Sed0011250 (gene) Chayote v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTTTAAGGCTCCTCTGTTCTTTAACCTTAACCCTTTTAAACCCCCAAAACCAAATTCTCTACATTTTCCCCTCTTCAGCTCTGATTCAGGCAGTTCTTCATTTTGTTTCTTTGTTTTGGAAAAAAACCCTTTTTCCTATTCTCTTTATGAATGTTGAATTCAACTTTTTTAAAAAATTTTTTTTTTCCTGTTCTTAGAGATTGTGTTTTGATGTTTTAATTACTTCTTTCAGGTTCCTGCCCTTTAAAGGAGTGCTCTTTCTCAAATCTTGCTCATTTCTGACTCTGCTTTGAGCTCTTCTTTGGTTTTGGATTTTTGGGTATGTTTGGGAGTGATTTTGAAATGGTTCATATATTTTTTTTTTCTTATTATTATTATTTTTTTTCCATATTCAAATTGCCCCAAACGTGCTTGGTGTGATAATCCATTGATATAAGAACAGATTCAAACTTAAAGTTGGTTTTGGATGATTAAGTTTAACTGATTTTGTGAAGTATTTTATGTGTGACTGTGTTGTTTAACCTGTTGTTGTGGCAGTCTGGGCTTGTAATGGAAATGTACCTTACTCAAGGGTAGAGATTGGAAATGTATTGTGATTGAGTAAGAAGCTGAAAGAGGACCGAAGCGTAGCCAAGCAAGCGCAGCGAAGCCAATTGACCTTGTGGTTTTTGTTCCTCACTCTCGTATAGGTGAACTTGGTTCGTTCAATTCTTAGGGAGAAGAAGGATCCACTGGGAATGAATGGGGGTTGGGGTTCTGCAGTTGAGGATAAGGATTTGGGGGAAAAATCTTAACTTATTTTGGATGCGCCGAGCTAATAGGATGAACTAAATGAGGCCCATGACTCTCGAACAAAGCAATGGATTGGATTTAGAAAACTAGGAAATTTAGAAGGGTGGATGTGGCTGCTGCTTTTCTGGGAAGACACATGGGTGGCGGATAGGCGCCTTTGTATGATTTTTCCCTACCCCTACCATTTTTCGTTAGGTGCTGTTGTTTGTGAGTCCTAGTCTCTTTCCTCGCCTGGGCTTTAAGCGTTCCTTAACTGATAGAGAAGCGATAGAGGTCATAGACCTCTTGTCTTTAATTGGGGAGATTCAGAGTGAGCATGTCAGAAGAGATATTCGCTTGTGGTGTTCTTGCTTGTCCAATGGCTTCTATAGCAAATATTTCTTTTCTTGTGTGGTTAGCCCATCTCCTGAGTTGTTGATGGGAAATTCTTAGTTTGCCTCAGTTTGGAAGGTGAAAATTCCAAAAAAAGTAGAGTTTTTTTATATGGTAGATTTGGCACAACAATGTGAATGCTGTGGATAGGGTGGTGAAAAGGATGCCTTTTGTGATGCATCCTTGGTGTTGTATTCTTTGCATAAGGGATGTTGATGATCTAGAAGATCATCTTCTTTGGAGATGAGATACAACTGTAGCTATTTGGAATAGTTTTTTTTTTTTTTTTTGGCTTTTGATGTTGCCTTAGCTAGACATAGTTTAAGGAGAGGGTGATCAAGTGTTTAGACCACCTTTCTTTTAGAGAGAAAGGTAAGTTCTTTGGCAGGCTAGAGTTTGTGCTATTTTGTGAGGTCTATGGGCTGAAAGAAACAATAGAATCTTTTGAGGGAAAGCGAGATCTCCATATGATATTTGGTCCCACATTAGATTCAATGTTTTTCTTCAGGCCTCCATGACTAGGTTATTTTGTAATAATTCGTTCGGTCAAATTTTGTTAGATTGAATTTTTGTAGGCTCTAGTCCTTTTCCTTTTCTGTGGGCTCTTCTTTTTATATGCCGTGTATTCTTTCAATTTGTTCTCAATAGAAGTCCGGGTTTAATAGTGGTTTTCCCTTATATTAGAATAAATGATGATTGTTCGATGATTACCGATTATCGATTATTAATGAATCCAACTACTTTAGACCTAAAGAGGTAGAGAATGGCATGGTACTTGCCAGGTTATGGTCTTCAATTTTATTTTTTAACTGACAGAGTCTATTATTTTACAGTCACAGAAAACTCAGTTTATTCTCCTAAAGGTGAAGTTTCAAGCAGCCCCGACCTTAGTTCTAGCAACCACTACTTCAAAACTTTATGGTATGCACTTTCATGAGATACTATGCTGTATCATCAGAAACTTAAATGCACGTGCATCAGCATAAACGCGCTCTTATTTCTGATCCTCAGGCCAGCAATAAGCCTATTTTACCAAAGGAAGAGGTATTCGACTTCAGGTTGCCTCCCGAACAGATGTACTCGAGGCATGTCGGAGTGCGTATATCTCTAACCTTATTGTTGAAATTAAACTCCTAACAATCGGTCTTTACACTTATGCTTCCAATAGATAAAAGTTTTTGTTTGACATTTTTATTTCAATTGTTATTGCCACTTTGGGCCTGCAATCCATTTGAAAAAAGTAACAATTTTTATCAGCAGTTAGATGTTATTTCTGGTATGGATTGAATATTTGGAACATTGTTGTTTCATTCTATGCATGTCATTTGTTATATTTCCTCGTGTGGAAAAGCTTACAGAAACTAATCTGCTCAAATTTTCGGCTCGTAATAATTTCAGGACAGTGGTGCAGGATCATCTGGAAGTAATATAAGGATGTTCTTCGTAGATATGGGGTTCCGTCCATCTCTTGTCGATAAAGTGATTGAAGAAAAGGGTACTTCTGTCATTTTAATTGTTAGGAAAACAATACCTTTCTCATTAATGAGGACAATAAAGTATGTTGTTTACCTTTACTCTATAGAAAATTGAGAAGTGAGAGCTCTATCCTTTAAGGTTACACCATGAATTTTCTCCAAAGCTCAAGGAAAATTTCACTAGAAATGTAATAATGACCTTGAAATGTCCAGTTTGTATAGAATGTGATAATAATCTCTACTAAGAGCTTTGTTTCATCTTAAATCCAGGTGAAGATGATGTAGAGCTGTTATTAAATACCCTGACTACCTATTTGGTAAGTAGTTCAGATAACCGGTCTCATTGCGAAAAACTATTGCAGTATTATTGAATTACTAGTCTTGGGAATTCAGTTTTAGTTTACAGTATGTATTAAACTCAATTGTTGTTATCAGCTTCTTAAATTGTCCCCAAGGGGAAACCTTGTTGGTACAACGTAGAGACTTGAAGTCTCCAAAGTATGCTCCCTTGGAGATTCTAGCTTTGAAACCTAAATCCCTTGTTGTCTCTCGAGTTCAGGCCTTGGGACGGGTGCAGATGCCTTAGGGAATGTATTTAGGCGAAGCTCTGATTCTCTATTATATATAAAAAAAATCTTCTCAAGGTCCCATTTGATAACCATTTTGTTTTTTGTTTTTGGTTTTTGAAATTTAAGCCTACAACTACCTTACCAATTGTTCCCAAGGGGTGACGCAGTGGTTGAAAACTTGGGCTTTGAGGATATGCTCCCCTCAAGGTCTTAGGTTCGAGACTCACCTGTGACACTACTCCTTCGATGTCTCTAGTGCCTGGCCTAGGGACGGGCGTGGTTACTCTTGTTTCAAAAAAAAAAAAAAAACTACTTTGCCATATGTTTTTTCTTACTTGGATTTCTACATCTTACCTCTATTTGTAGAAACCAAACCAAAATTTAGAAACAAAAAAAAGTAGCTTCCAAAAGTTTGTTTTTGTTTTGAAAGTTGGTTAGCATTCACATACTTTCTTAAGGAAAGATGGAACACATCGTACAAAATTTGAGTAAGAATAAACTTAAATTTCAAAAACCAAAAACAAAAAACCAAATGGTTATCAAACGGGGCCTAAATTTTTCAACTTGTGGTTTTTGGTTTTATGCCTTATAGCATTAAAGTTTCATCGGAAAAGTGAATGAGTTGCTTTATTAATTGACTAGACAGAACAAAAATCAATCCATGAGTCATCAGGTTCTCTTAATGGCTTACGAAGTGTTAGCAAGAGCACTAATCCTCCAAATTTTGCTGCAATCTGTTATAATCAGGTAAGCTTTCAACTGTTTTAAGTGCAATAAAGCTTTATTTAATCCCCCATTGATATCGTATATGTGAACTTTAATGTGACCGAATAGTCGTCGTATTTTATTCATTAGACTAACAAATATATAGGGACACGTAAACTGATATGATCTACCACACTCTTTTATTAATCTAAGATAAACCTCTCGAGAGAATCTCTCAAAGAGCCGCAATACAATGATGATAATTCAATGGATGATTAATAAAGACCTAACCTCTCCTATTTATAATGACTCTAAACCCTAGCCTTTCTACTTGTTCTCCAAGTAAACCCCTAATTAAATAATAATCTCTAATAAAGCCCAAAAGCCCAATACAATTGAAATAACAATTAATTAATCAATAATAAATACTAATACTACTATTCCTAAAACTCCAAGGTAGGTCCGGATCGTATCAATACTTTCCCCCCAAAGAGCCACCTTGTCCTCAAGGTGTTCCATCTCCGATGCCACCTTCTGCGACTCCATCTTACGGCAAAAAATCAGTCACCTCAACATCACGGTAATCGATGCGCATCCCGACGACCCATACATCAAATTCTCAAGTTCTTTCTTCTTACAACGATGTCACTGGGACAAATTGTTCATCGCAATGGAAACATAACCCTTTGTCCTTCCTAGCTCGAATTTGGCTTGGTGAGTTTTTACAAGGCGTCGGGTGAGCGGTTGTAGTTACGTAGGACAAAATCTCTGTGCTTCCGTTCTCGATCCAATCGTTCCTACTTTAGCCTTAACTGTTGCAGAAGTACTTCCCTCATTTTGGGTAGCCTGAAAAACAAAATCATCCTCAATCACTTGGGCCATAAACATTTTCTCTTCAATGCCCACTGGTCGTAGTTTACGCATCGCGCTCCGTATCTCCTCTTTCGGTCCACTTTCCCACTTCCTCCAATGCACTCATGCGATATCGCGCATTCCCTTAGCAAAGCGCTCAAAGCTCTGCGATATTCCTTCACCGTTCCTATTTGCTTCAAACTCATGAAGTTGGCATACTTATTGGCTTGGGCCACGGTTGGAAACGCTCCAACAACCCATCTTTGAATTCGTTCCACGAACGAAAAAGGAGCAGTCCTCCTCATCACTGAAGCCACTCCAATGCCTCCTTCCAAACATAACCTGCGCCTCAACCCCTTCATATTGATCGGCTTGTTTACAGGAAATAACGCTCGACCCGACTCAACCATCCTCAGGATCCTCATCAACAAGACCCTTGAAAATCGGCATCTCCAATTTTCTAAATCTCCTATCACATCCCGGTCCCTCCCTTTCTAATGCTCTCTGTCCTCCCCGTTCAAATCTTTCTTCTCCCCTCCGCTCAAATTCCCGTCTCGTATTTCTGAAACTGTCACCCCATCCACGATCGTTCCAACCATCATGTGCTAGCGGCCTTTCATAACCGATGCGCACCCTCCTCTCTTCTAACAACCCATCTCCTCCCCAATCACCTCGGAGAACTCCTCGTCGATCACCATCTGGACCGATGCCCCTATTTCCGTCAGAATTCCCCTGAATATCCGTCCTTCGGTCCAACCTGACTCGCCCAGACCGACCCGGCCCGACCAGCCCGCCCCGACCCGGTCCTCCACGAGCCTCGCCCCGCCGCGCGCTGACCCGAGCCCACCGCCCGGCCTTGCTCGGCCCCGACTCGACACCCCATGCTCGCGCCCGGCTTGAGGCCTCGCGCGCGCTTATGCCGGCCCCAACCCGAAGTCTGGTCCCCCCTGGGCGCCGCCGTGCCACACGCCTCCCGAGCCCGCGCCGCGCCCCACCCACGCCTCGACCCGCTCGCCCGGCTCCTCACACCCCACGCCGCGGCACGATCCGGATTTCGCCGCCGGACCGCGCGCCCAAAGACCGCTCGTTGCGGACCCCATCGGCGAGTCCGCGCGCTCGCTCCTGCCCACGTCTCGGAAATCCCCGCTTGCCCTCGTAGCCTCACGCCCAGCTCCTCCCGGCCCGACACCCCCCCAGCCCGGTCCCCAGCCCGCACGCCCAGCGCTTCCCGCACCCCTCGCGCCGAACGCTACCCCCAAGCCACCCACGTCACCTGCGCCGCTCGCGCTACCTAGCCCCTCCGAGCCTGAGTGTGCGCCCCCCGACCCCACGTCGCCCTGGCCCTTCGCGTCGGCCCACCCTGCCGCGACCTCTGCCGCGCCACGCTTCGCCTCGCCGACCGCCACAACCCCTGCGTCGCGCAAGAACCAGAAGCAGCCGCCCGCTCGATCCCTCCCCCGTAGCCTCAGGCATCGAGCCCTTCCCCTTGTCCGCTCGGATTATCTCCACTAAAAGTTCCAGATTTCGGTTCATCGTCTCGAGCTTCGAATCCTGCAAATCCATCCTTTTCCCTAATCTTTCTTCCATCGCTTCCATCCTCGCGTTAGTCTCCTGTAACTTCTTGGCCAAGTCGGCCGTTCCTTCTTCACACTCTTGCATCCTGGATTCCATCTTAGTAGTAACCATTCCCGGATCGGCAAATGGCTCTGATACCAAAATGATATGATCTACCACACTATTTTATTAATCTAAGATAAACCTCTCGAGAGAATCTCTCAAAGAGCCGCAATACAATGATGATAATTCAATGGATGATTAATAAAGACCTAACCTCTCCTATTTATAATGACTCTAAACCCTAGCCTTTCTACTTGTTCTCCAAGTAAACCCCTAATTAAATAATAATCTCTAATAAAGCCCAAAAGCCCAATACAATTGAAATAACAATTAATTAATCAATAATAAATACTAATACTACTATTCCTAAAACTCCAAGGTAGGTCCGGATCGTATCATAAACCTAGAGATACAAGGAAGCCCTAAAGATGTACAATTACCAAAAATGCCGAACTTAAAATAATGCACATAATTAATCATATATACTAGAACAGTATATCTTGGAGTTTTTGCTGTTCCATCTATTTGGTTCATTGGAAAAATAGGTTTGTTAGGATGAAATGATGAAGAAAATCTCAATGCCTTAACTTTGCAGCAGTATGTAGTCATGGCTGTATAATTTGAATCTGAAAACTTTATATTTCTTTAGTTTTGGCTCTTCTTTCAGTTATAAAATAACTATATACAAATTGTTTCCTTTAAAAGTTCATGCCATTTATTTAACATAATAGGCTGGTCGGACCTCAAAACCCGAATCATCAGATTCTCTTGATAGCTTATTTGGTGACAAAGATGCAAGCAATGAAATCTCTTCAGCTGTTATAACAAAGGAGGTAACCTAATATTGATGCTTCTGTCTTTAATATGTAGTATATATTGTTTTCTTGAATCAAAATAGTATTTTTTGTTTTTTGAAACATCAAACATCCTTAAACCAAATGCAATTTATGTAATTCTCGCTCCCGCGTGGGTCCAATGGATTAAATAGGACTAGCAGTGTCACTGCTACATCGAATTTATCCTCTTCCCTAATAGATTATTCTGGGTAGTGATGTTGGTTGATATAATTAAACTTACTCCAACCCATCAACTTAAGCCTTTGGGTTGATTGGTGATATAACTTGTTTTAACATGGCATTAGAGTCCATTAAACTTAAATAGGTATTCAATTCAATAAAAATGAAATTGAGATCCGATCTAAGATTGGTGAACTCAAACGAGACACTATCTTGAGGAGGCATGTTGAGGATTCCGCATTGGAAAGGTGAGGAGACCTCCTAATATTTATAAGATAGGTAGGCTACTCATTTCATCACTAGTTGGTTTTGAGATAAAACCTCATACTATCTAATATGGTATAAGAGCAGGATGTCATGTGTTCAAATCCTTGCCGAATCCGTTTCATCCCCAATTTAATATTGATTTTCACTTGATGGACATTCTCAAATTTTCAAGCCCACAAGTGAGGGGAATGTTGGTCGATATAATTAAATTTATTCCAATCCATCATCTTAAACTTTTGGGTTGGTAGTGATTTAACATATTTCAACAATTATTGTATCTTCTTCTTTGCGTTTGTTTGTGTTTGTTTATCAGTATAGAAAATACTAATAGCTAGAGGCTTCAAGTTTTTTTTAAAACTTTATAGCTGATTATACCCATTGCAGGAGGTGGATGATTATTATGGAAGTGATGATACCATTAAATCATCCTTATTAATGATGAACTTTACTGTTGATGAAGTTAACTTTGCGATCGATAAGCTTGGTTAGTACACTTCCCGGAATAGTCAACTTGAGTGAAGTTATCGACAAATACTTATGCAGCTGTGATGATTTCTTATAATGCATTTTCAGGTGGAGATGCTCCCGTTAATGAGTTGGTCGATTTTATTATAGCTGCACAGATCGCCAAAAACTTGGAGAAGGAAACCGATGAAACCTTCTGTAGAAATGAATTGAAAAAGGAGGTTTTTCATTATGTGAGTTCATATATGCGACAGTTTTTATTTTTAAGTGTTGTATGTTTACTTTAGCGATTTTACCTAAATGATCTTTTAGTTATTGAGTTGACCAAGTTGATTACTATTTTGTATTATCTAACTTTTCTTAGTCCGTCTACTTTTCGCATTGTACTCAAGAGGGTCTTGGAGAACTAAGAGAGGACAAGTTCAATCATAGTGGTCACCTATTTAGGAATTACTTTCTTACGGGGTTCTTTGACATCCAAATATCGTAGTGTCAGACGGTATGTCCTGTGAGAATAGTCGATGTGCACATTTACTTTTTGCATTGTGCTCAAGAGGGATTTCGGGAACTAAGAGGTGATGGGTTCAATCCATGGTGACCATCTATCTAATAACTATTTTTTACGAATTTTCTTGACGTCCAAATGTTGTAGGGTCAGACAATACCGTAAGAATAATTGAAGTGCGTGTAACGTAACTTGATCCAGACACTCATGGATACAAAAAAAAAAAACTGCTCACCATATTTAGAACTGACATAATCTTTTATTCTTGTATTTTATGTTCTTGATGTTAGTCTAAAATTATTCCTCAGGAAAATGATGAAACTTTGTTTGTGACTATGGAGAAAACACTTCGCTTGCTCGAAATGGGTTTCTCTGAGAATGAAGTTTCTTTGGCAATTGAGAAGTTTGGTAAGCATACTACTCCTAACAGCAGGTCACATAGCAAGTGATTAGTGGAGTCATCTCATTGGTTGGTGTATAATTGTTTAGGCCAAAATTGATAACTATTTCGGCTTTGATTTTCGGTTTTTGAAATTTAAGCATATAAATTCTACTCTCACCTATAACTTCATTGTTGTGTTATCGATCTTTTGTCTATAATTTCAAAAACTAAGTCACATTTTGAAAATTTAAAATTTCAAAAACTTGCTTTTGGTTTTTGAATTTGGAATTCAAATACTTCCTTAAAAGAGATGAAAAATCATGATAAATTGAAAGAAAATGACCTAAATTTTCAAAAAACCAATAGTTATGACCCCATTTGATAACTATTTGGTTTTTTGTATTCCATATTTCCTTAAGAAAGTAGGTGAATACTAACCAAATTTCAAAAACAAAAACAAGCTTATGGAAACTACTTTTTTTTGTTTTCAAATTCTAGTTTGGTTTTTAAAAATATAGGTAAGATATAGATATCCAAGTAAGAAAAAACATACGATAAGGTAATTGTTGTCGGCTTGAACTTCAAAAACCAAAAACTAAAAACAAAGGCCCCATTTTGATAACCATTTGGTTTTTGAAATTTAAGTCTATTTTTACTCAAAGTTCCTACAATGGGTTCCATCTTTTCTACGATATATCCATATTTCCTTAAGAAAGTATGTGAATACTAACCAATTTTTAAAAACAAAAACAAATTTTTAGAAGCTACTTTTTTTGTTTCTAAATTTTGGTTTAGTTTCTAAAAATATAGGTAAGAGGTAGATAACAAAGTAAGAAAAAACATATGGTAAAGTAGTTATTGTTGGTTTAAATTTCAAAAACGAAAAACTAAAAACAAAAGGGTTATCAAACGGAACCAAAATGATTATCAAACAGGGCCTATCTAACCGTGGCCTTAGTTCTTTCGATTTGAAAATGATATGTTTTGGGCTTTCTGTTCATTTTGCTCTAGGAGGCCAATTTTCCATCCAACTTCACCTTTAATTTTTTGTGGGAACTGCATTTTGGCTTTCTCATGTCTAATGTTAAGCCATTAGTGGAGGCATTAACTAGCATCAATCTTCCAGGTTCGGACATGCAAGTTTCGGAACTTGCCGATACCATTGTTACCGGTCGAATTGCTGAGGACTACCCTGGGAATGATGAGGTTCTTACCCTTAAACTTCGCCAGTCAATTTTTTTTTTCTTCTTTTCAACAAGGAAGCTTTTTGTTCTCTAATTCTTTAGAGATACAAACTCCATGATAGATGATAAAAAAAACATATGCATACCCAATAATTGAGGCGAGGGATTCAATCCCATGACCTCTTGGTTCGTAGACACACACTTACGTCACTGACCTGAGCTCTTGTTGGCTTTTAGACTAACAAACTTAAATGAACATATACATGCCCCTGAAAATTGAACTAAGAAACTTGATAGAACAAGTTTGCGAAGATCTTGAGGCTCGAACCAATCACGAGTCTCGAAACCGACAAGTTATAGCCACTGAGGACAATAAAAAACCTCTCAAAACACAGGGAAGTTCTGTGACTGTACTTTGCTAGTAAAAGTATTTGTACTTAGCCTTCTTACTGTTCTTTCTTTGTGGTTCTCATCTGTTGGCTTTCACTATCTCTAAATCTCTTTTTCCTCAGAACCTAGGTATGTTTTTTAAACAAAAATTTCTCATTGAAAAACAGTAAAACACATACATAGCCTAAACAAACAATAAATAAAATATCCAACTCTATCCCAAATTTTGTCAGCCTCTTCACTCTAGTATAAAAATTACATTTTTCATTCTATAAAAAATCCTTACCTAAAGTCACCTTTTTTTTTATGATCGGGAGTCGGAGCTTTGCTCTCCTAATATCTGGGGCAGTGCATTGTTCCTTTTCCTAGGATGCAACATTGGGAAGGGTGGAATTAATAGCACAAGCGGGTCTCGAACTTGGAAGCTCAAGGAGAGCATACCCTCCAAGCTCAAGCCTTCGACTAACTGTGCCACCCTCGACATTTTAAAAATAGCATTTGTTAACTTTGTTTGAATTCAATAATTATATTCTGCTGTTGGTAAAATATTATTTGGGAGAATCAGCTAGTTGGAGATCAAGTTTTTATTATAAATTTTTGGTTAAAATACTATTTTGGTTCTTGAATTTTGGTGTTCTGTTCCATTTTGATCCCTGAACTTTCATACATCCAGATTTAGTCCATCAACTTTTGGTGTTTGTTCCATTTTTGTTTCTTAACTTTCAAAGGTTAAATTTTAATCCTTGTACTTTCTAAAATGCTCAAATTTAGTCCTGGTTGTTAAAATGAGGTTAAGTTTTCCTTTAAAATGAGATGAAATGCAAAATTATATTTTCTCTCTCCTCAACCTTCTCTCTTCTCAATCATTCTATCTCCCCATTCCAAATAACATAGGTTGAGGAGAGAGAATTTTTATTTCTTCATTTCATCTCACTTTAATGGAAAGTACAGACTAAAATTGGACATTTGAAAGTTTAAGACTAAAATGGAACAAACACCAAAGTTAGGGACCAAAATGGTATTTTAACTATAAAAAAAATTTGGGTTCTATGTTCTTGTGCAGCTTATTTTGTTATTTCTTGTATTTTTTGGTTAAGTATCTGGTACTACCAACATGCTTCTAGTATTCTAAAACCTTATTTTATTTCCATGGCTTTGTGCAGCGTTCATCAAACTCATTCTGGATTGGTGGTTTACATATTCCAGAAGTTAAAGCTGAGGAACCGAGTTCAGCTGGAGTTTCTTTGTCAAGGAATGTTACCATTGAGGAAATACTGAAGGGAAAAAGGCCAAAAGAAGAATATATGGATGACGTTCCGAATCCAATTCCTCGTTTCGATGCTAAACATAAAGGGAAAAGGCCAAAGCCAGAACATGCTGATGACTTGAGCTCTCTCTATGGTCCTGAATGGTTGGAATCAAAAGTAAATCCAACAATCGCCGGATTCAACATGCCCCCCCCGCCTTCAAAATTTAATCCTTCAAGAACTCTTGATAAGGTTGTGGCTAAACCTCCATTTTTCTTGTATGGAAATGTTTTGGATGTATCTCGAGATTCTTGGGAAAAAATTTCCAAGTTCCTTTATGCCATTGACCCTGAATTTGTCGACACTCGCCACTTCTCTGCCTTGAGTAGAAAGGAAGGTTACGTGCACAACCTTCCGTGCGAAAACCGGTCCCACATTCTCCCGAAGCCTGCAATGGTCATCGAAGAGGCTATACCGCGCACAAAGAAATGGTGGCCTTCTTGGGATACAAGGAAGCATTTGAGCTGCATTAGTTCTGAAACTAGAGGATTGCCTCAGCTGTGTGATAGGCTTACAAAGACAATGACCGATTGTCGCGGCGAGCTCACGTCTCAACAGCAGAGAGACATTCTTCATCATTGCATAGCTTTGAACCTTATCTGGGTTGGCCAGTTCAAACTGGCTCCTGTAGAGCCTGAACAGTTGGAGCGCGTGCTCGGTTATCCGGTTAATCACACTCAAGATGCTGAAAGTAGCTCAATGGAAAGGCTTCAAATTCTCAAGTATTGTTTCCAGACTGACACTTTGGGTTATCATATCTCTGTTTTGAAGTATATGTTCCCAGAAGGGTTGATTGTGCTGTCCATTTTCAGTGGCATCGGTGGGGCGGAAATTGCATTGCACCGTCTTGGTATTCATTTGAAAGTCGTGATATCGGTCGAGAGTTCAGCAGCGAAGAGGAGGATTTTGCAGAAATGGTGGCGTAGTAGTGGACAAACTGGGGAGCTGGAGCAGATTGAGGACATCCAGAAACTAACAAGCAACAAGATTCACAATTTGATTAAGAAATATGGTGGTTTTGATTTCGTAGTTTGTCAGAATCCGTGTTCTCGTTGTTTGTCGTCTTCGAAAATGAGCGGAGACGCCGAGGGTGTAGCAAGCTTTGATTTCTCTATATTCTACGAGTTTGTTCGTGTTCTTCAGGGTGTAAGGAATACCATGGAAAGAAAGAAGTGACAATGTTCAGTTCATCTCCTTGTTCTATCTGGTATTATTAAATTCACAACTCATAAACAGACTAAATTATATTGTGATTGATTAAAAATTTCCAGTCCCTTGACTCCTGCATATGTTGATTACATCCAACTGCTCTAATTCGAAAAGTTTCAGGTTCTG