Sgr020223 (gene) Monk fruit (Qingpiguo) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGTCCGACAGCTTCACCGACAAGAACGTCGTTTTCAGAAAATTGAAAGCCAAGTCTGAAAACAAGGTATTGCTTTTCTTTCTCTATTCATGTCTTAGTTCGTTTTGCTCGTTCGAATTACTCTTTGTTTCATTTCGGTATTGTATTTCTTGCTTCCGATCTGTGAGTTTCATGCCGAGATCTCTGATTCTGCGTTGAAACAAATAGACCCACTTGGTTGGCCGTGGTTATTGTCGATTTTTTTTCTTCTCTCTTTCGTGTTGTTTCAGATGTGTTTTGATTGCAATGCCAAGAATCCGACTTGGGCTTCCGTCACCTTTGGGATCTTCCTCTGTATTGATTGCTCGGCCGTGCATCGTAGCCTCGGCGTCCATGTCAGCTTCGTCAGGTGATTTCAGTTTGGATTTTGATTTCGACGCCTTCCGGTTTTCACTTTAAACCAGCTATGTATCTGATTTATGGTTCTGAATCGACCTTCCTTGAATCTTTCTCTATATGTTTATTTAGCCAATAGAGTTTTTGTAGTTATTAGGGGTGCATTGCTTCTGCCTTACCCTTGCCTTCAGTCATCTATGTTAAACCCTGTCCTCCTGCTTGCTCACCCTGTGTTATTCTCTAGCATGCACTTATGACTTATGTTTCAGTGGCATGTCCTGAATATTTTTTGAGATGGGTTCATGTAATATAAAATTTGACCTCATACATTTACAAAAGGTAATATTGATTGGGATATAGTATTGAAACCAATTAAGACAACCAAAAAAATTCATTCAACCTTGTATCTCAATTGATGCCATAGATGTATACACAAGAAAGACCTAAACCCCTTCGGAGAATGCAGTTGCTTCCATTCTTTGGGAAATTTAGAAACGGGGAATAAATGTCTTTTTGAAGATAGCAGGGCGATTTAGAAGAGACTTCAGATATAATTAGATTCAGTACCTATATATGAGTGTTCAATGCTAAAATGCTTTGTAACTACCCCTTTTTAGTTTTTGTTAGCTAGGTGTCTTTGTTTCCCCATTTAATTCTCTAGCTAGGCTACTGGGGTTTATTCAAGTTGCCTCTCCTCTTCTGTGAACTTCATTGTTAGTCCATTACTTATCAAAACGAAATGATGCAGTAAAAGGTTTAATTAAAGAGGTTTAATGTTTTCTAGAACTATACTTAAATTAAAAATGAAGCAAATAACAATAAAAAATAGTTTACTTAATTGGAATTGAAAAGAGAACTTTACATCATTGCAGGGACTGAGAGAATGAAAGCATCCTTGGTATTAGAAGTAATGTCAATTTCATTTTGACATTCTTAAATGTCATTTTTGAATCTTAAGTTTGTTGCTCGTTGTTTTGGATCTTAAATTTTTCGGTCTGGTGGAGTTATGTACTTGTTAGAAATTTGAGTCTATAATCACTATTAAGATAACATCAGTAGAAATAACTACATATACTAAGCCAACAGAACTTTTGGCTGCATTCCGGAAACTGTAAGTGCACTTTATCTCTGATGCCTTTGCAAGTCCTGTTGGTATTCAATATACATGGCTTGTGTACCTTGCTACTCAGGATTTCAAGTGGCATGAAGTGTCCAAGGTTATGATTCTTTTGAAAAGTGTCTGAGGGTAGGGTACACGCAATTTGCTCCCTTAGGATGGGAATTATTTTGATGTCATTAATGTCTTCAATTTACGTAGGTCAACGAATTTAGATTCTTGGACTCTGGAGCAGCTGAAAACAATGAGCTTTGGAGGAAATAACCGAGCACAGGTTTTCTTTAAGCAGCATGGATGGACTGATGGAGGCAAAATTGAGGCAAAATATACGTCAAGAGCTGCCGAATTGTATAGACAATTACTTTCAAAAGAAGTTGCTAAAAGTATGGCGGAAGAGACAGGGTTGTCATCTTCCCCGGTTGCTTCTCTGTCAGCACAAGCAACAAATGGACCTTCTGATATCAAGAATAATGAAATTGCAAAAGACAATGCCTCGGGAAAGCAAGAAGCACCGGAAATTTCTGCTTCACCAAAAGCTTCTCAGGTGGTATTCTCAAGTACTGTGAAGAAGCCCCTTGGCGCGAAGAAGCCAGGGAAGACTGGGGGACTTGGTGCCCGAAAGCTTACTACAAAGGTAATAATGACATGCTTCTACCGCTGTGAATAGACTGTTTATTGCACGTGGATTATTGTTCTTTTAGATAAAGTCTGTAATCCTAATTTACTATTGACTTCAAAATTGATATTGGAATGCATTTTGCTTGACTGTATAGTTTGTATTTCATGCAGCCAAGTGAAAATTTATATGATCAGACACCTGAAGAACCCACAGTTCCAGTTTCATCTTCTATTAACAAAACTCCTGCAACTGGTTCATCTCTTGCATCTCGATTTGAATATGTAGAAAATGTCCAATCATCTGATGTGAATTCTAGTGGCTCTCATGTAGTTAGCCATGTAGCTCCCCAAAGGCGTCGGGCTTCTTTGCTGAATTTGGAATGGATGGTGGTTTTCCAAAGAAAGCCAGTTCCAGTTCCTCGAAAGTGCAGGTTAGACATTGCACTTCTGACTGAGTTTCTAATGAATTTGGAATACTTCCCTAAATCAGCCATGAAAAAATGAGGAATTGTCTAACGTAGGCTATAAATATAGAAACTTTTTTCTTTTGTCATCCTGATTCATGAATCATGTTTGTCTTTAGTCTTGCATTATTATTTGGTATGTCTTTATCTTTATGCATCAGTAACTAGCTTTTTGTATCTTGTTTTTTTATTTAAATGTAATTACAATTGTGGGGGTGGGGATTAGGCATTTTTGATGTCTATAAGAATGAAGTACTCTATTTTCTTGGAACATTTTCTACATTTTGTTCTCTTTATATACATGAACATGCACATATATGGATAAGAAGCAGATTTGTTACAAGTAAAACAGTACCATCAGGATTCCCATAAAAAGAATCCTCAGTAATGCATGCATAATAGTATCATGATGGCTGAGCACATGGGTTCATAATAATGTCTCTTGTTCATCAAACAATGCAAGTGGAGTTTTTACAATAAATAAAATTTCTTCATTTGTCTCTGTTCTCACATTATGATGATGTTAGATTGAAGAAAGTGATGAAGCAAGGAAGAAATTCTCCAATGCTAAATCTATTTCATCAGCCCAATATTTTGGTGATCAGAACAAAGCTGATGCTGAAGCTCAGGTCTCCCTGCAAAAGTTCTCGGTACGTATCTTTATCATTAGCAAAGTGGAAATTGTTGTCCAGAGTCCAGACTTCCCTGTATATATACGGGTATCCCTGGACTATAAACGAGATTTTGTTTAATATATACTTCGCACAGATTGGATGGAAGTCATTGTTTCTTTGTACAGCAGAGCTCTCTGAATGTTCAAATTTTTGAAATGGTATAGTGCTTTCTTTCCTCTTATTCTCCATCCTTCTATTACCAGGGTTCAGCTGCCATCTCTAGCGCCGATCTATTCGGTCACCAGCACGATAATACTTCCGTTGATCTTTCCGCAAGCGACCTTATTAACCGGATTTCTTTCAGGTTCACACTATCCTCTTTTGTTTGCATCACTTTTTCGATCTAATTAAGTTTTTTCACTTTTGCGAGCATTGCATTACATACATCCATATACTTTGTCAGGCACAGCAGGATCTTTCTTCTCTCAAGAACATTGCAGGAGAAACAGGGAAGAAGCTAAGCTCTTTGGCATCCACATTAATTACAGATCTTCAGGACAGAATCATTTGATACATTTTTAAGTGTTCTCCATTGTGGAATTTGGCTCGAACTCGAATACGATACAGTTTTAATTACCGGCCGTTTTTATTACCAAGGAATGTAAAGAAATTCAGTATACAAATTCTTTCACAAAACAACCTTACCCAGGACTTTGAATTGGGGCTGGTTATTTTGTTTCTCTAGCAGCTGCAGTGAACATGTGCTTTTAGTTCTCTTTTTGTAGCAAACATACCAGATTTTCACCACCCAGAGTTGGCATTCTTATCTCATCAGAGCTTAGAACCTGAATTTGTATTGAGTTTTGCTTCTAGTTGTGAGTTTATTGGATGTGTTCCAATAAATAATAGATTGCCTATACTTAAAAAATAACATATAATTCTACTGTGTTAATTTTTTTGTTGAATTTTCAGTCCATGAATTTTGTGTTTATTTAGTTTGTGATCTTTGAAAAGCTTATGTCAGTACTGCGAGTGAAATATTTATGTGACATATCTATTAGATAAAGTTATCTTTTATAGTGAAAAAAACCGCGGATGACCATTTTCATATGAAAAATGATTTGCTTGAAAAAATCTCTTGTATATCAAGAGTCATTTGTGTTGTCGGAATGAACTTTATTACGTATGTCAACAAAATCTTTTTTTCGAGTACATCAGTAAATATGAAGAGGTTTAGGAAAGCAGATGGTTAAGGAAACGGTTTAAAATATTAATGGAGATAGAAATATATTTAATTAGAATAATAAGATTCTCAACTAAAAAACTTGCCAAAGAGTTAATTAAAATATATATAAAATCTGGAAATTAAATATTCAAATCATGATTAATGTGGGGGAAGAGCAAAACATGTAATATAAATTTGCAAAAAATAATAAAATATATAAAATGTAAAGTGTGGTTCTTTCTTGAATGATATAATATTTTTTGAAAATTTAGAGATAAATATACACATTTTAAAATAAACTTGAAAATTAGGAGACCAACGTGAGATTTAAACTCTTAAAATTTAGGAATTAAATTTATAATTTAACATTATTTTTCTTATCGTAAAATTCGAGAGTTTAATTTACACTTTATTTTTATTGCATTCGATAGGAGGGAGTAACAATTATTTTTTCCCTAAAATCACGATGAAATGATAATGAAAGACATTTAGCCAACCTGGACATAGCTTAATTGGTTAATGCATTAGTAATCTAGACGCTTACACCTAACTACCATTTTTAAAAAAAATAGAGACTCAATTCATAAAAGATGATTTTATCACTTATTTAAATTTATAGTTAATTAAAAAAAATTAAAATTTTAAAGTTAAATTTAACTTGTGAAATCTTTCATCTTGATTTAAGAGGAAAAAAAAATCTTTAGATAGGACTTAGTAGGCAGTAGTTCAGCATGAGGAGTCAAAATAGAAATTCGTAGTCTACGCGACATTGTGTTTACTGTTTAGAGGTTAAAGCAACCGAAAATGAAATCAACTGTCGATTATCGTCTTTGGCGTCCTTCCCTCTTCCCTCTCAATTTTTTCTTTTTGTTCTGAAGCGGAAACGACGAATTTGGGGTTTTGAGTTTTCCCTCCCTTTTCAAAATATATATTAAAAGCCCTCCAATTTCACCCCCAATTGATTTTCGTCTTCCCTCTTCTTTTCCCCCGCTCAAATTTGTAACCAAACTTCCTCTTTTTTTCGCTTCTAAATCTCCAAAACCCCATTTCTCTGTTTCAAGATCATTGTAGAGGGTGTTTTTCTTGTATTCAGCATAATTATCTTGTTCGACTCTCTTTTCTGAGTCTTTTATGGCGACCCATCTCGCAGAATCTCAAGAAGTTGATCGTTTCTTGGTTCCTTCGTTTGAAATTCAAGGTGGGTCTTGGCCCTCGACTGCCGCAGAAGCCCTAAGTCAACAATCTCTTGCTCCTCCATTATCTTGCCGGAGTGGGAATTTTCCATTTTCACATATGGAAGGCTCTGCGAATCAGTCTTGGGGTCCTTCTTCAATAAACCCTATTGGGTCATCGTCAATTTCAACTTACTCGTCTAATTCTGATGGGGGTTTCTCAACAGATACTCTCGGTGGTAATCCCAGTGTGCTTCCTACTTGTGAAGGGCCAGAAGGTGTCGAACCATCGCCATCTTTGCCCGTTTCTTTGTTTGTCAATAGTTCGTCAATTGGTTCTTTACCGGGGTCGTCTTTGGACTGGTCTTCTTCAGAGGAGAGTTTCCCAGCAAGTTCAGTGGGTGCCCAAGAAAACAAATCTTTATCAGCGGTAAGCGCCTCTTGCAATTAGTTCTTTATAATTAGCATAATCTTTTCATTTACGTGTGTTTTTGGTTTTGATTTCGTTTATGTTCTGAACTCGTAGGGTGCGGGCTTGCAAATCTGGGCAATACATGCTTTATTAACGCAATTTTGCAGTGCTTCACTCATACTGCTCCATTTGTGGAGGGTCTTCGATCTGCCAATCATGCAATGCCTTGTAACAGTATATCCTCTCAATTTTTTTTTTAAAATTTTAATTATAGAACAGATGTTTAAGGATTACAAAATTTGCAGGGCATGGTGAAGATTTTTGTGTTCTTTGTTCCATTCGAGATCACATCGAGCTTTCATTAACTTCTCTTGGTGGGATTATCTCGCCACTTAAACTTGTCAATAACTTGAGCTGTATCCTCTTCTGTACTTCTTTTCCCCAAGATTTTACAGATTTCCATTAATGAGTGCCTTTTCTTGTTGTGCGATAGTTTATGGGGAATTTTATATCTTCTTGAAAGAAACTGCATTTTGATGGCACCAAATTCGTTCAATACAACCATGAAGTTTTCTAATCAGTAACTGATAGTAGATTTTCATTTGTAGTTTTTGGATACAAATGTTTGGTCCTGCATGTCCTGGAGGTTGCAGTTGTCTTTATACTTGTCCGTTTCATCATATTAGCTATCAAGAACTTGGTATATCGTTGTTATTCTTAAGCTATCATCAGATTTCTCATCTTGTTTCCGGAGATACCAGCAGGAAGATGCCCATGAGTTTATGCAGTGCTTCTTGGATAAACTTGAGAGATGCTTGGACTCAAAAGCAAAGGATAAAATTTCTTCCGAGGATGATGGTCTAGTGAATAAGGTGTTTGGTGGTCGTCTCATAAGCAATGTAAGAAAGAAAATTATCTGCTCTATTATGTTTTTAATATTGAGCTTCAGCGTCTTGTCTTCTCTTTAAACAATCTGCATATATATTCAGCTATGCTGCTGTAATTGTGGCCATTGTTCCGAAACCTATGAGCCTTTGGTTGACCTGAGTTTGGAGATTGAGAATGTAGACTCCCTTTCAAGTGCACTGGACTCTTTTACCAAGGTGGAGAGGATTGGAGATCCAGAGACAAAATTTAAGTGTGAAAGCTGCAAGGAAGAAGTGTTGGTGGAGAAGCAGCTTAAACTGGAAAAAATCCCTTTGATTGCGACATTCCACTTGAAGAGGTTCAAGGCTGATGGTTCTTTTGTCGAGAAAATTGAAAAGCATGTGGAGTTTCCATTAGAGTTAGATTTGCAGCCGTACACCTTGGGAGCCCAGGATGCAGAGGTGAAGTCTAAATTTTCTTGTCTTATGATGTAAAGTTTGTACTTGAAATGCCATTAGTATCTTGTAATGGAGATAATATTTGATCTCTGTAAGAAATTTTTTGTGGGGTTGCCCTACAATTGGTTTGGAGGTCCATTACTGAGTCTCTCTCTCTCCCTTTGATAATAACAGGTGGAGTTCAATTATGAATTATTTGCAATTGTGGAACACACAGGGTTTTCCTCTACTTCTGGGCATTACTTCAGCTTTGTTCGTTCGGCTCCCGATACATGGCACAGAATGGATGACTCTTTGGTATAACATTTATGAAGTATTTTTTTTTTTTAATAATTTGGTTAGTAGAGTAGGTTTTAAATTCGCTGTTTGGATATTAATTACAACCTGCTAAATCAGTGATGATTGAATTAGCGACTACTGATTATAGTCTCCTGTTCTGTTATTTGTTTCGTGTTTTCTTCGTTCTGAGATTTTTCATGGTCTTGTTGGTCCTGCATTTGGGTACTTGTCTTTTGGTTGGAAACCAGTAGAACCTTTTGGTATCTCTTATACTTTTTAATTTTAGTAGTTTACTTATTTTTGAATTGCTACATTTGATCTGATGTTGTGTTGTTGTGCTCTTTTTGGCCTTGAGGATGTGAAAAACTAATCATTAAGGGAAGGCTGATATAACTTATCTGGAACTTTGTTATATGATTTTCCTATTGGTGGAGCTAGTGATTCCCCTCCATTGATTTATGAAAGTGCGATAAGCTTGTTCCAAAAAAGAAAAAATCTCTGCTTTTGCTGTTTTGCAGGTTACTCGGGTGAGTGAAGATTATGTGCTGTCACGGGAGGCCTACATTCTGTTGTATAAGAGGAAGGGAACTTTGTGGTTCTCTAGTTTGATCGAACAACAAGACCCTTGTGCGAATTCAGATCCCTCAAATTTGTCACCCAAGTCGGTTTTAGCAAATATCGAAAATGTCTGCTCTTCATTTGCTGCTGAAACTAATGTCAATTGTGAAACTACCAATGCATCTGCGGATACTTTGGGGTTGAATTCTGCTGGGTTCTCTGGGGAAATGGGAGACAAAAAGACAGGTGCCAATGATTTGGGAAATGCTACCCCTGCTAATTTGCATATATTTGAGAGTGCAACAACTAAGTCTTCTCCTGTTGTGAACGAGAACCTCCATTCGAACGACAAAGGTCGATGTATCGACAGTTTGCATCCTCTAATGCCACTAAGATCTTCCAGCCCTGATATTAATACTTTGAAGACTCCAGGTGAAGCCTTGTTCTAATCTTTATGTTTTATATTTCAGATTGGTTGGTAGGACTGTATTAATGTAGGGAATTTGTATTTTGTTCAGAACCACAATACCGAATCCCAATCGATCACCTGAAGACGGAAAAATGCACTACGTCTGGAAGGCCATTAAACAAGGGTGTGGAAGATTCTGAAAGAAAAGCGGCCCTGAGATACATTAAGAAGAGCATGCCGAGTTCAAGAGGGTCAAAAATGATAGCTGCTATACTGGGATCCCAGAGTGAAGGCCCCTTGAACAAGAAGAGACTAAGGTCATCACCATGTAAAAGGTCAAGCCCTCCTACTAATCGTCGTAAGACAAGTCATAATTCTGTGATGCGTTTTGTGGCAGCCGAAAACTGAAGCGAATCAAGTACACTAGATTTTGCTAAGTAGTTTCCTTGGCTTTAACCTTCCTCTCTCAGGTTGTGTAGGCTCTTATTTGTTGTTTTTAGAGGTAAATATGTGGTGGAGGACCTTATATTTATTTCTAGCTAATAAGTTCAGGTTTTGGTTTGACCTTGGTCGATCGATGTTTCTTCCATCTGTATAGAGAACATTTTCAGTTCTAATGCTCAACATGTTATATAATCAAATTCACGTGTGACAATCCATTACACTATGGTTGACAGATGACAAGAGTTGTTACAATCCATTACATATGGTTCCAATTTAGTACTTTGCAATCTTGACTCATATAATGTCTACTGCAATGGCAATTTTTAAAGATGATTCCAATGATCATTAGTAGAACGATCACATCTATTTGGAGCTTTGAGTGAACAAAGAGTCGAGTTTGACAGAATCAATGTGAAAGATGGGTGATGGAGATTAGAGATACAACCCTTTTTGTTGGTATGTTGAGCAGATTCTATGCATATTCTTGTAAGTATCAAAACTTGTTATTTAAAAATTTTTCTTGCCTGCCAAACAAGAAGTATATAGAAAACACTAACAAGGCCTCCAACGACACTCTTTCGTTTCTCTCCATTTCTTCTTTTTGAACAGGAGCAGAAGGCCATGGCAGACGCAGAGGCTGGAAATGAAGTGATGGAAGACGACGTGACGACGCCGACGCGACGCCAACGCCTCTGAGCTCATCGTCGGAGGCTGCAAGTAGACATGTAGTGATAGTCATGGACGGAATGGAAGAGTTCACAACAGAACCACTCGAGTGGGCGTTGGAGAATGTCATTCAGCCTGGTTGTGTCGTTACTCTCGTCGGTGCCATGCCTTGGCTCAACATTCCTCGTAAGTCTTTTTCTTTCTTGGCTTGGCTACTTAACAACTAAATTAAAGTTTCTTCATTTTTCGTTTCACAACTTCTCATTTTTGACTATTTATTTTGATTTTCTTTGACTAATAAAAACTTTTTCTTTGCAAAGACAGTTTATAGTATAGAGACTTAGTCAGGATGACTTGTATATATTTTAATACTCATCAAGCTTAGTTAAGATAAAATATTATTGTAAAAATAGTAAAAAAATAATTACAAATTCTTGCGATTGGATCGACTACGCTCCACAAACTTAACACTACGTTTGAAACAACATCGATTTGTTGATACTCTCGAGATTACTACATAAATTATTTTGCATGATGTGAACATGTAGTTTCATCCAAAACATGGTTGGATATTTGGCCATTGAATTTGGAGGAGATGTCCTTTGTGAAAGGGGAAAGGGAGTGCATTAGTGAAGACAAGTATGCAAAACTTGAAGCTGTGTTATTGCTTGCAGAAAATATGGGGTATAATCTTTTTTTTTTTAAATTTAGTATTCGGTTAATATTCTTAAATCATATTTAATTATTGCAAGTAATATTGAATTAATTTTTTTTTTTCAGGTTGTTCCACAAAAAAAAGTTGTAATGGGTCATCCACTTAGATTGCTGATTGTTGAGCAAATCTCCAACCTTCATGCCACATGGGTTGTATTTGATAAGTATGTGACCAATTGTATTTATTATTTAGTTTTTTCTAAATTTTTTCTTTCGAAAATATTAAGCCCGTTTATTAACAATTTGTTTGTTTTGTAACGAAATCTTAACCAAAATTTTGAAAATAAAAATAACTGGGTACAGTTGATAACGATTTTGTTTTTATATTTTGCTTTTTAAAAAATCATGCTTATTTACTTTGTTTTTGTTTTTTTTAGTACAACAAATGTGATGGTTGAGAAATTGAACTTTTGACCTTTAGGAAAGGTATATGTGCTTTAACCGTTGAGCTATGCACAAGTTGGCTGTTTTTGTTTTTTTTTTGAGATACTGGCTTTTGTTTGTTTTGCTTTGACATTCAAATATGTTTTTGATATCCTAGCAAAAAATGTTTGGAAACTGCTTTCAGAATAGTGTTATATTTTTTAGAACGAAAATTCTTAAAAATGTGTTCGACTATTTTTAAGACCTGGTTTCTTGTCTTATTTTTTTTAGTGTATTCTCACAAACGAGGGGTTGAATTTAGAAATAATGTAGTTTTAAAAAATAAAATTTAAAATGAAGATATTTTGAAACTAATGACAAAAATAGGTAATTTTAGTTGAGCGACAGCAAAAATTGTGGGGTCAAAATCACCTAACCTGCTGTAAAAATGTTCATTCGGTCAAAATGACCTATTTTTATCATTACTTTCACAACAGCAGTTCTATTTTAAAAATTATTTTTTAAAACTACATTATTTTAATCCCACAAATGACCTATATATATATATATATATATTACTTTAAAATAGTCATAAGAAATCTATTTTTTGTTTTTGAAATTGGGATGAAATTTTAAATCTTTTTAAAAAGTGAAAGATTGAGCTAGTATAACATAAAAATGATAGGCATCAAAGAAGAAGAATAGTCTATTTTTAAAAATATTAAATATTTTTTTTAAATATTACATTACAAATATATGGTAGAAAATCGAACCTGTGACTTCTTAAAAGAACATAAATTCTTAATCACCTAACTATGCTAAGGTTAATGTCTAGTTTTCACTTTTCTTTGGTTGTTATTATTATTTTCTTTTTATCATCTTAACTTTGTGGGAAAAGTATGAATTATACGTTTAAGGAACTGATAATAACATAAAAATGGCAGGCATCAAAGAGGTAACAGAGCATTTTATGCCAAGAAAATTAAATGTAATATGGTGATGCTGAAAGAAGATGGATGTGTTGATATGATCAAGAGGGAGCCTGACTTTGATACTGATTCCACTCTTGATTCCAAACAATCTTATTCATTAAATAGCTGA ATGGCGTCCGACAGCTTCACCGACAAGAACGTCGTTTTCAGAAAATTGAAAGCCAAGTCTGAAAACAAGATGTGTTTTGATTGCAATGCCAAGAATCCGACTTGGGCTTCCGTCACCTTTGGGATCTTCCTCTGTATTGATTGCTCGGCCGTGCATCGTAGCCTCGGCGTCCATGTCAGCTTCGTCAGGTCAACGAATTTAGATTCTTGGACTCTGGAGCAGCTGAAAACAATGAGCTTTGGAGGAAATAACCGAGCACAGGTTTTCTTTAAGCAGCATGGATGGACTGATGGAGGCAAAATTGAGGCAAAATATACGTCAAGAGCTGCCGAATTGTATAGACAATTACTTTCAAAAGAAGTTGCTAAAAGTATGGCGGAAGAGACAGGGTTGTCATCTTCCCCGGTTGCTTCTCTGTCAGCACAAGCAACAAATGGACCTTCTGATATCAAGAATAATGAAATTGCAAAAGACAATGCCTCGGGAAAGCAAGAAGCACCGGAAATTTCTGCTTCACCAAAAGCTTCTCAGGTGGTATTCTCAAGTACTGTGAAGAAGCCCCTTGGCGCGAAGAAGCCAGGGAAGACTGGGGGACTTGGTGCCCGAAAGCTTACTACAAAGCCAAGTGAAAATTTATATGATCAGACACCTGAAGAACCCACAGTTCCAGTTTCATCTTCTATTAACAAAACTCCTGCAACTGGTTCATCTCTTGCATCTCGATTTGAATATGTAGAAAATGTCCAATCATCTGATGTGAATTCTAGTGGCTCTCATGTAGTTAGCCATGTAGCTCCCCAAAGGCGTCGGGCTTCTTTGCTGAATTTGGAATGGATGGTGGTTTTCCAAAGAAAGCCAGTTCCAGTTCCTCGAAAGTGCAGTGATGAAGCAAGGAAGAAATTCTCCAATGCTAAATCTATTTCATCAGCCCAATATTTTGGTGATCAGAACAAAGCTGATGCTGAAGCTCAGGTCTCCCTGCAAAAGTTCTCGGGTTCAGCTGCCATCTCTAGCGCCGATCTATTCGGTCACCAGCACGATAATACTTCCGTTGATCTTTCCGCAAGCGACCTTATTAACCGGATTTCTTTCAGGTTAAAGCAACCGAAAATGAAATCAACTGTCGATTATCGTCTTTGGCAATCTCAAGAAGTTGATCGTTTCTTGGTTCCTTCGTTTGAAATTCAAGGTGGGTCTTGGCCCTCGACTGCCGCAGAAGCCCTAAGTCAACAATCTCTTGCTCCTCCATTATCTTGCCGGAGTGGGAATTTTCCATTTTCACATATGGAAGGCTCTGCGAATCAGTCTTGGGGTCCTTCTTCAATAAACCCTATTGGGTCATCGTCAATTTCAACTTACTCGTCTAATTCTGATGGGGGTTTCTCAACAGATACTCTCGGTGGTAATCCCAGTGTGCTTCCTACTTGTGAAGGGCCAGAAGGTGTCGAACCATCGCCATCTTTGCCCGTTTCTTTGTTTGTCAATAGTTCGTCAATTGGTTCTTTACCGGGGTCGTCTTTGGACTGGTCTTCTTCAGAGGAGAGTTTCCCAGCAAGTTCAGTGGGTGCCCAAGAAAACAAATCTTTATCAGCGCTATCAAGAACTTGGTATATCGTTGTTATTCTTAAGCTATCATCAGATTTCTCATCTTGTTTCCGGAGATACCAGCAGGAAGATGCCCATGAGTTTATGCAGTGCTTCTTGGATAAACTTGAGAGATGCTTGGACTCAAAAGCAAAGGATAAAATTTCTTCCGAGGATGATGGTCTAGTGAATAAGGTGTTTGGTGGTCGTCTCATAAGCAATCTATGCTGCTGTAATTGTGGCCATTGTTCCGAAACCTATGAGCCTTTGGTTGACCTGAGTTTGGAGATTGAGAATGTAGACTCCCTTTCAAGTGCACTGGACTCTTTTACCAAGGTGGAGAGGATTGGAGATCCAGAGACAAAATTTAAGTGTGAAAGCTGCAAGGAAGAAGTGTTGGTGGAGAAGCAGCTTAAACTGGAAAAAATCCCTTTGATTGCGACATTCCACTTGAAGAGGTTCAAGGCTGATGGTTCTTTTGTCGAGAAAATTGAAAAGCATGTGGAGTTTCCATTAGAGTTAGATTTGCAGCCGTACACCTTGGGAGCCCAGGATGCAGAGGTGGAGTTCAATTATGAATTATTTGCAATTGTGGAACACACAGGGTTTTCCTCTACTTCTGGGCATTACTTCAGCTTTGTTCGTTCGGCTCCCGATACATGGCACAGAATGGATGACTCTTTGGTTACTCGGGTGAGTGAAGATTATGTGCTGTCACGGGAGGCCTACATTCTGTTGTATAAGAGGAAGGGAACTTTGTGGTTCTCTAGTTTGATCGAACAACAAGACCCTTGTGCGAATTCAGATCCCTCAAATTTGTCACCCAAGTCGGTTTTAGCAAATATCGAAAATGTCTGCTCTTCATTTGCTGCTGAAACTAATGTCAATTGTGAAACTACCAATGCATCTGCGGATACTTTGGGGTTGAATTCTGCTGGGTTCTCTGGGGAAATGGGAGACAAAAAGACAGGTGCCAATGATTTGGGAAATGCTACCCCTGCTAATTTGCATATATTTGAGAGTGCAACAACTAAGTCTTCTCCTGTTGTGAACGAGAACCTCCATTCGAACGACAAAGGTCGATGTATCGACAGTTTGCATCCTCTAATGCCACTAAGATCTTCCAGCCCTGATATTAATACTTTGAAGACTCCAGAACCACAATACCGAATCCCAATCGATCACCTGAAGACGGAAAAATGCACTACGTCTGGAAGGCCATTAAACAAGGGTGTGGAAGATTCTGAAAGAAAAGCGGCCCTGAGATACATTAAGAAGAGCATGCCGAGTTCAAGAGGGTCAAAAATGATAGCTGCTATACTGGGATCCCAGAGTGAAGGCCCCTTGAACAAGAAGAGACTAAGGAGCAGAAGGCCATGGCAGACGCAGAGGCTGGAAATGAACTCATCGTCGGAGGCTGCAAGTAGACATGTAGTGATAGTCATGGACGGAATGGAAGAGTTCACAACAGAACCACTCGAGTGGGCGTTGGAGAATGTCATTCAGCCTGGTTGTGTCGTTACTCTCGTCGGTGCCATGCCTTGGCTCAACATTCCTCTTTCATCCAAAACATGGTTGGATATTTGGCCATTGAATTTGGAGGAGATGTCCTTTGTGAAAGGGGAAAGGGAGTGCATTAGTGAAGACAAGTATGCAAAACTTGAAGCTGTGTTATTGCTTGCAGAAAATATGGGGCATCAAAGAGGTAACAGAGCATTTTATGCCAAGAAAATTAAATGTAATATGGTGATGCTGAAAGAAGATGGATGTGTTGATATGATCAAGAGGGAGCCTGACTTTGATACTGATTCCACTCTTGATTCCAAACAATCTTATTCATTAAATAGCTGA