Spg020707 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCCCTGGATTCTGCCCGTCGCGAACCGCCTTGGGCTCGACGGAGCGCCGTTCTTCACTCAGTCTTGCGCTGTCAACCATATTTATGATCTTATTGGTCGGGGCGATCTGGAGATTCCTGTTGCAGAGGGTGGTCGCGTTTCGGTTGCTTCTCTGCCGATTCTCGACGCCGGCGACTTGCCGATTTCGTTCCCCGGCGTCGGCCTTGGCTTCGTGAAGTCTTTTAAAGCAAGTCAGTTCGGGAATTTAGAGGAGGCCAAATGGATGTTGTGTAATACCTTCTACGAATTGGAGAGTGCGGTATTGTTTTCGATTCTCTAACATCTCTTTTGCGTGTCTGTGTGTACTGATTCATTGCACAATAAATTAAATTTTAGAAGAAAAAAATAGTGTGGTGGGAAGTGTGAACACTCTGCTGGAAACCCATCAAAGATTCACCTTCTTCTTCCCCTCTATAATTTCAAACAAAACTGCAGGAAGATACATTAAAAAATCCCAAAGATCTAACATTTCTCTCTTCTTCAATCCCTCAAAGAGAAAGTGCCGAAGCCTTCTTTCGAACTTTCTTGCTGGGTTTCATTCAATTTTTCCACTTTTTTGAAACTCCAGAAATTGAGTTTCATTTCATTAGAGTAAGAGAGATAAGAAGTGGCCGAAGGATTTAGGCTTTAAAGCATTGCCAGGATTTGATGGTCTCTTTTTGTAAGAAAAAAAAAACCCAGTTTTAATAACTTGACTTGGAATTTGCTTCTAAAATTCTCTGTAAACTACCTTCTCAAACAAAGCTATAAATAGCAACTAAAAACCCTCAACTCTCCTTAGCAGTTTCGTTTCGAATTACTAGCCAATCGAATCAAAAGCCCTCACTCAAATGCCTCTCTTCACAAGTTTATACACCCAACTCAACCATGGTTTCGTTTCGATTTCTAGGTATTGTTTGTTCGAAGGAACAGTGGTGCTTGTGAAACAGAGTACTGAAGAACCCATGGTTTCGAGTTTCAAACTGGAGCAAGAGGAATACATGAGTAAGAGACCAAAGAAGACGATGAATCTTTGGTTGTTGGGGTTTCAAAGCTTTTTTTTTTTTTTTTTATTTTAATAAATGCACGGCTTAAAAAAAAAGTCCATGACACCTGACAGAATGATAAAAACTACAATATTTCAATAAAAAGTTTTATAAAAAATAATATTAATAAACAATGTCTCAATATTTGTGGGGGAAAAAATCATTTTCAACCAAACTTAGTTGTATCAATTTTAACTTTCAACTTTCAATATCATCAAATTGAACTCTCTAAACTTGTAAAATTATTGCAATGTTGACTTTTGGTTATATTTTCATTTTAATCATCATTAAAACCTAAATTATATATATATATTTTCAAAAAAAAAAACCTAAATTATATTGGTTATTTTTTTTAAGAATTTTGTTGGAGAGAAACTCTTTGAAGAAATCAAACACTTTAACTAACTAATTCTTCTCACTGATATTAGCCTCTAAAAAAGAAAATCACAAAGTTATTAACAACAAGAAAATCTAGAAAATATGAGGAAAAAAAACCTAAAATTGTTTTACTTTGGTTTCTACCATTCATGTTCTAATTAGCAAGAAAAAAAAAGCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGGAAATCACCAACTTCTTAGCCACAAGAAAAATCCAACAAATATTCGAAGAAAAAGAAACTCCAAAATTGTTTTCCTATCATCCTACCAGTATCATTCGAACTTTGTTCTATTTTAATTTATTTATATACTTTTAAATATTTAAATTTAATCTTCATACTTTTAATAAATATTAAAATTATTTTTTAAGAAAAAAATAACATGAAGTTTCAAAAAAAGAAAAAAATAACATGAGCCTATTTTTTTTGAATTTATAGAAGAAAAATTAATAGAAACTCATTTTCTTTTAGAAAAGTTTTTGATAAACGAACGGTTAATATCAATTTAATTAAACTTTATTTTTTTGAGTTCAATATTAGGCCAGTTTTCCTCACGGACTTTCCGAGGTTGTGAAATCGTGGTCTTTTCAAAGTTGCCGCGGGCTTATCGTTATCGATAGTGTTAAAAAGGAATCCTGTATGCCTTTTGAAATATTTTACAAACTTTATTGTGTAATTTTTTTTTTAATTTTTAATGTCAAATTGATCTAAGTTTACACAAAAACCCATAAATGACATGTGAACTTGAAAATTATTGTTTATTTTTATTAAACGTCAACGTTTTTTTTTTTTTGTTTTTTCTTCTTCATTATTATTATTATTATTTTGGTTATATAATCTGATCTTAGTAGATCAACTCTTAGGTTTGATCCATTCTAGTTTTAGAATTTATAAAATATTTATTTTAAGAGGTTGGAATTTAACGTTTTATTGGATGCTTTTAGATAATAGATGTCTGAAAATAATAAATATCTAAAAATAAGATAACTATATTTGGTTCTACGTGAGAATATTATGAATAATGTGTGCAAGTTTGTTTGGTGAGATCAATCATATAATTAATTCTTATATAATTATATTGAATTATTAACAAAACAATCAAAATTAATTAAAAAATAATATTATTTTTTTATAAATTAATAATTAATCTTAAATAATCCATAAATAGTTAATTAGAAGGATTAAAAATAAACTATTACCATTCAAGCCCGGTCTAAAGGGACATTGCATACATGAAGGGGCAGTTTTTCTCTCTGAGTTTGAAAATCTCTGGCGTTATGATGACGAGATCTCTGACGATGGCTTTGCATTGATGCCTGGGCGAAAATCATGGAATCTCCGGTGATGATGCGGGCGATTTTTTTCGATCTGATGTCGTTTCGTAATCTGCCAGGTTGTGGCAGAGATAATTCAGCATCCGGCTGCTATTTCAGTGGAGCAAATGTTGGAGTAGAGTATCGCTTCTCTCAGTGGTAATCTCGAAAACTTTGTCCCATTGTTGTTATCTTTTATTTTTCAACCCCTTAGTTAGCCTCATGGATCCGAGTTTGCTGGTCGAGGACTGGTCACGAATGAGTCTTACCTCAGCTAAGGATGAAATCTCGATGCAAGTTGATCAATCGGCTGTGGAACGCACTGGTCTATCTTTGGGTTGTTGTTTACTTGGGAAACTATTGTCCCATCGGATCTTAGCAGCGGAGGTGATGAGAAAGACCTTAAAATCTTCTTGGAAAATTAATCAGGGTCTCCAAGTTGAGCTGTTGGGGGAAGAATCTCTTTATTTTTCGCTTTGGAAATGAGGAGGATCGTATGAGGGTGTTTAAACAGTGCCAGTGGCTTTTCGATAAATTCTTGTTGGTTCTAGAATTTCCCGTTCGCGCCTACAGGCCTTTAGATTATTCCTTCACAATCGTGGCTTTTTTGGTCCATTTTTATGATATTCCTCTTGATTGGTACAATCATGAAATGGCAGAGAGATTGGGCAACGCAATCAGTGTGTATGTGGAGGTTGATAGCCTTTGTGGGTTCCATTTTTAGGGAGCTAGTTTTCGTGTCCGTATTCGTATTGATGTATCAAGCCGCTCAGGCGAGGTGTTAAACTCAATCTTGGCGAGCCATTGAAGGGGAGTTGGAGTTCCATAAAATACGAAAAACTTCTGGGATTTTGATCCTTTTGCGGGATAATCGGACATTTGGCCAAAGACTGTGGTTCTTACTACACGCTCAATCATTCTCAAGCGTTTCCAGATCAATACGGGGAGTGGCTTCGTTTTGATGGGAAGAGTAAAATCTTAGCTCGTTCCTCGAATACGGATAATCGTATCGTTGCTATCCCGTTTGCAACTCCTTCCCAACCGACTTTGGTTGGATCCTCGATGGATAAGGAGGTTGTCACGACCATGGGTCTTTCGGAGATTCGCCCATCAATGGGTATTCGGATTATTGAGCAGCATCAGGACAACTCAGGGGGCGATGGAGTGAGTTACGCGACAGCTTGGTATTCTCTTTTCGGCGGCTCTGATTTTCAGAGTAAAGGCAAAGGCAAAGTTGGTGATCGATACTCCTTGGCCAGCGGAGGAAGTCTTTTTCCCGAGGACAGGAAATGGCGACCGAAATCATCCAATTCGCAGCAGTTCAGAGTGAAGGGAGGGGCATTTTCGGTGAAGCCATGGGACCCGACGGTTACGAGAATTGATGTTGATATTGCGGAATATTTAAGAGAGATGGATGAATTTAACCGTACCCTATCTTAGCAATTAAATGCGGTGTTTAAAAACTTCCAACCTGATGATGCAACAATTAAGAAAAAATCAATGGGCACTGACGTGATTTTAGGAGATCCCTTGGAGGTGGATAATGATATTTAAGTTGCTGAGAAGAATTAGAAGATTAAATGCGCAAAGAAAAGTCTTTTAAACAAAATGCGCAAAGAAATTAGCACTGGAAATTGAGAGGGGGCCACAGGTTATAGGAGATCAGATCATCTATTTGGAGGGAGAAAATTCAAATTCAACCTCGGCAGTCCAAACAGGGAAGAAGTACGTGAAAAGGTCCAATTGGAAGAATCGAGCTCATGCGGGATTTGTTCCCAAAGGGATGACCATGAGAGTCCTCAAGGAGTCCCAAAAGCGTAAGGATGGTTCAATCTTGTTCTCTCTAGATAACATCAAACGTCCTAAAGTTGACGTTAAGCATTGTAATGAGGCGGGGTCTGCTAAACAACCCCACCCACACCCATGAGGACTGTTTGTTGGAATGTTTGTGGACTAGGGAGTCCATGGGCATTCCAAAATATAAGCGATGAATTTGGAATGCCCATGGACTCCCAGCTGTTTTAATTAGAAATTATTCCATCCATCACATTGATGCTGATATTGTTTGGAATGATAAACGTTGTAGATTTACCGAAATATATGGTCAACCCAGCTCTGATCAACGAGCTCAAACGTGAGAACTCATCTGCAAACTTCACAACTAAGATGATTCTGCATGGGTTATTGGAGGCGATTTCAATGAAATCCTTTGGGATTATGAGAAGTCGGGAGGACCTACTCGAGAGCAACGTCTAACTCACAATTTCGAAGCTACTTTGGATGATTATAACTTGTTGGATTTGGGATTTTTCGACGGGACCTATACTTGGTGTAATAGAAGAGAAATGGGTGACCAAGTAAGCTTAAGACTGGATCGTGTTTTGGCCAATCCCAAGCTTCACTTCCTTATTCCATCGCTATCAGGTTACAAATCTACACTAGGCGAAGTTTGATCATAGACCAATCGAATTGTGTCTGGATGTCTGTACGGAAATGTAACACCCGAGTCAGGAGGGGTACATGAATGAATCGAGGCCACATCCGAATGAGAGGGATCCCGAGGACATGAAAGTATGGTCAAGTTAAGCTTAAAAGAATTGATAGATACTACCTATACCAACAAGGTGCACCTTCCTTTTCGGTGGCTCAATCATAGGAACTTTGAAGTTAAGCATGCTTGGCTTGGAGAAGTTCTATGTTGGGTGTGAAGGGATAAAAAAACCCTTGCGCAGCGGAAACGATCTGAACCATAACTCTAATTTTAAGTCGGATTAAAATACCGATACGTTAGGAACAAACACAACAGAAAATATCACATATTTATGCTGAAAACAAAATGTAAAACATGCTTTACAGTAAATAAATCCTAGATCTAATCTAGGAAAAACGGATCATAATGATCCATGATCAAGAAAACCATACCTTTGTAGTTTTTCTTGACAAAATCTCACCAAAAACCTTTGATTCCTCAAAATCACAGCAGCAAATAACTCCTTTCTTTGCTGCAAATTAGCCTTGAACACCACCACGGAGGTTGCACCGGTATTCTCTTAGGGATAAAGGTTGAGTGGCTTGTGGGAACCAAAACTCTAAGGTTTCTCTGGAAAAATTTCTAACTCACAGAGAGGGAGATTGAGAGAGTGTCAGAGAGGGAGAGATTGTGTGTGTAAAGCTTAGCCCCAACTGACCAATTCCCATTCCTTTTTACCTATCGATCAGGAGAGGAAAAATAGGGCAACTGCACGCATAACATCAGGTAACTGATTAATCAGTTACCTGATATTTTAATTAATTATAATTTAAAATCAAAAATAATTTTAATTATAATTAATTACTTTTTAATTAATCATAATTAATTAAAATAATATTAATTTAAATCCCATTCAAATTAATATCCCTCTTAACCTATAGTTTAATTAAATCAAATTTGATTAAACTAAATCAATTAATTAATTCAAAAAAAATTAATTAATTATAAAATAATAAAATTGAATATCATATATTCAATTATTATTCTCTCTCATAAAACTATAGTATTAATGTACATCCAATGCACATTAATTTTTAACCTATAGTTTCAATATGAATCAAATTCGAACACCTTCGAATAGTCCATTCCCCTTAGAATTTTACCTCAACGCCCTTGTAGAGCTACCGGTGGGACCTAATGGACCTACAGATCAGAAGCTCCAACGATATGAGATTAATTGGCTAAACTCATTAACCAAGTTAATCAATATTCGTTAACCGTGGTTCACTCCACTAAAGAACCACGGCTGCACTCTTCTCACTGCAGATATATTTCTGTGTCCACGGATATCGACCGTCAACAGCAAGTTAGCCCTTCACGTGTGTTCGTACCCCAGCTAGGTCAAATTACCGTTTTACCCCTGGGTTACCTCTTGGTCCTTAAGTACCAGTGCTCCTCTAATGAACAACCTGTTTGAGGTCCAACCAACAAACAGAAATCCCTCTCGTGCCATAAAGAGGGTAGGGCCCATTGTTCAAGACCCGGAGACACCACTTAAGGGAACACACCTCTACTCACCCTAATATCGGGAAGGAGTGAAATCCATCTTGTAAGACTACGTTCCCAGCTCCCCACTCGGTCTTGTCCCCAAAATGGTAGGCTTATTGAGTCGGCGAACAGGCCACTCTCACCCGTACAAATCAAAGGACAATCCCTCATGGACAGGAGTCCATAATCCACTCAGGATTAAGGCCAAGTTGCCTAGGTCATCCTAGTGAAATAGAAACCGAGCTAACTAACGGTGTTACAGTTAGTGGTTAACTATTTCGCGGTCCGGTCTTTGTGCAAACTCATTGCACAGGATACCCCCACTCGCATGTCAACTACATGAACGCGTTGGATCACTACGTTTGTATCAATATGCAAAGCGGGTCGTATCCATAGTGCCACCAGGACAAGGTACCCAGCCTTATCCCTATACTACAGACCCTTTAGGCTAAAACTTGAACATTGATCCCCGTATGTCCCTACATACTAGTTCAAGCCTCATTCTATTAGTCTTGGATGTTTAGTTTATTGGATTAGGGTTTATAAGACAAGATATAATACAAACATTGAATAATACATCACTTTTATTAATGTTCGGTCAAATGTACATTTACTATCTACGAGTTTTTGGGCATAAAACCCAACAGGGTGACCTCCTGGGAATTTTCCCAAGAAGCATGTGAGTGAGGACAAAGCATGCTAAAAGGACCCCGTGTTGGTTTGTGGGGACAATCTTCAATCTTAGAAGCAGTTTCAGACAAGTATGGTGACGTGGTCAAGTCACAGGGGAATGTCGGGTCCGTTAGGTGCCGAATCTGGATTCCGAATCCTGAGCCCAGGGCGTTACAGGAAAAAGGTTCGAATAGAAGAGGTTCCCGTTCTTTCAAGTTTGAGGAATGTTGGACTCATCAGGCGAAATGTAAATCCATTGTAGCCAGTTTTGGCACTTGGGATGGAAAGGGTGAGGTTAGCAATTTGTTACATCAGGATCTGAAGAAATGTGCGTAAGCTTTGCAAGGGTGGGGTCAACGACAGAATAGAGACTTGAGGTCAAACATAAAACGGTTAAAGGAACAGATTAAATTAGCATATGCCAAGTTGTTACCATTAGACTTTGTCGTTATTCACTAGCTGAAACATCAACTTGATGGTTTTCTACATTAGGAGGAAATGTATTGGAAACAGAGATTGCGAGAGAATTGGCTCTAGTGGGGGGGATAGGAATACGAAATGGTTCCACCAGAAAGCTTCTAGTAGGAGGAAGAGGAATTTAATCAAAGGAGTAGTGGATGCTACTGGTTCCTGGCAGACTAAGTTATCATCTATTCAAGAGACTTTTGAGAGGTATTATGTTGAGTTTTTCCGCTTTCAAACCCATCAATGGAAGACCTCAATAAGGTGATAGCAAATATTCCACAATGTGTTACTCCAGAGATGTTACAGATATTATCAGGCAAATTTACAAGGGATGAGGTGGAATGGACAATCAAGAGTTTTCCTCCAACTAAGGCACCAGGGCCTGATGGATTTCCAGCTTTATTCTATCAGAAATATTGGGAGATAGTGGGAAATAAAACAATCAACAATTGTTTAGCTATTCTGATCAGAGAACGATCAGTTAAAGATTGGAACCACACCAATCTTGTCCTTATTCCAAAGGTCCGCCAAGCGAGGTTAGTATCTGACTATCGGCCTATTAGTCTTTGCAGTGTCTCGTATAAAATTATTACAAAGGTTATAGCTAATCGGTTGAAGTTAGTGTTGAATGATATAATTGATGAATGTCAATCTGCGTTTATCCCGGGTAGAGCTATAACAGATAATATGATAATTGCACATGAAACTTTACATTTTATAAGGAGTCAAAAGGGGGGTCATCAGAAGTATGCAGCACTCAAATTAGACATGAGTAAAGTATATGATAGGGTGGAATGAGACTATATTTGTAGAGTTATGCATAAATTGGGATTCTCATTTGGATTGATCGAGATGATTAGGGAATGTATATCAACGACCACTTTTTCAATCCTTATAAATGGGGAAGCAATAGGTAATATTGTGCCTGCTAGAGGATTAAGGCATGGTGATCCGTTGTCCCCACACCTTTTCTTACTTTGCTCGGAGGGACTATCAGCCATGCTATCTTCAGTGACAAATAGGGAGCTCTTGGGAATCTCAATTGCGCGATTGTCTCCCAAGGTATCCCATTTATTTTTTGTTGATGATAGCTTGATATTTCTAAAAGCAAATGCACCTAAATTCGGGACCTTCAAAACAATCATGGAAGTCTATGGAAAGGTGTCAGGGCAGAGTATTAATTCTAAAAAATCTAAGGTTTATTTCTCTGCAAATGTCCATTCTGATACAAGAGTTTATCTTGGTTCCACTTTACATATGTCGATCGTGGATAATCTGGGGACTTAATTTAGGTTTGCCTTCTCAATTCAATAAAGGCAAAAGTAAGGACTTTAAATTCTTAGTTGATAAAATATGGAATACTCTCCAAGGGTGGAAGAGTAGATTATTCTCAGGAGGTGGTAAAGAAATTCTTATAAAAAGAGTAGCCCAAGCAATTCCGACATATGCTATGGGTTGTTTTAGGATTCCCAAAGGCCTTCTCTCAAAGATATCATCTCTGTGTGCATGGTTTTGGTGGGGTTTGACGGAAGGAAATAAACGTATTCATTAGAAAAGATGGGAAGATTTGTGCAAACCTAAGGAAGTTGGTGGATTTAATTTCAGGGACCTCGAAGGTTTCAACCAAGCTATGATTGCTAAACAAGCATGGAGAGTTGTTTCCCACCCAGCCTCAACTTTGTCGAGGATCCTCCAAGGGAAATACTATCCAGGAGTTTCAGTACTGGAGGCTACGACAAAATCAAACTCTTCTTATTTTTGGAAGAGTTTTGTTTGGGGTCTTGACCTTTTGAAAGCAGGTATTCGGAGGAATGTGGGAAATGGGCAATTGACTAGAATCTTTAAGGATCCATGGATCCCAAGGCCCACTACTTTCAAGACCCTTATGAATAAGGGAGATGACGATAACATATTGGTAGTAGGTTTTGTTACTCCCTTCGAACAATGGGATACTGAGAAACTCCTCCATTGACTGTTGTGTAAGGAGGATGTGGATGAGATTAGTGATCTCCCCATTAGTGAGTTGGCCCCCGATAAGTGGATTTAGCATTATGATAAATATGGAAATTATACGGTGAAGAGTGGATATAAATTGCGAATGCTTATGAAATATGCGGCGTCCGCGTCCTAGGCATCTTTGGAACAAAGATGGTGGAAGAGGCTTTGGAACCTCAAAATTCCACACAAAATTAAACATTTTGTGTGGAGATCTTATAATAATTGCCTTCCCACGAAGGTAAATCTGATGAGGCATCATCTTTTTACGAACGAGGCTTGTCCGCTATGTCAAAACCATCCCGAATCTATAGATCATGCTATATTTTGATCCAGTCGGGCTATGAAAATATGGGAAATCCTACTGCCTTCTAGACTTGATGTTTTTTAGGATCATATGGATGTTAAGGATAGATGGTTGCTTTTAAGTAACCATAATTAGGGGGAGGATTTGCATCTTATTTGCATTGGTGCTTGGGCCATTTGGAATGACAGAAATCACTCTATACACAACAGATCCATTCCCACAATTGAGGTTCGTTGTGAATGGATATTTGATTAACTCAAGGAGTTTCAGCGGGTCAATGGAAATAAAGCAAGGAAGCTTCCGAATATCGTTGAATTCCAACAGGTAATTCAGGGAGGGGAAGAGATGATCGTGCAGGTGGATGCGGCTTGTGATGAAAATAAAAAGCATACTGGAATTGGGGTGGTTATTCGTGATCTGTAGGGTCAACTGCGGAGCATAATGGTCAACTCGACAGATACATTTTCCGATCCCTTATGTGTCGAGGCGTTGGCAGTCCAGGAAGGTCTCCGTTTTGCATATATACCGAATTTGAGATGCTTCTTGATTTTATCGGATTCCCTATCTTTAATCTCTATCATTCACAGAGCAATCCCTTGTCCCCGCTACTTGTGCGACAGTGTTATGGGATATTGATCGTGTTAGACATATTTTCTGCAGTGTCAGTTTCAGACATGTGAATTGACAATTTAACAACTTCGCTCATGAACTGGCAAGGTCGAGATTCTTTGCATCACAGATGTATTTTCAAAACTATCTAGAATGGATAATATCGTTAGCTCGTAACGAGCAACATTTCTTTGTATCTCCGAGAGGAGATTTCTTTTAGTAATGAAGTATATCTTTTATTAAAAAAAAAAAAAAACTATTACCATTAGTTAATAGTATTTGTAATTAATTGATTAAATACATAATAAATTAATATTTTCATAATTGTTTTATAATAGTTCTAGGGCTTGTTTTATGAAATTCATCATAAAAATATTATTTGGATATATTTGACGTTTTACCTAATAATTTTCCGTGATTTTAGGTGGTTGAAGAGGTGGGACACAAATGGCGAATGAAGAGTGTGGGGCCATGTGTCCCATCGGCATACTTAGACAATCGGTTGGAGAAGGACGAAAGCTACGGCGTCGGTCTCTTCAGCTCTGACGCTTCGGACGCCACAGCCGAGTGGCTCAACTCAAAGCCCGCCACCTCCGTTGTGTATGTCTCTTTCGGAAGCATTGTAAACTTGGGAGAAAACCAGGTGCTCCATCAATTTCCCATGCATCCTTCAACAAATCCATTCATTTTCAATAAATTCATGCCTCTTTTTACAAGTTACATAATAGAAAATTTTGAACCATTACCAATGTTAAAATAATTTTCCAATATGGTATTGACAAGGAGGATTTAAAATTATACACGTAGCTTTTAAAATAATGGCTTGCAACGGTGTACAGAATAACAGACCATTAAACGTTGATGTTAGGTAAGGGAAATAGCAAGCAGTCTGAGAGATGGCAATAGCTTCTTCATATGGGTTATGGGAGAATCAGTAAAGCAAAAGCTTCCAACCAACTTTGTTTCAGAAACCTCAGAGAAAGGTCTTGTTCTCAGCTGGTGCAATCAGCTCCAAGTGTTGGCTCACGCCGCCGTCGGATGCTTCGTCAGTCACTGTGGCTGGAACTCCACCCTGGAGGCTCTCAGCTGCGGCGTGCCCATGGTGGTCGTTCCCAAATGGTCCGATCAGACCACCAACTCCAAGTTCATAGCAGACGTTTGGGGAGTTGGGGTCAGAGCCAAAGTCGACGGAGACGCCATTTTCACTGCGGAGGAAATTGGAAAGTGTATTAGAGAAGTGATGGAGGGAGAGAGAGGGAAGGAGATAAGAAAGAATTCGTTGAAATGGAAGGAACTGGCTAGAGAAGCTGTGGATGAAGGTGGTAGCTCTGATAAGAATATTGATGACTTTGTAAAACAACTTTTCAATTCTGTTTGAAATGTGTGTTGGGTTTTGCTCTGTTGGATTGGAGCAATAATCTTGGACTAAATTGAGAGACGAAATGAATGAAGAATGATTTTTTTTTTCTTTTTTTTTTTTTGGGAGGAAAAATGAAGAATGAACTTTGTTTAGTACGTAATGGATTTCTTTATTTAGAGATCAAGTATTGATGTGTCCATGGTAACCTAAAACTCTAAAATGATGGGATTAAGTACATCTAAGAACTTTAGGTTATTTCTAAATTAAATTGTGG ATGCCCTGGATTCTGCCCGTCGCGAACCGCCTTGGGCTCGACGGAGCGCCGTTCTTCACTCAGTCTTGCGCTGTCAACCATATTTATGATCTTATTGGTCGGGGCGATCTGGAGATTCCTGTTGCAGAGGGTGGTCGCGTTTCGGTTGCTTCTCTGCCGATTCTCGACGCCGGCGACTTGCCGATTTCGTTCCCCGGCGTCGGCCTTGGCTTCGTGAAGTCTTTTAAAGCAAGTCAGTTCGGGAATTTAGAGGAGGCCAAATGGATGTTGTGTAATACCTTCTACGAATTGGAGAGTGCGGTATTGTATTGTTTGTTCGAAGGAACAGTGGTGCTTGTGAAACAGAGTACTGAAGAACCCATGGTTTCGAGTTTCAAACTGGAGCAAGAGGAATACATGAGTTGTGGCAGAGATAATTCAGCATCCGGCTGCTATTTCAGTGGAGCAAATGTTGGAGTAGAGTATCGCTTCTCTCAGTGCCTCATGGATCCGAGTTTGCTGGTCGAGGACTGGTCACGAATGAGTCTTACCTCAGCTAAGGATGAAATCTCGATGCAAGTTGATCAATCGGCTGTGGAACGCACTGGTCTATCTTTGGGTTGTTGTTTACTTGGGAAACTATTGTCCCATCGGATCTTAGCAGCGGAGTGCCAGTGGCTTTTCGATAAATTCTTGTTGGTTCTAGAATTTCCCGTTCGCGCCTACAGGCCTTTAGATTATTCCTTCACAATCGTGGCTTTTTTGGTCCATTTTTATGATATTCCTCTTGATTGGTACAATCATGAAATGGCAGAGAGATTGGGCAACGCAATCAGTGTGTATGTGGAGGTTGATAGCCTTTATCAATACGGGGAGTGGCTTCGTTTTGATGGGAAGAGTAAAATCTTAGCTCGTTCCTCGAATACGGATAATCGTATCGTTGCTATCCCGTTTGCAACTCCTTCCCAACCGACTTTGGTTGGATCCTCGATGGATAAGGAGGTTGTCACGACCATGGGTCTTTCGGAGATTCGCCCATCAATGGGTATTCGGATTATTGAGCAGCATCAGGACAACTCAGGGGGCGATGGAGTGAGTTACGCGACAGCTTGGTATTCTCTTTTCGGCGGCTCTGATTTTCAGAGTAAAGGCAAAGGCAAAGTTGGTGATCGATACTCCTTGGCCAGCGGAGGAAGTCTTTTTCCCGAGGACAGGAAATGGCGACCGAAATCATCCAATTCGCAGCAGTTCAGAGTGAAGGGAGGGGCATTTTCGGTGAAGCCATGGGACCCGACGGTTACGAGAATTGATGTTGATATTGCGGAATATTTAAGAGAGATGGATGAATTTAACCGAGATCAGATCATCTATTTGGAGGGAGAAAATTCAAATTCAACCTCGGCAGTCCAAACAGGGAAGAAGTACGTGAAAAGGTCCAATTGGAAGAATCGAGCTCATGCGGGATTTGTTCCCAAAGGGATGACCATGAGAGTCCTCAAGGAGTCCCAAAAGCGTAAGGATGGTTCAATCTTGTTCTCTCTAGATAACATCAAACGTCCTAAAGTTGACGTTAAGCATTATGATTCTGCATGGGTTATTGGAGGCGATTTCAATGAAATCCTTTGGGATTATGAGAAGTCGGGAGGACCTACTCGAGAGCAACGTCTAACTCACAATTTCGAAGCTACTTTGGATGATTATAACTTGTTGGATTTGGGATTTTTCGACGGGACCTATACTTGGTGTAATAGAAGAGAAATGGGTGACCAAGTAAGCTTAAGACTGGATCGTGTTTTGGCCAATCCCAAGCTTCACTTCCTTATTCCATCGCTATCAGCAGCAAATAACTCCTTTCTTTGCTGCAAATTAGCCTTGAACACCACCACGGAGGTTGCACCGGCGAAATGTAAATCCATTGTAGCCAGTTTTGGCACTTGGGATGGAAAGGGTGAGGTTAGCAATTTGTTACATCAGGATCTGAAGAAATGTGCGAGGAAATGTATTGGAAACAGAGATTGCGAGAGAATTGGCTCTAGTGGGGGGGATAGGAATACGAAATGGTTCCACCAGAAAGCTTCTAGTAGGAGGAAGAGGAATTTAATCAAAGGAGTAGTGGATGCTACTGGTTCCTGGCAGACTAAGTTATCATCTATTCAAGAGACTTTTGAGAGGATCATATGGATGTTAAGGATAGATGGTAATTCAGGGAGGGGAAGAGATGATCGTGCAGGGTCAACTGCGGAGCATAATGGTCAACTCGACAGATACATTTTCCGATCCCTTATGTGTCGAGGCGTTGGCAGTCCAGGAAGGTCTCCGTTTTGCATATATACCGAATTTGAGATGCTTCTTGATTTTATCGGATTCCCTATCTTTAATCTCTATCATTCACAGAGCAATCCCTTGTCCCCGCTACTTGTGCGACAGTGTTATGGGATATTGATCGTGTTAGACATATTTTCTGCAGTGTCAGTGGTTGAAGAGGTGGGACACAAATGGCGAATGAAGAGTGTGGGGCCATGTGTCCCATCGGCATACTTAGACAATCGGTTGGAGAAGGACGAAAGCTACGGCGTCGGTCTCTTCAGCTCTGACGCTTCGGACGCCACAGCCGAGTGGCTCAACTCAAAGCCCGCCACCTCCGTTGTGTATGTCTCTTTCGGAAGCATTGTAAACTTGGGAGAAAACCAGGTAAGGGAAATAGCAAGCAGTCTGAGAGATGGCAATAGCTTCTTCATATGGGTTATGGGAGAATCAGTAAAGCAAAAGCTTCCAACCAACTTTGTTTCAGAAACCTCAGAGAAAGGTCTTGTTCTCAGCTGGTGCAATCAGCTCCAAGTGTTGGCTCACGCCGCCGTCGGATGCTTCGTCAGTCACTGTGGCTGGAACTCCACCCTGGAGGCTCTCAGCTGCGGCGTGCCCATGGTGGTCGTTCCCAAATGGTCCGATCAGACCACCAACTCCAAGTTCATAGCAGACGTTTGGGGAGTTGGGGTCAGAGCCAAAGTCGACGGAGACGCCATTTTCACTGCGGAGGAAATTGGAAAGTGTATTAGAGAAGTGATGGAGGGAGAGAGAGGGAAGGAGATAAGAAAGAATTCGTTGAAATGGAAGGAACTGGCTAGAGAAGCTGTGGATGAAGGTGGTAGCTCTGATAAGAATATTGATGACTTTGTAAAACAACTTTTCAATTCTGTTTGA ATGCCCTGGATTCTGCCCGTCGCGAACCGCCTTGGGCTCGACGGAGCGCCGTTCTTCACTCAGTCTTGCGCTGTCAACCATATTTATGATCTTATTGGTCGGGGCGATCTGGAGATTCCTGTTGCAGAGGGTGGTCGCGTTTCGGTTGCTTCTCTGCCGATTCTCGACGCCGGCGACTTGCCGATTTCGTTCCCCGGCGTCGGCCTTGGCTTCGTGAAGTCTTTTAAAGCAAGTCAGTTCGGGAATTTAGAGGAGGCCAAATGGATGTTGTGTAATACCTTCTACGAATTGGAGAGTGCGGTATTGTATTGTTTGTTCGAAGGAACAGTGGTGCTTGTGAAACAGAGTACTGAAGAACCCATGGTTTCGAGTTTCAAACTGGAGCAAGAGGAATACATGAGTTGTGGCAGAGATAATTCAGCATCCGGCTGCTATTTCAGTGGAGCAAATGTTGGAGTAGAGTATCGCTTCTCTCAGTGCCTCATGGATCCGAGTTTGCTGGTCGAGGACTGGTCACGAATGAGTCTTACCTCAGCTAAGGATGAAATCTCGATGCAAGTTGATCAATCGGCTGTGGAACGCACTGGTCTATCTTTGGGTTGTTGTTTACTTGGGAAACTATTGTCCCATCGGATCTTAGCAGCGGAGTGCCAGTGGCTTTTCGATAAATTCTTGTTGGTTCTAGAATTTCCCGTTCGCGCCTACAGGCCTTTAGATTATTCCTTCACAATCGTGGCTTTTTTGGTCCATTTTTATGATATTCCTCTTGATTGGTACAATCATGAAATGGCAGAGAGATTGGGCAACGCAATCAGTGTGTATGTGGAGGTTGATAGCCTTTATCAATACGGGGAGTGGCTTCGTTTTGATGGGAAGAGTAAAATCTTAGCTCGTTCCTCGAATACGGATAATCGTATCGTTGCTATCCCGTTTGCAACTCCTTCCCAACCGACTTTGGTTGGATCCTCGATGGATAAGGAGGTTGTCACGACCATGGGTCTTTCGGAGATTCGCCCATCAATGGGTATTCGGATTATTGAGCAGCATCAGGACAACTCAGGGGGCGATGGAGTGAGTTACGCGACAGCTTGGTATTCTCTTTTCGGCGGCTCTGATTTTCAGAGTAAAGGCAAAGGCAAAGTTGGTGATCGATACTCCTTGGCCAGCGGAGGAAGTCTTTTTCCCGAGGACAGGAAATGGCGACCGAAATCATCCAATTCGCAGCAGTTCAGAGTGAAGGGAGGGGCATTTTCGGTGAAGCCATGGGACCCGACGGTTACGAGAATTGATGTTGATATTGCGGAATATTTAAGAGAGATGGATGAATTTAACCGAGATCAGATCATCTATTTGGAGGGAGAAAATTCAAATTCAACCTCGGCAGTCCAAACAGGGAAGAAGTACGTGAAAAGGTCCAATTGGAAGAATCGAGCTCATGCGGGATTTGTTCCCAAAGGGATGACCATGAGAGTCCTCAAGGAGTCCCAAAAGCGTAAGGATGGTTCAATCTTGTTCTCTCTAGATAACATCAAACGTCCTAAAGTTGACGTTAAGCATTATGATTCTGCATGGGTTATTGGAGGCGATTTCAATGAAATCCTTTGGGATTATGAGAAGTCGGGAGGACCTACTCGAGAGCAACGTCTAACTCACAATTTCGAAGCTACTTTGGATGATTATAACTTGTTGGATTTGGGATTTTTCGACGGGACCTATACTTGGTGTAATAGAAGAGAAATGGGTGACCAAGTAAGCTTAAGACTGGATCGTGTTTTGGCCAATCCCAAGCTTCACTTCCTTATTCCATCGCTATCAGCAGCAAATAACTCCTTTCTTTGCTGCAAATTAGCCTTGAACACCACCACGGAGGTTGCACCGGCGAAATGTAAATCCATTGTAGCCAGTTTTGGCACTTGGGATGGAAAGGGTGAGGTTAGCAATTTGTTACATCAGGATCTGAAGAAATGTGCGAGGAAATGTATTGGAAACAGAGATTGCGAGAGAATTGGCTCTAGTGGGGGGGATAGGAATACGAAATGGTTCCACCAGAAAGCTTCTAGTAGGAGGAAGAGGAATTTAATCAAAGGAGTAGTGGATGCTACTGGTTCCTGGCAGACTAAGTTATCATCTATTCAAGAGACTTTTGAGAGGATCATATGGATGTTAAGGATAGATGGTAATTCAGGGAGGGGAAGAGATGATCGTGCAGGGTCAACTGCGGAGCATAATGGTCAACTCGACAGATACATTTTCCGATCCCTTATGTGTCGAGGCGTTGGCAGTCCAGGAAGGTCTCCGTTTTGCATATATACCGAATTTGAGATGCTTCTTGATTTTATCGGATTCCCTATCTTTAATCTCTATCATTCACAGAGCAATCCCTTGTCCCCGCTACTTGTGCGACAGTGTTATGGGATATTGATCGTGTTAGACATATTTTCTGCAGTGTCAGTGGTTGAAGAGGTGGGACACAAATGGCGAATGAAGAGTGTGGGGCCATGTGTCCCATCGGCATACTTAGACAATCGGTTGGAGAAGGACGAAAGCTACGGCGTCGGTCTCTTCAGCTCTGACGCTTCGGACGCCACAGCCGAGTGGCTCAACTCAAAGCCCGCCACCTCCGTTGTGTATGTCTCTTTCGGAAGCATTGTAAACTTGGGAGAAAACCAGGTAAGGGAAATAGCAAGCAGTCTGAGAGATGGCAATAGCTTCTTCATATGGGTTATGGGAGAATCAGTAAAGCAAAAGCTTCCAACCAACTTTGTTTCAGAAACCTCAGAGAAAGGTCTTGTTCTCAGCTGGTGCAATCAGCTCCAAGTGTTGGCTCACGCCGCCGTCGGATGCTTCGTCAGTCACTGTGGCTGGAACTCCACCCTGGAGGCTCTCAGCTGCGGCGTGCCCATGGTGGTCGTTCCCAAATGGTCCGATCAGACCACCAACTCCAAGTTCATAGCAGACGTTTGGGGAGTTGGGGTCAGAGCCAAAGTCGACGGAGACGCCATTTTCACTGCGGAGGAAATTGGAAAGTGTATTAGAGAAGTGATGGAGGGAGAGAGAGGGAAGGAGATAAGAAAGAATTCGTTGAAATGGAAGGAACTGGCTAGAGAAGCTGTGGATGAAGGTGGTAGCTCTGATAAGAATATTGATGACTTTGTAAAACAACTTTTCAATTCTGTTTGA MPWILPVANRLGLDGAPFFTQSCAVNHIYDLIGRGDLEIPVAEGGRVSVASLPILDAGDLPISFPGVGLGFVKSFKASQFGNLEEAKWMLCNTFYELESAVLYCLFEGTVVLVKQSTEEPMVSSFKLEQEEYMSCGRDNSASGCYFSGANVGVEYRFSQCLMDPSLLVEDWSRMSLTSAKDEISMQVDQSAVERTGLSLGCCLLGKLLSHRILAAECQWLFDKFLLVLEFPVRAYRPLDYSFTIVAFLVHFYDIPLDWYNHEMAERLGNAISVYVEVDSLYQYGEWLRFDGKSKILARSSNTDNRIVAIPFATPSQPTLVGSSMDKEVVTTMGLSEIRPSMGIRIIEQHQDNSGGDGVSYATAWYSLFGGSDFQSKGKGKVGDRYSLASGGSLFPEDRKWRPKSSNSQQFRVKGGAFSVKPWDPTVTRIDVDIAEYLREMDEFNRDQIIYLEGENSNSTSAVQTGKKYVKRSNWKNRAHAGFVPKGMTMRVLKESQKRKDGSILFSLDNIKRPKVDVKHYDSAWVIGGDFNEILWDYEKSGGPTREQRLTHNFEATLDDYNLLDLGFFDGTYTWCNRREMGDQVSLRLDRVLANPKLHFLIPSLSAANNSFLCCKLALNTTTEVAPAKCKSIVASFGTWDGKGEVSNLLHQDLKKCARKCIGNRDCERIGSSGGDRNTKWFHQKASSRRKRNLIKGVVDATGSWQTKLSSIQETFERIIWMLRIDGNSGRGRDDRAGSTAEHNGQLDRYIFRSLMCRGVGSPGRSPFCIYTEFEMLLDFIGFPIFNLYHSQSNPLSPLLVRQCYGILIVLDIFSAVSVVEEVGHKWRMKSVGPCVPSAYLDNRLEKDESYGVGLFSSDASDATAEWLNSKPATSVVYVSFGSIVNLGENQVREIASSLRDGNSFFIWVMGESVKQKLPTNFVSETSEKGLVLSWCNQLQVLAHAAVGCFVSHCGWNSTLEALSCGVPMVVVPKWSDQTTNSKFIADVWGVGVRAKVDGDAIFTAEEIGKCIREVMEGERGKEIRKNSLKWKELAREAVDEGGSSDKNIDDFVKQLFNSV Homology
BLAST of Spg020707 vs. NCBI nr
Match: XP_022156538.1 (UDP-glycosyltransferase 74E2-like [Momordica charantia]) HSP 1 Score: 396.4 bits (1017), Expect = 8.0e-106 Identity = 188/237 (79.32%), Postives = 212/237 (89.45%), Query Frame = 0