TTTTAAGGCTCCTCTGTTCTTTAACCTTAACCCTTTTAAACCCCCAAAACCAAATTCTCTACATTTTCCCCTCTTCAGCTCTGATTCAGGTTCCTGCCCTTTAAAGGAGTGCTCTTTCTCAAATCTTGCTCATTTCTGACTCTGCTTTGAGCTCTTCTTTGGTTTTGGATTTTTGGTCTGGGCTTGTAATGGAAATGTACCTTACTCAAGGGTAGAGATTGGAAATGTATTGTGATTGAGTAAGAAGCTGAAAGAGGACCGAAGCGTAGCCAAGCAAGCGCAGCGAAGCCAATTGACCTTGTGGTTTTTGTTCCTCACTCTCGTATAGGTGAACTTGGTTCGTTCAATTCTTAGGGAGAAGAAGGATCCACTGGGAATGAATGGGGGTTGGGGTTCTGCAGTTGAGGATAAGGATTTGGGGGAAAAATCTTAACTTATTTTGGATGCGCCGAGCTAATAGGATGAACTAAATGAGGCCCATGACTCTCGAACAAAGCAATGGATTGGATTTAGAAAACTAGGAAATTTAGAAGGGTGGATGTGGCTGCTGCTTTTCTGGGAAGACACATGGGTGGCGGATAGGCGCCTTTGTATGATTTTTCCCTACCCCTACCATTTTTCGTTAGGTGCTGTTGTTTGTGAGTCCTAGTCTCTTTCCTCGCCTGGGCTTTAAGCGTTCCTTAACTGATAGAGAAGCGATAGAGGTCATAGACCTCTTGTCTTTAATTGGGGAGATTCAGAGTGAGCATGTCAGAAGAGATATTCGCTTGTGGTGTTCTTGCTTGTCCAATGGCTTCTATAGCAAATATTTCTTTTCTTGTGTGGTTAGCCCATCTCCTGAGTTGTTGATGGGAAATTCTTAGTTTGCCTCAGTTTGGAAGGTGAAAATTCCAAAAAAAGTAGAGTTTTTTTATATGGTAGATTTGGCACAACAATGTGAATGCTGTGGATAGGGTGGTGAAAAGGATGCCTTTTGTGATGCATCCTTGGTGTTGTATTCTTTGCATAAGGGATGTTGATGATCTAGAAGATCATCTTCTTTGGAGATGAGATACAACTGTAGCTATTTGGAATAGTTTTTTTTTTTTTTTTTGGCTTTTGATGTTGCCTTAGCTAGACATAGTTTAAGGAGAGGGTGATCAAGTGTTTAGACCACCTTTCTTTTAGAGAGAAAGGTAAGTTCTTTGGCAGGCTAGAGTTTGTGCTATTTTGTGAGGTCTATGGGCTGAAAGAAACAATAGAATCTTTTGAGGGAAAGCGAGATCTCCATATGATATTTGGTCCCACATTAGATTCAATGTTTTTCTTCAGGCCTCCATGACTAGGTTATTTTGTAATAATTCGTTCGGTCAAATTTTGTTAGATTGAATTTTTGTAGGCTCTAGTCCTTTTCCTTTTCTGTGGGCTCTTCTTTTTATATGCCGTGTATTCTTTCAATTTGTTCTCAATAGAAGTCCGGGTTTAATAGTGGTTTTCCCTTATATTAGAATAAATGATGATTGTTCGATGATTACCGATTATCGATTATTAATGAATCCAACTACTTTAGACCTAAAGAGGTAGAGAATGGCATGGTACTTGCCAGGTTATGGTCTTCAATTTTATTTTTTAACTGACAGAGTCTATTATTTTACAGTCACAGAAAACTCAGTTTATTCTCCTAAAGGTGAAGTTTCAAGCAGCCCCGACCTTAGTTCTAGCAACCACTACTTCAAAACTTTATGGCCAGCAATAAGCCTATTTTACCAAAGGAAGAGGTATTCGACTTCAGGTTGCCTCCCGAACAGATGTACTCGAGGCATGTCGGAGACAGTGGTGCAGGATCATCTGGAAGTAATATAAGGATGTTCTTCGTAGATATGGGGTTCCGTCCATCTCTTGTCGATAAAGTGATTGAAGAAAAGGGTGAAGATGATGTAGAGCTGTTATTAAATACCCTGACTACCTATTTGACAGAACAAAAATCAATCCATGAGTCATCAGGTTCTCTTAATGGCTTACGAAGTGTTAGCAAGAGCACTAATCCTCCAAATTTTGCTGCAATCTGTTATAATCAGGCTGGTCGGACCTCAAAACCCGAATCATCAGATTCTCTTGATAGCTTATTTGGTGACAAAGATGCAAGCAATGAAATCTCTTCAGCTGTTATAACAAAGGAGGAGGTGGATGATTATTATGGAAGTGATGATACCATTAAATCATCCTTATTAATGATGAACTTTACTGTTGATGAAGTTAACTTTGCGATCGATAAGCTTGGTGGAGATGCTCCCGTTAATGAGTTGGTCGATTTTATTATAGCTGCACAGATCGCCAAAAACTTGGAGAAGGAAACCGATGAAACCTTCTGTAGAAATGAATTGAAAAAGGAGGTTTTTCATTATGAAAATGATGAAACTTTGTTTGTGACTATGGAGAAAACACTTCGCTTGCTCGAAATGGGTTTCTCTGAGAATGAAGTTTCTTTGGCAATTGAGAAGTTTGGTTCGGACATGCAAGTTTCGGAACTTGCCGATACCATTGTTACCGGTCGAATTGCTGAGGACTACCCTGGGAATGATGAGCGTTCATCAAACTCATTCTGGATTGGTGGTTTACATATTCCAGAAGTTAAAGCTGAGGAACCGAGTTCAGCTGGAGTTTCTTTGTCAAGGAATGTTACCATTGAGGAAATACTGAAGGGAAAAAGGCCAAAAGAAGAATATATGGATGACGTTCCGAATCCAATTCCTCGTTTCGATGCTAAACATAAAGGGAAAAGGCCAAAGCCAGAACATGCTGATGACTTGAGCTCTCTCTATGGTCCTGAATGGTTGGAATCAAAAGTAAATCCAACAATCGCCGGATTCAACATGCCCCCCCCGCCTTCAAAATTTAATCCTTCAAGAACTCTTGATAAGGTTGTGGCTAAACCTCCATTTTTCTTGTATGGAAATGTTTTGGATGTATCTCGAGATTCTTGGGAAAAAATTTCCAAGTTCCTTTATGCCATTGACCCTGAATTTGTCGACACTCGCCACTTCTCTGCCTTGAGTAGAAAGGAAGGTTACGTGCACAACCTTCCGTGCGAAAACCGGTCCCACATTCTCCCGAAGCCTGCAATGGTCATCGAAGAGGCTATACCGCGCACAAAGAAATGGTGGCCTTCTTGGGATACAAGGAAGCATTTGAGCTGCATTAGTTCTGAAACTAGAGGATTGCCTCAGCTGTGTGATAGGCTTACAAAGACAATGACCGATTGTCGCGGCGAGCTCACGTCTCAACAGCAGAGAGACATTCTTCATCATTGCATAGCTTTGAACCTTATCTGGGTTGGCCAGTTCAAACTGGCTCCTGTAGAGCCTGAACAGTTGGAGCGCGTGCTCGGTTATCCGGTTAATCACACTCAAGATGCTGAAAGTAGCTCAATGGAAAGGCTTCAAATTCTCAAGTATTGTTTCCAGACTGACACTTTGGGTTATCATATCTCTGTTTTGAAGTATATGTTCCCAGAAGGGTTGATTGTGCTGTCCATTTTCAGTGGCATCGGTGGGGCGGAAATTGCATTGCACCGTCTTGGTATTCATTTGAAAGTCGTGATATCGGTCGAGAGTTCAGCAGCGAAGAGGAGGATTTTGCAGAAATGGTGGCGTAGTAGTGGACAAACTGGGGAGCTGGAGCAGATTGAGGACATCCAGAAACTAACAAGCAACAAGATTCACAATTTGATTAAGAAATATGGTGGTTTTGATTTCGTAGTTTGTCAGAATCCGTGTTCTCGTTGTTTGTCGTCTTCGAAAATGAGCGGAGACGCCGAGGGTGTAGCAAGCTTTGATTTCTCTATATTCTACGAGTTTGTTCGTGTTCTTCAGGGTGTAAGGAATACCATGGAAAGAAAGAAGTGACAATGTTCAGTTCATCTCCTTGTTCTATCTGGTATTATTAAATTCACAACTCATAAACAGACTAAATTATATTGTGATTGATTAAAAATTTCCAGTCCCTTGACTCCTGCATATGTTGATTACATCCAACTGCTCTAATTCGAAAAGTTTCAGGTTCTG ATGGCCAGCAATAAGCCTATTTTACCAAAGGAAGAGGTATTCGACTTCAGGTTGCCTCCCGAACAGATGTACTCGAGGCATGTCGGAGACAGTGGTGCAGGATCATCTGGAAGTAATATAAGGATGTTCTTCGTAGATATGGGGTTCCGTCCATCTCTTGTCGATAAAGTGATTGAAGAAAAGGGTGAAGATGATGTAGAGCTGTTATTAAATACCCTGACTACCTATTTGACAGAACAAAAATCAATCCATGAGTCATCAGGTTCTCTTAATGGCTTACGAAGTGTTAGCAAGAGCACTAATCCTCCAAATTTTGCTGCAATCTGTTATAATCAGGCTGGTCGGACCTCAAAACCCGAATCATCAGATTCTCTTGATAGCTTATTTGGTGACAAAGATGCAAGCAATGAAATCTCTTCAGCTGTTATAACAAAGGAGGAGGTGGATGATTATTATGGAAGTGATGATACCATTAAATCATCCTTATTAATGATGAACTTTACTGTTGATGAAGTTAACTTTGCGATCGATAAGCTTGGTGGAGATGCTCCCGTTAATGAGTTGGTCGATTTTATTATAGCTGCACAGATCGCCAAAAACTTGGAGAAGGAAACCGATGAAACCTTCTGTAGAAATGAATTGAAAAAGGAGGTTTTTCATTATGAAAATGATGAAACTTTGTTTGTGACTATGGAGAAAACACTTCGCTTGCTCGAAATGGGTTTCTCTGAGAATGAAGTTTCTTTGGCAATTGAGAAGTTTGGTTCGGACATGCAAGTTTCGGAACTTGCCGATACCATTGTTACCGGTCGAATTGCTGAGGACTACCCTGGGAATGATGAGCGTTCATCAAACTCATTCTGGATTGGTGGTTTACATATTCCAGAAGTTAAAGCTGAGGAACCGAGTTCAGCTGGAGTTTCTTTGTCAAGGAATGTTACCATTGAGGAAATACTGAAGGGAAAAAGGCCAAAAGAAGAATATATGGATGACGTTCCGAATCCAATTCCTCGTTTCGATGCTAAACATAAAGGGAAAAGGCCAAAGCCAGAACATGCTGATGACTTGAGCTCTCTCTATGGTCCTGAATGGTTGGAATCAAAAGTAAATCCAACAATCGCCGGATTCAACATGCCCCCCCCGCCTTCAAAATTTAATCCTTCAAGAACTCTTGATAAGGTTGTGGCTAAACCTCCATTTTTCTTGTATGGAAATGTTTTGGATGTATCTCGAGATTCTTGGGAAAAAATTTCCAAGTTCCTTTATGCCATTGACCCTGAATTTGTCGACACTCGCCACTTCTCTGCCTTGAGTAGAAAGGAAGGTTACGTGCACAACCTTCCGTGCGAAAACCGGTCCCACATTCTCCCGAAGCCTGCAATGGTCATCGAAGAGGCTATACCGCGCACAAAGAAATGGTGGCCTTCTTGGGATACAAGGAAGCATTTGAGCTGCATTAGTTCTGAAACTAGAGGATTGCCTCAGCTGTGTGATAGGCTTACAAAGACAATGACCGATTGTCGCGGCGAGCTCACGTCTCAACAGCAGAGAGACATTCTTCATCATTGCATAGCTTTGAACCTTATCTGGGTTGGCCAGTTCAAACTGGCTCCTGTAGAGCCTGAACAGTTGGAGCGCGTGCTCGGTTATCCGGTTAATCACACTCAAGATGCTGAAAGTAGCTCAATGGAAAGGCTTCAAATTCTCAAGTATTGTTTCCAGACTGACACTTTGGGTTATCATATCTCTGTTTTGAAGTATATGTTCCCAGAAGGGTTGATTGTGCTGTCCATTTTCAGTGGCATCGGTGGGGCGGAAATTGCATTGCACCGTCTTGGTATTCATTTGAAAGTCGTGATATCGGTCGAGAGTTCAGCAGCGAAGAGGAGGATTTTGCAGAAATGGTGGCGTAGTAGTGGACAAACTGGGGAGCTGGAGCAGATTGAGGACATCCAGAAACTAACAAGCAACAAGATTCACAATTTGATTAAGAAATATGGTGGTTTTGATTTCGTAGTTTGTCAGAATCCGTGTTCTCGTTGTTTGTCGTCTTCGAAAATGAGCGGAGACGCCGAGGGTGTAGCAAGCTTTGATTTCTCTATATTCTACGAGTTTGTTCGTGTTCTTCAGGGTGTAAGGAATACCATGGAAAGAAAGAAGTGA