MELO3C019652.jh1 (gene) Melon (Harukei-3) v1.41
Overview
Sequences
The following sequences are available for this feature:
Legend: exonpolypeptideCDSstart_codonstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.TTGAGGGTTCTTCCCATCGTACGAAAGGAAAAAACAGCGTAAAAATGGAGATCCCCGGACTCAAAGTACCAACAAAGTTCTTCAGCTTAGCTCACTCTTCACTCCTTTTCATTCTTTCTTCCTCATAAACCCTAACCCTCCATCCCCAAATTTCTTCTCTTTTTCTTCTGGGCATTTTCATTAGCCCTCATTTTTCCTACCCATAATTTATCTCCTTCCACTTCACCAATTGCTCGACTCTTCTCAATTTTCCCACAGTTCTTTTCTCCTCTCCTCCCACTTTGTAAAGGGGTTCTTAATCGCTGTAGGTTTGATTACTTGGCTATCAATCTTGTATATAAACGAGCCGTTCTTTTGTTTGTGCAATCTTTGTTTGTTTGAATCTGATTCTTTTAGTTTGGGGAATACTCGTTATCTTTTGTTACGATTTTCTTGCTTGGAATTTTGGGCTTTCTTTTGAATGTTTTGCCCGGAAGTCAATGGAAGATTTGCTCGAACTTAGGGAATGGGGGTAATTTGATGTTTTCTTTGGCCACGGGTGTTGGAGTTGGACATTTTTCCTTTTATTTGTTTTTGTTCGTGGAGCTTGGAGTTGAGGCGTTGGGTATTTGCTGAGCACTGGTGTTATCATCTTAATTAGTTTACACGGGCATATTGATATACCACTGTTCTTAAATTTTTTATGAGAGAAATTGTTTTGTGATTTGTCAGTGTCATGTTATTGCTAATTCACAAGCATGTTATTGTCATTGTTTATTTGAGTTTTGAATCTGTCTTGTGGATTTGTGATTGCAATTTGTAAATTACTGGGTTTGTTTTATTGTATCTATCTTTCTGTTTTCCTGAATAAGCTGTCGTTGTGTGTGATTCTTGGGTAACAGGATATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTGTGAGTACTTTTTCAATCTTTGAACGTGATATTGCCCTAAGGCTTATGCCTTCCATTCTGTTTTCCTCAGTGCAAGGCATTCAGTTTTTTTGCTTCCTTGTCTTCTGTTCCCTCAGTTTCGGTTTCTTTAGAATCATCTCATGAAACATATTCCATTCACTCCTTGATTTGATTTATTTCCAAGTGTTGTTAAAGAGTGACATTAAATACGCTCTAGATTTTTTTCTATTGTCTGACTTAGATGTATTAGAAAATGTAAATGCATTTATTTTATTATATCGACAAAGAACTTTATTAAACTGTTTTAAGTGGCTTCCTGTCTTCATTTGTGCCTCCTTTTCTCTTCTTTCTCTCTCCATCTTCCCCATGAATGCTTGGCTCTTTTGAACATATTTCTTCCATTTAGTTTTGGGATCACAAAGGGTGCTTTTTTGTGGAGGATGATTGGCTTATTTCTGGCTTCAATTGTGTGCACTTATGGGAATTTGAAGCGGGTGCAATGTGCAATACTTGTCCTCTATATATATTGTCAAACTTTTATGTGGATTAATAAAAGAAAATAAAATCTTCAAGGACACAAGTTAAAGAACATTGAAAGAATAAAAAGAAACGAGCTAGGAGGAAAATAAGATTCTCCAATTTGTGCAATTGACCTTATGAGAATACTGAACATGAAGCTTCAATGTCGACTTGATCAAACCGTTCTTGCCATAGCAAATGCTTTTCTTCAAAGATCTTTATGTTTCTTTCAGAAAAATTTCCGAAGTGATAGTCTTGGCAGTGCTAACCCAGGCTGTTCCTTTGGGGACATCCAATAGTTAATACAAGTTATTTTTCTTTCTAAAAGAGAGATTAAGAATTTGCAGTTTACTTTTCTTTGTCTCTAGCTATCCTCAGTGATTATTCTGTTATCTCAAACTACTATTCGTGCCTTTGTGGGTTTTGTTTTTATTATGCAGTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGGTAAGTTCATCCTCCAGTTTTTTTTGAGAAATATTTATTTTGTGTACATAAGAATAAGAGAATTGTTTTCTCAAGCTGGACAAATTATATTCGGTTGTTGATCTGGTTTGCTGGCATTTTCTTTGTTGAAAATTTTCAGATGCTTTTGAATAAAAAGTCTTTTTAAAGCTGGCTTTTTTTATGTATTCGATCTTGATGTTTTTCCATTGAAGATTAAGGAGCTTCAGTGACCTATAGATTACAAGTTTAAATTTTATAGCAGTGGCTTTTGTTCTGTTTCTTTTCACATTGTGATGTGTTGAATGGCTTTCCTTTGAGAACTTGAGATACCCTTTTCATGTTTGGGTGACGAGTTTTATGAAAAATGCCCTTGTTGAATGTTTGATGTCCATGGACCACGGGAATCCCAAATCCATTCTAGGTGGAATTTCAAAGATATATGATAGGGCACTGGTCTTACATCATTAATGTTCGTAGAGGAAGAAAGGGTAAGGAAGTGGTTGCTAGTGAGTTGGGTGAATCATCCAATCGGTAGGATGATCATCTTGGGTAATTTCTGGTGGTTAGAAGTTGGTTATGAAAGGAGTTATTTTACAGTTATTAAGTTATGTGTTTAAATAAAAATTTATTATGTAAGGATGGGGTGGGTAGTCTTTCAGTTACAAGTGTCTGGGGTTCTCTCATGTGGGAGGAAAATTCGATGTAATAGTTAGATAATCTATAATAAAGGAAGTTTATTTCAGTACCTATCAATATATAAATAGTGCAATCTCTAATATTGTTGTATTCAAAATTTGTGCCCTGACTATTTACTGACATATAATAAGTGAGAATACATAACCCTTTTTCTCTTTTTTCTAAACCAAAATTTATTTGTCCCCATAAATAAAAGCCACAATATTTTACTTCCAAGCTTCCATTCAAAATCATCCATTTTTTAAATAATTAAACTCTTGGCTTGTCTTGGTTGTAAGAAGTCATTTTGGATCTTCTGTCTCCCAACAAGGGCCACTTTGGCAATATTTTTGAGCATTGATAGGTTATGGGAAGAGGTTTAGGGTTTGACATATGTTAATGAACTTGTAAACTCATGTGGAGGTGCTCTTCGTTTATGATTGCCAATGGTTGAGGATCTTGAAAAGTTGGTTCGTTTATTAAGAAAATTCCAAGGGACGCCATTCTCTATTAATTTTCCAAGTGCTTCCTTGATTGGGCCATTCTTTTTTGTAGATCCATTCTCTCATACCTTCATTAGTCTTTGGTCTTCTAATCAAACTTCATGGCTGTTTCTTTCGATTCATATGACATACGTGCTTCAAAAGTCAAGTGGAATCTTATGTTCCAATGGGAGATTGTGCTTCTATGAACTATGTAGATACTGGTTTGGAAGGTAAAGCTTTTTTTAGGGGAAGACACTAACCAAGCCACCTTTCAGGATCTTGTTAGAATTCCATCCAAGACTTTTGAAATTATAGTGTCCAATCCTCCAATAGGGAATTTCTTTTGTAACACCGTAGGTGTAGTGGAGATATCTCATCTTCCCTTCTTTTGCACTATCTTTTTTGAAACTAAAATATTAGTTTCTTATCAAAATTACACACTTGTATACATCAATGCTTAGGTTCATCAAGGCACTACAAAATCCTGTTTCTTAAATTTCTCTAGACCTTGTATCTGGTTGCTCGTAAGCCACCTTGATTGGCTCTGCTTCATTTACTTCATCGATTAACATCTTATGGACCCAATTTTGAAATACAAGATAAAAAGAAATAGAAGGAAAGAAATTGTTAATAAACTCATTCACCTGACACCAATGTACGTTGAGGAACAAATGATTTGTGGTTCAAATCCTCCACCCCATTTTTACTAAAAGAGATTTACGAGGAATCACAACCTCCCAATAGACTCATACAGTACACAATTCTCTCTCCTTCTAGATTTCCACAATTTAACTAAAACAGCTCACTAGAAAAGATTTCTAAAACTAAGCAAAGTACTAAGTACGATTATAGGGATTCACTAACTACCGAGATTGACTTTGTTGAGATACAAAGGATAAATATTTATTGATATCTAAAACCCTATAATCTATAAACTAAATAAAAAATAAACGAAGTAGAATCTTTAGGATTGTAACACACGTCCTTTTTTGTAAGGTTTGCTTGGGCTTCTTCTTACTCTTATGTTTGGGAGGTATTTTTCATTGCAGTGATATTGATAACTCAAACTTTCTTCTCCCTCTTTGTTTGAAATTCAGTATTTGATCAGTCTCTGGCTGATTTAGTCATTGATACGGTTATGTCACAATTGTGTCATTGCAACTTGTTCATGGTGTAGATATTTGCAAAATACATGCATGCTCTTGTTCTTACACCTCTGCTCGGTATGTTTAAGAGCAAATTATTTTTTTCTTATTCTTAATATTCCTTTATCCGTTTGGGCCAATTGGGTACACTTTTTTTCTAATGTTGTATCCTAAGTAGCCTCAAGGAGAAATCCTTCAAGAATCTAGACTGTGAATCTTTTATTAGAATGATAATGTGTTTTATACGAGAGGGGAAGATTCCTATTTATAGAGTTTTATTACAAGTGGGGGTAAAAAGGGAATTAAGCTTGAAAGTTGAATATTACCTAATTAACCTCATTCTTCCCATCATTTTATCCCTCCAAAAAGAAAAATCGACCTCAAGTTTTAAAAAGAAAAATGAAGCAAACAGGGAATGAAATAAACTTGTTCAATGGCATATGGTCAAACCATTTTGAGCAAATTTATTCTGGTTAAAAAGTTAACCTGAGACAGAACAACCAAAAAATGAACTTCTCCATTGACCATAAATTAAAAAGAGAAGTTTCCATCAAGTTCATTCAGAACTGTAATCATAGTTCCAATCACAAAAGAATTAGCTTCCTAATAGAACACTTCAAGAATCATATCTTCTTCATCATTTACTTAAATTTCTTTGATGTATGTCAATCGATTTTCAACTCAATTGGTATGTTGTTCTTGGTTGATTTTTTGATTTTTGTCTCGATGTTTAGGGTGTCAATGTTCGATACTTCTTTTTCTATCTTTTTCGTTGGATTTTTCTTCTTCTCTTGAGACTACCTCTAGATCAACATTTTTGAACTATTCTTTTTGATCTTCTACTCCTTTCGCGTGGGTTTTTCCCAATCACAGTCTCAACAAGATCTTCTCCAAATTTATCTTCAAGATTTTCTATTTGAAAAGTTTCTAATGGAGCTTCCTTTGTTTTTTTCTTTAATATATGAAACCAATTCTTTCTTGAACTCCTGCAAATGAATTGATAGTTGATCTATGTGTTGAGTCATTTTCCCCCATGGATGTTGGACTTTTTTATTGTTTTCTTTATTTCCTCCAATGCTATGGGATCAAAGTAATCATTTTGTTGGATGCTTGAATATGTTTCAATCTCATAGTGGGTATAGGACTTATCCATTGGTTTTCGTGAGTCAACCTTTCTTAGTCTTGTTTTGTAACCAAAAGAGTAATTTTGAGTTTTAAACGTTCTTATTGGGCTGTAAATTACATTCTTGATGATTCTCTAATTCATCCTTTCAACCTTTACGTTGACTTCTTAAAAAATGGGTTTGATTGGATTGTTGAACCCTTTCTCGATGTTGCTATTCTGTCTCGAACTACCTTAGAAACATCATCAAAGTCACTAGAATCACTAGAATCAAATCTCCAATGAGGACAATTATAGGTTCTTTGAGAAAATCGGACATGCGCAAAATTAGCATGTTGGCATTCTTCTTCTGAATCACTTGAACAAAAGTACAACATTGTTTTCGGAAGTAAAATTGATTTTCTTTCCTATACCAACTGATGGTTTTTTCTTGGACATCTTTGATTGATAATAGTCAATTCTTGCAAAATCTTGATAAATCTATGGTTTCTTTCATTCTTTCTCAGAATTCAAGGGTTCCCCCTGATTAGATGTGTGTTGTTCGGCAACGAGCATAACTCACGAAGCTTCCTTTTGTGGTTTGTGTCAATAAGAGTTTCTCGGATTTCCAACAGTGACAATTATGTTGGCCGAGGTGATCACTCTGAGACCAAATTGATGTAACTTAAGTAGCCTCAAGGAGAAATCTTCCTAGAATCAAGATTGTGAATCTTTTATTAGAATAATAATCTGTTTCATACAAGAGGGAAGTTTCCTATTTATAAGTTATATTATAAGTGTGGGTAAAAAAGGAACTAACCTAGAATATTTCCTAATTAAACTCATTCTTTCTAAATCATGTTAGTATGCATATTTGCTCATTAGGCTTGACCTTTTCGACCTTCACTTATTATGGTGGTGACTATCATTGCAATTGAACCATGTTAAATTGTCACACTTCTAGCTCATAACTTATACACGTGTAGCTTTTTACAGTTTGCCTATCGATTCAAGGAGAAAAAAGAACTTTGCTTTCCTAAGAGAGTATGGAAGATCGCTTCTTTTGAAATCATTAAGAGATTGAATAAATTAATTCGTGAATTTTTTGAGAGGGCTTTAATAGTGATGATGACATGTATAATGTAAATTTAGAAACTTCTGTCGTCAAAATTCTGCCTGAACAAGACACTGTGGAGAAAGCTCATTGTGGCTAAGTTATTCTCCTCCTTGTATTTGGCTGACTGTGATTCGTGGTTCTTCCAAATCTCCTTAGCAGTTCATTTGTAAGACCTTTGATTTGGTTGCTATTCGCACCCAAAATTGCCTAGGTATTGGTACCTCTATTTCTTTTTAAAAGGATCCTTGGTTTGGTTGTGGTGTTCTTTTGTTAACCATCATGGGCTGACCTAGTGGTAAAAAAGAGACATAGTCTCAATAACTAACTATGAGGTCATGGGTTCAATTCATGGTGGCCACATACCTAAAAATTAATTTCCTACAAGTTACCTTGAGACCCAAATGTTGTAGGGTCTGACGGGTGTTCTATGAGATTAGTCGAGATGCGTGTGAGCTGGCCTGGACACTCACAGATATCAAAAAGAGAAAAGTTGTGGTGTTCTTTTGTTTTGTCCTTCTCATTATCGGATTGAGGATTTTGAGGCTTGGGACTTGCATCTTCGTTGTAATCTTAATGATTTGGAGACAGTTGAATGGGCTCCTTTGTCTCAACTTTTGTTCTTTGTCAGCCTTCATCTTTCTCTTGATTCATGGATATGAACTATCAAACTTTCTTTATCATTTTTGGTTAAGTCTCTTATGGATAATTTGGTGGGTACGTTGAACCTCTTGTGAAAGATTTATATTATGTCATTTGGATGGATGATTTACCTAAGAAAAGCAAAATTGGCCGTCCTCTCATCAACAAAAGGAGGATTATCTGGATTACTTGGAGGAGAGGAACAATTGCATTTTCAAAGAAATGGGGAGCTCTTTTGACGATTTTTTTGAACACATTACCTATCTCGCTCTACCTTGGTACAAATGCACATCTTTCTTTAATGCATTTAATCTATGATGTAAGTAGAATAGGGGTTAATTGGGTAATTTGTTAGTATTCTAAGTTAATTTCTTCTTACCCCCACTTATAATAAAACTCTATAAATAGGTGTATTTCTCTCTTGTATAGAATATCAGTTGCCCTAAAATAACCAAATTCCTGGTTTGGGAGATTGCTCGTCCTTCTGTGAACACTATGGATAGGTTGCAAGAACGTTGTCCTTGCAACGACCTTACTTGAACAGGATTTCTTCTGTAGACTGTGCATATGTGCCCTTGAGTTTTAAAAAAGCGCTGTCCTTGGAATTTTCTTTCTCCATCTCGGTGTTCTGATGTCAAAAAGGCCTCCAAATATGCAGCCATCTGTTCTCCCTTGGCCTTTTTGTGGCTGAGTTATGGTCGGAAGTATTTGAAGTTTTTCAATGCGCTTTTGTTTCCTCTAATGACAGTCTTAGTTGGCTTAAATCATTGATTATATCTTTTCAAGGTCAACAAATTACGTCTTATTTTGTGGAAGGTTTGAGAAGAAAGAAATGCTAGGATTTTTCACGATGAAGACAAATCTTCTAAGGAGGCTTTGGAGTCAGCCATCTCAAATGCCTTCTTTGGTGTAAAATGTAAGGCCATCAAGAGCCGTAGTTTCTCTTTTTTTTTTCTTTAATAACAAATTGAAAGCGTCTTTGTATACCCTTTGAAGGGATCTCACTTGTACACCCTTTGGGAAAGTTTCTTTTGTAAATCCTTGGACATTTCAAAGGAAATTAGGGTTTATTGGGTTTATTCCTATTTAATATTTTCCATATTTGTATTTTTGCTTTATTAGTATTTTGGTCTCTATTTCTCCACCAATGAAAAAGGATATTAGATACTTTGATTTATTTTCTTTATCATGTAAAATTATCATGGTATCAAAGCTCTGGGGTTTTTGTCTTGTTGATTTCTAGTCACCATGGCCCCATTTGATCTCTTCCTTCGTCAATCAGTCGTTGGTGGAGGCAGACCCGCAACCTTTAGGGTTTTGAGTATAGTTGTTCTGCTGCATCTCAGTCTTTAAATGTGCTGGTGCATTTTGACTCCCGCAGCCCTAGATTCATGCTCGTTGCCGCCCAAATCTATGACTCCAAGCCGTCACCCCTAACCTCTGCCATCACCGTTGACCAGATTTGCGGTCATTTGCTACCTTTGTCGTCATGGCCAGATCCAATCGACCTAGATTCCTGTTCACAATTCGTCTGAGTTCTTCACGATCAACTCTGCTTCACCACTCCAACCTATTAGATCCAACAGACCTTCGCCTCATGCCTCACCTCACTTTTTGTAGCTGGTTACAATTCTCTCTTTTCAAAACTTTGCACATCAGCCTGTGACCATGGTTTCATTTTAGTTTCACGTTTAGATTTAGTGTTTGTGGGTTTCAGCTTTAGATCAGTTTGGTTCAGATTACCGGTTGTGTTAGACCAACTCCAGTTCAGTTCAGTTCAATCAGCCTGGTTCGGTTCAATTTGACTTGGTTCTCTGGTTAATTGGTTACTTTTTTTTAGTTTCTTCCGTTTTTAAATCTTCCAAGGTCTCCTTCCGTTTTCAAATCGGTTGTTCATAGGTTTTGTTATAGATTTCTCTATAAGCATCTTTGTTCTAGCCCAAAAGTTATTTGTTTTCTTCTTTGTAGGTTTTGTTATAGATTTCTATACAAGGTTCTATGTTTTTAGCCCAGTAGTTTTTGGTTCTGTTATTTGTGGGTTTCTGTTTTCAACGTAGAAGTTCTGTATGTGTTTGGCTCTTTGGGTTTCTGATTTTATCCCAAGTCTGCTGATTTGATTCAAATGTTTATCTACAATGATCACTTACCAGCCCTCTTCTCACGACTACGAGTTAAATGCAACCTAGAGATTTTCAATGAATAATTTCGATTCATTTTTGTATGTAGTGAGAATTTTGTTGTCTTTACAAGTCTCCTCTGTTGTGCTTCATAAAAGGTGTTTGGGTTGAGCTTATATATGTTTGAATAGATGATGTTATTTTAGCGCCTCAGTTTAGTTTAATTTTCTTGCAGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGTATCAAATGGTTACAGTGGGTCTGTTTTCTGTTCACATTTTATGGTGATCTTGTAACCATGTGTTTTTCATTTCTGACGTTATTGCTTATTCTAGTCTACAATACTGGGTGATTTATTCTTTGTTGTTTGTGCCTTTGTGTATTTAAAATCTGTATTTCCTCTTTGTCCTAATTACAAGTGAGCTAGTAGCTCTTTTATTTTTGCCTTCAGCAACATTGTAAACTTCTAATGATCATCGTGATAGGCTACAATTTAAACGAAATAGTATTGTGGTCTGTACACATGTCATCTAAAATTTTGGTCTATAGTAATGTAGTATTTAGTGGAACCGTGGAAGTAAACTTTAGAGCCATCATGGTTTTGTCTTTTAGTTTTTCAGTTCGATTCTGGGTCATACTTCTTAATTTGTCTACCTTGTGAGATGAAAGTGAAAGCATATATTTATTTAAACAATTAAATTATTTATCAACATATTCACATAATCTCCTGCAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGGTATGGGCTGTATGGCAGATTGCATGCCTTGGTTTTTTTATTGCCTATAGATGGCTTTTCTCCATTCGCTTTTCTTGAAATGGGGATGTGGTATGCAGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGGTCAGTGTCAATGCATTTTCTTTGAACGTAGTAACGTACCCAAAACTGATGTTGTGCATTGAACTTCATTTTGTTGAAGTACACGTTGAAAAATTCGCCTTCGTTTCATAGATCGTGTACTGAGAAAAAATCTTCATTTTATGCCAGGGATAAGTTAATTCTTTAAATCATATATTCATGCACAAGTGATGCACGTGGAAAATGATATGTTTCAACTGTTCTCATTTTCCATTGTTTCTTTTTTGAAAAAAAACCGTTCTCATTTTCCCCTCTAATATTTGGATGTGAATCTAACAGTGAATAATTATCTTTTGCAGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTAGAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGCAGCATGACCCAGAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGATGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATATTCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAAAACTTTCGAAGGGAAGCCAAGTTGTGTCATGTCGTGTTGGTGCAGCTGGTCAAACCAAAGAGGGACCACGAGAATCGTATGCCAGAAAATTATGTTTGAGAAGTTCCACCAGAGGTTTCTTTCTTCAGAATGTTTTAGGTACTAGTCATTTCAGGAATCACTTATGTCCAATATTAAATTGATATATTGACTTGAGAAATTCAGATCAAGGGCTATGCTCTCTTGTGGATCCCTCTTAGAATGTCAGCTTCTGCTATGCTTTTCATGTATGCTCAACTTTTAACACAGCAACGATTTTGAAGTACTCCACTGAGGGTCTCTTTGATATCAGCATCAAAATGTGATGATTAGTTGTTACTTTTATAAGTCAGCTATAAATTTTAAAAAAGTTAAGCTCAGTCATGCAGTTGTGTCAAATGTTTCAAATAAACAATAAAACTTGTTCGTGAAACA TTGAGGGTTCTTCCCATCGTACGAAAGGAAAAAACAGCGTAAAAATGGAGATCCCCGGACTCAAAGTACCAACAAAGTTCTTCAGCTTAGCTCACTCTTCACTCCTTTTCATTCTTTCTTCCTCATAAACCCTAACCCTCCATCCCCAAATTTCTTCTCTTTTTCTTCTGGGCATTTTCATTAGCCCTCATTTTTCCTACCCATAATTTATCTCCTTCCACTTCACCAATTGCTCGACTCTTCTCAATTTTCCCACAGTTCTTTTCTCCTCTCCTCCCACTTTGTAAAGGGGTTCTTAATCGCTGATATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTAGAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGCAGCATGACCCAGAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGATGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATATTCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAAAACTTTCGAAGGGAAGCCAAGTTGTGTCATGTCGTGTTGGTGCAGCTGGTCAAACCAAAGAGGGACCACGAGAATCGTATGCCAGAAAATTATGTTTGAGAAGTTCCACCAGAGGTTTCTTTCTTCAGAATGTTTTAGGTACTAGTCATTTCAGGAATCACTTATGTCCAATATTAAATTGATATATTGACTTGAGAAATTCAGATCAAGGGCTATGCTCTCTTGTGGATCCCTCTTAGAATGTCAGCTTCTGCTATGCTTTTCATGTATGCTCAACTTTTAACACAGCAACGATTTTGAAGTACTCCACTGAGGGTCTCTTTGATATCAGCATCAAAATGTGATGATTAGTTGTTACTTTTATAAGTCAGCTATAAATTTTAAAAAAGTTAAGCTCAGTCATGCAGTTGTGTCAAATGTTTCAAATAAACAATAAAACTTGTTCGTGAAACA