Chy9G164970.1 (mRNA) Cucumber (hystrix) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGTTGTTTGTTAAGAATCACAAGAATCAGTATCTTTGTGAAAATTTCAAAGGCCTTTCTTTTGGATATCACTTTTTGGCCTACAAGGGTATTTTTGCCCTTTCGTATCATTTTGTATGAAATGAAAGTAGATTCTTAATTGTTAATTTTTTTTTTTAGAAAATATCAGTTTAAAATTTTTATTATGTTTTACGTGCATATACTTATAAAAGTTGAAAGTTTAAATTAATCCGTTTATAAAAGTTCAAATTCTAACTGAATTTATAAAATTGCCAAATATTATACTTATATTCGAAAAAACAATTAACGATTAACTCAATTATTAGAAAGACTCTATTATTCTATGAGTCATTGATAACTGGTTTAGCGAACTATTGAGACTCATTCCCATGGCTACAAAACTCACTTCTAAAATTGAGACAGAAAATGAAAGAGAAGTGAAAGTTGAGGTTTAGTTATCTCGAAAGTCGGCTTAAAACAAGGGTTTGGTGGTTAAAGACTCTTGTCACGTTAGGAGAAAGACGAGACCATAGTGTGGTAAACAAAGGCTAGTTCACTTCCCAAATCAAATGCTAACTAAGGACCCCTTTGTTAACATTTTCGTTTCATGTTTTCTGTTTCTTGTTTTTTTTTTCTTATTCCTTGTTTTTTTTTTAAATCAAGAAACATGAATGTGTTTGGTAACTGTTTCTGCTTCTTGTTTCTTGGAAAAAAAGATATATAAACATAAAATATGTTTGATAACTATTTCTTATTTCCTTATTTTCTTTGAGATTTATTTTTTATTTTATTCACAGTTAATTCAATTAAACATTACACCACTTACTTTATCAAACCTAGATATGAAGGTCTTCTAGTAATCTTATGAAGATCAAGATGAAGATTGAGATCTGAAGGGCAGAACCGACAATAAGGAAGACAAAAACCCACGATGAAGAGTAGGACTGAAATCCACGACGAAGAGGAAGACAAAGACCCATGATGAAAACACAGATATGGCAAAAATTCACATATTCGAATAAAACTCAGATTTGTGCAAAGAAGAAGAGGAAAACTCAGATCCAGCGAAGAGGAAAACGTTGTGTAGAGGATGACGATGAGAGACAAGGAGGAAGATGACGAAGACAATGAGAGGAAGAGGAAGACGATGGTTATTTGTGGAAGACGATGAAGATAAGAGGAAGGAAAAAGAAAATCACGTGGAGAGTGGTTATTTGGGAAAGAAGATGGAAATAAGTGAAAGAAAAAGGAAATCACGTGGGAAAATGGAAAAGGAAAAGGAAATAGAAAAATAATTGAGAAAAAGGAAAAGGAAACCCATAAAAATAATTGAGAAAAATGAAAAGAAAACCAATAAAAATAATCGAGAAACGGAACAGAAGAAACTATTTTTTTTCTCCAATAATTCCTTATAAAATGGGAAACGTTTCTTATTTTTTTTAGAACGAGAAATAGAAAACATTACCAAGCACCTCTGTTTCTTAGAAAATGAAAATAGAAACAGAAAACAGGAAAATAGAATGTTACCAAAGGGGCTTTAAAAGACCGACCCTGCCAAATTATTAGTTCATTTCTCACATTCATTCACGTTGGTCCAACAAAATAGGGTCTAGTTTGATACAACTATTAGTTTGAAGTCTAAATAAGTTTAAATTGATACAATTCTTAGTTTAAGGTTTAAATTGATACGATCCCAAAATTGAAGGTTGAAATTGATATTTGTCCTCTTATTATCATTATTTTTATGTGGGAAATTGAAGTTCTAGCTTCGAGTTTTGATGTGTACAAGCAGTATCGAGCAATTTTCAAAGAATAATCTTCTTTTAATATGTGTTTTTATTTTGGCTAAAAAACGATTTAGGTGCCTAAATTTTTAGGAAATTAACAATTTAATTTTTGAACTTTGATTTGCCTAATAATTGTTAATCTCTTAACTTTAGTATGTAACAATTTCATATGTGTACTTTTCAAATTCTTTACGATTTAGTTCAAAAATCATCAACATTATATGTCCATTTTTATTATTTTATGAAGTGAACTTCGTATTTAGTAGAAATATTAAGTCTTTAATTAGTTTATTTAGGTAAATTTATTTATTAAATTAAAGATTAAATCCAAAAAATCTTATTAAATTAAAGACTAAATTCTTATAAATTTTAAATTAAAGTATAAAAATAAAATGGTTGCCTATTAAAGTTTTAAGTTTCACGTACGAAAGTTTAAAAACTAAAACTTATTTAATTGTATTTTTATGTTCACTATCTCTATTTTCTTTTCATTTACTTATAAAAATGTTTTTTGATGGATTATTGAAGCAACTTTTGATGTTGCATTTGTCAGGTTGTTATATTGATAGATTCCACTTTATCATTTTATCTTTTTGTTTGAGTTATTTGCCACACTAATTATACTATGTATTGACTCTAATTAATTATGTAATGAGTTGATTTCGAAAGCTTTTTTTAATTTTGTTCTATATATGTCATTGTCATTTACAAAGTTAATATTAGTTATCTATAAATAAATTAAAATTTATGTGTTTTAAAAATATTACACATAATCTTCAACAATCTAAACTCCTATGCATCTCAAATACAAGTTTTCTTATTGTAAAAAATTACATATAAATCTTCTTAATTTATTCATCTACCCTACATTTCTAAACTTTAAACCATACTCCTAGAGAGTCTAAAAATATTAGACGCAACTTTGCAAATCAAATTTATAATTTTAATCAAATCCAAGAAAGAATATTGTTTTTGCGTTCACTTTGAAGTCGTTTAACCCTCAGATTATGAAAGAGTTTTTAGTCAACTCCATATTTGCTCCAACGATTATCATAATTCTAGGATTAAGACTATTATACTTTTTTTTTTCTTATTTCTCCTATTCCTCACTTCCCCCTTTCATTATTCATTATCCTCATCTCTTTTATATATCATTATTCCTCACTCTCCCATTTTACTATTCCTCATTTCTCCAAACATAGATTATAATAACTCAAACTATAATAATTTGCACTTCAAACACAAACTATAATAACCTACAACCTATTATAATCCACACACTATAATAACCACATTTGATGTTACGTCAATAGTTTAGGTTGAAAACATTTCACTTCTTATAGTGTTTAAAATATTCAAAATTATTTTTATTGGTCAAAATGCTGCTTCCTATACATATATTTTTAAAAAAGATCTCACTATTGTAGTTTTTTCATATAGAAGAATATATAGATAATTCATTAGTTTTTAAATCTTTACATAGTCAAATTGAGAACGGTAGTTGTGATAGATTTATAAACATTTAGTTGATTTTGGAGCTTTATAGTTCAGTAAAAAATAATTTAAAAGAAAAATATAAGCTAAAAAACAATTTTCTATTAGAATAACTATTATTTTTTGTATTTATATTTAGTTATATATATTAATATAAATATCATAAAGTTGAGTAGGAGAGGTTTGTTGTGAATGCTAGTGCCTAATTATTATTATTATTCTGTTTTACTTTAGTACTTAGCCTTCAATTTGAGCCATTCAAAAATTAACACTTCCTGAATATTCAATACTCAATAGTCCATACCATTATTCATTATGAGCGATAAACACTTTCCTTCACCTATTTTAATCAATAACGTGTTAACATAAGTTAAACATTTTAACGCACTGGATTTTCAAATATAGAAAAATGAACTAAAATATTTATAAAATATAAAACAATTTTAGGAAAGTCTATCGAAACTATCATGAATATAATCTGAAAATTTTGTTATATTTTGTAAATATTTTCAACAATTCTACAATTTATAATAATTTTTCAAATATTGATGTGAAGCAAAACCAAACAAGGATAAGAAATTATATTATTGAATAACAATTTAGTTCATAAATTATAGTTTGTGATAATTTATTCCACGTGCTATCAAAGTTTAACAACTAGCTAAAGTATACAATTTTTGTCTCGATACTTTTCAAACTATAACAATTTAGTTCTTAATAGGATAAAATTTCAAATAAATTTATAAATTATAAACAAACTTGATCTATAATTAATTTATCAATTTACATATATAATTTTTTCAAATATTATTGATTATTTTTGTAAAAAGAAGGTAAATAAAAAGTCAAATTAATCTAAATGGTAAATGTGTTGAAAAAATTTACAAATATAGCAAAATGTTAGATTTTATATAGATAAAAATATATTTTTATCAATTTCTATCAATGTTATAGACAGATATTGATAAAAGTCCATCAACATAAATCATTAGTCGTTAATGTTATTTGAAATAGTATAAATATATAATAAACATATGGGAAATTTAATGGGTATCAATTTTTTTTGAATAATTATTAAGTATGTAGTAATATTTTAAAAAAATTGTAAATATAGTAAAGTCTATCACTCCACTAATGGACTTTATCGCGGATAGATTGTTATAGTTTATTAGTAATAGACCATACTACATATTCTACCAAACATAAACTCATAATAGATTTCGACTTAATTATTTTAATCTAACTCTATTGATAGCTAATTCTAAATATACTTGAAAGAGAAAGAAATGAGTGGTCCAAAAGTTTGACTACAAAATATCAATAAACTACCTGGCAGTGGCATTAACGTAATTTTAAATGTTGAACCATGAACGTTTGTGTAATTACACAAATCGCAAACACAGCGACGGCCGTGCTTCAGTCCGCTTTCTTGATTCTGTATTCTCGTCTCCAAACAACCCCCCTTCCATCCCAACTGTGGTTCGGCGGTAGGATGGACTTTGCCGACGAGCTCACGGCCGGAGCCACCGCCTCCATTTCCAACCCCCACAAGCCCTCCGATACCAGAGACAGCGGCGAGCTCTCATCCTCCGACAACGATACCGAAGATGTATGTTCTTCATTCTCCTCCTTTCTTCTTCTTTTTTTTTTTTTGCTTTACATTCTTAAATTTCTTGCATCTCATTCCTATTCTCTGCTTCCTATCCTCTCGAACGCAAAGCTCATAGCACTGCCTTTTTTCTTGCTCTGGTTTTTACGGAAACGGAAGCTTCCTGAGCTAGATACGTTGCTCAAGTGGTGCACTATGTGTGTGTTTAGCTCAATTCTCGTTGCTTGTTTTGTTTCTGTTTTTCTTTTTTTATCGGAGTGGAATTGCGAGAAGCTGCTGTACGTAGAAGAAGTAACCGATTTCCATTTTCGAACATTTATATCGATGCAGTAGATTTTATTATGCTATATAACGGTAGGGTTTAAGATATTTAGAGTCGATTGTATTCAATCGATATACGTTTTAATTATCTTCACTCAACTGTGATTCAAAATTGTCGGCATTTGTGAATAATTGCTATTTCTGGTAATCAGGATCGGCATATTATTCTTCTTCGTTTTTGAGAATTGTAGTTCCCATTGTTCATTAGGTTCTGCTGTAATCATGCTTTTAATATTTTCAGTCTAGTACGGCTTACGTGCTATATTTACTCCAGGTACATCCTGTTTTTTCAAACATGCCTGCTTCACTTGCACCGCCAATGTCTCCCATTCTTCCTCTGCAAAGTAAATGTAATGTAGCGATTCAGGCTGGTAAGTATTTCTGAGATTTAGTGGAGAGCAATTAGCTCCTTTTATTATCTTTGGGCATAAAGTCTTAAATATTCAAATTTTTTGAAACTTGAACTGATTATAATCTTCTTACTAACAATTTCTCTTTCAGTTAATGTTGTTATTTCTGTCATGCTATTGTCCGTCACACTTGCAATGTAATTTTGTTGATTGTAGTGCTTAGACATATTATGTGAAGTTAAGAATACCTGAACGCCTGTGCATGTATGTGATGAGTATTATGGATTCAAGTTTCTAGAAAAAAAAAAAGTATTATGGATTTAAGTGTGTTGCTTATAAAATTCACTTTAGGCAGCTTAATTGTTACTGTGTATGTGATCACTTACCCTTGGGAGCATGGATCCTGCAACTCCCACTCTCTTTGAGATTTCTTTAGGATGTGGACACAGTTGCTCTAATACTTAATACTTAATATGATTGCTGCATTTGAGGTGTCCAAATTCTCAAACTCCCGCTGTATGCCATGGATTAACATTTGATGTTGGAGATCATTTTAAAGTAAATTCAGAAGAAACAATATCCACCTCTTGCAAATAAGCTTGTTCCTGGAATTTTCTTTGACCTTTGTTGACATTTGCACCTGAAAGTGAAGAAAAGTGTCCGTTTATTGATTTTTTTTCTTCAGGTTGTCAATTATGCCTAGGAAATCTTAGAACCGCCAATTGTGCCCTTGAGTCACTTTCCATTCTTTCTTAATAAAAATTTAGTTTTATCCAAAATAAAAGAAATAAATAAATTCTGTGACCTTGAGACTTTTTTTTTTCTCCTTTTACAAACTTTTTCCATCTCATTTTGGAAGTTTTCTACCTGTCATGGCATTGTGAAACTGTACATACTTCAGTGAATTATAATTTTGATGGTATTTGGTGGCTTGCTATGATATAGTGTCACATTTAAATGCCCTAATTCATTGTAGATATGGATGATAAATTGGAGACAATTCAAAATATATGTCAGAAAATTGTGGACACCACAAACTTGTACTCATTTTCTAAATTGGATGACCAGCAAGTATATTCTCTTATGAGGCTGAGGGAAATTTCTCATCGGATTGTTAATGAGCGTGATTCAAGGGTAAGTAAAAATGCTCTGGTGGAATAACAACTCTTTTGCTTTTAGGACAGGGACGTATGTTTTGTAATTAAAAGCATGTTTAATGTGTTGTAGGTGACAAGAAATGATGTGATTAGTGCTATGTGCTTTTACATCAACAGACTGGTAAGATTTGCATAGTTAATCACCGTAGGTAGATCCTCGTTAAACATTCATGAACTGACAAACTATTTTGCAGGCAGGTAAGTGCAAGGATATTGTTGACATTATGAATAAGATGTCCTATAAAGACTTGGATGACCAGCAGATGCAACAGCTATTGAGGTTGAAAGAGCTTCTTTATGGGATTGTTGATGGAGCCAAAGATGTGGAAACTGAACCTTCCCGTATTGTTGAACAGGTAGGGCTTCAAGATGCAAAATCTTCTAATGTAATACTTTTTTTTTTTTACAAAATCATGTCTATAATAATTACCAAGTTGCTATTTACATTAATAGGGCATGGTAAGTGATATCTGGACGACAGAGAGTTTGGAAGTTGAGCCAATCGATTCCTGCAATGATGACATACCACTTGGAGAGACACAAATTGTAGCGATTGAAGATGAGCAGGCAGTAGCTGAAGCTAGGCTCGAGAATCAATATTGTGACATGTCACATGTTAAACACTCTGTCAGTTGGCCTCCAAATGGTAGTTTAAACTTAGAGTGGGTTGTACAGATGATGAAAATTCTTGAACTGTCTTCAAGAAACTACTCTCCGGCAGAATTTCAACTTATAATGCCAGTTTCTGTGGTAGATGCAATACTTGATGTTGCTGCAAGTATCCTTCACAAGGAACCAAACTGCCTGGAAATTGACTGCCACGGAGAAGTTTCAAAAGTGGTTATAGTTGGGGACATTCATGGACATTATCTTGACTTACTTCATCTATTCGAACTTGCTAATTTGCCATCTGAAAGCCAGTATTACATTTTTAATGGTAATTATGTGGACAGAGGAGCATGGGGACTCGAGGTGTTTTTGGTTTTATTGGCGTGGAAGGTAAGATGAAGTTGTTTTACTTGTTATTGAATATATTATGTATAGGAGGCCAAAAGGGGATAACAAGCATGCATAACAAATTCTGAATGAGTCAATTTGTGCAATCCTTACCTGTGAGAAGAAAAAACAGTTAAATAAGTATTGCTTTTAAACCATTGATGTATATTGCCCTTATGTAGAGCACACACAAATATGAGTATCACTGCTTTTTCTCCTTTTTTCTTCACATAACTGCACCCTTGAATATACAGAAAAAAAAAAGTGGTGCTCTGTGAGCAGGAATTGGATGTTTAGGATTTAGAGAAGGTAGCATTAATTACTTTATTTTTGTTCTGGAAAATGTATACCTTTTTGACACCTTAATGCCTCATTTATTGATGAGGCATGCAAAACAGATCTTGATGCCTGATAGAGTATATCTGCTCCGTGGAAATCATGAAACGAGAATTTGTACATCATCCTACGGTTTTGAGAAAGAAGTAAGGACAAAATATGGCGAGCAAGGTGATAAAGTATATTACAGGTGCTTGGAAACATTTAAGGAACTTCCTTTGGCTGCAATTATTGCTGGAAAAGTATATACAACACATGGAGGGTTATTTCGTAAGCCATGCAATCCTGATCTGCAGAATGACAAGGAGATGAAGACACGAAAGCTAGAGATTGGATCCCTGCAAGATTTATCTAAGCTTGAAAGGTTTTTCGTTGATATTCCAACTAAAGACGAAGATCCAAATATAATCTTGGCAGATGTATTGTGGTCAGATCCTTCTAAGGTAGATGGTTTAAGGGAAAATCAAGCCAGAGGAGCAGGTCTATTATGGGGTCCTGATTTTACAGAAGCATTCTTAAAGCTATCCAATTTAAAGGTTATACTCAAACCTGTGATTTATTTAACATTTTTGTTTGTGGAAAAAGCTTGTGACCTGCATTTGTGGTAAATTCAGGCCATTTTACCTTGGACATTTTCAAGGTTCTATGAGTTCATTTTGAGTATGCAGATCAAAAGTTATTTCTTCTCCATCTTTCCATCCTTTCATTTACATTTATCATGTGTAATTACAGAATTTTTTGAAAATATATATACCAATTCGGTCAGAAAGGGAAAGAATCGAACTTTGTTCCTTATGAATTGTGTTTGAGAACCAACTTTAGGGGTTATGATACCAAGCTAACAGGTTTATTATTTTTCTTTTGATTGTAAATGTTGTAGTTGATCATTAGGTCACATGAAGGCCCAGATTCAAGGGATGGTAAGATAGATTTTGATGATATGATAATGGGTTATAGCACAGATCACGACATGGAATCAGGGAAATTATATACTCTATTTAGCGCTCCAGATTTCCCTCAGGTACCCACTCCTTGCCTCATGCTTCCATTTATATTGTCATTAAATCATATTTTAGACTCATTGTAACGTGCTTGTAGTCACATATAACTGCACCATGTGTGAACCATAAGTTGAATACATTCTGAAAATTGAGAATTAGGAAAAACTTAGTGATCTTTAATGTGCTTGTGGATGTATTCCTTATCATATTTCAAACAAGTCTCTCCTAGGTATTTATGGTAGACTTCCATGCATCATGGGTTGCACCTACTTTTTGCAATTCAGCCAAGGGGGACGACCACAGTTTACCATGTCGGAACCTCTCTTGCTTTCTTTTTCTTAATATGCTTGAGTTTTTTTTTTTTTGTGTGACTGGGGTGGGTAGCAAAAGAATGGCTGTAGTCCAAGATGCATATAAGTTATGTATTAAATGAGTTGTATAGTATTCGAAAGGAAAAATTATTCAAGAAGGCCACCACAAGGTGGGTAGCAATTTCGAACCTTTAGATGTGGGAGAGAAGCTCTTATTTGTCAAAGACTAAAAGTACTTCGAAGTCCAAACTTATATCTAGTAGTTCTTGGAGGATGTGCAAATTTTGAATGTACATCCCTTGGTTATTGAGAGACATCCAAATTGTGGTAGCCTCATCGAATAAATTCTCATCCCATAGCGCTGGCTGATTTTTCAGAAATCCCACACCACTAGCATCCAAAATTTTATCTGTTTTGCAGTGCGTAAAATATCCGTCTCTCTTTCCTTCTCATTTTCTATTTCATTCTTAAAATTGAATAACTTGTGTAACAGTATGATATCTCAATTTACACTCGATGGAAAATTGAATCACAGTAAATGGGTTAAAGGTTAAATTCATCTATATCATTCAAATGATTTGGGTTATGCGGGAAGTGCCAGATGAGCGTATTAATTACTTTAGAACCTAAGTATTTTAATTAAATATGATATTTATGATAAAATATTGATTGAAATAAATATTTTAGTCTAGAAAATGAATTAAGCATTTGGTAAAATATAATATAGCAAAGTTATTTCTGGAGCTGTCTGTGTAACTATAATGTGAAGTGTGAATATATGCAAATAAATCCCAGAAATTGCAATTCAGTGATCAAAATATATCAAGTACTTTCACAAAAATTTCTATAGAAATGAATGAAGTGGTCATCCTAGAAATGTCATGGGTCTTGATTCCTTAGCATTAGCATGGGGTTGTCGAACATTTAAATTTCCATCAAGAGGATGCCCATTGAGGTTTATGTTAATACTAGGGTGGTAATGGTGAAGCAACTACTGAGGAATATATGTTTCTTATAAAACATGGTGAACAACCATTGATCCATCTTTTTCGCTCCTCACATATTGAATATAAAAAGAAGAGTCATAATATGAATTTTTTTTCTTTCTTAATTTTTTCTTTAATTGTTACTTCCCAACATCTACTTTTTCCTTTTCCCACCAACTTTGTATTCTGAAAAGTCAATGTTATTGCACTTCTGTATTTGTGGTCTCATATTTTTCTTTGTATGCTAGGATGCATTTTGTGGTCGAGCAGTGGATTTGATATGAACTAAAACTTTTGATAAATTTTCGTGTTTGGATTTTATGCAGTTTGGTCAGAAGAGTTACAATAATGAGGGAGCATATGCTACTTTGAAGCATCCGGATTTTGAAACTCCATCCTTCCATACATTTAAAGCTGTAGATAAACCGAAGGTATAGGCATCTATTTTCACGTTCTTGAGGGAACAATTAGAATTTGATCGTATAAGGCAAGATCATATAGAACTCCAACTCTGATTGGGATTTAGGTTCATGAACTTCACAATACATTACTGCTGCTAGGGTAAGGGTATTATTGATCCTTCTAGATGCTTTTAAGATAGTCATCTGATTTATTGATTAGTGTGAATATTTCTTGATCAATTTGGAATTTGTTTTTGCTCCAGCATTTCTAATTCATGCTTGGTTTTGCTCACAGATAGACGTTTGCTATTTTGGTTGTGAAGGACATGATTTAGATTTAGATTTGACATTAATGGTAAGTCAGCATTATATTATTCAAAATATAAAAGCAGATTCTCTATATTACCTGAACGTGATATTACATTCACAATTACACATGCATATCTCAATGCCCATGATACCGTGTATTCTTGATGAATCTGGAGATTCATATATTTGGAGATAAGTAGATTGTATTCAGATTAGTCATTATTCAAATTTCTAATGAAATACTATGGTCATTCGGAATACTATCACCATTGTTGATGGATTATTTCTAGCACTTCAATATTGATCAATATTGAAGCCATTGACCGCCTTAAAAAGACTATAGGGTTTGGTGTTAATTGACAGCTTGTACGAGCAAATGCAAACAGTTTGGTCAAAGGATATGAAGCATCTAAACAGAGAGCTAATTCCTCTTCTGGGTCTAACATTGTAGCCAACCGATTGAGGAGACAAGAGTAAGGATATTGTTGCTGTTTTGCAGTAGGCAGTAGCCACTAAACAGTGGAAGAGGGGGTGGGGGGTGTTTGGGGAAGGAGTGGAGTTGTTAACTCTATGGAGCTAGGACGCTAGGAAGTTGGGAACTCTGGGGCCTACAGTAAAAAGAGTTAAGAAGGTATAAAATTGATATTTTTTTAATAGTGAAAGTGGAACTCCACACCATTCAACTCCATCCTTCCCAAATCCTTGGGCCAAACACCCCTTAAAAGTTTATTTGGACAATATAAACATGGAATTATCAACACCTCCAAAAATATTTTCCCCCATTAAATTGCTTGATTGAAACATTGTGGACTAACATTCTAATTGCCCAGCATGTAAACTTTGAGCTGAAGGCTAGTCAAACTTTGGTTGGCGAATATCAATATTTTTATGCCTTGGTGAAAGCTGGCGTTTGGACTTTTATATGCTTATGATACATACGTGGAAGGATTGGTCCACTCTCTATAAAATTACTTTTTGAAGTAATGATTTTAATTTGGAGCTACCATACTTTTGGAAATTCAGGGTCAATAACCCATTAGTAGTCCCTTCAGTTCTTGTAATAACATTCAGAACAATGCCTTCAATAATATCAGCTTCCATCACTTATTTTGTTTTCTGATGTCTCTTATAGGCTCTAGCTGACGCTGTCTCTTCTAACAACTCTAGTCCTATTGAGATTCATTCAGGGGTTGATTTTGAGGCATTAGGCATATTAAACCCACCTTCTTGGAGCATTACATTGACAGATGATGCTACAGGTACCCAAAATGTTCCGATTCCAAAGGCTCCCATGGTAGAAGGGCTGCCTCTGCCACCTAGCATAGAGGTGATCGTTTTTCCTAGTTGTCATTTTACAGTTTTCAAAGTATAATTGGATCTAAAACAAGGTACTACAATTTCCAAATATAGGAACCTCACAAGGCTGCTTATGAATACTTCTTGGAGCTCATTGCAGGACTGAAATTTATGCTCCAAACAACAGTTAGTGAAACATAA ATGGCGTTGTTTGTTAAGAATCACAAGAATCAGTATCTTTGTGAAAATTTCAAAGGCCTTTCTTTTGGATATCACTTTTTGGCCTACAAGGCGACGGCCGTGCTTCAGTCCGCTTTCTTGATTCTGTATTCTCGTCTCCAAACAACCCCCCTTCCATCCCAACTGTGGTTCGGCGGTAGGATGGACTTTGCCGACGAGCTCACGGCCGGAGCCACCGCCTCCATTTCCAACCCCCACAAGCCCTCCGATACCAGAGACAGCGGCGAGCTCTCATCCTCCGACAACGATACCGAAGATGTACATCCTGTTTTTTCAAACATGCCTGCTTCACTTGCACCGCCAATGTCTCCCATTCTTCCTCTGCAAAGTAAATGTAATGTAGCGATTCAGGCTGATATGGATGATAAATTGGAGACAATTCAAAATATATGTCAGAAAATTGTGGACACCACAAACTTGTACTCATTTTCTAAATTGGATGACCAGCAAGTATATTCTCTTATGAGGCTGAGGGAAATTTCTCATCGGATTGTTAATGAGCGTGATTCAAGGGTGACAAGAAATGATGTGATTAGTGCTATGTGCTTTTACATCAACAGACTGGCAGGTAAGTGCAAGGATATTGTTGACATTATGAATAAGATGTCCTATAAAGACTTGGATGACCAGCAGATGCAACAGCTATTGAGGTTGAAAGAGCTTCTTTATGGGATTGTTGATGGAGCCAAAGATGTGGAAACTGAACCTTCCCGTATTGTTGAACAGGGCATGGTAAGTGATATCTGGACGACAGAGAGTTTGGAAGTTGAGCCAATCGATTCCTGCAATGATGACATACCACTTGGAGAGACACAAATTGTAGCGATTGAAGATGAGCAGGCAGTAGCTGAAGCTAGGCTCGAGAATCAATATTGTGACATGTCACATGTTAAACACTCTGTCAGTTGGCCTCCAAATGGTAGTTTAAACTTAGAGTGGGTTGTACAGATGATGAAAATTCTTGAACTGTCTTCAAGAAACTACTCTCCGGCAGAATTTCAACTTATAATGCCAGTTTCTGTGGTAGATGCAATACTTGATGTTGCTGCAAGTATCCTTCACAAGGAACCAAACTGCCTGGAAATTGACTGCCACGGAGAAGTTTCAAAAGTGGTTATAGTTGGGGACATTCATGGACATTATCTTGACTTACTTCATCTATTCGAACTTGCTAATTTGCCATCTGAAAGCCAGTATTACATTTTTAATGGTAATTATGTGGACAGAGGAGCATGGGGACTCGAGGTGTTTTTGGTTTTATTGGCGTGGAAGATCTTGATGCCTGATAGAGTATATCTGCTCCGTGGAAATCATGAAACGAGAATTTGTACATCATCCTACGGTTTTGAGAAAGAAGTAAGGACAAAATATGGCGAGCAAGGTGATAAAGTATATTACAGGTGCTTGGAAACATTTAAGGAACTTCCTTTGGCTGCAATTATTGCTGGAAAAGTATATACAACACATGGAGGGTTATTTCGTAAGCCATGCAATCCTGATCTGCAGAATGACAAGGAGATGAAGACACGAAAGCTAGAGATTGGATCCCTGCAAGATTTATCTAAGCTTGAAAGGTTTTTCGTTGATATTCCAACTAAAGACGAAGATCCAAATATAATCTTGGCAGATGTATTGTGGTCAGATCCTTCTAAGGTAGATGGTTTAAGGGAAAATCAAGCCAGAGGAGCAGGTCTATTATGGGGTCCTGATTTTACAGAAGCATTCTTAAAGCTATCCAATTTAAAGTTGATCATTAGGTCACATGAAGGCCCAGATTCAAGGGATGGTAAGATAGATTTTGATGATATGATAATGGGTTATAGCACAGATCACGACATGGAATCAGGGAAATTATATACTCTATTTAGCGCTCCAGATTTCCCTCAGTTTGGTCAGAAGAGTTACAATAATGAGGGAGCATATGCTACTTTGAAGCATCCGGATTTTGAAACTCCATCCTTCCATACATTTAAAGCTGTAGATAAACCGAAGATAGACGTTTGCTATTTTGGTTGTGAAGGACATGATTTAGATTTAGATTTGACATTAATGGCTCTAGCTGACGCTGTCTCTTCTAACAACTCTAGTCCTATTGAGATTCATTCAGGGGTTGATTTTGAGGCATTAGGCATATTAAACCCACCTTCTTGGAGCATTACATTGACAGATGATGCTACAGGTACCCAAAATGTTCCGATTCCAAAGGCTCCCATGGTAGAAGGGCTGCCTCTGCCACCTAGCATAGAGGAACCTCACAAGGCTGCTTATGAATACTTCTTGGAGCTCATTGCAGGACTGAAATTTATGCTCCAAACAACAGTTAGTGAAACATAA