MASNKPILPKEEVFDFRLPPEQMYSRHVGDSGAGSSGSNIRMFFVDMGFRPSLVDKVIEEKGEDDVELLLNTLTTYLTEQKSIHESSGSLNGLRSVSKSTNPPNFAAICYNQAGRTSKPESSDSLDSLFGDKDASNEISSAVITKEEVDDYYGSDDTIKSSLLMMNFTVDEVNFAIDKLGGDAPVNELVDFIIAAQIAKNLEKETDETFCRNELKKEVFHYENDETLFVTMEKTLRLLEMGFSENEVSLAIEKFGSDMQVSELADTIVTGRIAEDYPGNDERSSNSFWIGGLHIPEVKAEEPSSAGVSLSRNVTIEEILKGKRPKEEYMDDVPNPIPRFDAKHKGKRPKPEHADDLSSLYGPEWLESKVNPTIAGFNMPPPPSKFNPSRTLDKVVAKPPFFLYGNVLDVSRDSWEKISKFLYAIDPEFVDTRHFSALSRKEGYVHNLPCENRSHILPKPAMVIEEAIPRTKKWWPSWDTRKHLSCISSETRGLPQLCDRLTKTMTDCRGELTSQQQRDILHHCIALNLIWVGQFKLAPVEPEQLERVLGYPVNHTQDAESSSMERLQILKYCFQTDTLGYHISVLKYMFPEGLIVLSIFSGIGGAEIALHRLGIHLKVVISVESSAAKRRILQKWWRSSGQTGELEQIEDIQKLTSNKIHNLIKKYGGFDFVVCQNPCSRCLSSSKMSGDAEGVASFDFSIFYEFVRVLQGVRNTMERKK Homology
BLAST of Sed0011250 vs. NCBI nr
Match: XP_023514287.1 (probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita pepo subsp. pepo] >XP_023514288.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita pepo subsp. pepo] >XP_023514289.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1218.4 bits (3151), Expect = 0.0e+00 Identity = 620/741 (83.67%), Postives = 659/741 (88.93%), Query Frame = 0
BLAST of Sed0011250 vs. NCBI nr
Match: XP_023000012.1 (probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita maxima] >XP_023000013.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita maxima] >XP_023000014.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita maxima]) HSP 1 Score: 1218.4 bits (3151), Expect = 0.0e+00 Identity = 621/741 (83.81%), Postives = 659/741 (88.93%), Query Frame = 0
BLAST of Sed0011250 vs. NCBI nr
Match: KAG6594033.1 (putative inactive DNA (cytosine-5)-methyltransferase DRM3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1213.4 bits (3138), Expect = 0.0e+00 Identity = 617/741 (83.27%), Postives = 658/741 (88.80%), Query Frame = 0
BLAST of Sed0011250 vs. NCBI nr
Match: XP_022930277.1 (probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita moschata] >XP_022930278.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita moschata] >XP_022930279.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 [Cucurbita moschata]) HSP 1 Score: 1211.4 bits (3133), Expect = 0.0e+00 Identity = 618/741 (83.40%), Postives = 658/741 (88.80%), Query Frame = 0
BLAST of Sed0011250 vs. NCBI nr
Match: XP_038906642.1 (probable inactive DNA (cytosine-5)-methyltransferase DRM3 isoform X1 [Benincasa hispida] >XP_038906643.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 isoform X1 [Benincasa hispida] >XP_038906644.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 isoform X1 [Benincasa hispida] >XP_038906645.1 probable inactive DNA (cytosine-5)-methyltransferase DRM3 isoform X1 [Benincasa hispida]) HSP 1 Score: 1166.4 bits (3016), Expect = 0.0e+00 Identity = 602/750 (80.27%), Postives = 647/750 (86.27%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy Swiss-Prot
Match: Q8H1E8 (Probable inactive DNA (cytosine-5)-methyltransferase DRM3 OS=Arabidopsis thaliana OX=3702 GN=DRM3 PE=1 SV=1) HSP 1 Score: 509.6 bits (1311), Expect = 5.8e-143 Identity = 301/754 (39.92%), Postives = 416/754 (55.17%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy Swiss-Prot
Match: Q6AUQ7 (Probable inactive DNA (cytosine-5)-methyltransferase DRM3 OS=Oryza sativa subsp. japonica OX=39947 GN=DRM3 PE=2 SV=1) HSP 1 Score: 430.3 bits (1105), Expect = 4.4e-119 Identity = 260/691 (37.63%), Postives = 391/691 (56.58%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy Swiss-Prot
