Cucsat.G5388.T24 (mRNA) Cucumber (B10) v3
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.AAACATGCCCTCGGGTTCCCGAATTTCCGCTCGTCGAAGATATTCATCCATTCTGTTTCGCGCCAGTCTTCCTGCTGTAAAAACTGCGATCCGTTTCTCATTTATACTTCCTGATGCATTACCTTTTCCTGATTATGTTCTGATCGCCAATGCATCTTTGTTTTCTGGCTTCCTATGATTTGATTTTAAATTTTTTACTCCCATTGTAATTCATCCGTGTTTTTGGCCATTCGTGTTATGGAGTTCCATTTTGGATGCCAATGGAATCTGGTAACATAATCTTCTCAGACAGATTTCTCGATTAGATATTAGTTTTGTGGAATTATCTTTTGTGATGTTGAATCGCTGATTAGCCAGTGTTTTTGGAAGTAATGGATTCTTCATTTTCTTTCAGCAAAACTAGTGAATTCATTTGATTATTTTCCTGATTATTTTCTAATCACCAATGCATTTTGTTTTCCTGGCTTTCTGTGATTTCATGTCAAATTTTAATCTCCCATTGAAATCGATCCATCGTGCTTTTTGCCTCTTTTTGACATTCGTGTTATGGAGTTTGACATTGGATGCGGATGTTTCTGTCGGAAAGATTCATTAACGCTTTCATGCTAATGGTATCTGGAAACATATTATTCTTAGACAAATTTCTTGATTAGATATTAGTTTTATGGGTTTATCTTTTCTGATGCTGAATCATTGATTAGCCGGTGTTTTTTGAAGTCATGCATTCTCCATTTTCTTTCAGGAAAACTAATCAAGCCAATTGATCATTTTCTGATTGCCATTGCATATTTGTTTTCTTGGCTTTCTACGATTTCATTTTAAATTTTAAGCTCCCATTGAAATCGATTCGTTGTATTTTTTGCCATTCGTGTTATGGAGTTCGATATTGGATGCGAATGTTTCTGTCTGAAAGATTCATTTACCCTTGCACGCTAATGGTATCTGGAAACACATTCTTATTAGATAAATTGCTTGATTAGATATTAGTTTTGTGGATTTTACTTTTCTGATGTTGAATTATTGATTAGCCGGTGTTGTTGGAAGTTATGGATTCTCCAATTGATTGCCTTTTCCCGATATGCCTTGCACGAGGCTAAGTTGCTCGATGTTTGTTAGACATGATCGTTTCTGATGTGGACGATACCACTTTACCATAGTGCAAAGTTCTTCAACCGCTGGAGCCTTGATTCCTATCTTTATGTTCGAAATTATCATATGCTAATTGCAGTCGTAAGCAGATTGAAAATATCGATTTAGCTATTTTGTAAATCTCTGCGTGCTATGTTACAGCACCAAATGATAACCGATTGGTGGGCAGTCGTAAGCACTAAGCAAATAGAAAATAATTGATTCAGTCTATTGCTCTTTTAACCAAGACGCTTTGTTTGGCTCTGGGTCCGAGGAAGAATTTCGAGGTGTATGTGATTATTGATTATGTTTGGATTTCTTTTTCCCTTTTCCAACTCCAATGGAGCTAGAATATCAGCAGTGGGTTCCATTTTCCCTTAGACATTGAAGGGATTGACACAAAAGGTAGGGAGACGATCACTGAAAAGAATTAAAGAAATACGTACATCTTTGCGATACTCTCAAAACTCATCCACTCACCTTTTGCATGTTGTCTAATTCTCTTGCTTTTCTTCTCTCTTCTTTCTTCCTTTCTTTGTTTGGATTTCATATGGGCCAGCACGAGAATTTTGTTATCCAAGTAAAAGAATCTCTTAAGTTTCTTTTTAGTTACCTAGGTTCTAGATATTTCTGTAAAGTTATCAAATTCTCTAGAACTTCTTGGATCCTAATGAAACTTTAGGACACTTCTTTATGCTTACTTTTGCCAAATTTGTTCACAATTTACGTATTTCAACGTAATTCTAGAAAAACTAAATGTACACATTTATGTCATTTTGTAGATACTTCAACAATCTTCTAGATTATTTAGGGTTCGGTTTCTATTTTAATCTAAGAGGTCTAGGTGCTATAGAATCCTTTCCGTTCAGTTTCAAATTCTGCTATAGCAGTCTTTATAAAGTATGGTGTCTTTAAATTAGTTGACTGGTTTCTGATAAATTGCATAATCAATATTTTTGGAATCAGAAAGGACCAACGGGTAGATTGTACGGAAATTGGGAGATTTTCTTCCTGCTTATTGAGTACTTGTGCGCAATTGCGTTCATACAGGGTGTCTTCAAGCAGATAATCTAGATAGAAAAGACTCAAGAGGGCATATTCTTGGGCATGATCCCACGTGATGTATGGGAGTGTTTTAAACTGCCCCTGTCATTTCTGGGAGAGTTTGGCTAGTCAATATCTATCTAAATCAAAGTTGTAGGTCCGACGTTCAATTCCCCTTCTATCCACAACAAAAGGAGTTTTCCAGAGAGGAGAATGGCGTGAGCCATGAGCCATCTCTTAATCATGAGGTGGCCCATTGATTTTTTTATCCTCCGCACATACGCCAATTAATTTCGTAATATGATGCATATGAATACATGAGTCAAAATAAAGTAGACTTGAGAATGTGTTCTCTAGTTTTGTTTGGTCTGGAATTAGGTATCATGTCTCTCTTTAGGTTTTGATTTGAAAGACTTGTAATTATTCTCTAGGTAATATTTTACTTAGTTGAAAATCCTTCCTCAGTTTTCGCAGGCTTGATTCTTTTCCGCACTTTTATTTTTTCAAATTTTCTCTGTGAAAACAGTTTTTTACTAGAATGATCATAAAGAAGAAATAAAATTGATTCTTTTCTCTTAGCTACAACTCCCAGGAGAGTTGGTTGATGACATCTATCCTCGATCAAATTTCTTTCTTTAGTTTCTATGCTGGAACACTAATTGAGAGCTTATTTATGTTAATAAATGTGTGATTTGAATTCTCTGTTGGAACCGAAGAGTTGCCAATTGGACCTTAAAGCGAGAAAAGGTGAAGTTTGTTTTGGTAGTAAAAAACAAGTAACGTGTTTAGGGATTTTATGCATACACTTGCATATCCTATATATATCCTTAGCCATAACAGTTGGCAAGCAGTTCCCATTTTTTTTGTCATAGCACTCTTTTCCTTGCAAAAAAAGAGAAAGGAATCATGTAAATCTATGCACATAAAAACCTAGTGAAATTCGAAGCCCTTTTGATATGTAAATTCATTTTAATTTACGATCTTTCAAGTCCTAAATTGATTTGATTTTCCATTAGTTGAACAGAAATTGCTTTTAAGAGCAATCTCTCAAGACAATGAACACGTTTTTTGGCCCAAAAGTCAAACACTTCACAAGAAAAGTTAATTCTACATGAATTTTCTATGCATGCAACTCAAGTGATCAAGAGTTGCAAGAGTTCAGGAAGCTTTTGGTTAAACGTGAAATAAATAGTTAAGAGCTATGCTCTAAACCCTATGCAAAAACCAAACGGAAAACAGAGAAAGAGAAGGAAGAAAATAGAAAGAATGTGGTACAAACAGAGAAGTACTTCAAATTATTATTTAGCTTTTTGTAATTATTTTGATGAATTTTAAGGTTTAGCGAGTTGCATAGTCTGCAGACTACAAATTTCTTACTGTACATATATTTATTTAACTTTGCAGTTTCAAGCAGAGGACATATCTTCGTTGTATCTTCTCAGAAATGGTGCTTGTGAAGCCGCAGTTAGAAGATGAAGTCTGTAAGGTGAATGGACTTATTTATGCTGCCATGAATTAATCCCACAGGTAAAACAGGCTTCAACTAGTATTGTAGTTCACCTCTAAGTAGAGCTTGAGGAGTTATAATTATGTTTGTGCAGTTTTGATATTAAGAAATATAATTAATCGGAATGGAAGAGAGTGAGGTGAAACGGTGGTGTTCGCTTAACATAATTAGAATCACTCACTAATGCTTGAATTAGATTAACGTTTTTGGTAAGATAGGTTTCTCGCCTTGTAGATGTGTGTATCTGTGATCATTCCCCTTTATTTAACAAGAGGAAAAGTTTGATGGTTATCGCTTGTCAAAGACTCAAATAAATATCAAAATTTTGTGTTTCTTATTGTATTTGATTACAAAGGATGAACTGTATTTATAGAATGAGTTTATGTAACAACTATGCTATTAGTGAGTAACAATTAGCTAAAATAAGATATATAGTTACAGAGATAAAAGGAATAGAGTTCAATGCTCTTCAAGAATAAGACATGGGCCTTAGAGACTAAGGCCCTAGAAAGTTAGAGACTCTGACATGAATTTGGTTGATTGTTGATGGGCGTTTCAGATCAGATATGACCCCAACAGTTCTGTGGCACAGTCTGAGTCCTTAATCACTAATTATAGCCTTTTTGTAACAAGTTATATGTTCCTTTGTCTTTGATAACTATTTCTTAATTTAGCTAGTTGTTACTCGCAAATAGCCTGGCCTAGTTATTAAATTAGCTGAGCTGTTATAATCAAATACAATGGGAAGAGACACAAAATCTTGATAGTTCTTTGAGTGTCTATTAAGGTGACCCCATTAGAGCTACACCAAATTGTAATTATTGGCCTCAATAACAATTACCTCGATATTGATTCATGTAACTTGCTAGGATGGCTTAAAGTGTGCTGTCTTGACATTAGTCTCATCTTTAGTGGTCTTCATATTCTGTTAGCACAGAGCGCGACCATATGCCACATTATCTTCCTTAGATGAGCTTCTTTTAGAAGTGATGTGCTAGATATCTTTCTATCATCAGTTATGGATTATTAGATTAGCTGATTGTTATAATTGATTGTTGAGTAGTTGATCGATCTTTTAATAAGAGGTGGTCATCATTTGGTTGGAGACGGGTTTTTTACAAAACTGTTACCGAACCAACTATGGTAAGTTTGTAAATGTTCAAACCGACCTAATCGTCTATGAGTAAATGTCGATTGGTCGATTTAACCCTTTGACATGTTTCTTTTGAAAATTTTAAATTTGAAACATTTTCAAGTCGACACCGACCGACTCCTCTCGCTCTCCGACCGTCCCTTCGCTCTTCGACCGACTAACTTCAGTTTGGTTGGTCGATCTGATTTAATGGTCTATCATGCTCACCCATAATTTTAATGTATGACTTCAGGTGTTTGGTCAAGTGGGCTCGCCTTGCTCGGGTTGGCTACTTAGTCTAATTTTACATGCCACTCCAAATGGTAGTACTTAGTTACATCGTGGCCTATTTATCAACCATAATGGGTTGATCTAGGGGTAAATATGGGGGCATGACTTTGATCATGGGCTACGAGAATCATGAGTTCAATATATGTGACCACCTAATTAGAATTTGCTATTCTATGAGTTTACTACACCCAAATATTCTAAAGCCTAGCAAGTTGTCTCATGAAATCAATCAAGATGCACGTGTGTTAGTTGGACCCTAACTAGGTGATCTATATAAAAAAATATTCTCTTATTGAAAGGCAATTGAAGTGATTAGAAAAGGTAGCATATTTGGATCTTTGCTTCGACGGAAAACTTAGCTATGGAAAACTTAGCTATGAATTGCTATGATGGTATCTATGTAGATTATTATGTCATTTTAGTTCTTACATTTTTCAGTTTCAATTGGGATTGGTTTTTAAAATATTAGATTTTGTTTGGACTTTTAAAATATTAATTTTGGTTTTCAAATTATACTTTCATACAACTTTTGAAATGTTTATTTTAGTCACATACTTTTATAAATGGACTATTGGTTATTTTATAACTCATTTTGGTCCATCAAGGCTCTAGCATATTCACTCTAATACTTGAAAGACTTTTCATTTTGTTTAAAAGAACACGTGTACCAAACATGAAAAAATACATAAACTAAAATAGCATTTAAATCTTATTTCTTTAAAATAATTACTCATGTCTTTTTTTGAGGGTCTTTCCGTCGTTTTCTCTTCATATTGCTATCTTGTATTTTTCCCTCTATTGAATTGTTGCTTGCTGCCAACATGCTTCTTATTGCCCTTTTGTGTCAGCTTTCAGTAGTGGCATTTCAATTCTCTTTTAGAATTTGGAGTCTTAACGACTCGCAAATTTTCAAACATAATATATTTATCCTCTTTTTAATAATATTTTAAGCTGTGGTACACAACTGCTTTCGTGGTGATTAAGACAGAGAAGTGAGCTGATTGGTCATTATTGTAGTTTTCCTGCTGGCCATTTCTTTCGTCCAACTCTTTGTGTGTCTCCACGTGCCAAATATTTTTTATTTGCTATATTCAAATACTCACTTTCTGCCTCTCACCCTAATTATAAAAAAAAACATATTTCTTCTTTTCCTTTTTAAAAAGTAAGAAGACAAAAACTAGTTTAAACCACAATCAATACTGCATTTTACATTGTACTCCATTCACTCCTTTACAATTATAATATATATCATATAGACCCAAATTTGTCTATCTTTAGTTTATATATTACATTTTGTTATATATAAATTGTGGTTCATTTTGCTAAATATAAAATTGTCTTAGTATAGCATCAAAACATATTTTCCTTGTATTCATTCAAATTTGTTAAATATATATTCTTTGCGAAATATTTAACAAATTTTGGTGAACATTTTTTACCCCATTCTAAAAACTTCTCCCTTCAAAGATAACTTCTATATTAGCAATAAAGTTAAAACTGCTGTATATTTAAAATTGCTATATTCAAATTCAAGTTTCAAGAATACACAACAATTTTCAAAACTCAACATCGAAAAACTAAATTAAAATTTAACGGTTTAAATGTTTCTTAATTTTTGGTATTATACTTTGAATGTTTCTTAATTTTAACTTCAGTTCTTTCAAATAGTTAATTTTGGTCATGTGTTAAAAAACTTTAAATTTAGTACCTATGCTTATAGTTGATTTTTTGCCTTTTTTTTTTTTTTGGTTATTTACTAGATTTATTAAAAATACACAGGTTAAAATTAAATTCATGGCTAAAATTGAACAAACCTATAACTACAAGGATTGTAATTGTATTTAATTTATCCTTTTGTTTCTATCCTTTAAAATTTTGCACCACTTTGATTCTTGTATTTTTTATAAGTTATATTTATCTAATTTTAGACTTTATATTTTCACTAAATCTTTGAATTTAGTCCATCATTTATTCATTTTTTTTATTTTGCTATCAATAGCATTTTCATTATACATATCGTAAAATGAATCTAAATTATATAAAATAAAATTTATCTTTGATAATTTGATAATTGCGATATATGTTGACTTATATCATGATAGAGACATATAGATTTGTAAATATTTTTATAATTTTTTATCTAAAATTATTTATTTATTTTATTACACTAAAGTTATTTTATTATTATTATTTCATCCATTTTGATAAAAAGAAAATAAATAGAAATTTAAGATTTTGGTAAAAATACTTTAACAAATATTAGACTCCATTAAAGGGGACCAAAATGGAGAAAAAATCAAAATATTAAGACATGCTTTAAACCAAGGAAGAGCAATTATTGAATATTTTTGTATTGATTTGGTTTGAGGGAGGAAAAAAATGAAAAATTATGTTCCGTGTCATTTCCGAACAACTCTGCTTTTTAGAGACTAGACCATTGTGCCACACGGGGAATATACGGTTCAGTAGACTCCACTTCACTTTACCAGAGTTCACTTTTTTTTAGCATTGGAAAAAGGCAAAGCTACTTCTTTATCCCCAAGGGATAAAGAATCCAATTTTTTTAATTTTGTATTGTTTTTATTTTTCTTCTTCTTCTTCTTTTTCTTTTTTGAAGAAGCTTTTATAATAATTGAATTCTTCTCGGTGCTTCTTTTTATTTTTGTTTAACATTACATCACAAGTAGAATTCTAGTCTACTGCTTTTTTTGGTGGTAGAGATGCTTTAGCAACTCAACTGGATTAATGTTCAGAAATTTCAAGACAGTGAATAACAAAACTTGGGACAAAGTTATAAATCTCGAAACTATCAAATCAGTCTAGATTAATTCAATAATAACTAAATTAGAACACCAAGACTTTGAAATGTATTTTCTTTTTTACCAACAAGTTAAATAAAAATAAAAAAAAAAGATAAAAAAAATGTATTTTCTTTTTTACCAACAATTAAAAAAGAAAGATAAAAGATTTTAAAGTTATGTAGCTATATTTTAGAGTTTTTTTAAAAATATAAAATTTGATAAACTATTTACATTCCCTACCACAAACAAAAATTGTATTTATAAAGTGTAAATATTTTATTAAATATTCTATTTTTAACAATTTTATTATATTTTAAAGCTTTTATTTTCTAACTAATTGACTCTAATTTAACCATCATCCAATATAATGAATGTCTACTTCCACTTAAGTTAATCCATGAACTATTCAGAATTATTAACAAACATGGAAACTAAAGTGTGTTTAGAAATTAATGAATTAAATAGACATCACCTTCAAGTCTTAAAACAAAAACAAAAAGTACTTTTTACTTATTATTATATTGACACACATAAATAGGAGATATAGAGGTGGTATAATTGGTGAGACATCTGTTAACTTTATAAGCTTTGTCCATTTACTAAAATTTACTTCATAGCTACATAGAATAGGTTTTATAATGATTTTTTAATTCCTTATTTATTATTATTATTATTATGGTAAAAAGAAGAAAAAAATGGAGGGTGGAAAATGAATCGGACGGCCTTGATTTGTTTAATCATTAATTCATTATCTTTTCTCTCTCTCTCTGAGTACGTAAAAAAGAAAGAAAAAAAAAGGGTTAGAATTAGAAAGGATGGGAGAGCCAAAGAGATCTTATCCTCCACGAAGTCGAGATGACAGATGGCCGCTGAGGGAAGCACAGGTAGATGAATGGGTAAAGCATATAATAATCAAAAGGCTTTGTCAGAGACAGCGGAGAGCAACTTGACGGGTAGCTTTGCCCAATTATTTATTCATTTATTTATTGTTTCAAAAAAATTATCATTATTGTTCATATTATTTCATAATTGACAGAGACAGACAACCTTCTCTCACTTCTCAAGCCCTCCTTCTTGGGTTCTTCTCTTCAACAGGGATTCCCCTTTGGAGCACGTGGAATTTAGGTTTTTCTTTTTATTGTTTACTTTTTCTTATTATTGCCATTGCAATTTTGCTTTCGTGAGTAGTTATATCTTTAGTAGTTTCCACTTCTATGTATCATTCACTTACGAGATGAAGTTAATAAGTTTGAGATCAATGAATTGAAGTTAAGAATATTGGGTATGAATGATAGACCTGTGAGATGAAGTTACTTGATAATTATAAATTTTATAGATAAATGAGAGAACATTTAATTTTTTTTGTTAATTAAAGGTGAAAAGCTAATAAGCATGAACACTTACTTTGGCTAGCGTGTCCGTATTCAACACGTGTTGGACACTCTCACTTGATGGACATCTATTAAACACTTGCTAGTGCAGTCAATTGAATATATAGAACACTTATTAAGTAGACTAAAAATATACTTACGTGACTATAATAATAACCTTTGAGTATAAAATACATCAAGCTAAGTCTTTTAATCTTATAAATGTATCAATGCATTTATTATAATTTTTTTACTATAAATATCGTATATATTTTTCTAAAATAATTTTTTTAATAAACGTGTCTTTGCCAAGTTGTGTTCTATATTTTAATAAAATGGTGTTTCGTCGTGTTTGTATCTTGTTTTATATCCGTGTTTATGTTTCTTAGGTGAAAACATACAAAAGTGTGAGAAGATGAAGTTAAGTTTTATGGTATTTGCTATTGGTACTTTAAAAAAAATGGTTTTTTCTATCGAAGTTGAACCGTTTAATCATGACTTAGAAAATTGGTGGGTCGAACGGCTCCAAAGTTTTGTCTTCTTTTATTTTTTTCTTAATGTAAAATATTTCAAATGTATGAGTAAAGTTTTGTCTCACATAAATGTATGAGATATTCAACACTTGATGAATTAGTATGTATAGACATAAATGCCCAAATTGTTCATCACTTTTTTTAAAAAAATAATAAAGTAAACAAGGGTCAAGGGCATATAGACACAAAAGCTCAAAAAATTATTAATATAGAACTGAAAATTTAAATAATCATTTGTGTAAAATTGAAAGCCGTTTTAAAATTTATTTGATATAAAAGTTTTTAAAAGTAATGGACTAAACTTGAAGTTTCTTAAACTAAGTTTGAGAAAGGAAGCTGAAAATTGATCTCCTCTTAATGGTGCAAGTGGCTGTCATTGTAGCATAGCAACTCCAAGTAAACAACCCTCAAATTCGATCCTCAACCTTATCGAATTTGAAAGAATATTAATTTTTGCTCATCACCATCTGTGTCAGACATCCATTCTATGTGAAAATTTTGTTTAATTTCAAAAAGCTCACTTCTTTTTGTGGATTATTGTATATCTTGTTATCTCGAGTTAAAGTCCTGTGTTGAAGAAGCCTTTAGCCAATGGATTTGACTGTTAAAAGTAAGGCATTTGTAGGTTTTGCTCTCTGTTTATAGCGGATAAAGTGGACTGCAGTGGAAGAAAGCAGAAAACAGTTCAACTATTGGAGGAAAAAAGCCAGGTGAGGAGAGAGAAAACTCCCATAATAGAGAGAGAAACAGAAATGGGCTCATGGGTTCTTCAAGGAGCAAGCCATTTTTATGAGTAGGTTATAGAAATAGAAACCCCCATGAAATCAAATCAATCTGAGAATTTGATCTTCAAGCAGTGCAAGAGTTTTTGTCTTTGATTTCTGGTTCAGACGGCTCCAATTATTCGGTTATTAAAAACTCAGATTCTGATGGGTTTTGTAAATTGGGGAATCACGCTTCTGAAGCTGTAGTCTTTTGGTTTCTTTACCTCTGTTTTACTTGTGGGATTTCTTAGCCTTGTGGAATGGATCTCGGCCACATGAAGGGATCGATCCCGACACCGACACCGACGCCGACTTCAATTTCTGCTAGAAAAGCCACGGATATGAGTTCTGATCAGTTTCCGGCGGGTCTTCGGGTTCTGGTTGTAGACGACGATCCTACCTGTCTCAAGATCTTGGAAAAGATGCTTCAGAATTGCTGCTATGCTGGTTTGTTTTCAATTTCAACTTCCTTTTTTCTTCTTTCTTTCCTGAGTTCTCTACTTTTTGGGGTCTCCTGTTCTTTGTGACTTAATATTTGACACTGGGACAATTTTCTGGATCGTTTCTTGAAGAAATTTGAAGTTTAGGGTTGCTTCCGACCTCGAATCTTTTCTTCTTGTTTTAGGAATAAGAACTTGTTGACTTACCACTTATTACACTTTCTTTGCCCCCTGAGCTCATTTTTCTATTTGATCCAGAACAGAAATTGCATTAATTTCTGCTAATTGATTTGCGTGCTTCTGAAGCTATCATCTCTTTACTCATTTGTAGATTCAGGAATCGGGACTCTTCCCGTCATGTTTGGGGGTGACCTGGGGGGTTTTATTCTTGAAACGTTGTTTCCATATCATTAAAATTGATTTCAATGATTAGAAAGTATGTTTTGTACCCATTTTGGACATGACTAAACTGATTTTCAATATAGATACTTGGTCACTTAGCTAATTCTTACACCAATCCCACAATTCTGTGATCTTACAACAAATCATCAGTAGTTAATCTGCTGTTTCTGGGGTTACTGACAGTGACGAAATGCAACCGAGCGGAGATTGCTCTATCCATGCTTCGTGAGAACAAAAATGGTTTTGATATTGTCTTAAGTGATGTGCATATGCCTGACATGGATGGATTCAAGCTTCTAGAGCAAGTTGGGCTGGAGATGGATTTGCCTGTTATCAGTGAGTAAAATGGTTTAGATGCGTTTACTGGATCATTGAATACTAACTTATATAATTATGTGTGGTTTATATAATTTTGCAGACTAATATTGGAGACATGTGATTGTACAGTGATGTCAGCTGATGATGGGAAGAATGTTGTGATGAAAGGAGTGATTCATGGTGCTTGTGATTACCTTATCAAACCTGTTCGTATTGAAGCACTCAGAAACCTATGGCAACATGTAGTTCGGAAGAGAAAGACTGAATGGAAGGATTTAGAGCAATCTGGCAGCGTGGATGAGGGAGATCGAGAGCAAAATCTGTCTGAAGGTGCAAATTATTCATCTTCGGCATATGAAGGAAGTTGGAACAGCTCGAAGAGGAGGAGGGATGCAGAAGAAGAGCCTGAGGAGAGGGACGATACATCAACTTTAAAGAAGCCGAGGGTGGTTTGGTCAGTTGAGCTCCATCAACAGTTTGTTGCCGCAGTTAATCAGCTAGGGATTGACAGTATGTCTTCTCTTCTACCTCTCCCAGTTCTATATGCCTTGGTCGAACTTATGACTGTTTTTTAGAGGTTAAATTACAATTTACGAATAGTCCCTAAATATTCGTGCCAAATATGTTCTTAAACTAGAGTTTTAAAAGATCTTTGAACTTGGAACTCTGTACTTGATTATTCATGTTTAAAAGATTAATTAATAATTATAAACAAATGTTGAACATGCCATGGAATTATTAGATGCAAAATGGAAAGTATATGGATTTATTTGACATTCTTAAAATAGGAATCTATTAGTCAGAAGATTTAAAATTCAAGGACTTCATAGATATTTTTTAACTTCAAGACTTTTTGACGTAATTTGTTTCATGGACTAAATTTGTAAGTTAACATTTTCAAGGTAACAGCACGACCATCATAACATAAATGATACACATATAGGCTATGATCTTGTAAAATTAGTTGATTATAGCCTACGTTTCAAGTTCAATTAAGGAGGTTTTGTTTTTAATGCCTAACGCATGACCGACGTTTTTCTTCATGTTGTTCATCCTGTTCTCTGCAATTTAACCCAAACTTTAAGAAGGATCAGTTCGTCCATTGCTTCTCTTAAAGCATTTCTTTATATCCCGTGCTGTCTTATCCTCAAAATAGTTCTGTAGCCATTTTCATTTATCTTTAGTTTTTTAAAGTTTGATCAAGTCTATCTTTAAAGGATTAATTCATTATATACCCAACTCCAACTGCGCATTGTTCTTCTTGGTTATGTTTTCAATCTTGTTTTGAAAATGCAGAGGCTGTCCCTAAGAAGATATTGGAGTTGATGAATGTTCCAGGTCTTACTAGAGAAAATGTTGCCAGTCATCTTCAGGTATATAAGTTGTGAGGGGCTCTTTGTGTATTTTCTCTTTGTTTCCTGATGATTAGCATAGGCATCTTAATTGTTTTATATATTTGATGGCTATGCAGAAATATCGCTTATATCTTAGAAGGCTTAGTGGAGTATCTCCACACCAAAGTAATTTGAACAATTCTTTTATCAACCCCCAAGACCCACCTTTTGGATCAATGGGTTCATTCAATGGGATCGATCTTCAGACGCTTTCGGTCACCGGCCAACTCTCGCCACAAAGTCTTGCTGCCCTCCAAGCAACAGGACTTCGTAGGCCTACCGCAAAATCTGGCATATCCATGGCCCTTGATCAGAACAATATATTCAGCTTTGAAAATCCAAAATTAAGGTTTGTTGAGGACCAAACACAACATCTAAATAATAGTAAACCAGTAAACTTGTTTCATGGGATTCCAACAAAAATGGAGCCAAAGCAGCTTGCGAATATTCAGCACCCTTCCGTGCAGCCTCAGGGAAACATAAACATGCAACTCAATATCAAGAGCGAACATGGTGGAACTCAACTAATGCATTTGTCTCAACAACAAACTATAGGACAAACTCTAGGTAACTCTCCTGCTAGCCATTTACCCAGAATTTCATCAACATTAAGGAAACCGATCATATCGGGTAGTGTTATGAGAGGAAATGGGACTGCTGATAATAGTCACAGACCTGGATACAACCTAGTTTCGCCAACATCGGTGATGGTGAACTATCCAATGAGCCAAACCACAGAATTGTCTAACAATTATTCCCTTCAGAGCAATTCATCTGTATCTACCCTGAACTGTAAAGGGATGTTTCAAGAAGAGATTAGTTCAGATCTAAAAGTTTCGGGCGGACTAATGTCGAGTTATGATGTTTTTAGTGACTTGCCCCTGCAGAAATCCCATGACTGGGATTCTCAAAATGTTAGCACCTTGGCCTTTGGTACTTTTCACCATGGGAACTTCATACAGGATAGCTTTGATATCTCATCCTCCACTTTAATTCATCATGGTTTCCCTTCAAGCCAAACGAATGGACAAAATCAAAATTCATCAGTCGTTGGAAAGACTGTGTTTTCCTTTTCGGATTCGACTCAACCCGAGAATCCTCAAAATATTTTCCAAAACTCACTTCTCGATCCTGTGGAGGTCAAATCTCAGAGAATCCCCGATGCAAACTATCAAACTGACCTCTTATCCGAGGACTTTGGCCAGGATGAACTTCTTGGTGTCTTTATCAAACAACAGGTTAGTTTTTCCCTTTTTCATTAATGTTTGTTGGATTGTTATAAAAAAATGGATTCTTTTTCTTATATCATTGTTAATTCTTCTTTGTTTTCTACTTCCCAGCAACAAGGAGACAACGGATCGGTCGACTTTAGTGGGTACCAAACAGAGAATATTTGTGTTTAGAAGATTTCTTGCTTTAGTTCCTCATTTGGCTGCAGCTTCAAATACACTTTATTGTAACTTTAAAGATCAAAGTCCTCCCACATTAGATGACAGAGGTAGTTCATCATTCTTGTCAACAAGTCCATTGTGAATAGTATGCTTAGTTAGTTGAACCTTGAAAATGTCAGATTTCTATGCAAGTTTGAAGCAATCTTCCTCAGAATGCTTACACAGAAGATGCAAATCTTACTCCGACTTCGGTTGAGATCTAATGCCCGAAGCGATTTATTTTAGGACGAGTGTGAAACTGTTTTGTTTGTAACGGGCACATCGCTCGATTGTTGTCGATGCAAGGCTCCACTCGGCTCCATTGCATTTGAAACTATTCAGGAGATTTCTCATCTCTCTAATTACACTTTAAGAATAGTTTTATTTAAACCCCCATGAAAAATCATCAACTTCAATGTAAATATTCTTGTTTGATTGAGACAAATGTGTGCATAGTTTCTTGAGTTTGTTAAAAAAAAATCTTCTTGGCAGCTTCTCTTAGATTCTCATCTTCCTTCCAACTTTTCTGACAATGTATTATGAATTGTTTCGACTTCTATTCATACTATTTTCTGTAATGTGTGTGATTTGATGGGAAAGATCATGATGATTGT ATGAATGTTCCAGGTCTTACTAGAGAAAATGTTGCCAGTCATCTTCAGAAATATCGCTTATATCTTAGAAGGCTTAGTGGAGTATCTCCACACCAAAGTAATTTGAACAATTCTTTTATCAACCCCCAAGACCCACCTTTTGGATCAATGGGTTCATTCAATGGGATCGATCTTCAGACGCTTTCGGTCACCGGCCAACTCTCGCCACAAAGTCTTGCTGCCCTCCAAGCAACAGGACTTCGTAGGCCTACCGCAAAATCTGGCATATCCATGGCCCTTGATCAGAACAATATATTCAGCTTTGAAAATCCAAAATTAAGGTTTGTTGAGGACCAAACACAACATCTAAATAATAGTAAACCAGTAAACTTGTTTCATGGGATTCCAACAAAAATGGAGCCAAAGCAGCTTGCGAATATTCAGCACCCTTCCGTGCAGCCTCAGGGAAACATAAACATGCAACTCAATATCAAGAGCGAACATGGTGGAACTCAACTAATGCATTTGTCTCAACAACAAACTATAGGACAAACTCTAGGTAACTCTCCTGCTAGCCATTTACCCAGAATTTCATCAACATTAAGGAAACCGATCATATCGGGTAGTGTTATGAGAGGAAATGGGACTGCTGATAATAGTCACAGACCTGGATACAACCTAGTTTCGCCAACATCGGTGATGGTGAACTATCCAATGAGCCAAACCACAGAATTGTCTAACAATTATTCCCTTCAGAGCAATTCATCTGTATCTACCCTGAACTGTAAAGGGATGTTTCAAGAAGAGATTAGTTCAGATCTAAAAGTTTCGGGCGGACTAATGTCGAGTTATGATGTTTTTAGTGACTTGCCCCTGCAGAAATCCCATGACTGGGATTCTCAAAATGTTAGCACCTTGGCCTTTGGTACTTTTCACCATGGGAACTTCATACAGGATAGCTTTGATATCTCATCCTCCACTTTAATTCATCATGGTTTCCCTTCAAGCCAAACGAATGGACAAAATCAAAATTCATCAGTCGTTGGAAAGACTGTGTTTTCCTTTTCGGATTCGACTCAACCCGAGAATCCTCAAAATATTTTCCAAAACTCACTTCTCGATCCTGTGGAGGTCAAATCTCAGAGAATCCCCGATGCAAACTATCAAACTGACCTCTTATCCGAGGACTTTGGCCAGGATGAACTTCTTGGTGTCTTTATCAAACAACAGCAACAAGGAGACAACGGATCGGTCGACTTTAGTGGGTACCAAACAGAGAATATTTGTGTTTAG MNVPGLTRENVASHLQKYRLYLRRLSGVSPHQSNLNNSFINPQDPPFGSMGSFNGIDLQTLSVTGQLSPQSLAALQATGLRRPTAKSGISMALDQNNIFSFENPKLRFVEDQTQHLNNSKPVNLFHGIPTKMEPKQLANIQHPSVQPQGNINMQLNIKSEHGGTQLMHLSQQQTIGQTLGNSPASHLPRISSTLRKPIISGSVMRGNGTADNSHRPGYNLVSPTSVMVNYPMSQTTELSNNYSLQSNSSVSTLNCKGMFQEEISSDLKVSGGLMSSYDVFSDLPLQKSHDWDSQNVSTLAFGTFHHGNFIQDSFDISSSTLIHHGFPSSQTNGQNQNSSVVGKTVFSFSDSTQPENPQNIFQNSLLDPVEVKSQRIPDANYQTDLLSEDFGQDELLGVFIKQQQQGDNGSVDFSGYQTENICV Homology
