Cucsa.170130.1 (mRNA) Cucumber (Gy14) v1
The following sequences are available for this feature:
Legend: five_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GATTGAGATTGAAGATGATCTGATGCCCAAACATTGTTCAGTATTTCAAAGTTATTCTTCTCATTGCTATTAATTTTTGATTGAATAGTAATGGAGAAGTACGAAATTATTAAGGATTTGGGTGCGGGAAGTTTTGGTGTTGCTAAACTTTGCAGGGATAAAGACAGCTCAGAGCTTGTGGCGATAAAGTTCATAGAACGTGGTCCTACGGTTAAATTGATCTCTTCATGATCTGATCCTATTTAGTTCATTATTGCATTTCAAATGATTGATTGATTTTCTTTTTGATGATCTATGCTCTGTTTATGTATCCACAGATCGACGAGAATGTAGAAAGAGAGATTATTAATCATCGATCGCTTCGACATCCAAATATCGTTCGTTTCAAGGAGGTAAGTTGTTTGTTCGTTAATTTCTTTATTTACTTCTTCTAATAATCTTGGTATTTAATTTGGTTATATATATGATTAGTAAAAAAAGTTTATATATAGTATGAAAAGGAGAAGAACAAATTAAGGATGGATTTGGATGTTTTTTAACTTTTGGTAGGTTATATTAACACCAACCCATTTGGCTTTGGTGATGGAATATGCTTCTGGTGGAGAACTTTTCGAAAGAATTTGCAAATGGGGCCGTTTTACAGAAGATGAGGTACACTATTCCTATTGTTTCAGTACTCTTTTATCTTCACTCTCTTTATTAATTACTATGAATTGCTGCCTCTCAGCTGCCTTTATTTTTCACTACTTTTTTCCTTAGGAGAGTAAGATGTGATTTCAGAACCTTGACTGTATTTCTGCTAATTTTGATTAAATCCATTCAAATCGCTTTTACAATCCATGTTTTTTTCATGCAACTTTTCAAATCAATGTTCATTTTTAGATTGGTGTGATTTTAGATTTAACGTTGAGAAAATTATCATTTTAGTCGACCGTGACAGCATATCTTAGTTTAAAACACACATTATATCAGTACTACGTAGGTTTTAAACCGATATCGTAGTTTGTGTTATTAAGGGTCTATAGTGTCGGTTGTCTTTAATGTCGGTTTAAAACTGTCTTTTAGATGACAAAAATTATAATAACAGTGGTTTTGGACGGATAACTGACATTGAATATCATCTTCAATGTTGATTTTTCACTTGCTTTTTATCAGTAACTGTCCAATATTTAATGTCTAATATCATTTCGTTATTGATAAAATATAAAAGGGATAGTTGCAAAATCGAGATTCTGCTGATAATCCACGACAACTACATATGTACGTACATTTGGTATTCATTTTGTTTTTTTATTTGTAGACTATGACTAAGGATTCAACTTCTCTATTTGAGAAAATGAAAACTATAGTAATAAATTGAATTTTAAAACATTGATTTGGTTAAGAATTAGTGGTGGGACTAGGACCTGACTACCATAGAGAAGAATTAGTAGATTTTTGAGATTGTAGTTTAATGAAGTGCTCTTTTGATCATCATATTTATTACAGGCAAGGTATTACTTTCGACAGCTGATTTTTGGAGTCAATTATATTCATTCCATGGTAGGTCTAAAAGATGCAAATATACTACACCTCAAATTGTTTGTCGTTTAAAGATGTTAATTATATCATACTTTTGTCTGATACAAAATGTGTTTTATGCAGCAAATATGTCATAGAGATCTGAAGCTAGACAATATCCTTTTAGATGGAATGAAATCCCCATGCTTGAAGATATGTGATTTTGGCTACTCTAAGGTTTCATTAACATATATATATATATATATATGAGAATTTTATTAATTTGCTCCTATCAAATGAAATGAATATGTTCTTATACTTGTGCTCTTGTATATGTCAATTTGTTTTAAGTAGTCGTTTCTATTGCATTCAAAACCACAAATAAAATGTTGTCTTTGCTTTGCAACATACTAAGCCTCATATGGTCGTTTATTGTTTAAAACTAATGTTATAAATATTTTCGTTTGATACAAACTGTGTTTTATGCAGCGAATATCTCATAGAGATTTGAAGTTGAAGTTAATCATTCTACATGAAAGAAAATCCTCAGAAATGAAGAATTGTGATTCTGACTGCTTCAAGGTCTTTAAATATATATATGACTTTTATTAATTTGCTCATTTTAGATCATGAACATGTTCTTATACTTATGCTCAGCTTGTATTGTCCATTTGTCTAAGTTGTCATATCCATGTTACGTACATTGCATTCAAAACCAAATACAAATTAATGTTGTTCTGCAACATATATATACTAAGTCTCATATGATGACTTCTTGTTTAAAAGGTTCAAATTATATTTTGTTTGACACAATATGCTTTATGCAGCAAATATTTAAAGGAAATATATTGCTACAAAGTACCCTTTCAGATGGAAGCCTAGCCGTAAAGTTGAAGGTCTGTGATTTTGGCTTTTCCAAGGACTTTGAATAAGAGAATTTTATTAATTTTCTCATTCGACCGAACATGTTGTTATACAAATGATTTTGCATTGTAAATAGTTTTGCATTTAAATCCAAATACGTTTTTTCTCTCCAATACTTAGCCTCATATGGCTTTTTGTTTAAAAATCTAATACCATATTTTGTTTGACACAATGCTTTGTGCAGAAAATAACATGGAATAAAGATTCGATGCTAGATAGTATCCTTTTAGATGGATGCCCTGCCCCACAGTCTTTGAAGGTATGTGATTTTGGTTTATCTAAAGTTTTTTAGCTAAGAAAATTTTAAAGTCGATCAGTTACCCATACCATACCCATGTGATCAGTTTGAAAATGTTTTGAAGTAAATGTGAAGATAAAAAAATATCCTATCCACACCTATGTGCAAGGTTATTGATTATAGTAATAGCTGTTAAGACGATCTGTCACACCCCGCCTCGTGCACCTATTTACTCGACCTGAGATGTGGCGTGAAGTCAACCGATGTCATTTTTCTTCTGAACAACATCAATTGACCCTAACTACTACTATTTTACAATGCTAAACAACTTAGGTAAATTAAAACTTATGCTGCGGAAATTAAGGGAAACAACTTGAAACACTTTTATACTTTTAACCGGTAAATGCCATTGATTACAAATTTTACTTACTGACAAAACAAAAATTAAACAACTTAAACTTAATACAAAACCATGTAGATGATAAGATTAAAACTGACCCTTAAGGACTGTTTGGGAAAAGGAAAGGAAAGGAAAGGAAATCATTTCCTTGTTTGACCCATGGATTAAAGTAATGCCCTTAATCCTCTTATTCCTTCTCTTTCTTCATTTATTACTCTACTTTTCCCCGTTAATCCTTTCATTTTCCAATATAATCCTTCTCTTTCTTCTCTTTCCTCATTTATTTCTTATTTTTCCTCATTTATTTATTCTTCTCTCCAAATTAATCATCTTATTTCTTCTATTTCTCAAACAAATTAATCCCGCTCTCTTCTTCTTCATTCTCTGTGTGTCAAACAAATTAATCATCTTCTCTAGTACATTGCTTATCGTTCTCATGAAGAAAAAAAAATTAATAAATGAAAGAAAAAATATTAAAAATGAAAGAAAAATAAATTGGTAGAACCATCGATAAAATATAATTTTTTATTGTATAAGATTGATGATACAAACTTAAAATACAAATTTCTTTGTGTATTCTATTTACTGTACAATTTGAAGAAACATACTTTACATAAATGAAAAAAAAAATAATACAATTGGTTTGTATTGTGTATTATGCGTACGGTCCAAATTTTTTTATACAAAATCAATTTAAAAATTAACACATATTTGCTTTGTGTTGGGGTTAAGTAGAAATGAAGTATAAACATTATTTTAATACAATTTTTCGTCGTTTTAGAAAATAGTACAAACAAAATAAATAAGTTTAGACAAATGCAAAAAAAAAAAAAATTAATACAAGTAAAAAAAATTATATTAGGCGTACGTTACAAATTATATTAGGTGTACGTTACAAAGATTACTACAAAATAAATAACTTTACTTTTGAAAGTATATTAGGTGTACTTTACAAGTAAAAAAAATATTTATACAAAATCAATACAAATTTTTGGTGAACGCTTGGATTATGGTACAACCTATCTAAAAAAATAAATTTGAATATAATTTTTGGTTGTAGGGTTTTACCGTATGAACAATTTATACAAATGCAAAAAATATTAGCACATTTTTCATTTTGTATTGGGTTCGCGAAAAAAAAAAAAACAATAATTTCATTCCTGGAAAAAAATAATTATGTATTTTTTCTCATTTGGGGTTAATGTACAAATAAAAGAAAATACAAATTTTTTGTCATAATCCTTCCCACATAATCCTTCTTCCAAACAAGGATTATAATAATCCTCTAGAATCCTTTCACTTAATCCTTTCCCCAAACAAGGATTATAATAATTCTTTCCTCGACTTAATCCCCTTTTTCTTATTTATTTTTCTCCTTTATTCCTTTGATCATTCCCCCAAACGACCCCTTAATAACTAAACTATCAACAACTTCGCACAGCAGTCTGAAGACAACGGTCAAGTTCTCGAATCACGAACTCTACCTGGAAAGTAGAAAACGTTTTGAAAGGGTGAGCTAAAAAGTCCAGTGAGTGATGGTTTTATAAAACAGACTTTTAAAGCAAACATACTTTAAACATTTTATAAACATAACATATAATCTTTATGAAATATCTTTAAACTGAACATCTTCTAACATTCAAATACTCATTTACCTTTGTATACTCAATACCCAAAAAAACTTAAACAAGATAGCAGAGCACCTTCGGTCATACTATCCAATTAAACCTTGAATAGCATAGCACCTTTGGTCATATTATTCCTATCTGAACTTGGTGGTAGCGGTTAAATGGTCAACATAACCCTATACCCTTGAAAAACCTGAACATCTTCTAACCCTATTCCTATTGTCATCTCTTTAAACTGAACATCTTCTAACCCTATTCCTATCTGAACTTGGTGGTAGCGATAAGCTTGTCCATTTCCTCTTGTCATGAAATAATGGGATACGACTCCAATTAATTCTCTTTTATTTTAAACATCAAACTTTACTTAAAATTTTTCAAATCATCAAAACAGCCCCAAAACGCCTCGAAAAACCTCTTTGAATCCAAAACGCATGTCCAACATGCCATGCTAATTTCTTAGGCTCGACCACTAACCTCTACTGCCCAAAACCTCATTCTCGGCTAGAACTCTACTTCTTCTTTAGAGCTTAATAACTTAAAATCCAGAACTGATCAAATAAAAATACTTTCTTCTACAAACTTGTTGCAACACGTCTTAATATTCTTACCTCAAACTTTCAGCTTCAAATTTCAATGGATGAACTCTACAACCCTCTAGAAGTACACGTTGTTCAAAATCATTCGTATTCTGACCTTCCTTGCTTTCTACGACCGAAACTCCCGTCACTCAAATTAAACGAGCAGCCCCATCTTATTCAAAATGCACGGGTGTAGTATGAGAAAAATGAATTTGAGGTAACCTAATTATAGAGTCCATTGCATGAATTTACGTTGACATCTCATCCTTGCTTAAATCCACCTTAAACCTTATTAAGACACTTCCTTCTTACTTTTACAACTCAAGACGCATGCTAACAAGGCTTTGAAACTTCACTAAATCATTAAACCAATTGCCTTAATCATGCCACATTAATATCCAAAACGCATAGCTAGCTTCCAAGATCATCTCGCCTAGCTTCTCGCCCAGACTACATAACCCGACTTAGGAAAGTTATAACTTAAAATTCGTAACTGTTTTGATAAAACTTCATTCCACAAAGTTTCTCTAAATTGCATTAGCTTTCTGCCCTCCAAATTTTAGAGCAAAACACCAAAATATGCGTTCTGTAGCCTTCTAGGAGAGCATCTTACCAGATTCACTCGCGAGCTGACCTTCTCACCTTCTCTTATGTATCCAAAATGCCAACTTTCTCATATCTGAAACGCCCAGCAACCTTCCTCAATAAACTAGACTCAAATTCTGAACTTTCAAGACCAATTTGAGTATAAATGCCCAAGTGAGTTGTGAGAAACTCTTTTATGAAGTTAGCTAGAACGCCCAACCTCTTCGATCCTTCTTTCTCGCCAACCTTAAACACTAAAAAATGCTTTCTATCCTTTAGAAAATGCCTAAAGTACTATTCTTTGATACTGCACCAAAAATTTTCTTTCTTTCTAACCTCTTAAACTCTTTGGAAAATCTACACTACCTAAAGTTTGGGTCTTACACAATCGTAAGTAAATAACAACACAGAGGAATTTGTTAACCAAGTTTGGCAATACCACCTACGTCCAGAGAACTTGCTGCTCAGATAAGAAATATTATTAAGGTTCAATAAAGTAACTAGTTTGTTTATAGTTAGAAGATTAACACTTCAAAAAAAAAAAAAACTACATAATTAAGTTGAAACTGAAACTTAATTTAAACAAGCTCCCTGCATATGTGGTTGATACTTTATTGAAGATAACTCACTCCCCCTGGGTTGGTTGTGTACTGCTTCTCAGTGCATGATCTTCATCATCCTTCTTATCACAGGTGCAGTATATACAAACAGGTGAAATACTAACTTGGTCCCAGATTCTTCAATAGTTCATTAATATGAAGGTAAAATATCTACCTTCTTAAAATCACAAGTCGAGAGAGAATACCTTAGAGTTGATGTTTCTTCATAAATGCACCCTTCGAATGAAGTCCAAGACTTGACTATTTAAAGATCTTCAAACCAAATCTTCATTAGGAGTAAATTAATAACTTGGATAAAAGATTCCTAATAAATAGGAAGATCTTTTTATCTTTATTGTTGGTGATATATAATTAAATTTGCTTTCAACCACAAGTTTAAGCTTTTGGATGAATTGGTGATTTAATATGGTATCAGAGCTTGTCGTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTAAATAATGATAGTAATTTGTAATAAATAATGATAGGTAATTCACATTGGAAAAACCAAGGGGACTCATACTCCATATAATGTAGATGGGCTACTCCTCTCGTTGCCAATTGGTTTTGAGATGGAACCCCACACTACCAAATTTAACCCAACAGAAATCCCCTCAAGGATTTAAAAAAATATCACAAAGGAATAAACTTATTTTCAACATATTTCTTTTGACAAAATTACCCAACATGTTTGTTCCTCACATACTAAGCCTGATATGGCTTCTTGTTTTAAAATGTTATGTCATATTTTGTCAGCCACAATGCTTTATACAACAAATACGTGATAGAGATATGACAATAAACAATGTCCTTTCAGATGGAAGTCTAACCCCGCAAATGAAGGTATGTGATTTTGGTTCCTCTAAGGTCTTTGATTGAGGGAATTTTATTAATTTTCTCATTTTAAATAAACATGTCCTTATGCTTGTGCTCTCGATCTCATTGTCAATTTGTTCCGAGTAATTGCATTCAAAACCAAAAAGAAAAATAAGTATCATATCTATGGCTTCTTGTTTACACCATACTTTGTCTGACACAATGCTACTTTATGCAGCGAATATATCGTACATGTTTGATGCTAAACAAGAACCTTTCAGATAAAACCCTAGCTGAGAAGCTGAAGACATTTGATTTTGGCTTCTCCAAGGTCTTTGATTAAGAGAATTTCATTATTTAATATGCCGATTTTAAATGCAAGTTTCCGTATAATATTGTGTGCTCTTCTATTGTCAATTTGTGGTAAGTAATTGCATTAACAATTTAATATACAAATTTGATATTGTGAGATTCTAAGCCTCTTGATAAGGCGTCTTGTTTAAATATGTTCTCTACCATCCATTCTTTCTCTGACACGATGCTTTTACACAGCAAACATGTACTAAATATATGTCGATGCTGAACATTATCCTTTCAGATGGAAGTACAAGTACAACGTCGAAATTATTAAAGGTAACTTAGTATGTGATTTTGGGCTCTATCTTTGATTAAGGGAATTTTGTTAATTTGCTCATTTTAGATAAACATGTCCTTGTACTTACACTCTTCTATTGTACTTCCATTGAAAACAAAAATCAAATGTTTGTTTTGAAAAATACTATATGTATATTATGGCTTCTTGTTTAAAAATGTGTTATGCACCCTATTATTCATAGTTATAGATGCAGGGGTAAAAAGGGGATTGATCAAGTGACAGCATAGCCACTGGGAGACATGGGAGGAATATCTGTTGGGGGACCCACTCCCGAGAGAATTGGAGTACTTAAGGAATGTTTTGAGATTGTTGAAGATTAGGTCACTTTTGGGAAAAGCTGTGGAATGCTTTTTGGGCGGAGAACCATCTTCTTGAAATTGCTGGGGGAGCTTTCTTATTTTCTTTCCTTTATTACTACTTGTTTTGCTTGCTGTTATCATTCTCCCTGGTTTAAGTAAGCATTGTGAAAACTACCCTCTTTTCTATTTTCAATATATATCATCACAGGGTACCTATCTTTGTTTTCTCTAGTATTGTTGGGATTTTCTAAGTGGTAGGTAATGAAGTCCTAACATATTAGTTATTAGAGCCGCCAAAAATCCTTGAGAGGACACGAGGAATGGCATAGAAAGAATTGGAGGAAATGATGGAGATGAGCGAGAAAAAGATCATGGATTTGAAAGAGTTGATACACGTGTGGAAAAACTATCGGATGAAGTGACGGAAAGAGTTATGATATATATATTTATATTTATGCCATATGTTCTTTATTGTAAGTCTACTCCCGACGACCTCCACCGCTTCCTTCATCACATGATTTGGGGTCGAGTGATGATCTTCCAATTGCTCTTCGTAAAGGTAAAAGCAAATGTACTTACCCCGTTTCTTTCTTTACTTCCTATCACCAGCTATCTCCATCCACATATGCTTTTATTACGTCTCTTAAGTCCACATCTATTCCTAATTCTATTCATGAAGCTTTATCTCATCCTGGCTGCCGAAATGCAATGATTGAGGAGATGACTGCTTTAGATGATAATGGTACTTGAGATTTGGTATCTTGTCCTGCAGGAAAGAAGGCCATTGGTTGTAAATGGGTGTTTCCTGTCAAGATGAATCATGATGGAACAGTGGCTCGATTGAAGGCTCGCCTTGTTGGAAAAGGTTATGCTCAGATCTATGGAACTAATTATTCGGATACATTCTCTCAAGTTGCCAAATTAACTTCCATTTGCCTATTTCTTTCCATGGCTGCTACCCAAAAATGGTCTTTCCATCAACTTGACNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNCGTGCGTGGTTTGGTAAGTTTAGTCAAACTCTTGTATGCTTTGGTATGAAGAAGAGTACATCTAATCATTCGGTTTTCTATCATCAGTCTGATAATGGTATAGTTCTACTATTTGTATATGTTGATGATATTGTTATTATTGAAAATGATGCATTGGGTATTTCGTCTCTCAAAAATTTCCTTAAGGGTCAGTTTTATACAAAAAATTTAGGCCAATTGAAATATTTTTTGGGCATTGAAGTTATGAGAAGCAAGAAAAGTATTCATTTGTCTCAACGAAAATATGTACTTGATTTGTTGTCCGAGACAGGAAAATTAGGAGCCAAACCAAGTGGCACTCCGATGATGTCAAATCAGCAACTTGTTAAAGGAGGAGAATTATGTAAAGATCCTGATAGATATAGGAGATTAGTTGGGAAGTTGAACTACTTAACAGTGACTCAACCAGACATTGCTTATTCTGTAAGTATTGTAAGTCAATTCATGTATTCCCCTACAATGGATCATTGGGCTGTAGTAGAGCAGATTTTGTGTTATCTAAAAGTTGCTCCTGGACGTGGGATCTTATACAAAGATCATGGACATACAAGAGTTGAATGTTTTTTTGATGCTGATTGGGCGGGGTCTCGTGAGGATAGGAGATTAACTTTTGGATATTGTGTCTTTGTAGGTGGAAACTTAGTATCATGGAAGAGTAAGAAACAAAATGTTGTTTCTCGTTCGAGTGTTGGGTCTGAATATAGAGCTATGACATAATTTGTGTGTGAAATAGTATGGATTCACCAACTATTATCTGAGATAGGTTTAAGTATTACCATGCCAGCTAAATTATGGTGTAATAATCAAGTTGCACTTCATATTGCATCTAATCCAGTATTTCATGAGCGAACTAAACATATTAAGGTGGATTGTCACTTCATTCGTGAGAAAATCCAAGATGGGTTGGTGTCCACAAGATATGTGAAGACTAGAGAACAATTGGGAGATATTCTAACTAAAGCTTTAAATGGAGCAATGATAAGCTATCTGTGCAACAAGCTGGACATGATCGACATATTTGCTCCAGCTTGAGGGGGAGTGTTATGATATATTTATTTATATTTATATCATATGTCCTTTATTGTAATTGTACATAGTGTCTAGGGTTTATTTTATTCTCTATATAAATATGTAACACTCATTTGACTCAAGATGAATAAGAAATAGACTTCTCTAAATTCTAGATTACAGAAAGTAGTATGACCAAGTGTAGAGAAGAATCTTATGTGTTCAATGGGTCTGGGTTGAAACGGAAAGGTAAGATGGAGGAAGTTGATGTGACGTCCGGTGTCATTGGGGGTCCTCCAAATAGAAGCAAGTATAAGAAGTTGGAGATGCTTGTTTACCGGCATGAATCTAGAATCTTAGGTTAATAGGGCCCAACATTATTTTTAGATCAATGAGCTAAACGAAGTGGAGAAGGTAAAGGTGGTTGTTAGTTTCGCCCAAGACAAAGTGGATTGGTTTTGATGGAGCAATAATCAAAAGAAAATCATATCCTGGAAAGATCTAAAAGCAAGAATGTTTGAACATTTTAAGGTTCCGAGAGAAGGAAGCCTGGGTGCCTGCCTCATACGCATTCAACAGGATATTGTGTCTTCCATATATAGACTATGGAAGAAGTTCTTGAATTACTCCACGCCCTTGTCGGAGATGGTAGAAAGTGTTCTGATGGATGCATTTATAACCTGTTTAGAACCAAAATTGCAAGTAGAGATGAAAAGTCGTCAACCCCTAACAACGTTAGAGGACTATATGAGAGGCCCAGTTTGAGAATGATAGAACTGTATGAGAGACACCCAATTGCTAAACGAATTCAGCGTTCGTAGGCCAAGTACTTTTGAGGCCCAAGCCCAAACTATGAAAGACGGGGAAGCAAATATGAAAAAAAGGGGGAAGGCGAACTGAGTATCCTATAGGCAAATTTTTATTTCGATCAAGGGCATTACACGAGAGGAGAACCGATGGTGAGATGTTTGCCAGACAATGAGTTGAGTTTAGGGGAAGATTGGACAAGGGGTTATGCTTTCCCTGTAACAAAGTTACTCCTAGGGGCACAAATGCAAGATCAAAGAGAATTGTGAGTTGATATTATTCATTATGAATGAAGAAGACAGGTGAGACGGAAGTCAAGGAGGAGACACAACCGGAGGTGGTGGAGATGAAAACTCTGGAGGTGATGAGAGAAACAAAAACTACACTTCAAACCATCCTAGGATTTATGTCCAAAGGAATGATGAAATTAAAGGGATCAGTGAGGGGCAAGGAAGTATTCATCCTAATTGGTAGTGGAGTGACGCATAATTTCATCCATCAAGGAGTTATCAAGGTGTTAAACCTACCACTAAAAAGGGCGACTTAAGTTTGGAGTAACGATTGGGGATGGGTCAGCGTTAGAAGTGTTGTTTTTTCTATTGTGCTCTATAATAATTTTATGGATAATTGGTTTATAGTTAAATATTTAATAAAAGTTATTGTTCTTAGTATTATTCAATTGCATGTTATTGTGTAATAATATCTATGACTATGTTATTATATTCTAAATGTCCCAAGTCTATTATTATTGTGGGAACAATAATAAATTTAGTATGAGTTATAATTGATAACCACATAATGATCATAGGGACATTTTTTTTAAAATAGCAAAGTAAATTAAAATATTTACAAGCTATAGCAAAATTTTTAGATTCTATCAATGATAGAGTTCTACCGCTGGCTATCAATGTCACTGATAGAAGGATATCACTGGCTATCAAACGTTTGTTATTGATAAAATATGAAATTTTGCTATAGTTTGTAAATATTTTGTTAAATTTGCTATTTTTGACAATTCTTCGTGATTAGATTATATATGTAAAGACATAAATTATAACCATATTTTCTTATTAGAGAATTAGAATTGGACTTACCTTTTTTTTTAGATTATTACATGGACCATAAATAATCTCAAATAATTGATTGTTTTGATCCTTAGACGTGAGATTATCATAGCATCAAGTATAATAATTAATCTATCCTGATGCAATCAAACGTTATTTTTAATCGGACAATTATAAAGGTTGTACTCAAATACATGCGTTATGAATTATGTAGTGGACAATGATTAATCAAAGTGGAATTTATCCCTCTTGTTATGGAGAGATATCTCTAGGCTCCTCGATTAAGCATGACTGTGAAAATGCATGAGCATGCTATAAATGAATTAATAACGGTATTAATGTCATTTATTATTTCAATATGCTTATTGGTCGAGAAAGCATTTGAATTAGATTAGGTGACTTTGTCCATGCCTTATATTCAATTATAGATATTGCTGGTAAACTCAGGGCGTGATAAAAGGATTAAGGCAATAATTATATTAGGTTATGTTGGATCATCGATTTAATTTAATATGGGTAGCCATAATGCCTTGTTAGAGACCGATTATGACTTATGGATCATAAAACGAGTTATGGGTCTATTGCTATATTAAATTAACCTAATGGGGTAGCACACGAAAGAACTAGGTTGAATTTGTCTTTGGACTGGTTAATCAATAAGCCAATTGAAGAGTTGGAAGCTTAGTAGGAAACTATAAATAAGACCTTAGGTGTCTTATTTGATAGACACGCAAACGACAAAAATTTGTTCTACATAGAGAGAATAGAGAGAGTTGAAATTTCCACTCTAAGAAGTTCTAGCAGACCCGAATTCGACCTCGAATTCCTAGTACGTGTGTGGATACTGCCAAAGAATGCTAGTGATTTTGCAACATTTTGGTAATATGAATTTGGAGGATTGTTCTTATCAGAACAGAGGCAATTCAAATTTGGAGAGTTACTCACATTGAAATAGAGGTATGTTTATTCGTGATTTAATTATTTATGTTTTAGGGTTATTGATTTTTTTTTTATGTTAATTTCGTTGTGTTCATTATCCAACAACAAGAAAGAGGAATAAGCAAACAAATTGAAATCAAACTACTCGAAGTGACTATTGTGGCAGACTTCCTAGAAATAGCATTGGGTAGGATTGATATTGTGTTGGGGTTAGGGTTCATGGGCGTTCATTGGCTGTCGATGACTATAACCTTCATGGTCGGAAACACTTTGAGTCATTCTAAAGAGGGACTCGTCACTAGCAAAGTCATAATGCTCATGGAAGATGTCAGCCAAGACCTGGGAAGTGGAAGACCAAGGATTCTTGTTGGAATTTTAGAACGTGGAAATTGAAGATAACAAAAATGAAAGTGATAGTGAAGAGAAAGGAGAGGAGGAGTCTGAATTATCCATGATTCGGAAATTGTTAAAGAGATATAGAGATATTTTTGCAAAGAAGTTGCCTCCTCAAAGGACAGTAGACCATAGGATACTGATAGTGGATCGATAGAAACCCATCAATGTCAGACCGTAGAAGTAAGGCCACATCCAAAAGGAAGAAATTGAAAGACTAGTTAATAAAATGTTGCAAGCAGAAATCATCAGACCTAGTCAAAGCCCCTACTCAAGCCATGTATTACTAGTTAAGAAAAGGGATGGAGGGTCGTGTTTCTATGTAGACTATCACAAATTAAATCAGGTGACCGTTACGGACAAATTTCTCATTCTCGTGATTGAAGAACTCCTTGATGAATTACACGGTGCAATAATTTTTTCTAAGTTGGATTTACGCTCTGGATATCACCAAATTAGAACGAGGGAGGAGGATATTGAGAAGATAACTTTTCGCACACACAAAGGACATTACAAATTCATAGTTATGCCTTTCCAATTAACCAATTCACTGGCCACCTTTCAGTCACTGATGAACCAAGTTTTCAGACCTTTCCTGAGACGTTTAGTGTTGTTGCATGGTTTTTGACAATATCCTAAACTATAGCACGGATATTACTAAACATGAAAGGCACTTGGGTGGTGTTTAGTATTTTGAAAGATAACAAATTGTTTGGCAATGAGAAGAAAAATGTGTCATTGTGCACTCCCAAATTCAGTACATGGGCCATTAGATATCTAGTAAAGGAGTAGAGGTCGACGGTGAAAAGGTGAGAGTGATGGTTAATTGGCCACAACCAAGAGACGTATCCGAGTTGAGGGGATTTTTGGACTTCACAGGTTATTACAGAAGGATTGTAAAAAGTTATGGGATATTGCCACACCCCTTACCAAGCTAAGAAAAAATGGGTTGAAATGGGATGAAAGGGCCACTGAAGCATTTGAATAGTTAAAGCAAGCTAAGCAATCATATTCGTTCCCATTTTGGCTCTCTCAGATTTCATTACCTCTCACTATTGGAAAATTATATTTGATGCTAGGGCCCAGAAGCTGAAGATGTATTATTTTGATTTCTCTAAGGCCTTTGATTTAAAGAATTTCATTATTTTTCTGATATATTTGAAATGAAAACACGTTCTTAGACTTATGTTCTTCTATCGCCAGTAATTTGTTGCTAGTAATTGTGTTTAAAATCAAGTAAAACTGTTAGTTCTACAATATAATAAGCCTCACATAGCATTTTGTTTAAAAATATTATACCATATTTTGTTTGACATAATTATGGTTTATGCAGCAAATATGTAATCGAGATTCGATGCTTTCAGATGGACGTCCAACCCTGCAATTGAATGTATGTAACTTTGGCAGCTTTAGAATTTCATTATTTTCCTAACTTAAAATGGAGGTGCTTTCTTCTGTCCTGTCAATTTGTTGGGAGTAATTAATCGCAGTCAAAAGATATTGTTGGAATAAATGGTTATGATTCTTCATGAATGGATGTATCATGGGTGGATGCATCATTTCATGAAAAGTTGGAATAAATGGTTATGTTTCTTCGTGAATGGATGCATCATTTCATGAAAAGTTAAATCATTTCATGAAAAGTGTCATTAACTAAAGGACATGACTTTTTGAATGGCCACAAAAAGTCTATAAATAAGTCATTTTGGTTGAGAGAAAAGTATATAGAAAAAATCATTTGTCTTCGATAAACAAATTTCTCTCCATATCCACAATCTTGACGTTCGGTAGATTCACAAGGTTTCGTTCGTAGATCTTCTATACGGGGTGCTACACTTAGAAGAAAGTTGATCTATTCTATCGTGGGAGGTAATTACTCTAAATTCTCAAGCACTAGGGTGAGTAAATTTGTCTTAAGGAGACAACGTGAATTCGTTGAGCTCAGATCTATATTTGTGTATGATTTTTCTGTTCGCTGTGATAATAATATACCTAGCAATTGATAATCTGTATAACAGATATACATATTAAATTTTAATTAAGAAGCATGATAAATTGCTTATTTTTTAAAAATGTTATACCATATTTTGTTTAACACGTACGCATTTCTTTATGCAGCGAACTATATGTAAGAAAGATCAATTGATACTAGACAATGTCAATACACTTTCAGTTTCAGATGGAAGTCGAACGTCAACACCAGAGTTGAAGTTGAAGGTGTGTGCTTTTGGCTTCTCTAAGGTTTTTGATTAAGAGAATGTTCTTTATTAATTTAAACATTTGAGATGAACATGTACATGTTCTTAATTATAGTACTTGTGCTTTTCTATTGTGAAGTAATTATTTATTATTTTGTGAGTATAGTTGCAGCCAAAACCAAATACAAATGTTGGTTCTCCAACATACACAGCACCAGAGGTTTTAAGTGGACGAAGTTGTGATGGAAAGGTATTTTAGAACAATTAATTTTCAATTATAATAGATTTATAGACTCTCAATAATTCAAACACCTACGAAATGACTTAGCCTATTGTGTTTAGACTGCAGATGTGTGGTCATGTGGCGTCACTCTTCATGCTATGTTGTTTGCTGCGTATCCTTTCGATGATCCAGACGATTCCGAAAACTCTGAGAAAACTTTTAATGTCCATTACTTCCTGATCTCTTGTTCTATAATAATTTATTTCGTAAACTCATCATCTTTTTCACTTTTATTTATTTTGTTCTCTTACAGCGAATAATGTCCGAAGGCTACAAAATACCAGACTGTGTGCACATATCTAAAGATTGTCAACACCTACTCTCCCGCATATTTGTTCGAAATCCCTCAAAGGTATTTTTCCTATGACAAACTAGCTATTATATATTATGATGTTGGGTTGCATCAGTTTTGTTCAATGTGATTCTTACAATATGCTCAACGAAATATATACGACAGAGAATTTCTGTAAAAGAGATCATGAATCACCCGTGGTTTTCAAAGAACATACAATCGGAAGCAAGTGAAGAATTGTTTTTCCAGAGGGATAATCCAACCTTGTCTCATCAAAGTGTGGAAGAAATCATGAAGATTGTGAGGGAGGCAAGAAAGCAGCTTGCCCCATTATCCACAACCATCATGGGCTATGAATCGAACACCGAAGAGGATCACGACCCAATGTTGAAAGAAGAAGAGGAGGATTAGTACGTATGAAAAGATTGTCAAAGAAGTTCTTGCCAATTGAAAAACTACTAGACCATTACAGAACAAAACATAGTATTGAGTTTTTTGTGTTGTCTTTGTATTATTGAAGTATATAGGTGTTATGTTTATAGTAGTAAAAAATAATCATTA