ATGGCGTCCGACAGCTTCACCGACAAGAACGTCGTTTTCAGAAAATTGAAAGCCAAGTCTGAAAACAAGATGTGTTTTGATTGCAATGCCAAGAATCCGACTTGGGCTTCCGTCACCTTTGGGATCTTCCTCTGTATTGATTGCTCGGCCGTGCATCGTAGCCTCGGCGTCCATGTCAGCTTCGTCAGGTCAACGAATTTAGATTCTTGGACTCTGGAGCAGCTGAAAACAATGAGCTTTGGAGGAAATAACCGAGCACAGGTTTTCTTTAAGCAGCATGGATGGACTGATGGAGGCAAAATTGAGGCAAAATATACGTCAAGAGCTGCCGAATTGTATAGACAATTACTTTCAAAAGAAGTTGCTAAAAGTATGGCGGAAGAGACAGGGTTGTCATCTTCCCCGGTTGCTTCTCTGTCAGCACAAGCAACAAATGGACCTTCTGATATCAAGAATAATGAAATTGCAAAAGACAATGCCTCGGGAAAGCAAGAAGCACCGGAAATTTCTGCTTCACCAAAAGCTTCTCAGGTGGTATTCTCAAGTACTGTGAAGAAGCCCCTTGGCGCGAAGAAGCCAGGGAAGACTGGGGGACTTGGTGCCCGAAAGCTTACTACAAAGCCAAGTGAAAATTTATATGATCAGACACCTGAAGAACCCACAGTTCCAGTTTCATCTTCTATTAACAAAACTCCTGCAACTGGTTCATCTCTTGCATCTCGATTTGAATATGTAGAAAATGTCCAATCATCTGATGTGAATTCTAGTGGCTCTCATGTAGTTAGCCATGTAGCTCCCCAAAGGCGTCGGGCTTCTTTGCTGAATTTGGAATGGATGGTGGTTTTCCAAAGAAAGCCAGTTCCAGTTCCTCGAAAGTGCAGTGATGAAGCAAGGAAGAAATTCTCCAATGCTAAATCTATTTCATCAGCCCAATATTTTGGTGATCAGAACAAAGCTGATGCTGAAGCTCAGGTCTCCCTGCAAAAGTTCTCGGGTTCAGCTGCCATCTCTAGCGCCGATCTATTCGGTCACCAGCACGATAATACTTCCGTTGATCTTTCCGCAAGCGACCTTATTAACCGGATTTCTTTCAGGTTAAAGCAACCGAAAATGAAATCAACTGTCGATTATCGTCTTTGGCAATCTCAAGAAGTTGATCGTTTCTTGGTTCCTTCGTTTGAAATTCAAGGTGGGTCTTGGCCCTCGACTGCCGCAGAAGCCCTAAGTCAACAATCTCTTGCTCCTCCATTATCTTGCCGGAGTGGGAATTTTCCATTTTCACATATGGAAGGCTCTGCGAATCAGTCTTGGGGTCCTTCTTCAATAAACCCTATTGGGTCATCGTCAATTTCAACTTACTCGTCTAATTCTGATGGGGGTTTCTCAACAGATACTCTCGGTGGTAATCCCAGTGTGCTTCCTACTTGTGAAGGGCCAGAAGGTGTCGAACCATCGCCATCTTTGCCCGTTTCTTTGTTTGTCAATAGTTCGTCAATTGGTTCTTTACCGGGGTCGTCTTTGGACTGGTCTTCTTCAGAGGAGAGTTTCCCAGCAAGTTCAGTGGGTGCCCAAGAAAACAAATCTTTATCAGCGCTATCAAGAACTTGGTATATCGTTGTTATTCTTAAGCTATCATCAGATTTCTCATCTTGTTTCCGGAGATACCAGCAGGAAGATGCCCATGAGTTTATGCAGTGCTTCTTGGATAAACTTGAGAGATGCTTGGACTCAAAAGCAAAGGATAAAATTTCTTCCGAGGATGATGGTCTAGTGAATAAGGTGTTTGGTGGTCGTCTCATAAGCAATCTATGCTGCTGTAATTGTGGCCATTGTTCCGAAACCTATGAGCCTTTGGTTGACCTGAGTTTGGAGATTGAGAATGTAGACTCCCTTTCAAGTGCACTGGACTCTTTTACCAAGGTGGAGAGGATTGGAGATCCAGAGACAAAATTTAAGTGTGAAAGCTGCAAGGAAGAAGTGTTGGTGGAGAAGCAGCTTAAACTGGAAAAAATCCCTTTGATTGCGACATTCCACTTGAAGAGGTTCAAGGCTGATGGTTCTTTTGTCGAGAAAATTGAAAAGCATGTGGAGTTTCCATTAGAGTTAGATTTGCAGCCGTACACCTTGGGAGCCCAGGATGCAGAGGTGGAGTTCAATTATGAATTATTTGCAATTGTGGAACACACAGGGTTTTCCTCTACTTCTGGGCATTACTTCAGCTTTGTTCGTTCGGCTCCCGATACATGGCACAGAATGGATGACTCTTTGGTTACTCGGGTGAGTGAAGATTATGTGCTGTCACGGGAGGCCTACATTCTGTTGTATAAGAGGAAGGGAACTTTGTGGTTCTCTAGTTTGATCGAACAACAAGACCCTTGTGCGAATTCAGATCCCTCAAATTTGTCACCCAAGTCGGTTTTAGCAAATATCGAAAATGTCTGCTCTTCATTTGCTGCTGAAACTAATGTCAATTGTGAAACTACCAATGCATCTGCGGATACTTTGGGGTTGAATTCTGCTGGGTTCTCTGGGGAAATGGGAGACAAAAAGACAGGTGCCAATGATTTGGGAAATGCTACCCCTGCTAATTTGCATATATTTGAGAGTGCAACAACTAAGTCTTCTCCTGTTGTGAACGAGAACCTCCATTCGAACGACAAAGGTCGATGTATCGACAGTTTGCATCCTCTAATGCCACTAAGATCTTCCAGCCCTGATATTAATACTTTGAAGACTCCAGAACCACAATACCGAATCCCAATCGATCACCTGAAGACGGAAAAATGCACTACGTCTGGAAGGCCATTAAACAAGGGTGTGGAAGATTCTGAAAGAAAAGCGGCCCTGAGATACATTAAGAAGAGCATGCCGAGTTCAAGAGGGTCAAAAATGATAGCTGCTATACTGGGATCCCAGAGTGAAGGCCCCTTGAACAAGAAGAGACTAAGGAGCAGAAGGCCATGGCAGACGCAGAGGCTGGAAATGAACTCATCGTCGGAGGCTGCAAGTAGACATGTAGTGATAGTCATGGACGGAATGGAAGAGTTCACAACAGAACCACTCGAGTGGGCGTTGGAGAATGTCATTCAGCCTGGTTGTGTCGTTACTCTCGTCGGTGCCATGCCTTGGCTCAACATTCCTCTTTCATCCAAAACATGGTTGGATATTTGGCCATTGAATTTGGAGGAGATGTCCTTTGTGAAAGGGGAAAGGGAGTGCATTAGTGAAGACAAGTATGCAAAACTTGAAGCTGTGTTATTGCTTGCAGAAAATATGGGGCATCAAAGAGGTAACAGAGCATTTTATGCCAAGAAAATTAAATGTAATATGGTGATGCTGAAAGAAGATGGATGTGTTGATATGATCAAGAGGGAGCCTGACTTTGATACTGATTCCACTCTTGATTCCAAACAATCTTATTCATTAAATAGCTGA