTCCTAAGAGGAGCCACAACCAATAGTGTAAAGCTATAACATCGTTGAAAAATTAATTGGGTAAAAGGATAGCTAAAACATTATTGAAAAATTAATTATGTGGGTGATTGAGAAATTGAATGCACTCTTAAAGTTAGTTATTACCAGAAGCATGTTTGTCCCATTTTAGATACTAAAATTCTATGAGTTTTTTGACAACTAAATGTCGTAGGATTAGATGGTTGTCTTGTGAAATTAATCGAAATGTGTGTAAGCAAAGCTAACCCAAATATTTATGGATATTATAAAAAAAAAATCTAGTCCCTTGCCAATTTAGAAGACAAAATTATGGCAATTCTAGAAATAAAAAGGCAAGATTTTTTACCTTTTAATTTGTCATATTTTGACTTTCTAAATTATACTAAAATATGAAGAGTGAGAATTTATATCTTAAGTGAATTTTTCTGTTAATTTTTTTCTTTAGAATATCACATTGTAAATAAGGGAGGATTCAAACCTAACACTCATAAAAAGAGTTATAGACATATAACCACTTGAGCTATATTTAAAACAACAATTTAACTTAATTTTTTTCTAATTTAACTATCATGTTTTAACTTAAATTTCTCTATAAAGATGCTTGTAACCATCAAATATCATCACGTTAATCTTTTGTGATAAAAAATAAAATAATTCCACCCATTTTGTACTTCAAGAAATTAAACATTGGGCCAATGTTTATGATAACATTTCATATAGAGAAATGAAGAGGCACATAGCCATGTGCCCCTGAATTCTGACATTCACCGTTTACAATGAGTTCTTTGTTTTTTGTTTTAAATGATTACCATAACGTTTGAGACAATATTAGGTTGGTGTATTATTAATAAATTATAAATTGACTTCAGATTATATCTCGTTGTTAGCATATTCATCAAATAAATTTTGACTGAATTACCAATATATGATATAATTTTCATTAAATTAATCTATAAAATCTACCTACCTCAATTCAACTCTTCTGAAAATTATAGAAATGGTACACCTTAAAATTTTTTTCAAGGAAATTTCAAATGCCTTAGTAAGAGAAAAAAAATCAAATGAATAAAGATTTGTGAATGGAGAATATTTAGGTTATACATATGGGAAAAGAATTAAAAGTGGTTTGGTGACATTTTGAAAGTATCTTAAAAGTATACAACTTAGACAAACATGGGATTGGAGACACAAATTTGAAAAAGAGGGCTTTTTAGAAGAGGGAACATGCCCTATTGAGCTATTATTGTTAGACATAGAAAGCCCTTCATAAATGGATGGATCTTTAAACCAATTAGTTCCCATATTTTATACTTACTTATTGGATTGGAAATTCTTGATAGAAAGTTCAAAGCATTTCTCTTGACACAACCTAGTTGAGAGAAAAGAGTTGGAGATAATCTTTATTCTTCAATTGTTATGGCAAGAGCGAGATAAAGATGGTAAATAAAGAAAGATAAATCACAAGATCACATAGATTTCATGTTAAGAGAAAACTTTTTCAAGAAAAGTCATATGCAAAGACAAAGAAATCCACTATAATAAAAATCGAAGTAGAAGTCTCTAAATGATGGCTGTCATAACAAACTAAAATCAATCTCGTTACTTTTATACCATATAGTTCAATTTCCTTACTTTAGATGTTGTATAATAGACTTTCGAACTAAAGCATAAAAAAATCTAATCACTCAATTTACATTAATAATAAAAACAAAGTGGGTAATTTACTTTTAATTCAATATATTTTGGAGGCAAGATCTACCTAATAATTATATCAAATGAAAATGACATTTGAATTGATGTGAGAGGGTCAAAATACCAATATTGATTGGTTTAGTTATCAAAATAAATTTTGACTGACATTCGTTTGGCCAAAACTACTTTTGTGGCTATGGGAACCAAAACAAACAACCTCACTTATTGCTTATTAATGCCAACCTCTTTTTAGGCTTCACATATTAATGTTGGAAAAATAAATTTGGGAGGTGGGTGCTTTTATTTTTTTGTTTCTTCTTCACTAGTGTTATCAACTCCCTCTTTTTAATTAATTTTATTTCATTTATTTAAATCTTTTCCACACTTTTAATTATCTACTAAAATGCTATTTTTTAAAAAAATTAATATAATGAGTCAAATACATTAGGTTATATTAATTACGTCTCGCTCTCTTTTTAAATAGTTAAAATCATAAATAATGACCACAATCAAATTTAAGATCGGCAGTTTTAGGTCTAGACACCTTATCTACTAGATTTGTGGATTTAGGAGTGGATTTATATTGAAGAGTGACACTTTATTTTTGAAAATTTTAAGAAGTATGTTTTAAAATTTTAGGTTTAGGTTTTCTTTTCTTAATCAGCTCTCTTTCATTTAGTTTTAAAATTGGGTTTATAAATCTTTGTCATCTTTATAATAATATTTTTTTGATTTTTCAAAGAAGAAAAAGAAAAAAAAAATCCTTCAAATCGCACTGCCTACCCAAATAAGGTTTTAATGAAAAATATTTCTAACGTGCAAGATTAGCTCAATTAGACCTTAAATAAACTTTTGCAATTTGACATTTGGGACCATTAGATGAGGGAAATAGACTAGTCTTCTAGCCATCTGTATTTCCTAAAAATATTAATATACAAACTAACAAAATTCTAGATGGTTGTCTTGATGATGTCTTCGATGTTCTTAACTGAAAAACAAATAATAAAAATAAACACATATTTTTTTTTCCAAGTAAATTTAACCAATGCAAACAAATGGGTGGCTTCCATTTATACGTATGCCAAATTAGGAAGTAAAAAGCTTGTGGCTAATTAAAGTGGCAGCCATGACATTTTTCTTTTGCCAAAACCCAAATAAATACTTCTCAACTAAAACCAAACATAGCCGCCACCAACCAGTTGATTGGTCAATTTTTGTCAAAGGTATTTGAAATTTTAGACCTCCCTCTTCCATCTTTGCCCTTCAGAGCCAGAGCTCTCCCCCACCAAATTAAAGTCCACATCCAACTACAAATGTGGCTTTAAGACGAGCCAATTTTAATGAAAATTTAATATCTCTAAAGGATTGGATTATTTCGGTCAAATTCAATGCTTATTTTTAAAGGAAAATGCATTCGAAATCCAAATATGAGCGATATAAATATAGTTTAAAAGTCATAGATTCGAATCTTCACATCTACATTTGTGATGTGAGAGGAGAAAGAAAGGTGGGACTAGGTGTGTGTAAAGAGAAGGATAAATATGCAGATTGGTAGGAGTGCTTGAACAGTCGTGAGTTTGTGAAGTCAAACCTAAAATTTGCAAACGCTCATTTCAAACATGGATTAGGTTTAGGATGTCAAATCTTTCTTAAGCCTAATCCACGTTCCAAATAGCCTTTAAAGAAGCGGTGAAAATAATAAGGAGAAAGCACATGTAATTTATCTACCTCCCTCTAAAGCCAAAGCCAGAGGGGTTTTCAACTTTCAAGGTACATTAATAGGTCACAACTGCACCTATGAATGCCATAAATGCACTGCCAACCATATTACTCACTTTGTTTTTTTATAAACCCTCTGGATCTTAGACCTTCCCTCCACACCCTCAAGCAATCTCTCTTTTTCTATCTTCAACCTAGTTTTTGCTGCTTTGCTTTTTGTTCAACATCCATGGCAGGTGATCTCCATGAAGCTGTGAAGAAAGAGGAGACTGGTTTGAAGGTGAAAATCACAGGCAAAAGTCATGTCAAACCCAACAAGAAACTGGGCAGAAAAGAGTGCCAGTTGGTCACATTTGACCTCCCCTACCTTGCCTTCTACTACAACCAAAAACTCATCCTCTACGCCGACAATGGCGGCGAGGTTCGGTTTCCAGAGATGGTCGAGAAGCTGAAGGATGGCCTCAGGACGGTTCTTGAGCCGTTTCATCAGCTTGCTGGGAGGCTGGGAAAGGATGAGGATGGCATTTTTAGAATCGAATATGATGATGATATGGACGGCGTCGAGGTGGCCGAGGCGGTGGCTGACGACGTCGGAATAGCTGATTTGGCGGCGGAGGAAGGCACAGCCATCCTCAAGGAGCTGATTCCGTATAATGGGATCTTGAACTTGGAAGGTCTCCAGAGGCCATTGCTGGCTGTTCAGGTAAGAACCCATACAAATTCACTTCCATGCAGTAAAATGCTTTTTAGTTAATAGTAAAAAATCAATTTTTACCCTTTAATTTGACAAGTGTATTAATTTTTAATTAGAACTTTAGATTTCGTCAATTTAGGCCTTATACTTAGATAAATGTTATTATTTTTACTTTAAACTTAAATAAATATTACAATTTTAACTTTTGATATACTTTGGTTTGTAGAATCGTTAGAAAATTGTTCAATGTATTACAAAACATATGTAAAATACGAAATTAATAGGACTTTAAGTAAAAACAACACTAGAGCTAAATTTTTGTTTAAATTTGTGAATTTTGGGAGATGTATTCAATGGTCAACCTTGTGTAGCTTAATTTTGTATAATGTTTGATTTTTGTTAAAATTAGGAAGTTTTAGGAAATTTTTACCTTTGTTTTTTTTGTTAAAATTAATGGTGAAGTTAGCAAAAATTAAATAAAAGATTAGAATTGCAACATTTGTCTAAATATAAGGTTCAATTAAAAGGGTGAAAGATGATTCACTTTGCCAACTTCATGGGTAAAAATTGATTTTTTTTTCCTTCTTAATTAATTAAATTTTCAATATCATTCTTGTTCTGAGGGACCCATGGTTGGGCCTAAAGCCCAATATGGCCTATCACCTAGGTGGGCCTGGGGCAAATGGTCCAAGCCCAGAACAAAAGAGTTGTAATTGGGCCATGGATCAGTCTCGGACGGCCCACTCACTCCTTATTCTGTTTGAGTCTAGCTAACCAAGCTTAAAGACGGAGTCGCGATGGGGTGCGCATTCAATCACGCGGTTCTGGATGGTACTGCCACGTGGCACTTCATGAGCTCATGGGCCGAGATCTGCCGTGGGGCCCAGGACATTTCGGTCCCTCCTTTTCTGGAGCGCACCAAAGCGCGTAACACGCGAGTGAAGCTCGACATCTCCCTTCCGCCGGACCCAGTGGCCGCTGCCGCCGCCGCCAACGGCGACGCAAGGGCGGCGCCGGCTCTGAGGGAGAAGGTCTTCAAATTTACCGAAACTGCCATCGACAAGATCAAGTCAAAAGTCAACTCAAACACTCCATCCGACGGCTCAAATCCATTCTCCACCTTCCAATCGCTCTCCGTCCACATCTGGCGCCACGTCACCCAAGCCCGGAACCTCAAACCAGAAGACATTACCGTCTTCACCGTCTTCGCCGACTGTCGCAAACGCGTGGACCCGCCGATGCCGGAGAGCTACTTCGGGAACCTAATCCAAGCGGTGTTCACCGGCACGGCCGCGGGCTTGCTACTAATGCATCCGCCGGAATTCGGCGCGGGCGTGATCCAAAGAGCGATCGTGTCACACGACGCGGCGGCGATAGAGGAGCGGAACAGAGAGTGGGAGAGCGCGCCGAAGATCTTCGAGTTCAAGGACGCCGGAATGAACTGCGTGGCGGTGGGGAGTTCGCCGAGGTTCAAGGTATACGAGGTGGATTTCGGGTGGGGGAAGCCGGAGTGCGTGAGGAGCGGGTGCAACAACAGGTTCGACGGGATGATGTATCTGTACCAAGGGAAGAGCGGAGGGAGGAGCATTGATGTGGAGATAAGCTTGGAGGAAGAAGCCATGGCCAGACTGGAGCAGGACAAGGCGTTTCTTATGGACCTTTGA ATGAGCGTAGTGGGCGCTGAACAGATAAGATTCCGAAAATGGCAGCGGCTCGGCTTCCATACCATATGCCAACCAAAAGGAATAAGGGTTTTCGCTATAACGTCACTTCTCTCTGCCCATATATTTTTGGAATCCCAGGAATCGGTTCAAAGATTTCAGATACAAAGTCTTCCCGAGTTATCTGAAAAATCCCCATTTGAGTTTTACTTCATATCGCCGCTGATTCAGCATTGGAACTCCCGGGTGAAATCCGCAGCTTGTGCTTTCTTTTTCGGACCAGATGGGTTAGTCTGCATTTCATCTGCAAGTCTGTTGGTTGTGGATCCCGTTTATATATGGAACCCATCTGTCAGAAAAACTAGGAAACTACCCAGCGGCTTGATTCCCAAACAGGACCACTGTTGGCCTCTAAACTACCTTGGGTTTGGCTTCCACCAAGCAACGAATTATCACATAGTGGTGAGAATTGTGAGGTTTGAGCAATGGAGTTGCTGCTATCAAGTGGAAATTTATAGTCTTAAAGCTGACTGTTGGAGGAGAGTTCCTGCTGCACCCCCAATTCCCTCTGTACTTAACTGCAGATTGTTGCCCAAATCCATCTGCTTCAATGGACTTGCCTATTGGATTGTGAAGCACAAAAATGGTGGAATTCCCAATTCCATTCTTTCTTTTGACATGGCCACTGAGGAGTTTCATAGGCTAATGTTACCTGACTGTTTGGTTTACACAGACACTCCACCATTATCTCTGGGGGTGGTCAAGGAATCACTTTCCCTTTTCCATTGCAGGCCCGATGGTGGGAAGCAACTGTATGACACATGGGCTTTGAAAATGTGTTCTTGGCAGATTGAAGGGCTGGAAAACTCTAGTCTGGCACTGTTTGACCCTGAGCTGGAACACATTGAGGATGTTAGGATTGAATTGGGGTCTCTTTGGGTTTGTGCAGATTCTTATGCTGAGTCTTCTTCTACTTTGACAAGTGATCTCCATGAAGCTGTGAAGAAAGAGGAGACTGGTTTGAAGGTGAAAATCACAGGCAAAAGTCATGTCAAACCCAACAAGAAACTGGGCAGAAAAGAGTGCCAGTTGGTCACATTTGACCTCCCCTACCTTGCCTTCTACTACAACCAAAAACTCATCCTCTACGCCGACAATGGCGGCGAGGTTCGGTTTCCAGAGATGGTCGAGAAGCTGAAGGATGGCCTCAGGACGGTTCTTGAGCCGTTTCATCAGCTTGCTGGGAGGCTGGGAAAGGATGAGGATGGCATTTTTAGAATCGAATATGATGATGATATGGACGGCGTCGAGGTGGCCGAGGCGGTGGCTGACGACGTCGGAATAGCTGATTTGGCGGCGGAGGAAGGCACAGCCATCCTCAAGGAGCTGATTCCGTATAATGGGATCTTGAACTTGGAAGGTCTCCAGAGGCCATTGCTGGCTGTTCAGCTAACCAAGCTTAAAGACGGAGTCGCGATGGGGTGCGCATTCAATCACGCGGTTCTGGATGGTACTGCCACGTGGCACTTCATGAGCTCATGGGCCGAGATCTGCCGTGGGGCCCAGGACATTTCGGTCCCTCCTTTTCTGGAGCGCACCAAAGCGCGTAACACGCGAGTGAAGCTCGACATCTCCCTTCCGCCGGACCCAGTGGCCGCTGCCGCCGCCGCCAACGGCGACGCAAGGGCGGCGCCGGCTCTGAGGGAGAAGGTCTTCAAATTTACCGAAACTGCCATCGACAAGATCAAGTCAAAAGTCAACTCAAACACTCCATCCGACGGCTCAAATCCATTCTCCACCTTCCAATCGCTCTCCGTCCACATCTGGCGCCACGTCACCCAAGCCCGGAACCTCAAACCAGAAGACATTACCGTCTTCACCGTCTTCGCCGACTGTCGCAAACGCGTGGACCCGCCGATGCCGGAGAGCTACTTCGGGAACCTAATCCAAGCGGTGTTCACCGGCACGGCCGCGGGCTTGCTACTAATGCATCCGCCGGAATTCGGCGCGGGCGTGATCCAAAGAGCGATCGTGTCACACGACGCGGCGGCGATAGAGGAGCGGAACAGAGAGTGGGAGAGCGCGCCGAAGATCTTCGAGTTCAAGGACGCCGGAATGAACTGCGTGGCGGTGGGGAGTTCGCCGAGGTTCAAGGTATACGAGGTGGATTTCGGGTGGGGGAAGCCGGAGTGCGTGAGGAGCGGGTGCAACAACAGGTTCGACGGGATGATGTATCTGTACCAAGGGAAGAGCGGAGGGAGGAGCATTGATGTGGAGATAAGCTTGGAGGAAGAAGCCATGGCCAGACTGGAGCAGGACAAGGCGTTTCTTATGGACCTTTGA