Sgr011695 (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.ATGGCAGCCATGGCTGACCAATTCTACCCGACCAGAGATAGAGAGAGAGCGATTCTCAGAGAGAGAAGAATTCTAGAGAAAGAGAGAGAGAGAGAGATGGCGAACCTATTCCTCAAGCAGGCGAAGCAATATGCAGACGCAAGACCCAGTTATCCGGCGAAACTGTTCGAATATATTGCTTCGAAGACGCCGGCCCACGACCTCGCTTGGGACGCCGGCACCGGCAACGGCCAGGCTGCACACTCCGTAAGTTTCTTCCCCCAACACCTTTTACTTTCTTTTTCATTCTCTTAATCTCCACCGCTTTCTGATCCAATCGCCATATCCAGCTCGCTTCACTCTACACCTCCGTGATCGCCACCGACACCAGCCCCAAGCAGCTCCACTTCGCCGCCAAGCTCCCCAACATCCTCTACCGCCACACCCCACCAACAATGTCCGTCGCCGAAGTGGAGCAGCACGTGGCGCCGCCGGGCACCGTCGACTTGGTGACCATCGCCCAAGCCCTCCACTGGTTCGACCTCCGGAATTTCTACAGAAACGTCCGGTGGGTGCTGAAGAAGCCGCACGGCGTCGTCGCCGCCTGGTGCTACTTGCTCCCGGAAGTGAACAGCTCGGTGGACGCGGTCCTCCGCCGGTTCTACACGGTGGACGTGGGGCCGTACTGCGAGGCGCCTCGTAAGCTGGTGGATGAAGAGTACAAGACGATCGAGTTCCCGTTCGAGCCCGTCGAGGGAGAGGATCAGACGGGGCCGGTGGAGTTTGTGGGGGTGAAAGCGCTGGAGTTTGAAGAGTATTTGACGTACCTGAGGTCTTGGTCGGCGTATCAGATAGCGAAGGATCAGGGGGTGGAGACGTTGACCGGCGAGGTGGTGGCGGAGCTTGAGGCGGCGTGGAATGAAGATGGGAAGGGTCCCAAGGTGGCCAAGTACCCTATCTATTTGAGGATTGGAAAAGTGGGGATTAATAATTAAGACTTTTGGGACAAACTTTTTCGCCATGGGGATCTATTCGATTAGTATTCGAATTAATTATTTGAATTCAAAAGAATAAAGGTCATTTTGAGAAGTTGGGGTAATGTGTAGTTGGATTTATATGGTTCATACAAGTCCAAGAATTAGACCAAGGAATTACGTGTGAGAATTAAAGCATGGGACGAGGTTTTGAAAGTGAGATTTAAGGTGGAGAATAATGTATTCCCAGTCTGCTTTTCTTTCTTTTTTTTTTTTTAATGGAATATAAAAAGGAAAAATAACCTTTTTTAAGCCACGTCTTTACTTTTGTAGTGTAGGGATGATATTATTTGTTTATTGAAGTCTAGAGATAACGGGGGTTTCAGAATTGTGTTGAATTCTTATCACTAAATAAGTAGTTGAGTCAATACCTTTTTTTAAAAAAAAAAAAAAACACTTTATGCAATTGCGTGCGTTGATTTAATAGCAATATATATGCCTCAAGCAATTACTCAAAATTCACCCAAAAAGATGCCTATAATTTAATGGTAGAAAGACACAAAAGTAAGCTGTCAAAAAATATTCAAATTCAACACCAAACCCATCTAAACCAAACTAAAATAAATTCTGATCTACCCACGATAATATTCACACTTAAGCCACCAACTTGAGCATAACTCAAATACTGATGTCTCTATCTCTTTTTATATAGTTGTAGTTTCTTGTCTTTTTCTATTTTTGTAATGTAATATTATTTTTTAAAAAATATATTCACACTAAACTACAAATTTATTATTTTTTTTAGAATATTACATCACAAATATAGAGGTGAGAATTCTAACGAACTACATTTTAGAGGAAGTAGAGATATCTTACTCATCTAACTATGCTCAAGTTGACTTAACTACAAATCACTTAAAAAAAATAGCAACTCAATTAATAAAGTATATTAATTTAGCTTTTCAAAAATAAATAAATAAATAAAGTTGATTAATTTCACTCCGTGTTTAAGTTTAGAAGTTCATTTTGATGATATTAAAAATTAAAAGTTGAATTTGACTTACAACTCAACTCTTAAGTACATAGGTAAAATACGAGTTTTTCTATGTATTATTTTAGACAAACTTCAATCAAGAACAAAATTTCTACTTGAATTGAACATTGTTTTTTTTTTAAAAAAAAACATAATTTTTACCTTTTGTTTTTTTTTTTCAATATAACATTATAACTGTAGACGTGGATATTCGAATATTCAACCTAAAACAAAGTTATTAATATCTTAACCGGTTGAGTTAGGCCTAAATTGACATATAATTTTTTACTTAAAAGACAAAAAAAAAAAATTGTAATTTGAAACATATTACGTAATCTTTTAAAATTTTAAAGGTTAAATTACAAGTTTGGCTCCTAAATCTTTGAGGTTGTGTTAAAAGTTTTTGATAGATATCTGGACTTTCAAAATTGTATCTAATAGATTCTTATACTTTAAAAGATTTCTAATAAGTTCTTAAACTTTCAAATTTGTATTTAACAGGTCATTGTCATTAACTTTGTAGGTTTAACGCTTATATGACATGATGATTGTATTATTTAAGAATTATGTGGGGGGCTAATTTCAAGAAAGTTTAGGCATCTAGAGAGGTAATTATTTAACTGATTGAGTTAATGACAGAAACCTATAAAACACAAAATTGAAAGTTTGGGATTTATTACAAACTTTTTTAAAGTATAGAGGCTAAATAGATATAACTCTAAAAATTCATGGATATACTACAAACTTTTCAGAGTACAAAGACTAAATATACATGACTATGAAAGTTCATGACCAAACTTATAATTTAATTATTTAATTTATATTTGTAATGAATATGTGAATCTTCTTAATTAATAGTTTTATTTTTTAAAAAACATATACACGTGGCCCAATAGAAAGTGACTGAGCACAAACGGTGGAAAAATTAAAATTGAACTCTTTGTCCCCAAGTAAGCACGTGAAGAAAAGGGATTAGAGAATTCACCTTTTTTTTTCCAGCACTCCACCCTGTCACTACCAATTAAAGATTTGTGTTATTTTAAATATATTTTCATTTAAATCCTATTTTAGTGGTATTTTAAAATATATAGTTTAGTCTCTAAACTTATAAAAAATAACTGTTTTGATCACTAAACTTTTATAATGTCTATTTTAGCCCTTAAATTTTTAAAAAATAACTATTTTGGTCCTTGCTCATATTTTGCCATCTAATATTTGATTACCCAATACTTGCTTTAACTAACTTAAGTGGCTTAAATATATGCCTACATTAATGTGTTAATATACATACTCAAAACTATAATTTTCATTTGTTAAAATGAAATAAAGGTAAGGGCAAAAATGACTGTTTTTTTTTGTAAAGTTTATTACTAAAATAAACATTTTGAACGTTCAGAGACTAACATGAAATAAACCAGAGAGTTTATGAACTAAAATGGAACAAATCTTAAAGTTCAAGGACCAAAATAGGATAATAATCAAAATTAATATATTTTCAAAAAATATGTTGAATTATATTTTTAATCCATACGCCTTAATCTTAATTTCAATTTAATCCTTACATACTTTTAAAAGTTTTATTATCGTCTTTATTCTTTGATTAAAGCTTACCACAAATATGATTAGATTATAAACTTATTTCAATGGAATGAATATATATGTTGAAGTTCTATAAGGGTTGGATTGATTCATGGTCTTTTTTGGAAAAATAGTTTGGACTAAATTATGTTTAATAATAATTGATTAGTTAAAGGATAAAATTATTTAAGAATATTTCTCTTCTAATTATTTTTTCACTCAATCACTAATACATTTCTTACTCTCCAATAATTTTATGGAATATTTTGTTCTAAGTCTTTGGAATATTATTTTTCATAAAATAGAATATAATATTGAATATTAGTTTTATTTCAATGACCCCTTTGTTGAACTCAAAATAAATAAATAAATAAAATACTTTCACTTATAATTTTTAAAATAAATGATCTAAATAATAGAAACTAACTCAATAAAAAAAATTATAAGGTTATCACATTTTTTTAGTTCAAACAAGAGGGTGAGTACCAACCTGAGATGACTCAACTAGTTAAGGTATTATAAATTGTCTTAAAGATCAGATGTTTAAATCTCCACTCCTATATAGTTGTACTAAAAAACAAGAGGGTGGAGTGGAATTTCAAACAACCAAAAAAGTAATATAAAACCATAACTTAATCAATTGAGTTATGCTCATGTTGACGATTATCACCTAATTAAAGTTCTTGAGTTGAAATTGAAAATTCAATAAATGGGATTTATAACAAAAATATCACCCATGATAAACTTTTTCGATCAATAGTTTTTTAGTAGCATCGACATATCTAAAAATAATTTAAAAAATGACTAACCCAATAGTCTGTTTTAAAGATTGACTACTTACCCATTTAGTGAATTTGACATTAAAATGTTCCAAAAATAAAGTACTATCGGGTCACATGAATATTGGCATTCCAACATTTTTTTCTTCTTTCAAGGCCTACTCGAAAGAGAATTTAGTGTTTCTCAATTGTGAATATGTGATTTGTTTAGTGTGCCTTAGTTCTTATAATATTTTAGTCCTTATATATATGACTTCATGAAAAGTTGGTTTTATCAAATATTTAACGAAAATTTTAGCCACAAATATAATGTTCATTTGAAATTAAAAGTATATAATGTCTAAATTGTTAAAAAAGAAGGTTAAATTACAAGTTTAGTTAATAAACTTTCAATATTGTGTCTAATAGGTCCCTAAACTTTAAAAAATGTCTAATAGATCTCTCAACTTTAAAATGTGTCGAATATGTTCCTCTCTCTCAACTTGAAAGAGTGCCTAATAGGTTCCTCTAACTTTCAATTTTGTGTCTAATAGGTCATTGATCTATTAGACATTTTTTAAAATTTCACGAAACTATTAGATACAAAATTAAAAATTCAAGAACTTATTAGACACAAAATTAAAAGTTTAGAGAGACCTATTAAATACTTTTTAAAATTTGGAAACCTATTAGACACAACATTAGAAGTTTAGAGACTTATTAGACACTTTTAAAACTCACACCTATTAGACACAACTTTAGTTCATATACTACTAGACTGGTAATTTAACCCAAAAAAAAAAAGATTTAAATACTATGTACTTTCAGTTTTGGTTTATTTTGGTCTCATACTTTCAAAACATCCATTTTGGTCTCTATATTTTCAGCTTTGTCCATTTTAATTAGTCCTTGTACTTTCAAAACGTCCGTTTCAGTCTCTAAACGTTTAAAAAGTGACTACAACACTATATTGAATAAGTTTTTAGAAATGTAACCGTAACTTTGTATTAAAGGGTTTTTGTTGTCTATATAATTTGTGTTAAAATTTTGCAAACATGGATCAATATGCTCACTTTTAAAAAGTACAACGACTATAACAGACGTTTTGAAAGTACAGGACTAAAGTAAATAAATTGAAAGTACAGAGACTGAGATGAACTAAAATTAAAAGCATAGAGACCAAAATAGTATTTAAACTAAAAAAAATTATAATAGTCAAATTACAACTTCTATTATTTTAACCAAAAGAATATAAGGACCTCACACGCAACCCATATCCTCCACCTGTACATACTAATTCTTCAATGTCACTGCTACTGGACAACAGGCGTTTTCTTCCTATAAAATGGCAGCCATGGCTGACCAATTCTACCGACCAGAGATAGAGAGAGAGCGATTCTCAGAGAGAGAAGAATTCTAGAGAGAGAGAGAGAGAGATGGCGAACCTATTCCTCAAGCAGGCGAAGCAATATGCAGACGCAAGACCCAGTTATCCGGCGAAACTGTTCGAATATATTGCTTCGAAGACGCCGGCCCACGACCTCGCTTGGGACGCCGGCACCGGCAGCGGCCAGGCTGCACACTCCGTAAGTTTCTTCCCCCAACACCTTTTACTTTCTTTTTCATTCTCTTAATCTCCACCGCTTTCTGATCCAATCGCCATATCCAGCTCGCTTCACTCTACACCTCCGTGATCGCCACCGACACCAGCCCCAAGCAGCTCCACTTCGCCGCCAAGCTCCCCAACATCCTCTACCGCCACACCCCACCAACAATGTCCGTCGCCGAAGTGGAGCAGCACGTGGCGCCGCCGGGCACCGTCGACTTGGTGACCATCGCCCAAGCCCTCCACTGGTTCGACCTCCGGACTTTCTACAGAAACGTCCGGTGGGTGCTGAAGAAGCCGCACGGCGTCGTCGCCGCCTGGTGCTACTCGCTCCCGGAAGTGAACAGCTCGGTGGACTCGGTCCTCCGCCGGTTCTACACTGTGGACGTGGGGCCGTACTGGGAGGCCCCTCGTAAGCTGGTGGATGAAGAGTACAAGACGATCGAGTTCCCGTTCGAACCCGTCGAGGGAGAGGATCAGACGGGGCCGGTGGAGTTTGTGGGGGAGAAAGCGCTGGAGTTTGAGGAGTATTTGACGTACCTGAGGTCTTGGTCGGCGTATCAGATAGCGAAGGATCAGGGGGTGGAGACGTTGACCGGCGAGGTGGTGGCGGAGTTTGAGGCGGCGTGGAATGAAGATGGGAAGGGTCCCAAGGTGGCCAAGTACCCTATCTATTTGAGGATTGGAAAAGTGGGGATCAATAATTAA ATGGCAGCCATGGCTGACCAATTCTACCCGACCAGAGATAGAGAGAGAGCGATTCTCAGAGAGAGAAGAATTCTAGAGAAAGAGAGAGAGAGAGAGATGGCGAACCTATTCCTCAAGCAGGCGAAGCAATATGCAGACGCAAGACCCAGTTATCCGGCGAAACTGTTCGAATATATTGCTTCGAAGACGCCGGCCCACGACCTCGCTTGGGACGCCGGCACCGGCAACGGCCAGGCTGCACACTCCCTCGCTTCACTCTACACCTCCGTGATCGCCACCGACACCAGCCCCAAGCAGCTCCACTTCGCCGCCAAGCTCCCCAACATCCTCTACCGCCACACCCCACCAACAATGTCCGTCGCCGAAGTGGAGCAGCACGTGGCGCCGCCGGGCACCGTCGACTTGGTGACCATCGCCCAAGCCCTCCACTGGTTCGACCTCCGGACTTTCTACAGAAACGTCCGGTGGGTGCTGAAGAAGCCGCACGGCGTCGTCGCCGCCTGGTGCTACTCGCTCCCGGAAGTGAACAGCTCGGTGGACTCGGTCCTCCGCCGGTTCTACACTGTGGACGTGGGGCCGTACTGGGAGGCCCCTCGTAAGCTGGTGGATGAAGAGTACAAGACGATCGAGTTCCCGTTCGAACCCGTCGAGGGAGAGGATCAGACGGGGCCGGTGGAGTTTGTGGGGGAGAAAGCGCTGGAGTTTGAGGAGTATTTGACGTACCTGAGGTCTTGGTCGGCGTATCAGATAGCGAAGGATCAGGGGGTGGAGACGTTGACCGGCGAGGTGGTGGCGGAGTTTGAGGCGGCGTGGAATGAAGATGGGAAGGGTCCCAAGGTGGCCAAGTACCCTATCTATTTGAGGATTGGAAAAGTGGGGATCAATAATTAA ATGGCAGCCATGGCTGACCAATTCTACCCGACCAGAGATAGAGAGAGAGCGATTCTCAGAGAGAGAAGAATTCTAGAGAAAGAGAGAGAGAGAGAGATGGCGAACCTATTCCTCAAGCAGGCGAAGCAATATGCAGACGCAAGACCCAGTTATCCGGCGAAACTGTTCGAATATATTGCTTCGAAGACGCCGGCCCACGACCTCGCTTGGGACGCCGGCACCGGCAACGGCCAGGCTGCACACTCCCTCGCTTCACTCTACACCTCCGTGATCGCCACCGACACCAGCCCCAAGCAGCTCCACTTCGCCGCCAAGCTCCCCAACATCCTCTACCGCCACACCCCACCAACAATGTCCGTCGCCGAAGTGGAGCAGCACGTGGCGCCGCCGGGCACCGTCGACTTGGTGACCATCGCCCAAGCCCTCCACTGGTTCGACCTCCGGACTTTCTACAGAAACGTCCGGTGGGTGCTGAAGAAGCCGCACGGCGTCGTCGCCGCCTGGTGCTACTCGCTCCCGGAAGTGAACAGCTCGGTGGACTCGGTCCTCCGCCGGTTCTACACTGTGGACGTGGGGCCGTACTGGGAGGCCCCTCGTAAGCTGGTGGATGAAGAGTACAAGACGATCGAGTTCCCGTTCGAACCCGTCGAGGGAGAGGATCAGACGGGGCCGGTGGAGTTTGTGGGGGAGAAAGCGCTGGAGTTTGAGGAGTATTTGACGTACCTGAGGTCTTGGTCGGCGTATCAGATAGCGAAGGATCAGGGGGTGGAGACGTTGACCGGCGAGGTGGTGGCGGAGTTTGAGGCGGCGTGGAATGAAGATGGGAAGGGTCCCAAGGTGGCCAAGTACCCTATCTATTTGAGGATTGGAAAAGTGGGGATCAATAATTAA MAAMADQFYPTRDRERAILRERRILEKEREREMANLFLKQAKQYADARPSYPAKLFEYIASKTPAHDLAWDAGTGNGQAAHSLASLYTSVIATDTSPKQLHFAAKLPNILYRHTPPTMSVAEVEQHVAPPGTVDLVTIAQALHWFDLRTFYRNVRWVLKKPHGVVAAWCYSLPEVNSSVDSVLRRFYTVDVGPYWEAPRKLVDEEYKTIEFPFEPVEGEDQTGPVEFVGEKALEFEEYLTYLRSWSAYQIAKDQGVETLTGEVVAEFEAAWNEDGKGPKVAKYPIYLRIGKVGINN Homology
BLAST of Sgr011695 vs. NCBI nr
