PI0025559 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTGAATGGGGAGGTAGAGGGGGAGTAAAGGAAAAATCAAAGGGGGAGTGACTTTTTGTAGGGACAGGGTTGAGTGAAGTTGCCAGGAAGCAACCAAAGTATGATTGAATTTTGGTAAAGGGTATAGGCCCAAAATACTTTATGATTTGTCTCTATCAAGCTTGGGGTCTTGTGATGTGTTGCTGGGTAGATTTGCCGACGATATGGGGCCATGAGCTTCGTCATGTAACCCAAATGATTTTCGATAGTAAAAAAGTGGTCAATCGTAACAGACACCAACAGTGAAGAGGAAGAGGGTAGTGTAACGATCTCGTCCTACGATGGGTGGATAAAGAAGAAATCTAGAGTCTTCTTACAGTTCAATCTTTTCAAGCACTTCATTATCTCATCCAAGCATACCCCCCTTTTATTTTGCAAAGTTGTGGAAGGTTCCCTTAATGTTTCTATCTTGTCTCCTTAGAACCTAAGGGCTCAGTTGTACAACCTATAGAACAAATCCTATTCAAGGAAGGTTATTGTTTCTATTTTTTTTGAAAAGGAAACGAGCTTCTTTATTAATATAATGAAATGAGACTAATACTTTGAAAGTACAAGAGAATTATACAAAGAGCTTGAATCTCCAAGGGACAAAGAATCTGAAATCCAAATACACGGACTAACAAAACGAGGACCAAGAGGTTAATGAACTCCAAACAAGGCAGAAAAACAATCAAAACAGCAACTGAAAAGTTTCTATTGACGTTAAGTTTTTGTTTGGCTTACTTTTCTTGGGAGAACATAGACAGTAACACAGGATTCCAGCTTGAGGCCTATTAGTATGGTCTTATAGTTTGTATTAGCATGTATTGTGTAAAGAGTGATGGAGGACGCATATCTTTTTTGGAAGTATTGGTTTTCTTGGAAAGATGTGGTTAAGATTCTTGCAGACTTTTAGGGCGTTGTTGGCCCAAGTTGAGGCTGATGAACATGAACTATGATGGACAAGGTATTGGTCCTTTTACCATCTACTTTTTAGAACAGAGGAAGAACGCTCAGGCAGGCTGGGTTTTTTGCTAATTGTTGGAGTGTCTGGCTAGAAAGTTATGGAAGGATATTTATAGCATAGTCTTACTTCAATAATACTTCTTGTTTGGTGTTTTACTGTTTTTATGACTTTTTCCATTTTTATTCTTATTACTAACTGCTAAGGCTTGTCTATTTCTCATTTTTCTCATTGCCTTTCATCTTTTTTTTTTCCCTTTCTTTCTTTCTTATTTTGGTTCAAGAGATAGGATTCTGCTAGAAGTTATCTTTCTTGTTATCATTCAGAATTGAAGATCCTTTTGGGGCTGCAACATTAAGCTGGATTAACTTTTCTTCTGCAGATATGGTGGACTACTAAAAGCGCAAGATTTGAATGTTATACTGCGGCATTTTGGGATGCTAAGTAGGTGGAAGGATCTATCTCAGGTGCTTCTGGGAACATTTATCTGATTGTAACTATGTATTGTTGAATAAGGATCAAGGCGTTAGTTGCTCATTTTTATTGGTCGCCTTCACCGGTGGGTTTAAGAACTCTCTAAATACCTGTCATTTTATATTTGTTATTGCAGCTGTTTGAGTGGATGCAGGAGACTGGAAAGACCAATGTTTCTTCTTACAGCAGTTATATAAAGTTCATGGGGAGAGGTCTCAATCCTTTAATGGCACTAGAAGTATACAATAATATTCAAGAAGTATCAATAAAGAATCATATTTTTATTTGTAATTCTATCCTCAATTGTCTGGTGAGAAATGGCAAGTTTGATACCAGTGTTAAGCTGTTTCATCAAATGAAGAATGATGGTTTATGTCCAGATACAGTTACATACAGCACGGTATGACATTTATCTTCATAGCATCATACCTAATTTTTGCAGACAAATTAATATATTATATTTTTTTATTATTATTAAATTAAACAAAATTTTTCACTGAAAAAATGAAGAGAGACTAATGCTCAAAGATAAATAACCATCAAGAGAGAAGGGAAACAAAATACAACGAAGATAGACAAAACTATTGAGATACAATGAAAAACAAACTCGAAATAAGCAAACTCTTAAAAACCTAACAAACCAACAATTGAGGAGAATCCAGTGCTATATATTACAAAAACTTTAAATCCAATGCCAACAAAAATACAAACAAGCAATCTAGGAAAACAATCCTTGAAGACTGAAAATGTTAACATCATTGTACAACTGAAAGAGAGCAAGATATCTTGAACAAACAAGGAAATTGAGGCTTCTAAATTAAGTGAGAAAATCAATGAAACAAACCAACTGCTATTCAACTACTGCTTCCAAGCTTGCAAGCTGCTAGAAAGAAAACAACGTCTTTAATGTAATTGTGCCTCTTCACTGCAAAAAAGCTTCCCTCTCATTGTCTATCTCCTCATATGTGCCATCTCAGTTGTATGAATCAAGAAGACCTTCAGCACCTTTTTTTCGAGTGTCCTTATGCAGTGAATTGTTGGCGTAGGCTACTGAAATTTTTTAATTTCAGATGGGTTTTTGATGGCAGTTTTAATGGTAATGTGCTGCAAATTCTATCTGGTCCAGTTTTAAAGAAAATCTCATCAATTTTATGGTGCAATGCAGTCAAGGCCTTATTAATAGAAATATGGTTTGAAAGAAATCAATGCGTCTTCCACAATATGGCTTCAGTATGGTCTAATAGATTTGAGTATGCTCGTTTAAATGCTTCCTCTGGTGCTATATGGTCAGAGGATTTCAAGATTACTCCACACAGGACATTCACCTCAACTGGCAAGCTTTTATAGATTAGTCCTTTTGAGTCCAGCTAAGGAGTTTTAGGCAAGGGCCCTGCTTTTGCCCGGTTTAGAGTTGTCTTTTAGTCTTTTGTAATTGATAGGCTGCTGTTGTAAAGGTCTTATGTTTTGGACCATTTTTACTTTCTTAATGTCATTTCATTTCGCTATTTTTCGGATATGATGAGGACGCTAAGGGGGTGTCAACCTAGTTGAGATATCTGGGTGCGTCTGCTGCTCCTTAGTTCTTTATTGCTCAATGTATAACTCTCTTGTACTTTGAGCTATGTCTCATTTTTTATATTAAATGAGACTCGTTTCCTTTTCAAAAGAACAAAATACTCATTAAATACAAAAAGAACTAGATTTTAAGACCTTTTTTACTCCGTGGAACATAGGAAGGAAAAAAGAATAGATAATGGCTCAAACACTTGAATTGTGCCTCTCTTCGGTTCTTTCAAAACTCTTTTTGGTGTATATGTGTTTTTTTTTTTTTTTGAGTTATTCCTATGATCAAATATTTGGTATTAAATCACCAATTGAACCAAAAGTTTGAGCTAATGGGTTATGGTAAATTTAATTATACGAGCACTTAAACATTTCACACTTGTGAGCTTGAAAATTTGTTGAAGATCTAACAAGTGGAAATCAATACTAATTGGTGAGGAAATTAAGAAATGATATTACAGGGTTTGAACATAGGATCTCTAGCTCTGATACCATGTTAAATCACCAATTGACCCAAAAGTTTAAGTAAACGCCACTCTCAAACTATGGAATACACAAAGGGAATTTGACTAGAGTTATCATAGCCAAGCTCAAAGTATTTCTAACTGGGACAATTTAAAACTGAAGTTGTAGTTTTCTTTTATAGTGCTTAGAGCTCATTACTTCCTTGAACTTTTTTGGGACAAATGCACTTCTACTATTTTGTCAAAACCCAACAAGTTCCACCTTGACGTGATATTTGAAGAGTCCACAACTCCTACTGCATCCATTATCTTTATTGACATCATAATTTTAAACTTAGAGAACTATACCTACTCCCCCATAAAGAGTAAATCACTCGGAATGCCACCTTCCAAGGTTTCTTTTTTCTTTTTCCACATGGCGATAAACCTTGGCGAAGTTTGAGGTGCAAATTCCACCTACTTGGCTTACTCGAAAGTTCTTCAACCATTAAAACAACTTTTATCACTCACCTTGCATAACTAGCAAGCCAATGCATGTGTTTAAAGTTGTGGAATTACCAACATCATCCTCGACATGGTAAAGTGGACATATCGTAAAGATGTATTTCGTCTTTCTTTAGAGGAAGTCACCGTCTCTGCTGACGAGAAAGACTACATCAGCATCTGACCAATCTACTCTATTTTTCATGTGCCCAACATTCTGAGCAGGCTAGTTTCTGCTTAAAGACTTTCTTCTTTGAACCTCTACTAGAACCACTCTTGGACTCCACTCGACTACCACTCCTTAACTTGCACTTGTGTTAATACATCATTGACTTTCACTTGCCACAAGCCAAAATTGATCCTACCACAAGTTGAATTTCCATTTCCATTAGATTTCTCCACACCAAACTTTACTGAATGCATAAAGCTTAACACATATGCTTCATTTCTAGCAAATTAGCAAATAGTGACCAATCCACACCATTTACAAATACTGTAGCACGTTTGAGGAAATCCTTTATGACGTGGAAGCTCAGACAGTGTTACAATCACAGAGCATACCTATAGATACAAAAAAACGAACCTAAAGCTCTAATACCAACTATCATGGTATGCTTCATTTCTAGCAAATTAGCAAATAGTGACCAATCCACACCATTTACAAATACTGTAGCACGTTTGAGGAAATCCTTTATGAAGTGGAAGCTCAGACAGTGTTACAATCACAGAGCATACCTATAGATACAAGAAAACGAACCTAAAGCTCTAATACCAACTATCATGGTCGTACTTCTCCAACTGTGTGGCACCTGATTTACACTCGATCATAGTCAGCCGTAGGGGAAACTCAAGCACAATCTACTTTCTGCTCGACTCTTTGTAGTTTCTTCGGGCCTTAGGCAAAGTTCTCTCATCATCAACTGAACTTAACTCTTGTGAAACTGAACTTCATTTGGCCACACATTACCCGTATGTGTATTTTCCCTCATATGCAACTCTAGCTGACATGTCTAAACTCTAGGCCAAGTCCTGAGGTTCAACGTTGCCCATAAACTAGGCTAAAGTCATCACAATGCAAGCCACATCTCCCTTCATCATCTTGTGTTGTATCAAGTTGGGTGAGATTCAAAACTAAATAATACCTCAAAATTATTATTAAAGAGCTGATGGGTTTACTGATGGGTTTAGTTCAAATACTAAATCATAACACCTCAAGTTATAACAAAGTAACTAACTAAACAAAAGATCTTAAAGAACTTAAAGAACTTAAAGAACCGCCAAGTTCTAAATCAAAACCCAAAGAGAGGGCAATAAACTAAAACAAACGAAGTGGTTACATCAAACGCAAATATAGAATTGTATTGCACTACCACAAGATGTTATTGATAGCCTTTCAAGAGGGCTATCTCTCCCAAGTTTCACAATGGGCACAAACTAAATCCTTCACCAAAATAATCTCTCCCTCGAAGTTCCCTGACACCTCTTATTTATATTTGAGTCACTCCTAACTAATTACTCATATGCCCCTCTATTATTCTATTAATGTTACCAATATACCCTTCATTAGTGCTCTTCCAGAGTCACAGTTTGCTAAGTCTGTTTATGGTTCATGTCTATTGGTTCTCACACGACTTATTTTAGGAAGTGAAATGACTGGGCATCTCATCATTGACAGAAGGTGTCTTATCAAGGCTGTCAGCTCTATTGCCAAGTTCATATCTAGGCTTGCTTTAATGTAGTGATGTTAGCTTAGGCATTCTAGATAGGTCCACTTTCATCACGATGGATGGTTATCAAGGTTAATTGTTTCAGTAATTAAAATGTGTACATATAGATTTCATTATCGGGGTTTTATACTGAATTGTATGTCATTTTTTGTGGCATTCAACTGTCCTTGTTTATTATTGTTATTTTCTTGTACTAACAAAGTCTGCTGTATTATTCTTTATATAAAGGCTATATTCTACGCCAAGAATTTTGCAATAATATAACTAATGGGTGTCTTGATTTGTTCGAGTGGAGAGAGGGGATAGTTATACTTTTAATTGATATGTTCTTGTTGAGAAGTAAAAGTTAACGTCTTGTCTACTTCCAACAGATGCTTACTGGTTGCATCAGGGTTAAACATGGTTATGCTAAAGCAATGGAGCTTCTTAAGGAGCTGCAAGACAATGGACTATGCATGGATTGTGTATCGTATGGGACACTGATAGCTATTTGTGCTTCACATAATAGATTGGAAGACGCAGAGAGCTTCTTCAACCAGATGAGAGCTGAAGGTCATTCACCAAATATGTTCCATTATGGCTCTCTACTCAATGCTTATTCAATCAGTGGAGATTATAAAAAGGCTAATGAGCTGATTGAGGATATGAAATTGACCGGGTTAGTACCAAATAAGGTTTGTTTTCTTGTTTATGGTATCTTGGTAACTTTGGGATTTTGTTTCATACATATGCATAATTTTTATGAGAAGAATCGAGAAAAAAAAAAAACACAATATTTAGTTAGGAAAACATACAAAGTTATATGATTAAAATTCCTACCAATTGTAAAACTATGAAAGTAGAAAAACAATTGGATTTTGCACGATCATGGAAAATGGATTATTCCAAGAGCATTATAAAGAAATAGAATTTTAACATCCAACAGTTATTTAATTATTTCTCTCTCTATTTCCAAATTTGTGTTATCCTCCGTAGATAGATGCATCAAAGAATTGCCTATGAAGGATCCTGAATTAGTAGACGATCAAGATACGGCAATCAAGATGGCTTTAGAAATGTTAGAGCCTTGGCCCAATAGCCCAATTCATCCCAGGCAATCACTTCTAGTCAAACAAGACCACCAACCCATACAAGATTCGAATCGAGAATCAGACACCGATAACAAATCCATTTGAATAGTAACCATTCTAGATAAGGGCAAACTTAATTAAATAGAGGAACCTGTGAAGGGATTTCTGAGGTGCAGTTCTAAGCCAAGAAAGAAAAGGGATTATGCTTTCGGTGCGATGAAAAGTACACCAAGGCACATCACTGCAAAAATAGGGAATTATGTGTATTAAAAGTTTGGGAGGAATGAGGAAATCAAGTTCAAGATAAGCAAAAATAGGAGGGTAGATAATAATCTAGTTGTAGTTAATTGAGTTGAATTAGCATTGAAATCAATCATAGGGTTTTCACCTTCTGAGATGTTAAAGGGTCGAGGTACAATAGAAGCAAATGGAGTAATTGTTTTAATCAATGGTGGAGTAACTCACACTTTCATCTCCCTAGCAATTAGTGGTAGAGTTGAATTTATTGCTCACTGAGATGCAAACTACGGAACAATCCTGAGCAACGATGTAGTGATTTGTGGAAAAGCCCTTGCAAGGCCATGGTTGTGAGGCTACTCAAGCTAACATGTAGTGATCTTGGGGGAATAATGGGGATGTAGTGGTTAAGAAAGATGGGATTCATGGGGGTTGACTGGACAACCCTCACGATGACATTTGATATGAGAGAGGGTACTGTGACTTTGAAAAATGACCTGTGGCTGAGTGGAGTTGAGGTATTGCTGAAAATGTTGTCTCAAACTTTGAGTAGTAGAATTTTGTGGCTTAAGTATAGAGGAGCAAGACAATCAGGAAGTCGACCAAGGTGAAGATGAGGCAAGCGAGCCATTAGAAAGATTAAGTGATTTATTAGAAGATTACAACCTAGTTTTCAACTTGCCTAATGGCTTCCCCTCAGAGAGAATCATCATACTATATTTTATAAACATTTGAAGAATAATAAAATCTCAATTCTGATTGTCTATATAGATGATATTATTCCCACAGGTGATGATGAAACATGTTTAGTCGTACTCAAGAATAATCTTGCATGTGAGTTTGAAATCAAGGACCTGGGAGTTGAAATACTTCATAGGAATGGAGTTTGCAAGATTGAAGAATAGTTATTGACTTACTTGGCTTTAGGATTGCGGAAACCCTTCTATTGAACCTAATCTCAAGCTACAAATAGGTAAAGCAGAAGAAATAAAGGACAAAGAACGATATCAAAGATTAGTTGGAAGATTAATTTATCTATCTCATACACATCTTGATATTGCTTATGCTGTCAACATGGCCAGTCAGTTTATGCATGCTTCTGGGCCAACTCATTTTGAAGCCGCCTATAGAATTTTCAGGTATTTGAAAGTCTCCTAGAAAAGGTGTTTCATTATGATTTGTGATGACATAATTACATTTAAATAGAAGTTTATACTGATGCAGATTGAGTAGGAAGTTGAACAAATAGAAGATCTACCTTTGGTTATTGTTCTTTCGTGCGATGGAATCTGGTTACTTGAAGAAGTAAAATAGAATGTGGTGGGCAAAAGTAGTGCTGAAGCGAGCCTTAGCTCATGGAATTTGTGAAGGCATATGAATCAAAAGAATACTGGAATATTTGACAATTTCTTCGACCACACCTATATGGATTTACCGTGACAATAAAGTTGTCATCTCTATTTGCCATAATCCAGTTTGACATGATAGAAAAAAACATATCGATTTGGAGAAGCATTTTATCAAGGAGAAGTTTGAAGCAGAAACAACACGTACCCCTTAGCTTTCTAAATCAAAGCAATTTGCTGATGTACTCAATTTGAGAGATTGATCTACAAGTTGGCTATGGAAGACGTCTTTAAATTAGTTTGAGGGAGAGTATTGGAATTTCTGTTATTTATGAACAGTTGTGTATAAATATTAGTTGTCAAATATTTACCTTTTATTGTCTTTATTCTTTCCCCATATTTGTATGAGGTCTTTCTTCCTTATAAGAAGACCTAAATTGAACATATTTAATACGAGAAATAGTTTGATTCTCTCAAATTTTAGTAAATGTAACTGTAATTTCTCTGATTTGTTTAGAAATATATTTCTTTTGTTAACTTCTTACTTTAAATGGAAAAATTGTTTCCTTTGTAGAAAATTTTATACTGTAGGTATTCAATATCTACTTGCTGGTCTTCGTTTCTTATAAAAGAAAAATATCTCCTTGCAGGTGATTTTAACGACGTTGCTAAAGGTTTATGTTAGGGGAGGTTTGTTTGAGAAATCAAGGAAATTGTTATCAGAATTGGAAGCCCTTGGCTATGGTGAAAATGAGGTATGTGCCAATGATTTGTGTTAGTATTATCTTTTTGTGCGTTTGAAGCTAATGTTTGGTACTTACTATTTACTTATATGATTAAACTAGGAAGATGGTCATATTGTGGGTTTTCATGTTTGTACTTTTCAAAATCTATTAATTCTAGTTTGGTATTTCTATTGTGTCGAGTGATTTCTGGGGTTTAAGAAGCATAAATACGAATAAAGGATGCAAACATGTAATGACATTAACTTGGATTCTACGGGGTGTTCTCTGGCTGGATTTGTTTCCTCCAGTAGGAGTTGATGCAGCTTAGCTGTTGCCCGAAGAATTAAGACACATTTAAAAAAGAAAGTAGTTTAATTGAAGAACTTGGATCAAGGAAAAGAAAAGAAAAGAATTGAAGTGTAATCGAATTGGAGCAAAAATCAGCGAAGTGGAGGGCTAAATCAAATTTCAGGGTGAAAGCTTGTCCAAATTAGCTGGATAGTTCAGATGGCTTGGAGGCAAAAATGAGAGCTGAAAATCGAAGACCATTTGAATGTAAAGAGATTGCAGTTAATCCTAACAACCCAAGAGAGGAGAGTATCAAAATAATAAAGTAATACTGAATGTTACAATAACCCTTAGAAGAGGAGAGTAACAAAGTAAACCAAAAATTGACAATAATATCGAGATACAAAAAGTGTCCAGACAACCAAATTCCTTTAATCCTAATCCGAACAACCAAAAAAGAAAAAGAAAGAAAAAGTGAAATCATGAGGAATAGCTACAGAAAAAACATGGTAATGAGGAATGCCTAAGATTAGAGTGCTATTACAAAAGTACCTACCATATTTATGGGGGAGGAGATATCAGCAGGATACTAGTGTTAGATATTATATTAAATTTGCCTTCACCCACTAGCTTAAACTCTTGGGTCAATTGGTGATTTAAGAATTAGGATGTTTATTGTTGTGATATATAATTAAATTTACCTTCACCACTAGCTTAAGCTTTTGGGTTGGTTGGCGATTTAAGATTTATTTAATACTTATTGATAGAATCAACATCCCTGTCTATTTTCTATGAACAAGTAAGGCATTAACGAACTTCTTGTAATGACCTCTATTAGATAAAAATATATCAAAATCCAGGCAAAAGAGGAACAGCCTAAGGGCGAGGGGATGAGAGGACCCCTCCCCAAACAACTAACAAAGAAAAACCATCCAATTGTTAGGAATCGTTAGGAGGCTGTAATTACAACAGAATTTAGTTCAGTTAGTGCACCACCAAGAGGCTGTATGCTGCACAAAAGCCCAGAAAGAATCAAAAGAAGCAGACTTATCTTCAAAAGTTCTACCATTTCTCTCTTTCCATGTACACCAAAGCAGAGATCACGTGGCACATTTCCAAAGCACTTTTCCAGTTTTGTTAAAAGCATGACTTTCAAGCCCTTCAAGGATCCAATTATCAACTTTGTTAGGAAGATAACCCTCCACCCCAAAAATATTAAACAACGAACACCAGCCCTGATGAACAAACTCGCAATGCAAAAATAAATGGTCCAAATTTTCCTCAGCTGTCAAACAGAGAGCATATAGAAGGAAACGTGGAATTATTTTTTAACTTTCTTTGCAGTTTGTCATAGGTATTTAAGCTTCTGTAAGCCAAGGACCAAATGAAGAATTTAACTTTTTTGGGCACCTTCATTTTCCACACAATTCTCACCAAAGGGCTCGTGAATGACGGGGGCAGCCTTGCCAACTGCAGGAAACTCTTGTATTTGTTTTCGCTGTTCTGTTCTTTGTATTTTGAGCATTAGTCTCTTCTCATTATTTTAATGAAAAGTTTCGTGTCATTTAAAAAAAAAAGTCATGCATCCAAGTCTAAATTTAAACTTACTCTCCTGCACTTAAACTCAGATCAAACAGGTTTAATTCATGGCCAAATAATTAAATAAATAATCACGGGAAACATAAATAATAGGTTGCAATATAGAAGTAGTCTCAAAATACAATTAAAGTTACAAATCCCAACAAAATCATTCAAAATCTAAAACATTGAGTTCATCTACTCGATATAGAATAACTTTGAACGGATAACAACTACGAACCCAATCTAGGAAAATACAAAAGTAAAGAAAAACTCTTTGACCCCTGTCAAATTCGTTCTTGTTGTGAATTTGGCTATACCGAGCCTTGAGTTTCTTCCTTGGCTCTCAACTCTCAAGAGTTCTGCTGAACTCCCTAAAATTGTGTAGAAACCGAAATTGCATTTTTTCCCTCTAAAAGGATTCCCAAAATAGGATTAAAAAAAGGAACTTATAGAAACCCTAGTCAAAGTGTAGAGACCCTGCCCTCGAAATGACCAAAATATCCTCAATTTTGCCTAGTGCTAATTTTTTCTACAATTCACGTGAAAGCACATAGCCTCTAGATGCTGTGCTCTCGGCCAGCATGGCTTGGAGCTGCTTCAGCATCCTGTTTTGGTCATTTTTTTTTCTTTACGCCACTTGGACTCTAATTTTTGTCTCAATGGCCCAATAGCTCATTATTTCACCAAAAACTCCGATGTTGCTCCAATTACTCTAAATCTATGGAATAACCAAATTTAAACGTGAAAGCATCAAAGTATCCCTCAAAACTAGCATAAACTAGAGAGATACTAAGGTAACACATTTTGTGTGCTATCAAGAATCTTTCCAATCAAGATTGAAAACTCTATTTTTCGTAATGTATCCTTGGTATGGAAGGTGGATTATTTTATGTAATTAGTTGGTTTTTTTTTTTGGCAGTATATTTTACTTCTTATTCTAGGAGTTCTTTGTAACTCATGCATGTAATTTTTAACAACTTCACAGAATAGTATTGTTCCCTTGGTTCAAAAAAAAAAAAAAAAAGAAAAAAGAAAAAAGGAAAAGGAAAAACTACTTCTGATACTCATAAAGGCGATTCTTTTTGTAGATGCCATATTGTTTGTTGATGGATGGCCTTGCCAAGGCAGGTTCTATTACAGAAGCAAAGGCAGTTTTTGATGAAATGAAAGTAAAAAACGTTAGATCTGGTACGTTTTCTCCTTTTAGATTTGAATTTGTAAATCAGAAGTAAAATGTACTAGCTAGAAGAGTTGGAAAAAAATGACAATTATTAATTTATACTCCTAAACTTTGGGGTTGTATCAACACTCCTTTGTATCAATCTAAATTCTAGAATTCACTAGCTATTTTCACTTAATTCCATTTAGAATTAACTTAAAATCACCTAAACGTAACTATTCTTCTCCACGAATTTAACCAAAGTACTATTGGAAATTATCACAATTATTTAAAAATAAGTAAAAAAATAGAGGAAGATGTGAGATGAAAATCGTTTGGGTATTTCATTTAATTTTATTTTTTGGGCAATTATAAATTTTAATCCTAAATTTTGGGGTTGTATACATAAATGAAATTCAAACCCTAAACTTTAATCAGTGTAAAGTGAATCAATTTAGACTTTCTTTTTAGAATAATCAGTTTAGACTCTTTGTTAGTGATTTGTAACGGTTAGATGTAATATTAATTTTACCTTCATCCATCAACTTAAACTTTTGGGTCAATTGGTGATTTAAGATGTTATCAGAGTAGTTTGTTCAGGAGGTCCTGTGTTCAAACCCCTACATTGTTGTTTGTTATTTCTTTCATATATTTCGACCCCACAAGTGAGGGGGAGTGTTAAATATAATATTAAATTTACCCGCACCTATCAACTTAAGCTTTTGGGTCAATTAGTGACTTAAGAATAACTATTTTCATTTGATTCTGTTTAAAGTTAACTCAAAATCACTTCAATAAAATGTGATTTGTAACTATTTTCATTTGGTTCCATTTAAAATTAACTCAAAATCACCCATAAAATTATTCTTCTCTAAATCCCTCCAAAGAAGCAGAAAAAATAATCATGTAATTTTTTTGGTTAAAGTGAAGAAAAATAGACGAAGATGAATAGATGAAAATAACTCGTGTTTAATACAATACATTCATTATCTATTTGATTATCGTATTTTTCTCTTAATTACATAGTCATAAATCATTACATTTAGAGAAATTTTATACATGTGTGAAAGTTACATTTGAATGGTTTTAAAATGACATTCTAATGGAGGGTCCAAATAGATTCACTTGTGAAAACTAACCGTTTAAATTGATAATATTATTATTTTGAGTTGAGGTTTTTATTGATGCAAATCCCAAAGTTTAGGTGCATAAATTAATATTTGCCAAATTTATAAATTTCTATATATATATACACACATATTAATTTGTTGTTAGTAGGTTGTAGTTTGTTCGCTGAATCGTTGCTCGGTTAGACATTAAAATGCCAATACTAGTCTGGATCTTAATGTTTTACATAGCCTTTCATAATCCTAAAAACCGGTATTAATGTTTTGCAGCCTTTCAAAAACCTAAAATGGTTTTAATGATTATAAAGGTTTTTAAAAAAAAGATTATAATAGTCTTTTAAAACGTTAGTATCGATTGTTAGGTTTTAGATAAACTATTATAAACATTAAAATCTGTATAATTTCTTTTAGGATTATAAAAGGCTATGTAAAACATTAAAACCTTTCAAAAACCTAAAATTGTTATTTGCACAGTTTATATTCTAGTATACTTTCAATTATTGAATAATAGATAATTTCTTCTTTGGTAATACACCACTCAGTGTCAGTGACACAAACTTCAGTTACTATACCCTACTCCGTTCAGTTTAAGGACTATCTTTGCACATTTTTTCATATTATCAAACATTGTGTGGAGTTTTTCTAACACCATCTAAAAGTGGTCAAACTTCACTTCTGGCTGATTCTTTACATTCTGTCAAAAATTTCTCTTTGTAGTGGTCGATCCCATGGAAAATTAATTTACTTTTTCTTTTCTAATCTACCGGCTACCGCAAGGGCAATAATGTATTTTCTTCTCACAGATGGATATGCTCATAGCATCATGATATCAGCTTTTTGCCGGGGTGGGCTTCTAGTAGAGGCAAAGCTGTTGGCTAAAGATTTTGAAGCCACATATGACAGATATGACATTGTAATATTGAATACAATGCTATGTGCATACTGCAGAGCAGGGGAAATGGAGAGTGTCATGCAAATGCTTAGGAAAATGGATAACTTAGCAATCAGTCCAGATTATAATACCTTCCATATCTTAATCAAATATTTCTTTAAGGAGAAACTATATCTACTTTGTTATAGGACATTGGAGGACATGCATCTTAAAGGCCACCAACCGGAGGAGGTAAAATTTTGTTATATCATGTCAAATAATATTCTTGAAGGAATTGTGTCATTAAGGAATTGTGTCATTAATTCCTATTTAGTACTGATGTAAAACAGTATCGAGAGAGAGAGAATAGGAAAGAAAATAAAAAGAACAAGAGCGGAATACATTTTAATGTCAACTATTATAATCTGTGCCCTATTGTTTCACTTGGAAATTTTTACATATGCTGAACTATTCTTGGTTAAGAGTTGAGATGAATGCAATCTTATACTTGCTAATGTTCATGCCTTAAACTTTAATGAACTCTATAATATCATGACAGTACTTCAACTAATATTTTATTTGAGTTGGATTTGTAACTGTAGGCTGAGTAAATGGGCCATCATTACTTTATCTTGGGTTGATAATTCCATCTTATGCAACTGTAAAATTATCTAGCACTTCAACAATTCACAGTTAACCCAAAGGATTTGAATACAAAGAGTATGATTGATTGTTCTTTGGTTCATACTTCATTCTATCTTAAAGCAATAATTGTTTTGGTCCCCTGAAGAAACATGTTGTGTGTTTTATTTTTCTAACTGATGTAGCACAAAACAGAACTTTATCCATACAGAGATTAGGAATTTTCAATATAAAGTTTGAGCAATTGACTTGTTTTATTTTATTTTGAAGTGTGGGAGATTGCAAGTTTTGTTTCGACATTTCATATTCACATTGGAAAAAATGCAGTAGGTTTTCTTAGTCAGAATTGGTTTATCCACTCCAAATGTGACTTTGTGCAGGAGCTTTGTTCATCTTTAATATCGTCTCTTGGGAACATACGCGCTTATTCGGAAGCACTTTCCATTTACAATATATTGAAATATAGTAAAAGAACAATGTGCAAGGCACTCCATGAGAAGATTTTGCACATTCTAATTGCAGGTCGACTTCTCAAAGATGCTTACGTTGTTGTCAAGGTATTTCATAATTAATTTACATATCTATAATTTTCAACTCTATACTTCGTATATCATCTATTTTCATATGCTGAAAATTTCATTTCCTTGTAGGACAATGCAGGGCTAATTTCTAAACCTGCTATAAGGAAGTTCGCTTTTGGATTTATGAAGTTTGGTAATGTCAACATGATAAATGACGTAATGAAGGCAATCCATGGTTCTGGATACAAGATTGATCAGGTAAATTATCAATGGACATAGAATAATGAAGTTTGGTCATGTCAACTGATTGAGTTTTAGCTTGTCTTTAACTTCATGTGATTATACAAAGTCTGTTAATATAATATTTTAGGTAGCTAAGTTACTAATTTTTGTTTTAAGTGGTTGAATGTCATAGATATTTTGACTTGAGACAGATAAATATTTATATGTGGCTTCAATCTATATACCTTTTTACTTTTAGGTTCCATAACTAAGTTACTTGTTCTTCCGCAGGATTTGTTTATGATTGCTACATCACGCTACATTGAGCTACCTGAAAAGAAGGATTTATTTATTCAATTGCTACAGTGGATGCCTGGTCAGGGTTATGTTGTTGACTCATCAACAAGAAACCTTATCTTAAAGAATGCTCATTTATTTGGTCGCCAGCTTATTGCAGAGATTCTATCAAAGCAGAGTCTATTGTCAAAATCCACAAAATCTCGTGAGAACACCTTTCTTTTAAAATAA ATGGTGAATGGGGAGAACAGAGGAAGAACGCTCAGGCAGGCTGGATATGGTGGACTACTAAAAGCGCAAGATTTGAATGTTATACTGCGGCATTTTGGGATGCTAAGTAGGTGGAAGGATCTATCTCAGCTGTTTGAGTGGATGCAGGAGACTGGAAAGACCAATGTTTCTTCTTACAGCAGTTATATAAAGTTCATGGGGAGAGGTCTCAATCCTTTAATGGCACTAGAAGTATACAATAATATTCAAGAAGTATCAATAAAGAATCATATTTTTATTTGTAATTCTATCCTCAATTGTCTGGTGAGAAATGGCAAGTTTGATACCAGTGTTAAGCTGTTTCATCAAATGAAGAATGATGGTTTATGTCCAGATACAGTTACATACAGCACGATGCTTACTGGTTGCATCAGGGTTAAACATGGTTATGCTAAAGCAATGGAGCTTCTTAAGGAGCTGCAAGACAATGGACTATGCATGGATTGTGTATCGTATGGGACACTGATAGCTATTTGTGCTTCACATAATAGATTGGAAGACGCAGAGAGCTTCTTCAACCAGATGAGAGCTGAAGGTCATTCACCAAATATGTTCCATTATGGCTCTCTACTCAATGCTTATTCAATCAGTGGAGATTATAAAAAGGCTAATGAGCTGATTGAGGATATGAAATTGACCGGGTTAGTACCAAATAAGGTGATTTTAACGACGTTGCTAAAGGTTTATGTTAGGGGAGGTTTGTTTGAGAAATCAAGGAAATTGTTATCAGAATTGGAAGCCCTTGGCTATGGTGAAAATGAGATGCCATATTGTTTGTTGATGGATGGCCTTGCCAAGGCAGGTTCTATTACAGAAGCAAAGGCAGTTTTTGATGAAATGAAAGTAAAAAACGTTAGATCTGATGGATATGCTCATAGCATCATGATATCAGCTTTTTGCCGGGGTGGGCTTCTAGTAGAGGCAAAGCTGTTGGCTAAAGATTTTGAAGCCACATATGACAGATATGACATTGTAATATTGAATACAATGCTATGTGCATACTGCAGAGCAGGGGAAATGGAGAGTGTCATGCAAATGCTTAGGAAAATGGATAACTTAGCAATCAGTCCAGATTATAATACCTTCCATATCTTAATCAAATATTTCTTTAAGGAGAAACTATATCTACTTTGTTATAGGACATTGGAGGACATGCATCTTAAAGGCCACCAACCGGAGGAGGAGCTTTGTTCATCTTTAATATCGTCTCTTGGGAACATACGCGCTTATTCGGAAGCACTTTCCATTTACAATATATTGAAATATAGTAAAAGAACAATGTGCAAGGCACTCCATGAGAAGATTTTGCACATTCTAATTGCAGGTCGACTTCTCAAAGATGCTTACGTTGTTGTCAAGGACAATGCAGGGCTAATTTCTAAACCTGCTATAAGGAAGTTCGCTTTTGGATTTATGAAGTTTGGTAATGTCAACATGATAAATGACGTAATGAAGGCAATCCATGGTTCTGGATACAAGATTGATCAGGATTTGTTTATGATTGCTACATCACGCTACATTGAGCTACCTGAAAAGAAGGATTTATTTATTCAATTGCTACAGTGGATGCCTGGTCAGGGTTATGTTGTTGACTCATCAACAAGAAACCTTATCTTAAAGAATGCTCATTTATTTGGTCGCCAGCTTATTGCAGAGATTCTATCAAAGCAGAGTCTATTGTCAAAATCCACAAAATCTCGTGAGAACACCTTTCTTTTAAAATAA