CsaV3_1G045310 (gene) Cucumber (Chinese Long) v3
Overview
Sequences
The following sequences are available for this feature:
Legend: exonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATTTCTTTTCACTATTTCATTCACATAGAAAAAATATTAAATTATTCTGATAAAACAATTTTAGCATATAAAAAATCAAAATTATGATTGAATAATTTTATGGAATAGATGAAGAAGAGATAAGTGATGTTGGAATGCATGTAAGTATTTTTTTTTTTATTGCTTTTAAAAGTTCTTTTATTACTTCTTTTTAGTCTTCTGATGTTTTGAGAAAAATAAAATAATAGTAATAAATAAATAAAAAGCATATGATAGTTAATGACTAACCCTTTGTGTTAGTTTGCTATAAATTTCGTTTATGTTTATGCAACTCAACCCAATCGTGGGTTCATCCGTATCTAAGGTGAGTGAAATCAATTTCATGTTTTTTTTTTAATTGCTTTTTTCTATCGAAAAGAAATGTAAAAGCTTCAACCATTCTTGTGTTCAATGATCTATAATTATTTATATGTTTATGCAGTGTTTGAAGTACTTACAGAAGCTAATATCAACTGCTTTTTCTTGGGCTTATAATATCTTCCATTTCAAGAGTAAGAAATCACTCTTTTTTCTTATAACTTCTATTTCCATTTAAATATAAATAAAAAAAAATGGTTTTATTTTCTAGTTCAAAAGGTTGAAGATTTGAACCCTATTTCTTGAAGAAAATTAGTCATAAACCTTCTTTCTTACGCCCTTTTCCAAGATCTTAACTTACCAAATAAGAGATTCTCCGTTTATGGGTTCATGATAATCTTCTTCAAAGAGCAATATTTAACGTGTTCATTTTGTGATCAAATCCTCATGTAAAAATCCAATATATTTGATACAATAAATATTTGGACCGAAAATTAATGTTTGTGTCAAATAATGACTTCTTAAGTCACTAACTTCTTTTCTTTCTAATAAACGATCTGTAGAGTATATATAAGTTGCAGTGCAAAATGGTGAGTAGAAAGGTGGATTTGCGGTCAGACACCGTGACGAAACCGACAGAATCAATGCGAGCTGCGATGGCGATGGCGGAGGTGGACGATGATGTGTTGGGGTACGACCCCACAGCGTTGGAGTTGGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTTCCATCAGGGACAATGGGAAATCTAATAAGTGTTCTTGTACATTGTGAAACTAGAGGGAGTGAAGTGATTGTTGGAGACAACTCTCACATTCACATATTGGAAAACGGAGGTATTGCAACCATTGGAGGAGTTCATCCAAGAACAGTGAAGAACAAAGATGATGGAACAATGGATATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAACTCTTCTTCCCAACAACAAGGCTCATTTGTTTAGAAAATACACATGCAAAGTAAGTATATTCACTAACCCCTATTGTTTTCTTACTTTCGTTTTGAAGCCTGCTAGGTAACAACCTTTGTTTTCTTCTCTTTCTTCATTTTTAAATTGACAAGATTTAGTAACATCTTTAATTCTTAACAAATTCCAAACTCCAAAAACTATCATTTTTTCTTTTTCTAATTTTCAAAGTGTGGCTTTTGTTTTCTAAAAGCATTGGTAGAAAATAAGTAGTTGAGAAAAAGAAATAGGGTGAAATAGGTTACCCAACAGGCCTAAAGTATTGTGATATTTTTTTAAATAAGAAACTATAAAACTAAAAAATATGCTATAAAATACTTATTTTTCAAGAAATAGAAATCAACATATTATTATTTGTTCTTATTTGTTCTTATTTGTTCTTTTGATCTAGTTTACAAGATACTGATATTGGGATGGTTTTTGTTGTCATTATTATTTTCTTCTTAAGAAAAAGAAATCTAATTTGACGTGCCTCTTATCTATTTAGTTATGTTTAAATTGATTGAGACATATTTATTTGTTAGTTATTTGAAATGAAGTATGAAGAAGTTGGTTTTCTTTTAAATATATTAGTCATTAGACAGTCCTATGAAATTTTAAAGGTAAATAGTTTTATTCAATTTTATTTCTTTAATTATTATTAAACTTATGTCCGAGATTTACCAAACAATTATGTGAATTTAACCATTTCTAATTCTCTTTATAAAATTATTTAAACATTTTCAACCCCATCCAAATTAAAACACATTTAATATTTATTACAAATTAACCAAATACAATAGGAACAATTTCAAATATAGCATAAAAACCAAAATATTTACAAAATATAATAAAAATTTAAAATTCTATAGATTATAAACATGAATTTGATAAAATTAAATTTCAAGTTACTAACTTTTTATCAATGAAAAAAAGAAAGAGAATAATAAAACATAAGAGGATTTATAAGAAAAAAGAAAGAAAGGTAGAAGAAGACCCAAAAAACTACAAAAGGATATGTTTTGACCAAACAGAATATTTGGAATGTCTAATCACTAATGGCAAGAAAAAGAGTGTTGTGAAATTAAATTTAGATTCAATTCTATCTTTTCAAATTTTTTAGTTGAACGAATATGTATTTAACGGGTAATTTGAATTCTGTTTTCAAAAATTGTTTTGAAATTCAGTAACTTCAATTTTAAAAACAACAGATTTTAAGTTTTCAATCCATTCACATTCTGAACTAAAAACATTTTATATATAAAAAAAATGTCAGATTATTTATGGAAATAGAAAAAAAAAAAAAAAAACTGATAGTACTAAGAGATTTGTATCCGTTTCTATCTATTACAAGTTTGTATCAATTTCTATAATTGATATGTGCTAATAGAGTTTAGGTAAAAAATGCATAAATTTTTGCTATAACTTGAAAGTAGTTGTGATTCATATTTTTATATTTAAAATACTACTGGGAGTTATATTAGAAAAGATAAAAACACTAATAAATGTATTAACGCAAAAAAATTATTAACTTTTGTATGTATATAATAAGATATAGTTTATGAGTTGAGTAATTAGTAACGAGTATATGGTGAAAAGCAGTAGCGGTGGAAAATGTCTTTCGGTAGAATATATCGATGAAGTTGGAGAGTTAGCTAAGAAGTATGACCTCAAACTTCACATCGATGGAGCTCGAATTTTCAATGCTTCAATTGTGAGTGCTCTCTATTTATATATTTCTACTCAATACTAAATTTAGTTTTCAACTCTACAAAGTAATATACTTTTTCAGGCACTTGGTGTTCCGGTTGATCGATTGGTACAAGCCGCTGATTCAATATTAGTACGTTTATATATACATTTTACTCTAAAATGTTTCGCTATCTTTATTTGCTTTTATTATTGATTTGAAATTTAGGTAGAATTTTGTTTAGAGTTAAAAGAATATGTAGCTACGTATTTTTGTTCAGCTTTATTTAAAATTAATTCAATTGTTAAATTAATTTTCGCCTTAATTTCATTTATTTTTTATTTTTTGATTAATCACATTATATATATATATACAATTAATTTAACTACTTTTAAAGTTTCTAATTTTTTACTTTTGAGGTGATAATTTTTTTTATCAATATAGTCTATTTGATGGAATTTCGTCCATTTATATATTTTATGGGATTATTGTTTCAAATATTGGAGTGATAACATTTTTTAAGAAACTTATTTTTCTAAATGAATTTTATTTAAATAATAATTTTAATTCAAGATATAAAATTTGTCCATGGTTGTTGTGAAGTGTAAACATTTATCATACACAAATGACTTTTTAACTCCGTTTTGACAAACTTTTATTTAAAATTTGTTTACTTTCTTTTCTATCGCATTGTAAAAAAGATTGATGACGACTTCCAATTTTTTATTGTTTTTTAAAATTAACTCATTTTGAGGATGTTAACGGCTTTGCGTCGTCTCGAACACATGACGACCATATTTTTTAATTCAAATAAGTTACACACAAACATTAAAACATTTTAAAGGTTAGAAGTTATATATTAGTTGATGAATAGTTGACAAAGCTTGTTGATGATTTAGGTAGGAATTTAATTGTTGCAGGTATTTGATTTTAGTGTGAAGTTATGAATCTAACAATTCTATATATAGGATTGTTATTTTGTATTAAAAAGCAACCAATTGTTAAGAAGATATATAAAAAGAGAGTTATTTTGAAGAGTTTTCCAAATAAGTGTCTTGTTCTTTTTAACCCTAATAAATTATTAACCTTATATCTTTGACTCATTAGGTATGTCTATCAAAAGGTTTGGGTGCACCTGTTGGATCAATCATTGTGGGTTCAAAAGACTTTATTGCCAAGGTAGTAATTTGAGTTTTTATTTTTTATTTTTATGATATTGGAATTGATATTTCTAACATTGAAACTTTGTAAACACATCATATGAATTTGAAACTCTCTTAAGATAGTTTGGAAACCTAGGTTTATTATATTTGGAATTCTTTCCATTGAGAAATCTAGGACATTCTTTATGAGAAGATAACGTTAATATGAAGAATTATGTTAGCACGAAAGCTATTGACAAAGTAAATAATATAAACAATAATAAGTAAAGTCAAAACACAACCAAGTTGATAATCCAGTTTGATGTAATCACACCTACATTTGGAGGATCTTAAGGTCAATTGAAAAGTTCATTTACTGAGATTTTGTATTATATAGCTTTTGCAAGATAAATGTTTAGGCTCCTTTAAAATACTTGAAGTGTGAATAACGGATTCAATCTAAGCTCCCCTTAGATCATATGATTCGTGTTTAACCCTTGCATCTCGATATCCAGGCTCCTTTTGAGAGAGACTCCTCAAAAAAAAAAAAAAAAAATTGAACGTTAGGCTCCTCTCTAACGTATACAAACCTTCTCAATCTAGTGAATCATGAAGTCTGCAGTGACAAGGTTTTCAACACCATATCCCACACCCCACAGGCTATATCCAAGGTCAAAGACAAAAGGTACTCACCATGCACATAAATAATGCTTCAAGGAGAAATCTTCGGTCAAAAAATGGACGAGGCTATATCCAAGGTCAAAGACAAAAGGTAATAAAAATCTTCCAATCAATGACATAGGAAAGGATTTTTATTTTGTCTCAATCGAAGGCCATAATAAAACCACAATTGCCATAAACTTTCCCACAACCAAAAAAAGGAAAGATCACCAAAAATATATGAGGCAAAAAATAAAAATACATTTGCAAGCCAAAACACTTAACAAACTCCATCTTTTGACAAACAACATTTCTCTTTTTATTTTTCCTTGGCAAACAAGCTAAACAACCAACAAACCATAGGGATAACAAACAACCACAAAACAATGAACACATCAGCCAACAACACTAACAACCAACAAAACAGCCAGCAATAGCCTACAACCTCAACAAAGCTTGCAATCAACCTACAACAAAGATCTCCCCCTTTGCTTGCCATAGAAAATATTAGCCAGTGGATGGAGGAGGATTTTGAGACGAGGAGGCAAGAAAACACTATAAGTGTGGATCAAGGCATTAAAAGTAGAACACCTATTCGGAAGAGTGTGAAAACACCACTCAAGGTTCGTGACTCTATAGATTACACATGAAGGATATGATTGATCAAGGTAGGAGGCAACAGTGACTCACCATGAGGAGTGCACAAGTCATTAGGAAGGGTAAACTCTTCATCACACAGATGACTAATAGTGTGTGCAGTATCAGGAACATAAGACATTTGAAACATCGCCTATAACTCAGATGAATAGTCTTAGGGGCAGGGCCAGGAGCATCCTGATCAATTAAGATGGATGAATGCTGATAAAGCATAATACTACTAAGTTTCACAAAAGTTGAGAAGACACTGAAGGCATAAAGTGGAGTGGTACCAATTCACAATGTCAATCTTGTGAAGAATGGCATATTTCACACTAAGTGAGACATCAAACATTGGCCATTTAGGGGCCATTTAGTAGCAGTTTCCTCCAATCAATTCAAATGCTAAAACTCATAGGATGGATGCACAACAGAGAAACTAGCCAAAATCTCAACACCAAGAAACTAATTTATAATAGCAGATGTCACAATGAAGCATAAGCCAGAAACATGAATCTTTCAGTACTTAGGGCCAATTGGATCATCAAACTTCATAGTTAGATTGTCAATAAATTCATGATCAAGCACAAATAAAATGGACCAACTTGAGACACAGTCTTTGTCATACCAGTTTGGTCAGTTAACACCATAATAGGAAGACAAGAGCGATGCTTATTAGAAATGTTGACCTCATCAGAAATTTTACGTTTGGACTACATACTTCCCTTTTCAAACAGTTTCTTCATAATGAAATGATACCCATCAATGGGGGCAAATGGGACATTGGAAAGAATTTCGTGGTGGTCAACTTTAGTGGTTATGATTTTGGGACCTTTGGAAGGACCCGTACAAGTATGTTTGCTTTTTGTAGTCTTCTTAGCATGACTAGGATCTGAGCACCAAAAGAAACAGTAGGGTACTCACGAGCTCGCTTGGACCGTCTGACCAAGTGAGCCAAAACAACATTATCCTTAAAGAAATAATTGGGTGCAACATCATTTAGAGGCTCCAAAGGATCAGTTGATGTTGTAGTTACAGAGGCAAATGTATCCACACTAGCAGAGGGATTAGTATCACTTGTGAAATCAACAGAAGTTTCAAAAAACGAGATAAAAAAAATTCACAGACTCAATTTAGTTAGCAATGTTAGCATTAATGTCATTAACATTACATTATTCTCAGAAACAATATCTTCAATAACAGAATTCACTGTCTCTAACATTCGACAAAACAGGGTAATCAAAAGGGGCGATTGAGGCATTGTTCATAATAATCATAGAGATAGATGGAGGCATAGTATTTTTGACATTTTCATTAGCACCAAATACATGATCAGGGCTAGCAGAGGAATTGACAGAGGGTGCATGCAAGATATTTTCATCGATAGTAGGATTGGGATGAGAAATACCTTAATCGGGAATAGTAGAACTAAACAATCGAGAGGAACCCACATTTTGCCACTTGGAGGAAGACGAAGAATGTCCCTGCATTCGGAACCTACTAGAGATAGTCCTTGCAATAGAGACACTAGAACTAACTTTGGATTCAGATCGATCCTTTAGTTGACAGGGCTAGTAAGTTCCTCTTCTTGTTGCTACCATGATGAAGTTGGAAGGAATGGAAAGATGGAGATAATCACGAAACCACACCAATAACTTATAGTGAAGATGACACTCTAGAACACACATGAGAAAGTAAATTGAATAAGAGTAATATACTAGAAGAGAAAACGACGCCCACTTTGTATTATAAATTGAAATAGAGGAAAATATGATAAATAAATGAGCTTCAATCATAGACATAGAATCACAATAGTCAGCCCACAGGCACACACAATATTCATAAGACAATTAGGGAAACTTTGCCATACAAGATCGAGTATCAATTGCTATAAATTTACTTTGCAAATTTCCAAACTTGCCCAAAAAACTCAAAGGTAGCAGCATCTGCAGGTTTTGTTAAAATGTCAGCAAGCTGAATTGTAGTTCTAATATGCTCCATAAAGATGATTTTATTCTCCAAAAGGTCTCGTATAAATGATATGTATATAAATGTGCTTTGTTCTTATGTGTTGAACTGAATTCTTGGAGATGTTAGTGTGGCACTCATTTAGAGCAAATGAGCACAACTATTTCTAGTTGTTATATACTCAGCTTCAACAATTAACAAGGATAGACTATTCCATTTCTTACTAAACCAAGACATTTTAGCTTATTCTCCAAAAAGAATCATAATTCTAAAGTACTTTTATTTTTTATCTTTCGAGCATCCAGACCAGTTAGCATCACAATATCCCATTACAGATGAATTAGTATCACAGGAATACCATAGGCCATACTTAGTAGTACCATGCCCATATTTCAGAATTCCCTTGACTGAAGCAAGATGTCATGCACCCACCCATAACACATCCTACGCAATACAAGCGTCGTTGTGACTTGGGGCAACTTTAACACCTTAAAATGAAATGTTAGAACGCCGACCTTACAACTTAAACTTTATTTATTGAGAACATGCTATGCGATAAGAACTCAACATTTCAATGCTTGAATATAACTTAACAACTTTTATTAACTTGATTAGAGTTTTTTATATTAATCTTAAACCAGATTATTCATCAACTCATATTGTCAACTCTTTCTTTGTAACTTACACATGTAGGTTTAACATTTCTTCTAATTATGCTTAACTTTATCCCAAGATATAACTTGCTAACTAATCTAGATTAATGTGTCCTCTTAGCTTTCCCACGTTCCTTTCTTTGCCTAGCTAAAAAGTTCATCTTTCTTCCTTGCGTTGTCTAGCTAGCTAGAATACATAACTACTCCTTCCTCTAGCTAAACATTCCTTCAAATGCCTAATAACTATACTTAGTACTTACAACCTCCTTCACAACTGTTTTATTTCAGAATGCTTGTAGCACACAAGAGTGCATTTAGTGAACAAAGTTGTCAACCATGGATTGAGGAGATCATCAAAAAAATGATATCATCCACATAAATTTGTGCTATCAAGAACTTTTCACTTGATTTCTTAATGAAAATGATTTTGTCAACCCCACCACGAGAGTACCCTTTAAGAGTTAGAAACTCGACAAGATAATCATACTAACCTCTAAGTGCTTGCTTGAGACCATAAAGAGCCTTCCGGAGTTTGTACACATATTTTTTAGGATATGCTAGGTCAATGAATTCCTTGGGTTTAACAACAAAAACTTCCTTATTCAAGTACCCATTCAAAAAGGTAAATTTTACATCCATTTGGAACATCAAATGTTAGTTCAAATGTACATAACAACTCATCCATCTTCATGGTGGCAATATCATTCGCTTCTTCAATAGTTGTTATCTTCAACGACAAAGCGTTTTGACATAGAACGAAACACCTTTCTAGTTAATTTCTCTTCAGATAATTGTCACCAAGCACAAATGACTCATTTGCAATGTTAAAGACATGAACATTATAGTCGACAATAGTTTAATCATCCATCATCTTAAGAGATTCAAACTACGTAAAAATTTGAAAATATGAGACATTTTTACTTTGAACATACCTTCATAAACAACATGTAAAATTCCTTGTGCTTCTTCGGCAAACATACATGTATTTATTAGTTTGAAGACATTCCCAAATATCCCTTATCTTTAGCTTCCGAACCAGTCTTTCAGTGGTTTAGAGGACTCTTTTTCTTCAACATCAGTGACAGAAGGGTGAGTCTAGCCTGAGATAATTGCTTTCTAGGTCTTGCTGTCAATCCTTTTGGCCTTCCAATATGCATAGTTTGAACCATCTACCATAGAAGGTCTAATTGTTGATCCACCTAATTCTCTGATTAAATCCATAGCCAAACACTTGTAATCCACTCTAATACCAATTAAAAAAACATAATGTTAACCTAGAGAATTATGTTAGGACCAAAGCTATTGACAAAGTAAATAGCATAAGCAACAATAATTAAAGACATAGCACAATCAAGTTAGTAACGCAATTTGGTGTAATCATACCAACAACTGGAATACCTTAAACTGGATTGAAAAGATCATTTACTAAGATTATTCAAAAGGTTCACAAGTACATAAGTTATCAAGAATTAACTATCTTGTATTGCTAACTTTCACAAGATAAATATTTAGGTTCTTCGTAAACTACTTGAAGTGTGAACAATGGGATTCGATCTAAGCTCCATGTTCCAACCTGGGCCTAACCCTATCTTCTTTTCCTAGCCTCGATGTTGGCAACAACACTAATGTCAAGCCCTACCTCCTACCTCAACCTTTTCATTGTTTCCTTCTCCTTATCATCCTTCTTTACTCACCAACACCTCAAGTATGTATTTGTCCTCAAATTTTCGATGTAATACCTAGAATTTGACATTTTGGATTCAACACCTAATGATCTAGACGTTCTTGTATATCTCATGCGACCTGATTACGTCATCCTTACTTGTCTTGAATGCTTCTCAAAGATTTTTGTCTTCCTAATTTACATGACAAACAAACGTTTTTCATTTCCTCGTGTGCATTCCATTTTGGAAAATATTTTACATGTATACAAGGAGAGAGACAAGATGATGAAGAGGATAAGTGAGACTTCTTAATGTTGAGAATTACTGCTTAAACACCCTCCATAAGTAAATTAACGATTTCTATTAATTAAGAGGTGAAAATCATAGTATTTTCCAAATGTTGCTCAGTTTTATGAAAACAAACTAGAGATTAATATGACACAATCGTCAAATCTTGATCGTAAAACTATAATTTGCTCAAACAACTTTGACTACATCACAATTGATGTTGATTTAACTGAACTTGCACTATAGGGTCTTTTTTTTCTACTTTTTTAAACAACCCTTTATTATGCAAATTTTGTGTTGAAATGGTGTGTTTAATATATAATAGGCAAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGGATCCTTTGTGCAGCTGGACTTGTTGCTATCAAAGAGAATGTTCAAAAACTTGAAGCTGATCATAAGAAGGCTAAGCAACTAGCTAGTAATTAACATCACTCTTTCACTATAATTCTTATCAACATTACCAATTACTATACTGATCCTCTTTTTTTAATATTTTTCTTGGGATTAATATAGGTGGGTTATTCCAAATCAAAGGATTAAAGATTGATCCAAAATCAGTTGAGACAAACATTGTAAGTATCTCTAAACAATAATTGAAAATTGTAGTGATTTTTATCATCTTTGTGTTTGAATTGATTTTTTTGTTTCTTTTGATTAAAAGGGTTTAAAAATAGATATTTAAAACTTATGTTTGATTTTAATGTCAATATTTTGTACAGTTAATATGAACCGAACTTATATAGATAAAAGATTATTCGCTCTCTCGATATTTAAGGAGTGCGTTCAAAACTCTTGAGATGCATTCAATATAGAGTAAACGAATGCGTGAGAATCTCAAGATGCTATATTATCTTACATTACGACAATACAAAAACAGTAAACGAATACTTACTCAATGAGAATTTAGTGATATTCATCAAACAATCTTCCCCTAATAGATTACAAAATGAACTATTTACTTAATTGTCTAGACCAAAACTTCAAAATTTATCAATGTTAGGTCCAAAACTTTCAAAAGTGTTAAATGAATCTCTAAACTTTTTAGGTTGGGTTTCGTTGAGCATGAACCGTGTCGATATTGTATCTAATAACTTCTTAAAAGATTTAAAATTCTTCTAAATTAATTCAATCTCTTTTAGATAAAAAATAAATTTTGTGTTTAACGTCGGAGAACTTTCAATTTTGTGTTAAAGAAATGTTTTGATTATAAAATATTAAAGCTCATACATAAGGGATGCTCATGAATATAACAATTAGATTCAAAATATACATATATGACAATATTTTTAAAAAAGTTGCAAATATAGCAAAATATGTCAAAAAGTCTATTAATGATTGAAGTTTATCAACTATAGAAGTCTACATTGACAGACTTTGCAATATTTGCATTTTTTTAAAAACGTTGTTGTACACTTAATTATTATTCTTAAAATTGCTACACCAATTATAATCATCCCATAAACAAATGTGTAAGTTTGAGTACAAATCTCAACGTTTAGAAAAAAACGAATTGTAAACTATAGTAAATAAAATTACATATAGTTAGATCAAAGTTAATTTTCATAAATATAACAAAACATCAAAATATTTACAGTCCATGTATAAAAAACAAAAAACCCTTGACCGGACTTTTTTTTAAAATATTTCATATTTTCCATATTTTTTTTTTCTCTTCTTCTTCTAATTTTTCTTTTCCTCTCCATCATTTTTCTTATCTTCTTCCACAAATTTTGTTTCATATTTTTTTTTAAATCATGATATTTTTTCAAAGTATTTTTTGGTTCAAGATTGTATATCAAATATAAAAGATCTCGAAAAAAATTCGATGAAATATTGGTATACGATCGTTTAGATTTTCGTGCACCAAAAAATCTTTAAAATATTGTTTAGATTTGAAACGGTTGCGTAGCCAAGGTTTAATCACTTGGTGTGAGACATTTTTATGAAAGGTATTCATATGTTGGTGAGTTTTATTTTAATACTTAAATTACAAAATTAAAAAAAATATTTCTTTATTATTATTATTATTATTTTGAAATTATTTATAGTTATTTAGTTTGTCATATATTATCAGATATTGTTTGAAATAGAAGACGATTACGGAATCTCAATGGAAACATTATGTAAAAGCTTGGAAGAACGTGGCATTTTTGTGATGCTACAAACCCAAACAAGGTCTATTCTCAAATTAAAATTCTACTTTTCATTATATATTATTCTTTTTCGTCAAATGTTTGATTAGGAAACATTTTTAATATTTTTTTAAACCATAAAGGTAGAACAAAATCTCACTTATTTCTTATAGCATATATTTTTCACTTGCACGTTTATACGCTAAAATCTCATTTTTCTCGATTCTTAAAGGTGTTATTCTTTGAAAAGTATGAAAGAACATTTTATCTTAGAGCTATTTTTAAAAATACTATTTATGTGTTTTTACTAATTACAATTTATATTAAAAAATATGAACAAATATATACAATATATAAGATTCTAAAAAAAATCAATTAACTTTATGAATTGTTTTTAAATATAACAACGTGAATCAAAATATTTATAAATATAACAAAATATTATAGCCTTTTTCTAATTTGTTATACTTTTTTACATTTATAATAGCTTCAACAATTATGTTAAAATATTTTTTATTTTTTCGTTAATTTAAAATTTTAGACTAAAAAACCAAACAAAATTGCCAAAATAACACATTTTATATTTTTCTTCGTTTTGAAAGGAAGTGTGCATGAAAACAAAAGTTTTAGCTAAGAAAAGACAGATGTTTATCCAAAACAATTCAATCTGGCTTCAACAACGAGTGAGTTTCAATAACTTTTGAAATAGTGAAATATTTTAATTAATAGGAAAAATATTTTCAAAAATCTTTTAAAAATGATTGTAACATCCGAAAAGAGAAAAAAATACGTGTAATAAGATATCACAATCTATTTACGATGAACTGTGTGGTAGATCAAGATAGACTATTATCTCTATTTATGGAGCAATAGTATGAAAACAATAAATTCAATAGGTTATTGTATTTAGTTATTTATTAAACAAAGTTGAATTGCAGGGCTAGAATTGTTTTTCATCATCAAATTTCAACGAGTGATGTGCAGTATATTTTATCTTGCTTTCAGGTGATCTTCCAATTAGGTCTATTTTTCTTTTTCAATAAAAATATATACGAATTATTTTAGATATAGCAAAATGAATCAAAGTATTTATAAAATATAATAAAATTTTAGATTTTATCAGTGACAGATGTCGATAGACTTCTATCAATTTATTTTATTATCTATCAATCATATTGATAGAAATTCATCGGTGATAAAATCTAAAATTTGGTTATATTTATAGAGTAATTTTTCAAAACTATATTATTGTTACAAATATATAAATGTAACATATGACAAAGAGTTGAAAGTTTATTAACTTTTTTGAAGTTTATATAAGAACTGGCAATAAGTTTTCACAATTCTCCACCAAATTGTTGATTAAACTAACATAAACCTTTTTCCCTTTGGCTTTTGCAGCAAACTCTAAATGGAATTAAAGTTGTAAATGGCAACTAATTGATCTCATAAGTAACTGTTTCTCTCTCTCCCTAATAAACAAAGTGGAAGTTACCCACTTTGGCATATATGCTTAATACGCCATTTTCTTTGTTGTATAAAACATTTCTAATCTCTATATTGGGCTATAGTATATCATATTCTCCATTTCTCTTTTCTTGAGTGAGGAAAAACAACAACTTATCATTAATTAATAAAATGATAGTATATCAAAGATAAGTTGTTAGAATTTACGTCCTAAAACTCATAGTTTGTAGATTACATATAGTATATGATTATTCTATATGATTATTGAATTAGTTATTA