
Sgr001809.1 (mRNA) 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.ATGGAGGAAATGGGTTATTGGGTGACTGATTCTCTCCCTAGCTTTGCCAAAAATCTCCATATCTTGCTGGTGGATCATGACCCGCTCTCTCTCAAGCACTTGGCTTCCTTGCTCGAGCAACAGTCCTACAATGGTACAGTACATCACAGTGTTTTCATTAATCTTTTTCACCACCCTAATTCTACCGTATTAAGGCATAGTATAATGCTTCTTTGTATCTGGGAACATGTTGTAATGTGCATGTGTAATGCAGAAAGAAATTCAATACATTTTAGTGACAGATTTGTTAAGGGGTTTAAAAAAATTGTTATGGATCATTGTTGTGATCGATCTGCAACTACTAAAACAGAAAGAGTAAGGAAATAGAAAGAATTTAACTTGATTTCTTAATCCTTATTATCTTTCACTTCCTCTCTGTGACCAGAATATACTTTATCTTAGCTGCATGGTTTTAATGGAAGTTCAGCATGATGCTTTTACTTTATACTGCCTTTCCATATAAGGATATTTTTCTTAATGACAGAGATATAGGTTTAAGTACAATCTCTTATGCTCAATTTCTTTCTTTTTCTGGGAATCAGCATTGAATACAGAGCATAAAAGTACAAGATCTGGATGATTTCTTAGCTTAAGTTTCTACAAGGTCAATTCTGCGTGCATCTAGTCTACTATCTATTCTTTTCCTTGAAGTATAATTGTTTTGTATCTTTCATTTATGGGGCTAATTACAGTAATATCCATTTAGCTTTACTTTTTTGTTTTTCCTTTTCCATGAAGTTGATGTGCATATCATCCTTATTTAGTATTATCTGATCCATTTATGCAATTCTCTGGAAGAAACAGCTTTGGTTAATTTTATTTGGAGAAAAGCAGATTCAATCAGATGACAAATTTTCTAACTTGGATTTTTTTTTCTCTTTTTGCAATTTTTCAGTTACCACCACTCAACTAGCATCTATTGCACTATCAATGATTCAGCAAAAAGGTGACCGGTTCGACCTTGTCATGGCTAACGCTAGCATGCCCGATATGGACTGTTTTTCGTTTTTGCACGTGCTCCTTAAGAAGAATATTGCTGTCATTTGTAAGCTTAATTTTGCATGGTTATCTCATACAATTTTATGTTACCTTTATTCTCAAGCTACTTCGTTGCCTGGCAGTTATGTCCTCAGGGATGAATTTGAACGTGGCTACAAAAGCATTGGCAGAAGGAGCGTGCTATTTTCTTCAGAAACCTATTTCCAAGGATGATCTCAAATACGTATGGCAACACGCGTATCGAAAGAACAGAAATGCAAACAAGCAAACCCATAAAGCAAATTGTATAGAAAAAGCCAAACCTGGAAAGGAATCTGTAGGTATTGAAATTCCAGACACTGTTGTTTTGTCTCGGTCTGCCGCTGCAGTTAGTTATATTAATAATAGTTGCAGTAATTATCAACCTATGAACTATAAGGAAAAAGAGAAGAATAAGCAAATTGAATCCCATGATAGTCTGGTTGGGTCAAACTTTGGAGGAAAGAGATCGACTGATGACATAGAAGGAATAAACAGAGAGAAGAGAGTCAAATATTACTCAGAGCCTGCCAAGTTTGGAAGAACAAGAAGTGATGAGGATCGTGAAATAAGGAAGGAATATTATATCTCCAGTGATAGCAGGTCACGTGTTGTGTGGAATGCAGAACGACGTCGCAAGTTCACCGACGCCCTCAACAAGCTAGGTGATAAATGTAATATCACTCTCCCAGGAGTTATTATTATTCTGAAGTCATTATTATTGCTTAATGCTTACCAAATTTCTTAGCAATTCAGTTTGCGTTTGAATTCAACGATGCATTTCTAATTACTGCTTATTATGTTTCTCTCTGATCCCAAAGCTCGCCCAAAACTTATACTGAAGATGATGAATGAACCATGTTTGACCCTGCGCCAGGTCGCAAACCACCTGCAGGTATTCTCTTCTATCAAGTTTGCTTGCTATTTGCATACCATAAACTTTTTAGTTTTTTAGTTATAAATCAATGAGGAATTTGATCCTGCCACTGTTTCAGCTAGCAAGATTCGCAATTCTGGTTACTCCTGTTTGTTCATTTTGCTAGAAGCTTCTACTATTTACTTGTCTGCATAAAATTGAATTTGGAGTTTAGATGTTTGAATCCGAACCCAGCTTTTATAAATAATCATATTTCATGCATTATTGTCGCCTATAATTGCTTTCTATGTTAATTTATATCCTTCTATATCTTTTGCAGTCAAATTAGAAGTTCCTTTTCCCTTCTTATTAGCAAATACGTCGTAGAAAAGACGGTCTTTGCTTATTTGAATATGATAATGGTTTGTTTAACCTATCTTATGCATTTCTTATATAATTTTTATAGTATAAAATTTTTTCTAACAATGTATTATCCCATCAGAAATACAAAGCTCAAGTAGAGTGCATTAAAAGGAGGAGAGAAAATAAATTACCTTCTAGGATGGAGGCGGCATCCAAATCCAATTCCTCAGCCAGAACTCAGCTTCCTTCTCTGCTTCGAAAGCAGCATCACGAGATGAGCAGATTTAGAAATGGAGGTTTGACTTCTGTTTTAGGGAGGGATAGATTCCGACTTATCGTGCCTAAAACTCTGCATAATCCTAGACTGCCTGTTAGTGACTTCGTGAATCGTGGTCTCAGAATGCTTAACCACAATTTTCAGCATGTTGGCTTAAACTACGATTCAGTTTCATTTAACGTCAGTAAGGAAGTTGGATTCTGCCCTGATAACATTCAAACATTTCGAAAGGAAGGGAGTACTTTTCGTGCTGACACTAGTGGGAAGTTTGCTTTAGCAGGAGGGGGTGTTGAAACATCTGAGTTGAACTTTCCAAATGTCTCTAAAACAATTCCGGAGGTAGCTTCTTCTCACGTATTTGATGAAACACTGTTCCCAGACAATCTTCTTGATGTAATTCAGCAGCTAGATTTGACTGCTTTTGAAATTGAAAACCAAGAAGCAAGGGAATGTAGTGGCACATCAGAAGAGATTCAGTCGATGTCGATGGAGATCACTTTGCCTGACTTAACTAACTCGGACAATGTTGCTCCAGATTTTATTGATGGGGGACAGGAGCTTCCTGCTGCTTCTGGAAATGAAGGAAGCCAACCATTGGCAGACTATACTGATCTCTTAAAAGTACTAGAAGATGATCCATACAACTTCAGCAGCGACTTAAGTCTGAGCGACGTTGATAAATACTGTGAATGGCTGAGGAACACTGTGCTTGAAAACAGAAGCGGTCCAGACAGCTTTATCGGTGACGATACAGAGAAGGTTCCAATTGGAAACACCCAATAAGTAAGTATATACTGCCATTGAAACAACTGGAAATGTAGGGTATTTGTATGCTTATTGTCATAGATTCTATGCAAAATGTTTGTACTTCTCTGATGTCCTGGCTACCTTGCAATAATATAACACAAAGTGTTTCTGTTTTGGTACTTGTACAGAATCATGTTGCCAATGCACTCTCGCATCCGGAAACGAGGACGAGAATCAGATAGGAAGTTACTGAGCTATAATTACATATGGTGGGGGGAAGGGGGTAATTATATACGGGTGAGATATACGGAGTTAAAGTTCTGTTGGAAGCGAAGAGGCTTCGTTCATCCTTTAAAGTGTACAGGACTCGATAACCGCAGAAAACTAGCGTATAAACGTTACATACATATTTTAGTAAATCATAAGCTTCTTACTTATGTTGTGACTTATGCAGCTCTCCATTTTTGTGATTTATTGCTTTAAATGACTCTAGGTACTCACAATATGAACTGTTCCTTCAGGAATCTATATTGACTATAAGACCCCTACACCAGTGCTTGGCACTGAAAATCCAAGAAAAAACAGTGGCTCTGCAGCAGGAGATGTTAGTTGAGAGTCCGAGTGGTAATTGGATATTGGAGAGGCAGTGAAAAGAATATTGAAATGGTTGACCCAAATGAACAGAAATCTAGCCAACAAAGATCTCAGAAAGGTCCAAGTTGAACCGTCCGAGATTTTGTTGGAGATGCTAACATAGTCTTACCAACAAAAGATTTTGATAGATAAGTATAAGATATTGGTCTATTCTCCAATGTCACTTCAAATAATATGAACAATGCATATGTAATTTAGAGGTTGACACTACGGCATAGGTTGCAACACCATCATTTTTGGAGAGGGAGATTTTTTTTTTCGAGTTTAACAAGGGTGGGAGAATTTGAACTTCTGACTTTTAAGAGAGATTATCAATGTCTTAACTAGTTGAGTTGTGCTCGAGTTGGTAAGCGATCAGAACGCCATTGATTGATGGGATGAGATCATGCTTGTTCACTTTATGCGGCTCCTCTCTTGAAAATAATGCATAGGCCATCCATAGTCAACAACAAGCCGAGAGATCAAATCTCCAAAGAATAATAGTGGTTAATTTGTACAGTCCAACCATTTTTTAAGGAAAAAAAATTACTAATTAAAAATTTCTTTTTTTCAGGGGTTCTTCCTCTTCAAAATTATTTATTTCAATTTGAGGTTGGATTTAAGATATTAAAAAAAAATCATTCTCAAATGAATGTCAACTTGCAAAATGAAACATAAAGGATCCTTTTGGGGTGTAAATAATTGAGGGTGTAATTTATTTTAAAAGTTAAATAAATTATACTTATTTTTTCATATACTTTTTATGTTTATGTTAATTTTCTCTTGGTACTTTTAAAACTTTTGTTTTGCATACTTATATTTTAATTCATTAATCTCAATCGTGTCTATGAATTGATGAAAATTTATAATTATATTTAACATATTTTCAAGTTTTACTTTTTGGTAACCAAAGAGTAAAATAGTTTGCTCTTTCTTTTTTTGCCCTTTTAAAGCCAATACTTTTTTCTTAAAAATCAGTTAAAAATCATTTTGTAAACGATCCCCGCCCCCCCCCCCCCCCTTCTTTGGTCTTTCAAGCCTAAGTTAAAATTAGTTAAATTAAGAAATCCATTAAATTACTTTTTCCAAATATCTAAAGTTCAACTTAATCCTTTGTCATATTTAAGTTTGAATAAAAAGAAACTAACTTAACTCCAACATTTAAAAACAATCTCAAAAGGAAATGGGATAGAGAATACCTTGTTGGATAACAATTTTATTTTCAAAAATTGAACTTGTTAAAGAACTTTGTTAAAACTAAAATCATAATTCGTATTAAACAATAATTCCATGGAGTAATTGCAATGAGAATGGTGAACTATCCAATACTCCCTAAAAATTGAGATAAAAAAGGATAAAATAATGAAATATATCGAACTCAAGCCTAATATATTTAAGATCTTTTAAAGAAACTGAATTTGTCTCATATAAAATTTTGCTCGATACTCGCAACTATAGAGAAAATATTGTCATTGAATAAAGGAGAATTAATTGAAAAATGTACATACTTTATATAAACGCAAGTTGTTGAAAGGCTACCATGTTTAATTCATACAAGGCCAAAAATCCAATTTATTGTTAATAAAATTGAACCAATTCTTGCAACACATCCCACTCAGATTCATTGGGAAGCAATATATCTTGCATACATATATTATCATATAGAATATCATAAAATTAAATAAAAAAAAGATAAAAAATATAATATGTAATGGTGGTAACGGATACCGAATCAAAATATAGATCTCTCACCCATGCAACAATTGAATTGACTTCAATCTCTTCTCTCAAAAAAATTAAAGTTTGTTTCTTCAAAAGCTCCTACCTTTTGATGTGATAGTATCGGTACTCTTTCTCTCACAGTCAACTCAATCTTTCATAGATGATAGAAGAAAAGGTCTCTTGAACTTTAACTTGCATTTCATTGAGAGGGACAAAATTTCTTGCCACAAACAATCAACTTACAAATCTCTTCATGAAAAGCCTAGTAAAAAACTAGACACTATAAGTTTGATTCTAACATCCCTTTCACTTCTAGAGATCTTAGAAAGACACTAAATACAAAACAAAATGAAATACAACACTTTTAATAACTATCTTTTTTTTTTCTTGAAAAATATTATAATTCAAACAAAAAAGTGAGAATTCAAATCTTCGACCTTTAAGAAAAGTTACCAATATTATGATTTGTCATATCAAAACTATACAACATGGGTTTGAATTATTCCTCTCTCTTTCTTTTTCATCTATTTTGAAAGTTTCACAATTATTATGAGAGAGAATTTTTCTTAATTATATATAGATAATTTGTTTCAAAAAGCAGCCAAGTTTCTGGAAGCAGCAAGTTTGTTATAGATTTCCAAAACCAACTTGGCATCAACTTCTTCCCCACAAGAAACCAGAGAGACTTGATGGTGGCCAGGCTTTGGGATCCTGTTCTTCCCACCTCCTCCGAAGGCTCCAATGGCGTACATGTTCCCCACGCTGTTGGCCACTCTCATCATCATCTCCACATATGCGTCGTGAAACCTCGCCAGCATCTTCAATGGCGACGCCATCTTCAGCCGCAGCTTCGGAGCTCTTCTCATCCGCCATAGCCGCCCCAGCCTCAACCTTCTTGATCTCTTGTTTGTTCCCTCTGCAGTCCCACTTCTTAGCCTCTGGTATCTTCTTCTCCTCCAAATCCTCCTCAAGCTTTCTGAAGATGGCGCCATACTGA