BLAST of Cucsat.G5388.T24 vs. ExPASy Swiss-Prot
Match: Q9ZWJ9 (Two-component response regulator ARR2 OS=Arabidopsis thaliana OX=3702 GN=ARR2 PE=1 SV=1) HSP 1 Score: 190.7 bits (483), Expect = 3.5e-47 Identity = 164/456 (35.96%), Postives = 237/456 (51.97%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy Swiss-Prot
Match: Q940D0 (Two-component response regulator ARR1 OS=Arabidopsis thaliana OX=3702 GN=ARR1 PE=1 SV=2) HSP 1 Score: 183.0 bits (463), Expect = 7.3e-45 Identity = 153/445 (34.38%), Postives = 218/445 (48.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy Swiss-Prot
Match: A2XE31 (Two-component response regulator ORR21 OS=Oryza sativa subsp. indica OX=39946 GN=RR21 PE=3 SV=1) HSP 1 Score: 85.9 bits (211), Expect = 1.2e-15 Identity = 46/84 (54.76%), Postives = 58/84 (69.05%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy Swiss-Prot
Match: Q8H7S7 (Two-component response regulator ORR21 OS=Oryza sativa subsp. japonica OX=39947 GN=RR21 PE=2 SV=1) HSP 1 Score: 85.9 bits (211), Expect = 1.2e-15 Identity = 46/84 (54.76%), Postives = 58/84 (69.05%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy Swiss-Prot
Match: Q8L9Y3 (Two-component response regulator ARR14 OS=Arabidopsis thaliana OX=3702 GN=ARR14 PE=1 SV=2) HSP 1 Score: 62.0 bits (149), Expect = 1.9e-08 Identity = 39/75 (52.00%), Postives = 48/75 (64.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. NCBI nr
Match: XP_011657276.1 (two-component response regulator ARR2 isoform X3 [Cucumis sativus]) HSP 1 Score: 837 bits (2161), Expect = 1.35e-303 Identity = 423/423 (100.00%), Postives = 423/423 (100.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. NCBI nr
Match: XP_031743094.1 (two-component response regulator ARR2 isoform X2 [Cucumis sativus]) HSP 1 Score: 837 bits (2161), Expect = 1.38e-302 Identity = 423/423 (100.00%), Postives = 423/423 (100.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. NCBI nr
Match: XP_004150083.1 (two-component response regulator ARR2 isoform X1 [Cucumis sativus] >KGN47404.1 hypothetical protein Csa_022962 [Cucumis sativus]) HSP 1 Score: 837 bits (2161), Expect = 8.82e-302 Identity = 423/423 (100.00%), Postives = 423/423 (100.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. NCBI nr
Match: XP_008458390.1 (PREDICTED: two-component response regulator ARR2-like isoform X2 [Cucumis melo]) HSP 1 Score: 777 bits (2007), Expect = 3.39e-280 Identity = 397/424 (93.63%), Postives = 407/424 (95.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. NCBI nr