ATGGTGAGTAGAAAGGTGGATTTGCGGTCAGACACCGTGACGAAACCGACAGAATCAATGCGAGCTGCGATGGCGATGGCGGAGGTGGACGATGATGTGTTGGGGTACGACCCCACAGCGTTGGAGTTGGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTTCCATCAGGGACAATGGGAAATCTAATAAGTGTTCTTGTACATTGTGAAACTAGAGGGAGTGAAGTGATTGTTGGAGACAACTCTCACATTCACATATTGGAAAACGGAGGTATTGCAACCATTGGAGGAGTTCATCCAAGAACAGTGAAGAACAAAGATGATGGAACAATGGATATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAACTCTTCTTCCCAACAACAAGGCTCATTTGTTTAGAAAATACACATGCAAATAGCGGTGGAAAATGTCTTTCGGTAGAATATATCGATGAAGTTGGAGAGTTAGCTAAGAAGTATGACCTCAAACTTCACATCGATGGAGCTCGAATTTTCAATGCTTCAATTGCACTTGGTGTTCCGGTTGATCGATTGGTACAAGCCGCTGATTCAATATTAGTATGTCTATCAAAAGGTTTGGGTGCACCTGTTGGATCAATCATTGTGGGTTCAAAAGACTTTATTGCCAAGGCAAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGGATCCTTTGTGCAGCTGGACTTGTTGCTATCAAAGAGAATGTTCAAAAACTTGAAGCTGATCATAAGAAGGCTAAGCAACTAGCTAGTGGGTTATTCCAAATCAAAGGATTAAAGATTGATCCAAAATCAGTTGAGACAAACATTATATTGTTTGAAATAGAAGACGATTACGGAATCTCAATGGAAACATTATGTAAAAGCTTGGAAGAACGTGGCATTTTTGTGATGCTACAAACCCAAACAAGGGCTAGAATTGTTTTTCATCATCAAATTTCAACGAGTGATGTGCAGTATATTTTATCTTGCTTTCAGCAAACTCTAAATGGAATTAAAGTTGTAAATGGCAACTAA ATGGTGAGTAGAAAGGTGGATTTGCGGTCAGACACCGTGACGAAACCGACAGAATCAATGCGAGCTGCGATGGCGATGGCGGAGGTGGACGATGATGTGTTGGGGTACGACCCCACAGCGTTGGAGTTGGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTTCCATCAGGGACAATGGGAAATCTAATAAGTGTTCTTGTACATTGTGAAACTAGAGGGAGTGAAGTGATTGTTGGAGACAACTCTCACATTCACATATTGGAAAACGGAGGTATTGCAACCATTGGAGGAGTTCATCCAAGAACAGTGAAGAACAAAGATGATGGAACAATGGATATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAACTCTTCTTCCCAACAACAAGGCTCATTTGTTTAGAAAATACACATGCAAATAGCGGTGGAAAATGTCTTTCGGTAGAATATATCGATGAAGTTGGAGAGTTAGCTAAGAAGTATGACCTCAAACTTCACATCGATGGAGCTCGAATTTTCAATGCTTCAATTGCACTTGGTGTTCCGGTTGATCGATTGGTACAAGCCGCTGATTCAATATTAGTATGTCTATCAAAAGGTTTGGGTGCACCTGTTGGATCAATCATTGTGGGTTCAAAAGACTTTATTGCCAAGGCAAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGGATCCTTTGTGCAGCTGGACTTGTTGCTATCAAAGAGAATGTTCAAAAACTTGAAGCTGATCATAAGAAGGCTAAGCAACTAGCTAGTGGGTTATTCCAAATCAAAGGATTAAAGATTGATCCAAAATCAGTTGAGACAAACATTATATTGTTTGAAATAGAAGACGATTACGGAATCTCAATGGAAACATTATGTAAAAGCTTGGAAGAACGTGGCATTTTTGTGATGCTACAAACCCAAACAAGGGCTAGAATTGTTTTTCATCATCAAATTTCAACGAGTGATGTGCAGTATATTTTATCTTGCTTTCAGCAAACTCTAAATGGAATTAAAGTTGTAAATGGCAACTAA MVSRKVDLRSDTVTKPTESMRAAMAMAEVDDDVLGYDPTALELEEEMAKIMGKEEGLFVPSGTMGNLISVLVHCETRGSEVIVGDNSHIHILENGGIATIGGVHPRTVKNKDDGTMDIDLIEAAIRNPKGQLFFPTTRLICLENTHANSGGKCLSVEYIDEVGELAKKYDLKLHIDGARIFNASIALGVPVDRLVQAADSILVCLSKGLGAPVGSIIVGSKDFIAKARRVRKTLGGGMRQIGILCAAGLVAIKENVQKLEADHKKAKQLASGLFQIKGLKIDPKSVETNIILFEIEDDYGISMETLCKSLEERGIFVMLQTQTRARIVFHHQISTSDVQYILSCFQQTLNGIKVVNGN* Homology
BLAST of CsaV3_1G045310 vs. NCBI nr