ATGCATATGGAGAATTTATCTTCTAGTGATCCATCACATTCGGCAATGTATGAAAATAGTGATTCGAAGCACTCACAGGATGGGTTGGAGGATGGCTCTCGATGGTATTTTTCTAGGAAGGAATTAGAGGAATTTTCACCTTCTAAACAAGATGGGATTGACTTGAAAAAGGAGACATATTTACGCAAGTCGTACTGTACATTTCTTCAAGATTTGGGAATGAGACTTAAAGTTCCCCAGGTAACCATTGCTACAGCAATAATTTTTTGCCATAGGTTCTTTCTTCGGCAATCTCATGCAAAGAATGACCGAAGGACAATTGCGACAGTGTGTATGTTTCTCGCAGGAAAGGTTGAAGAAACTCCTCGCCCATTGAAGGATGTTATCATGGTCTCATATGAAATCATCAACAAAAAGGATCCTACTGCAGCCCAGAAAATTAGGCAAAAGGAGGTGTATGAACGGCAAAAAGAGTTAATTTTACTTGGGGAGAGGGTTGTTCTTGCAACTCTTGGTTTTGATCTTAATGTGCACCATCCTTACAAACCCCTTGTTGAGGCAATTAAAAAATTCAAAGTTGCTCAAAATGCCTTGGCTCAAGTAGCTTGGAATTTCGTCAATGATGGATTGCGGACATCTCTTTGCTTGCAATTTAAGCCTCACCATATTGCGGCCGGTGCCATTTTCCTTGCTGCCAAATTTCTCAAAGTTAAACTCCCATCAGATGGGGAAAAGGTGTGGTGGCAAGAGTTTGATGTCACCCCACGGCAATTGGAGGAAGTCAGCAATCAAATGTTAGAACTTTATGAACAAAATCGGTTGCCCCCTTCTGGTGAAGCTGAGGGAAGCATTGGAGGTGGTCCTACTAATCAAACCCCTACAAAAGCTCCTACCAACAGCGAAGAACGCGCCATAGTAGACAATCATGCACTTGGTGCAGTTATTGCTACCTCAAGACTTGGAACCTCAAAAGGTGGTTCATCTAGGCCAGCATCTGAACACTCATTTGCAGGTGACCAGCCATCAAGAACAATGCAGAATCATAGTATTGAAAGTTCGAATGTAGATTTTAGAAGTCCTTCCAATCACAAAACAGGTAGTGAATCTAAGGTTAGACAGGAGATGGAGCCATCGGCTTTCCATGACAAAGGAAACACTCAAAACTCACTAAAGCATCAGTCAGAGGGATTGGCTGAGCAAGAACATGGAAATGATATGAAAATGAATGAAGCAACGACGAGGGATGCAATGGAATTGAAAGACAAACATGTAATTCGAAATAAGGATTTTAGAGAAGTTACACTTGGCAAATCTCAGGACGTTATCAAAAAGATCGATAAGGACAAAGTAAAGGCTGCGCTCGAGAAACGAAGGAAGTCTCTTGGCAGCATGACCCAGAAAAAAGAATTGATGGATGAGGATGATCTCATTGAAAGGGAGTTGGAAGCTGGTGTTGAGATGGCTGTTGGCAGTGAGAAAAACAAGCGAGAACAGAAGCAAAGTTGGAATAAGTCATCGAATAAACAAGAATACGATGATTTGTATCAAGAGGATGATAAAGAGGAGCATCCTCAACGAACGCGGCAATCGTCATATATTCTAGATTCTAGCAACATAGAAGAAGGGGAGTTTGCAAATGCTAATGAAGTCGGTTATGGGTATCAAGATTCTCCCAAGTCTAACAGTCGTAAGAGAGGCAGGGAGCTCACAGGATAA MHMENLSSSDPSHSAMYENSDSKHSQDGLEDGSRWYFSRKELEEFSPSKQDGIDLKKETYLRKSYCTFLQDLGMRLKVPQVTIATAIIFCHRFFLRQSHAKNDRRTIATVCMFLAGKVEETPRPLKDVIMVSYEIINKKDPTAAQKIRQKEVYERQKELILLGERVVLATLGFDLNVHHPYKPLVEAIKKFKVAQNALAQVAWNFVNDGLRTSLCLQFKPHHIAAGAIFLAAKFLKVKLPSDGEKVWWQEFDVTPRQLEEVSNQMLELYEQNRLPPSGEAEGSIGGGPTNQTPTKAPTNSEERAIVDNHALGAVIATSRLGTSKGGSSRPASEHSFAGDQPSRTMQNHSIESSNVDFRSPSNHKTGSESKVRQEMEPSAFHDKGNTQNSLKHQSEGLAEQEHGNDMKMNEATTRDAMELKDKHVIRNKDFREVTLGKSQDVIKKIDKDKVKAALEKRRKSLGSMTQKKELMDEDDLIERELEAGVEMAVGSEKNKREQKQSWNKSSNKQEYDDLYQEDDKEEHPQRTRQSSYILDSSNIEEGEFANANEVGYGYQDSPKSNSRKRGRELTG Homology
BLAST of MELO3C019652.jh1 vs. NCBI nr
