Sgr016866 (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.ATGAAATCCTACTTGGATGGTCTAGCACTTGCTGACATTCCTATAACCATGAGAACATTAGTTTCTCAAGTACTTGCTGGATTAGATGAGGAATACAATTTGGTCACTGCTACTATTCAAAAGAACAATGCTATTACTTGGTCTGAGTTGATTGCAAAACTTCTCACATTCGAACAAAGGTTGGAAAACTAACTAGCATTAAAGGCTGGTGTCATTTATGGCCAAACTACAGTGAACTTTGTAGGAAATAAACCAAATACTGGGCAACTCAATAACTCCAACAATATTACCAACTATCAGCAGCAACTCATCTGGTGGAAAACATTTCAACTTTGGAAATTCCCGTGGTGGACGCGACAAAGGCAAAGGTGGCAGGTTCTCTCCAAACAACAAACCTATTTGTCAGGTATGTGGAAAGGCGAGTCACACAGCTGCAATATGCTATCATCGCTTCAAGGAAGAATAAATGGGCAGTCCACTAGATCAGTAAAAAAATTCCTCTACTAACAACTCACCTTACTTAACCTACCTAGAGGTTGTTGCAGACCCAAACTGGTTTGCTGATTCCGGTGCTAGTAGCCACGTCACTACTGATCTCGAAAATCTTGCTGTTAAACATGACTACAATGGTATGCAATTTGTTGTTTTTGGTAATGGCAATAAACTCAATGTTTCAGTTCCACTTCTGTTTTGGTGGGATGCATTTCAAGTTGTAACTCTCTTGATTAACTCTCTTCCAACTAAAGTTTTGGATGGTAAGTCTCCTATTGAAATTCTTACGAACTGGAAACCAAATTTGCTACATATAAGAGTCTTCGGGTGCGCATGCTATCCCTGGCTTCGGCCTTATCAGAACCATAAGTTCCAGTTCCACTCTGAAAGATGTATCTATCTTGGGCCAAGTTTGCCCCACAAGTGTCTAAGCTCCTCTGGTTGCATCTATGTCACCCGACATGTTAAGTTTGATGAGGATCATTTTCCTTATACAACTGGCTTTGGCACTCCACCTCCACTAGAACAATTTGTGGTTTCATCACCAAATATTCTTTCTTGGTTTCCACTGCCTCCAAACATGTGCCAATCTTCTCCTAGTTTGACCTCAATGCCAAACTCTCTTGGTAGATCAAGTGGAAATTCATCCCATGTTGACTCCCACTGTGATGATAACAACAACACTTCTGCTCTCCAATATGCTGACATAAATCCTGGTATGAATGGATCTACTTCCAATAATTTTCCTAATGAATCACCTTCATCTCCCTTGGCTACTGCTCCACCTCCTCTCTCTACTCAACCACCTGTTCAGAATATGCATCCTATGTTAACACGTGCCAAGGTCGGTATTTTTAAACCAAAGGTTTGGCTGACCACTACAGAGGATCCTCTCTCCATTGAACCAACTAAAGTATCTGATGAATGCATCAGTGGTGAACTACAATGGACAATGAGTATCAGGCCTTCGTTCGAAATAATACATGCAGCTTGTTCCCTTTTAACCCAATCAAAATATAGTTGTCTGCAAGTGGGTATTTTGAATTAAAAAGAATCCTGACGGCTTGCTTCAAAGATACAAGGCTCGTTTAGTTGCAAAGGGGTTTCACCAACATCTAGAGATTGATTACTATGAAACATTTAGTCCAGTGGTAAAACCCTCTACCATTCGAATAATACTCACCTTGGCAGTATCTTTTGGATGGCATATTCGACAACTCGACTTTAATAATGCATTTCTCAATGGAGAATTGAAGGAGGAAGTATTTATGGCTCAACCACCTGGTTTCATTGACTGCTCTCTCCCCCATCATGTTTGCAAGTTAAATAAGGCTATTTATGGCCAAAAGAAAGCTCCTATAGCTTGGAATGATCAACTACGGTCTGCCCTATTATCTTGGGATTTCTGTCATTCTCAATCTGACGCTTCCTTATTCTATTTAAGAAAAAAGGGCATTTTTGTTGCACTTCTTGTTTATGTCGACGATCTAATATTGACAGGCAATGATCCATCTTTTGTGTCTTCTTTGGTTGCTCATTTGAATAGCTGTTTTTCCTTAAAGGACCTTGGCGATCTCCATTTCTTCTTGGGCATTGAAGTCAAGCGCTTACCTGCTGTTTTACTTCTCACTCAGTCTCAATATAAACATGATCTCCTTGATAGACTTGAGATGTCCAATCTAAAGCCATGCCCTTTTCCTATCGTCACTGGTAAACAATTGTCCTTAATTGATGGTGTTCCACTCGAAAATCCTACTATTTACAGAAGAGCACTCTAGGGGCCTTGCAATATTTAACCCATACTCGACCAGACATTGCCTTTGCTATCAATAAACTTAGCAAATTTCTCAAAGCCCCCGTGGATGTTCATTGGCAAAGTTTAAAAAGAGTACTTTGATATCTAAAGGGTTCTTCCTCTCTTGGGTTGTTAATTCAACCATTTGACACTATCTCTCTCATAGGGTACTCTGATGCAGATTGGGCGTGTAATGTGGATGATCGTAAGTCTATTGCAGGCTATTGTGTTTTTCTTGGAACCACCTTAGTTTCATGGTTGTCAAAGAAACAAGCCGCTGTTCCAAGATCTAGTACAGAATCCAAATACAGGGCCTGGGCTTAAGTGGCTTCTAAAATCATTTAGGTCTAGCAACTTATATCTGAAATTGGTTCTTCTCCTTCCAAGTGGCCAGTCACTTGGTGTGACAATCAAAGTGCCAATGCCCTTGCCGCCAATCCTGTTTTTCATGCCCGTACGAAGCATATTGAAATCGAGATACATTTTGTTCGTGAACAAGTGCTATATGGTGATCTTGATGTTCTCTACATTCCATCCTCAGATCAGATAGTTGATTGCTTAACTAAGGCTCTACCTCATTATCAGTTTAGTCAGTTTGTAGCAAACTCGGTCTCTTTCAACTCGATGCTCGTTTGAGGGAGGATGACAACGTTAAGAATAAATCACCTCATGATGACCTAAATGCAATGGAGCCAACCATTTCCAAATAAGCTAAAGATCTTCCTATCCTCACGACATTAAAGCTCACGTTAATCAAGGAGCAATCTTTCCTTGTAGGTAATATTTATGCGATCACTGGTGAATCATTGACAGATGTATAATTTGGTGTAAATTTTGTATATTTCCTTCTTTGTAATATTTCCTTTTATGCTCTAGGCTACAATATTATATAGCCTTATGTATCATTTGTAATATATAGAAAATAATATAGTAGCAAGGATTATACTTCTGCATCTTCCTCAAGAACTTAGATCTCTATCTGTAGTATCGTTGTGGTGAAGAAAATACGGATTCAAAGAGGCTTCATTCGACACTTGATTCTGATTCAATGAAGAAAAAGATCAAATAATGGCTGGATCTGACTCTAGATCTTGATCTTCAAGTTGCATGATTGCTAGAAGAGAAAAGTAAAGAAAAACAAGCAAAAAAATAAGAGAAGCTCTGATACCATATTAAGCAAGAGCTTTGTTGAATAAAAGTGCTGCATATATTACTTCTCCATGAAACACATTTACATAGACACAATAAAGAAGAAAAGAAGAATAACAAGCTGCACAACTTGTACAACTAAATAACTAATAATAAACCAATACAACTAAAATGCAACTGACTAACCAATAATTAACTCTGATAAAGAGACATGGTAAGTAACTACAAGTGAACTCTAATAATTAGCAAACCCTTTATACGTAATTAAGATAAAATATTAGGTTGAGTTTCTTTGCCATGAGAAATTATTTCAACAAATAAAGTAAAGAAAAAGAAAAGAAGAAGACATAATAAGCTTTCCAAAGTAAATTCTTCCAATGAAAGGTAAAATTCATTTTTAAAATTTTTAAACAGTTGTCATTCCAAGAAAAAATATTAATTAATTATTAAGAGTATGGGACATATATAATTTAGAAAAAACAGTTATTTATTATTTTTAATTTTAAAAGCTCTATAAAAAAATATCATTTCTTCTTATGTTTTCGTTTAATTATTCCACACATTAATTTAAACATATAATATATTTAAATCAAGTTATGTATGATAATTTTCAACATAACTTAAAATGTGTAATAGTTCTATAAATATTTAAAGACTAAACAAAAAAATGTTGTACTACATAAAGAGTCAAACATGTAAGACAAATATTCACAACCGTATATTATATTATTTGATATCAAAGTGAAGTAAAGATATTTTATCTAATATAGTGAGAGAGAATTTTTTTATAGGGAAAATCACATAGAGAAGGTAAAAAATGAGTACAGAGAATCCTAAAAGAAAATTGGTAAACAAAATGGTTCTAAGGGAATAACTCTTTTTGATGTAGAGAAAAAGAACTGAAAAGAGATACCAGAAGAGACGGTAGTGAAAAGAGAACCACAAAAAAGGAAGGGTGCATTTTCATATTTGGGTAAAAAATAGAAGTTTCTCACAATGTATTGCAAGAAAGCTATACAAAAGTCTATCCTAAATTTTAGGGGAGTCAATGTCGTACAAACATTGCATAAGGGATGGGATAGCTTAAATTTTCAAAATTTTATTTTATTCTTCCAACTGTTAAAGTTTTCGTGTTAGTCCCTAAATTTTGTATATATATATATATATATATTTTCTAGTCATTATCGTTAATTTTTTATTAATTATTTTATATAAATTTGATTACATTTTGAAATCTAATAAATGATTATCACATGTAACTTTAAATATTTGTCTATATTAACATCGATCCATTAACTAAATAAATAAATTGTGTCTGAGTTGTGTTTTTTATTAAATAGATCATTAAAAAATTAAACAACAAGAACTAAAATTATTTTGTTTGTACAAATTTCAGAAACTAATACCGAATGTTTAATAAATTAGAGTCTAAAATTGAACATATATAAATGGCGAAGACCAAAATTAAACTTAGACTAAATATATGTTTTAGTTCCTAATATTTGAGTATTTTTCAATTTGGTCCTTAATCCTTTAAAAGTTTCAATTTCATCCCTTATGTATTTAATTTTTTCTAATTAAGTATTTACAATCTCTAAATATTAAAAGAATGATGATATTTGAATTTAAAAATAGTAATTTTTATGAGTTTGTTAATCATTAGTATACTAGCATTTTAATGAGTCAATTTTCAATAACAATGAGTAATTTCAAGTAAAGTAAGTTACTATGTACTAAGTCATATTAAATGAGTAAGCTTTTTAATTTTATGGGCAAGTATTATGCTTATTTAATCAAATGAAAACATAAAGTACCTTTAACTCAATTAATAAAGTGTATTTTGACATAACATCATTATTTTGTTAATTAATTTTAACGTTTTGTGACAATAAGGACTTAATTGAAAAAAATTCAATATATTAGGGATGCAACTGAAACTTTTAAAAGATTAGGAACTAAATTGAAAAAATACTAAAATATTAGGGGAACAAAACATATGTTTAGCCTAAAATTTAAACCTATAAAATTTGACTAATACCTTAAAAGTTCAAATCTCATTTTGACCCTTGAACTTTCAAATTATTTATTTTAGTCCATCAATTTTTAAAAAGTAACTATTTTAGTCACTGCTGTTATTCTACCGTCAATTTCTACCCTATCTAGTACTCACTTTAGCTAGCTTATGTGACTTCAATATATATTCACATTAGTACGTTAATACACATATTCAAACAAAAAGATCAAAATACTTATTCTTTAAAATTTAAAAAATCAAAATAAATCATTTAAAAATTTTTAGACTAATTTGTAAAGTTTATAAACTAAAATCAAATTTAAACATACGTCCTTTCAAGTAAATTAGAGAATAAAAGAAATCATTAGCAATGATGATTGAAGCTTATCTGTTAAAAATAAATAAAAGAAATTAAAAAAACAAAATAATTAGGAAGAGAATATAGCTCAAAAATGTTTATATCATTGTTTTGTTTGTCTCTTTTCCCTCTCCCGCCCACCTTCTCGGTTCTTCCTCTCTCTCTTCCCTCTTTTTTTTTTTTCCCTTGCAAAACTTCGATTGACTCTTTCGCTTTCTAAAATCTCCCTCTCAACCTCTCCCATCTTCGCTTTCTCTCTCGTCTTAGCAAAACATTTCTGAATCAGGAAGAAGCACCGCTGGAAATGGGCAAGTACATGAACAAATCCAAGATCGCCGGCGACGTCACAGTCATGGAGGTGTTTTCGCAGCCCAGCAATAATGTCCGGACCACCAGAGCTGCCAAAACGCTTGCATTGCCGGCTGAAGAGGCGAATCCCGACGTCTCCTTCTCCTACCTCCAGCTCCGGAGCCGCCGCCTCCTAAAGACCGCTCTTCTCAAGCACCAGAACAAGCCCGACAGGCCGATTGGGGCTTCCAAACAGAGCTCCAAAACTAAGAAATCTGGACGCAATTCGAGTTCCGGCAGGAAAACAGGCTCCGTCTTAGGCTTTGAGGGCGAGGGTTTTGGTTTTGAAGAAGACGCTGGTGAAACTGTAGAGGCTGAGGCTGATCTTGGACTGAAGAATTTGGAGTTCCAAGTCTCCAGAAGGTACATTTCTGCTTCACTTGTGATTCTGGAAATGGTTTGGTGGATTGGGAAATTTCTTGCCTCTCATGTTTGAACTTCTAAAGCTTACTTGATACTGTTTTTGTAGTATTTATTTTATTAATAACTTCGTTTGTTTTTTTTTAATTTGATTAAGATTTCAAAATTGTTTTGAAAAAGTTTAAAAATTTTTTTTTTTAGAAATTATATAGATACAATAGTTTTCAACTTTCATAGCCTTTTAAAAAACAAAATAAAATAAAATAAAGAACGAAATTATGAAACATGACCTATACTTTTGAACTTTCTTCTTTTAAAACTTAAGCTTCTTTTCCTCCTTCTAACCCCATGAAAATGTAATGCTTTGGAGATTAGATTTTTCACAGAATTTTATCATACTTCATTACATGTAACCAAACAGACATTTCTGTTTATGGATTTAAAATTCTGTTCATGTTGACATCCATAAGGTCATGTTTGGGTTCCCAAGTGCATTTATTTTGGTGCCATTGTGTTATTGAAGTTTTGTTCTGCCTTAAATTTTGCTATAAATTTGGTTTATTGTCCTTTTTTTTTAGAATATTGCAAAATTTGGTTTATTGTCCTTTTGCATATGAAAGCTTCAAAATTATTGGTAAAGCTCTCAATTGCTTTGCAGTATCTTGCCAAAGATATCTGATTTTTAGTTTACATAAATTTATCAGTTATGCATCAATGTCAAGTGGCATCCAGATTGCTGCTTGCTAAAGATCTTTTTTTAATCTACTTTCAAAGTCATTTTGGAAATCGTAGCCAAATTTTAAAAATTAAAAATAGTAGTTTTCAAACATCTATTTTTTTTGTTTTTGAAATATGGCTAACATTTCAAACGTATTTCTAAAAAATTAAAAACTAAACAAAGAGTAGATAATCATATTATAAGCATAATTTCTAGAAATAGAAGACCGAAAACAAAATTATTAAGGCCTTAATATTTTGCTTGATTTTGTTGTCCACAAAGCAAGGGAGAACTAAAATTTCATTTTCAGTCTTTTTCCATCCTGCAAGATTAAAATAAGACTTCATGAGAAAATATAGTCTTCTTAAGAAGAAAGTTCTAATTACGTATTCGCCGCAATAGGTTCGGAGAAGCAAAAACCTATTAATAGATAAGAACTTATTCCTGCTTGATAAGACTTCATACCTAAAACTAACATCATATGATCCAACCTAATAGCGACATCATAGAATATGCTAAACTTGTATGCGAATCGGATGTGAGAAAAGGAAGTGTTTTTTCTTTCCCATGATATTAGTTGAAAAGATATTCAAATTAGAAATTTTTTGATATTGTATAATTAGAAACTATTATTTGGTGTTCAGACAGAACATCCAAAAAGTCAATGACATCATTTGCATTTGCAATGACATATCATTTTCATGGGGTCTAGACATTGGAACATGTATTATGGGACGCCTCTTTGTTGATGATGCCTTCTCAAGTTAACAAGCAGTTATTACATCTTTTTCTTTTGCTGTTCTGCTGCTACTTGTTGACATTGATTTTGTCCTATTAGATTCATTGCTCCTTTGCTACAAACTTTATGAATTTGTATTTACTCTCTATTACTAAGATCTAGCATAAATGAGGAGTAAATAAAGAGAGGCCCATTTGATGATAATTTTGTTTTTGTGAATTTTTGTTTTTAGCTTTTAAATAAGTAAGATTGTTTTCTAATAATTTTTTTTTTTTGTTTATGTTAAACTACAATTTTAGTCTTTATGTTTATGTTTAATTTCAATTTGGTCATTATGATTTTAAAAGTTTCAATTTGGTTCTTATAATTTTAAAAGTTTCAATTTGATCCGTAAAGTTTGGATAAATCTCTTTCTTGTCATTAATAGTTATTAACAATTGTCTTGCATAACATGTTTCTATTATACGTGGTAGAGAGAAGTGATGAGCTGACATCTAAAAAAATGTCACTTAAGAAAACTATTAACGTCTGGATCTAGTAATGGCAAAGGCGTTTTGAGATATTTAATCAAATCAAAAGACCAAATTGAAAATTTTAAAATGATAGGGATCAAATTGAAACCAAATACAAACCATAAGGACTAAAAACATGTAGCTAGAATTTTAACAATGTTTTCAAAAAGTAAATACAAGACAAATTAATTAGGAGCATAAAAGGTTACTATTTAAAATAGAAAACTAAAAACAAAATTGTTATCAAAGGGGCCTTTAGTTTTGTGGATTTAAAATCATATTCAATGTCTTTGCACTGTGCAGGGGCACAAGGGAAAGCACAGCAGGCAGCAGAAACCCCTGTTCCTCAACACAGTACAGTAGTGACACTGCAACTAATGGTATTATACAAAACAATCTGCAAAGAGCCATCCCAACAGCACATGAGATGGAAGAGTTCTTTGCCTCCGCAGAGCAGCAGCAGCAGAGATCATTTATTGACAAGTATTTCTGCTCAAACACTTCCTGTCATTCCGTTAAAGCTTTTTTAATTTAGCCATGATTTTAAGTAATACAAAAGTAAGAGCTCTTGAGTGCAAACTCTTGCAATGTCATTTCTTTTCCCTTTTTATATTGATAGTTTACATGTTAGGTTTGATGAATCAAATGAATATATCTGAGTCTTGCATATGAGAGGGAGTAATATGATGGATGCGAGCAGAGCGGGAGCTTTTGATGGTTATAGAAAACTTTTTTACGAGTCTACTGAATGATTGTGCAGGTACAATTATGATATTGTGAATGACAAGCCTCTTGATGGACGATACGAATGGGTTAAACTGGTTCTTTGA