Match: XP_011660269.1 (probable low-specificity L-threonine aldolase 1 isoform X2 [Cucumis sativus] >XP_031745916.1 probable low-specificity L-threonine aldolase 1 isoform X2 [Cucumis sativus] >KAE8637487.1 hypothetical protein CSA_016969 [Cucumis sativus] >KAE8653610.1 hypothetical protein Csa_006916 [Cucumis sativus]) HSP 1 Score: 702.6 bits (1812), Expect = 1.8e-198 Identity = 358/358 (100.00%), Postives = 358/358 (100.00%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. NCBI nr
Match: XP_031736719.1 (probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031736720.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031736728.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031745913.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031745914.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031745915.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 696.0 bits (1795), Expect = 1.6e-196 Identity = 358/364 (98.35%), Postives = 358/364 (98.35%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. NCBI nr
Match: XP_008453666.1 (PREDICTED: probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis melo]) HSP 1 Score: 664.5 bits (1713), Expect = 5.3e-187 Identity = 332/358 (92.74%), Postives = 349/358 (97.49%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. NCBI nr
Match: XP_008453667.1 (PREDICTED: probable low-specificity L-threonine aldolase 1 isoform X2 [Cucumis melo]) HSP 1 Score: 648.3 bits (1671), Expect = 3.9e-182 Identity = 327/358 (91.34%), Postives = 342/358 (95.53%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. NCBI nr
Match: XP_038877077.1 (probable low-specificity L-threonine aldolase 1 [Benincasa hispida]) HSP 1 Score: 644.4 bits (1661), Expect = 5.7e-181 Identity = 324/358 (90.50%), Postives = 342/358 (95.53%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy Swiss-Prot
Match: Q8RXU4 (Probable low-specificity L-threonine aldolase 1 OS=Arabidopsis thaliana OX=3702 GN=THA1 PE=1 SV=1) HSP 1 Score: 510.8 bits (1314), Expect = 1.3e-143 Identity = 247/349 (70.77%), Postives = 300/349 (85.96%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy Swiss-Prot
Match: Q9FPH3 (Probable low-specificity L-threonine aldolase 2 OS=Arabidopsis thaliana OX=3702 GN=THA2 PE=1 SV=1) HSP 1 Score: 493.0 bits (1268), Expect = 2.8e-138 Identity = 243/344 (70.64%), Postives = 290/344 (84.30%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy Swiss-Prot
Match: O07051 (L-allo-threonine aldolase OS=Aeromonas jandaei OX=650 GN=ltaA PE=1 SV=1) HSP 1 Score: 281.2 bits (718), Expect = 1.7e-74 Identity = 155/346 (44.80%), Postives = 220/346 (63.58%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy Swiss-Prot
Match: Q21890 (Uncharacterized protein R102.4 OS=Caenorhabditis elegans OX=6239 GN=R102.4 PE=3 SV=3) HSP 1 Score: 277.3 bits (708), Expect = 2.4e-73 Identity = 154/351 (43.87%), Postives = 222/351 (63.25%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy Swiss-Prot