Match: XP_008456310.1 (PREDICTED: LOW QUALITY PROTEIN: cyclin-T1-3-like [Cucumis melo]) HSP 1 Score: 1094 bits (2829), Expect = 0.0 Identity = 568/571 (99.47%), Postives = 568/571 (99.47%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. NCBI nr
Match: XP_011656978.1 (cyclin-T1-3 [Cucumis sativus] >KAE8646875.1 hypothetical protein Csa_020609 [Cucumis sativus]) HSP 1 Score: 1080 bits (2793), Expect = 0.0 Identity = 560/571 (98.07%), Postives = 563/571 (98.60%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. NCBI nr
Match: XP_038901559.1 (cyclin-T1-3-like isoform X1 [Benincasa hispida]) HSP 1 Score: 1045 bits (2703), Expect = 0.0 Identity = 545/575 (94.78%), Postives = 555/575 (96.52%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. NCBI nr
Match: XP_038901560.1 (cyclin-T1-3-like isoform X2 [Benincasa hispida]) HSP 1 Score: 1021 bits (2639), Expect = 0.0 Identity = 532/560 (95.00%), Postives = 542/560 (96.79%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. NCBI nr
Match: XP_038901562.1 (cyclin-T1-3-like isoform X3 [Benincasa hispida]) HSP 1 Score: 994 bits (2571), Expect = 0.0 Identity = 523/575 (90.96%), Postives = 533/575 (92.70%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy Swiss-Prot
Match: Q2RAC5 (Cyclin-T1-3 OS=Oryza sativa subsp. japonica OX=39947 GN=CYCT1-3 PE=3 SV=2) HSP 1 Score: 520.8 bits (1340), Expect = 2.7e-146 Identity = 313/552 (56.70%), Postives = 360/552 (65.22%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy Swiss-Prot
Match: Q9FKE6 (Cyclin-T1-5 OS=Arabidopsis thaliana OX=3702 GN=CYCT1-5 PE=1 SV=2) HSP 1 Score: 517.7 bits (1332), Expect = 2.3e-145 Identity = 329/575 (57.22%), Postives = 389/575 (67.65%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy Swiss-Prot
Match: Q2QQS5 (Cyclin-T1-4 OS=Oryza sativa subsp. japonica OX=39947 GN=CYCT1-1 PE=2 SV=1) HSP 1 Score: 508.4 bits (1308), Expect = 1.4e-142 Identity = 298/505 (59.01%), Postives = 351/505 (69.50%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy Swiss-Prot
Match: Q8GYM6 (Cyclin-T1-4 OS=Arabidopsis thaliana OX=3702 GN=CYCT1-4 PE=1 SV=1) HSP 1 Score: 483.4 bits (1243), Expect = 4.9e-135 Identity = 311/593 (52.45%), Postives = 380/593 (64.08%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy Swiss-Prot
Match: Q56YF8 (Cyclin-T1-2 OS=Arabidopsis thaliana OX=3702 GN=CYCT1-2 PE=2 SV=2) HSP 1 Score: 312.4 bits (799), Expect = 1.5e-83 Identity = 209/455 (45.93%), Postives = 271/455 (59.56%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy TrEMBL