ATGAAATCCTACTTGGATGGTCTAGCACTTGCTGACATTCCTATAACCATGAGAACATTAGTTTCTCAAGTACTTGCTGGATTAGATGAGGAATACAATTTGGTCACTGCTACTATTCAAAAGAACAATGCTATTACTTGGTCTGAGTTGATTGCAAAACTTCTCACATTCGAACAAAGCAGCAACTCATCTGGTGGAAAACATTTCAACTTTGGAAATTCCCGTGGTGGACGCGACAAAGGCAAAGGTGGCAGAGTCTTCGGGTGCGCATGCTATCCCTGGCTTCGGCCTTATCAGAACCATAAGTTCCAGTTCCACTCTGAAAGATGTATCTATCTTGGGCCAAGTTTGCCCCACAAGTGTCTAAGCTCCTCTGGTTGCATCTATGTCACCCGACATGTTAAGTTTGATGAGGATCATTTTCCTTATACAACTGGCTTTGGCACTCCACCTCCACTAGAACAATTTGTGGTTTCATCACCAAATATTCTTTCTTGGTTTCCACTGCCTCCAAACATGTGCCAATCTTCTCCTAGTTTGACCTCAATGCCAAACTCTCTTGGTAGATCAAGTGGAAATTCATCCCATGTTGACTCCCACTGTGATGATAACAACAACACTTCTGCTCTCCAATATGCTGACATAAATCCTGGTATGAATGGATCTACTTCCAATAATTTTCCTAATGAATCACCTTCATCTCCCTTGGCTACTGCTCCACCTCCTCTCTCTACTCAACCACCTGTTCAGAATATGCATCCTATGTTAACACGTGCCAAGGTCGGTATTTTTAAACCAAAGGTTTGGCTGACCACTACAGAGGATCCTCTCTCCATTGAACCAACTAAAGAAGAAGCACCGCTGGAAATGGGCAAGTACATGAACAAATCCAAGATCGCCGGCGACGTCACAGTCATGGAGGTGTTTTCGCAGCCCAGCAATAATGTCCGGACCACCAGAGCTGCCAAAACGCTTGCATTGCCGGCTGAAGAGGCGAATCCCGACGTCTCCTTCTCCTACCTCCAGCTCCGGAGCCGCCGCCTCCTAAAGACCGCTCTTCTCAAGCACCAGAACAAGCCCGACAGGCCGATTGGGGCTTCCAAACAGAGCTCCAAAACTAAGAAATCTGGACGCAATTCGAGTTCCGGCAGGAAAACAGGCTCCGTCTTAGGCTTTGAGGGCGAGGGTTTTGGTTTTGAAGAAGACGCTGGTGAAACTGTAGAGGCTGAGGCTGATCTTGGACTGAAGAATTTGGAGTTCCAAGTCTCCAGAAGGGGCACAAGGGAAAGCACAGCAGGCAGCAGAAACCCCTGTTCCTCAACACAGTACAGTAGTGACACTGCAACTAATGGTATTATACAAAACAATCTGCAAAGAGCCATCCCAACAGCACATGAGATGGAAGAGTTCTTTGCCTCCGCAGAGCAGCAGCAGCAGAGATCATTTATTGACAAGTACAATTATGATATTGTGAATGACAAGCCTCTTGATGGACGATACGAATGGGTTAAACTGGTTCTTTGA ATGAAATCCTACTTGGATGGTCTAGCACTTGCTGACATTCCTATAACCATGAGAACATTAGTTTCTCAAGTACTTGCTGGATTAGATGAGGAATACAATTTGGTCACTGCTACTATTCAAAAGAACAATGCTATTACTTGGTCTGAGTTGATTGCAAAACTTCTCACATTCGAACAAAGCAGCAACTCATCTGGTGGAAAACATTTCAACTTTGGAAATTCCCGTGGTGGACGCGACAAAGGCAAAGGTGGCAGAGTCTTCGGGTGCGCATGCTATCCCTGGCTTCGGCCTTATCAGAACCATAAGTTCCAGTTCCACTCTGAAAGATGTATCTATCTTGGGCCAAGTTTGCCCCACAAGTGTCTAAGCTCCTCTGGTTGCATCTATGTCACCCGACATGTTAAGTTTGATGAGGATCATTTTCCTTATACAACTGGCTTTGGCACTCCACCTCCACTAGAACAATTTGTGGTTTCATCACCAAATATTCTTTCTTGGTTTCCACTGCCTCCAAACATGTGCCAATCTTCTCCTAGTTTGACCTCAATGCCAAACTCTCTTGGTAGATCAAGTGGAAATTCATCCCATGTTGACTCCCACTGTGATGATAACAACAACACTTCTGCTCTCCAATATGCTGACATAAATCCTGGTATGAATGGATCTACTTCCAATAATTTTCCTAATGAATCACCTTCATCTCCCTTGGCTACTGCTCCACCTCCTCTCTCTACTCAACCACCTGTTCAGAATATGCATCCTATGTTAACACGTGCCAAGGTCGGTATTTTTAAACCAAAGGTTTGGCTGACCACTACAGAGGATCCTCTCTCCATTGAACCAACTAAAGAAGAAGCACCGCTGGAAATGGGCAAGTACATGAACAAATCCAAGATCGCCGGCGACGTCACAGTCATGGAGGTGTTTTCGCAGCCCAGCAATAATGTCCGGACCACCAGAGCTGCCAAAACGCTTGCATTGCCGGCTGAAGAGGCGAATCCCGACGTCTCCTTCTCCTACCTCCAGCTCCGGAGCCGCCGCCTCCTAAAGACCGCTCTTCTCAAGCACCAGAACAAGCCCGACAGGCCGATTGGGGCTTCCAAACAGAGCTCCAAAACTAAGAAATCTGGACGCAATTCGAGTTCCGGCAGGAAAACAGGCTCCGTCTTAGGCTTTGAGGGCGAGGGTTTTGGTTTTGAAGAAGACGCTGGTGAAACTGTAGAGGCTGAGGCTGATCTTGGACTGAAGAATTTGGAGTTCCAAGTCTCCAGAAGGGGCACAAGGGAAAGCACAGCAGGCAGCAGAAACCCCTGTTCCTCAACACAGTACAGTAGTGACACTGCAACTAATGGTATTATACAAAACAATCTGCAAAGAGCCATCCCAACAGCACATGAGATGGAAGAGTTCTTTGCCTCCGCAGAGCAGCAGCAGCAGAGATCATTTATTGACAAGTACAATTATGATATTGTGAATGACAAGCCTCTTGATGGACGATACGAATGGGTTAAACTGGTTCTTTGA MKSYLDGLALADIPITMRTLVSQVLAGLDEEYNLVTATIQKNNAITWSELIAKLLTFEQSSNSSGGKHFNFGNSRGGRDKGKGGRVFGCACYPWLRPYQNHKFQFHSERCIYLGPSLPHKCLSSSGCIYVTRHVKFDEDHFPYTTGFGTPPPLEQFVVSSPNILSWFPLPPNMCQSSPSLTSMPNSLGRSSGNSSHVDSHCDDNNNTSALQYADINPGMNGSTSNNFPNESPSSPLATAPPPLSTQPPVQNMHPMLTRAKVGIFKPKVWLTTTEDPLSIEPTKEEAPLEMGKYMNKSKIAGDVTVMEVFSQPSNNVRTTRAAKTLALPAEEANPDVSFSYLQLRSRRLLKTALLKHQNKPDRPIGASKQSSKTKKSGRNSSSGRKTGSVLGFEGEGFGFEEDAGETVEAEADLGLKNLEFQVSRRGTRESTAGSRNPCSSTQYSSDTATNGIIQNNLQRAIPTAHEMEEFFASAEQQQQRSFIDKYNYDIVNDKPLDGRYEWVKLVL Homology
BLAST of Sgr016866 vs. NCBI nr
Match: XP_038877740.1 (cyclin-dependent kinase inhibitor 3-like [Benincasa hispida]) HSP 1 Score: 242.7 bits (618), Expect = 7.1e-60 Identity = 142/225 (63.11%), Postives = 162/225 (72.00%), Query Frame = 0
BLAST of Sgr016866 vs. NCBI nr
Match: XP_008457984.1 (PREDICTED: cyclin-dependent kinase inhibitor 3 [Cucumis melo]) HSP 1 Score: 201.4 bits (511), Expect = 1.8e-47 Identity = 127/229 (55.46%), Postives = 151/229 (65.94%), Query Frame = 0
BLAST of Sgr016866 vs. NCBI nr
Match: XP_004139711.1 (cyclin-dependent kinase inhibitor 3 [Cucumis sativus] >KGN44591.1 hypothetical protein Csa_015593 [Cucumis sativus]) HSP 1 Score: 197.2 bits (500), Expect = 3.4e-46 Identity = 126/227 (55.51%), Postives = 147/227 (64.76%), Query Frame = 0
