Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATAACTTTTCATGTTCTCCATAAGTAACAGAGCCTCACTGACTCAACTCCGCCTATTCTGATCATCAGGTAATTTGTTTCGTTCATCTTAACATATCTGATAATTTGCCCTTTCTCGTTTCAAATTCGTTTAACGATACCATTATCATTCTTAATTGAGGGCTTTTGTGTTCTTTATGTTTTGGATTTCTGTTGTATGGTAATCCTCTTTTCGAATTGAACTTTTCTACAAGTTTGATTCTTTTACATTGCTTATTTCACATGCTGGAAATGTGATATTGATGCCCATTTTTTTTCTTCTTTTGTTTGATTTTTATGTTATAATCATAATTTGTATTTTCAATACTATACCATCATTTTGGATAATGAATTTCCTGATAGATGGAGAGATGGGATTGTCCATTTTCCAATTGATTTCGACCCGAATACATGATTATTTAGTAGTTAGGGTTAGGTTAGATACATCAGGACCTCCCAAGATTTGGCAATAAACTAGGTTTAGTTTGAATTTGGTAATCCTCTTTTCGAATTGGACTTTTCTACAAGTTTGATTCTTTTACATTGCTTATTTTACATGCTGGAAATGTGATATTGATGCCCATAAACTAGGTTTAGTTTGAATTTGAATATGCAGCATTACATCTTTAAAAATTGTATTAACTTGCTGGAAGAAAATGTTTTGGTTCCATGGAATATAGTGGTTTTTAATGTGTTCTATGCAGTGTTTGACTCTCTTCTTGGGCGGGTTTTTCTGTAATTTCCATCATGATGTGCTAGAGTTGTATGACTAAGTGGATGCTTCGAGGGGAGAATTTCAACTTTGATATTTACCCTATGTTTGCAGATCTTTACATTTATCTCAGTTATCAATAGAAAGAGTCATGGAGGATAATCAGCAAGATTCTATGCGTCCTCCTCTACCTCAAACCTTTAAAGATAGAGAGGAACTTATTAACTATGTTCGTGATTTTGGCGTGAGCCAAGGTTATGTAATGACTATTAGGAAGTCAAGGAAAGACATTAGTGTTGTCCTTGGCTGTGATAGAGGAGGAGGTCGTCGTAGTCGAAATAAGTCCGAGGCTCCTAAACGCAAAAGAAAGGAATCCTCACGCCTCATAAATTGCCCTTTTGAGGTCATTGGTAGAAAAGAAGTAGATGCTTGGGAGCTTCACATAAGAAACGGAGAACACAACCATGAGCCTTTAAAAGATATGTCTGAGCACAGATTTAGTCGCCGTTTCAATGAAGAAGAGGCTAGGCAAGTTAAGGAAATGATCGAGGCAGGCATAAAACCACGCCAAGTGCTTGAGACTCTAAAGCAAAGCAATCCACAACTTCAGACAACCCCAAGGCATTTGTACAATCTTAAAGCTAAAATCCGCGAAGGAAATTTCTCAGGTTATACGCAATATTTTCTAATTGATATCTATGTGGTGTTACTTGTTAGTCATGCCAAGTGCAGCTTGGACTTGGTAGCTCGCCTGAGTTTGACTTGAGTAATCTGCAAGTTAAAGTTCTTTTGAGATCATATCATACTTCATCCTTATGCTCCATTTTTCAAGTGTCCATTTGCGGGAAATAAGGCTGCTGAGTTAGGGATTTTGTTTCTTAACTAGCAATCTGAGAGTTCTTTGGCTATTAAGTGTCTTTATATACTTGGCTTATTATAGCACGATAGCAATAGGATAATGAACTATAGTATAGTGCCTCAGGTATTTTTTTAGTTCTATTGGAAAAGAAGGTCAAGACCGAGGGTGCCTGATTTGGAAGAATAATGTTGTGAAGACATACATCCTCTGTTTTACAATAGATGCATCATGTTGACTTTCTACACTATTTATATACTAACTTTGACAATCAATATCTTTAATTACATATTAATAATAATTAGATATTTTGAAAATATATATTGAGATTAACCCAATAACAATTAAAAAGACAACATTTGTCGTTACATATTAATAATAAATGTGGTCAAAGTAGTAAATGAATAGTGTTAAAAGTCAATATGATGTATCTGTTAAGAAAAGGAGGAAGTATCATTAAGCATGCTCATTTTTTATTTTGAGATGTTATGATTTGAAGAATTCTTGTTACATCTTGTATGTAGAACAATATTTTTCCAATTTGGCGTCCTTTGTGTCCAATCCATGAGGTATAACATAAAATTGAGCTACGGTTTAGGTTGTTTAAAAAATAATTATGCTTATTATTGAAGTGAAATGTAACTAGTTCACATGTTACATATTTATTTAGTAGAAAAATCTTTGATCAGGTGAGATTGTGAGAATAGCTTGGTTTGGAAGTAAGAAGCAATAAATGAACCCATATGATCCCGTGGAGTTAGGAAGAGGTCATATTGAGAGATTGTGAGAGAAAGGGAAGTTGAGTTCTGAATAGTTGCGTGAGGTTGGGGTTAGCAGCCTGGAATGACTTCTTCACCATGCCCTATTATCAAAGTAACATAGCATATTCACTTGTGTTCTTTGGGTGCACATTGAGCATAGTCCAAAATTTGTCTGATAATCCATTTGATCTGTACTTATTCTCAACTTCCCGAACTTTGTTCTTGATTCTTTCAAAAGTTACGAAGGTTCTAACTTTGCTTCCCTTAAAAGTCCTATTTTTAAAATGTGTCTTAATTTTTGTCAAGTTATGGTCTCATCAATTCATCTCTAATCTTATGTAGTCATCCCTTTACATGTTCATGAAAGTTCAGGTCATTGTATAGTTTAAGCAATTAGAAGTCAAAGATTAACTTTGAGGATAGTTGGGGCTTTAATAAGAAAACAGTCCCCTACTCCCCTTATCATAAAAACTATGTTTAACAGTCCCCTACTCCCCTTATCATAAAAATTATGTCTAACCAGATACCACCACTAAATAGCTGGGTTTGTTGGTTTTCTTTTTAGGTTGCGTTTGGAAACATGGAATTCATTTCAAATAATGTATTTCAATATCCGGAATTGAAATCTTGGAATTCAATTCCAAACTTTGTGTTTGGGAAATATGAGAATTTGAAATCCAGAATTTAAAACTTTAATATGCTTGGCAAGTAAACTAACTATCTTATTTTGAAAAAGAATATTACATCAAAATAATCCAAGAAATTATATCAAACTGATTACGAAAGCAAATTACAACAATACAACAGTACACATACAAATTAAATATCTTGATTAAACAACAATTAAACAAAGCTTAGTCATGAAATTATACAATTAATCAATAATAGCCTATACAAAATGAAATCAGCTTGTTAACAAAGTCCTTAATTTGGGGAAAACCAAACCCTAACCCTAATAATATTTGTTTTAAAAATGACAAAACCGTAGGATTTCAAACAACGAAGCTAGATCCATTATCATTCCATGAAGCTATGTCACCAATAGAAGGATCTTCAACAAGTTAGGTTTCAAGCTAAACTGATGCCTGACAGATGGAAATTGTTAGAGGAATTTTCCACAGTGATTATTAGATTGTTATTAGTCGTAAACTGACACATGAATGAAAATAGCCCAAGTGTTTTCCACAGTGATTATTAGATAAAGCCCACAGTGGAATTCTGCTAATTATCTTAACTTTTCAGTGTTATTAGGAATTTAGGACTAGAGGTTAGTGCTTTATTATATGATGTTTAACCCTCGATGGCTTGACTTGGGCAGAATAAAGTTCACTTCATCTTTTTGTACACATACCATTTTACCGATTATGGATTTCTGTAAAATATTGTTTTTACAATGCTTTTTCTCCTTTGGGGTTTTCTTCTTTTTATTTTCTGGGTGGGGGAAGGTGGGTTGGTGTATTTGTTTGAAAAGGAAGACCAGCAACCAGTTTTATGTTCAATTGCGATTCATGGGCAACTTAGTGGCATAATTCAGACTTAGTGAAGCAATGCCCCCTCTGAATTTTATCTTACTTTTGGGACAGAAGGAAGCTTCAAGTCATGGAGGCCTAATGTGTCTGCTGCAGGAGCTTCCAGTGACAAAATCAACGAAGTAAGTTTTCACCATAAATGCTCAATGATCTCAAGTATACACCTGGGATAAATGGATATTGTTTCCACAAGCAAAATTTTAAGGTGTATGTCTTACACAAAGAATTTTAAGGTCTAATTATGGCTATCTTAACTTTAAGACCTTACTTTCCAGTTTGTAGTAGGAAACCAGATATTGAAATTTGAATAGATTTTTTTTTCCTTGTTATTTTGGAAAATTTATTTAGGCATCAAGGTCTGTGAGAAACCTTCACCAATAAATTCTATGGTCCTATTTTTCTATTAGAATTTACACCTTATCATGTTTCTGTTTGACCTATCTGCAGATCAAGGTTTCCAATTTTATTGGTGGAAAATTTGTGGAATCACAAGGGATTATCTTTGATGTTGTTGTTAATCCTGTGAGTAAATTTTCTGCTTCGGTTGCCTTTAGTTTCGTACATCCAGATATAGTGACTAGACATGCAACATCAAGCAGGCAACTCAAGAGGTTGTATCTCAAGTTCCATCAACAACATATGAAGAGTTCAAAGCCGCTGTTATGTCAGCAAAAGAAGCTTTTCCTTCGTGGAAGAATACACCTGTGTTCTCTCGACAGCGTATGATGATGAAGCTCCAAGAGCTCATACACAGAGACAAAGTAAGAATGCACAATATGGCTGGCTGTTTTTTTATTTTTTATTTTTTGTTGGGTATTTAGTATTCTTAAACTCTAAAAGTTTATTTTTCTAGGAGAAGCTTGCCTTGATTATTAGCACTGAACAGGGGAAGACAATTAAGAATGCTCATGCTGATATCCTCCATTGGTTAGGTAAAGATTATTTTCTTGATGTTTGAAAGAAAAGGATCACAATTCAAAGAAGTTTATCTTCATGTTAGTTTCTTTGTGTTTGCTTCTAGAGGTGGTTGAACATGCTTGTGAGATTACAGCTGTACAATGGGGGGAATTTGTCGCAAATGCTTCTAACGCGATTGATACATACTCCATCAGGGAACCTCTAGGTGTTTGTGCTGGGATATGCAATTCTAACTTCTCCGCAATGGTTCCCTTGTGGGTATGTTTTGAGAATTTCTAAAATCTTAACTGAGTTTTGCACTTGCATTAGTTGCTTGTCTTTACTGAATTACTGACTGATTGGGAAACGCCTCTTTGTATACTGCAAGTGTAAGGCTTGTAGTAATCTGGCTACATTTTGTGTAACTCATTTCTTCAAATTTCGTTACATAAGAATAGAGGGAATGTTGAGGACAGCATCCATCTAGTAAAAATTTAACAATGACCACAGCCCCGCAGATTCAAGAAAACATGAATTCACTATGATGTATCAATCTAGCAACAGATTCAGAAATCTGGAATTTTGACTCTCTGTTTAACAGACATTGCTTCCTCAAGAAATGTGCTTAAACATTTACTGAATGTTTAGTTTACCTTGGTTGTGCTTTTTGATTAGTTAATTAATATAAGGGGACGTTTGGCAAATCAAATGAAAATGGTATGAAATCAAGAGAGGGATAGGGGGAGAAAGGAAAGCAAAACTCTTAAGGCCCATTCGCTATCATTGTCAGTTTTCAGTTTTTGGTTTTATGATTTTCAAAGTCATATGATTTAGATTGAACTATGAACTAAAAATTTGTTATACTTATAATACTCATGTTGATTTCGAAAACTGTCAACAGTAAATTGGAAACTACTTTTTATGGTTTTCATATTTTTGTTTTTAGTATTTTAAAAAACAGAAAGCTGAAAACAAAAATTGATGACGAACTTTTTAGTCCAAAGAGGAGAAAGGCAAAGAAAAAAAAGCTTTTTCCCTGCTATGGAACCACAAACACCTCCCTTCCCAACCCCACCTCCACAACCAAAACCATGCTAGCACCGCCGATACTACAACCAGATGCGGCGACTCACCCTTGCACCACCCCATATGCACCGCCTCTCTCTCTCTCTCTCTCTCTCTCTCTATCTATCTATCTATCTATCTATCTATCTCCTTTTCTCTCTCTTGGATCTAGTTTTTTCGTGGGCGGTGGATGGGGTTTCTTGGTGGTTGGGTGGGTTTCAGGGGTTGGGGGTGGTTTTTCGGGAATCGGGGGTTGAGGTTGGTTTTCGAGTGGGATTTCGTGGGGTTGGGGCTGGGTTTTCAGTGGTTGAGTGTGTTTTCATTGGGGGTGAGTGGGGTTTCGTGGTGGTTTTGTTAGTTAGGGGTGGTGGGGCGGTGTTGGCGGTGCTGTTGAAGGTGGCGGTGATGGGGTGGCGCTGGTGAGAGTGGCAGGGTTGGCAGTTGGTGTATGGTGGTGTTGCGGTGATATTGGGATGGGTTACTACAGTTGAGGTCCATCTTGAATTGTATGTGTTCTTACCTGGATCATATAAATACATATGACATGTACAAGAAATCAACAAGAATACACACATAGAGGGCGGGGAAGGGGTTGGGGAGAAATGATGGGGAAGTACTAACTGTTGCGTAATATATGCAGATGTTCCTGGTTGCAATTACATGTGGGAATACATTTGTCCTTAAGCCTTCTGAAAAAAATCCAGGTGATTTGTGGTTCTTCTGCATTGTTTAACACAGTATAAAGTACTGATTGAAACTTCAAGTTGTTTGGAACTTTAAAAAAGAAATTTGCATGTCCAGTAGAGAATAGACTAGTATAGTATGCAGTTGGCAAAAAGTTGCTCCTTAGGATGATCTTTATGTGTACTATTATCATTATCACCAATCAAAAACCTTAGTCGTGGATAAATTACGGAATGAGATAGTGTACATTGCCATTTTCACCATGTCTATTGATCCAGGCATTTAAGATTTTAAGTTGATGCTTTGAAAATTTACCTATATAACTCAGGGTTCATCAGCAATCCATGTTTTATATATATCATTGACAACCCAATTTTCTCGAAAACAGAACTTCCATCGAGGCCGTAGATATTTACCAAATGAGAATGTCATGGACAATTCCGAGGTCCAATTCAGTTACTTTCTTGAGCTCGGGACTCTGGTATGATGTTGAATTTTTGGGTGGTTTATTGAATCAAAATTGGTTAGTTTCTGATGTTGAGCACAGAATGAGGGTAGTTTTCCAGTACCTCACTCCTTGATGTCTTATATTATGGATATTTTGGTGCTGCTGGTGGTTCTAGAACATTGTGGCCTCATAGTTTCATGTTTGATGAGTTCATAGAAGTTCCTTAGATGCTTTCCTCTAGACACCGTGCTGAAAACGATGTGATAATATATTAAGAGTCATCAAATTGGGGCTTGAACTTGAAATGTTATAACAAAGTTCAAAGATTAATGAAATGTTATTCGGAAACAATTCACTTATTCACCACTTCAAAAGTTACTTTCTTGCTCTTCTAGGTTTTTGTTCTACTTCACAGATTCAGGATATTGATTTCTATACTAAGTCACTTCAATTGATTTAGATATTGGACTTCAGCCTTGCAGTTGTTCTATACTGGTATCCATTATCATTGCATACTTTATATTGTCTGTCCTTCCCTTCATAGGCTAAAGTTATTTGCATAATTGCATTTTGTTTTATTCTAGGTGCTTCAATGAAGCTTGCAGAGTTGACCATAGAGGCAGGTTTACCTGATGGAGTCTTAAATATTGTTCATGGAGGCAATGTAAGCTATCTCTCCTTTGTATCGCGGAACTATAGTTAACAGGTTGATGCTTGTAAAGGTCATCAAGATGTCTATTTTGGTTTATGTGTGTCCAATAGCTTTCCAGTTGCTGACTGATCTCAATATTGGTAACAGATCGCAATTTCTTTTTCCCAAATGTTGCTGCTGCTGCTGTTTTTTTTTTTTTTTNTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCCTGTAAGTTTTTTGTTTTTGATCCTGAACAGGATATCCTCAATTATGTATGTGAGGACGATGATGTAAAAGCCATATCATATGTTGGCTCCTATATGGTAAGTTTTTTCCTTAGGATTTGAGTATTTGACTTCTCTGGCTGTTTGATGTTGTTCACTATGCAATATTAGTTTTTTGAAGTGCCTGCATCTGGTCACTGACCTCTTTATGACATGTAACTAGATATTCTCTCCTGCCCTAGAGATATCATGATTCATTTTTCTCCCCTTAAAATTACTTTGAATATGTGGTTTTGTGAATCATTGACCAAAATGTTGTATTGGCAACTGTTCCTAGTCTGAGTAATGACTCTGATTGTCTCCAACTAATTTTGTTATGGTTCTTCATTACTTCGTTACTTCAGTCTAATGATAATTATTAAGTTTCCCAATATTACTACGTATGTAGTACAAGAATTTACTGATTTTACTCGTTCATTTTCATTTCTTTTCCTTACAATTGTCTTTTGTCATAGGATGGTATGGACATATATGCTAAAGCAACTGCCAGAGGGAAACGTGTTGAGGTAAATACCATTTTAGTACGTAGTATTTGTTTGCATATATGTATAGAAGGTTCATTTTTTTACTGTTGAAGTATATCATGGACATAAGATTAACTTTCCTACTACTCACTTCATCTAAGATGGTTTTCTTATATATTCCTTATTCTTTTTACTCAGCAGATTTTTCTTACTCTATGGCATGTCCGGCAAACTTAACTGTTCATGTAGTGATTTATTTTTTTAATAGCGGTTAGAAGTTCTATCTAATTTACTGAATAAAAGATGTTCAATAAATCCATGTTTGAGGTTGCAGTTAACAATTTACATAAAAAATTTACCTGAACAATGTACAACATGAAATGGTATGAAATTGGGAAAACGGTGGATTTGGATGGAAGCAATCTTTGCTGCTAACCACTGTTAATATAATCTTATTAGCTTTCAACAAACATTACCCGACCTACTAGCTTCTATCCTGAAACTGAACTTTGCTAAACACTAAAAGTTGGGGTAAATAGTTGTTTGACACTTTTAACTCAATTGAACCAGAAGTAATATTCCTAAAGCTAGTGCTTGGCATGGTATTAAAATGTTTACTTTCCCCCTCTTTTTCTTGTTCTCTTTTTCTTCCATTCCCTATTTTGAAATTGTTATATTGTTAGCCGTTAGGCAACATTAACCTCCGCGTTAGCCCTGACTGGTTTGGGTAAGCTGCACACATGTTAATCTCTCCAGACCTGCTTTGAAGATATACCTTTTGATTGTTTGAATTGTTCATTGTTCTCTCTGCAATTGTGTAGGCACTAGGCAGCATCTTAAAATCTGCTAGTGAATTGTTATACGATCTTTATTCTTCTATTCACTGCTTTGTCATCTTTCCGTAGGCCAATACAGGATCCAAAAATCAGGCTGTTGTCATGCCTGATGCATGCGTGGATGCTACACTTGATGCTCTGGTTGCTTCTGGTTTGGTTGCTGCAGGAGATCCCTGCATGTCACTCAGCTCAGTAATTTTTGTTGGACATGCTACACCATGGTTGTACATAGCATATACTACTGTTCTTTAAAGTTCTTTACACTCACTATTTGCACGGACTCCAATGCAATATAATATATTCAATTTCGTATGTGAAAAAATTATGGAAATTGATATTTTTGAAAGTAAATACCGAGACGAATCTAACAAGATCCCACATGAAAATATTTTGAGGTATGTAATAGTGAAAATTTACGGTCAAATTTTTCATACTCTAGAAACATATTCCAAAGCGTAAAGAACTTCAGGAACGGAGGTAGAGTACTATGTCTAATGAGTCTAGTGGCATTGGGTTTCTGTGAACTCGAGCTATAACATGACAAACCTAACGCTGTATTTTCTGGAACTTTTTCAGGGAGGAGGAACTTGTCAAACGCGCTAAAACCCTAAAAGTTAGTGGAGGAACAGATGCAGGAGCCGATGTGGGCCCAGTGCTCAGCAAGGAGGTGGGAACAAGTAAATGTTGTTCATGGTTGTTGTGTTTGACTGGTTTCTGCTATATAAGTTGATATTTGACATAATTTACTGACACTTGTTTGTTTTTTTTGGTATTTAGCCTGCGTATTCTTATGTCTAGACATTTCATTGTGTGATGTCTTTATGACATTTAGCACTTATATTTTTGTTATTCTTTCCCATGTCAGACCAATGTGTGTGTGAAACGTTGCAGGTGAAGGATGAGATATGCAGATTTGTGCAAAGGGCAGTTGAAAGTGGTGCTAGAGCTATCCTTGATGGAAGGAACATTATGGTATTTGTTACCAGACAGTTCTAGGCTATAAATGTTCTAACTTGCATCTTCACTTTTGAAAAACACTGTTTTCTATATATATGGGTTTATGTACGGCAAGCTACCTTTATGAACCTTGTTTTATATGGAAGTAGGCCACTTAGGAGTAGTAAACAAAGTATGTGTTGTTTGGAATATGAATGGATGTGGCAGGCACTCTGTTACCTGATTCGCTAGTATGAGATTTGGTACGGGTTTGCAATTCGCTACCTGATTCTCTAAATTAGACAAAAATTGCACCATTTGACATGTTATAATTCGCTTTTTCGGTTCGCGGTTCGTGGGGTGATTAGGGAATTAGGTAACACTGGGCAGGTAGCTTTATTGGATGATATTATCAGAATTAGGTGAAACCACGACTTGTTCTGCCACTATTACGCTTACTTCTCAACACCCTCCCTCTCCCCCCCCCCCCCAGCCTCCTGGGTAAAAAAAATGAAGAATATGGAGGCCAGAAGACATGTGCTGGCATGAAATCGTCGTGGATGCTATAGTCCAAATGACTTCTTGAATACTTCATTGTGTTTATATCTTTCATTTGAATCTGGCCAAATTCTACTTCAAAAACACTGGATAATTAGGAAATAAGGACATTTGTGAATACCTTCCCCAATGAATTAAGGACTTGGCTGCATGAAAAAAAAATTAGTCTCCACATTCAAGCTATTCCCTCCAGGATCTGGTTAGTTTTTCTTTCTAGAAAAACTCTCTTGCCCTCCTTTTCTGCCCCTAGTTTAGTGCTTTCAGTTACCCTCACAAGGGTCAACATAGATGCCAACTTCAGTCCTCTTTATTAGAGACTTTTAAGTCTTAATCAAATACGATTTGCTTTTTGTGTATCTAATATGGCCACAATGAAAATGCATTCTGCATGTTTATCTTACATAGTGTAATGGACCACAGCCCTGACCCACCTATGCTGGTGTACAGGCGCAACAGAGAAAAACAGCAGCAGCACAACTCCAACAACAACACCACTGCAGCAAGGAGAGCCGTTAGCACCAACTGACAGGAAAAGCAGAAAGCAGACAAAGGAGCATTAATGAAATTGTACTTGCTTAGCTTCCTAGTTGTATAAATAAGAGAGGAGAAGAAAGAGAATGTATTGAGAATCATTTTGGTAGAACTGGAGATTAGTAACCTCAAGTTACTCACCTGAGATTGGTAGCCTAAAGCTACTCATTTTGTAACCTTTTGACTATTGAGTTCAACTAATCAACAGCTTCTCTCCTCTTTTCCCCTATTTGTGTCTGTGTGTGTTGTGAAGCCTACCCAGGGCTTTACACATAGTTACACTCGGTTATGAGGGGGGGGGAGGGGGTTGGTGTTGTATGGTGTTTAACTGTTCAGTGGACATCTGTTGAATTTGTTTGTAAGTAAAAAGTTAAAAACTACAATATTAGTCACCCCGTTTCTGCTCCCCGTTGTGATCCACATTCTTTTTGTGACTGAGTTCATTGTTGATTCCTGGAGTTGTTTCATATTGATGTAGTGTCATGAATGTGCTGTATATATATGTCCGTACAATTGCTTTTCGGGAGTCAGATGCTCACATCTAGCTATTGCTAATCTCTATCTAGATTATAGTGTGTATGCTAGTCTTTCTGAAGGATTGTGAATTATTGGGTTGGTACTAGGTTCCAGGATATGAGGATGGAAATTTTGTCGGCCCAACTATCTTGAGTGGCGTTACAACTAGCATGGAGTGTTGTAAGGTTCCTTTTTAAGTGCACCCTCCTCTTTAGTGTTCTCAGAGAATATTCTTATGCAAATTGTGATAGATGAAGAATCTCTGTTTGGATCTTTCATATATATGATACCATTCTGTTTTTTGATAACCAGGAAGATATTTTTGGACCAGTGCTGCTATGTACACAGGTAATATTTTGGTGACTAATCTTCCTTCTCCCTCCATTTTTCTACCTACTATTTAGGTTATTACGGAGTACCTTTTTGCTTTTTTTTTTTTTTTTTTTTTTTNTTTTTTGAGGTTTGTGGAATTTGTTTGAAAGTTCCTGATCATTTGCAGGTGAACAGTTTAGAAGATGCTGTAGCCATAATCAACCAGCAAAAGTACTTCCCCACTCTTTTCTGCATCATCAGTTATTGTTGAAGTTTGATCAGGTTTTTCTGCTTTGGTTTCACTACTAGGAAAATGTCACTTGTCAAGTTGTCATTAATGAAAACATTAATATGAATTATAAGGTGACTATATCTAATAAGTACTACGGAGTATCTAGTACCCCAGATGTAATTCAAACAAGTTGATATAGCAGATACATCTTGATGAAGGGAATTTATTAAACTTTTAACGATTCAGCATATTTTATTGTAACACCTATTCACGGGTTTGTCCATCTCCTTTAGGTTTGGAAATGGAGCATCTATATTTACCACATCAGGTATTACAGCAAGGAAGTTTCAGAATGCGGTTGAGATAGGTTTGGTAAGTTCCTTGTATTATTCTTGAAACCAACCACCTACTTAACGTCCATGTTCCTTTTCCATTGCCAAATGTAACCTGCTAAAATTCTCTTTGATTGGCTCAGATTGGGATCAATGTTCCTGTTCCTTTTCAGTTGACAGAATCCTTTGCCGGTAATCTCAATTTTCATGGTCTTTATCTGTTTAATTCTCTCTCAACTCCCTCACTCCCGTTTACACTCACCTACCCTCAACCCTGACACCCTAAGTGAATGCACGACCACACACACACTAAGATAGTGTTTGGTTCATAGTAAACATTTAGAACTGAAATTCATTTCAATGGAAATCTGATTTTAAAGTACATTTCCTTTGTTTGGTTCCTTGTTGGAAAATATAGAGGACAAAGGAAAAAGAGGAATGGAGAAAAGAGGGTGGAAGGGAGAAGAGGGTGGTGAGGGTATGGAGGAAAATATGGCATTCATGACTAAAGGAAAATAGTTCTTTTACTGGAAAACAACTTATCGGTTCTATTTACCTTATTTCCATTATTTAAGTTCAGATGAGTTAGATAAGTTCAGATAAGATAAGTTTAGGGAAAATAAGGGTTGAACAAGTACAATTCATAAGTAAAATAAGTTCTGATAAGTTCAGTTAAGATAAGTTTAGAAAAAACAAGTGAAAATCTGGTGAATAGAAATCAACCTTAATAATATTTTTTGCACCCCCTTAACAAACCAACTAAAGGAAAATCGGAAAATTAGTTCCCGTGGGAAATGATTTTCTACCCAATCAAACAAAGAGGGTGTAGACATTTGGGTTTAGTATTGAATTTTATGCTTCTGTATGTTAGTCTCGTTTAGACCATCCCCAGATTGACTTTCATTTAAATATGCAGGGAAAGCAGGTATCCAGTTCTACACAAAGGTTAAAATAGTTGCACAGCAATGGAGGGAGCCAACCTCCAAAGGAATCTTATCAAGTAAAAACTTGACATCAAATCAAGCCGTTCCAGCGACCGTGCCTTCATCATCTGATATTGATATATCCAGCGACGAAACCTCGGATTCAAAATCATCACAAGGGGAGATGACATATCAGGAAGGGCCAGTAAACATACCTTCCACTGAAAATGATCCATGCTGCAGTGCGACATCAATGCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAAGACAACTCCATTGGCTAGCACATCTGAGTTGAGTTCACCAAACAGGACAACTCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAGGACAACCCTATTAACTGAGTTGTTATCCGAGTCCCGAGCACCTGACAACAGCTTATACTTGCCTTTTACTGTTACTTGA ATAACTTTTCATGTTCTCCATAAGTAACAGAGCCTCACTGACTCAACTCCGCCTATTCTGATCATCAGATCTTTACATTTATCTCAGTTATCAATAGAAAGAGTCATGGAGGATAATCAGCAAGATTCTATGCGTCCTCCTCTACCTCAAACCTTTAAAGATAGAGAGGAACTTATTAACTATGTTCGTGATTTTGGCGTGAGCCAAGGTTATGTAATGACTATTAGGAAGTCAAGGAAAGACATTAGTGTTGTCCTTGGCTGTGATAGAGGAGGAGGTCGTCGTAGTCGAAATAAGTCCGAGGCTCCTAAACGCAAAAGAAAGGAATCCTCACGCCTCATAAATTGCCCTTTTGAGGTCATTGGTAGAAAAGAAGTAGATGCTTGGGAGCTTCACATAAGAAACGGAGAACACAACCATGAGCCTTTAAAAGATATGTCTGAGCACAGATTTAGTCGCCGTTTCAATGAAGAAGAGGCTAGGCAAGTTAAGGAAATGATCGAGGCAGGCATAAAACCACGCCAAGTGCTTGAGACTCTAAAGCAAAGCAATCCACAACTTCAGACAACCCCAAGGCATTTGTACAATCTTAAAGCTAAAATCCGCGAAGGAAATTTCTCAGAAGGAAGCTTCAAGTCATGGAGGCCTAATGTGTCTGCTGCAGGAGCTTCCAGTGACAAAATCAACGAAATCAAGGTTTCCAATTTTATTGGTGGAAAATTTGTGGAATCACAAGGGATTATCTTTGATGTTGTTGTTAATCCTGCAACTCAAGAGGTTGTATCTCAAGTTCCATCAACAACATATGAAGAGTTCAAAGCCGCTGTTATGTCAGCAAAAGAAGCTTTTCCTTCGTGGAAGAATACACCTGTGTTCTCTCGACAGCGTATGATGATGAAGCTCCAAGAGCTCATACACAGAGACAAAGAGAAGCTTGCCTTGATTATTAGCACTGAACAGGGGAAGACAATTAAGAATGCTCATGCTGATATCCTCCATTGGTTAGAGGTGGTTGAACATGCTTGTGAGATTACAGCTGTACAATGGGGGGAATTTGTCGCAAATGCTTCTAACGCGATTGATACATACTCCATCAGGGAACCTCTAGGTGTTTGTGCTGGGATATGCAATTCTAACTTCTCCGCAATGGTTCCCTTGTGGATGTTCCTGGTTGCAATTACATGTGGGAATACATTTGTCCTTAAGCCTTCTGAAAAAAATCCAGGTGCTTCAATGAAGCTTGCAGAGTTGACCATAGAGGCAGGTTTACCTGATGGAGTCTTAAATATTGTTCATGGAGGCAATGATATCCTCAATTATGTATGTGAGGACGATGATGTAAAAGCCATATCATATGTTGGCTCCTATATGGATGGTATGGACATATATGCTAAAGCAACTGCCAGAGGGAAACGTGTTGAGGCCAATACAGGATCCAAAAATCAGGCTGTTGTCATGCCTGATGCATGCGTGGATGCTACACTTGATGCTCTGGTTGCTTCTGGTTTGGTTGCTGCAGGAGATCCCTGCATGTCACTCAGCTCAGTAATTTTTGTTGGACATGCTACACCATGGGAGGAGGAACTTGTCAAACGCGCTAAAACCCTAAAAGTTAGTGGAGGAACAGATGCAGGAGCCGATGTGGGCCCAGTGCTCAGCAAGGAGGTGAAGGATGAGATATGCAGATTTGTGCAAAGGGCAGTTGAAAGTGGTGCTAGAGCTATCCTTGATGGAAGGAACATTATGGTTCCAGGATATGAGGATGGAAATTTTGTCGGCCCAACTATCTTGAGTGGCGTTACAACTAGCATGGAGTGTTGTAAGGAAGATATTTTTGGACCAGTGCTGCTATGTACACAGGTGAACAGTTTAGAAGATGCTGTAGCCATAATCAACCAGCAAAAGTTTGGAAATGGAGCATCTATATTTACCACATCAGGTATTACAGCAAGGAAGTTTCAGAATGCGGTTGAGATAGGTTTGATTGGGATCAATGTTCCTGTTCCTTTTCAGTTGACAGAATCCTTTGCCGGGAAAGCAGGTATCCAGTTCTACACAAAGGTTAAAATAGTTGCACAGCAATGGAGGGAGCCAACCTCCAAAGGAATCTTATCAAGTAAAAACTTGACATCAAATCAAGCCGTTCCAGCGACCGTGCCTTCATCATCTGATATTGATATATCCAGCGACGAAACCTCGGATTCAAAATCATCACAAGGGGAGATGACATATCAGGAAGGGCCAGTAAACATACCTTCCACTGAAAATGATCCATGCTGCAGTGCGACATCAATGCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAAGACAACTCCATTGGCTAGCACATCTGAGTTGAGTTCACCAAACAGGACAACTCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAGGACAACCCTATTAACTGAGTTGTTATCCGAGTCCCGAGCACCTGACAACAGCTTATACTTGCCTTTTACTGTTACTTGA ATGGAGGATAATCAGCAAGATTCTATGCGTCCTCCTCTACCTCAAACCTTTAAAGATAGAGAGGAACTTATTAACTATGTTCGTGATTTTGGCGTGAGCCAAGGTTATGTAATGACTATTAGGAAGTCAAGGAAAGACATTAGTGTTGTCCTTGGCTGTGATAGAGGAGGAGGTCGTCGTAGTCGAAATAAGTCCGAGGCTCCTAAACGCAAAAGAAAGGAATCCTCACGCCTCATAAATTGCCCTTTTGAGGTCATTGGTAGAAAAGAAGTAGATGCTTGGGAGCTTCACATAAGAAACGGAGAACACAACCATGAGCCTTTAAAAGATATGTCTGAGCACAGATTTAGTCGCCGTTTCAATGAAGAAGAGGCTAGGCAAGTTAAGGAAATGATCGAGGCAGGCATAAAACCACGCCAAGTGCTTGAGACTCTAAAGCAAAGCAATCCACAACTTCAGACAACCCCAAGGCATTTGTACAATCTTAAAGCTAAAATCCGCGAAGGAAATTTCTCAGAAGGAAGCTTCAAGTCATGGAGGCCTAATGTGTCTGCTGCAGGAGCTTCCAGTGACAAAATCAACGAAATCAAGGTTTCCAATTTTATTGGTGGAAAATTTGTGGAATCACAAGGGATTATCTTTGATGTTGTTGTTAATCCTGCAACTCAAGAGGTTGTATCTCAAGTTCCATCAACAACATATGAAGAGTTCAAAGCCGCTGTTATGTCAGCAAAAGAAGCTTTTCCTTCGTGGAAGAATACACCTGTGTTCTCTCGACAGCGTATGATGATGAAGCTCCAAGAGCTCATACACAGAGACAAAGAGAAGCTTGCCTTGATTATTAGCACTGAACAGGGGAAGACAATTAAGAATGCTCATGCTGATATCCTCCATTGGTTAGAGGTGGTTGAACATGCTTGTGAGATTACAGCTGTACAATGGGGGGAATTTGTCGCAAATGCTTCTAACGCGATTGATACATACTCCATCAGGGAACCTCTAGGTGTTTGTGCTGGGATATGCAATTCTAACTTCTCCGCAATGGTTCCCTTGTGGATGTTCCTGGTTGCAATTACATGTGGGAATACATTTGTCCTTAAGCCTTCTGAAAAAAATCCAGGTGCTTCAATGAAGCTTGCAGAGTTGACCATAGAGGCAGGTTTACCTGATGGAGTCTTAAATATTGTTCATGGAGGCAATGATATCCTCAATTATGTATGTGAGGACGATGATGTAAAAGCCATATCATATGTTGGCTCCTATATGGATGGTATGGACATATATGCTAAAGCAACTGCCAGAGGGAAACGTGTTGAGGCCAATACAGGATCCAAAAATCAGGCTGTTGTCATGCCTGATGCATGCGTGGATGCTACACTTGATGCTCTGGTTGCTTCTGGTTTGGTTGCTGCAGGAGATCCCTGCATGTCACTCAGCTCAGTAATTTTTGTTGGACATGCTACACCATGGGAGGAGGAACTTGTCAAACGCGCTAAAACCCTAAAAGTTAGTGGAGGAACAGATGCAGGAGCCGATGTGGGCCCAGTGCTCAGCAAGGAGGTGAAGGATGAGATATGCAGATTTGTGCAAAGGGCAGTTGAAAGTGGTGCTAGAGCTATCCTTGATGGAAGGAACATTATGGTTCCAGGATATGAGGATGGAAATTTTGTCGGCCCAACTATCTTGAGTGGCGTTACAACTAGCATGGAGTGTTGTAAGGAAGATATTTTTGGACCAGTGCTGCTATGTACACAGGTGAACAGTTTAGAAGATGCTGTAGCCATAATCAACCAGCAAAAGTTTGGAAATGGAGCATCTATATTTACCACATCAGGTATTACAGCAAGGAAGTTTCAGAATGCGGTTGAGATAGGTTTGATTGGGATCAATGTTCCTGTTCCTTTTCAGTTGACAGAATCCTTTGCCGGGAAAGCAGGTATCCAGTTCTACACAAAGGTTAAAATAGTTGCACAGCAATGGAGGGAGCCAACCTCCAAAGGAATCTTATCAAGTAAAAACTTGACATCAAATCAAGCCGTTCCAGCGACCGTGCCTTCATCATCTGATATTGATATATCCAGCGACGAAACCTCGGATTCAAAATCATCACAAGGGGAGATGACATATCAGGAAGGGCCAGTAAACATACCTTCCACTGAAAATGATCCATGCTGCAGTGCGACATCAATGCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAAGACAACTCCATTGGCTAGCACATCTGAGTTGAGTTCACCAAACAGGACAACTCCATTGGCTAGCACATCCGAGTTGAGTTCACCAAACAGGACAACCCTATTAACTGAGTTGTTATCCGAGTCCCGAGCACCTGACAACAGCTTATACTTGCCTTTTACTGTTACTTGA