ATGAGCGTAGTGGGCGCTGAACAGATAAGATTCCGAAAATGGCAGCGGCTCGGCTTCCATACCATATGCCAACCAAAAGGAATAAGGGTTTTCGCTATAACGTCACTTCTCTCTGCCCATATATTTTTGGAATCCCAGGAATCGGTTCAAAGATTTCAGATACAAAGTCTTCCCGAGTTATCTGAAAAATCCCCATTTGAGTTTTACTTCATATCGCCGCTGATTCAGCATTGGAACTCCCGGGTGAAATCCGCAGCTTGTGCTTTCTTTTTCGGACCAGATGGGTTAGTCTGCATTTCATCTGCAAGTCTGTTGGTTGTGGATCCCGTTTATATATGGAACCCATCTGTCAGAAAAACTAGGAAACTACCCAGCGGCTTGATTCCCAAACAGGACCACTGTTGGCCTCTAAACTACCTTGGGTTTGGCTTCCACCAAGCAACGAATTATCACATAGTGGTGAGAATTGTGAGGTTTGAGCAATGGAGTTGCTGCTATCAAGTGGAAATTTATAGTCTTAAAGCTGACTGTTGGAGGAGAGTTCCTGCTGCACCCCCAATTCCCTCTGTACTTAACTGCAGATTGTTGCCCAAATCCATCTGCTTCAATGGACTTGCCTATTGGATTGTGAAGCACAAAAATGGTGGAATTCCCAATTCCATTCTTTCTTTTGACATGGCCACTGAGGAGTTTCATAGGCTAATGTTACCTGACTGTTTGGTTTACACAGACACTCCACCATTATCTCTGGGGGTGGTCAAGGAATCACTTTCCCTTTTCCATTGCAGGCCCGATGGTGGGAAGCAACTGTATGACACATGGGCTTTGAAAATGTGTTCTTGGCAGATTGAAGGGCTGGAAAACTCTAGTCTGGCACTGTTTGACCCTGAGCTGGAACACATTGAGGATGTTAGGATTGAATTGGGGTCTCTTTGGGTTTGTGCAGATTCTTATGCTGAGTCTTCTTCTACTTTGACAAGTGATCTCCATGAAGCTGTGAAGAAAGAGGAGACTGGTTTGAAGGTGAAAATCACAGGCAAAAGTCATGTCAAACCCAACAAGAAACTGGGCAGAAAAGAGTGCCAGTTGGTCACATTTGACCTCCCCTACCTTGCCTTCTACTACAACCAAAAACTCATCCTCTACGCCGACAATGGCGGCGAGGTTCGGTTTCCAGAGATGGTCGAGAAGCTGAAGGATGGCCTCAGGACGGTTCTTGAGCCGTTTCATCAGCTTGCTGGGAGGCTGGGAAAGGATGAGGATGGCATTTTTAGAATCGAATATGATGATGATATGGACGGCGTCGAGGTGGCCGAGGCGGTGGCTGACGACGTCGGAATAGCTGATTTGGCGGCGGAGGAAGGCACAGCCATCCTCAAGGAGCTGATTCCGTATAATGGGATCTTGAACTTGGAAGGTCTCCAGAGGCCATTGCTGGCTGTTCAGCTAACCAAGCTTAAAGACGGAGTCGCGATGGGGTGCGCATTCAATCACGCGGTTCTGGATGGTACTGCCACGTGGCACTTCATGAGCTCATGGGCCGAGATCTGCCGTGGGGCCCAGGACATTTCGGTCCCTCCTTTTCTGGAGCGCACCAAAGCGCGTAACACGCGAGTGAAGCTCGACATCTCCCTTCCGCCGGACCCAGTGGCCGCTGCCGCCGCCGCCAACGGCGACGCAAGGGCGGCGCCGGCTCTGAGGGAGAAGGTCTTCAAATTTACCGAAACTGCCATCGACAAGATCAAGTCAAAAGTCAACTCAAACACTCCATCCGACGGCTCAAATCCATTCTCCACCTTCCAATCGCTCTCCGTCCACATCTGGCGCCACGTCACCCAAGCCCGGAACCTCAAACCAGAAGACATTACCGTCTTCACCGTCTTCGCCGACTGTCGCAAACGCGTGGACCCGCCGATGCCGGAGAGCTACTTCGGGAACCTAATCCAAGCGGTGTTCACCGGCACGGCCGCGGGCTTGCTACTAATGCATCCGCCGGAATTCGGCGCGGGCGTGATCCAAAGAGCGATCGTGTCACACGACGCGGCGGCGATAGAGGAGCGGAACAGAGAGTGGGAGAGCGCGCCGAAGATCTTCGAGTTCAAGGACGCCGGAATGAACTGCGTGGCGGTGGGGAGTTCGCCGAGGTTCAAGGTATACGAGGTGGATTTCGGGTGGGGGAAGCCGGAGTGCGTGAGGAGCGGGTGCAACAACAGGTTCGACGGGATGATGTATCTGTACCAAGGGAAGAGCGGAGGGAGGAGCATTGATGTGGAGATAAGCTTGGAGGAAGAAGCCATGGCCAGACTGGAGCAGGACAAGGCGTTTCTTATGGACCTTTGA