Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TATTTCAACTGTTTTACCACTGCATCAACCTTGAAAACTCCGCACCATATAAATCTCTAAACAGACACGACCTTAATGCGCACTCAATTCTCTCTCTTCCGACGCATCCCCACTTTAAAGTCGAACATCCAACAACACCACCACCACCCCCATCACTCTCGCCACCACCATCACTCTCTCTCCACCATGACTTCTTCCCTAATTCTCCCTTCAGTCACCCTGAAAAAAACTCCATTAAACTGCTCTCAGTCACTTAAAACCCATAATTTTTCAAGCTTTGTTGGGTTTAAAAATGGCGGCATTCTACAAATTAAGCCCCGAAATGATGGAGCTAGAGTTTTTATGAGCGTTTCTGCTAGATCCCCTTCTCAAACTGCTGTTAATGACGCTTTGTTCTCTGATTATAAGCCTTCTTCCGCTTTTCTCTTTCCCGGACAGGTAAACAATTCACCTTTTTTTTTTTTTTTTTTAATCTTTGATTTCGTAATTAATTATGATTTTATTGTTTTCCGTTGGAAATTCACAAATTTGGAATATAAGTAGGTTAAGCTGGAGAAATTTTGAGACTATTGATCCACATTGTTGAATTATGATTGGTTAATTGTTTGTAGTAGTATACAATTAATAGAAGAATTCATGAATGATGATTAGTTTCTTTCGGTTTGTGTTAATATTGGGGGTTGACATTGTTTTCAGGGAGCTCAAGCAGTAGGAATGGGAGCAGAGGCACAGAATGTGCCTGCAGCTGCTGCCTTGTTTAAGAAAGCTAATGACATTCTAGGGTATGCTTAATTCTGATGCTTTTAGCTGCATTTTTTCCCGGGGGGCAGGGGCCGAGTGTAGATTCGCAGTTGTGTTTATCTTTTATTGAAGTTGAAATCAGAGTCTTTGTGTGTATGGTTTGTTTGCTTTATTTCTGGCTTGAACTTGTGTAGCTTTGATCTCTTGGAGATTTGCACCAATGGACCAAAGGAAAAGCTTAATTCAACTGTCCTAAGTCAGGTAATATTATCGTCGTATTCATGATCATTGCTTTTATAGCTACATTGAGCTAAATCTTTACACTTTTACCTAGTGGTAAAATTTGTCTATTGTAAACACAGCCAATTATCTGTAAATATACTTCTGTTAATTAAAAAAATGGTTTTATATTGGTCTCAAGGTAGCACTAATGGTTCAATGGAAAAGTGGTAATAGATCTTAGTTTCCTACTAATTACGAAGTGGTAAACAGCTAATTTTCCTAACTTGCATTATTCTTATACCTAGAAAACATATTTCATGCATTCTGATTTCACTTTAAGGCTCCGTTTGGTAAGGCGTAAAATGTTTTCATTGTAAAATGATTTTCCATGGAAAACATTTTTCAAGGGAAAACACAATTCCAAACTAGTTTTCCTTTGTTTGGTACCTTAACGGAAAATGGGAGAAGATGGTGAAGATAGAGGGGAAGAAAGGAGAGAGAGGTAAGGAGGAAAGAAGGAAAAGTGGTTTCCCTCCATTTCAAATGGAAAAGTGTTTTCCACTTTTGAGGGAGTCATGAAAAATTGTTTTCCACCCCTTACCTAACCACACAACGTAAAATGATTGAAAAGGGGAAAATCGTTTTCCATGAAAACGTTTTACGCCCTACCAAACGGAGCCTAACTCTTAAGTTTCTGTCCGTCTGGAGGTGTTCTTGAGATAACATGTACTCCGTGTTACAGTTGCTCATTGCAATAAGGTGACATGATTCATTACATTATTTCATCTATGCAGCCAGCTATTTATGTTACGAGTTTAGCTGCTGTTGAGATATTGCGCGCTCGTGAGGGAGGCCAACAGATAATTGATTCTGTGGATGTGACATGTGGTTTAAGTTTAGGAGAATACACAGCTCTCGCGTTTGCTGGAGCTTTCAGGTGTGTCGAGTTACTTCATGAGATTATTTTTTGTTCTTGCATATCTCTTTCTTATCAGCTTTTGATATTGAGTAATGTTAGCAGTTCATTTTTCTTATACTTCATGCATAGCCCCCCTATTCTAGAGTTAAATATTCCACGCAATATTTCATGCCAATTGATGGATTGTGTTGCCTGTAGTTGCTATGGTTTCAATATTATGACATCAATTTCATTCTACCTGTGGGTTAATGGAAGACCACATGCACAGTTTTGGTAGTTGAATATTATTTTCCCCCTCGTCTGAAGATATATAGAATGGTGAGATTAAAAAATATTGATGGATCTCATCCTTCAAATGTAATCCTCCATACCCCAGTATCAAGGAAACTGTGGTTGAAATTAGTTCCCATATGGGGCCCAACAGTCTCCAAATTGAAGTTTTATCCTGAATTGCCTAGTTACACTAGACTCTTTGAAACTGCAACTATATTTCTTCCCCCCTTCCAACAGACTAATTTGCATGTCTAGATTTCAGGAATCTTAGATATTTGTGAGTTACTTAATGACATTTCTCTATGAAAGAGAAGATGCTACTTGGATATGCAACTCTAATTGATCAAATCCAATGTATTGAAGCTCTAATCAGCACCAGACTACGTTTTATTTGGTCTATGAGACTATGACTCCATCGATTTCCTAGTCTAATGCCCCTCTTCCCCCCTTGGTTTGACAATGTAATCCCTACTCCTAGTCATCAATTGTTAAGGTTGATCAAATCCTAGTTCCCTAAACACCTAAAATGATTGACAACATTTTTCACTAGCTATTTTATGAACAAAATGCTTGGAAAACGTGAAGCTAAAGAGATGATGATGTGTTAGTCGAGTAAGAAACTCAGAACTCCACAAGAGCGGGAAGGCGGGGGGGGGGGGGGNGGGGGGGGGGGGGGGGGGGGGGATTGTATTTGGAACTTTAAGTTAATTTTTTTTTGCGGAAATTAAACGATAAAGGCAAAGGAACTAAAATAATGCACCATAGAATTGACGAGGAATCTTCTTGAGCTCAATCAAGAAGGAAAAACCTCTACCTCTTCACTATAGGGCAACAACTTTGTTACAACTTATACTATAAAGTATAAACTCAAGTTTCGCACCGTTTTAAATCACAGTGCTGCTCACTCTCTATCTCTCTCAATACAACAACTTAACACTAAGTCTCTTAGAAGTTCACTCAAACCTGTAACCCAAATTTACAACTCAATAAATTTAAAATCTAGTGTTTTATAAAGCTTTAACAATTGTAGAAACAAGGAACTTACTTAGCTATCTGACTCTTTTCAGAAAACTGTTTTCTCTTTCCAAATAAACGCTTTTTTTTGTTGTATTTTACCAAATAAAATCAGCCACTGCCTCGCCATGTTCCTTTAGTTGGAGATAATCGTGGAAGACTAATTCATCATACCATTCAGTAAAATCTGTTTAAAGGGAAATCATGAGTAAAATAAGGACAGTGGAAAATTAATCCTTGGGGACCAAGCTTTTTTGTAAAAACAAACTCAAGGCAGTATTTTACAAAACATAAAATCGATTTATTTTCTTTCACAAAAGTATCTAAAGTATTTTACAAAACCTAAAATCGATTTATTTTCTTCACAATAATAACTAAATTTATTTTTACTGACATCTCCTTTCAAAACATGCTAAGACTCATCTTATTCCATTAGTTCCAAACAATTACTTAAACCTTAAACACTTGAAACAAATCCTAAAAATAAAACTCTTATCTTTAGTATTTATGTTAACACCTCCCCTCAACAACAACAACAACACAACAACAAAACCTTAGTCCCAAAATGATTTGGGGTCGGCTAACATGAATCGTCGTAGGAGATCGTCATTGTCACCAATCAAACCAGAAAGGAGCAGGAAGTATAAAGAAAAACACAAGGAAGAGAATGTGAAATTAAGGAAAGTAGGATAAAAGAAAAAATGTATATATATATATATATATTATAGAAGAAATATTGTAAGAGATAATAAAAAATAAGTAAAATTTAAAATAAATGAATAAGTACAATAAGTACATTTCAAAATAGCATATGAAATTATAAAAATTTGAAAGAATTTTAAAAATAAAATAAAAGTAAAAATAAAAATAAAAATAAAAATAAAGAGAATCAGAAACATTGAAATTGTATTAGTCAAATGAAGTCATCAATGTATATTCTCTCCCTCCACTCTGTCCTATCCAACGCCATATTTTCCTCAATCCCAAGAAAGCTCATATCGTGCTAAATCACCTTCCTCCAAGTTTTCTTAGGTCTTCCCTTACCCCTTGCAATTCTATCCCTTTGCCACCCTTCTATCCTCCTAACTGGGGCATCATTTGATCTTCTGCTTACATGTCCAAACCATCTTAAACGATTTTCCATCATCTTAAATTCAATCGGTGCAACCCCTACTTTCTTACTAATAATCTCATTCCTCAAACGATCATTTCATTTATGCCCACACATCCAACGTAACATGCGCATCTCCGCCACATTCATCTTGTGCACGTGACAATGTTTCACTGCCCAGCATTCCGTGCCGTATAACAAAGCCGGTCGAATTGTCGTGCGGTAAAATTTTCCCTTCAATCTTTGGGGCATGCCTGAATCACATAGGAACCCCGTGGCACCTTTCCACTTCAACCAACCTGTTTGATTCTATGGGCCACATCGCCATCCAATTCTCCATCCTTTTGGATAATAGTTCTTAAATAACAGAACATTTCAGAGCCTTGGACAATTTTCTCATCTAAGGTAATCGCCCCTGTCTCTCTATCTTGACTCCACTAAACTTACACTCCATATATTCCGTCTTGTTTCTACTCAGCCTAAAACCCCGAGATTCCAAAATTTGTCTCCATAACTCCAACTTACTTTCCACTCCTTTTGTTTCATCAATCAACACAATATCATCTGCAAACATCATGCACCGGGGTATACCATCTTGGATTGACCTCGTCAATTCGTCCATGACTATAGCAAAAAGAAACGGGCTAAGTGCGGAACCTTGATGCATTCTAATCGTAATGGGGAATTCTTCGGTCTTACCTACACTAGTTCTCACACTCGTGCTAACTCCTTCATACATGTCCTTGATGATATCAATATATATACTTCCTCGGAATTCCTTTCCTACTTAATGCCCACCAAAGAATTTCTCTTGGTACCTTATCATACGCCTTCTCCAAATCAATGAAAACCATATGTAAATCCTTCTTCTTATCCCGATAATTCTCCATTAGTTGCCTTATAAGATGAATGGCCTCCATAGTCGATCTCCCGGGCATAAAACCAAACTGGTTCTCCGAAATTTTCACAATTCTCCTCAATCTTTGCTCAATAATCCGCTCCCAAAGTTTCATAGTATGACTCATTAGTTTGATTCCTCGGTAGTTGGCACAATCCTGGACATCACCCTTATTCTTGTATAAGGGGATGATAGTACTTTTCCCCCACTCTAATGGCATCCTATTACTTCCCCAAATCTTGTTGAAAAGAGTTGTTAACCATACAACCCCTCTCTCTCCCAGGCATCTCCAGACTTCGATAGGTATACCATCGGGCCCCACTGCCCTCTTGCGTCCCATCTTTTTCAGTGCCATTTCGACTTCTCTCTTTTGAATTCTTCGCATAAAGTCTAGGTTAACCATATCTCGAGGGATATTTGTATCCCCAATATCGCGTCCTTGATCCCCGTTGAACAAGTTATCAAAGTAGAACCTCCATCTATCCTTGATTTCCTTATCTCCCACCAAAACTTTTTGATCAACATCTTTCACACATTTAATCCTCCCGATATCTCGCGTCTTTCTCTCTCTCATTCGAGCAAGCCTATAGATGTCTTTCTCCCCTTCTTTTGTATCCAATCTTGCGTAAAGATCTTGATTCACCTTTGCTCTAGCCTCTCTTACGGCCTTCTTTGCTTCCTTTTTAGCCTCCTTGGACTTCTCGTAGTTCTCAGCACTTCCACATTTTCCCAACTCTTTATAGCACTCTCGTTTGCGCTTTATAGCTTGTTGCACAACTTCGTTCCACCAAGATGTGTCCTTACTTGGTGGCATGATTCCTTTAGATTCCCCTAGGACCTCTTTCGCCACTCCCTTTATGGTGTGCTCCATTCTTGTCCATAATGAGTCTATATCCAAATCCATATCCCCGGCCCAAATACCTTCACTTGCCACCTTTTCCACGAATTTTAGTTGTTGCTCCCCTTGAAGTTTCCACCACTTGATCCTAGGCTCCACTAGTGGTCTTCTCCTCATATAACTTCTACCTCGAAAATCAAGGACCACAAGTTCATGTTGGGTTGCTGTACCCTCACCCGGAATCACCTTACAATTGGTGTAGCACTGTCTCAAAGCATTCCTTACTAAAAAAAAGTCAATCTGACTCGTATTATCTCCACTCCTATAGGTTACTAGATGAGAGTCTATTTTCTCAAACCAAGTGTTCATTATTCCCAAGTCATATGCCAATGCAAAATCCAAAATAGCATTTCCTGCTTCATTCCGCTCCCCATACCCAAAACCACCATGAATGCTTTCAAATCCATCGCGACTCGAGCCTACATGTCCGTTGAGATCCCCGCCAATGATCAGTTTCTCACTTCTAGGGACACGTTGCACCACTTCTTCTAAATCCTCCCAAAATTCTTGTCTAGTTGAAGCATCTATTCCTGCTTGTGGTGCATAGGCACTCACAATAGTTACAACTTCATCCCCTATCACAAGCTTAATACTCATAATTCGATCACTCTTTCGGGACACATCCACTACATCATCAATATATTCTCGGTCAATAAGGATACCTACCCCATTCCTACCCCTAGTTTTTCCCGAATACCCAAGCTTATAACCCCATGGAGCTATTTCTCCTGCAAACATAATATGTTAATTCTCCTCCTTCTCATAACCTCTACTACTTCGACTAATCTCCCTGTCAAAGAACCAATGTTCCAAGTCCCAAAACGCATCCTACTACCCTTACCCTTACCCCTGCCCTCAAAAAAAAAAAGTTAACTCCTTGTGAACCTTCCCTAAAAAAAAAAATGTTAACTCCTTGTGAACCTTCAACTCTATAACGCTTCATAGCAAGTTCCATCACTGGATTTTTGTTTATGTTTGGGGTAGTGGTCCTACTAGATGCGACAGTTGAGAAAACAGTGGGGTAGTGGAGAAACTTGGTTGTTGTTCCATAGTATAGAGGTAGAGGTTTTCCCTTCTTGATTGGGCTCAAGAAGTTTCCTAACTGCATATCTTCTGTCTCACAATCCTTTGGAAATAAAGGTTATTACCCCCCTGAATCTGAAATACAGTTAATTGAGCACTAAGGTGATATTGGTGAGCGAGGCATTCTTTTTGTGCCATATGTTCAACTCTCTCAAGTGTATTTCCCGTTTAGAGAAATTAAGCTTGTTAAGTTGAAAAGTCTAAAAGGTAAAAAATTCCAAGGGCTTCTTCATGTTTGGGATGCTGATATTTTTTTTGTCACTCTCACAAGTTTAGGCTTTGAGATAATTTGTCTTCCTTATTCCTCATTGGTATTCAGGGCCAGCTATTATCTTTTCAACTCTTAGGTGTTTTTCTTTAATCAAGTATGTCTTAATGGAGCTGGGCGAACATAATTCTATCTTTAGGACCTAATGGACTTAATCAGTCTCAAGTTAGTCACCTATTCGTATATGTTGTGAAGTAGAACTCCTCTCTACGCTTCACGTGTTCCTTCATGGGTCTGGTTGGTAAAGCGTATTGACATATTGTGTGGTATAGTCTTTTTCCCTTAACTTATGTCGGCTTCCTCATAGTTAAATTTGTGCTGCTGAGGTGATCCTCCTGGACTCCTAGTCTTTGGTCTAAGTTACAATTTGAACATCTCTAAGAAGTTTGAATGATAAAATTATCGATATCTACTTCATTTCTAGCAACTTCATTCCATTTCTGGCAAATTATCGATGCCAAGTGAGGATCGTCTCAGGTTGAATTGCTGCGGCAAGTTCATCTGTTGAAAAATGTACCATTTTGAAAAGCATGTATGAAAAGGTGTAATTGGCAGTTCACTGCAAAAGCAATCCAAGCTTAGTTAACATTCTTTTAAATGTTAGTGTTACCATGGCCCTGTTTGGCGAGGAGCTTTTAGTTGTTTGTATTAGATGATTTGACTAGCTGTTAGCTACTTATATTAGCTGGTTTGACTAGTGGGTTGAGTTAGTTGTTTGAGTAAAAGTGTTTGGTAAATTAGTTGTTAGCTGTTTAATATGTAAAATAACCATTAAAGATATTGATATACTTTATTGTTGGATACTTTATTTATTAATAATATTAGACAAACAGTTTATTACGTTGATTATTTTCTCTTTATTTTTTGAATAAATATATTAACAAAATTTATTTATTTTAAAAATTATTCTTAATTTAAAAATTTAAATACAAAACTTGCAATTAGAAAAATATTACAAATGAAGCATGATTGCAATAGTTTTCAAGTGATTCGAAGTACTAATATAAAATTTATTACAACAAGAAACGAGTTTAGTAAATAGGGTGAAAGGAAGGAGGCATCAGTAATGTTTTTAAGAGGAAAATAATGTAGCGTGCCAAGGTTGACAAGGGTTATAATTTTAGGCAATATTAGGACAAAGTAGTTATTTTACATTCACTTTCTTAAACCTCTAATTGCCAAAAACTCATGAGCTTTTTTAGAATTAGCTTTTTAACCCCAAAACTCTCTTCTAAGCCTCTCCTAACCAAACACTTCAAATTAGTTTTTCCTAAAGGTCAAACCTCTAATTCACCTCAAAAATATCTTTTTCCCTCAAACCTCTCCTAACCAAACGCCCCCTATATATGAATAATTTGTTTAATTATTCCCCTCATATATTTTTAGGAATTACATGTTGACCGGCACAAGTATTAAGGGATCTTAGTTGAATTTGATATAATAACGATGCAAGTGGGGGTAGTTGACAATGAAACAATAGAAAAAATAGAAGAAAAAAAAGAAGCAAGTGGGGTGTAAAAGTTACCAAAAACATATTCCTCCATCCCAAAATTATAGTCATGTTTGACTAAAAACACAGGTTTTAAGAAAAGTGGAATATAGTGTATGGAAAAGTGGAATATAGTGTATGGGAAAGTGGGAAAATGGAATATAGTGTATGAGAAAGTGGGAAAGTTGAATATGTGTATGGAAAAGTGTAAAAAGAGGAATATAGTGTATGGGAAAGTGGGAAAGTGGGAAAGTGAAATATAGTGTATGGGAAAGTGAGAAAGTAATGTCCAAATAAGGAAACAAATACTATAAATTTGGGACTTCCGAAAATAGAAAAGAGGATTATAATTTGGGACTGAGGGAGTAATTATTTATGATTTAAGTGGGCATGAAGTAGTAAATAATAAATAATTGGGGAGTGAGTGTAAAAGGTACCAAAAATGGAATTGTAACTCCTACAAAAATACTGTCGGAAGTAGTAATTGTAACTCCTAAAAAAAATACGGAGGGAGTATTAATTTTAGTCTCCACTTCAAACTGCTTTATATTTTAGTACGAGTTTGTAATATGCCTTTTCTTTCTTGAACTTGTTTTCTTTCTGAGTTGCTGGTCTTTAGGAAGTAGTCTTTCCAAAATTACAGCTTTTTACATCATTGGAGCCTCAGGGGTCGCTTTTGTTATTTCTTTAACATTGAAGAGTAGGCTCCTGAAACAAGTGTATGAGGTGTTTGTATCAGTTGTATGCCGTCTTAGGAACTTAGTCTTGTAGAAATGCAGAAGGTATGTGTTTTGGCAATGTGATCTGTGTTAGAAACAATTTTTTTAAGGAGTGGAAAGTTAATTTTACGGTGAAGTATGAGTATTGAACTCACTATTTTATTTGTGTTTGCCTTGTAATTGTTGAAGCTTCGAGGACGGGCTTAAGCTGGTTAAGCTAAGGGGTGAAGCTATGCAGGTAAAAATTGCATAATTAGCTGATATATGTGGCAGTGATTATGAAAGAATGAATTAAGTGGTGATTTTACCAGCTTTCTGTTTATAGGCAGCCTCTGATGCTGCACAAAGTGCAATGGTTAGTGTCATTGGCCTGGATGCTGAGAAGGTTCAAAGCCTTTGTGATGCTGCAAACGAAGAAGTTTCAGAAGACGAGAGGGTTCAGATTGCAAATTTTCTTTGCCCGGTAAACATCTCCAAGACCCATGTTTTGTGCCTACTCAATTGATTCCCTTGAATGTAAAATATAAAAAGTGAGTCTTACTTGGGCAGGGAAACTATGCAGTATCTGGAGGTGTAAAAGGAATTGAGGCAGTAGAAGCCAAGGCAAAATCCTTCAAGGCTCGGATGACGGTATTCTTCTTTTGAGAAATGACAGTTTTATAATGTGCAGTTGTGTGTGTTGTTTTTGCCTACCTAAAACACCTGTAAGAACATGATAGATGGATAATTTGATATTAATCTACAACCTTCATTCAGGTGCGATTGGCAGTGGCTGGTGCTTTCCACACCAGATTCATGGAACCAGCAGTTTCTAGATTAGAAGCTGCACTTGCAACTACACAGATCAGGACACCACGGATTCCTGTCATATCAAATGTCGATGTGCAGGCTCATGCAGACCCTGATACGATTAAGAAGATATTGGCACAACAGGTAAACTAGTCGATACCATATCTTAATCCATTCTCAGAAATATCCAATTGTTGTATACTTGTTCAAAAACAGTTACCAAAAAACACTTTTTTTTTAAAAAAAAACATAGATTTACTGACACCAGACTTAATATGCAATAGGTGACATCTCCTGTTCAATGGGAAACAACATTGAAAACTCTTCTAGACAAAGGCTTGAATAAGAGCTACGAATTGGGACCTGGAAAGGTAAGCCGGCACCTAAAGCCATATAGATGAAAGTTTTATTTTTCTTATTTTGATACGTTCAACTCACATGTTTTCATTTTCATTAAATCAGGTCATTGCAGGCATCATGAAGAGAATCAACAAAGCTGCCGAGATTGAGAACATCAGTGCATGAAAGAAATGAAGCATCACGTAAAATACTTTGTACCAGTCTTAGGCTTAGACACATTTGCGAGAGTAGATTGCTATTTTTTTTTTGAGCCAATTAAGATTTAGTTTTAACCTGTTGTAAACTTGTAATAAACAATTATTCGTGTTTGGAATGCAATAATAATATATGGGAGAGTTAAAATTAGCCTCAGATAAATAAAGGGAACACCCAAATTCAGATGATCAAATTACAAACCCAACCAAACTTCAAGCATGCAAATATGCAATACATCACTGCGCGCACATCAAGCAGTAGAATTGGGTGGACGGCGGAGACGTTGGAGCTGATGACTCCAGCGATCCTCTGGAAAGTCGCGAACCCAATCAGGTGGCATTCCAGAGAAGGAAACACCACGCATTGCTTCCATCACTCTCACCGCGTTGTCAGACGACAATGGCGCGTTTCTCCGGCTCTCATCTTCCTCGAATGCTCTCGTCATTGCACTAACCATATCCACTCCCCTCCTCTCTTCATCCTCTTCTTCACTTTCTCTATCCTCCTCATTTTCACTCAGATTCAGTGACATCACCCCATTCTCAGCTGCACCAAAGTGATCATGACCGTTGATTAGGGTGCTGCTGTGCTGAATTACTTCATCAGACTGATCATGATATCCGTTGATATTCAAATTATTCGTATCGCCATCTTCGTTGCCGTCTACCGAAGAGATCGGCTGGTAGTAATCGGCAATATCATCGGAGTTTGTGTCGGAATCACTGTCTTCGGCGTTGTCTGCAAACGACGTCGTTAGGTTAACATTATAAGATCTGGTACGATGTTAATCCATGTAACTAATCAAAAAAGGGAAAATTTAGGAGAGAGAAAGTTGAAAGAGGAATTGGTAATCACCTACCTGTAATCGAATCGATCCTGGAAATGGATGCAGCATTCATCGTTGTTTATTTTTCAGATGTTGAAGAAAGAGGAAATGTAAGAAGTTCAAAGGCTGAAAGCTAGTGAAGAAAAATGATAGCCTGTGGGAGTTGTTGATGGAGAAAAAGGGGGAAAAAAGCCGCAAAGGCCAACACAATTAATTGGCAAAAAAG TATTTCAACTGTTTTACCACTGCATCAACCTTGAAAACTCCGCACCATATAAATCTCTAAACAGACACGACCTTAATGCGCACTCAATTCTCTCTCTTCCGACGCATCCCCACTTTAAAGTCGAACATCCAACAACACCACCACCACCCCCATCACTCTCGCCACCACCATCACTCTCTCTCCACCATGACTTCTTCCCTAATTCTCCCTTCAGTCACCCTGAAAAAAACTCCATTAAACTGCTCTCAGTCACTTAAAACCCATAATTTTTCAAGCTTTGTTGGGTTTAAAAATGGCGGCATTCTACAAATTAAGCCCCGAAATGATGGAGCTAGAGTTTTTATGAGCGTTTCTGCTAGATCCCCTTCTCAAACTGCTGTTAATGACGCTTTGTTCTCTGATTATAAGCCTTCTTCCGCTTTTCTCTTTCCCGGACAGGGAGCTCAAGCAGTAGGAATGGGAGCAGAGGCACAGAATGTGCCTGCAGCTGCTGCCTTGTTTAAGAAAGCTAATGACATTCTAGGCTTTGATCTCTTGGAGATTTGCACCAATGGACCAAAGGAAAAGCTTAATTCAACTGTCCTAAGTCAGCCAGCTATTTATGTTACGAGTTTAGCTGCTGTTGAGATATTGCGCGCTCGTGAGGGAGGCCAACAGATAATTGATTCTGTGGATGTGACATGTGGTTTAAGTTTAGGAGAATACACAGCTCTCGCGTTTGCTGGAGCTTTCAGCTTCGAGGACGGGCTTAAGCTGGTTAAGCTAAGGGGTGAAGCTATGCAGGCAGCCTCTGATGCTGCACAAAGTGCAATGGTTAGTGTCATTGGCCTGGATGCTGAGAAGGTTCAAAGCCTTTGTGATGCTGCAAACGAAGAAGTTTCAGAAGACGAGAGGGTTCAGATTGCAAATTTTCTTTGCCCGGGAAACTATGCAGTATCTGGAGGTGTAAAAGGAATTGAGGCAGTAGAAGCCAAGGCAAAATCCTTCAAGGCTCGGATGACGGTGCGATTGGCAGTGGCTGGTGCTTTCCACACCAGATTCATGGAACCAGCAGTTTCTAGATTAGAAGCTGCACTTGCAACTACACAGATCAGGACACCACGGATTCCTGTCATATCAAATGTCGATGTGCAGGCTCATGCAGACCCTGATACGATTAAGAAGATATTGGCACAACAGGTGACATCTCCTGTTCAATGGGAAACAACATTGAAAACTCTTCTAGACAAAGGCTTGAATAAGAGCTACGAATTGGGACCTGGAAAGGTCATTGCAGGCATCATGAAGAGAATCAACAAAGCTGCCGAGATTGAGAACATCAGTGCATGAAAGAAATGAAGCATCACGTAAAATACTTTGTACCAGTCTTAGGCTTAGACACATTTGCGAGAGTAGATTGCTATTTTTTTTTTGAGCCAATTAAGATTTAGTTTTAACCTGTTGTAAACTTGTAATAAACAATTATTCGTGTTTGGAATGCAATAATAATATATGGGAGAGTTAAAATTAGCCTCAGATAAATAAAGGGAACACCCAAATTCAGATGATCAAATTACAAACCCAACCAAACTTCAAGCATGCAAATATGCAATACATCACTGCGCGCACATCAAGCAGTAGAATTGGGTGGACGGCGGAGACGTTGGAGCTGATGACTCCAGCGATCCTCTGGAAAGTCGCGAACCCAATCAGGTGGCATTCCAGAGAAGGAAACACCACGCATTGCTTCCATCACTCTCACCGCGTTGTCAGACGACAATGGCGCGTTTCTCCGGCTCTCATCTTCCTCGAATGCTCTCGTCATTGCACTAACCATATCCACTCCCCTCCTCTCTTCATCCTCTTCTTCACTTTCTCTATCCTCCTCATTTTCACTCAGATTCAGTGACATCACCCCATTCTCAGCTGCACCAAAGTGATCATGACCGTTGATTAGGGTGCTGCTGTGCTGAATTACTTCATCAGACTGATCATGATATCCGTTGATATTCAAATTATTCGTATCGCCATCTTCGTTGCCGTCTACCGAAGAGATCGGCTGGTAGTAATCGGCAATATCATCGGAGTTTGTGTCGGAATCACTGTCTTCGGCGTTGTCTGCAAACGACGTCGTTAGGTTAACATTATAAGATCTGGTACGATGTTAATCCATGTAACTAATCAAAAAAGGGAAAATTTAGGAGAGAGAAAGTTGAAAGAGGAATTGGTAATCACCTACCTGTAATCGAATCGATCCTGGAAATGGATGCAGCATTCATCGTTGTTTATTTTTCAGATGTTGAAGAAAGAGGAAATGTAAGAAGTTCAAAGGCTGAAAGCTAGTGAAGAAAAATGATAGCCTGTGGGAGTTGTTGATGGAGAAAAAGGGGGAAAAAAGCCGCAAAGGCCAACACAATTAATTGGCAAAAAAG ATGCGCACTCAATTCTCTCTCTTCCGACGCATCCCCACTTTAAAGTCGAACATCCAACAACACCACCACCACCCCCATCACTCTCGCCACCACCATCACTCTCTCTCCACCATGACTTCTTCCCTAATTCTCCCTTCAGTCACCCTGAAAAAAACTCCATTAAACTGCTCTCAGTCACTTAAAACCCATAATTTTTCAAGCTTTGTTGGGTTTAAAAATGGCGGCATTCTACAAATTAAGCCCCGAAATGATGGAGCTAGAGTTTTTATGAGCGTTTCTGCTAGATCCCCTTCTCAAACTGCTGTTAATGACGCTTTGTTCTCTGATTATAAGCCTTCTTCCGCTTTTCTCTTTCCCGGACAGGGAGCTCAAGCAGTAGGAATGGGAGCAGAGGCACAGAATGTGCCTGCAGCTGCTGCCTTGTTTAAGAAAGCTAATGACATTCTAGGCTTTGATCTCTTGGAGATTTGCACCAATGGACCAAAGGAAAAGCTTAATTCAACTGTCCTAAGTCAGCCAGCTATTTATGTTACGAGTTTAGCTGCTGTTGAGATATTGCGCGCTCGTGAGGGAGGCCAACAGATAATTGATTCTGTGGATGTGACATGTGGTTTAAGTTTAGGAGAATACACAGCTCTCGCGTTTGCTGGAGCTTTCAGCTTCGAGGACGGGCTTAAGCTGGTTAAGCTAAGGGGTGAAGCTATGCAGGCAGCCTCTGATGCTGCACAAAGTGCAATGGTTAGTGTCATTGGCCTGGATGCTGAGAAGGTTCAAAGCCTTTGTGATGCTGCAAACGAAGAAGTTTCAGAAGACGAGAGGGTTCAGATTGCAAATTTTCTTTGCCCGGGAAACTATGCAGTATCTGGAGGTGTAAAAGGAATTGAGGCAGTAGAAGCCAAGGCAAAATCCTTCAAGGCTCGGATGACGGTGCGATTGGCAGTGGCTGGTGCTTTCCACACCAGATTCATGGAACCAGCAGTTTCTAGATTAGAAGCTGCACTTGCAACTACACAGATCAGGACACCACGGATTCCTGTCATATCAAATGTCGATGTGCAGGCTCATGCAGACCCTGATACGATTAAGAAGATATTGGCACAACAGGTGACATCTCCTGTTCAATGGGAAACAACATTGAAAACTCTTCTAGACAAAGGCTTGAATAAGAGCTACGAATTGGGACCTGGAAAGGTCATTGCAGGCATCATGAAGAGAATCAACAAAGCTGCCGAGATTGAGAACATCAGTGCATGA