MELO3C034712.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.AAGTAAGAGTTAGTTCTCTCTTGTTCATATTCCGAAACCAAGAAGAACAACCTTCAGAATCTATCATTTCTTCTCGTAATCAATGGCCTCAATTGGTGCTCGGTCTGCTTTCCGGTCATTCTCTGGTTCGGCACGCCGTGCTGCTGCTCACATCGGTTCTCAACCCAAGCCCTCATCAACCTCTCCCTTTCGCATGGCAACTAACAAACCCCTCTCTCATCCTACTTTCAGGTTCGTTGCTTAATGCTTTTGCAACCGTTTTAAGTGCGAAAAGCTTCTGAATCTAGAGCTTTTTGGGGTTTTTTTTTTGTTCTCACTAAAAGTAGAGCAACGAAAACAGTGTTCAATCTTCATCTTTATTTCTCTCTTCAGCGTTTTAGTCGTGAAACGTTTCAGTAAAATAACGTTATCTATTTTGCTTGAAGGTGTGCGCCTGTGATGAGCTTCTGTTTGGAGTCAATGATGCCATTTCACTCTGTGTCGTCCTCAGCTTTAATGACTTCCATGCTCTCTATCTCGCGCCATAGCTGCGGTTGGCTCCCCGAAGGTGCATAACTGATAATTTAATTCTTTACTTTCTTGACCTGTTGTGAGCTACATCGAAAGAGAGGACAATATGATGTATTTGTATAGTTTAGAATTTAGACCATATCCATAATTTCAGAATGACTTCTTCCGTGGACAAGAAAGAGTGGATAATTTTCTGGAAGTTGATTTTCTTTTTGCATTTGTTTTTCGTTGGATGAATTTTAGCTTTATAATTTTTTCATGAATCAGGAAAAATAAAGTTTGAGTGGGACTAATAATCAACTATATTTTGAAATAGTGATATCTATATTTAGGTTTAGGGGTCATATTAGCCACAGTGATCTGATGCTTTTGGCGGATGAAGTATCTATGCTTGTAATCTATGATTAGGGTAGTTAATGTGTTTGAATCATAAGAAACTACACCATGAAAAACTTTCTTTTGGCTTAATTTAAGTACTGATGTGTATAAATATTTCAGTAACTTATAAACTTTCATAAGCATTTTATGTGTACATCAATTTGAATGTATTGCGCTAGTTTTGTGATCCCTTTGTTAGACCCCAGTCCTCCAAACTTATAAAAGAAAGGGCAGGAAGGGAAATTCATAGAATAATTCAAAGGGAGAGCTGATGGGAGAGGAAAGAAGCACCGGACAGCCCGCCTTGTATGTGGGTATAATTATAAATAGGGAATGTATTGGGATTGAGGGATTAGGTCAGGATTTTGGTGAAAGTTGCTGTAGGCTTTTTAGGAGAGGTTTCCAGCCTTCTCGAAGGAGCTGGCTTTATTATTTCTTATTACTTTGTTGCATTTACTTTCTGTTCATCATGTGATCACAGTTGGTTTGTTGAACATTTTGGTTATTACATCAATATTACAGTAGAGTACTGTCTCTGTTTTGTCATTGTTGGGATTTTTCTAAGTTTTAGGTTGAGAATCTCAACAAATTGGTATTAGAGCTTCAACATCCTGGGGGAACACGATCTATAGATAAAAAAAACAACTCATCGAAAGAATGAAGTCTAGTGAAAGGGAAATTATGGATTCAAGGAAATCATACTCAGGCTGAAGAAGAGTGTGGATCAACTAGCGAAAGACATGAAAGAGAATACGGTTAGTCGGAGAAAAGAGGAATCAGGGACGTCCAATGTTACAGTGCTCAAAATGAAAGGAAAAATGGAGGATATGGAAGTTGGTTCGACAGTCGAACATGGAACAATTGACAAGAGCAAGTATAAGATGTTAGAAATGCCGATCTTCAATGGTGTGAATACGGAATCGTAGGCATACAGGGCTAATCATTTTTTTGAGATAAATGACTTAGCGGATAACGAGAAGGTCAAGGTAGTGGTGATTAGCTTTGCTCAAGATGAAATAAATTGGTTTCACTCGAGTAACGATCGAAAGAAGGTAACATCATGGGAAGATTTGAAACAGAGGATGTTCAATCACTTTCAACCTACTGGCAAAGGGAGCATTGGGGCTTGGTTAATTTGGATCATGCAAGATTGCCGTATACAAATTAAAAACATTTCTGAACTATTCTGTACCCTTACCAAGTATGGTGGAGAGTGGTCTAATGGATGCTTTTGTGACAGCAAACGGAAGTGGTAAGTCTTCATGTGAAGAACTTGGATGAGTGTATGAAGGAAGCCCAACTGGTCAATGATCGTAATGTTCCCCTAAATTGGCCTTGAGTGAATGGGGAGCCAATAGACGATCAATTATTTTACAATATAGTATAAAGGGGAAGTGAGGAAAGGCATGTGTGAAGGAGAATAATACCATTACGTATGGGGACCACAGTGGGGCCATGGTAGTCAGAGGAAATGATACTGTTATAAGGGAATTTAAGGGAGAGAGAGTGGGGAGTTCATTTTGGTGTTGAAGTTCTGTTCCATCCTTGAGAGAAAGGACAAACAGACATTTCGTTTTCATTCCATTGTCTTTCTAAGAATTGATCACAAAATAAATTCTCCTTTGTATTTCTTTCTTACTAATATCAATTGAATAAGAACACACTACTTCGGTGTTCTATGACATTGGTATCAGAGCAGGGAAAATTAAAGAAAATGGCACAAAAACGCATCGGGGAGAAGCTGGAAATGTTCGATTGAGAAATTTCGGGAATATGAGCTGAATTACACAAGTTACTGGCGATTGAGGAGAATCTGATGTCGTTAGTGAAAAATATTGATAGGTTGGGATTAAAGCCCAAAAGCGACAACAATTGCTGTTGAAATAAGTTGAAGGTAACGCGAAGGAGAAATCCACGACGATCAAAGAAGTAATGGAATCGGCAAGGAAAGTACCAATGATGGAGAGCACGATCGAAGGAGGAAGTACTTCAATGAAGGAAATCGGAGCCGAAGGGAAAACGAGCAAAAGTGAAAGCGAAGAAAATCAAAATGATTGAAATAAGTTCAAGAAAGTTGAGATGTTGGTATTTAATGGCATTGACCCGGATTCATGGTTGTTTAGAGCCAATCGATATTTTCAAATACACAGACTAATCGATTCAGAGAAGTTGATTCTTTCACTAATCAATTTTCATGGACCAACACTAGACTTGTATCGATCGCAAGAAAACATGATGCGTTCAAAAACTAGGCAAACTTGAAGCAACGACTACCGGTGCTATTTCGATCAATCAAAGAAGGTTCCATTTGTGGACAATTTTTAGCGATCAAACAAGAAACGACAGTGGAACAATATTGGAACCTTTTCGATAAGTTAGTGGCGCCATTACCGTATTTACCAAATGAAGTGTTGGAAGAAACCTTCATGAATGGGCTCACACTGTGGATTAAGGCTGAGGTTGAATGTTGGGAACCAACTGGGCTGTCGCAGATGATGAAACTAGCCCAAAGAGTGGAGAATCGTGAAATTACGCGGAGAGAAGTAACCTTAAAGAATATCGAAGGTAAGGCCCAAACAACTTTTCCTATTCGAAATTATGTTATTCCGATAAGTGTGAATTAAAGCAAACCTGGAAATAGTTACCCTATGAGTAAAGTAACATTGAAAGGGGTGGCGTTGGAGAAAATTGACGAGAAGGACTGGCGAAGAGTCTATTTGACGCCGAATTCCAAGCAAGGAGAGATAAGAGATTGTGTTTTCGGTATGATGAACGATATCATGCTGGTCACCGTTGTAAAATCAAACAACAGAGGGAACTGAGAATGTTTGTGGTTGACGAGAACAATGAAGAAGTGGAGATTATAAAAGAAGACGAATATGAGAAGAATAAGGAAATGAAATCAATTGAAGTAGAAGAAGAAATAGGATCGGTCGTTGAACTGGCCATAAATTTAGTAGTTGGCCTATTTAATCTTAGAACTATGAAAGTAAAAGGGAAGATTAAGGAAGAAGAAGTTATAGTATCGATTGACTACGGAGCTACCCACAATTTTATATCAGAAAAATTGGTGTCATTGCTAAATTACCAACAAAGGATACTTCTCACTATGGAGTTGTATTGGGATCTGGAATAGCAATAAAAGGGAAGGGAATTTGTGAAGCAGTGGAGTTGATGTTGAATGGATGGGGAGTAGTTGAAAGCTTTTTACCATTAGAGCTTGGAGGGGTGGATATTATCATAGGAAGGCATTGGTTGCATTTGTCGGGAGTAGCTGAAATGGTCTGGAGGAACCTTACCATGACTTTTTATCATGAGAATAACAAGGTGGTAATAAGGGGTGACTCGAGTTTAACCAAGACTAGAGTATGCTTAAAGAGCATGATTAAGTCGTGGACAAATTCTTATCGGGGATTCTTGATTGAATATAGACCAATGGAGGAGGAATGACACTAGCGGAGTTTTGTGGAGTGGAAGAAGTGCCAATGATAAGGGAATCAATCCCAGCATTGTTAGACAAATACAAAGATGTTTTTGAATGGTTGGAAGAATTACCTCTAAGGAGGAGCATTGAGCACCATATACACTTAAAGAAGGGCACAGACTCGGTGAATGCAAGGTCATACAAATATGCTTATCAGCAGGAGGAAGTGGATGAAATATTAGCTTCGGGTGTAATTCGTCCAAGCACCTAAAGAAGGGCACAGACGTGGTGAATGCAAGGCCATACAGGTATGCTTATCAGCAGAAGGAGAAAGTGGATGAAATGTTAGCTTTTAGTGTAATTCGTCCAAGCACCAACCCTTATTCCGACCCAGTATTGCTCGCGAAAACGAAAGATGGAAGTTGGAGATTTTGTGTAGATTACTATGCCTTAAACAACGTGACTATCCCAGATAAGTTCCCTATTCCTATAATTGAAGAACTTTTTGACGAATTAAATGACACAACACTATTCTCAAAGATTGACCTGAAGGCAGGGTATCATCAAACTCGGATGTGTGCAGAAGACATAGAGAAGACTGCATTTAGAACTCATGAAGGCTGTTATGAGTTCCTAGTCATGCCCTTTGGGTTAACTAACGCTCCATCCACCTTCCAATCTTTAATGAATGCTGTTTTCAAACCTTACTTGTGGAAGTTTATATTAGTGTTCTTTGATGATATTTTAATCTACAGAAGAAGCCTAGAGGAGCATTTGTAGCATCTGGAACTAGCATTGGAAGGGATTATGAGTTGTATGCAAATAAGAAGAAATGCAACTTTGCCTGCACGAGTTGAGTACTTGGGGAATATCATATCTAGAAAGGGTGTTGAAGTTGATCCTGAGAAGATACGGGAAATCAAAGAGTGGCCTATACCTACTAATGTAAGAGAGATAAGGGGATTCCTAGGTTTGACCGGTTATTACAGATGCTTTGTGCAAAATTATGGAACCATGACGGTCCCTTTGACCCAATTACTTAAATTGGGAGCTTTTAAATGGACAGATGAAGCACAAAAGGCATTTAAGAAATTACAAAATGCTTGATGACACGACGCCTGATTTTAATCTACCCTTCGAAGTAGAGATAGATGCTTTAGGATATGGGGTGGGAGCAAAGAGTGATTCAACCACAACACAAAATGCTATAGGCCTCTTGGCTTGGTTTTATTGGAGCAAAGGGTGATCAACACCAAAAATGGATAGCAAAACTATTGGGCTATACATTTGAAGTTGTTTATAAACCAGGGTTGGAGAATAAGGTTGTTGACGCATTGTCAAGAATGCCACCAACAGTACATCTCTACCATCTAATTGCTCCAACATTATTAGCTCTAATTATCATAAAAGAGGAAGTGGAAAAAGATTCTCGTTTAAGGGAGATAATTGCTGAATTACAGGAGGGAGAGGTTACTGATTTTTCTTTACAGTAGGAATGCTAAGGTATAAAGGAAGATTAGTTATATCTAAATCTTCAACACTAATACCAACACTTCAGCACACGTATCATGACTGTTTTTGGAGGACACCTTGGATTTTTGAGAAGATACAAATGATTGACAGGCGAGCTGTATTGAGAAGGAATGAAACATGATATAAAGAAGTGCTGCAAAGAATGTTTGGTTTGTCAGTGCAATAAGGCTTTAACTCATCTCCAGTAGGATTGTTGATACCTTTCAAGGTTCCAGACATTATTTGGAGCGGAATATCAATGGATTTCATTGATGGTCTTTCTTAGTCTGCAGGGTTTGATGTGATCTTAGTTGTGGTAGACAAGTTGAGCAAATATGCTCATTTTATAGCAATGAAGCACCCATACACATCCAAGACCGTGGCTGAAATATTTGTCAAAGAAATTGTGAGACTGCATGGTTTTCCTACATCTGTAGTGTCAGACAGAGATAAGGTGTTCCTTAGCCATTTCTGGAGGGAAATGTCACGTTTATCTGGAACAAAATTGAGTAGGAGTTCGGCTTATCATCTGCAGATTGATGGATAGATAGAGGTAGTAAATAGAGGGGTAGGAGTTTATCTGCGTTGTTTTCTTTTGTAAGAAACTGAAAGAATGGGTGAATTGGCTTCATTGGGCGGAATATTGGTATAATACCTGTTAGAATTAGTACTTTTGGAAAGAATAAAATATACTTTTGGAAAAAATAAAATATAAGATTTTATTTCCTAAATATTTCCTAAATCTTTTCCTTTCTTATTCCTATTGTACTCTATTTATACTCCCTTTGTACCTATTGTTTTTGTTCATAAGAAAAATAATAAAAACTAAAGTATCGTGGTTTTTCTCCCGGTTCTCGGGTTTCCACGTAAGTCTCGGGTTGTTGTTAATTGCTTTCAATATGGTATCGAGCAAAGCAATAACGAAACCCTAGAAAATAACCTAGGAGAAACCCGGTCAAACCGAACCCGTACCGCCGCCGCCGCCGCCGGGATCGCGCCGCCGTGACGCCGCCGTCTCCGCCGCCATGGAGAAACGCTCCAGAACCTACGAAACCGCCGATCTACCCAACGGGAGTGGTTCCCGGCACGCGCCGCCGTCGACGAAGTTGATTCACGCGCCGCTCGTGTCCGGCGCCCACGCGCGCCGCCGTTTCACGTCACCGCCCATCCCTTCCCTTCTACGCGCGTCGGATGTCCACGTCAAACCCTTCGGCCATCCGCATCCTCATGCGCCATCTACGAGCTCCGGACAGCATCCTCAATCGTAAATCTCAATCGCATAAGGGCAAGCTGACGTTGACCCTTTACAAGAACCGCTGTTTTCGTAACGAATTGATCAACCCAAAACAGATCGGACATTGAAGCGGGCGAATCTTCAACGCATTCCAAACCAACCGAGTTGCCGATGTATTCCAAGAACCCGTAACTGCGTTCCTAATCACAATCAAATTATATAACCGGCTCTTTGGGTTCGTCTGGGAATTTTCGCGAAAAATTAAATGGTCAAAATTATTTTTCTTGGTCACAATCAATAAAGATGTTCCTCGAAGGTCGATACCGGTTCATTCTTGGAGAGACGTCCTCCACCAGAGACGCCTTGGAACGACTGGAAAGAGAGGACTCACTTATTCGGTCCATGCCGATTAATAGTATGGAACCACGATCGGCAAGCCTTTACTATATGCGCCACAGAAAAGATTTGTGGGATACAACTCGGACCCTTTACTCGAAACGACGAATGCCTCTCGGTTATATACACTGCGAAAACAGGTCCATAATTGCAAACAAGGGACCCTGGACGTAACTACCTATTTTAACAAGCTCTCTCTCCTCTGGCAAGAGATGGATTTGTGCAGAGAGACAGTTTGGGACACACCAAATGACAGTACACAATATGCTAAACTTGAAGAGGCTGACCGTGTTTATGACTTCCTTGCAGGACTTAATCCCAAATTTGATAATGTTTGTGGTCGTATACTCGGACAAAGACCTCTTCCCTCCCTAATGGAAGTTTGTTTTGAAGTCCGCCTGGAAGAGGATCGCACTAATGCCATGGGTGTATTGACTACCCCTACCATCGACTCCGCAGCCTTTAGCGCTCGGTCCTCAAATCATGACAGTGACAAGAATAATGGGAAGTCAATTCCTGTGTGTGAGCACTGCAAGAAACAATGGCACACCAAGGATCAGTGTTGGAAACTCCACGGTCGTCCCCCAGGAGGTAAGAAACGGTCCTCCAACGAGAAACAGAACTCAGGACGTGCCTACATTAGTGAGACTACACCTGCTAGCACTTCTCAATCAACTGATCCTACTGTGAGCCAGACCAAGACTCCGACTCTGGGTGCCATTGCTCAGTCAGGTATGCCTCAGTCCCTTGGGCTTATTAGCGTTGATGGGAAGAATCCCTGGATCTTAGACTCGGGGGCTACAGATCACTTGACAGGTTCTTCAGAACACTTTATCTCATATGCCCCGTGTGCCGGTAATGAAAAAATCCGAATAGCCGATGGCTCTCTAGCTCCGATCGCTGGCAAAGGACAAATAGTTCCCTTTGACGGTTTTGCTCTCCAGAATGTTTTGCATGTCCCTAAACTGTCTTACAATTTGTTATCTATAAGCAAGATCACTCGTGAGTTGCATTGTAAAGCTATCTTCTTACCTGAATCGGTTTATTTTCAGGACATGAGCTCGGGGAGGACGATTGGCACTGCCCGGCATAGCAGGGGACTTTACATCCTTGATGATGATACCTCATGTAGTAGTTTGTCTAGGGTTAGTTTACTGTCATCCTACTTTAGCACTTCTGAACAAGACTGTATGTTGTGGCATTTTCGACTGGGCCACCCAAACTTTACATATATGCAACATTTATTTCCCCACCTTTTTTCTAAAGTTGATGTCTCTTCTCTATCTTGTGATGTGTGTATCCGGGCAAAACAACATCGAGTCTCTTTTCCCTCACAACCATATAAACCTACACAACCGTTTAACCTCATCCATAGTGACGTTTGGGGTCCTTCCAAGGTCACCACCTCCTCGGGAAAGCGGTGGTTTGTAACTTTCATTGATGACCATACCCGTCTCACCTGGGTCTACCTTATCTCAGATAAATCCGAGGTTCCATCCATTTTCCAAAACTTCTATCATACTATCAAAACACAATTTCATACAAAAATTGCAATTCTTCGAAGTGATAATGGTCGGGAATTCCAAAACCATAACCTTAGTGAATTTCTAGCCTCCAAGGGGATTGTTCACCAAACCTCATGTGCCTACACTCCTCAACAAAATGGAGTGGCCGAACGAAAAAACCGACACCTTGTGGAAGTAGCCCGTTCACTTATGCTTTCCACTTCCCTTCCATCATACCTGTGGGGAGATGCTATTCTTACAGCTGCTCACTTAATCAATAGAATGCCTTCTCGTATCCTCCACCTTCAGACTCCCTTAGATTGTCTTAAGGAGTCTTACCCCTCTACTCGTCTTGTTTCTGAGGTTCCTCTTCGTGTGTTTGGGTGCACCGCCTATGTCCATAATTTCGGCCCTAATCAGACCAAATTTACCCCTCGGGCTCAGGCCTGTGTGTTTGTTGGGTATCCCCTTCACCAACACGGTTATAAATGTTTTCACCCGCCGTCTAGGAAATATTTTGTCACTATGGACGTTACTTTCTGTGAAAACCGACCCTACTTTCCTGTTAGCCATCTTCAGGGGGAGAATGTGAGTGAAGAGTCTAACAACACCTTTGAATTTGTTGAACCTACTCTTATTACCGTGTCTGACATTGATCCTCATCCCATAATCTTACCCACAAACCAAGTTCCCTGGAAAACATATTACAGGAGGAATCTCAGAAAGGAAGTTGGGTCCCCTACTAGTCAACCGCCGGCTCCAGTCCAAAATTTCGAACCTCCTCGAGACCAAGGTATGGAAAACCCTACAAAACCTTGTACTAATAATACAATGAGTGAGAATGACAAGTCTGATGTTGCTGTTCTTGAAAATATGGAAGAAAAGAACCGTGATGATGAGACTGAGGTTAGAATAGAAACCAGTAACGATGAAGCTGAACAGGGTCATACAAGAAAACTTGATGAGTATGATCCCTCTCTTGACATTCCAATTGCATTGAGAAAAGGTACCAGATCATGCACTAAACATCCCATTTGCAACTATGTTTCCTATGATAATCTCTCTCCACAGTTTAGAGCGTTTACAGCAAACCTTGACTCTACCATAATACCGAAAAATATCTACACTGCTCTAGAGTGTCCTGAATGGAAGAATGCTGTTATGGAAGAGATGAAGGCTCTCGAAAAGAATAGAACTTGGGAGATCTGTGCTCTACCCAAGGGACATAAAACTGTAGGATGCAAATGGGTATTCTCTCTCAAATACAAAGCAGATGGTACGCTTGATAGACACAAGGCAAGGTTAGTTGCAAAGGGGTTCACTCAAACCTATGGTATTGACTATTCGGAAACCTTTTCTCCAGTTGCTAAATTGAATACTGTTAGAGTCCTGCTATCTGTTGCTGTGAACAAAGATTGGCCTCTATACCAGCTGGATGTTAAGAATGCTTTTTTGAATGGAGACCTTGTGGAGGAAGTCTACATGAGCCCCCCACCAGGATTTGAAGCCCAATTTGGTCAGGAGGTGTGTAAACTCCAAAAATCTCTATATGGTCTGAAACAGTCTCCGAGAGCATGGTTTGACAGATTCACTACCTTTGTCAAGTCCCAAGGGTACAGTCAAGGGCACTCTGACCATACTTTATTTACAAAGGCTTCCAAAACAGGAAAGATAGCTATTCTAATTGTTTATGTGGATGACATTGTTTTGACTGGAGATGATCAAACAGAAATCAGTCAACTAAAGCAGAGAATGGGTGATGAATTTGAAATCAAAGACTTGGGCAATCTGAAATATTTCCTTGGAATGGAGGTGGCTAGATCAAAAGAAGGTATTTCCGTGTCTCAGAGAAAATACACCCTTGATTTGCTAACCGAGACAGGTATGTTGGGATGTCGTCCTGCTGATACTCCTATTGAATTCAACTGTAAACTAGGAAACTCCGATGATCAAGTTCCAGTTGATAAAGAACAATATCAGCGCCTTGTAGGTAAATTAATTTACTTATCCCATACTCGTCCGGATATTTCCTTTGCTGTGAGTGTTGTCAGCCAGTTTATGCAGGCTCCCTATGAGAAACATATGGAAGCTGTTAACAGAATCCTGAGATACTTGAAAAATACACCTGGTAAAGGGTTGATGTTTAGAAAAACAAATAGAAAGACCATTGAGGCATATACTGACTCAGATTGGGCAGGATCTGTTATTGATAGAAAGTCTACCTCCGGTTATTGTACCTTTGTTTGGGGCAATCTTGTAACTTGGAGGAGTAAGAAGCAAAGTGTTGTGGCCAGGAGCAGTGCTGAGGCTGAATACAGAGCTATGAGTCTGGGAATATGTGAGGAAATTTGGCTCCAGAAAGTCTTGTCAGATCTTCATCAGGAATGTGAGACACCATTGAAGCTTTTTTGTGATAATAAAGCCGCTATTAGTATTGCTAACAACCCAGTGCAACATGATAGAACTAAACATGTTGAGATTGATCGGCATTTCATCAAAGAAAGACTTGACAGTGGAAGCATATGCATTCCGTACATTCCTTCAAGCCAACAGATTGCTGATGTTCTTACCAAGGGGCTTCTCCGACCACACTTCGACCTTTGCGTTAGCAAGTTGGGACTCATTGATATTTACCTCCCAACTTGAGGGGGAGTGTTAGAATTAGTACTTTTGGAAAGAATAAAATATACTTTTGGAAAAAATAAAATATAAGATTTTATTTCCTAAATATTTCCTAAATCTTTTCCTTTCTTATTCCTATTGTACTCTATTTATACTCCCTTTGTACCTATTGTTTTTGTTCATAAGAAAAATAATAAAAACTAAAGTATCGTGGTTTTTCTCCCGGTTCTCGGGTTTCCACGTAAGTCTCGGGTTGTTGTTAATTGCTTTCAATAATACCACATACCAAAGGTTAATTAGTTTCACTCCCTTCCAATCAGTTTATGGTCGTCTACCTCCACAACTTATCTATTATGGAGATGTGGAAACGTCAAATTCGACACTGGATCAGCAACTGAAAAAGAGATATTGCATTGGGAGCGTTGAAGGAACATCTCAGAGTTGCTCAAGATAAGATAAAAAGATATGCAGATTTGAAGAGGAGAAAGGTGGAGTTCCAGGTGGGAGAGATGGTATTTTTAACAATCTGCCCATATAGACAAGTATCCTTGAGGAAGAGAAGATTGGGCCAGTTGCTTACAAGCTCGAATTGCCATCCTCAACTGCTTAACATCCTGTGTTTCATGTGTCGCAGCTTAAGAATATGCTGGGGGAACATATTGAAGTGCACCAATTGATTCCATATCTTACTGAAACTCATAAGTGGAAGGCTATTCTAGGAGAGGTATTTGTGGGTATAGAAAGAATGCTTCAACGGATGGGAGGCGTTGATCAGTTGGAAGGGTTTACCAGCACACGAAGCTATATGGGAAGTGCGTGAAGATTTCCAGCAACAATTTTCAGATTTTCACCTCGAGGACAAGCTGGATTTGGAGGAGTGTAATGATAGACCACTGATTATTTTACAATATAGTAGAAAGGGGAAGAAAGGAAAGCCACGTGTGAAGGGGAATAATGCCATTGGGTATGGGGTCCACAGTGGGGCTAGGGTAGTTAGAGGAAATGATACTGTTATAAGGGAATTTGGGGGAGAGAGTGTGGAGTTCATTTTGGTGTTGAAGTTCCTTTCACATCCTTGAGAGAAAGGATAAATAGAAAGGGAGAGATAAACACATTTCGTTTTCATTCCATTGTCTTTTTAAGAATTGATCACAGAATCAATACTCCACTGTATTTCTTTCTTACTAATATCAATTGAATAAAAACACACTACTTCGGTATTCTATCAGGAGCCCATGGGCTGGGTAAGAAAAAAGCCTAACCCAATAGAACCCATTAGGCCCATGCAGAAAAAAATGGATAAAATGGGAATGAGACCCAGATGTGACAAATAACAGTACCTCTTCCAGGAACTACTAGAAGAAAGAGCAATCAGTCAAAGGTTGTCTGACAGTGAGCTCCAAGCATCTCTCAATAAGGGATTGTGTTTTGGGTGCAACGAAAAATGATCACATGGCCATCATTGTAAGGTGAGAGGGAATTGAGAGCTGATGCTTTTCATCATGAACGATGAAGATGAGTTTGAAGGAGTTGAGACAAGCTAGTGAGAATGAAACTGTAGAACTAAAAGTAATGGAAGTTGGGGATGGAACAAAATTTGCTCAACACCCCATTTATGGATTTTTGGAGAAAGGAACCATAAAGTTGAGGGGTAAGCGAGGCTAGAGGTGATTTTATTGATTGACAATGGAGCAATTCATAATTTTATACATCAAAAAATCGTGGATGAACCTAACCTACCAATCTTAGAGGGGACAAGATTTGAGGTTACTATAGGAGACAGATCAGTTGTCGAAATCTGCAAGAGTCAAAGTGAAACTTCTCGAGTTGATCATTCAGGCTGATTTCTCAGAAATTAATCTGGGAGAATGGATGTCATCTTAGGATTTCCTTGGTTGTGCTCCACTAGATTTATCAGGGTGCATTGGCCACCCCCCTTATTCTCAAGGGAGATTCGACCATGACTATTGCTGAATGTTCATTAAAAATCTTTATAAAGTCGGGGAAAAGGAGGATGAAGGGTTCTGGATTGAATTCTAGAATTTGGAGGTTGAGGAAGGTGAGAAAGCTAAAAATGAGATTAGTGAAAGGGGTGATGAAGAAGGGCTGTCGATGATCCAGCTCCTTCGGGGACATCCAATAAAATTGGAATGATATAGAGAAGATAGCATGACCCTTGTGCAAGGATGACACACACAAATCAAGAAGGGCTGTCGATGATCTAGGTTTTACTGAAACAATATGAATATATTTTTGCAATGCCCAGAAAGTTACCACCTCAAAGTGCAATAGATCACCAAATTCTAACAATGGAGGGTCGAAAACCTATAGATGTGAGAACCTATAAATACAGGTATGTACAATAGAAAAGCTAGTGACTGAAATGATGCAAGTTGAAATAATTAGACCAAGTTGAAGTGTGTACTCGAGTCAGGTGCTGTTGGCTAAGATGGATGAAGGGTGGGGTTTTTGCGTGGATTACCATAAGTTGAATTTAGTCAAAGTGTCGGATAAATTTCCCATTCTCGTGATCGAAGAGTTACTTGATGAACTACACGAGGTAGTTGTTTTTCTAAGCTTGACCTCAAATTCGGATATCACTTTTGCGTGGATTACCATAAGTTGCATGTTGGATGAAGGAAGAGGACTTCCATAAACAATATTTTGGATGCCTAAAGAGCACCATGAATTTTTGGTGATGCCATTTGGGCTAACTAATGCTCAAGCGACATTTCAATCGGTAATGAACCAAGTGTTTCGACCATTCCTATGCCGATTCGTGTTGGTTTTCTTCGATGACATACTAATCTATAGTTTGGATATTACAGAACATGAGAGGCATTTAGGGGTAGTTTTTAACATATTAAGATACAACGAACTATACGCCAACTGGAAGAAATGTTTCATTGGCCATTCAAGAATATAGTATTTGGGGCATTGGATCTTGAACAAGGGGTGGAGGCCAATAGGGAAAAGGCTAGAACAATGGTGAATTGGCCACAACCCAAGGATGTATCGGAACTCAGAGGATTCTTAGGGTTGACAGGATATCGTAGAAGATTTGTTAGAAAATATGGGGACATTGCAGGCCCCTTCACCAAGCTACTACGAAAAAATGTTTTTAATTTGAGTGAAGAAGCATCTACAGGATTTGAAGAACTTATAAGGGCCATGGTTTCAGTACCATTTATGGCTCCCTCCAACTTCACACTATCCTTTGTGATTGAAACTGTTTTGTTTGGGTTGTCCTATCGCAGAACTCAAGGCCAATAGCTTACTTTAGTCAGAAACTATCACCTCTGTGCTCAAACCAAGTTGATTTATGAAAGCGCACTCATGGTTGTGAGGAAGTTTACAGTTATTTCAGATAAAAAAAGCCCTCAAATTCTTGATTGAGCATAGAGTGGTACTATTCTAGTTTCAGAAATAGTTGATGAAACTTTTGGGATATGATTTTGAGATTTTATATCAGCCAATTCTCCAAAAATAAGGCAGCAGATGCCTAGTCTTGAGTCTACCGTCTAGCAGAACTCCTCGTGATGACGGCACTTGGGATAGAGGATGTGGAAGTGGTGATAAAAGAGGTTGAAGAGGATGAAGAACTACAGGAAATTATAGCCCTTTTGAAGACAAATCCCCAAGGAAAGCCGAGATATGAGTGGGTTAATGGCCAGTTACTGAAGGAAGGTTAGTCATACTATGCACTTCGTCCCTTATACCCTCCTTACTGCCCACCTTTCGTGATTCCATTATGGGAAGTCATTCTGGGTTCTTAAGAACTGACAAGCGAATGAGTGGAATGCTTCATTAGGTAGGAATGAAAAGTAATGTGAAGAAATATGTGGAAAAATGTGAAGTTCGCCAACAGAATAAATATGAATCAATCCATTTCTCCGACAACTCTGCCCGAATTGATTTTAAAAGATTGGACAATGGACTTCATTGGAGGGTTACCTAAAGTGGGAGGCTACCATTCCATTATGGTAGTGGTGGATTGTTTGAGCAAATTTGGTCATTTCATCATTCTCAAACACCCCTTTACAGAAAAGCAAGTGGTTGATGTGTTTATAGAAAGGGTTGTAAGTAAACACGAAATTCCAAAATCTATCGTCACTGACCGAGAAAGATCTTTTTAACTGGAAAGAGCTATTTACAGCCATCGGAACAGTTTTAAAGAGGAGTACGACATTCCACCCTCAAACTGATGGGCAAATAGAGAAAGTGAATCGGTGTCTAGAGACATTCTTGAGATGCATTTGCAATGAGAACAAATGCATGCCATGGGCAGAATTGTGGTACAACACAACATTCCATGCTTCTTCAAAGACCACACCATATCAAGTAGTGTATGATAGGCCCCCACCTCCCCTTATTTCATATGGTGAAAGGAAGGCAACCAACAACAGTGCTGATCAACTATTGAAAGAGAGGGATATGGTAATTAATGCCTTGAAGAACCTTCATCGGAGAGAGATGAACTTCCAAGTGGGAGAGGAGGTGTACCAGAAGTTGAGACATACCGGCAACGATCCTTAACAAAAAAAGGAAGCGAGAAAATCGCACCGAAGTTCTGTGGGCCCTACCTAATTATGGAGAGGATAGGAGAAGTGGCCTATCGCCTTGAGTTACTCCCGGAGGCAACCATCCATAATGTTTTTCATGTGTCACAACTGAAACTAAAGTTGGGACAAACTCAACCGGTCCAGCATATTCCCCCAACATTGATCGAAGAGTTCGAGTTGCACTTGAGGCCAAAATCAGTATTGGTGGTAAGATAGAATGGGGAAATCGCAGCAAACGAATGGTTGGTAAAATGAAAGGGATTGCAGGACAGTGAAGCCAACTAACAATCAGTGTACTTAATGAATCAACAATTTCTGTCCTTCCACCTTGAGGACAAGGTGCAATTCGAGCTGAGCAGTAACGTTAGACCCCCAATTCTCCACAGTTATAAAAGAAAGGGCTGGAAGGGGAATTCACAGAATAATTCAAAGGGAGAGCTGATGGGAGAGGAGAGAAGCATCGGAGGACCCACATTGTATATGGGTATAAATAGGAAATGTTCTGGGATTGAGGGATTAAGTCTTGATTTTGGTGAAAGCTGCTGTAGGTTTTTCAGCAGAGGTTTCCAGCCTTCTCGAAGGAGCTGGGTTTATTATTTCTTATTACTTCGTTTCATTTACTTTCTGTTCATTTGATCATAGTTGGTTTGTTGAACATTTTGGTTATTATATCAATATATTACAGCAGAGTATTGTCTCTCTGTTTTGACATTGTCGAGAATTTTTTGAGTTTCAGGTTGAGAATCTTAACACATTTCTCAAGCTTTTTTCTTATGAATGACTATTTCTTGTTTCTCCACTCGATATAAAACTTGTAAACATAGAGATACCTGATCCGGTTCCATAAGTTTCCTTATCTTTTTGTTTTGAAAGGAGAAATGGATCTGCTTCTAGGCCGTCTAACTAGTGGATTTTTTACTCTTGAATTAGGTAGCTAGCACACTTTATAGGCCATTGATGCTTCTTGCCTTCTTGTTGCTCTGGTGAGTTGGTGCCTGTAAACTCATAAAGAAATGATAAAGTTGAACGAAATTGTATAATAACATGCGTGCACAACAAACTCGATCATATGCCCCCTATTGTACAGGTTGTTACATCAAGTAGATAGTCTTCAAACTAGGATGCAAACGAGCTTAACAGACAAGATTGATTCATTCTCTTTCCTCCACCTCTCATTATCATTTGTCGATCAGAGTTCAAGTCCTTTTGCTGAACTCGGAAATTTTAAATTTTGTTGTTATGTTACTGAAATGAGTCATTTAAGCAAAAACCTTCCATTTCTGATTCAAATTGTTAATTAAAAAAGCACATTCCCCTGTTTTCAATGTAGGCAAAGACAAGACTAGATGAGGATCGAGAGGCAGGAAGGAATGACTTGATTTGTTTTTTGAATTTCCCCTTTTAAGTCCTAGCGATGCTACCTACCCCCCTTGGCCCATCCCCAAGACAAAGTAAAGAAAGAAAAAGAAAACATCTCGAGAGGATTCCATCAATAGGTTAAAAGAGATGATTGTATTTGGAATGAAATAATAAACTATGATACTCTATTTCGTTCACTTCGTTTGTAGATGATTGTTTTTAACATGTTGAAAGATTATATATTCAATTTTATCCTGCAACTATATTGGACTACAGATTACTAGATCGTAGTAGAATAAATTTGGCTTCTACGTAGTTTAAATATTTGGGTTCTGTTGATTAGCTGTTATCTTTTCATTTCCACAACTTCATAGAGATGGAAGTTGCAAATTCATATATTACTGTCCATAAGTAGCATGGAAAGAAGTCTGAAGTAGTCCGTGGAAAGATGAAGTCTTCTTTATGAATATACATTGAAACATCCTCTGCTTCCAACTAGAATGAATGTTTTGTAGTTTCCATGACCCAAAATTAGGTTCTAAATTTCCATTTTTCAAGTTTGAACTTGGAAAATGTCAAATCTACACATCTCTTTAAGCATGCTCATCATCTACCTAATTATTTCTTGTTTTGATTAAAATATCAAACTGTCATTAGTAACACACTGGTCACTTGTGTTCATCAGCATGCAATGATGATAAGTGACAAGAGGATCTATACGGACGGTGACTTCTATTTAGTAGAGGCTTCCATGCTACAAATGAAGAAGAGCTTCCGATAATGGCAATGGATTGTTGCTATTTGAAGACTGATTTAATTTTAATATTTGGTCTTGATTCTCTATTTCATACTCATTGATTGTTAACAATTGTATGTGATCATGTTAATTTTTTCATTGAATATTCGTTGGGCAATTGATAATTTCGCTGGAAAAGTGGGTTTGTATTTTGTAGCAGCTTCGATATAAGTAATTTGAAATACGTGCTAGTGATGCCTGGTTGAATACCAGTGTCTTGAAACTTGGTTAAAATATCAAAGCGAAGATTTTCAATCCAGAAAGC AAGTAAGAGTTAGTTCTCTCTTGTTCATATTCCGAAACCAAGAAGAACAACCTTCAGAATCTATCATTTCTTCTCGTAATCAATGGCCTCAATTGGTGCTCGGTCTGCTTTCCGGTCATTCTCTGGTTCGGCACGCCGTGCTGCTGCTCACATCGGTTCTCAACCCAAGCCCTCATCAACCTCTCCCTTTCGCATGGCAACTAACAAACCCCTCTCTCATCCTACTTTCAGGTGTGCGCCTGTGATGAGCTTCTGTTTGGAGTCAATGATGCCATTTCACTCTGTGTCGTCCTCAGCTTTAATGACTTCCATGCTCTCTATCTCGCGCCATAGCTGCGGTTGGCTCCCCGAAGGTAGCTAGCACACTTTATAGGCCATTGATGCTTCTTGCCTTCTTGTTGCTCTGCATGCAATGATGATAAGTGACAAGAGGATCTATACGGACGGTGACTTCTATTTAGTAGAGGCTTCCATGCTACAAATGAAGAAGAGCTTCCGATAATGGCAATGGATTGTTGCTATTTGAAGACTGATTTAATTTTAATATTTGGTCTTGATTCTCTATTTCATACTCATTGATTGTTAACAATTGTATGTGATCATGTTAATTTTTTCATTGAATATTCGTTGGGCAATTGATAATTTCGCTGGAAAAGTGGGTTTGTATTTTGTAGCAGCTTCGATATAAGTAATTTGAAATACGTGCTAGTGATGCCTGGTTGAATACCAGTGTCTTGAAACTTGGTTAAAATATCAAAGCGAAGATTTTCAATCCAGAAAGC ATGGCCTCAATTGGTGCTCGGTCTGCTTTCCGGTCATTCTCTGGTTCGGCACGCCGTGCTGCTGCTCACATCGGTTCTCAACCCAAGCCCTCATCAACCTCTCCCTTTCGCATGGCAACTAACAAACCCCTCTCTCATCCTACTTTCAGGTGTGCGCCTGTGATGAGCTTCTGTTTGGAGTCAATGATGCCATTTCACTCTGTGTCGTCCTCAGCTTTAATGACTTCCATGCTCTCTATCTCGCGCCATAGCTGCGGTTGGCTCCCCGAAGGTAGCTAG MASIGARSAFRSFSGSARRAAAHIGSQPKPSSTSPFRMATNKPLSHPTFRCAPVMSFCLESMMPFHSVSSSALMTSMLSISRHSCGWLPEGS Homology
BLAST of MELO3C034712.jh1 vs. NCBI nr
Match: XP_016901881.1 (PREDICTED: protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X3 [Cucumis melo]) HSP 1 Score: 179 bits (455), Expect = 5.39e-56 Identity = 92/92 (100.00%), Postives = 92/92 (100.00%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. NCBI nr
Match: XP_016901879.1 (PREDICTED: protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X1 [Cucumis melo]) HSP 1 Score: 179 bits (453), Expect = 1.23e-55 Identity = 92/96 (95.83%), Postives = 93/96 (96.88%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. NCBI nr
Match: XP_016901880.1 (PREDICTED: protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X2 [Cucumis melo]) HSP 1 Score: 176 bits (447), Expect = 1.01e-54 Identity = 91/96 (94.79%), Postives = 92/96 (95.83%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. NCBI nr
Match: TYJ97628.1 (protein NUCLEAR FUSION DEFECTIVE 6 [Cucumis melo var. makuwa]) HSP 1 Score: 178 bits (451), Expect = 5.35e-54 Identity = 91/94 (96.81%), Postives = 91/94 (96.81%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. NCBI nr
Match: XP_016901844.1 (PREDICTED: protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X2 [Cucumis melo]) HSP 1 Score: 173 bits (439), Expect = 1.67e-53 Identity = 90/96 (93.75%), Postives = 91/96 (94.79%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy Swiss-Prot
Match: Q93ZJ3 (Protein NUCLEAR FUSION DEFECTIVE 6, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NFD6 PE=3 SV=1) HSP 1 Score: 53.1 bits (126), Expect = 2.7e-06 Identity = 41/93 (44.09%), Postives = 55/93 (59.14%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy TrEMBL
