MELO3C019652T1 (mRNA) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.GGAGATCCCCGGACTCAAAGTACCAACAAAGTTCTTCAGCTTAGCTCACTCTTCACTCCTTTTCATTCTTTCTTCCTCATAAACCCTAACCCTCCATCCCCAAATTTCTTCTCTTTTTCTTCTGGGCATTTTCATTAGCCCTCATTTTTCCTACCCATAATTTATCTCCTTCCACTTCACCAATTGCTCGACTCTTCTCAATTTTCCCACAGTTCTTTTCTCCTCTCCTCCCACTTTGTAAAGGGGTTCTTAATCGCTGTAAGTTTGATTACTTGGCTATCAATCTTGTATATAAACGAGCCGTTCTTTTGTTTGTGCAATCTTTGTTTGTTTGAATCTGAAAAATTCTTTTAAAAAGTTTGGGGAATACTCGTTATCTTTTGTTACGATTTTCTTGCTTGGAATTTTGGGCTTTCTTTTGAATGTTTTGCCCGGAAGTCAATGGAAGATTTGCTCGAACTTAGGGAATGGGGGTAATTTGATGTTTTCTTTGGCCACGGGTGTTGGAGTTGGACATTTTTCCTTTTATTTGTTTTTGTTCGTGGAGCTTGGAGTTGAGGCGTTGGGTATTTGATGAGCACTGGTGTTATCATCTTAATTAGTTTACACGGGCATATTGATATACCACTGTTCTTAAATTTTTTAAAATATGAGAGAAATTGTTTTGTGATTTGTCAGTGTCATGTTATTGCTAATTCACAAGCATGTTGTTGTCATTGTTTATTTGAGTTTTGAATCTGTCTTGTGGATTTGTGATTGCAATTTGTAAATTACTGGGTTTGTTTTATTGTATCTATCTTTCTGTTTTCCTGAATAAGCTGTCGTTGTGTGTGATTCTTGGGTAACAGGATATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTGTGAGTACTTTTTCAATCTTTGAACGTGATATTGCCCTAAGGCTTATGCCTTCCATTCTGTTTTCCTCAGTGCAAGGCATTCAGTTTTTTTGCTTCCTTGTCTTCTGTTCCCTCAGTTTCGGTTTCTTTAGAATCATCTCATGAAACATATTCCATTCACTCCTTGATTTGATTTATTTCCAAGTGTTGTTAAAGAGTGACATTAAATACGCTCTAGATTTTTTTCTATTGTCTGACTTAGATGTATTAAAAAATGTAAATGCATTTATTTTATTATATCGACAAAGAACTTTATTAAACTGTTTTAAGTGGCTTCCTGTCTTCATTTGTGCCTCCTTTTCTCTTCTTTCTCTCTCCATCTTCCCCATGAATGCTTGGCTCTTTTGAACATATTTCTTCCATTTAGTTTTGGGATCACAAAGGGTGCTTTTTTGTGGAGGATGATTGGCTTATTTCTGGCTTCAATTGTGTGCACTTATGGGAATTTGAAGCGGGTGCAATGTGCAATACTTGTCCTCTATATATATTGTCAAACTTTTATGTGGATTAATAAAAGAAAATAAAATCTTCAAGGACACAAGTTAAAGAACATTGAAAGAATAAAAAGAAACGAGCTAGGAGGAAAATAAGATTCTCCAATTTGTGCATTTGACCTTATGAGAATACTGAACATGAAGCTTCAATGTCGACTTGATCAAACCGTTCTTGCCATAGCAAATGCTTTTCTTCAAAGATCTTTATGTTTCTTTCAGAAAAATTTCCGAAGTGATAGTCTTGGCAGTGCTAACCCAGGCTGTTCCTTTGGGGACATCCAATAGTTAACACAAGTTATTTTTCTTTCTAAAAGAGAGATTAAGAATTTGCAGTTTACTTTTCTTTGTCTCTAGCTATCCTCAGTGATTATTCTGTTATCTCAAACTACTATTCGTGCCTTTGTGGGTTTTGTTTTTATTATGCAGTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGGTAAGTTCATCCTTCAGTTTTTTTTGAGAAATATTTATTTTGTGTACATAAGAATAAGAGAATTGTTTTCTCAAGCTGGACAAATTATATTCGGTTGTTGATCTGGTTTGCTGGCATTTTCTTTGTTGAAAATTTTCAGATGCTTTTGAATAAAAAGTCTTTTTAAAGCTGGCAAAATTTTTAAAATTATGTATTCGATCTTGATGTTTTTCCATTGAAGATTAAGGAGCTTCAGTGACCTATAGATTACAAGTTTAAATTTTATAGCAGTGGCTTTTGTTCTGTTTCTTTTCACATTGTGATGTGTTGAATGGCTTTCCTTTGAGAACTTGAGATACCCTTTTCATGTTTGGGTGACGAGTTTTATGAAAAATGCTCTTGTTGAATGTTTGATGTCCATGGACCACAGGAATCCCAAATCCATTCTAGGTGGAATTTCATAGATATATGATAGGGCACTGGTCTTACATCATTAATGTTCGTAGAGGAAGAAAGGGTAAGGAAGTGGTTGCTAGTGAGTTGGGTGAATCATCCAATCGGTAGGATGATCATCTTGGGTAATTTCTGGTGGTTAGAAGTTGGTTATGAAAGGAGTTGTTTTACAGTTATTAAGTTATGTGTTTAAATAAAAATTTATTATGTAAGGATGGGGTGGGTAGTCTTTCAGTTACAAGTGTCTGGGGTTCTCTCATGTGGGAGGAAAATTCGATGTAATAGTTAGATAATCTATAATAAAGGAAGTTTATTTCAGTACCTATCAATATATAAATAGTGCAATCTCTAATATTGTTGTATTCAAAATTTGTGCCCTGACTATTTACTGACATATAATAAGTGAGAATACATAACCCTTTTTCTCTTTTTTCTAAACCAAAATTTATTTGTCCCCATAAATAAAAGCCACAATATTTTACTTCCAAGCTTCCATTCAAAATCATCCATTTTTTAAATAATTAAACTCTTGGCTTGTCTTTGTTGTAAGAAGTCATTTTGGATCTTCTGTCTCCCAACAAGGGCCACTTTGGCAATATTTTTGAGCATTGATATGTTATGGGAAGAGGTTTAGGGTTTGACATATGTTAATGAACTTGTAAACTCATGTGGAGGTGCTCTTCGTTTATGATTGCCAATGGTTGAGGATCTTGAAAAGTTGGTTCGTTTATTAAGAAAATTCCAAGGGACGCCATTCTCTATTAATTTTCCAAGTGCTTCCTTGATTGGGCCATTCTTTTTTGTAGATCCATTCTCTCATACCTTCATTAGTCTTTGGTCTTCTAATCAAACTTCATGGCTGTTTCTTTCAATTCATATGACATACGTGCTTCAAAAGTCAAGTGGAATCTTATGTTCCAATGGGAGATTGTGCTTCTATGAACTATGTAGATACTGGTTTGGAAGGTAAAGCTTTTTTTAGGGGAAGACACTAACCAAGCCACCTTTCAGGATCTTGTTAGAATTCCATCCAAGACTTTTGAAATTATAGTGTCCAATCCTCCAATAGGGAATTTCTTTTGTAACACCGTAGGTGTAGTGGAGATATCTCATCTTCCCTTCTTTTGCACTATCTTTTTTGAAACTAAAATATTAGTTTCTTATCAAAATTACACACTTGTATACATCAATGCTTAGGTTCATCAAGGCACTACAAAATCCTGTTTCTTAAATTTCTCTAGACCTTGTATCTGGTTGCTCGTAAGCCACCTTGATTGGCTCTGCTTCATTTACTTCATCGATTAACATCTTATGGACCCAATTTTGAAATACAAGATAAAAAGAAATAGAAGGAAAGAAATTGTTAATAAACTCATTCACCTAACACCAATGTACGTTGAGGAACAAATGATTTGTGGTTCAAATCCTCCACCCCATTTTTACTAAAAGAGATTTACGAGGAATCACAACCTCCCAATAGACTCATACAGTACACAATTCTCTCTCCTTCTAGATTTCCACAATTTAACTAAAACAGCTCACTAGAAAAGATTTCTAAAACTAAGCAAAGTACTAAGTACGATTATAGGGATTCACTAACTACAGAGATTGACTTTGTTGAGATACAAAGGATAAATATTTATTGATATCTAAAACCCTATAATCTATAAACTAAATAAAAAAAATAAACAAAGTAGAATCTTTAGGATTGTAACACACGTCCTTTTTTGTAAGGTTTGCTTGGGCTTCTTCTTACTCTTATGTTTGGGAGGTATTTTTCATTGCAGTGATATTGATAACTCAAACTTTCTTCTCCCTCTTTGTTTGAAATTCAGTATTTGATCAGTCTCTGGCTGATTTAGTCATTGATACGGTTATGTCACAATTGTGTCATTGCAACTTGTTCATGGTGTAGATATTTGCAAAATACATGCATGCTCTTGTTCTTACACCTCTGCTCGGTATGTTTAAGAGCAAATTATTTTTTTCTTATTCTTAATATTCCTTTATCCATTTGGGCCAATTGGGTACACTTTTTTTCTAATGTTGTATCCTAAGTAGCCTCAAGGAGAAATCCTTCAAGAATCTAGATTGTGAATCTTTTATTAGAATGATAATGTGTTTTATACGAGAGGGGAAGATTCCTATTTATAGAGTTTTATTACAAGTGGGGGTAAAAAGGGAATTAAGCTTGAAAGTTGAATATTACCTAATTAACCTCATTCTTCCCATCATTTTATCCCTCCAAAAAGAAAAATCGACCTCAAGTTTTAAAAAGAAAAATGAAGCAAACAGGGAATGAAATAAACTGGTTCAATGGCATATGGTCAAACCATTTTGAGCAAATTTATTCTGGTTAAAAAGTTAACCTGAGACAGAACAACCAAAAAATGAACTTCTCCATTGACCATAAATTAAAAAGAGAAGTTTCCATCAAGTTCATTCAGAACTGTAATCATAGTTCCAATCACAAAAGAATTAGCTTCCTAATAGAACTCTTCAAGAATCATATCTTCTTCATCATTTACTTAAATTTCTTTGATGTATGTCAATCGATTTTCAACTCAATTGGTATGTTGTTCTTGGTCGATTTTTTGATTTTTGTCTCGATGTTTAAGGTGTCGATGTTCGATACTTTTTCTATCTTTTTCGTTGGATTTTTCTTCTTCTCTTGAGACTACCTCTAGATCAACATTTTTGAACTATTCTTTTTGATCTTCTACTCCTTTCGCGTGGGTTTCTCCCAATCACGGTCTCAACAAGATCTTCTCCAAATTTATCTTCAAGATTTTCTATTTGAAAAGTTTCTAATGGAGCTTCCTTTGTTTTTTTCTTTAATATATGAAACCAATTCTTTCTTGAACTCCTGCAAATGAATTGATAGTTGATCTATGTGTTGAGTCATTTTCCCCCATGGATGTTGGACTTTTTTATTGTTTTCTTTATTTCCTCCAATGCTATGGGATCAAAGTAATCATTTTGTTGGATGCTTGAATATGTTTCAATCTCATAGTGGGTATAGGACTTATCCATTGGTTTTCGTGAGTCAACCTTTCTTAGTCTTGTTTTGTAACCAAAAGAGTAATTTTGAGTTTTAAACGTTCTTATTGGGCTGTAAATTACATTCTTGATGATTCTCTAATTCATCCTTTCAACCTTTACGTTGACTTCTTAAAAAATGGGTTTGATTGGATTGTTGAACCCTTTCTCAATGTTGCTATTCTGTCTCGAACTACCTTAGAAACATCATCGAAGTCACTAGAATCACTAGAATTAAATCTCCAATGAGGACAATTATAGGTTCTTTGAGAAAATCGGACATGCGCAAAATTAGCATGTTGGCATTCTTCTTCTGAATCACTTGAACAAAAGTACAACATTGTTTTCGGAAGTAAAATTGATTTTCTTTCCTATACCAACTGATGGTTTTTTCTTGGACATCTTTGATCGATAATAGTCAATTCTTGCAAAATCTTGATAAATCTATGGTTTCTTTCATTCTTTCTCAGAATTCAAGGGTTCCCCCTGATTAGATGTGTGTTGTTCGGCAACGAGCATAACTCACGAAGCTTCCTTTTGTGGTTTGTGTCAATAAGAGTTTCTCGGATTTCCAACAGTGACAATTATGTTGGCCGAGGTGATCACTTTGAGACCAAATTGATGTAACTTAAGTAGCCTCAAGGAGAAATCTTCCTAGAATCAAGATTGTGAATCTTTTATTAGAATAATAATCTGTTTCATACAAGAGGGAAGTTTCCTATTTATAAGTTATATTATAAGTGTGGGTAAAAAAGGAACTAACCTAGAATATTTCCTAATTAAACTCATTCTTCCTAAATCATGTTAGTATGCATATTTGCTCATTAGGCTTGACCTTTTAGACCTTCACTTATTATGGTGGTGACTGTCATTCCAATTGAACCATGTTAAATTGTCACACTTCTAGCTCATAACTTATACACGTGTAGCTTTTTACAGTTTGCCTATCGATTCAAGGAGAAAAAAGAACTTTGCTTTCCTAAGAGGGTATGGAAGATCGCTTCTTTTGAAATCATTAAGAGATTGAATAAATTAATTCGTGAATTTTTTGAGAGGGCTTTAATAGTGATGATGACATGTATAATGTAAATTTAGAAACTTCCGTCGTCAAAATTCTGCCTGAACAAGACACTGTGGAGAAAGCTCATTGTGGCTAAGTTATTCTCCTCCTTGTATTTGGCTGACTGTGATTCGTGGTTCTTCCAAATCTCCTTAGCAGTTCATTTGTAAGACCTTTGATTTGGTTGCTACTCGCACCCAAAATTGCCTAGGTATTGGTACCTCTATTTCTTTTTAAAAGGATCCTTGGTTTGGTTGTGGTGTTCTTTTGTTAACCATCATGGGCTGACCTAGTGGTAAAAAAGATACATAGTCTCAATAACTAACTATGAGCTCATGGGTTCAATTCATGGTGGCCACATACCTAAAAATTAATTTCCTACAAGTTACCTTGAGACCCAAATGTTGTAGGGTCTGACGGGTGTTCTATGAGATTAGTCGAGATGCGTGTGAGCTGGCCTGGACACTCACAGATATCAAAAAGAGAAAAGTTGTGGTGTTCTTTTGTTTTGTCCTTCTCATTATCGGATTGAGGATTTTGAGGCTTGGGACTTGCATCTTCGTTGTAATCTTAATGATTTGGAGACAGTTGAATGGGCTCCTTTGTCTCAACTTTTGTTCTTTTTCAGCCTTCATCTTTCTCTTGATTCATGGATATGAACTATCAAACTTTCTTTATCATTTTTGGTTAAGTCTCTTATGGATAATTTGGTGGGTACGTTGAACCTCTTGTGAAAGATTTATATTATGTCATTTGGATGGATGATTTACCTAAGAAAAGCAAAATTGGCCGTCCTCTCATCAACAAAAGGAGGATTATCTGGATTACTTGGAGGAGAGGAACAATTGCATTTTCAAAGAAATGGGGAGCTCTTTTGACGATTTTTTTGAACACATTACCTATCTCGCTCTACCTTGGTACAAATGCACATCTTTCTTTAATGCATTTAATCTATGATGTAAGTAGAATAGGGGTTAATTGGGTAATTTGTTAGTATTCTAAGTTAATTTCTTCTTACCCCCACTTATAATAAAACTCTATAAATAGGTGTATTTCTCTCTTGTATAGAATATCAGTTGCCCTAAAATAACCAAATTCCTGGTTTGGGAGATTGCTCGTCCTTCTGTTAACACTATGGATAGGTTGCAAGAACGTTGTCCTTGCAACGACCCTACTTGAACAGGATTTCTTCTGTAGACTGTGCATATGTGCCCTTGAGTTTTAAAAAAGTGCTGTCCTTGGAATTTTCTTTCTCCATCTCGGTGTTCTGATGTCAAAAAGGCCTCCAAATATGCAGCCATCTGTTCTCCCTTGGCCTTTTTGTGGCTGAGTTATGGTCGGAAGTCTTTGAAGTTTTTCAATGCGCTTTTGTTTCCTCTAATGACAGTCTTAGTTGGTTTAAATCATTGATTATATCTTTTCAAGGTCAACAAATTACGTCTTATTTTGTGGAAGGTTTGAGAAGAAAGAAATGCTAGGATTTTTCACGATGAAGACAAATCTTCTAAGGAGGCTTTGGAGTCAGCCATCTCAAATGCCTTCTTTGGTGTAAAATGTAAGGCCATCAAGAGCCGTAGTTTCTCTCTTTTTTTTTTAATAACAAATTGAAAGCGTCTTTGTATACCCTTTGAAGGGATCTCACTTGTACACCCTTTGGGAAAGTTTCTTTTGTAAATCCTTGGACATTTCAAAGGAAATTAGGGTTTATTGGGTTTATTCCTATTTAATATTTTCCATATTTGTATTTTTGCTTTATTAGTATTTTGGTCTCTATTTCTCCACCAATGAAAAAGGATATTAGATACTTTGATTTATTTTCTTTATCATGTAAAATTATCATGGTATCAAAGCTCTAGGGTTTTTGTCTTGTTGATTTCTAGTCACCATGGCCCCATTTGATCTCTTCCTTCGTCAATCAGTCGTTGGTGGAGGCAGACCCGCAACCTTTAGGGTTTTGAGTATAGTTGTTCTGCTGCATCTCAGTCTTTAAATGTGCTGCTGCATTTTGACTCCCGCAGCCCTAGATTCATGCTCGTTGCCGCCCAAATCTATGACTCCAAGCCGTCGCCCCTAACCTCTGCCATCACCGTTGACCAGATTTGCGGTCATTTGCTACCTTTGTCGTCATGGCCAGATCCAATCGACCTAGTTTCCTGTTCACAATTCGTCTGAGTTCTTCACGATCAACTCTGCTCCACCACTCCAACCTATTAGATCCAACAGACCTTCGCCACATGCCTCACCTCACTTTTTGTAGCTGGTTACAATTCTCTCTTTTCAAAACTTTGCACATCAGCCTGTGACCATGGTTTCATTTTAGTTTCACGTTTAGATTTAGTGTTTGTGGGTTTCAGCTTTAGATCAGTTTGGTTCAGATTACCGGTTGTGTTAGACCAACTCCAGTTCAGTTCAGTTCAATCAGCCTGGTTCGGTTCAATTTGACTTGGTTCTCTGGTTAATTGGTTACTTTTTTTTAGTTTGTTCCGTTTTTAAATCTTCCAAGGTCTCCTTCCGTTTTCAAATCGGTTGTTCATAGGTTTTGTTATAGATTTCTCTATAAGCATCTTTGTTCTAGCCCAAAAGTTATTTGTTTTCTTCTTTGTAGGTTTTGTTATAGATTTCTATACAAGGTTCTATGTTTTTAGCCCAGAAGTTTTTGGTTCTGTTATTTGTGGGTTTCTGTTTTCAACGTAGAAGTTCTGTATGTGTTTGGCTCTTTGGGTTTCTGATTTTATCCCAAGTCTGCTGATTTGATTCAAATGTTTTCTTCACTAACTCTAGTTTCCCATTCTACTACCTTGAGTTTGAGGGAGGTTGTTAAAGGAAATTAGGCTTTATTGGGTTTATTCCTATTTAATATTTTTCATATTTGTATTTTTCCTTTATTCGTATTTTGGCCTCTATTTGTTCACCAATATAAAAGGTTATTGTGTACTTCGATTTATTCAATGTATTATTTAAAACCATCAATTTCCAGTACTATCTACAATGATCACTTACCAGCCCTCTTCTCACGACTACGAGTTAAATGCAACCTAGAGATTTTCAATGAATAATTTCGATTCATTTTTGTATGTAGTGAGAATTTTGTTGTCTTTACAAGTCTCCTTTGTTGTGCTTCATAAAAGGTGTTTGGGTTGAGCTTATATATGTTTGAATAGATGATGTTATTTTAGCGCCTCAGTTTAGTTTAATTTTCTTGCAGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGTATCAAATGGTTACAGTGGGTCTGTTTTCTGTTCACATTTTATGGTGATCTTGTAACCACGTGTTTTTCATTTCTGACGTTATTGCTTATTCTAGTCTACAATACTGGGTGATTTATTCTTTGTTGTTTGTGCCTTTGTGTATTTAAAATCTGTATTTCCTCTTTGTCCTAATTACAAGTGAGCTAGTAGCTCTTTTATTTTTGGCTTCAGCAACATTGTAAACTTCTAATGATCATCGTGATAGGCTACAATTTAAACGAAATAGTATTGTGGTCTGTACACATGTCATCTAAAATTTTGGTCTATAGTAATGTAGTATTTAGTGGAACTGTGGAAGTAAACTTTAGAGCCATCATGGTTTTGTCTTTTAGTTTTTCAGTTCGATTCTGGGTCATACTTCTTAATTTGTCTACCTTGTGAGATGAAAGTGAAAGCATATATTTATTTAAACAATTAAATTATTTATCAACATATTCACATAATCTCCTGCAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGGTATGGGCTGTATGGCAGATTGCATGCCTTGGTTTTTTTATTGCCTATAGATGGCTTTTCTCCATTCGCTTTTCTTGAAATGGGGATGTGGTATGCAGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGGTCAGTGTCAATGCATTTTCTTTGAACGTAGTAACGTACCCAAAACTGATGTTGTGCATTGAACTTCATTTTGTTGAAGTACACGTTGAAAAATTCGCCTTCGTTTCATAGATCGTGTACTGAGAAAAAATCTTCATTTTATGCCAGGGATAAGTTAATTCTTTAAATCATATATTCATGCACAAGTGATGCACGTGGAAAATGATATGTTTCAACTGTTCTCATTTTCCATTGTTTCTTTTTTGAAAAAAAACCGTTCTCATTTTCCCCTCTAATATTTGGATGTGAATCTAACAGTGAATAATTATCTTTTGCAGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTATAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGTAGCATGACCCAGAAAAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGACGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATAATCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAAAACTTTTACGGATAAAACTTTCGAAGGGAAGCCAAGTTGTGTCATGTCGTGTTGGTGCAGCTGGTCAAACCAAAGAGGGACCACGAGAATCGTATGCCAGAAAATTATGTTTGAGAAGTTCCACCAGAGGTTTCTTTCTTCAGAATGTTTTAGGTACTAGTCATTTCAGGAATCACTTATGTCCAATATTAAATTGATATATTGACTTGAGAAATTCAGATCAAGGGCTATGCTCTCTTGTGGATCCCTCTTAGAATGTCAGCTTCTGCTATGCTTTTCATGTATGCTCAACTTTTAACACAGCAACGATTTTGAAGTACTCCACTGAGGGTCTCTTTGA GGAGATCCCCGGACTCAAAGTACCAACAAAGTTCTTCAGCTTAGCTCACTCTTCACTCCTTTTCATTCTTTCTTCCTCATAAACCCTAACCCTCCATCCCCAAATTTCTTCTCTTTTTCTTCTGGGCATTTTCATTAGCCCTCATTTTTCCTACCCATAATTTATCTCCTTCCACTTCACCAATTGCTCGACTCTTCTCAATTTTCCCACAGTTCTTTTCTCCTCTCCTCCCACTTTGTAAAGGGGTTCTTAATCGCTGATATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTATAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGTAGCATGACCCAGAAAAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGACGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATAATCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAAAACTTTTACGGATAAAACTTTCGAAGGGAAGCCAAGTTGTGTCATGTCGTGTTGGTGCAGCTGGTCAAACCAAAGAGGGACCACGAGAATCGTATGCCAGAAAATTATGTTTGAGAAGTTCCACCAGAGGTTTCTTTCTTCAGAATGTTTTAGGTACTAGTCATTTCAGGAATCACTTATGTCCAATATTAAATTGATATATTGACTTGAGAAATTCAGATCAAGGGCTATGCTCTCTTGTGGATCCCTCTTAGAATGTCAGCTTCTGCTATGCTTTTCATGTATGCTCAACTTTTAACACAGCAACGATTTTGAAGTACTCCACTGAGGGTCTCTTTGA ATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTATAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGTAGCATGACCCAGAAAAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGACGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATAATCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAA MHMENLSSSDPSHSAMYENSDSKHSQDGLEDGSRWYFSRKELEEFSPSKQDGIDLKKETYLRKSYCTFLQDLGMRLKVPQVTIATAIIFCHRFFLRQSHAKNDRRTIATVCMFLAGKVEETPRPLKDVIMVSYEIINKKDPTAAQKIRQKEVYERQKELILLGERVVLATLGFDLNVHHPYKPLVEAIKKFKVAQNALAQVAWNFVNDGLRTSLCLQFKPHHIAAGAIFLAAKFLKVKLPSDGEKVWWQEFDVTPRQLEEVSNQMLELYEQNRLPPSGEAEGSIGGGPTNQTPTKAPTNSEERAIVDNHALGAVIATSRLGTSKGGSSRPASEHSFAGDQPSRTMQNHSIESSNVDFISPSNHKTGSESKVRQEMEPSAFHDKGNTQNSLKHQSEGLAEQEHGNDMKMNEATTRDAMELKDKHVIRNKDFREVTLGKSQDVIKKIDKDKVKAALEKRRKSLGSMTQKKKELMDEDDLIERELEAGVEMAVGSEKNKREQKQSWNKSSNKQEYDDLYQEDDKEEHPQRTRQSSYNLDSSNIEEGEFANANEVGYGYQDSPKSNSRKRGRELTG*
BLAST of MELO3C019652T1 vs. Swiss-Prot
Match: CCT15_ARATH (Cyclin-T1-5 OS=Arabidopsis thaliana GN=CYCT1-5 PE=1 SV=2) HSP 1 Score: 546.2 bits (1406), Expect = 4.3e-154 Identity = 326/572 (56.99%), Postives = 386/572 (67.48%), Query Frame = 1
BLAST of MELO3C019652T1 vs. Swiss-Prot
Match: CCT14_ORYSJ (Cyclin-T1-4 OS=Oryza sativa subsp. japonica GN=CYCT1-1 PE=2 SV=1) HSP 1 Score: 528.5 bits (1360), Expect = 9.2e-149 Identity = 298/506 (58.89%), Postives = 349/506 (68.97%), Query Frame = 1
BLAST of MELO3C019652T1 vs. Swiss-Prot