BLAST of Spg020707 vs. NCBI nr
Match: XP_022156538.1 (UDP-glycosyltransferase 74E2-like [Momordica charantia]) HSP 1 Score: 142.5 bits (358), Expect = 2.1e-29 Identity = 68/102 (66.67%), Postives = 79/102 (77.45%), Query Frame = 0
HSP 2 Score: 382.9 bits (982), Expect = 9.1e-102 Identity = 185/238 (77.73%), Postives = 211/238 (88.66%), Query Frame = 0
BLAST of Spg020707 vs. NCBI nr
Match: XP_022156543.1 (UDP-glycosyltransferase 74E2-like [Momordica charantia]) HSP 1 Score: 127.1 bits (318), Expect = 9.0e-25 Identity = 61/103 (59.22%), Postives = 77/103 (74.76%), Query Frame = 0
HSP 2 Score: 320.9 bits (821), Expect = 4.3e-83 Identity = 147/234 (62.82%), Postives = 190/234 (81.20%), Query Frame = 0
BLAST of Spg020707 vs. NCBI nr
Match: KAG2728265.1 (hypothetical protein I3760_01G197000 [Carya illinoinensis]) HSP 1 Score: 82.4 bits (202), Expect = 2.5e-11 Identity = 46/108 (42.59%), Postives = 58/108 (53.70%), Query Frame = 0
HSP 2 Score: 320.9 bits (821), Expect = 4.3e-83 Identity = 147/234 (62.82%), Postives = 190/234 (81.20%), Query Frame = 0
BLAST of Spg020707 vs. NCBI nr
Match: XP_042944679.1 (mogroside IE synthase-like isoform X1 [Carya illinoinensis] >KAG2728266.1 hypothetical protein I3760_01G197000 [Carya illinoinensis] >KAG6668831.1 hypothetical protein CIPAW_01G199500 [Carya illinoinensis] >KAG6732905.1 hypothetical protein I3842_01G199900 [Carya illinoinensis] >KAG7997071.1 hypothetical protein I3843_01G192500 [Carya illinoinensis]) HSP 1 Score: 89.4 bits (220), Expect = 2.1e-13 Identity = 47/103 (45.63%), Postives = 59/103 (57.28%), Query Frame = 0
HSP 2 Score: 320.9 bits (821), Expect = 4.3e-83 Identity = 147/234 (62.82%), Postives = 190/234 (81.20%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy Swiss-Prot
Match: K7NBW3 (Mogroside IE synthase OS=Siraitia grosvenorii OX=190515 GN=UGT74AC1 PE=1 SV=1) HSP 1 Score: 283.5 bits (724), Expect = 9.9e-75 Identity = 128/228 (56.14%), Postives = 174/228 (76.32%), Query Frame = 0
HSP 2 Score: 83.6 bits (205), Expect = 1.5e-14 Identity = 41/103 (39.81%), Postives = 60/103 (58.25%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy Swiss-Prot
Match: Q9SYK9 (UDP-glycosyltransferase 74E2 OS=Arabidopsis thaliana OX=3702 GN=UGT74E2 PE=1 SV=1) HSP 1 Score: 281.2 bits (718), Expect = 4.9e-74 Identity = 130/227 (57.27%), Postives = 171/227 (75.33%), Query Frame = 0
HSP 2 Score: 68.2 bits (165), Expect = 6.5e-10 Identity = 40/111 (36.04%), Postives = 56/111 (50.45%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy Swiss-Prot
Match: Q9SKC1 (UDP-glycosyltransferase 74C1 OS=Arabidopsis thaliana OX=3702 GN=UGT74C1 PE=2 SV=1) HSP 1 Score: 280.0 bits (715), Expect = 1.1e-73 Identity = 146/296 (49.32%), Postives = 196/296 (66.22%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy Swiss-Prot
Match: P0C7P7 (UDP-glycosyltransferase 74E1 OS=Arabidopsis thaliana OX=3702 GN=UGT74E1 PE=3 SV=1) HSP 1 Score: 276.2 bits (705), Expect = 1.6e-72 Identity = 128/227 (56.39%), Postives = 169/227 (74.45%), Query Frame = 0
HSP 2 Score: 71.6 bits (174), Expect = 5.9e-11 Identity = 42/107 (39.25%), Postives = 59/107 (55.14%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy Swiss-Prot