ATGGAGGAAATGGGTTATTGGGTGACTGATTCTCTCCCTAGCTTTGCCAAAAATCTCCATATCTTGCTGGTGGATCATGACCCGCTCTCTCTCAAGCACTTGGCTTCCTTGCTCGAGCAACAGTCCTACAATGTTACCACCACTCAACTAGCATCTATTGCACTATCAATGATTCAGCAAAAAGTTATGTCCTCAGGGATGAATTTGAACGTGGCTACAAAAGCATTGGCAGAAGGAGCGTGCTATTTTCTTCAGAAACCTATTTCCAAGGATGATCTCAAATACGTATGGCAACACGCGTATCGAAAGAACAGAAATGCAAACAAGCAAACCCATAAAGCAAATTGTATAGAAAAAGCCAAACCTGGAAAGGAATCTGTAGGTATTGAAATTCCAGACACTGTTGTTTTGTCTCGGTCTGCCGCTGCAGTTAGTTATATTAATAATAGTTGCAGTAATTATCAACCTATGAACTATAAGGAAAAAGAGAAGAATAAGCAAATTGAATCCCATGATAGTCTGGTTGGGTCAAACTTTGGAGGAAAGAGATCGACTGATGACATAGAAGGAATAAACAGAGAGAAGAGAGTCAAATATTACTCAGAGCCTGCCAAGTTTGGAAGAACAAGAAGTGATGAGGATCGTGAAATAAGGAAGGAATATTATATCTCCAGTGATAGCAGGTCACGTGTTGTGTGGAATGCAGAACGACGTCGCAAGTTCACCGACGCCCTCAACAAGCTAGGTGATAAATCTCGCCCAAAACTTATACTGAAGATGATGAATGAACCATGTTTGACCCTGCGCCAGGTCGCAAACCACCTGCAGAAATACAAAGCTCAAGTAGAGTGCATTAAAAGGAGGAGAGAAAATAAATTACCTTCTAGGATGGAGGCGGCATCCAAATCCAATTCCTCAGCCAGAACTCAGCTTCCTTCTCTGCTTCGAAAGCAGCATCACGAGATGAGCAGATTTAGAAATGGAGGTTTGACTTCTGTTTTAGGGAGGGATAGATTCCGACTTATCGTGCCTAAAACTCTGCATAATCCTAGACTGCCTGTTAGTGACTTCGTGAATCGTGGTCTCAGAATGCTTAACCACAATTTTCAGCATGTTGGCTTAAACTACGATTCAGTTTCATTTAACGTCAGTAAGGAAGTTGGATTCTGCCCTGATAACATTCAAACATTTCGAAAGGAAGGGAGTACTTTTCGTGCTGACACTAGTGGGAAGTTTGCTTTAGCAGGAGGGGGTGTTGAAACATCTGAGTTGAACTTTCCAAATGTCTCTAAAACAATTCCGGAGGTAGCTTCTTCTCACGTATTTGATGAAACACTGTTCCCAGACAATCTTCTTGATGTAATTCAGCAGCTAGATTTGACTGCTTTTGAAATTGAAAACCAAGAAGCAAGGGAATGTAGTGGCACATCAGAAGAGATTCAGTCGATGTCGATGGAGATCACTTTGCCTGACTTAACTAACTCGGACAATGTTGCTCCAGATTTTATTGATGGGGGACAGGAGCTTCCTGCTGCTTCTGGAAATGAAGGAAGCCAACCATTGGCAGACTATACTGATCTCTTAAAAGTACTAGAAGATGATCCATACAACTTCAGCAGCGACTTAAGTCTGAGCGACGTTGATAAATACTGTGAATGGCTGAGGAACACTGTGCTTGAAAACAGAAGCGGTCCAGACAGCTTTATCGGTGACGATACAGAGAAGCCAAGTTTCTGGAAGCAGCAAGTTTGTTATAGATTTCCAAAACCAACTTGGCATCAACTTCTTCCCCACAAGAAACCAGAGAGACTTGATGGTGGCCAGGCTTTGGGATCCTGTTCTTCCCACCTCCTCCGAAGGCTCCAATGGCGTACATGTTCCCCACGCTGTTGGCCACTCTCATCATCATCTCCACATATGCGTCGTGAAACCTCGCCAGCATCTTCAATGGCGACGCCATCTTCAGCCGCAGCTTCGGAGCTCTTCTCATCCGCCATAGCCGCCCCAGCCTCAACCTTCTTGATCTCTTGTTTGTTCCCTCTGCAGTCCCACTTCTTAGCCTCTGGTATCTTCTTCTCCTCCAAATCCTCCTCAAGCTTTCTGAAGATGGCGCCATACTGA