GATTGAGATTGAAGATGATCTGATGCCCAAACATTGTTCAGTATTTCAAAGTTATTCTTCTCATTGCTATTAATTTTTGATTGAATAGTAATGGAGAAGTACGAAATTATTAAGGATTTGGGTGCGGGAAGTTTTGGTGTTGCTAAACTTTGCAGGGATAAAGACAGCTCAGAGCTTGTGGCGATAAAGTTCATAGAACGTGGTCCTACGATCGACGAGAATGTAGAAAGAGAGATTATTAATCATCGATCGCTTCGACATCCAAATATCGTTCGTTTCAAGGAGGTTATATTAACACCAACCCATTTGGCTTTGGTGATGGAATATGCTTCTGGTGGAGAACTTTTCGAAAGAATTTGCAAATGGGGCCGTTTTACAGAAGATGAGGCAAGGTATTACTTTCGACAGCTGATTTTTGGAGTCAATTATATTCATTCCATGCAAATATGTCATAGAGATCTGAAGCTAGACAATATCCTTTTAGATGGAATGAAATCCCCATGCTTGAAGATATGTGATTTTGGCTACTCTAAGCGAATATCTCATAGAGATTTGAAGTTGAAGTTAATCATTCTACATGAAAGAAAATCCTCAGAAATGAAGAATTGTGATTCTGACTGCTTCAAGCAAATATTTAAAGGAAATATATTGCTACAAAGTACCCTTTCAGATGGAAGCCTAGCCGTAAAGTTGAAGAAAATAACATGGAATAAAGATTCGATGCTAGATAGTATCCTTTTAGATGGATGCCCTGCCCCACAGTCTTTGAAGCCACAATGCTTTATACAACAAATACGTGATAGAGATATGACAATAAACAATGTCCTTTCAGATGGAAGTCTAACCCCGCAAATGAAGCGAATATATCGTACATGTTTGATGCTAAACAAGAACCTTTCAGATAAAACCCTAGCTGAGAAGCTGAAGACATTTGATTTTGGCTTCTCCAAGCAAACATGTACTAAATATATGTCGATGCTGAACATTATCCTTTCAGATGGAAGTACAAGTACAACGTCGAAATTATTAAAGCAAATATGTAATCGAGATTCGATGCTTTCAGATGGACGTCCAACCCTGCAATTGAATCGAACTATATGTAAGAAAGATCAATTGATACTAGACAATGTCAATACACTTTCAGTTTCAGATGGAAGTCGAACGTCAACACCAGAGTTGAAGTTGAAGTTGCAGCCAAAACCAAATACAAATGTTGGTTCTCCAACATACACAGCACCAGAGGTTTTAAGTGGACGAAGTTGTGATGGAAAGACTGCAGATGTGTGGTCATGTGGCGTCACTCTTCATGCTATGTTGTTTGCTGCGTATCCTTTCGATGATCCAGACGATTCCGAAAACTCTGAGAAAACTTTTAATCGAATAATGTCCGAAGGCTACAAAATACCAGACTGTGTGCACATATCTAAAGATTGTCAACACCTACTCTCCCGCATATTTGTTCGAAATCCCTCAAAGAGAATTTCTGTAAAAGAGATCATGAATCACCCGTGGTTTTCAAAGAACATACAATCGGAAGCAAGTGAAGAATTGTTTTTCCAGAGGGATAATCCAACCTTGTCTCATCAAAGTGTGGAAGAAATCATGAAGATTGTGAGGGAGGCAAGAAAGCAGCTTGCCCCATTATCCACAACCATCATGGGCTATGAATCGAACACCGAAGAGGATCACGACCCAATGTTGAAAGAAGAAGAGGAGGATTAGTACGTATGAAAAGATTGTCAAAGAAGTTCTTGCCAATTGAAAAACTACTAGACCATTACAGAACAAAACATAGTATTGAGTTTTTTGTGTTGTCTTTGTATTATTGAAGTATATAGGTGTTATGTTTATAGTAGTAAAAAATAATCATTA ATGGAGAAGTACGAAATTATTAAGGATTTGGGTGCGGGAAGTTTTGGTGTTGCTAAACTTTGCAGGGATAAAGACAGCTCAGAGCTTGTGGCGATAAAGTTCATAGAACGTGGTCCTACGATCGACGAGAATGTAGAAAGAGAGATTATTAATCATCGATCGCTTCGACATCCAAATATCGTTCGTTTCAAGGAGGTTATATTAACACCAACCCATTTGGCTTTGGTGATGGAATATGCTTCTGGTGGAGAACTTTTCGAAAGAATTTGCAAATGGGGCCGTTTTACAGAAGATGAGGCAAGGTATTACTTTCGACAGCTGATTTTTGGAGTCAATTATATTCATTCCATGCAAATATGTCATAGAGATCTGAAGCTAGACAATATCCTTTTAGATGGAATGAAATCCCCATGCTTGAAGATATGTGATTTTGGCTACTCTAAGCGAATATCTCATAGAGATTTGAAGTTGAAGTTAATCATTCTACATGAAAGAAAATCCTCAGAAATGAAGAATTGTGATTCTGACTGCTTCAAGCAAATATTTAAAGGAAATATATTGCTACAAAGTACCCTTTCAGATGGAAGCCTAGCCGTAAAGTTGAAGAAAATAACATGGAATAAAGATTCGATGCTAGATAGTATCCTTTTAGATGGATGCCCTGCCCCACAGTCTTTGAAGCCACAATGCTTTATACAACAAATACGTGATAGAGATATGACAATAAACAATGTCCTTTCAGATGGAAGTCTAACCCCGCAAATGAAGCGAATATATCGTACATGTTTGATGCTAAACAAGAACCTTTCAGATAAAACCCTAGCTGAGAAGCTGAAGACATTTGATTTTGGCTTCTCCAAGCAAACATGTACTAAATATATGTCGATGCTGAACATTATCCTTTCAGATGGAAGTACAAGTACAACGTCGAAATTATTAAAGCAAATATGTAATCGAGATTCGATGCTTTCAGATGGACGTCCAACCCTGCAATTGAATCGAACTATATGTAAGAAAGATCAATTGATACTAGACAATGTCAATACACTTTCAGTTTCAGATGGAAGTCGAACGTCAACACCAGAGTTGAAGTTGAAGTTGCAGCCAAAACCAAATACAAATGTTGGTTCTCCAACATACACAGCACCAGAGGTTTTAAGTGGACGAAGTTGTGATGGAAAGACTGCAGATGTGTGGTCATGTGGCGTCACTCTTCATGCTATGTTGTTTGCTGCGTATCCTTTCGATGATCCAGACGATTCCGAAAACTCTGAGAAAACTTTTAATCGAATAATGTCCGAAGGCTACAAAATACCAGACTGTGTGCACATATCTAAAGATTGTCAACACCTACTCTCCCGCATATTTGTTCGAAATCCCTCAAAGAGAATTTCTGTAAAAGAGATCATGAATCACCCGTGGTTTTCAAAGAACATACAATCGGAAGCAAGTGAAGAATTGTTTTTCCAGAGGGATAATCCAACCTTGTCTCATCAAAGTGTGGAAGAAATCATGAAGATTGTGAGGGAGGCAAGAAAGCAGCTTGCCCCATTATCCACAACCATCATGGGCTATGAATCGAACACCGAAGAGGATCACGACCCAATGTTGAAAGAAGAAGAGGAGGATTAG MEKYEIIKDLGAGSFGVAKLCRDKDSSELVAIKFIERGPTIDENVEREIINHRSLRHPNIVRFKEVILTPTHLALVMEYASGGELFERICKWGRFTEDEARYYFRQLIFGVNYIHSMQICHRDLKLDNILLDGMKSPCLKICDFGYSKRISHRDLKLKLIILHERKSSEMKNCDSDCFKQIFKGNILLQSTLSDGSLAVKLKKITWNKDSMLDSILLDGCPAPQSLKPQCFIQQIRDRDMTINNVLSDGSLTPQMKRIYRTCLMLNKNLSDKTLAEKLKTFDFGFSKQTCTKYMSMLNIILSDGSTSTTSKLLKQICNRDSMLSDGRPTLQLNRTICKKDQLILDNVNTLSVSDGSRTSTPELKLKLQPKPNTNVGSPTYTAPEVLSGRSCDGKTADVWSCGVTLHAMLFAAYPFDDPDDSENSEKTFNRIMSEGYKIPDCVHISKDCQHLLSRIFVRNPSKRISVKEIMNHPWFSKNIQSEASEELFFQRDNPTLSHQSVEEIMKIVREARKQLAPLSTTIMGYESNTEEDHDPMLKEEEED*
BLAST of Cucsa.170130.1 vs. Swiss-Prot
Match: SRK2E_ARATH (Serine/threonine-protein kinase SRK2E OS=Arabidopsis thaliana GN=SRK2E PE=1 SV=1) HSP 1 Score: 244.2 bits (622), Expect = 3.3e-63 Identity = 113/147 (76.87%), Postives = 135/147 (91.84%), Query Frame = 1
HSP 2 Score: 164.5 bits (415), Expect = 3.3e-39 Identity = 94/218 (43.12%), Postives = 132/218 (60.55%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. Swiss-Prot
Match: SRK2B_ARATH (Serine/threonine-protein kinase SRK2B OS=Arabidopsis thaliana GN=SRK2B PE=1 SV=1) HSP 1 Score: 244.2 bits (622), Expect = 3.3e-63 Identity = 113/148 (76.35%), Postives = 134/148 (90.54%), Query Frame = 1
HSP 2 Score: 186.8 bits (473), Expect = 6.2e-46 Identity = 111/231 (48.05%), Postives = 145/231 (62.77%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. Swiss-Prot
Match: SRK2A_ARATH (Serine/threonine-protein kinase SRK2A OS=Arabidopsis thaliana GN=SRK2A PE=1 SV=1) HSP 1 Score: 243.8 bits (621), Expect = 4.3e-63 Identity = 113/148 (76.35%), Postives = 134/148 (90.54%), Query Frame = 1
HSP 2 Score: 184.9 bits (468), Expect = 2.4e-45 Identity = 108/226 (47.79%), Postives = 143/226 (63.27%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. Swiss-Prot
Match: SRK2H_ARATH (Serine/threonine-protein kinase SRK2H OS=Arabidopsis thaliana GN=SRK2H PE=1 SV=1) HSP 1 Score: 243.4 bits (620), Expect = 5.6e-63 Identity = 115/148 (77.70%), Postives = 133/148 (89.86%), Query Frame = 1
HSP 2 Score: 199.5 bits (506), Expect = 9.3e-50 Identity = 110/220 (50.00%), Postives = 144/220 (65.45%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. Swiss-Prot
Match: SAPK2_ORYSJ (Serine/threonine-protein kinase SAPK2 OS=Oryza sativa subsp. japonica GN=SAPK2 PE=1 SV=1) HSP 1 Score: 241.9 bits (616), Expect = 1.6e-62 Identity = 114/148 (77.03%), Postives = 133/148 (89.86%), Query Frame = 1
HSP 2 Score: 168.7 bits (426), Expect = 1.8e-40 Identity = 91/189 (48.15%), Postives = 121/189 (64.02%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TrEMBL
Match: A0A0A0L3P0_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_4G454150 PE=4 SV=1) HSP 1 Score: 614.4 bits (1583), Expect = 1.4e-172 Identity = 304/304 (100.00%), Postives = 304/304 (100.00%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TrEMBL
Match: A0A0A0L2C0_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_4G454650 PE=4 SV=1) HSP 1 Score: 386.7 bits (992), Expect = 4.6e-104 Identity = 188/189 (99.47%), Postives = 188/189 (99.47%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TrEMBL
Match: A0A0K9R364_SPIOL (Uncharacterized protein (Fragment) OS=Spinacia oleracea GN=SOVF_111820 PE=3 SV=1) HSP 1 Score: 249.6 bits (636), Expect = 8.7e-63 Identity = 116/148 (78.38%), Postives = 136/148 (91.89%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TrEMBL
Match: A0A0K9R364_SPIOL (Uncharacterized protein (Fragment) OS=Spinacia oleracea GN=SOVF_111820 PE=3 SV=1) HSP 1 Score: 192.6 bits (488), Expect = 1.3e-45 Identity = 110/228 (48.25%), Postives = 146/228 (64.04%), Query Frame = 1
HSP 2 Score: 248.8 bits (634), Expect = 1.5e-62 Identity = 117/148 (79.05%), Postives = 134/148 (90.54%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TrEMBL
Match: A0A0D2USY4_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_011G121900 PE=3 SV=1) HSP 1 Score: 196.8 bits (499), Expect = 6.7e-47 Identity = 111/224 (49.55%), Postives = 145/224 (64.73%), Query Frame = 1