MEDNQQDSMRPPLPQTFKDREELINYVRDFGVSQGYVMTIRKSRKDISVVLGCDRGGGRRSRNKSEAPKRKRKESSRLINCPFEVIGRKEVDAWELHIRNGEHNHEPLKDMSEHRFSRRFNEEEARQVKEMIEAGIKPRQVLETLKQSNPQLQTTPRHLYNLKAKIREGNFSEGSFKSWRPNVSAAGASSDKINEIKVSNFIGGKFVESQGIIFDVVVNPATQEVVSQVPSTTYEEFKAAVMSAKEAFPSWKNTPVFSRQRMMMKLQELIHRDKEKLALIISTEQGKTIKNAHADILHWLEVVEHACEITAVQWGEFVANASNAIDTYSIREPLGVCAGICNSNFSAMVPLWMFLVAITCGNTFVLKPSEKNPGASMKLAELTIEAGLPDGVLNIVHGGNDILNYVCEDDDVKAISYVGSYMDGMDIYAKATARGKRVEANTGSKNQAVVMPDACVDATLDALVASGLVAAGDPCMSLSSVIFVGHATPWEEELVKRAKTLKVSGGTDAGADVGPVLSKEVKDEICRFVQRAVESGARAILDGRNIMVPGYEDGNFVGPTILSGVTTSMECCKEDIFGPVLLCTQVNSLEDAVAIINQQKFGNGASIFTTSGITARKFQNAVEIGLIGINVPVPFQLTESFAGKAGIQFYTKVKIVAQQWREPTSKGILSSKNLTSNQAVPATVPSSSDIDISSDETSDSKSSQGEMTYQEGPVNIPSTENDPCCSATSMPLASTSELSSPNKTTPLASTSELSSPNRTTPLASTSELSSPNRTTLLTELLSESRAPDNSLYLPFTVT Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo06423.1 vs. NCBI nr
Match: gi|902197204|gb|KNA13355.1| (hypothetical protein SOVF_117700 [Spinacia oleracea]) HSP 1 Score: 1547.3 bits (4005), Expect = 0.000e+0 Identity = 797/798 (99.87%), Postives = 797/798 (99.87%), Query Frame = 1
BLAST of Spo06423.1 vs. NCBI nr
Match: gi|359495852|ref|XP_002266379.2| (PREDICTED: uncharacterized protein LOC100254417 isoform X1 [Vitis vinifera]) HSP 1 Score: 903.3 bits (2333), Expect = 3.100e-259 Identity = 485/818 (59.29%), Postives = 601/818 (73.47%), Query Frame = 1
BLAST of Spo06423.1 vs. NCBI nr
Match: gi|731440746|ref|XP_010646442.1| (PREDICTED: uncharacterized protein LOC100254417 isoform X2 [Vitis vinifera]) HSP 1 Score: 900.2 bits (2325), Expect = 2.600e-258 Identity = 486/816 (59.56%), Postives = 599/816 (73.41%), Query Frame = 1
BLAST of Spo06423.1 vs. NCBI nr
Match: gi|694376925|ref|XP_009364800.1| (PREDICTED: uncharacterized protein LOC103954704 isoform X1 [Pyrus x bretschneideri]) HSP 1 Score: 899.4 bits (2323), Expect = 4.400e-258 Identity = 476/796 (59.80%), Postives = 584/796 (73.37%), Query Frame = 1
BLAST of Spo06423.1 vs. NCBI nr
Match: gi|694376933|ref|XP_009364802.1| (PREDICTED: uncharacterized protein LOC103954704 isoform X2 [Pyrus x bretschneideri]) HSP 1 Score: 898.7 bits (2321), Expect = 7.500e-258 Identity = 476/794 (59.95%), Postives = 580/794 (73.05%), Query Frame = 1
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R1F9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_117700 PE=4 SV=1) HSP 1 Score: 1547.3 bits (4005), Expect = 0.000e+0 Identity = 797/798 (99.87%), Postives = 797/798 (99.87%), Query Frame = 1
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Match: F6I723_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_00s0218g00070 PE=3 SV=1) HSP 1 Score: 903.3 bits (2333), Expect = 2.100e-259 Identity = 484/814 (59.46%), Postives = 600/814 (73.71%), Query Frame = 1
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Match: A0A061DHE0_THECC (Methylmalonate-semialdehyde dehydrogenase OS=Theobroma cacao GN=TCM_000959 PE=3 SV=1) HSP 1 Score: 884.4 bits (2284), Expect = 1.000e-253 Identity = 479/810 (59.14%), Postives = 587/810 (72.47%), Query Frame = 1
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Match: A0A0D2RKH3_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_011G109400 PE=4 SV=1) HSP 1 Score: 881.3 bits (2276), Expect = 8.700e-253 Identity = 472/792 (59.60%), Postives = 580/792 (73.23%), Query Frame = 1