ATGGAGGAAATGGGTTATTGGGTGACTGATTCTCTCCCTAGCTTTGCCAAAAATCTCCATATCTTGCTGGTGGATCATGACCCGCTCTCTCTCAAGCACTTGGCTTCCTTGCTCGAGCAACAGTCCTACAATGTTACCACCACTCAACTAGCATCTATTGCACTATCAATGATTCAGCAAAAAGTTATGTCCTCAGGGATGAATTTGAACGTGGCTACAAAAGCATTGGCAGAAGGAGCGTGCTATTTTCTTCAGAAACCTATTTCCAAGGATGATCTCAAATACGTATGGCAACACGCGTATCGAAAGAACAGAAATGCAAACAAGCAAACCCATAAAGCAAATTGTATAGAAAAAGCCAAACCTGGAAAGGAATCTGTAGGTATTGAAATTCCAGACACTGTTGTTTTGTCTCGGTCTGCCGCTGCAGTTAGTTATATTAATAATAGTTGCAGTAATTATCAACCTATGAACTATAAGGAAAAAGAGAAGAATAAGCAAATTGAATCCCATGATAGTCTGGTTGGGTCAAACTTTGGAGGAAAGAGATCGACTGATGACATAGAAGGAATAAACAGAGAGAAGAGAGTCAAATATTACTCAGAGCCTGCCAAGTTTGGAAGAACAAGAAGTGATGAGGATCGTGAAATAAGGAAGGAATATTATATCTCCAGTGATAGCAGGTCACGTGTTGTGTGGAATGCAGAACGACGTCGCAAGTTCACCGACGCCCTCAACAAGCTAGGTGATAAATCTCGCCCAAAACTTATACTGAAGATGATGAATGAACCATGTTTGACCCTGCGCCAGGTCGCAAACCACCTGCAGAAATACAAAGCTCAAGTAGAGTGCATTAAAAGGAGGAGAGAAAATAAATTACCTTCTAGGATGGAGGCGGCATCCAAATCCAATTCCTCAGCCAGAACTCAGCTTCCTTCTCTGCTTCGAAAGCAGCATCACGAGATGAGCAGATTTAGAAATGGAGGTTTGACTTCTGTTTTAGGGAGGGATAGATTCCGACTTATCGTGCCTAAAACTCTGCATAATCCTAGACTGCCTGTTAGTGACTTCGTGAATCGTGGTCTCAGAATGCTTAACCACAATTTTCAGCATGTTGGCTTAAACTACGATTCAGTTTCATTTAACGTCAGTAAGGAAGTTGGATTCTGCCCTGATAACATTCAAACATTTCGAAAGGAAGGGAGTACTTTTCGTGCTGACACTAGTGGGAAGTTTGCTTTAGCAGGAGGGGGTGTTGAAACATCTGAGTTGAACTTTCCAAATGTCTCTAAAACAATTCCGGAGGTAGCTTCTTCTCACGTATTTGATGAAACACTGTTCCCAGACAATCTTCTTGATGTAATTCAGCAGCTAGATTTGACTGCTTTTGAAATTGAAAACCAAGAAGCAAGGGAATGTAGTGGCACATCAGAAGAGATTCAGTCGATGTCGATGGAGATCACTTTGCCTGACTTAACTAACTCGGACAATGTTGCTCCAGATTTTATTGATGGGGGACAGGAGCTTCCTGCTGCTTCTGGAAATGAAGGAAGCCAACCATTGGCAGACTATACTGATCTCTTAAAAGTACTAGAAGATGATCCATACAACTTCAGCAGCGACTTAAGTCTGAGCGACGTTGATAAATACTGTGAATGGCTGAGGAACACTGTGCTTGAAAACAGAAGCGGTCCAGACAGCTTTATCGGTGACGATACAGAGAAGCCAAGTTTCTGGAAGCAGCAAGTTTGTTATAGATTTCCAAAACCAACTTGGCATCAACTTCTTCCCCACAAGAAACCAGAGAGACTTGATGGTGGCCAGGCTTTGGGATCCTGTTCTTCCCACCTCCTCCGAAGGCTCCAATGGCGTACATGTTCCCCACGCTGTTGGCCACTCTCATCATCATCTCCACATATGCGTCGTGAAACCTCGCCAGCATCTTCAATGGCGACGCCATCTTCAGCCGCAGCTTCGGAGCTCTTCTCATCCGCCATAGCCGCCCCAGCCTCAACCTTCTTGATCTCTTGTTTGTTCCCTCTGCAGTCCCACTTCTTAGCCTCTGGTATCTTCTTCTCCTCCAAATCCTCCTCAAGCTTTCTGAAGATGGCGCCATACTGA