HSP 2 Score: 247.7 bits (631), Expect = 3.3e-62 Identity = 115/148 (77.70%), Postives = 135/148 (91.22%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TAIR10
Match: AT1G60940.1 (AT1G60940.1 SNF1-related protein kinase 2.10) HSP 1 Score: 244.2 bits (622), Expect = 1.9e-64 Identity = 113/148 (76.35%), Postives = 134/148 (90.54%), Query Frame = 1
HSP 2 Score: 186.8 bits (473), Expect = 3.5e-47 Identity = 111/231 (48.05%), Postives = 145/231 (62.77%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TAIR10
Match: AT4G33950.1 (AT4G33950.1 Protein kinase superfamily protein) HSP 1 Score: 244.2 bits (622), Expect = 1.9e-64 Identity = 113/147 (76.87%), Postives = 135/147 (91.84%), Query Frame = 1
HSP 2 Score: 164.5 bits (415), Expect = 1.9e-40 Identity = 94/218 (43.12%), Postives = 132/218 (60.55%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TAIR10
Match: AT5G63650.1 (AT5G63650.1 SNF1-related protein kinase 2.5) HSP 1 Score: 243.4 bits (620), Expect = 3.2e-64 Identity = 115/148 (77.70%), Postives = 133/148 (89.86%), Query Frame = 1
HSP 2 Score: 199.5 bits (506), Expect = 5.2e-51 Identity = 110/220 (50.00%), Postives = 144/220 (65.45%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TAIR10
Match: AT5G08590.1 (AT5G08590.1 SNF1-related protein kinase 2.1) HSP 1 Score: 241.1 bits (614), Expect = 1.6e-63 Identity = 113/148 (76.35%), Postives = 133/148 (89.86%), Query Frame = 1
HSP 2 Score: 189.1 bits (479), Expect = 7.1e-48 Identity = 98/184 (53.26%), Postives = 130/184 (70.65%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. TAIR10
Match: AT5G66880.1 (AT5G66880.1 sucrose nonfermenting 1(SNF1)-related protein kinase 2.3) HSP 1 Score: 238.8 bits (608), Expect = 7.8e-63 Identity = 110/147 (74.83%), Postives = 133/147 (90.48%), Query Frame = 1
HSP 2 Score: 147.1 bits (370), Expect = 3.1e-35 Identity = 84/187 (44.92%), Postives = 112/187 (59.89%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. NCBI nr
Match: gi|778694842|ref|XP_011653877.1| (PREDICTED: serine/threonine-protein kinase SRK2G-like isoform X1 [Cucumis sativus]) HSP 1 Score: 1097.8 bits (2838), Expect = 0.0e+00 Identity = 543/543 (100.00%), Postives = 543/543 (100.00%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. NCBI nr
Match: gi|778694846|ref|XP_011653878.1| (PREDICTED: CBL-interacting serine/threonine-protein kinase 17-like isoform X2 [Cucumis sativus]) HSP 1 Score: 798.9 bits (2062), Expect = 5.5e-228 Identity = 402/419 (95.94%), Postives = 404/419 (96.42%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. NCBI nr
Match: gi|700199598|gb|KGN54756.1| (hypothetical protein Csa_4G454150 [Cucumis sativus]) HSP 1 Score: 614.4 bits (1583), Expect = 1.9e-172 Identity = 304/304 (100.00%), Postives = 304/304 (100.00%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. NCBI nr
Match: gi|700199599|gb|KGN54757.1| (hypothetical protein Csa_4G454650 [Cucumis sativus]) HSP 1 Score: 386.7 bits (992), Expect = 6.6e-104 Identity = 188/189 (99.47%), Postives = 188/189 (99.47%), Query Frame = 1
BLAST of Cucsa.170130.1 vs. NCBI nr
Match: gi|659082870|ref|XP_008442075.1| (PREDICTED: serine/threonine-protein kinase SRK2B-like isoform X3 [Cucumis melo]) HSP 1 Score: 283.5 bits (724), Expect = 7.8e-73 Identity = 133/174 (76.44%), Postives = 150/174 (86.21%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of cucumber (Gy14)
Date Performed: 2017-01-17
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