MASDSFTDKNVVFRKLKAKSENKMCFDCNAKNPTWASVTFGIFLCIDCSAVHRSLGVHVSFVRSTNLDSWTLEQLKTMSFGGNNRAQVFFKQHGWTDGGKIEAKYTSRAAELYRQLLSKEVAKSMAEETGLSSSPVASLSAQATNGPSDIKNNEIAKDNASGKQEAPEISASPKASQVVFSSTVKKPLGAKKPGKTGGLGARKLTTKPSENLYDQTPEEPTVPVSSSINKTPATGSSLASRFEYVENVQSSDVNSSGSHVVSHVAPQRRRASLLNLEWMVVFQRKPVPVPRKCSDEARKKFSNAKSISSAQYFGDQNKADAEAQVSLQKFSGSAAISSADLFGHQHDNTSVDLSASDLINRISFRLKQPKMKSTVDYRLWQSQEVDRFLVPSFEIQGGSWPSTAAEALSQQSLAPPLSCRSGNFPFSHMEGSANQSWGPSSINPIGSSSISTYSSNSDGGFSTDTLGGNPSVLPTCEGPEGVEPSPSLPVSLFVNSSSIGSLPGSSLDWSSSEESFPASSVGAQENKSLSALSRTWYIVVILKLSSDFSSCFRRYQQEDAHEFMQCFLDKLERCLDSKAKDKISSEDDGLVNKVFGGRLISNLCCCNCGHCSETYEPLVDLSLEIENVDSLSSALDSFTKVERIGDPETKFKCESCKEEVLVEKQLKLEKIPLIATFHLKRFKADGSFVEKIEKHVEFPLELDLQPYTLGAQDAEVEFNYELFAIVEHTGFSSTSGHYFSFVRSAPDTWHRMDDSLVTRVSEDYVLSREAYILLYKRKGTLWFSSLIEQQDPCANSDPSNLSPKSVLANIENVCSSFAAETNVNCETTNASADTLGLNSAGFSGEMGDKKTGANDLGNATPANLHIFESATTKSSPVVNENLHSNDKGRCIDSLHPLMPLRSSSPDINTLKTPEPQYRIPIDHLKTEKCTTSGRPLNKGVEDSERKAALRYIKKSMPSSRGSKMIAAILGSQSEGPLNKKRLRSRRPWQTQRLEMNSSSEAASRHVVIVMDGMEEFTTEPLEWALENVIQPGCVVTLVGAMPWLNIPLSSKTWLDIWPLNLEEMSFVKGERECISEDKYAKLEAVLLLAENMGHQRGNRAFYAKKIKCNMVMLKEDGCVDMIKREPDFDTDSTLDSKQSYSLNS Homology
BLAST of Sgr020223 vs. NCBI nr
Match: KAG7015749.1 (Ubiquitin carboxyl-terminal hydrolase 21 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 947.6 bits (2448), Expect = 1.0e-271 Identity = 543/887 (61.22%), Postives = 605/887 (68.21%), Query Frame = 0
BLAST of Sgr020223 vs. NCBI nr
Match: KAA0053040.1 (ubiquitin carboxyl-terminal hydrolase 20-like [Cucumis melo var. makuwa] >TYK11495.1 ubiquitin carboxyl-terminal hydrolase 20-like [Cucumis melo var. makuwa]) HSP 1 Score: 942.2 bits (2434), Expect = 4.2e-270 Identity = 526/804 (65.42%), Postives = 580/804 (72.14%), Query Frame = 0
BLAST of Sgr020223 vs. NCBI nr
Match: KAG6577706.1 (Ubiquitin carboxyl-terminal hydrolase 21, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 847.0 bits (2187), Expect = 1.8e-241 Identity = 487/809 (60.20%), Postives = 561/809 (69.34%), Query Frame = 0
BLAST of Sgr020223 vs. NCBI nr
Match: XP_038906092.1 (ubiquitin carboxyl-terminal hydrolase 20-like [Benincasa hispida]) HSP 1 Score: 802.0 bits (2070), Expect = 6.8e-228 Identity = 457/670 (68.21%), Postives = 496/670 (74.03%), Query Frame = 0
BLAST of Sgr020223 vs. NCBI nr
Match: XP_022145411.1 (ubiquitin carboxyl-terminal hydrolase 20 [Momordica charantia]) HSP 1 Score: 798.1 bits (2060), Expect = 9.8e-227 Identity = 457/674 (67.80%), Postives = 491/674 (72.85%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy Swiss-Prot
Match: Q8H100 (Probable ADP-ribosylation factor GTPase-activating protein AGD8 OS=Arabidopsis thaliana OX=3702 GN=AGD8 PE=1 SV=1) HSP 1 Score: 426.8 bits (1096), Expect = 7.8e-118 Identity = 232/379 (61.21%), Postives = 292/379 (77.04%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy Swiss-Prot
Match: Q9FIQ0 (Probable ADP-ribosylation factor GTPase-activating protein AGD9 OS=Arabidopsis thaliana OX=3702 GN=AGD9 PE=1 SV=1) HSP 1 Score: 423.3 bits (1087), Expect = 8.6e-117 Identity = 239/378 (63.23%), Postives = 290/378 (76.72%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy Swiss-Prot