Match: A0A1S3C474 (LOW QUALITY PROTEIN: cyclin-T1-3-like OS=Cucumis melo OX=3656 GN=LOC103496297 PE=3 SV=1) HSP 1 Score: 1094 bits (2829), Expect = 0.0 Identity = 568/571 (99.47%), Postives = 568/571 (99.47%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy TrEMBL
Match: A0A0A0KD81 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G138110 PE=3 SV=1) HSP 1 Score: 1082 bits (2799), Expect = 0.0 Identity = 561/572 (98.08%), Postives = 564/572 (98.60%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy TrEMBL
Match: A0A6J1D8M6 (cyclin-T1-3-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111018042 PE=3 SV=1) HSP 1 Score: 966 bits (2498), Expect = 0.0 Identity = 515/579 (88.95%), Postives = 537/579 (92.75%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy TrEMBL
Match: A0A6J1G7W8 (cyclin-T1-3-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111451681 PE=3 SV=1) HSP 1 Score: 962 bits (2488), Expect = 0.0 Identity = 513/586 (87.54%), Postives = 539/586 (91.98%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. ExPASy TrEMBL
Match: A0A6J1I6S4 (cyclin-T1-3-like isoform X4 OS=Cucurbita maxima OX=3661 GN=LOC111469683 PE=3 SV=1) HSP 1 Score: 960 bits (2481), Expect = 0.0 Identity = 510/590 (86.44%), Postives = 540/590 (91.53%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. TAIR 10
Match: AT5G45190.1 (Cyclin family protein ) HSP 1 Score: 517.7 bits (1332), Expect = 1.7e-146 Identity = 329/575 (57.22%), Postives = 389/575 (67.65%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. TAIR 10
Match: AT5G45190.2 (Cyclin family protein ) HSP 1 Score: 503.1 bits (1294), Expect = 4.2e-142 Identity = 326/586 (55.63%), Postives = 387/586 (66.04%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. TAIR 10
Match: AT4G19600.1 (Cyclin family protein ) HSP 1 Score: 483.4 bits (1243), Expect = 3.4e-136 Identity = 311/593 (52.45%), Postives = 380/593 (64.08%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. TAIR 10
Match: AT4G19560.1 (Cyclin family protein ) HSP 1 Score: 312.4 bits (799), Expect = 1.1e-84 Identity = 209/455 (45.93%), Postives = 271/455 (59.56%), Query Frame = 0
BLAST of MELO3C019652.jh1 vs. TAIR 10
Match: AT1G35440.1 (cyclin T1;1 ) HSP 1 Score: 256.9 bits (655), Expect = 5.3e-68 Identity = 126/250 (50.40%), Postives = 175/250 (70.00%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
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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