MRTQFSLFRRIPTLKSNIQQHHHHPHHSRHHHHSLSTMTSSLILPSVTLKKTPLNCSQSLKTHNFSSFVGFKNGGILQIKPRNDGARVFMSVSARSPSQTAVNDALFSDYKPSSAFLFPGQGAQAVGMGAEAQNVPAAAALFKKANDILGFDLLEICTNGPKEKLNSTVLSQPAIYVTSLAAVEILRAREGGQQIIDSVDVTCGLSLGEYTALAFAGAFSFEDGLKLVKLRGEAMQAASDAAQSAMVSVIGLDAEKVQSLCDAANEEVSEDERVQIANFLCPGNYAVSGGVKGIEAVEAKAKSFKARMTVRLAVAGAFHTRFMEPAVSRLEAALATTQIRTPRIPVISNVDVQAHADPDTIKKILAQQVTSPVQWETTLKTLLDKGLNKSYELGPGKVIAGIMKRINKAAEIENISA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo03018.1 vs. NCBI nr
Match: gi|731349234|ref|XP_010685892.1| (PREDICTED: malonyl-CoA-acyl carrier protein transacylase, mitochondrial [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 676.0 bits (1743), Expect = 4.200e-191 Identity = 357/381 (93.70%), Postives = 373/381 (97.90%), Query Frame = 1
BLAST of Spo03018.1 vs. NCBI nr
Match: gi|674781076|gb|AIL29212.1| (malonyl-CoA:ACP transacylase [Camellia oleifera]) HSP 1 Score: 572.8 bits (1475), Expect = 5.000e-160 Identity = 306/381 (80.31%), Postives = 340/381 (89.24%), Query Frame = 1
BLAST of Spo03018.1 vs. NCBI nr
Match: gi|225434451|ref|XP_002273446.1| (PREDICTED: malonyl-CoA-acyl carrier protein transacylase, mitochondrial [Vitis vinifera]) HSP 1 Score: 563.9 bits (1452), Expect = 2.300e-157 Identity = 307/398 (77.14%), Postives = 339/398 (85.18%), Query Frame = 1
BLAST of Spo03018.1 vs. NCBI nr
Match: gi|720027322|ref|XP_010264538.1| (PREDICTED: malonyl-CoA-acyl carrier protein transacylase, mitochondrial [Nelumbo nucifera]) HSP 1 Score: 563.1 bits (1450), Expect = 3.900e-157 Identity = 304/384 (79.17%), Postives = 339/384 (88.28%), Query Frame = 1
BLAST of Spo03018.1 vs. NCBI nr
Match: gi|747068046|ref|XP_011080770.1| (PREDICTED: malonyl-CoA-acyl carrier protein transacylase, mitochondrial [Sesamum indicum]) HSP 1 Score: 553.9 bits (1426), Expect = 2.400e-154 Identity = 298/381 (78.22%), Postives = 338/381 (88.71%), Query Frame = 1
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BW65_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_7g175090 PE=4 SV=1) HSP 1 Score: 676.0 bits (1743), Expect = 2.900e-191 Identity = 357/381 (93.70%), Postives = 373/381 (97.90%), Query Frame = 1
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Match: A0A077DAR7_9ERIC (Malonyl-CoA:ACP transacylase OS=Camellia oleifera PE=2 SV=1) HSP 1 Score: 572.8 bits (1475), Expect = 3.500e-160 Identity = 306/381 (80.31%), Postives = 340/381 (89.24%), Query Frame = 1
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Match: F6GUI7_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_06s0004g07380 PE=4 SV=1) HSP 1 Score: 559.7 bits (1441), Expect = 3.000e-156 Identity = 300/381 (78.74%), Postives = 331/381 (86.88%), Query Frame = 1