Match: P75823 (Low specificity L-threonine aldolase OS=Escherichia coli (strain K12) OX=83333 GN=ltaE PE=1 SV=1) HSP 1 Score: 250.8 bits (639), Expect = 2.4e-65 Identity = 135/329 (41.03%), Postives = 199/329 (60.49%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy TrEMBL
Match: A0A1S3BXZ8 (probable low-specificity L-threonine aldolase 1 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103494316 PE=3 SV=1) HSP 1 Score: 664.5 bits (1713), Expect = 2.6e-187 Identity = 332/358 (92.74%), Postives = 349/358 (97.49%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy TrEMBL
Match: A0A1S3BWA2 (probable low-specificity L-threonine aldolase 1 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103494316 PE=3 SV=1) HSP 1 Score: 648.3 bits (1671), Expect = 1.9e-182 Identity = 327/358 (91.34%), Postives = 342/358 (95.53%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy TrEMBL
Match: A0A6J1DWI0 (probable low-specificity L-threonine aldolase 1 OS=Momordica charantia OX=3673 GN=LOC111024142 PE=3 SV=1) HSP 1 Score: 604.4 bits (1557), Expect = 3.2e-169 Identity = 307/359 (85.52%), Postives = 329/359 (91.64%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy TrEMBL
Match: A0A6J1EZ04 (probable low-specificity L-threonine aldolase 1 OS=Cucurbita moschata OX=3662 GN=LOC111440844 PE=3 SV=1) HSP 1 Score: 603.6 bits (1555), Expect = 5.4e-169 Identity = 303/358 (84.64%), Postives = 327/358 (91.34%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. ExPASy TrEMBL
Match: A0A1S3BWX2 (probable low-specificity L-threonine aldolase 1 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103494316 PE=3 SV=1) HSP 1 Score: 601.7 bits (1550), Expect = 2.0e-168 Identity = 301/324 (92.90%), Postives = 317/324 (97.84%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. TAIR 10
Match: AT1G08630.1 (threonine aldolase 1 ) HSP 1 Score: 510.8 bits (1314), Expect = 9.2e-145 Identity = 247/349 (70.77%), Postives = 300/349 (85.96%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. TAIR 10
Match: AT1G08630.3 (threonine aldolase 1 ) HSP 1 Score: 510.8 bits (1314), Expect = 9.2e-145 Identity = 247/349 (70.77%), Postives = 300/349 (85.96%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. TAIR 10
Match: AT1G08630.2 (threonine aldolase 1 ) HSP 1 Score: 510.8 bits (1314), Expect = 9.2e-145 Identity = 247/349 (70.77%), Postives = 300/349 (85.96%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. TAIR 10
Match: AT1G08630.4 (threonine aldolase 1 ) HSP 1 Score: 510.8 bits (1314), Expect = 9.2e-145 Identity = 247/349 (70.77%), Postives = 300/349 (85.96%), Query Frame = 0
BLAST of CsaV3_1G045310 vs. TAIR 10
Match: AT3G04520.1 (threonine aldolase 2 ) HSP 1 Score: 493.0 bits (1268), Expect = 2.0e-139 Identity = 243/344 (70.64%), Postives = 290/344 (84.30%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (Chinese Long) v3
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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