MSVVGAEQIRFRKWQRLGFHTICQPKGIRVFAITSLLSAHIFLESQESVQRFQIQSLPELSEKSPFEFYFISPLIQHWNSRVKSAACAFFFGPDGLVCISSASLLVVDPVYIWNPSVRKTRKLPSGLIPKQDHCWPLNYLGFGFHQATNYHIVVRIVRFEQWSCCYQVEIYSLKADCWRRVPAAPPIPSVLNCRLLPKSICFNGLAYWIVKHKNGGIPNSILSFDMATEEFHRLMLPDCLVYTDTPPLSLGVVKESLSLFHCRPDGGKQLYDTWALKMCSWQIEGLENSSLALFDPELEHIEDVRIELGSLWVCADSYAESSSTLTSDLHEAVKKEETGLKVKITGKSHVKPNKKLGRKECQLVTFDLPYLAFYYNQKLILYADNGGEVRFPEMVEKLKDGLRTVLEPFHQLAGRLGKDEDGIFRIEYDDDMDGVEVAEAVADDVGIADLAAEEGTAILKELIPYNGILNLEGLQRPLLAVQLTKLKDGVAMGCAFNHAVLDGTATWHFMSSWAEICRGAQDISVPPFLERTKARNTRVKLDISLPPDPVAAAAAANGDARAAPALREKVFKFTETAIDKIKSKVNSNTPSDGSNPFSTFQSLSVHIWRHVTQARNLKPEDITVFTVFADCRKRVDPPMPESYFGNLIQAVFTGTAAGLLLMHPPEFGAGVIQRAIVSHDAAAIEERNREWESAPKIFEFKDAGMNCVAVGSSPRFKVYEVDFGWGKPECVRSGCNNRFDGMMYLYQGKSGGRSIDVEISLEEEAMARLEQDKAFLMDL Homology
BLAST of Sgr030118 vs. NCBI nr
Match: XP_038891735.1 (BAHD acyltransferase DCR [Benincasa hispida]) HSP 1 Score: 825.5 bits (2131), Expect = 3.9e-235 Identity = 406/456 (89.04%), Postives = 430/456 (94.30%), Query Frame = 0
BLAST of Sgr030118 vs. NCBI nr
Match: KAG6576712.1 (BAHD acyltransferase DCR, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 822.8 bits (2124), Expect = 2.5e-234 Identity = 410/459 (89.32%), Postives = 431/459 (93.90%), Query Frame = 0
BLAST of Sgr030118 vs. NCBI nr
Match: XP_022922914.1 (BAHD acyltransferase DCR [Cucurbita moschata]) HSP 1 Score: 820.5 bits (2118), Expect = 1.3e-233 Identity = 405/456 (88.82%), Postives = 428/456 (93.86%), Query Frame = 0
BLAST of Sgr030118 vs. NCBI nr
Match: XP_022984977.1 (BAHD acyltransferase DCR isoform X1 [Cucurbita maxima]) HSP 1 Score: 818.1 bits (2112), Expect = 6.2e-233 Identity = 408/459 (88.89%), Postives = 430/459 (93.68%), Query Frame = 0
BLAST of Sgr030118 vs. NCBI nr