MEEMGYWVTDSLPSFAKNLHILLVDHDPLSLKHLASLLEQQSYNVTTTQLASIALSMIQQKVMSSGMNLNVATKALAEGACYFLQKPISKDDLKYVWQHAYRKNRNANKQTHKANCIEKAKPGKESVGIEIPDTVVLSRSAAAVSYINNSCSNYQPMNYKEKEKNKQIESHDSLVGSNFGGKRSTDDIEGINREKRVKYYSEPAKFGRTRSDEDREIRKEYYISSDSRSRVVWNAERRRKFTDALNKLGDKSRPKLILKMMNEPCLTLRQVANHLQKYKAQVECIKRRRENKLPSRMEAASKSNSSARTQLPSLLRKQHHEMSRFRNGGLTSVLGRDRFRLIVPKTLHNPRLPVSDFVNRGLRMLNHNFQHVGLNYDSVSFNVSKEVGFCPDNIQTFRKEGSTFRADTSGKFALAGGGVETSELNFPNVSKTIPEVASSHVFDETLFPDNLLDVIQQLDLTAFEIENQEARECSGTSEEIQSMSMEITLPDLTNSDNVAPDFIDGGQELPAASGNEGSQPLADYTDLLKVLEDDPYNFSSDLSLSDVDKYCEWLRNTVLENRSGPDSFIGDDTEKPSFWKQQVCYRFPKPTWHQLLPHKKPERLDGGQALGSCSSHLLRRLQWRTCSPRCWPLSSSSPHMRRETSPASSMATPSSAAASELFSSAIAAPASTFLISCLFPLQSHFLASGIFFSSKSSSSFLKMAPY Homology
BLAST of Sgr001809.1 vs. NCBI nr
Match: XP_038875544.1 (uncharacterized protein LOC120067959 isoform X3 [Benincasa hispida]) HSP 1 Score: 867.5 bits (2240), Expect = 8.1e-248 Identity = 459/576 (79.69%), Postives = 496/576 (86.11%), Query Frame = 0
BLAST of Sgr001809.1 vs. NCBI nr
Match: XP_038875539.1 (uncharacterized protein LOC120067959 isoform X1 [Benincasa hispida] >XP_038875540.1 uncharacterized protein LOC120067959 isoform X1 [Benincasa hispida] >XP_038875541.1 uncharacterized protein LOC120067959 isoform X1 [Benincasa hispida] >XP_038875542.1 uncharacterized protein LOC120067959 isoform X1 [Benincasa hispida]) HSP 1 Score: 848.6 bits (2191), Expect = 3.9e-242 Identity = 458/609 (75.21%), Postives = 495/609 (81.28%), Query Frame = 0
BLAST of Sgr001809.1 vs. NCBI nr
Match: XP_011655478.1 (uncharacterized protein LOC101203501 isoform X3 [Cucumis sativus]) HSP 1 Score: 835.1 bits (2156), Expect = 4.5e-238 Identity = 437/575 (76.00%), Postives = 483/575 (84.00%), Query Frame = 0
BLAST of Sgr001809.1 vs. NCBI nr
Match: XP_038875543.1 (uncharacterized protein LOC120067959 isoform X2 [Benincasa hispida]) HSP 1 Score: 835.1 bits (2156), Expect = 4.5e-238 Identity = 454/609 (74.55%), Postives = 492/609 (80.79%), Query Frame = 0