Match: XP_022153884.1 (putative methyltransferase DDB_G0268948 [Momordica charantia]) HSP 1 Score: 427.2 bits (1097), Expect = 1.2e-115 Identity = 206/263 (78.33%), Postives = 231/263 (87.83%), Query Frame = 0
BLAST of Sgr011695 vs. NCBI nr
Match: XP_004142649.2 (putative methyltransferase DDB_G0268948 [Cucumis sativus] >KGN54522.1 hypothetical protein Csa_012001 [Cucumis sativus]) HSP 1 Score: 411.0 bits (1055), Expect = 8.7e-111 Identity = 195/265 (73.58%), Postives = 223/265 (84.15%), Query Frame = 0
BLAST of Sgr011695 vs. NCBI nr
Match: KAA0062734.1 (putative methyltransferase [Cucumis melo var. makuwa] >TYK22533.1 putative methyltransferase [Cucumis melo var. makuwa]) HSP 1 Score: 407.1 bits (1045), Expect = 1.3e-109 Identity = 192/265 (72.45%), Postives = 223/265 (84.15%), Query Frame = 0
BLAST of Sgr011695 vs. NCBI nr
Match: XP_038882824.1 (putative methyltransferase DDB_G0268948 [Benincasa hispida]) HSP 1 Score: 405.2 bits (1040), Expect = 4.8e-109 Identity = 193/265 (72.83%), Postives = 224/265 (84.53%), Query Frame = 0
BLAST of Sgr011695 vs. NCBI nr
Match: XP_008455687.1 (PREDICTED: putative methyltransferase DDB_G0268948 [Cucumis melo]) HSP 1 Score: 402.1 bits (1032), Expect = 4.1e-108 Identity = 191/265 (72.08%), Postives = 222/265 (83.77%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy Swiss-Prot
Match: Q55EX9 (Putative methyltransferase DDB_G0268948 OS=Dictyostelium discoideum OX=44689 GN=DDB_G0268948 PE=1 SV=2) HSP 1 Score: 113.2 bits (282), Expect = 4.9e-24 Identity = 76/257 (29.57%), Postives = 125/257 (48.64%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy Swiss-Prot
Match: P38892 (Probable S-adenosylmethionine-dependent methyltransferase CRG1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=CRG1 PE=1 SV=1) HSP 1 Score: 53.9 bits (128), Expect = 3.6e-06 Identity = 59/240 (24.58%), Postives = 91/240 (37.92%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy TrEMBL
Match: A0A6J1DKE2 (putative methyltransferase DDB_G0268948 OS=Momordica charantia OX=3673 GN=LOC111021296 PE=4 SV=1) HSP 1 Score: 427.2 bits (1097), Expect = 5.7e-116 Identity = 206/263 (78.33%), Postives = 231/263 (87.83%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy TrEMBL
