CcUC03G052020 (gene) Watermelon (PI 537277) 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.TCTTTTTTTGGTTGCCGATACAATTTTCAGAGACGTAGGAAGAAGCATCCGGTAATCACTCTTCTCAATTACTCAAAATCAATGCATTGTAATTCAATTTACTTATGGTTTCAAATAGTCATGTCGATTTTCTGCCCTTCGTGCTTAATACCTTTAACTTCAACCAGATTCAAATGCTTCTGCAACTTTTTTTTTTCAACTTCAACGAATTTTATGATGGATTATGAATTCCTCTGCAGCATGTTCGACTGCTTGAAAGCGCTTTAAACATAAAGATTGTCGAAATCGAGGCTCACATTTTTAGTTTGGACGAAATTTTTAATGTAAAATGTAAGTTTCGAAGGATAATTTTCTTTCAGAAAATTTCTGGCGATCGAGATGATTGAATGAAGCTTCTATCTCAAGCAAAACTGTAAACTGAAATGCTAAGAGGACCGCTCAGATTCGACTACTATTTCTGTCCAGTTCGGGAAATGTCGAACATAACTGTTTGCGCTCGATTTCGGCCTTTGAGTTCAAAAGAGAGACAAGATCATGGAGATGCAGTGTGCATTCAATGTGTGGACTCCGAGACATTCATTTTTAAGGTTTATTTGTACTTATTTTGTTTTTGTAGATTGCCGGGAGATAATTTACATGCTCGCTTAATTTAACATTAGTTTATTGTAGGACGAGAAGACTGAAGAACTTACATATAGCTTTGATAGAGTGTTCTATGATAAATCTGAGCAAACTGATGTCTACCGATTTCTTGCTCAGCCAATTGTCCAAGGTATACCCTAATCTCCGGTGCACTACATTTTTATGACTTGAATTCAGCGGTTTCTTTATGATTGTTAGGTTTTGTTATTAGGTTGAGAATTGATTGTGTTGGATTTCTAATATAAGTTCTCTTAGATGGTGGAAAAAGCCATTTGGACCCTTCTTACATTAATTTTTGTTAAGCAAAGTAGGATTCTACCTCTCACGTTGTGCTTTAACGTATGACACAGATGCTCTTAATGCTGTTAATGGGACAATTATCACCTTTGGACAGGTGAGCTGTGTTAAAAACTTAAATCCAAACCATTGTGCATGGTCCTGTAAAGGATACTATGAAATATCTTGTGTTCGGGTACAACCAGACATATGCACTGCATAACACATTAATCGTCTCTGCAGGGCGGGATCTTGATGTGTAAGCATTAATTTCAAATAATTTGTACTTCCAGCAAAGAAAATATATAAATCCGCTTTTTTCTTATTGAAAATCAATTCTAGCACGCCTGTTCTTCCTCTGCACATCATGTAGCATAAACTTTAAAAGTCATTTGACTTAATATTTTACACTGTTCAAATTGAGAGGTTAGTTAAAGATTAATTTCAGAAGAAGATTTTCATTTGGAGTTGCAGGCTTTTCAGAACTCAAAACTTCTGCAAATTATATTCTACCTTCTATTTAATTGTTTTAGAATTCTCTTCAGGGTGCAAATCAGTTGGTTATCCAACTTCTGTTTCAATTATTAACTTCTCTTTCCTTCCTTGGTGACAGACTGGAGCTGGAAAGACCTATAGTATGGAGGTAGCAGACCATGCTTTTAAAAGGGTTGTCAACTTAAACTATCATAAGTCATATTTTCTGGTGATCTTATTTAAGCAGGGGCCTGGCATACTTGAATGTGACGCAGCAGAGAAGGGTTTACTTCCTAGAGTGGTAGAAGGCATTTTTGAATGTACTAAATTAGCTGATGAAACGAGCAAGTACTCAATCAAGTTGTCTATGGTATTAATTAGGCAACCTTATGTTATCATGCTTGCATCATTCATTTCTTATCTTGCAGTTAATTAATTACCAATTCACATTGTTAAGTTTTTTTATCATTGCATTTTATTTTTATTTTATTTTATTTTATTTTATTTTTGGCTCTTTTAGGTTGAAATCTACATGGAGAAAGTGAGGTATAAATATATCTGCTACTGCTAGTAGATGTTATGCTCAATGCATGATTTTTTTCCAGCAATTAGAACTTTCCCTTGCCAAATAAGACAGAAGCCAATCCTATAATAAAAGGAAAAAGACAAATAGTCAACAGCTGATGATTTCCAAATTAATGATTTATTTTCAGGGATCTTTTTGACTTATCAAGGGACAATATACAAATCAAAGAGAGTAAAACACAAGGGATAATGTTAAATGGAATGACTGAGGTAAGCTGCCTTCTTATCAATTTCTTAAGCAATATTTCTAACCAAAAATTTTCATTGAATCTATTATTTATATGCTAGTTAAGTGCTCCACTCACACAATTGTATCTATATACCATTGCTTCTTTGCAAGGCATTTATGGCATATTGTTCTAGAAGTTGTTGGATGGTCTTTTAATTTACCGAACTCTATATTTGATCTCTTAGCATTTCTGTTTATGGGGCATCCTTTCAATGGTACCAAGCGGACAATTTGGTTGGCTTTGGTGCATGCGTTCTTTTGGGCACTTTGGGGTGGTCGTAATCGTCAACTTTTCAGGGACTCCATCTCTACTTTGACAGATTAATGGATTCGGTTCTTACTAATGTTTATAATTGGTGTAAATCTGAGTCTCTATATATTTGTTATAATTTATCCTTTTTTCTTTTTAATTGGAGAGACTTCTTGTAATTACCTTTAGCTATTCGGTTTTCCCTATTTCATTTCTTCAATGAAATGTTTCTTTATCAAAAAAAAAAAAAAAAAAAAAAAAAGAAAAACCTCGACAACTTTCTTGACTGTGGTTGATGAAAAAGTTATCAGTAGTTCACGAGGATGATTTCTATGAACTTAAAGCAATGCAACTCATGTGCTTGGATGAACTATCAGCTGAGTTATCCAAATTCCATGCTTTTAAATGGATTAATATTTTGGTTTCACTTTACAGATGCCCGTAAAAGACCCTCCAGAAGCATTGCTAACCTTATCTGTAAGATGAGAAGAAATTGTTCTTTTAATTCAGTTGAATTTTTAATTTCTCATGGTAACTGCCCAATGCAGAAAGGAATAGGCAACAGAGCAGTAGGAGAGACCCGTATCCTGCTTTCTTCTCATTGACTTTATTCCTAAACTTCCAGAAACATGTTAGATTCCATCTTCTTTTAACGGTTCATGGTCAAATCTTGGTTTTCATCTAAACATGGATAGAAATGAATGTCGCCAGCAGTAGGAGCCACTGTATTTACATATTCACTATTCAGCAAGAATCAACCAAGGACAAGAGGTAGTCTTTTTCAGTCATTCCATTGTCAAGTTTTGAAAGGAACAATCCATACTGAATCTCAATTCCTTGAATAGGGCCAGAACTGGAAAATTGAATCTGGTGGACTTGGCAGGGTCTGAAAAAGTGGAGAAAACTGGTGCTGAAGGGAGAATTCTTGAAGAAGCAAAGACCATTAACAAATCGCTTTCAGCTCTTGGGAATGTAATAAATGCTCTAACATGTGGACCAACAGGCAGAGGAAACCACATTCCATATCGTGATTCTAAGTTGACACGGATTCTACAAGATGCACTCGTTGGTTACCGCTCTAATTTCCACCATAGTACATGTTCCTTAACTTAATTGAGCAATTTATTCTTCTCACATTTCAGGGAGGGAACTCACGTACTGCTTTGTTGTGTTGCTGCTCACCCAGTCCTACAAACTCACTTGAGACCCTCTCAACCCTTCGATTTGGTGCGAGGTATGTCTGAGCATAAATCTGTTTCTGAGTGCTTGATTGCAGAATACACGATAAACTATGTAGCCTTTGGCAAGTGAAAATCTTCTTGAAGTTGTAAAAAATTTGTCTATTTGGGTGATTACATTTCCAAATTGTGGTCGTTGTTAAAGTTCTATCAATTTTCTAATCAAGTTGTGATTATTATAATAATTATTATTATTTTGTAATGAAAGACCTTTCTCATACTTATATTTTATTAGTTTGTAGATATACTGCCATTACGTTGTAGCATTCATTCACTCCTACCTGATTTCTCTGTCTCTTATTTCCTTAGATTTAGGGTCTCTAGCTTAAACTTCTAGATTAACATCCTTAACTAAAGATCTATATAACCTCTTTTTTTCTCTTGCTCAATGTTCAGGGCAAAGCATATAAAGGCTTCTCCTCGTGTTGCATATGAGGATAAATGTATCAGAGAGCTCGAAGTTTTCACTCCAGTAAAAAGGGAATTGCGTGACAAACTTCTCAATGAGGTGAGAAGCAGGGAATGGGACTTTATTAGCGGCCGATCAATTTGGTTTTACGTTGCCTCCATTTGGTATAGTTGCAGGTGAGTTTGGATATTGAGCAAGTTCAAATACTTGAGGAGCTGTTTATACAAGAAGGAATTCTTTTTGATCCTTGCTCCATTGAAGAGTCGGAATTAGCCAATGAAGATGTTGCTTCACAAACCATTTCTTCGTTGCAGCTAGCTTTGGAAGAACTCTTGAGCACCATCGCAGAGGTACGTGAACATCTTTGAACTATTTGGAAGTGGATTCTCTTTTTTTAAACAGAGTCGGTTATGTAATGAATATCTTGAACGGAAGGGAATAACAAAAAGCCCAAAACTTGATGATAATAAATCTATAATAATGATACATGATACCTTAGATTATAATCTTTTCCACCCAAATGTTAATGATATGTAAATTTTGAAAGGTAGTGATTAATGCACCTTTAAAAGTTCCTAATATGTTCCAAAATTTTTGTTGTTGTCTGTCTAACCTTCTGCTTAGAAAGTATCTAATATTCCACTCCACTCATTGTTGAAATGAAATTTCACACACACAAAAAAGGAAAAAAATAGAAGAAAAATAAGAAGAAAAATATGTAAAATGAATTGTATTCATACAAATATTTGAGGTATGCACTCAAAAAGTTGTGGAGTACAATTTATAGAGTGAATAATGAATCAATAGAAGTGAGAGTTTAGTTTTACTTATAAGTTCTAAATTAGGTGGACGATGTATGTAAAAGGTTAATGAAAATTAATTAGTATAGTATTGAATGAAATGAGGTCATAAAAGCAATTTTCCATTCAAAAGTTTTTAACGTTTACATCATATTCATCATCGCCATGGACTAAAAAGTACTTCATTTTTTGAAGAAAAGACATTTGGATGAAAACCAAAATATTTTGGGTCTATTTTTGTCGGTTACCCCTGTAATCTAATATATATAAAATTTTGAGACTATTTTGTTATGAATATAGACGATATACTCCACACCTCGGTATAAACAAAAAGAACAGAGAATTATGTTCTCTTTCTGTTTTGTGCTTCACTTTTTTCCTCGAGAATGTTGGGATTTAAGTTTATATGCGAATTTTTTTTTGGAGCTCATTGCACACATATCAGAATATGGAAATCTGGTAAAATTTAAAACAATTGTAAAGTCAGTTTTTAAAAACCCCAAAATTACTGAATTCGCTTCATTTTAACTCTACACACGATGCACACAAAGAGGCAAATTTCTCCATGAGCTTGTCTCGGCCCTCTCTCCTCTTTCTGTTTTGCGTTTCACTTTTTTCCTTGAGGATGTTGAGATTTAATTTTATATAGGAATATTTTTGGGGCTCGTTGCACACTGTTGAAAATAAAAAGGGAAATTATTTTGGGAGATATTGTGGAATTAAGTCTTTCCCTTTCCAAATATCTTTTCCTTGTATAAGTTGTTCTTTATCTCTATTTATTCTTACTCTTGTAATGTTTGTAATGTATAAAATTAAAATAAAAGAAAAAGTTTTATCGTAGTTTTTTCTCCCTCTTCTAGGGTTTTCCACGTACATTTTTGTGTTATTTCCTATTCTCTTTTCATTATGGTATTAGAGCAGGAAACCCTAGAAACCCTAGCCGTCATCGACGAAAATAACCCCAGAACAGATCTGCCGTCTCACCTGCCGCTGCCGCAGTCGCCGATGGAGTCCACCGCCGCTACCACCGAGTCAGCCGTCCAAGCCACCATCCAGCAGTACCTCCGGTCGCTTAACCCTGACGCTGCTGCTACCCTTTTTCAGAGTATGCCGCCGCCATCACAAAACCCTAGCGGCACAACCCCTCAGACTCGACTGCCGCTGCCGGGGAACGCTGGAACTATGACTCGAACCGACCAGAACGCCGCCTTCCATCCTGCGTCGAACCCAGATCTGAGATTTCCGCCGCTCATCATTGCCGGTTCTTCTTTGATGGTCGAGGGAAACACTTCGTTGGGGTTTCGCGAGCAACAGAGATGTCTTCGATCGTCGGTTTTTGGTGAGCAGCAGAGGAGTCTTGAAGCCGCTGTGTTTTCGACCACCGTGGTGCCTCTTCCGTCGACTTTTCCTTCGACCACCGTGGCTACCACCAGATCTGGTGGTTTTTACTCAGATTGGACCAGATCTAGTGGTTTTTACTCAGATCCAGTTGGATCCCCGGGGGGGGGGGGGGGGTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGTTGCCTCAACAAAATCACTTCAACAACAACTCGTGGACCTTCAAGCAAATTTTCAGCAACAAATCGGCACTCTTGGGGCTGCCTTGAGTTCTTCTAATCTTGGTCAAAGTACAGTCAATTCAGGTGTTTCCTCAGATTTACCGATGTATCCAGAGAATCCGGTAACTGTAATCCCTATTTTAACGACTGCACCGTATTTGTTTGGACAAAAGGGTAACCCTTCTAGCTTAATTGTTGGCAAAAAATTGAATGGCCAGAATTATTTCTCTTGGTCCCAATCCGTGAAAATGGTACTTGAAGGGCCCCATAAGTTCGGATATTTGACTGGCGAAATACCTACACCCAGACCCGGAGATCCTCAAGAGCGCCTCTGGAAGGGAGAAGACTCATTTCTCCGATCATTGCTAATTCACAGCATGGAACCTCAAATTGGAAAGCCTTTGTTGTATGCTGCTACAGCTCGGGATATTTGGAATGCTGTTCAAAAATTATACTCCAAAAGACAGAACGCCTCTCGGCTTTATACACTGAGGAAACAAATCCACGAATATGAACAAGGTAATATGGATGTCACGTCATACTTTAACAAATTGTCTCTGATTTGGCAAGAAATGGATTTGTGTCGAGAACTTGTCTGGGATTGTCCTTGTGGGGGAGTTCATTACTACAAACTTGAAGAAGTCGAACAAGTTTATGATTTCTTAGCAGGTTTAAATTCCAAATTCGATGCTGTGCAAAGTCGAATATTGGGACAGAAACCAACACCGACCTTGATGGAAGTCTGTTCAGATGTTCGGCTGGAGGAAGATAAAATGAGCGCTATGAATGCTATTGGTAGTTCCATTACTGAATTATCTGCGTTCAGTGCAAAATCAGCTAGTACAACTGGAGACAAGCAGAACGGTAAACCTTCTCCAGTTTGTGAACACTGTAAGAAACTGTTCTACACGAAAGATCAGTGTTGGAAGTTACATGGTCGGCCCTCGAATGGTAAACGCCGACCTCCTAACAACAAACCTAACCATGCTCTGGTAAGTGAAACAACAAGTGACTCGCAACCATAGAGAGGTGGTTGCACACTCAGGTATCTCTCAATCCTTGAGTCTACTCAGTATTACTGGCCAGAAACCCTGGATCCTTGATTTAGGAGCAACAGACCATTTGACTGGAACTTCTGACAATTTCCTTTCCTATTATCCATGTGCTGGTAATGAAAAAATTCAAATTGCTGACGGGACACTTGCTCCTGTTGCCGGCAAAGGTCATATTTCTCCTTTCGATGGTTTAATATTAGAGAATGTTTTGCATGTTCTCAAAATCTCGCATAATCTCCTGTCTGTGAGTAAGATAACTCGAGTTTTAAATTGTCGTGTAGCTTTCTCACCCGATGATGTTTTTTTTCAGGACTTGAACTCGGGGAAGACGATTGGCACTGCCCGGCACAATAGGGGACTCTATTTCCTTAATACTGATACTTCCTCTAGGCAAAGTTATAGGACTAGTCTGCTATCTTCCTATTTTTCAACTTTTGAAACTGACTGTATGTTATGGCACTTTCGTCTTGACCATCCCAATTTCCAATATATGAAATATCTATTACCCCATTTATTTAATAAAGTTGACATCTCCTCTTTATCTTGCGATGTGTGTATTCGTGCCAAACAACATAGAGTCTCCTTTCCGTTCCAACCTTACAAACTCTCTCAACCTTTCACTCTGATTCATAGTGATGTTTGAGGCCCCTCAAGGATTACCACTTTTTCAGGTAAGCGTTGGTTTGTGACCTTCATTGATGACCACACTTGTCTTACTTGGGTCTTCCTTTTAACAGATAAGTCTGAGGTCTCATCCATTTTCCAACAGTTTTACACCACTATTGAAACTCAATTTAATGCCAAGATTGCCATTCTTCGGAGTGACAATGGTCGTGAATTCCTCACTAATACCTTCGCAAGTTCTTATCCACCAAAGGTATCATTCACCAGAGCTCATGTGCCTATACCCCCCAACAAAATGGAGTATCTGAAAGGAAAAACCGTCATCTCCTCGAAGTTGCTCGGTCTCTCATGCTTTCAGCCTCTCTTCCATCTTACCTATGGGAGATGCAATATTGATTGCAGCTCATCTAATAAATCGGATGCCCTCTCATGTTCTCCATTTCCAAACCCCTCTTGATTACCTCAAACTATCTTATTCTACCACTTGCCTTATACTTGATGTCCCTCTCCGAGTGTTTGGGTGTACAGCATTTGTCCATAGCTTTGGTCCCAACCAGACTAAGTTCTCCCCTCGAGCCCAGAAATGTGTCTTCGTTGGATATCCTCTCCACCAGCGTGGTTATAAATGCTTCAATCCCACCTCTCGGAAGTACTTCATCTCTATGGATATAACCTTCCTGGAAGATCAACGTTTCTTTCCCGTTAGTCCTCTTCAGGAGGAGAGTAATAATGAAGAGACTAACTATCCAAATCCTCTTCCTGAACCTACCTGACAACAACCCATGACACTGTCCTACCTACCAGATAGGTCCCGTGGATAACGTACTACAGGAAGAATCTTAGAGGGGAAATAGCAGACCCTACTGATCATATGCCGGCTCCGGTCCAATCATCTGAACCGACACAAGCACAAGGTACCACTGATCCTAGTAACAATACTATTTGTTGAAAATGTTTGTGTTGAAAATGATATTGTTGACCTGACAAAACTTTCGGTAGAAGATGGTAGAGATAAAATGACAGAAAATAACCAGGTTACTGAAAACGATGGAGTGTCAACAACAGTTGAGGAGAATGAAAAAGGGATCATATCTCAAAATCCTACAACTAGAGAAGAGCTCAACAAGCCAGGAGAGTGTGATGCCAGTCTAGACCTGCCCATTGCTTTGAGAAAGGGCACAAGATCTTGCACCAGGTATCCTATATATAGCTTCCTCTGCTATAATAATTTTTCTTCTAAGTTTAGAGCCTTTATTGTTAGTCTTGATACTATAACCATACCGAAAAACATATATGTGGCTGTGGAAATCCCTGAGTGGAAGGCTGCCGTTATGGAAGAAATGAGAGCTTTTGAGAAAAATCATACTTGGGAACTTGTTGCTCTTTCGAAAGGGCATAAACCAGTTGGATGTAAATGGGTATTCACAATGAAGTATAAATCTGATGGAACTCTTGATAGATATAAAGCCACGCTTGTAGCAAAAAGGTTCACTCAGACGTTTGGGGTTGACTATTCTGAGACTTTTTCTCCTGTCGCAAAGTTGAACACAATCAGAGTCCTTCTGTCAGTTGCAGTAAACAGAGATTGACCTCTTTATCAGCTAGATGTGAAAAACACCTTTTTAAACGGTGATCTAGAAGAAGTGTATATGAGCCCCCCTCCTGGCTTCGAAGACCAATTTAATCGATGTGTTTGCAAGCTTAGAAAAGCTTTGTATGGATTAAAACAGTCACCGAGAGCATGGTTTGAGAGATTCACCACCTTTGTTAAGTCCCAAGGCTTCACTCAGGGACACTCTGACCATACCTTATTTACAAAAAGGTCTGTCTCGGGTAAGGTGGCCGTTCTAATCGTATATGTTGATGACATCGTCTTATCTGGAGATGATACTGCTGAAATCGACAAGTTAAAATAGAAAATGGCAGACGAATTTGAAATCAAAAACCTAGGAAATTTGAAGTATTTTCTTGGGATGGAAGTGGCGAGATCAAGAGAAGGTGTCTCAGTTTCTCAACGGAAATACACTCTTGATTTACTAGAAGAAACAGGTATGACTGGATGCAGGCCCGTCGACACCCCTATCGAGTCTAATGCCAAATTGGAAGAGTCTATCACCAAAGTGCCTATTAACAGAGAGAGATATCAACGTTTAGTTGGAAGACTAATATACCTAGCACACACTCGACTAGACATATCCTATGCTGTTAGTGTTGTGAGTCAGTTTATGCAGGCTTCCTACGAAGAACACATGGAAGCAGTAAACAGGATTCTGAGATATTTGAAAAGCACACCAGGAAAAGGGTTGATGGTTAGAAAATTCGACAGAAAATACATCGAAGCCTATACAGACTCTGACTGGGCAGGATCAGTAATTGACAGAAAATCTACATCTGGGTATTGTACCTTTGTGTGGGGTAATCTTGTAACGTGGAGAAGTAAGAAGCAAATTGTGGTTGCTAGAAGCAGTGCTGAAGCAGAATTAGAGCTATGAGTCATGGAATCTGTGAAGAAATTTGGTTGGAGAAAGTTCTATCTGACCTTCACCAAAGCAGTGAACTACCTATGAAACTCTATTGTGACAATAAGGCTGCTATTAGTATTGTAAACAATCCTGTTCAGCATGATAGAACAAAACATGTGGAAATCGATAGGCACTTCATAAAGGGGAAACTGGAAAACGGAAGCATTTGCATTCCTTATATTCCTTCTAGCCAACAAGTTGCAGATGTTCTTACTAAGAGGTTGCTTAAGCAGAGCTTTGATGCATGTGTAAGCAAGATGGGTCTTATTGACATTTACGTCTCATCTTGAAGGGGAGTGTTGAAAATAAAAAGGGAAATTATTTTGAGAGATATTGTGGAATTAAGTCTTTCCTTTTCCAAATATCTTTTCCTTGTATAAGTTGTTCTTTATCTCTATTTAATCTTACCCTTGTAATGTTTGTAATGTATAAAATTAAAATAAAAGAAAAAGTTTTATCGTGGTTTTTTCTCCCTGTTCTAGGTTTTCCACGTACATCTTTGTGTTATTTCCTATTCTCTTTTTCATTATCAAAATATGGCAAATCTAGTAAAATTTAAAGCAATTCGTAAATATAGTACAGTCAGTTTTTAAAAAATTCCAAAATTAGTAATGCGCCTTCACTTTAACTATACACACGGTGCACACAAAGAGGCAACTTTCTCCTTGAGCTTCGCTCTCTTCCCTCTCCTCTTCTTCCCACATCCCACCTCCTCAATAGACTTGAAACCATGACAACATCCCTAGGTCCTTTGTCGTCAGCCACCATGCCCCGACCACCAAAGTGTTCACTATCGTGAGAAAATCTTTCTCCATAGATATTTACTCTTCTTCTCGTGACTCACGTGTCTGACTGACAGAAACCTCTAGAGATAAGACATTTTCTATCACGATTATATGAGGCCTCCTATTATGAAAGTGTACGATATGGAATTTGACAAGCAGACAGGAAAGGGGCACTAGCTGAAGAAATATCCTTGCTTCTTGTTATTTTCCTTGTTTTGGTATTTTACTCTGTTTTTTGATATTTTTGGCTCGTTAAGCATTGAACTCTTGCCTGTCTCTATTGATATATATAATTGTAGAACACAGAGAGGTGGATATCCCTTGTTTTGGTGGTGTTTGGGTGTTTCCTTGGAAGTGTTTGTATTTTTGTGTGCCGGGAGTTAGGATACCTAACATTTGATATTAGAGCACGTCCAACACTAGGATGAACATGAGGAATATCATAGAAACATTTGGAAGAGAGGATGGAAGGAACCAAGAAGAAGATGATGAGCATCAAGGAAATGCTCCCGAGTATAAGGAAAGAGTATCGGGAAAGTCTTGGGCGATATGAAAGAGATGTCGATCGAAAAAGGGAAGGAAGTATGATATCCATCAAGACTTCCAGCATGAAAAGAATGGGGAAGGCGAGGGAGAGTCTTAGGCAAAAGAGATAGTCGCAAGCTCAGATAGAGGGAGGTATGAAAAAATCGAGATGCCAGTGTTTAATGGAGACAACCCAAACACATGGATATATCCTGTGGAGAGATGCTTCGAGATTCATGAGCTATCGGACACTGAGAAGATCAAAATGTGTATAATCAGCCAAGATGATGTTGACTGGTACCGATGGGCGAACAATCGACACAAGTTTGAAAGTTGGGATGATTTCAAAGAACACCTCAAAGATCGTTTCAAGATATCGTTGGAAGAGACCTTTTTGTTGCGACTGTGGAACTTGAAAATGGAAATGACCGTTGCTGACTATCAAAAGTGTTTTGAAATAGCGTCATTGCCCTCGCTAGGTGAGATAGAGGATGTGCTATGACATTCCTTAAAGGATTGCATTTGGCGATCAAAGCTGAGGTGATTAGTCGAAGAGATGTGGGCCTAGATGAAATTGTAAGAGAAGCCCATTGGTGGAGGGATTGAAATCTGATGATTCGATGGTTTGCTTAACGAAATGAAAATGGGAGGCTCAAACGTATCGGCCCAAGGGGAAAAAAACAAGGGGGCCAGCCCTGGAAAATCGAGACCACTGAGCTGCAATCAAAGAGTTATGACTACGTGAAACGTGATGTTAAAGAAAGGATGGGTGGGGAAGAAGAATCGACCTCTGAAACGGCTGTCTAATGTTGAAGCTAGGCGAGAGAAGGGACTTTGTTTCAAATGCAATAAGAAAATTTTTGCCAGCCATCATTCTAAAACAAAGGAAAACATGAACTAATTTTATTCATAGCAAGTGAGGACTATGATCTTGAAGACGGTGAGCAAGAAATTGAGAAAGAAGAAGGTGTTGAAAACGCTTCATCTCTAGGAACCATGAAGATAAAGGGAACGATCAAAGGAAGGGGAGTTGTGGTGTTGGTTGACCATGGAGCCACACACGACTTCATACATTAGAAGTTAGTGGACGAGCTGGAACTGTCGTTGATTGAGACCACGAATTTCGAAGGGGATGATCAGTAATGAAACCACTATAAAGGGAAAAGGAGTTTGCAAGGCAGGGGTGATCATATTACCTATGGTAACTGTGAAGGACAATTTCCTTTTGCTGGAACTGGGGAGCGTAGATGTGATCTTGGGACTCAAATGGTTACATAGGAATAAACTTGCTAACATTGACAATGACTTTCACCAAAGGGGAGAACCAAGTGACTTTAAAAGGGACTCGTCCTTGACTAAAGCTGAAGTGTCTCTGGAAATGTCAATGAAAACATAGGAGAAGATGATCAAGGATTCTTAATTGAATTTTAGAACTTACAGATTGAAGATAAAAAGGGTTATGGAATAGAGGTGTTCCTAGAGGTAGAAAATGACGTGGGTAGGCTGATAGAAGAGTTCCAAGTAATGTTTCAAATGCCCACCAAGCTACATGCGAAGCAAAATATGGATGACTGAATCACCTTGAAGGAAGGCCAAGATCCCATAGATGTAAGATTATATTAGTATGCTCATGTTCAGAAAGAAGAGATTGAATGATTAGTTAGGGATATGATTGCATTTGGAATTATTTAACCAAACAACAGTCCTTTCTCAAGCCCTGTTTTGTTGGTTAAGAAGAAAGATAGTGGGTGGAGATTTTGTGTTGATTATAGACGCTTGAACAACACTATTCCAAATAAATTCCCAATACCTGTGATAGAGGAGCTTCTCGATGAACTTCATGGATCCACTGTCTATTAGAAAGTCAACCTTAGATTTGGTTGTCACCAAATAAGAATGAAGGACGAAGGTGTACTTAAGGTTGCATTTTGAACCCATAAAGAGGACATTACGAATTCCTGATGATGCCTTTGGGTCAACCAATGCACCAACTACATTCCAATCTGAATCATATCTTTGTTGGGGTTTATGTCTTAAAACTTGTAGTTTGTAAACTTTGAACATATTCTCAATAAATTTGTTATCGAGGTTTATTCAATAAAGATGTTGAATATATGAATTGCATTTATTAAATCTAATAAACGAATAGCTCCTGGCTATATTTTGAATCCTTAAACTTTACGTGTAGACATAAGAATGAATCAAGTTTAGGTAATAGCCAAAACGGTCTATAATATAGGGATAAGACCAAGCCTTATTAGGGACACTTTGGACACTATGGATGTGACTTATTTTGTATTTGATACAAATGATGTGTTCCTATAGCATTTATGTAGAGACATAGAGTGGAGACATCCTATGCAATGAATTTGCAAAAGACTGGACTATGAAATAATCATTTTTACTTTATAATGTCGTTTACTGTTAAGACTGATTATTTCAACTTGATGACTTGGTAACTCGATCTTAATCCTGAGTTAACTATGAACTACTGTTTATTTAGAATTATCCTTTAATCCGCATGGGTGAGAGTAGCCTAAGTTTGTCGACTCAATAGGCCTATTATTTTAGGGATAAGACTAGGTAGATAGTTAGGGACATAGTCTTGCGTGATGGAATTCTCTCCTACCTAGTTCTAGGTTAGTAGAGAAGTTGTTCCTTCAAGTGTTGACTCTAGGTCTTGAGCAAAGGGCCCCACTCTCTCATTGGCCCAAAAGGGACTCGGTTTGATGGTTGGATCACAAACCAATTATTCATTAGAGGATCAGTGGGACTTAAGGAACAAAATGTAATTATAAGGGTAAAACGATAATTTTGACCCAACTATAATCACGAACAACTTGTGAAGGATCGACTTACTTATCATGGTTATATCAAGTGGACAGAAATATATCTACAGTGAGGAGAGTGCAATTACTGGGCTATAGTGGAGTATCTCGGTAGTTAACAAATGTTAATTAACTAGGTTAAAGAGTTTAGCTGGTTAGTTTCAGATTGTTGGAGCTCATGATCTGTAGGTCCATTAGGTATTCTTGTTAGCTCATGGACTAAACCTTAGAACACTATGATGAAAGAATTTAAACATGTTCAAATTCATCTAAAGGAGTAAATTTTACGGTCGTTTGTTTTAATTATGAATTAAACAAAATTGGAGAATTAGAAATATTTAAATGTAATTTAGATATTAATTGGATGAATAGAGATTTATCGGATTGAAAATTGCATGGAAAAGTAGAAAAATTATTAATTTAAATATTTAATATTAATATTAATATAAATTACTTAATTAATTATTATTTAAATTAATTTAATATTATTTAAAATTAAATAGTGGAATTAATTTTAAATTAAAAAATGGAAATTCTTTTATTTGATTTTTAGAAAATCAATTTTGAATTTTCATGGATTTCTCCACTAATTGCATGTTGAAGTTGAAGTAGGAGGTGGGAGATTGCTAATCACTCTTTTTCCATCTTCATACACCTCCTAATTGAGTTGGATAATCAATAAATTTGGTGTCAACTTGTATGTAAATTCGATTTGCATGGTTACTTCTTTAAATAGAAGAAAGAAATTAAGAAGATGGTTTGATCTTCTTGGTGATTTTTGCTGAAAAACTCTACCTACTCAAAACTCTTCAAAACGACCATTTCTTTAGAAATTTGCTTCAAATTTATTACAATTTGAATCCTACAATCCGTTTTAATACAAGAGAATAACGAGGAAGATACTTGTGGTGGTCCATGAAGTGTTTGTGATAAAAATCTTGGAGGAATTTGATTCAATTTTGAGCTACAACAAGTATCATTGTCTCTGTTTTTCGATTTTAAGAACAAGCATGTTTAATTCTTAAAATTGATGTAGTTAGAATGCTTTGGATCCTAATTGCTTTCAAATTCATGTTTCTAACTCCTTCAATCTTTTGCCCATTCTTGAGAAGGTGTGTTGGTATTTTTTGATGACATCTTGGTCTAAAGCCCGAATGGGGATACTCTCATGAAGCATCTGAGCATGGGTTTTAATATGATGAAAGATCATAAGTTATTCGCTAATGAGAAGAAGTGTGTATTTTGGCAGATACAAATTAAGTACTTCGGTCACTGGATTTCGGTTGAAGGTGTTGAAGTGAGAAAGAGAAAATTCAGTCGATGGTGGATTGGCCAAGCCCTAAGAATCAGAGGGAACTTTGTGGATTTCAAGGATTAACAGGTTATTACTGCGGATTTGTAGTGAACTATGGAACTATCACTCAACCTTTGCATCATCTGTTACATAAGGATGCTTTCCAATGGGATACAGATCTCTAGGGGAGCATTGCTGTGCTCTCGCAATTTTTGCTCTCAGCCTTTAAGCGTAGAGCACAGTGCAGCTGCACTCTGCATTGCGTTGCTCTAGGGGCATTTTCGTAATTTTTACGTTCTTGAGATCCAGGTGCTCGATTCACTTCTGATAGCTCAAATCAACCCTGAATGACACGTAATGCTCCGTTATGCATGATTTGCTCGAATTTCTATAAAATAGCATAATAAGCACATAAAATCCACGAACGAACCCTAATTAAGCTAGGGAAAATAACACTTTTATGGCGCTATCACGCCTCGGTGCTGTAACGAGCATTGCAACACTCCGACTAGGTTATAAAGTGAAATTTTGTGATTTTAGATTGAGCTCTTTCGCCAGCTATCGATTCTAAAAGATTTCTCCCCACTTTTCCTTTCTTTTTCCATCTGTTCTTATACTGAAACTCTACCACATTGATCGATATGTCGATCATGGGCTAAGGTAATCGATTTCTAACTTGGCTTTCTAGAATTTCTACCTTATTTCATGTACTTGTAAGTTTTTTAATCGTTTTATTGAATTTGCTAGTTCCAATTCTGTGTTCAATGAATTATTATCATATGTCAAACGCTTGGGATGTATGGCCTTTGAACATCTGAAAAAGATTATGACTTCTCTCTCCATGTGCATTACTGGATTTGGACTCACCCTTCGTTATTGTAACAAACGCATCAGGAATCAGATTACGAGCTGTCCTCGCACAAAATAGTTAGCCCATTGCCTACTTCAGCCAAATATTGTTTGAAAGAGCAGAAGCCAAGTCCGTTTATGAAAGAGAACCGATGGTCTTGGTGTTGGTAGTTCAGAAATGGAGGCATTATTTAATTGGGGAAGATTCACTGTGATATCAGATCAACGCACCTTGAATTACTTATAGGAAAACGCGAAGTACAACCTGATTATCAAAGATGGTTGACCAAGCTCTTAGGATATGACTTTGAGATCCTTTACCAACCAGGGTTACAAAATAAACTGCAGATGCTTGGTCAAGAATGCCTCCTACAACAAAGTTGAACGCGGTTACCAGGTACTCCATATTAGATGTGGATCTCATCCAACAAGAAGCTGAGAAAGACTTGGCTCTACAGAAGATTATCCAAGAGCTGCAACAAGACCCCTACAGATTCATTGGAGCAGAGGGAGGTGGTTATCCCTTATTTTGGTGGTGTTTGGGTGTTTCCTTGGAAGTGTTTGTGTATCTTTCCGTGTAGGAGGTAGGATACCTAATAGATTCATTGGAGCACCATTCTTGGATCACCAAATCTTTCAAATCCTTCCTCACTGCTCCCTTGAATCATAAATTCTTCAAAGAAAACAGGGTTTATGGCCCAATTCTATGGATTGAATAGATATCTAGCAAGAAAGGTATACTGATACCTTCTGGTGAAGAGAGAAAGGGCTGGTTTTACAGCTCAAATGCTACCAACACCATTAATGTTGACCAACAACTTTCTTACTGGGGATGCCCTCCATACCAATGGAGCCAAAACTACAGGCAACAATGAGTTGAAAGGAAGGAAAACTGTGGGAGAGAATCCTGTTCCTCCACTTTCTACCTCCTTTATTGGTAAACCAAAAAACACAGGTACCCCTCGATCCCGTCAATTTTGCCACAAACTATATTATTGTTCTCAAGAGGAAGAATTTTCATGATGAATGGTACAAAGTACTGAGAGCCATCCAAGCAGAGGTTACAGCTTACTGTTCGTTAGCTCCTTCCAACCAAACAAGGCCATTGCGCTGTGAACATCATGAGCAAGCAAAAACCCTTGGATTCTACAAAGGATGGCAAACAGTTGACTCCATTGTCTGAAAAGCAAGTTAACCTAACCCATCTTCCAGACCTACAGCCCGCTGACACTTCTCCTTGGTATCTGAAAAGCAAACTTTCTATCCAAAAATAACGATTAACCATAAACCGACCACTTTTATTCCTAGTACAAAACACACTACTTCCATCATCCCTTTACCTTCAGATGCAGACACTGAGCATTATCTAACCAGCCTTTTACCTCCCCCTATCTCTCCATCACAATCCTTGTTATCTGGACCAATTGATGCTCCATGGTATGATTTTGTCCCTCCACCTTCTTCAGACATTGCTCCTTTGCACCCTGTTCCTCATCTGGTTCCACTGGCTCCTTTGTCATGAATGTGGCTTATGCATAATGGCCATTCTTTTGAAATATCAACACTAATCGTTGCTAATTAGGAACTTCTTTTAGAACAATGAAAGAATTGATACGATGGACCTTTTACCTAAATTTAGTGTCCTGTCTTCGGATGTTTCTAAGTTCAATGATATTAAGGTCAAGCTTGCCAAATACCTATATTTATTGGAGTGCTTCCAAATAAAGCACACAGTAGCTGAAGTTGGAGGCACCTTAGAACGTTGGATGATAAAGAAAAATGTAGATCATATCCACGGGGGAGACTTTGTTATGACCTTATAGTCGACTACACTAGGACAGTTGAGAACAAAGTTTTTGATTATGATCATATCCATGGGAAAGAGTTTAGATTATATCAATAATAGAGCCTGTTAGTAATAGATTCCTATCATTTTCTTCTCCTAAAACTTATAAATTTTTATCTAATAGATGTGAGAATAAAAAAAAGAATTGTCAAATAGGTTGAAAATTTAATAGACACAATTAAAATTAATGTCGAATAAAATATTTAATTTTTAGCCTCCATATAACTTAAGTGAAAAAGAAGTAGACCATGCTGTTTGTCTAAGCAATAATGCAAAAGTTTTGAATTTTGAGGTGGGTTGGCCTTTCATGTTGGTGCAGCTTAAGAAAGAGAATGAGGTGCTGATGGCAAGAGTAACAGCTGCTGAACTCCATCATGAGTCCATCTCAAACTCCAGCTTACTGGTTAGTATATCTTGCAATCTTGGTCTCTTTAGGGATTGGCTCAAATCTCTTTTCCATTTCTCAATCAACCATTATAATTAG TCTTTTTTTGGTTGCCGATACAATTTTCAGAGACGTAGGAAGAAGCATCCGCATGTTCGACTGCTTGAAAGCGCTTTAAACATAAAGATTGTCGAAATCGAGGCTCACATTTTTAGTTTGGACGAAATTTTTAATGTAAAATTTCGGGAAATGTCGAACATAACTGTTTGCGCTCGATTTCGGCCTTTGAGTTCAAAAGAGAGACAAGATCATGGAGATGCAGTGTGCATTCAATGTGTGGACTCCGAGACATTCATTTTTAAGGACGAGAAGACTGAAGAACTTACATATAGCTTTGATAGAGTGTTCTATGATAAATCTGAGCAAACTGATGTCTACCGATTTCTTGCTCAGCCAATTGTCCAAGATGCTCTTAATGCTGTTAATGGGACAATTATCACCTTTGGACAGACTGGAGCTGGAAAGACCTATAGTATGGAGGGGCCTGGCATACTTGAATGTGACGCAGCAGAGAAGGGTTTACTTCCTAGAGTGGTAGAAGGCATTTTTGAATGTACTAAATTAGCTGATGAAACGAGCAAGTACTCAATCAAGTTGTCTATGGTTGAAATCTACATGGAGAAAGTGAGGGATCTTTTTGACTTATCAAGGGACAATATACAAATCAAAGAGAGTAAAACACAAGGGATAATGTTAAATGGAATGACTGAGATGCCCGTAAAAGACCCTCCAGAAGCATTGCTAACCTTATCTAAAGGAATAGGCAACAGAGCAGTAGGAGAGACCCAAATGAATGTCGCCAGCAGTAGGAGCCACTGTATTTACATATTCACTATTCAGCAAGAATCAACCAAGGACAAGAGGGCCAGAACTGGAAAATTGAATCTGGTGGACTTGGCAGGGTCTGAAAAAGTGGAGAAAACTGGTGCTGAAGGGAGAATTCTTGAAGAAGCAAAGACCATTAACAAATCGCTTTCAGCTCTTGGGAATGTAATAAATGCTCTAACATGTGGACCAACAGGCAGAGGAAACCACATTCCATATCGTGATTCTAAGTTGACACGGATTCTACAAGATGCACTCGGAGGGAACTCACGTACTGCTTTGTTGTGTTGCTGCTCACCCAGTCCTACAAACTCACTTGAGACCCTCTCAACCCTTCGATTTGGTGCGAGGGCAAAGCATATAAAGGCTTCTCCTCGTGTTGCATATGAGGATAAATGTATCAGAGAGCTCGAAGTTTTCACTCCAGTAAAAAGGGAATTGCGTGACAAACTTCTCAATGAGGTGAGAAGCAGGGAATGGGACTTTATTAGCGGCCGATCAATTTGGTTTTACGTGAGTTTGGATATTGAGCAAGTTCAAATACTTGAGGAGCTGTTTATACAAGAAGGAATTCTTTTTGATCCTTGCTCCATTGAAGAGTCGGAATTAGCCAATGAAGATGTTGCTTCACAAACCATTTCTTCGTTGCAGCTAGCTTTGGAAGAACTCTTGAGCACCATCGCAGAGCTTAAGAAAGAGAATGAGGTGCTGATGGCAAGAGTAACAGCTGCTGAACTCCATCATGAGTCCATCTCAAACTCCAGCTTACTGGTTAGTATATCTTGCAATCTTGGTCTCTTTAGGGATTGGCTCAAATCTCTTTTCCATTTCTCAATCAACCATTATAATTAG TCTTTTTTTGGTTGCCGATACAATTTTCAGAGACGTAGGAAGAAGCATCCGCATGTTCGACTGCTTGAAAGCGCTTTAAACATAAAGATTGTCGAAATCGAGGCTCACATTTTTAGTTTGGACGAAATTTTTAATGTAAAATTTCGGGAAATGTCGAACATAACTGTTTGCGCTCGATTTCGGCCTTTGAGTTCAAAAGAGAGACAAGATCATGGAGATGCAGTGTGCATTCAATGTGTGGACTCCGAGACATTCATTTTTAAGGACGAGAAGACTGAAGAACTTACATATAGCTTTGATAGAGTGTTCTATGATAAATCTGAGCAAACTGATGTCTACCGATTTCTTGCTCAGCCAATTGTCCAAGATGCTCTTAATGCTGTTAATGGGACAATTATCACCTTTGGACAGACTGGAGCTGGAAAGACCTATAGTATGGAGGGGCCTGGCATACTTGAATGTGACGCAGCAGAGAAGGGTTTACTTCCTAGAGTGGTAGAAGGCATTTTTGAATGTACTAAATTAGCTGATGAAACGAGCAAGTACTCAATCAAGTTGTCTATGGTTGAAATCTACATGGAGAAAGTGAGGGATCTTTTTGACTTATCAAGGGACAATATACAAATCAAAGAGAGTAAAACACAAGGGATAATGTTAAATGGAATGACTGAGATGCCCGTAAAAGACCCTCCAGAAGCATTGCTAACCTTATCTAAAGGAATAGGCAACAGAGCAGTAGGAGAGACCCAAATGAATGTCGCCAGCAGTAGGAGCCACTGTATTTACATATTCACTATTCAGCAAGAATCAACCAAGGACAAGAGGGCCAGAACTGGAAAATTGAATCTGGTGGACTTGGCAGGGTCTGAAAAAGTGGAGAAAACTGGTGCTGAAGGGAGAATTCTTGAAGAAGCAAAGACCATTAACAAATCGCTTTCAGCTCTTGGGAATGTAATAAATGCTCTAACATGTGGACCAACAGGCAGAGGAAACCACATTCCATATCGTGATTCTAAGTTGACACGGATTCTACAAGATGCACTCGGAGGGAACTCACGTACTGCTTTGTTGTGTTGCTGCTCACCCAGTCCTACAAACTCACTTGAGACCCTCTCAACCCTTCGATTTGGTGCGAGGGCAAAGCATATAAAGGCTTCTCCTCGTGTTGCATATGAGGATAAATGTATCAGAGAGCTCGAAGTTTTCACTCCAGTAAAAAGGGAATTGCGTGACAAACTTCTCAATGAGGTGAGAAGCAGGGAATGGGACTTTATTAGCGGCCGATCAATTTGGTTTTACGTGAGTTTGGATATTGAGCAAGTTCAAATACTTGAGGAGCTGTTTATACAAGAAGGAATTCTTTTTGATCCTTGCTCCATTGAAGAGTCGGAATTAGCCAATGAAGATGTTGCTTCACAAACCATTTCTTCGTTGCAGCTAGCTTTGGAAGAACTCTTGAGCACCATCGCAGAGCTTAAGAAAGAGAATGAGGTGCTGATGGCAAGAGTAACAGCTGCTGAACTCCATCATGAGTCCATCTCAAACTCCAGCTTACTGGTTAGTATATCTTGCAATCTTGGTCTCTTTAGGGATTGGCTCAAATCTCTTTTCCATTTCTCAATCAACCATTATAATTAG SFFGCRYNFQRRRKKHPHVRLLESALNIKIVEIEAHIFSLDEIFNVKFREMSNITVCARFRPLSSKERQDHGDAVCIQCVDSETFIFKDEKTEELTYSFDRVFYDKSEQTDVYRFLAQPIVQDALNAVNGTIITFGQTGAGKTYSMEGPGILECDAAEKGLLPRVVEGIFECTKLADETSKYSIKLSMVEIYMEKVRDLFDLSRDNIQIKESKTQGIMLNGMTEMPVKDPPEALLTLSKGIGNRAVGETQMNVASSRSHCIYIFTIQQESTKDKRARTGKLNLVDLAGSEKVEKTGAEGRILEEAKTINKSLSALGNVINALTCGPTGRGNHIPYRDSKLTRILQDALGGNSRTALLCCCSPSPTNSLETLSTLRFGARAKHIKASPRVAYEDKCIRELEVFTPVKRELRDKLLNEVRSREWDFISGRSIWFYVSLDIEQVQILEELFIQEGILFDPCSIEESELANEDVASQTISSLQLALEELLSTIAELKKENEVLMARVTAAELHHESISNSSLLVSISCNLGLFRDWLKSLFHFSINHYN Homology
BLAST of CcUC03G052020 vs. NCBI nr
Match: XP_038879903.1 (kinesin-like protein KIN-1 isoform X7 [Benincasa hispida]) HSP 1 Score: 851.3 bits (2198), Expect = 4.7e-243 Identity = 442/495 (89.29%), Postives = 460/495 (92.93%), Query Frame = 0
BLAST of CcUC03G052020 vs. NCBI nr
Match: XP_038879900.1 (kinesin-like protein KIN-1 isoform X5 [Benincasa hispida]) HSP 1 Score: 839.7 bits (2168), Expect = 1.4e-239 Identity = 442/514 (85.99%), Postives = 460/514 (89.49%), Query Frame = 0
BLAST of CcUC03G052020 vs. NCBI nr
Match: XP_038879898.1 (kinesin-like protein KIN-1 isoform X3 [Benincasa hispida]) HSP 1 Score: 831.6 bits (2147), Expect = 3.8e-237 Identity = 442/535 (82.62%), Postives = 460/535 (85.98%), Query Frame = 0
BLAST of CcUC03G052020 vs. NCBI nr
Match: XP_008443776.1 (PREDICTED: kinesin-like protein KIN-1 isoform X1 [Cucumis melo] >XP_008443777.1 PREDICTED: kinesin-like protein KIN-1 isoform X1 [Cucumis melo] >XP_008443778.1 PREDICTED: kinesin-like protein KIN-1 isoform X1 [Cucumis melo]) HSP 1 Score: 821.2 bits (2120), Expect = 5.2e-234 Identity = 427/495 (86.26%), Postives = 450/495 (90.91%), Query Frame = 0
BLAST of CcUC03G052020 vs. NCBI nr
Match: XP_038879896.1 (kinesin-like protein KIN-1 isoform X1 [Benincasa hispida]) HSP 1 Score: 820.1 bits (2117), Expect = 1.1e-233 Identity = 442/554 (79.78%), Postives = 460/554 (83.03%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy Swiss-Prot
Match: Q8GW44 (Kinesin-like protein KIN-1 OS=Arabidopsis thaliana OX=3702 GN=KIN1 PE=1 SV=1) HSP 1 Score: 537.7 bits (1384), Expect = 1.5e-151 Identity = 279/447 (62.42%), Postives = 344/447 (76.96%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy Swiss-Prot
Match: F9W301 (Kinesin-like protein KIN-1 OS=Oryza sativa subsp. japonica OX=39947 GN=KIN1 PE=1 SV=1) HSP 1 Score: 519.2 bits (1336), Expect = 5.5e-146 Identity = 272/459 (59.26%), Postives = 354/459 (77.12%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy Swiss-Prot
Match: Q54UC9 (Kinesin-related protein 3 OS=Dictyostelium discoideum OX=44689 GN=kif3 PE=1 SV=1) HSP 1 Score: 320.1 bits (819), Expect = 4.9e-86 Identity = 172/385 (44.68%), Postives = 252/385 (65.45%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy Swiss-Prot
Match: O43093 (Kinesin heavy chain OS=Syncephalastrum racemosum OX=13706 PE=2 SV=1) HSP 1 Score: 293.5 bits (750), Expect = 4.9e-78 Identity = 166/338 (49.11%), Postives = 220/338 (65.09%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy Swiss-Prot
Match: P48467 (Kinesin heavy chain OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) OX=367110 GN=kin PE=1 SV=2) HSP 1 Score: 293.1 bits (749), Expect = 6.4e-78 Identity = 166/342 (48.54%), Postives = 223/342 (65.20%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy TrEMBL
Match: A0A1S3B9L9 (Kinesin-like protein OS=Cucumis melo OX=3656 GN=LOC103487286 PE=3 SV=1) HSP 1 Score: 821.2 bits (2120), Expect = 2.5e-234 Identity = 427/495 (86.26%), Postives = 450/495 (90.91%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy TrEMBL
Match: A0A6J1I0G1 (Kinesin-like protein OS=Cucurbita maxima OX=3661 GN=LOC111467867 PE=3 SV=1) HSP 1 Score: 820.1 bits (2117), Expect = 5.6e-234 Identity = 427/494 (86.44%), Postives = 445/494 (90.08%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy TrEMBL
Match: A0A6J1HAP0 (Kinesin-like protein OS=Cucurbita moschata OX=3662 GN=LOC111462100 PE=3 SV=1) HSP 1 Score: 819.3 bits (2115), Expect = 9.5e-234 Identity = 426/494 (86.23%), Postives = 444/494 (89.88%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy TrEMBL
Match: A0A1S4DUZ1 (Kinesin-like protein OS=Cucumis melo OX=3656 GN=LOC103487286 PE=3 SV=1) HSP 1 Score: 818.5 bits (2113), Expect = 1.6e-233 Identity = 427/495 (86.26%), Postives = 448/495 (90.51%), Query Frame = 0
BLAST of CcUC03G052020 vs. ExPASy TrEMBL
Match: A0A6J1HXZ4 (Kinesin-like protein OS=Cucurbita maxima OX=3661 GN=LOC111467867 PE=3 SV=1) HSP 1 Score: 817.4 bits (2110), Expect = 3.6e-233 Identity = 427/494 (86.44%), Postives = 443/494 (89.68%), Query Frame = 0
BLAST of CcUC03G052020 vs. TAIR 10
Match: AT3G63480.2 (ATP binding microtubule motor family protein ) HSP 1 Score: 537.7 bits (1384), Expect = 1.1e-152 Identity = 279/447 (62.42%), Postives = 344/447 (76.96%), Query Frame = 0
BLAST of CcUC03G052020 vs. TAIR 10
Match: AT3G63480.1 (ATP binding microtubule motor family protein ) HSP 1 Score: 531.9 bits (1369), Expect = 5.8e-151 Identity = 279/451 (61.86%), Postives = 344/451 (76.27%), Query Frame = 0
BLAST of CcUC03G052020 vs. TAIR 10
Match: AT3G23670.1 (phragmoplast-associated kinesin-related protein, putative ) HSP 1 Score: 234.2 bits (596), Expect = 2.5e-61 Identity = 144/378 (38.10%), Postives = 219/378 (57.94%), Query Frame = 0
BLAST of CcUC03G052020 vs. TAIR 10
Match: AT3G19050.1 (phragmoplast orienting kinesin 2 ) HSP 1 Score: 234.2 bits (596), Expect = 2.5e-61 Identity = 146/361 (40.44%), Postives = 212/361 (58.73%), Query Frame = 0
BLAST of CcUC03G052020 vs. TAIR 10
Match: AT3G23670.2 (phragmoplast-associated kinesin-related protein, putative ) HSP 1 Score: 234.2 bits (596), Expect = 2.5e-61 Identity = 144/378 (38.10%), Postives = 219/378 (57.94%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (PI 537277) v1
Date Performed: 2022-01-31
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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