Match: XP_023552412.1 (BAHD acyltransferase DCR [Cucurbita pepo subsp. pepo]) HSP 1 Score: 816.2 bits (2107), Expect = 2.4e-232 Identity = 403/456 (88.38%), Postives = 427/456 (93.64%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy Swiss-Prot
Match: Q9FF86 (BAHD acyltransferase DCR OS=Arabidopsis thaliana OX=3702 GN=DCR PE=2 SV=1) HSP 1 Score: 602.4 bits (1552), Expect = 7.1e-171 Identity = 303/452 (67.04%), Postives = 360/452 (79.65%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy Swiss-Prot
Match: Q9SND9 (Uncharacterized acetyltransferase At3g50280 OS=Arabidopsis thaliana OX=3702 GN=At3g50280 PE=3 SV=1) HSP 1 Score: 199.5 bits (506), Expect = 1.4e-49 Identity = 139/454 (30.62%), Postives = 221/454 (48.68%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy Swiss-Prot
Match: Q0JBZ8 (Hydroxycinnamoyltransferase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=HCT1 PE=2 SV=1) HSP 1 Score: 165.2 bits (417), Expect = 2.9e-39 Identity = 119/388 (30.67%), Postives = 193/388 (49.74%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy Swiss-Prot
Match: Q6K638 (Hydroxycinnamoyltransferase 2 OS=Oryza sativa subsp. japonica OX=39947 GN=HCT2 PE=2 SV=1) HSP 1 Score: 163.3 bits (412), Expect = 1.1e-38 Identity = 133/454 (29.30%), Postives = 211/454 (46.48%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy Swiss-Prot
Match: Q9FH97 (Protein ENHANCED PSEUDOMONAS SUSCEPTIBILITY 1 OS=Arabidopsis thaliana OX=3702 GN=EPS1 PE=2 SV=1) HSP 1 Score: 160.2 bits (404), Expect = 9.3e-38 Identity = 129/442 (29.19%), Postives = 203/442 (45.93%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy TrEMBL
Match: A0A6J1E4T9 (BAHD acyltransferase DCR OS=Cucurbita moschata OX=3662 GN=LOC111430751 PE=3 SV=1) HSP 1 Score: 820.5 bits (2118), Expect = 6.1e-234 Identity = 405/456 (88.82%), Postives = 428/456 (93.86%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy TrEMBL
Match: A0A6J1J3L6 (BAHD acyltransferase DCR isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111483084 PE=3 SV=1) HSP 1 Score: 818.1 bits (2112), Expect = 3.0e-233 Identity = 408/459 (88.89%), Postives = 430/459 (93.68%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy TrEMBL