BLAST of Sgr001809.1 vs. NCBI nr
Match: XP_008467176.1 (PREDICTED: uncharacterized protein LOC103504590 isoform X3 [Cucumis melo]) HSP 1 Score: 827.0 bits (2135), Expect = 1.2e-235 Identity = 434/575 (75.48%), Postives = 485/575 (84.35%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy Swiss-Prot
Match: Q9C9F6 (Putative two-component response regulator-like APRR6 OS=Arabidopsis thaliana OX=3702 GN=APRR6 PE=3 SV=2) HSP 1 Score: 97.1 bits (240), Expect = 8.7e-19 Identity = 93/308 (30.19%), Postives = 141/308 (45.78%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy Swiss-Prot
Match: A2XE31 (Two-component response regulator ORR21 OS=Oryza sativa subsp. indica OX=39946 GN=RR21 PE=3 SV=1) HSP 1 Score: 81.3 bits (199), Expect = 5.0e-14 Identity = 77/306 (25.16%), Postives = 125/306 (40.85%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy Swiss-Prot
Match: Q8H7S7 (Two-component response regulator ORR21 OS=Oryza sativa subsp. japonica OX=39947 GN=RR21 PE=2 SV=1) HSP 1 Score: 81.3 bits (199), Expect = 5.0e-14 Identity = 77/306 (25.16%), Postives = 125/306 (40.85%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy Swiss-Prot
Match: B8AEH1 (Two-component response regulator ORR23 OS=Oryza sativa subsp. indica OX=39946 GN=RR23 PE=3 SV=1) HSP 1 Score: 79.7 bits (195), Expect = 1.4e-13 Identity = 77/300 (25.67%), Postives = 122/300 (40.67%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy Swiss-Prot
Match: Q6K8X6 (Two-component response regulator ORR23 OS=Oryza sativa subsp. japonica OX=39947 GN=RR23 PE=2 SV=1) HSP 1 Score: 79.7 bits (195), Expect = 1.4e-13 Identity = 77/300 (25.67%), Postives = 122/300 (40.67%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy TrEMBL
Match: A0A1S3CSW8 (uncharacterized protein LOC103504590 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103504590 PE=4 SV=1) HSP 1 Score: 827.0 bits (2135), Expect = 5.9e-236 Identity = 434/575 (75.48%), Postives = 485/575 (84.35%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy TrEMBL