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Match: A0A0D2T669_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_011G109400 PE=4 SV=1) HSP 1 Score: 881.3 bits (2276), Expect = 8.700e-253 Identity = 472/792 (59.60%), Postives = 580/792 (73.23%), Query Frame = 1
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Match: MMSA_ARATH (Methylmalonate-semialdehyde dehydrogenase [acylating], mitochondrial OS=Arabidopsis thaliana GN=ALDH6B2 PE=2 SV=2) HSP 1 Score: 612.5 bits (1578), Expect = 6.800e-174 Identity = 295/484 (60.95%), Postives = 383/484 (79.13%), Query Frame = 1
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Match: MMSA_MOUSE (Methylmalonate-semialdehyde dehydrogenase [acylating], mitochondrial OS=Mus musculus GN=Aldh6a1 PE=1 SV=1) HSP 1 Score: 479.9 bits (1234), Expect = 5.200e-134 Identity = 236/499 (47.29%), Postives = 338/499 (67.74%), Query Frame = 1
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Match: MMSA_DICDI (Probable methylmalonate-semialdehyde dehydrogenase [acylating], mitochondrial OS=Dictyostelium discoideum GN=mmsdh PE=3 SV=1) HSP 1 Score: 476.9 bits (1226), Expect = 4.400e-133 Identity = 236/490 (48.16%), Postives = 337/490 (68.78%), Query Frame = 1
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Match: MMSA_BOVIN (Methylmalonate-semialdehyde dehydrogenase [acylating], mitochondrial OS=Bos taurus GN=ALDH6A1 PE=1 SV=1) HSP 1 Score: 476.9 bits (1226), Expect = 4.400e-133 Identity = 235/515 (45.63%), Postives = 348/515 (67.57%), Query Frame = 1
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Match: MMSA_RAT (Methylmalonate-semialdehyde dehydrogenase [acylating], mitochondrial OS=Rattus norvegicus GN=Aldh6a1 PE=1 SV=1) HSP 1 Score: 476.5 bits (1225), Expect = 5.800e-133 Identity = 232/499 (46.49%), Postives = 339/499 (67.94%), Query Frame = 1
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Match: AT2G14170.1 (aldehyde dehydrogenase 6B2) HSP 1 Score: 612.5 bits (1578), Expect = 3.800e-175 Identity = 295/484 (60.95%), Postives = 383/484 (79.13%), Query Frame = 1
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Match: AT1G79440.1 (aldehyde dehydrogenase 5F1) HSP 1 Score: 186.0 bits (471), Expect = 8.800e-47 Identity = 133/474 (28.06%), Postives = 224/474 (47.26%), Query Frame = 1
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Match: AT1G74920.1 (aldehyde dehydrogenase 10A8) HSP 1 Score: 175.6 bits (444), Expect = 1.200e-43 Identity = 119/428 (27.80%), Postives = 204/428 (47.66%), Query Frame = 1
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Match: AT3G48170.1 (aldehyde dehydrogenase 10A9) HSP 1 Score: 171.4 bits (433), Expect = 2.200e-42 Identity = 131/494 (26.52%), Postives = 225/494 (45.55%), Query Frame = 1
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Match: AT3G24503.1 (aldehyde dehydrogenase 2C4) HSP 1 Score: 171.0 bits (432), Expect = 2.900e-42 Identity = 134/471 (28.45%), Postives = 228/471 (48.41%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo06423.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo06423.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo06423.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo06423.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
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