ATGGCGTTGTTTGTTAAGAATCACAAGAATCAGTATCTTTGTGAAAATTTCAAAGGCCTTTCTTTTGGATATCACTTTTTGGCCTACAAGGCGACGGCCGTGCTTCAGTCCGCTTTCTTGATTCTGTATTCTCGTCTCCAAACAACCCCCCTTCCATCCCAACTGTGGTTCGGCGGTAGGATGGACTTTGCCGACGAGCTCACGGCCGGAGCCACCGCCTCCATTTCCAACCCCCACAAGCCCTCCGATACCAGAGACAGCGGCGAGCTCTCATCCTCCGACAACGATACCGAAGATGTACATCCTGTTTTTTCAAACATGCCTGCTTCACTTGCACCGCCAATGTCTCCCATTCTTCCTCTGCAAAGTAAATGTAATGTAGCGATTCAGGCTGATATGGATGATAAATTGGAGACAATTCAAAATATATGTCAGAAAATTGTGGACACCACAAACTTGTACTCATTTTCTAAATTGGATGACCAGCAAGTATATTCTCTTATGAGGCTGAGGGAAATTTCTCATCGGATTGTTAATGAGCGTGATTCAAGGGTGACAAGAAATGATGTGATTAGTGCTATGTGCTTTTACATCAACAGACTGGCAGGTAAGTGCAAGGATATTGTTGACATTATGAATAAGATGTCCTATAAAGACTTGGATGACCAGCAGATGCAACAGCTATTGAGGTTGAAAGAGCTTCTTTATGGGATTGTTGATGGAGCCAAAGATGTGGAAACTGAACCTTCCCGTATTGTTGAACAGGGCATGGTAAGTGATATCTGGACGACAGAGAGTTTGGAAGTTGAGCCAATCGATTCCTGCAATGATGACATACCACTTGGAGAGACACAAATTGTAGCGATTGAAGATGAGCAGGCAGTAGCTGAAGCTAGGCTCGAGAATCAATATTGTGACATGTCACATGTTAAACACTCTGTCAGTTGGCCTCCAAATGGTAGTTTAAACTTAGAGTGGGTTGTACAGATGATGAAAATTCTTGAACTGTCTTCAAGAAACTACTCTCCGGCAGAATTTCAACTTATAATGCCAGTTTCTGTGGTAGATGCAATACTTGATGTTGCTGCAAGTATCCTTCACAAGGAACCAAACTGCCTGGAAATTGACTGCCACGGAGAAGTTTCAAAAGTGGTTATAGTTGGGGACATTCATGGACATTATCTTGACTTACTTCATCTATTCGAACTTGCTAATTTGCCATCTGAAAGCCAGTATTACATTTTTAATGGTAATTATGTGGACAGAGGAGCATGGGGACTCGAGGTGTTTTTGGTTTTATTGGCGTGGAAGATCTTGATGCCTGATAGAGTATATCTGCTCCGTGGAAATCATGAAACGAGAATTTGTACATCATCCTACGGTTTTGAGAAAGAAGTAAGGACAAAATATGGCGAGCAAGGTGATAAAGTATATTACAGGTGCTTGGAAACATTTAAGGAACTTCCTTTGGCTGCAATTATTGCTGGAAAAGTATATACAACACATGGAGGGTTATTTCGTAAGCCATGCAATCCTGATCTGCAGAATGACAAGGAGATGAAGACACGAAAGCTAGAGATTGGATCCCTGCAAGATTTATCTAAGCTTGAAAGGTTTTTCGTTGATATTCCAACTAAAGACGAAGATCCAAATATAATCTTGGCAGATGTATTGTGGTCAGATCCTTCTAAGGTAGATGGTTTAAGGGAAAATCAAGCCAGAGGAGCAGGTCTATTATGGGGTCCTGATTTTACAGAAGCATTCTTAAAGCTATCCAATTTAAAGTTGATCATTAGGTCACATGAAGGCCCAGATTCAAGGGATGGTAAGATAGATTTTGATGATATGATAATGGGTTATAGCACAGATCACGACATGGAATCAGGGAAATTATATACTCTATTTAGCGCTCCAGATTTCCCTCAGTTTGGTCAGAAGAGTTACAATAATGAGGGAGCATATGCTACTTTGAAGCATCCGGATTTTGAAACTCCATCCTTCCATACATTTAAAGCTGTAGATAAACCGAAGATAGACGTTTGCTATTTTGGTTGTGAAGGACATGATTTAGATTTAGATTTGACATTAATGGCTCTAGCTGACGCTGTCTCTTCTAACAACTCTAGTCCTATTGAGATTCATTCAGGGGTTGATTTTGAGGCATTAGGCATATTAAACCCACCTTCTTGGAGCATTACATTGACAGATGATGCTACAGGTACCCAAAATGTTCCGATTCCAAAGGCTCCCATGGTAGAAGGGCTGCCTCTGCCACCTAGCATAGAGGAACCTCACAAGGCTGCTTATGAATACTTCTTGGAGCTCATTGCAGGACTGAAATTTATGCTCCAAACAACAGTTAGTGAAACATAA MALFVKNHKNQYLCENFKGLSFGYHFLAYKATAVLQSAFLILYSRLQTTPLPSQLWFGGRMDFADELTAGATASISNPHKPSDTRDSGELSSSDNDTEDVHPVFSNMPASLAPPMSPILPLQSKCNVAIQADMDDKLETIQNICQKIVDTTNLYSFSKLDDQQVYSLMRLREISHRIVNERDSRVTRNDVISAMCFYINRLAGKCKDIVDIMNKMSYKDLDDQQMQQLLRLKELLYGIVDGAKDVETEPSRIVEQGMVSDIWTTESLEVEPIDSCNDDIPLGETQIVAIEDEQAVAEARLENQYCDMSHVKHSVSWPPNGSLNLEWVVQMMKILELSSRNYSPAEFQLIMPVSVVDAILDVAASILHKEPNCLEIDCHGEVSKVVIVGDIHGHYLDLLHLFELANLPSESQYYIFNGNYVDRGAWGLEVFLVLLAWKILMPDRVYLLRGNHETRICTSSYGFEKEVRTKYGEQGDKVYYRCLETFKELPLAAIIAGKVYTTHGGLFRKPCNPDLQNDKEMKTRKLEIGSLQDLSKLERFFVDIPTKDEDPNIILADVLWSDPSKVDGLRENQARGAGLLWGPDFTEAFLKLSNLKLIIRSHEGPDSRDGKIDFDDMIMGYSTDHDMESGKLYTLFSAPDFPQFGQKSYNNEGAYATLKHPDFETPSFHTFKAVDKPKIDVCYFGCEGHDLDLDLTLMALADAVSSNNSSPIEIHSGVDFEALGILNPPSWSITLTDDATGTQNVPIPKAPMVEGLPLPPSIEEPHKAAYEYFLELIAGLKFMLQTTVSET* Homology