Match: A0A0A0L8S0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G183330 PE=3 SV=1) HSP 1 Score: 785.8 bits (2028), Expect = 1.7e-223 Identity = 393/459 (85.62%), Postives = 420/459 (91.50%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy TrEMBL
Match: A0A5D3DH05 (BAHD acyltransferase DCR OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold386G00820 PE=3 SV=1) HSP 1 Score: 785.4 bits (2027), Expect = 2.2e-223 Identity = 392/458 (85.59%), Postives = 418/458 (91.27%), Query Frame = 0
BLAST of Sgr030118 vs. ExPASy TrEMBL
Match: A0A5A7SRX9 (BAHD acyltransferase DCR OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold239G001480 PE=3 SV=1) HSP 1 Score: 783.5 bits (2022), Expect = 8.3e-223 Identity = 391/458 (85.37%), Postives = 417/458 (91.05%), Query Frame = 0
BLAST of Sgr030118 vs. TAIR 10
Match: AT5G23940.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 602.4 bits (1552), Expect = 5.0e-172 Identity = 303/452 (67.04%), Postives = 360/452 (79.65%), Query Frame = 0
BLAST of Sgr030118 vs. TAIR 10
Match: AT5G01210.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 258.5 bits (659), Expect = 1.8e-68 Identity = 158/466 (33.91%), Postives = 232/466 (49.79%), Query Frame = 0
BLAST of Sgr030118 vs. TAIR 10
Match: AT2G39980.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 236.1 bits (601), Expect = 9.4e-62 Identity = 151/481 (31.39%), Postives = 238/481 (49.48%), Query Frame = 0
BLAST of Sgr030118 vs. TAIR 10
Match: AT5G67150.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 208.4 bits (529), Expect = 2.1e-53 Identity = 138/449 (30.73%), Postives = 217/449 (48.33%), Query Frame = 0
BLAST of Sgr030118 vs. TAIR 10
Match: AT5G42830.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 208.4 bits (529), Expect = 2.1e-53 Identity = 148/457 (32.39%), Postives = 235/457 (51.42%), 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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