Match: A0A1S4E0X5 (protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X3 OS=Cucumis melo OX=3656 GN=LOC103496017 PE=4 SV=1) HSP 1 Score: 179 bits (455), Expect = 2.61e-56 Identity = 92/92 (100.00%), Postives = 92/92 (100.00%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy TrEMBL
Match: A0A1S4E0Y3 (protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103496017 PE=4 SV=1) HSP 1 Score: 179 bits (453), Expect = 5.96e-56 Identity = 92/96 (95.83%), Postives = 93/96 (96.88%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy TrEMBL
Match: A0A1S4E1L9 (protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103496017 PE=4 SV=1) HSP 1 Score: 176 bits (447), Expect = 4.89e-55 Identity = 91/96 (94.79%), Postives = 92/96 (95.83%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy TrEMBL
Match: A0A5D3BHH0 (Protein NUCLEAR FUSION DEFECTIVE 6 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold469G00120 PE=4 SV=1) HSP 1 Score: 178 bits (451), Expect = 2.59e-54 Identity = 91/94 (96.81%), Postives = 91/94 (96.81%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. ExPASy TrEMBL
Match: A0A1S4E0U8 (protein NUCLEAR FUSION DEFECTIVE 6, chloroplastic/mitochondrial-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC107991430 PE=4 SV=1) HSP 1 Score: 173 bits (439), Expect = 8.11e-54 Identity = 90/96 (93.75%), Postives = 91/96 (94.79%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. TAIR 10
Match: AT1G28395.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G33847.2); Has 89 Blast hits to 89 proteins in 11 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 89; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 62.0 bits (149), Expect = 4.2e-10 Identity = 38/94 (40.43%), Postives = 57/94 (60.64%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. TAIR 10
Match: AT1G28395.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G33847.2); Has 89 Blast hits to 89 proteins in 11 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 89; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 62.0 bits (149), Expect = 4.2e-10 Identity = 38/94 (40.43%), Postives = 57/94 (60.64%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. TAIR 10
Match: AT1G28395.3 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G33847.2); Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 62.0 bits (149), Expect = 4.2e-10 Identity = 38/94 (40.43%), Postives = 57/94 (60.64%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. TAIR 10
Match: AT1G28395.4 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G33847.1); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 59.3 bits (142), Expect = 2.7e-09 Identity = 36/86 (41.86%), Postives = 53/86 (61.63%), Query Frame = 0
BLAST of MELO3C034712.jh1 vs. TAIR 10
Match: AT1G28395.5 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G33847.1). ) HSP 1 Score: 59.3 bits (142), Expect = 2.7e-09 Identity = 36/86 (41.86%), Postives = 53/86 (61.63%), 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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