Match: A0A0A0L1T6 (Methyltransf_11 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G354130 PE=4 SV=1) HSP 1 Score: 411.0 bits (1055), Expect = 4.2e-111 Identity = 195/265 (73.58%), Postives = 223/265 (84.15%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy TrEMBL
Match: A0A5D3DG59 (Putative methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold523G00150 PE=4 SV=1) HSP 1 Score: 407.1 bits (1045), Expect = 6.1e-110 Identity = 192/265 (72.45%), Postives = 223/265 (84.15%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy TrEMBL
Match: A0A1S3C1E9 (putative methyltransferase DDB_G0268948 OS=Cucumis melo OX=3656 GN=LOC103495802 PE=4 SV=1) HSP 1 Score: 402.1 bits (1032), Expect = 2.0e-108 Identity = 191/265 (72.08%), Postives = 222/265 (83.77%), Query Frame = 0
BLAST of Sgr011695 vs. ExPASy TrEMBL
Match: A0A6J1HS18 (putative methyltransferase DDB_G0268948 OS=Cucurbita maxima OX=3661 GN=LOC111467263 PE=4 SV=1) HSP 1 Score: 396.0 bits (1016), Expect = 1.4e-106 Identity = 189/268 (70.52%), Postives = 220/268 (82.09%), Query Frame = 0
BLAST of Sgr011695 vs. TAIR 10
Match: AT2G41380.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 352.4 bits (903), Expect = 3.4e-97 Identity = 170/264 (64.39%), Postives = 206/264 (78.03%), Query Frame = 0
BLAST of Sgr011695 vs. TAIR 10
Match: AT5G10830.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 192.6 bits (488), Expect = 4.6e-49 Identity = 106/263 (40.30%), Postives = 150/263 (57.03%), Query Frame = 0
BLAST of Sgr011695 vs. TAIR 10
Match: AT4G22530.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 191.0 bits (484), Expect = 1.3e-48 Identity = 102/241 (42.32%), Postives = 143/241 (59.34%), Query Frame = 0
BLAST of Sgr011695 vs. TAIR 10
Match: AT3G61210.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 181.4 bits (459), Expect = 1.0e-45 Identity = 97/261 (37.16%), Postives = 147/261 (56.32%), Query Frame = 0
BLAST of Sgr011695 vs. TAIR 10
Match: AT3G54150.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 177.2 bits (448), Expect = 2.0e-44 Identity = 95/260 (36.54%), Postives = 146/260 (56.15%), 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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