BLAST of Chy9G164970.1 vs. ExPASy Swiss-Prot
Match: Q9LEV0 (Serine/threonine-protein phosphatase 7 inactive homolog OS=Arabidopsis thaliana OX=3702 GN=At5g10900 PE=3 SV=1) HSP 1 Score: 421.4 bits (1082), Expect = 2.3e-116 Identity = 252/658 (38.30%), Postives = 372/658 (56.53%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy Swiss-Prot
Match: Q9FN02 (Serine/threonine-protein phosphatase 7 OS=Arabidopsis thaliana OX=3702 GN=PP7 PE=1 SV=1) HSP 1 Score: 401.4 bits (1030), Expect = 2.4e-110 Identity = 206/410 (50.24%), Postives = 269/410 (65.61%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy Swiss-Prot
Match: Q9LNG5 (Serine/threonine-protein phosphatase 7 long form homolog OS=Arabidopsis thaliana OX=3702 GN=MAIL3 PE=2 SV=1) HSP 1 Score: 358.2 bits (918), Expect = 2.4e-97 Identity = 187/390 (47.95%), Postives = 247/390 (63.33%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy Swiss-Prot
Match: Q84XU2 (Serine/threonine-protein phosphatase 5 OS=Arabidopsis thaliana OX=3702 GN=PAPP5 PE=1 SV=1) HSP 1 Score: 194.9 bits (494), Expect = 3.4e-48 Identity = 118/316 (37.34%), Postives = 173/316 (54.75%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy Swiss-Prot
Match: P53041 (Serine/threonine-protein phosphatase 5 OS=Homo sapiens OX=9606 GN=PPP5C PE=1 SV=1) HSP 1 Score: 192.2 bits (487), Expect = 2.2e-47 Identity = 127/361 (35.18%), Postives = 181/361 (50.14%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy TrEMBL
Match: A0A0A0KS78 (Serine/threonine-protein phosphatase OS=Cucumis sativus OX=3659 GN=Csa_5G512940 PE=3 SV=1) HSP 1 Score: 1458.0 bits (3773), Expect = 0.0e+00 Identity = 719/737 (97.56%), Postives = 728/737 (98.78%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy TrEMBL
Match: A0A5D3DHN7 (Serine/threonine-protein phosphatase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold334G00290 PE=3 SV=1) HSP 1 Score: 1417.5 bits (3668), Expect = 0.0e+00 Identity = 695/726 (95.73%), Postives = 711/726 (97.93%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy TrEMBL
Match: A0A1S3C9I1 (Serine/threonine-protein phosphatase OS=Cucumis melo OX=3656 GN=LOC103498169 PE=3 SV=1) HSP 1 Score: 1417.5 bits (3668), Expect = 0.0e+00 Identity = 695/726 (95.73%), Postives = 711/726 (97.93%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy TrEMBL
Match: A0A1S3C8H2 (Serine/threonine-protein phosphatase OS=Cucumis melo OX=3656 GN=LOC103498169 PE=3 SV=1) HSP 1 Score: 1361.7 bits (3523), Expect = 0.0e+00 Identity = 676/726 (93.11%), Postives = 691/726 (95.18%), Query Frame = 0
BLAST of Chy9G164970.1 vs. ExPASy TrEMBL