Match: XP_008458388.1 (PREDICTED: two-component response regulator ARR2-like isoform X1 [Cucumis melo]) HSP 1 Score: 777 bits (2007), Expect = 2.26e-278 Identity = 397/424 (93.63%), Postives = 407/424 (95.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy TrEMBL
Match: A0A0A0KF03 (Two-component response regulator OS=Cucumis sativus OX=3659 GN=Csa_6G312560 PE=3 SV=1) HSP 1 Score: 837 bits (2161), Expect = 4.27e-302 Identity = 423/423 (100.00%), Postives = 423/423 (100.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy TrEMBL
Match: A0A1S3C8C7 (two-component response regulator ARR2-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103497812 PE=4 SV=1) HSP 1 Score: 777 bits (2007), Expect = 1.64e-280 Identity = 397/424 (93.63%), Postives = 407/424 (95.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy TrEMBL
Match: A0A1S3C7V4 (Two-component response regulator OS=Cucumis melo OX=3656 GN=LOC103497812 PE=3 SV=1) HSP 1 Score: 777 bits (2007), Expect = 1.09e-278 Identity = 397/424 (93.63%), Postives = 407/424 (95.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy TrEMBL
Match: A0A5D3BUT5 (Two-component response regulator OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold46G00140 PE=3 SV=1) HSP 1 Score: 760 bits (1962), Expect = 1.59e-271 Identity = 389/417 (93.29%), Postives = 400/417 (95.92%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. ExPASy TrEMBL
Match: A0A6J1C9N5 (Two-component response regulator OS=Momordica charantia OX=3673 GN=LOC111009667 PE=3 SV=1) HSP 1 Score: 664 bits (1713), Expect = 4.42e-234 Identity = 346/428 (80.84%), Postives = 376/428 (87.85%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. TAIR 10
Match: AT4G16110.1 (response regulator 2 ) HSP 1 Score: 190.7 bits (483), Expect = 2.5e-48 Identity = 164/456 (35.96%), Postives = 237/456 (51.97%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. TAIR 10
Match: AT3G16857.2 (response regulator 1 ) HSP 1 Score: 183.0 bits (463), Expect = 5.2e-46 Identity = 153/445 (34.38%), Postives = 218/445 (48.99%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. TAIR 10
Match: AT3G16857.1 (response regulator 1 ) HSP 1 Score: 174.5 bits (441), Expect = 1.8e-43 Identity = 146/423 (34.52%), Postives = 208/423 (49.17%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. TAIR 10
Match: AT2G01760.1 (response regulator 14 ) HSP 1 Score: 62.0 bits (149), Expect = 1.3e-09 Identity = 39/75 (52.00%), Postives = 48/75 (64.00%), Query Frame = 0
BLAST of Cucsat.G5388.T24 vs. TAIR 10
Match: AT2G25180.1 (response regulator 12 ) HSP 1 Score: 57.8 bits (138), Expect = 2.5e-08 Identity = 55/174 (31.61%), Postives = 83/174 (47.70%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (B10) v3
Date Performed: 2021-10-25
Relationships
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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