BLAST of Sgr016866 vs. NCBI nr
Match: XP_023005086.1 (cyclin-dependent kinase inhibitor 3-like [Cucurbita maxima]) HSP 1 Score: 188.0 bits (476), Expect = 2.1e-43 Identity = 125/225 (55.56%), Postives = 144/225 (64.00%), Query Frame = 0
BLAST of Sgr016866 vs. NCBI nr
Match: KAG6592871.1 (Cyclin-dependent kinase inhibitor 3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 187.2 bits (474), Expect = 3.5e-43 Identity = 124/225 (55.11%), Postives = 143/225 (63.56%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy Swiss-Prot
Match: Q9FKB5 (Cyclin-dependent kinase inhibitor 3 OS=Arabidopsis thaliana OX=3702 GN=KRP3 PE=1 SV=1) HSP 1 Score: 125.6 bits (314), Expect = 1.6e-27 Identity = 103/237 (43.46%), Postives = 129/237 (54.43%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy Swiss-Prot
Match: Q9LRY0 (Cyclin-dependent kinase inhibitor 5 OS=Arabidopsis thaliana OX=3702 GN=KRP5 PE=1 SV=1) HSP 1 Score: 95.1 bits (235), Expect = 2.4e-18 Identity = 82/221 (37.10%), Postives = 111/221 (50.23%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy Swiss-Prot
Match: Q283L0 (Cyclin-dependent kinase inhibitor 5 OS=Oryza sativa subsp. japonica OX=39947 GN=KRP5 PE=2 SV=1) HSP 1 Score: 87.4 bits (215), Expect = 5.0e-16 Identity = 80/242 (33.06%), Postives = 122/242 (50.41%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy Swiss-Prot
Match: Q7XDH8 (Cyclin-dependent kinase inhibitor 4 OS=Oryza sativa subsp. japonica OX=39947 GN=KRP4 PE=2 SV=2) HSP 1 Score: 85.9 bits (211), Expect = 1.4e-15 Identity = 77/227 (33.92%), Postives = 114/227 (50.22%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy Swiss-Prot
Match: Q9ZT94 (Retrovirus-related Pol polyprotein from transposon RE2 OS=Arabidopsis thaliana OX=3702 GN=RE2 PE=4 SV=1) HSP 1 Score: 82.8 bits (203), Expect = 1.2e-14 Identity = 68/220 (30.91%), Postives = 103/220 (46.82%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy TrEMBL
Match: A0A1S3C6X1 (Cyclin-dependent kinase inhibitor OS=Cucumis melo OX=3656 GN=LOC103497543 PE=3 SV=1) HSP 1 Score: 201.4 bits (511), Expect = 8.7e-48 Identity = 127/229 (55.46%), Postives = 151/229 (65.94%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy TrEMBL