Match: O82171 (ADP-ribosylation factor GTPase-activating protein AGD10 OS=Arabidopsis thaliana OX=3702 GN=AGD10 PE=2 SV=1) HSP 1 Score: 382.9 bits (982), Expect = 1.3e-104 Identity = 226/377 (59.95%), Postives = 274/377 (72.68%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy Swiss-Prot
Match: Q9FPS7 (Ubiquitin carboxyl-terminal hydrolase 20 OS=Arabidopsis thaliana OX=3702 GN=UBP20 PE=2 SV=1) HSP 1 Score: 291.2 bits (744), Expect = 5.1e-77 Identity = 149/265 (56.23%), Postives = 186/265 (70.19%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy Swiss-Prot
Match: Q9FIQ1 (Ubiquitin carboxyl-terminal hydrolase 21 OS=Arabidopsis thaliana OX=3702 GN=UBP21 PE=2 SV=1) HSP 1 Score: 283.5 bits (724), Expect = 1.1e-74 Identity = 149/264 (56.44%), Postives = 183/264 (69.32%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy TrEMBL
Match: A0A5D3CIU8 (Ubiquitin carboxyl-terminal hydrolase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold139G001590 PE=3 SV=1) HSP 1 Score: 942.2 bits (2434), Expect = 2.0e-270 Identity = 526/804 (65.42%), Postives = 580/804 (72.14%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy TrEMBL
Match: A0A6J1CW85 (Ubiquitin carboxyl-terminal hydrolase OS=Momordica charantia OX=3673 GN=LOC111014863 PE=3 SV=1) HSP 1 Score: 798.1 bits (2060), Expect = 4.8e-227 Identity = 457/674 (67.80%), Postives = 491/674 (72.85%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy TrEMBL
Match: A0A1S3BK94 (Ubiquitin carboxyl-terminal hydrolase OS=Cucumis melo OX=3656 GN=LOC103490779 PE=3 SV=1) HSP 1 Score: 794.7 bits (2051), Expect = 5.3e-226 Identity = 445/669 (66.52%), Postives = 488/669 (72.94%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy TrEMBL
Match: A0A0A0L6H8 (Ubiquitin carboxyl-terminal hydrolase OS=Cucumis sativus OX=3659 GN=Csa_3G011100 PE=3 SV=1) HSP 1 Score: 767.7 bits (1981), Expect = 6.9e-218 Identity = 430/669 (64.28%), Postives = 481/669 (71.90%), Query Frame = 0
BLAST of Sgr020223 vs. ExPASy TrEMBL
Match: A0A6J1E9J0 (Ubiquitin carboxyl-terminal hydrolase OS=Cucurbita moschata OX=3662 GN=LOC111431101 PE=3 SV=1) HSP 1 Score: 747.7 bits (1929), Expect = 7.4e-212 Identity = 422/668 (63.17%), Postives = 473/668 (70.81%), Query Frame = 0
BLAST of Sgr020223 vs. TAIR 10
Match: AT4G17890.2 (ARF-GAP domain 8 ) HSP 1 Score: 430.3 bits (1105), Expect = 5.0e-120 Identity = 233/380 (61.32%), Postives = 293/380 (77.11%), Query Frame = 0
BLAST of Sgr020223 vs. TAIR 10
Match: AT4G17890.1 (ARF-GAP domain 8 ) HSP 1 Score: 426.8 bits (1096), Expect = 5.5e-119 Identity = 232/379 (61.21%), Postives = 292/379 (77.04%), Query Frame = 0
BLAST of Sgr020223 vs. TAIR 10
Match: AT5G46750.1 (ARF-GAP domain 9 ) HSP 1 Score: 423.3 bits (1087), Expect = 6.1e-118 Identity = 239/378 (63.23%), Postives = 290/378 (76.72%), Query Frame = 0
BLAST of Sgr020223 vs. TAIR 10
Match: AT2G35210.1 (root and pollen arfgap ) HSP 1 Score: 382.9 bits (982), Expect = 9.2e-106 Identity = 226/377 (59.95%), Postives = 274/377 (72.68%), Query Frame = 0
BLAST of Sgr020223 vs. TAIR 10
Match: AT2G35210.2 (root and pollen arfgap ) HSP 1 Score: 348.2 bits (892), Expect = 2.5e-95 Identity = 207/345 (60.00%), Postives = 248/345 (71.88%), 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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