Match: A0A1S3CSX7 (uncharacterized protein LOC103504590 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103504590 PE=4 SV=1) HSP 1 Score: 808.1 bits (2086), Expect = 2.8e-230 Identity = 433/608 (71.22%), Postives = 484/608 (79.61%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy TrEMBL
Match: A0A5D3BMQ3 (Two-component response regulator ARR11 isoform X3 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1728G00010 PE=4 SV=1) HSP 1 Score: 795.4 bits (2053), Expect = 1.9e-226 Identity = 429/608 (70.56%), Postives = 481/608 (79.11%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy TrEMBL
Match: A0A1S3CSW9 (uncharacterized protein LOC103504590 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103504590 PE=4 SV=1) HSP 1 Score: 795.0 bits (2052), Expect = 2.5e-226 Identity = 429/608 (70.56%), Postives = 481/608 (79.11%), Query Frame = 0
BLAST of Sgr001809.1 vs. ExPASy TrEMBL
Match: A0A0A0KPK0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G576720 PE=4 SV=1) HSP 1 Score: 747.7 bits (1929), Expect = 4.5e-212 Identity = 399/548 (72.81%), Postives = 445/548 (81.20%), Query Frame = 0
BLAST of Sgr001809.1 vs. TAIR 10
Match: AT1G68210.1 (pseudo-response regulator 6 ) HSP 1 Score: 97.1 bits (240), Expect = 6.2e-20 Identity = 93/308 (30.19%), Postives = 141/308 (45.78%), Query Frame = 0
BLAST of Sgr001809.1 vs. TAIR 10
Match: AT4G16110.1 (response regulator 2 ) HSP 1 Score: 75.9 bits (185), Expect = 1.5e-13 Identity = 80/301 (26.58%), Postives = 118/301 (39.20%), Query Frame = 0
BLAST of Sgr001809.1 vs. TAIR 10
Match: AT2G25180.1 (response regulator 12 ) HSP 1 Score: 75.5 bits (184), Expect = 1.9e-13 Identity = 78/311 (25.08%), Postives = 119/311 (38.26%), Query Frame = 0
BLAST of Sgr001809.1 vs. TAIR 10
Match: AT2G01760.1 (response regulator 14 ) HSP 1 Score: 74.3 bits (181), Expect = 4.3e-13 Identity = 91/339 (26.84%), Postives = 138/339 (40.71%), Query Frame = 0
BLAST of Sgr001809.1 vs. TAIR 10
Match: AT3G16857.1 (response regulator 1 ) HSP 1 Score: 72.0 bits (175), Expect = 2.1e-12 Identity = 78/300 (26.00%), Postives = 122/300 (40.67%), 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
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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