Match: A0A0A0K9V9 (Cyclin-dependent kinase inhibitor OS=Cucumis sativus OX=3659 GN=Csa_7G339140 PE=3 SV=1) HSP 1 Score: 197.2 bits (500), Expect = 1.6e-46 Identity = 126/227 (55.51%), Postives = 147/227 (64.76%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy TrEMBL
Match: A0A6J1KTY9 (cyclin-dependent kinase inhibitor 3-like OS=Cucurbita maxima OX=3661 GN=LOC111498178 PE=3 SV=1) HSP 1 Score: 188.0 bits (476), Expect = 1.0e-43 Identity = 125/225 (55.56%), Postives = 144/225 (64.00%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy TrEMBL
Match: A0A6J1H6J1 (cyclin-dependent kinase inhibitor 3-like OS=Cucurbita moschata OX=3662 GN=LOC111460662 PE=3 SV=1) HSP 1 Score: 184.5 bits (467), Expect = 1.1e-42 Identity = 123/225 (54.67%), Postives = 143/225 (63.56%), Query Frame = 0
BLAST of Sgr016866 vs. ExPASy TrEMBL
Match: A0A5D3DD79 (Cyclin-dependent kinase inhibitor OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold305G00200 PE=3 SV=1) HSP 1 Score: 177.6 bits (449), Expect = 1.3e-40 Identity = 117/218 (53.67%), Postives = 138/218 (63.30%), Query Frame = 0
BLAST of Sgr016866 vs. TAIR 10
Match: AT5G48820.1 (inhibitor/interactor with cyclin-dependent kinase ) HSP 1 Score: 125.6 bits (314), Expect = 1.2e-28 Identity = 103/237 (43.46%), Postives = 129/237 (54.43%), Query Frame = 0
BLAST of Sgr016866 vs. TAIR 10
Match: AT5G48820.2 (inhibitor/interactor with cyclin-dependent kinase ) HSP 1 Score: 115.9 bits (289), Expect = 9.3e-26 Identity = 102/254 (40.16%), Postives = 128/254 (50.39%), Query Frame = 0
BLAST of Sgr016866 vs. TAIR 10
Match: AT3G24810.1 (Cyclin-dependent kinase inhibitor family protein ) HSP 1 Score: 95.1 bits (235), Expect = 1.7e-19 Identity = 82/221 (37.10%), Postives = 111/221 (50.23%), Query Frame = 0
BLAST of Sgr016866 vs. TAIR 10
Match: AT2G32710.2 (Cyclin-dependent kinase inhibitor family protein ) HSP 1 Score: 81.6 bits (200), Expect = 1.9e-15 Identity = 69/194 (35.57%), Postives = 98/194 (50.52%), Query Frame = 0
BLAST of Sgr016866 vs. TAIR 10
Match: AT2G32710.1 (Cyclin-dependent kinase inhibitor family protein ) HSP 1 Score: 78.6 bits (192), Expect = 1.6e-14 Identity = 69/197 (35.03%), Postives = 95/197 (48.22%), 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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