Match: CCT14_ARATH (Cyclin-T1-4 OS=Arabidopsis thaliana GN=CYCT1-4 PE=1 SV=1) HSP 1 Score: 497.3 bits (1279), Expect = 2.3e-139 Identity = 285/573 (49.74%), Postives = 364/573 (63.53%), Query Frame = 1
BLAST of MELO3C019652T1 vs. Swiss-Prot
Match: CCT13_ORYSJ (Cyclin-T1-3 OS=Oryza sativa subsp. japonica GN=CYCT1-3 PE=3 SV=2) HSP 1 Score: 484.6 bits (1246), Expect = 1.5e-135 Identity = 247/315 (78.41%), Postives = 268/315 (85.08%), Query Frame = 1
HSP 2 Score: 94.4 bits (233), Expect = 4.4e-18 Identity = 64/202 (31.68%), Postives = 99/202 (49.01%), Query Frame = 1
BLAST of MELO3C019652T1 vs. Swiss-Prot
Match: CCT12_ARATH (Cyclin-T1-2 OS=Arabidopsis thaliana GN=CYCT1-2 PE=2 SV=2) HSP 1 Score: 328.6 bits (841), Expect = 1.4e-88 Identity = 207/455 (45.49%), Postives = 273/455 (60.00%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TrEMBL
Match: A0A0A0KD81_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_6G138110 PE=3 SV=1) HSP 1 Score: 1116.7 bits (2887), Expect = 0.0e+00 Identity = 560/572 (97.90%), Postives = 563/572 (98.43%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TrEMBL
Match: F6H4Q9_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_19s0027g01670 PE=3 SV=1) HSP 1 Score: 706.4 bits (1822), Expect = 2.7e-200 Identity = 380/574 (66.20%), Postives = 442/574 (77.00%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TrEMBL
Match: W9RBZ8_9ROSA (Uncharacterized protein OS=Morus notabilis GN=L484_001349 PE=3 SV=1) HSP 1 Score: 688.7 bits (1776), Expect = 5.9e-195 Identity = 375/596 (62.92%), Postives = 443/596 (74.33%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TrEMBL
Match: M5WZP0_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa003037mg PE=3 SV=1) HSP 1 Score: 653.7 bits (1685), Expect = 2.1e-184 Identity = 356/575 (61.91%), Postives = 425/575 (73.91%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TrEMBL
Match: A0A067JZY2_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_22634 PE=3 SV=1) HSP 1 Score: 652.5 bits (1682), Expect = 4.7e-184 Identity = 360/571 (63.05%), Postives = 428/571 (74.96%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TAIR10
Match: AT5G45190.2 (AT5G45190.2 Cyclin family protein) HSP 1 Score: 531.6 bits (1368), Expect = 6.1e-151 Identity = 323/583 (55.40%), Postives = 384/583 (65.87%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TAIR10