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Match: A0A0A0LVM3_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G533500 PE=4 SV=1) HSP 1 Score: 552.0 bits (1421), Expect = 6.300e-154 Identity = 296/381 (77.69%), Postives = 330/381 (86.61%), Query Frame = 1
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Match: W9RA88_9ROSA (Uncharacterized protein OS=Morus notabilis GN=L484_011151 PE=4 SV=1) HSP 1 Score: 548.1 bits (1411), Expect = 9.100e-153 Identity = 294/382 (76.96%), Postives = 330/382 (86.39%), Query Frame = 1
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Match: FABD_MOUSE (Malonyl-CoA-acyl carrier protein transacylase, mitochondrial OS=Mus musculus GN=Mcat PE=1 SV=3) HSP 1 Score: 216.1 bits (549), Expect = 7.400e-55 Identity = 133/341 (39.00%), Postives = 192/341 (56.30%), Query Frame = 1
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Match: FABD_HUMAN (Malonyl-CoA-acyl carrier protein transacylase, mitochondrial OS=Homo sapiens GN=MCAT PE=1 SV=2) HSP 1 Score: 214.9 bits (546), Expect = 1.600e-54 Identity = 126/305 (41.31%), Postives = 175/305 (57.38%), Query Frame = 1
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Match: FABD_BACSU (Malonyl CoA-acyl carrier protein transacylase OS=Bacillus subtilis (strain 168) GN=fabD PE=3 SV=2) HSP 1 Score: 203.4 bits (516), Expect = 4.900e-51 Identity = 118/295 (40.00%), Postives = 176/295 (59.66%), Query Frame = 1
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Match: FABD_DROME (Probable malonyl-CoA-acyl carrier protein transacylase, mitochondrial OS=Drosophila melanogaster GN=beg PE=2 SV=2) HSP 1 Score: 196.4 bits (498), Expect = 6.000e-49 Identity = 125/312 (40.06%), Postives = 179/312 (57.37%), Query Frame = 1
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Match: FABD_HAEIN (Malonyl CoA-acyl carrier protein transacylase OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) GN=fabD PE=3 SV=1) HSP 1 Score: 187.6 bits (475), Expect = 2.800e-46 Identity = 115/293 (39.25%), Postives = 164/293 (55.97%), Query Frame = 1
BLAST of Spo03018.1 vs. TAIR (Arabidopsis)
Match: AT2G30200.1 (catalytics;transferases;[acyl-carrier-protein] S-malonyltransferases;binding) HSP 1 Score: 534.6 bits (1376), Expect = 5.300e-152 Identity = 294/397 (74.06%), Postives = 335/397 (84.38%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo03018.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo03018.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo03018.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo03018.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
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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