Match: A0A6J1JTX2 (Serine/threonine-protein phosphatase OS=Cucurbita maxima OX=3661 GN=LOC111487807 PE=3 SV=1) HSP 1 Score: 1332.8 bits (3448), Expect = 0.0e+00 Identity = 646/732 (88.25%), Postives = 695/732 (94.95%), Query Frame = 0
BLAST of Chy9G164970.1 vs. NCBI nr
Match: XP_004142746.1 (serine/threonine-protein phosphatase 7 [Cucumis sativus]) HSP 1 Score: 1433 bits (3710), Expect = 0.0 Identity = 709/729 (97.26%), Postives = 720/729 (98.77%), Query Frame = 0
BLAST of Chy9G164970.1 vs. NCBI nr
Match: XP_008458901.1 (PREDICTED: serine/threonine-protein phosphatase 7-like isoform X1 [Cucumis melo]) HSP 1 Score: 1412 bits (3656), Expect = 0.0 Identity = 695/729 (95.34%), Postives = 713/729 (97.81%), Query Frame = 0
BLAST of Chy9G164970.1 vs. NCBI nr
Match: KAA0042486.1 (serine/threonine-protein phosphatase 7-like isoform X1 [Cucumis melo var. makuwa] >TYK22890.1 serine/threonine-protein phosphatase 7-like isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1412 bits (3654), Expect = 0.0 Identity = 695/726 (95.73%), Postives = 711/726 (97.93%), Query Frame = 0
BLAST of Chy9G164970.1 vs. NCBI nr
Match: XP_038890000.1 (serine/threonine-protein phosphatase 7 inactive homolog isoform X1 [Benincasa hispida] >XP_038890001.1 serine/threonine-protein phosphatase 7 inactive homolog isoform X1 [Benincasa hispida]) HSP 1 Score: 1394 bits (3609), Expect = 0.0 Identity = 684/736 (92.93%), Postives = 714/736 (97.01%), Query Frame = 0
BLAST of Chy9G164970.1 vs. NCBI nr
Match: XP_008458903.1 (PREDICTED: serine/threonine-protein phosphatase 7-like isoform X2 [Cucumis melo]) HSP 1 Score: 1357 bits (3512), Expect = 0.0 Identity = 676/729 (92.73%), Postives = 693/729 (95.06%), Query Frame = 0
BLAST of Chy9G164970.1 vs. TAIR 10
Match: AT5G10900.1 (Calcineurin-like metallo-phosphoesterase superfamily protein ) HSP 1 Score: 421.4 bits (1082), Expect = 1.6e-117 Identity = 252/658 (38.30%), Postives = 372/658 (56.53%), Query Frame = 0
BLAST of Chy9G164970.1 vs. TAIR 10
Match: AT5G63870.2 (serine/threonine phosphatase 7 ) HSP 1 Score: 401.4 bits (1030), Expect = 1.7e-111 Identity = 206/410 (50.24%), Postives = 269/410 (65.61%), Query Frame = 0
BLAST of Chy9G164970.1 vs. TAIR 10
Match: AT5G63870.1 (serine/threonine phosphatase 7 ) HSP 1 Score: 401.4 bits (1030), Expect = 1.7e-111 Identity = 206/410 (50.24%), Postives = 269/410 (65.61%), Query Frame = 0
BLAST of Chy9G164970.1 vs. TAIR 10
Match: AT1G48120.1 (hydrolases;protein serine/threonine phosphatases ) HSP 1 Score: 358.2 bits (918), Expect = 1.7e-98 Identity = 187/390 (47.95%), Postives = 247/390 (63.33%), Query Frame = 0
BLAST of Chy9G164970.1 vs. TAIR 10
Match: AT5G63870.3 (serine/threonine phosphatase 7 ) HSP 1 Score: 308.1 bits (788), Expect = 2.0e-83 Identity = 152/293 (51.88%), Postives = 197/293 (67.24%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (hystrix) v1
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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