Match: Q10SU5 (DNA (cytosine-5)-methyltransferase DRM2 OS=Oryza sativa subsp. japonica OX=39947 GN=DRM2 PE=1 SV=1) HSP 1 Score: 328.6 bits (841), Expect = 1.8e-88 Identity = 202/555 (36.40%), Postives = 293/555 (52.79%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy Swiss-Prot
Match: Q9M548 (DNA (cytosine-5)-methyltransferase DRM2 OS=Arabidopsis thaliana OX=3702 GN=DRM2 PE=1 SV=1) HSP 1 Score: 310.8 bits (795), Expect = 3.9e-83 Identity = 213/653 (32.62%), Postives = 321/653 (49.16%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy Swiss-Prot
Match: Q9LXE5 (DNA (cytosine-5)-methyltransferase DRM1 OS=Arabidopsis thaliana OX=3702 GN=DRM1 PE=3 SV=2) HSP 1 Score: 292.0 bits (746), Expect = 1.9e-77 Identity = 188/597 (31.49%), Postives = 303/597 (50.75%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy TrEMBL
Match: A0A6J1KCC4 (probable inactive DNA (Cytosine-5)-methyltransferase DRM3 OS=Cucurbita maxima OX=3661 GN=LOC111494323 PE=4 SV=1) HSP 1 Score: 1218.4 bits (3151), Expect = 0.0e+00 Identity = 621/741 (83.81%), Postives = 659/741 (88.93%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy TrEMBL
Match: A0A6J1ER27 (probable inactive DNA (Cytosine-5)-methyltransferase DRM3 OS=Cucurbita moschata OX=3662 GN=LOC111436780 PE=4 SV=1) HSP 1 Score: 1211.4 bits (3133), Expect = 0.0e+00 Identity = 618/741 (83.40%), Postives = 658/741 (88.80%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy TrEMBL
Match: A0A5D3BY15 (DNA (Cytosine-5)-methyltransferase DRM2 isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold46G00650 PE=4 SV=1) HSP 1 Score: 1106.7 bits (2861), Expect = 0.0e+00 Identity = 573/746 (76.81%), Postives = 624/746 (83.65%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy TrEMBL
Match: A0A1S3C858 (uncharacterized protein LOC103497762 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103497762 PE=4 SV=1) HSP 1 Score: 1106.7 bits (2861), Expect = 0.0e+00 Identity = 573/746 (76.81%), Postives = 624/746 (83.65%), Query Frame = 0
BLAST of Sed0011250 vs. ExPASy TrEMBL
Match: A0A6J1CAS5 (probable inactive DNA (Cytosine-5)-methyltransferase DRM3 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111009878 PE=4 SV=1) HSP 1 Score: 1101.3 bits (2847), Expect = 0.0e+00 Identity = 565/728 (77.61%), Postives = 610/728 (83.79%), Query Frame = 0
BLAST of Sed0011250 vs. TAIR 10
Match: AT3G17310.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 509.6 bits (1311), Expect = 4.1e-144 Identity = 301/754 (39.92%), Postives = 416/754 (55.17%), Query Frame = 0
BLAST of Sed0011250 vs. TAIR 10
Match: AT3G17310.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 509.6 bits (1311), Expect = 4.1e-144 Identity = 301/754 (39.92%), Postives = 416/754 (55.17%), Query Frame = 0
BLAST of Sed0011250 vs. TAIR 10
Match: AT5G14620.1 (domains rearranged methyltransferase 2 ) HSP 1 Score: 310.8 bits (795), Expect = 2.8e-84 Identity = 213/653 (32.62%), Postives = 321/653 (49.16%), Query Frame = 0
BLAST of Sed0011250 vs. TAIR 10
Match: AT5G15380.1 (domains rearranged methylase 1 ) HSP 1 Score: 292.0 bits (746), Expect = 1.3e-78 Identity = 188/597 (31.49%), Postives = 303/597 (50.75%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Chayote (edule) v1
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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