Match: AT4G19600.1 (AT4G19600.1 Cyclin family protein) HSP 1 Score: 497.3 bits (1279), Expect = 1.3e-140 Identity = 285/573 (49.74%), Postives = 364/573 (63.53%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TAIR10
Match: AT4G19560.1 (AT4G19560.1 Cyclin family protein) HSP 1 Score: 328.6 bits (841), Expect = 7.9e-90 Identity = 207/455 (45.49%), Postives = 273/455 (60.00%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TAIR10
Match: AT1G35440.1 (AT1G35440.1 cyclin T1;1) HSP 1 Score: 256.1 bits (653), Expect = 5.0e-68 Identity = 126/250 (50.40%), Postives = 173/250 (69.20%), Query Frame = 1
BLAST of MELO3C019652T1 vs. TAIR10
Match: AT1G27630.1 (AT1G27630.1 cyclin T 1;3) HSP 1 Score: 254.6 bits (649), Expect = 1.4e-67 Identity = 131/247 (53.04%), Postives = 171/247 (69.23%), Query Frame = 1
BLAST of MELO3C019652T1 vs. NCBI nr
Match: gi|659112742|ref|XP_008456310.1| (PREDICTED: LOW QUALITY PROTEIN: cyclin-T1-3-like [Cucumis melo]) HSP 1 Score: 1136.3 bits (2938), Expect = 0.0e+00 Identity = 570/572 (99.65%), Postives = 570/572 (99.65%), Query Frame = 1
BLAST of MELO3C019652T1 vs. NCBI nr
Match: gi|449464654|ref|XP_004150044.1| (PREDICTED: cyclin-T1-3-like [Cucumis sativus]) HSP 1 Score: 1116.7 bits (2887), Expect = 0.0e+00 Identity = 560/572 (97.90%), Postives = 563/572 (98.43%), Query Frame = 1
BLAST of MELO3C019652T1 vs. NCBI nr
Match: gi|700191605|gb|KGN46809.1| (hypothetical protein Csa_6G138110 [Cucumis sativus]) HSP 1 Score: 1116.7 bits (2887), Expect = 0.0e+00 Identity = 560/572 (97.90%), Postives = 563/572 (98.43%), Query Frame = 1
BLAST of MELO3C019652T1 vs. NCBI nr
Match: gi|359494525|ref|XP_002268838.2| (PREDICTED: cyclin-T1-5-like [Vitis vinifera]) HSP 1 Score: 706.4 bits (1822), Expect = 3.9e-200 Identity = 380/574 (66.20%), Postives = 442/574 (77.00%), Query Frame = 1
BLAST of MELO3C019652T1 vs. NCBI nr
Match: gi|703112664|ref|XP_010100177.1| (hypothetical protein L484_001349 [Morus notabilis]) HSP 1 Score: 688.7 bits (1776), Expect = 8.5e-195 Identity = 375/596 (62.92%), Postives = 443/596 (74.33%), Query Frame = 1
The following BLAST results are available for this feature:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
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