Match: Q9SKC5 (UDP-glycosyltransferase 74D1 OS=Arabidopsis thaliana OX=3702 GN=UGT74D1 PE=1 SV=1) HSP 1 Score: 265.0 bits (676), Expect = 3.6e-69 Identity = 128/281 (45.55%), Postives = 194/281 (69.04%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy TrEMBL
Match: A0A6J1DQW5 (UDP-glycosyltransferase 74E2-like OS=Momordica charantia OX=3673 GN=LOC111023416 PE=3 SV=1) HSP 1 Score: 396.4 bits (1017), Expect = 3.9e-106 Identity = 188/237 (79.32%), Postives = 212/237 (89.45%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy TrEMBL
Match: A0A6J1DQW5 (UDP-glycosyltransferase 74E2-like OS=Momordica charantia OX=3673 GN=LOC111023416 PE=3 SV=1) HSP 1 Score: 142.5 bits (358), Expect = 1.0e-29 Identity = 68/102 (66.67%), Postives = 79/102 (77.45%), Query Frame = 0
HSP 2 Score: 382.9 bits (982), Expect = 4.4e-102 Identity = 185/238 (77.73%), Postives = 211/238 (88.66%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy TrEMBL
Match: A0A6J1DQX0 (Glycosyltransferase OS=Momordica charantia OX=3673 GN=LOC111023422 PE=3 SV=1) HSP 1 Score: 127.1 bits (318), Expect = 4.4e-25 Identity = 61/103 (59.22%), Postives = 77/103 (74.76%), Query Frame = 0
HSP 2 Score: 317.4 bits (812), Expect = 2.3e-82 Identity = 145/234 (61.97%), Postives = 186/234 (79.49%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy TrEMBL
Match: A0A7N2RCP5 (Glycosyltransferase OS=Quercus lobata OX=97700 PE=3 SV=1) HSP 1 Score: 315.5 bits (807), Expect = 8.7e-82 Identity = 144/231 (62.34%), Postives = 187/231 (80.95%), Query Frame = 0
BLAST of Spg020707 vs. ExPASy TrEMBL
Match: A0A7N2RCP5 (Glycosyltransferase OS=Quercus lobata OX=97700 PE=3 SV=1) HSP 1 Score: 79.3 bits (194), Expect = 1.0e-10 Identity = 45/108 (41.67%), Postives = 63/108 (58.33%), Query Frame = 0
HSP 2 Score: 313.9 bits (803), Expect = 2.5e-81 Identity = 145/241 (60.17%), Postives = 189/241 (78.42%), Query Frame = 0
BLAST of Spg020707 vs. TAIR 10
Match: AT1G05680.1 (Uridine diphosphate glycosyltransferase 74E2 ) HSP 1 Score: 281.2 bits (718), Expect = 3.5e-75 Identity = 130/227 (57.27%), Postives = 171/227 (75.33%), Query Frame = 0
HSP 2 Score: 68.2 bits (165), Expect = 4.6e-11 Identity = 40/111 (36.04%), Postives = 56/111 (50.45%), Query Frame = 0
BLAST of Spg020707 vs. TAIR 10
Match: AT2G31790.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 280.0 bits (715), Expect = 7.8e-75 Identity = 146/296 (49.32%), Postives = 196/296 (66.22%), Query Frame = 0
BLAST of Spg020707 vs. TAIR 10
Match: AT1G05675.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 276.2 bits (705), Expect = 1.1e-73 Identity = 128/227 (56.39%), Postives = 169/227 (74.45%), Query Frame = 0
HSP 2 Score: 71.6 bits (174), Expect = 4.2e-12 Identity = 42/107 (39.25%), Postives = 59/107 (55.14%), Query Frame = 0
BLAST of Spg020707 vs. TAIR 10
Match: AT2G31750.1 (UDP-glucosyl transferase 74D1 ) HSP 1 Score: 265.0 bits (676), Expect = 2.6e-70 Identity = 128/281 (45.55%), Postives = 194/281 (69.04%), Query Frame = 0
BLAST of Spg020707 vs. TAIR 10
Match: AT1G24100.1 (UDP-glucosyl transferase 74B1 ) HSP 1 Score: 248.8 bits (634), Expect = 1.9e-65 Identity = 120/238 (50.42%), Postives = 170/238 (71.43%), Query Frame = 0
The following BLAST results are available for this feature:
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InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) 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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