ATGGTGAATGGGGAGAACAGAGGAAGAACGCTCAGGCAGGCTGGATATGGTGGACTACTAAAAGCGCAAGATTTGAATGTTATACTGCGGCATTTTGGGATGCTAAGTAGGTGGAAGGATCTATCTCAGCTGTTTGAGTGGATGCAGGAGACTGGAAAGACCAATGTTTCTTCTTACAGCAGTTATATAAAGTTCATGGGGAGAGGTCTCAATCCTTTAATGGCACTAGAAGTATACAATAATATTCAAGAAGTATCAATAAAGAATCATATTTTTATTTGTAATTCTATCCTCAATTGTCTGGTGAGAAATGGCAAGTTTGATACCAGTGTTAAGCTGTTTCATCAAATGAAGAATGATGGTTTATGTCCAGATACAGTTACATACAGCACGATGCTTACTGGTTGCATCAGGGTTAAACATGGTTATGCTAAAGCAATGGAGCTTCTTAAGGAGCTGCAAGACAATGGACTATGCATGGATTGTGTATCGTATGGGACACTGATAGCTATTTGTGCTTCACATAATAGATTGGAAGACGCAGAGAGCTTCTTCAACCAGATGAGAGCTGAAGGTCATTCACCAAATATGTTCCATTATGGCTCTCTACTCAATGCTTATTCAATCAGTGGAGATTATAAAAAGGCTAATGAGCTGATTGAGGATATGAAATTGACCGGGTTAGTACCAAATAAGGTGATTTTAACGACGTTGCTAAAGGTTTATGTTAGGGGAGGTTTGTTTGAGAAATCAAGGAAATTGTTATCAGAATTGGAAGCCCTTGGCTATGGTGAAAATGAGATGCCATATTGTTTGTTGATGGATGGCCTTGCCAAGGCAGGTTCTATTACAGAAGCAAAGGCAGTTTTTGATGAAATGAAAGTAAAAAACGTTAGATCTGATGGATATGCTCATAGCATCATGATATCAGCTTTTTGCCGGGGTGGGCTTCTAGTAGAGGCAAAGCTGTTGGCTAAAGATTTTGAAGCCACATATGACAGATATGACATTGTAATATTGAATACAATGCTATGTGCATACTGCAGAGCAGGGGAAATGGAGAGTGTCATGCAAATGCTTAGGAAAATGGATAACTTAGCAATCAGTCCAGATTATAATACCTTCCATATCTTAATCAAATATTTCTTTAAGGAGAAACTATATCTACTTTGTTATAGGACATTGGAGGACATGCATCTTAAAGGCCACCAACCGGAGGAGGAGCTTTGTTCATCTTTAATATCGTCTCTTGGGAACATACGCGCTTATTCGGAAGCACTTTCCATTTACAATATATTGAAATATAGTAAAAGAACAATGTGCAAGGCACTCCATGAGAAGATTTTGCACATTCTAATTGCAGGTCGACTTCTCAAAGATGCTTACGTTGTTGTCAAGGACAATGCAGGGCTAATTTCTAAACCTGCTATAAGGAAGTTCGCTTTTGGATTTATGAAGTTTGGTAATGTCAACATGATAAATGACGTAATGAAGGCAATCCATGGTTCTGGATACAAGATTGATCAGGATTTGTTTATGATTGCTACATCACGCTACATTGAGCTACCTGAAAAGAAGGATTTATTTATTCAATTGCTACAGTGGATGCCTGGTCAGGGTTATGTTGTTGACTCATCAACAAGAAACCTTATCTTAAAGAATGCTCATTTATTTGGTCGCCAGCTTATTGCAGAGATTCTATCAAAGCAGAGTCTATTGTCAAAATCCACAAAATCTCGTGAGAACACCTTTCTTTTAAAATAA MVNGENRGRTLRQAGYGGLLKAQDLNVILRHFGMLSRWKDLSQLFEWMQETGKTNVSSYSSYIKFMGRGLNPLMALEVYNNIQEVSIKNHIFICNSILNCLVRNGKFDTSVKLFHQMKNDGLCPDTVTYSTMLTGCIRVKHGYAKAMELLKELQDNGLCMDCVSYGTLIAICASHNRLEDAESFFNQMRAEGHSPNMFHYGSLLNAYSISGDYKKANELIEDMKLTGLVPNKVILTTLLKVYVRGGLFEKSRKLLSELEALGYGENEMPYCLLMDGLAKAGSITEAKAVFDEMKVKNVRSDGYAHSIMISAFCRGGLLVEAKLLAKDFEATYDRYDIVILNTMLCAYCRAGEMESVMQMLRKMDNLAISPDYNTFHILIKYFFKEKLYLLCYRTLEDMHLKGHQPEEELCSSLISSLGNIRAYSEALSIYNILKYSKRTMCKALHEKILHILIAGRLLKDAYVVVKDNAGLISKPAIRKFAFGFMKFGNVNMINDVMKAIHGSGYKIDQDLFMIATSRYIELPEKKDLFIQLLQWMPGQGYVVDSSTRNLILKNAHLFGRQLIAEILSKQSLLSKSTKSRENTFLLK Homology
BLAST of PI0025559 vs. ExPASy Swiss-Prot
Match: Q0WVV0 (Pentatricopeptide repeat-containing protein At1g10910, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At1g10910 PE=2 SV=1) HSP 1 Score: 772.7 bits (1994), Expect = 3.0e-222 Identity = 374/557 (67.15%), Postives = 462/557 (82.94%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy Swiss-Prot
Match: Q9S7Q2 (Pentatricopeptide repeat-containing protein At1g74850, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PTAC2 PE=2 SV=1) HSP 1 Score: 157.5 bits (397), Expect = 4.5e-37 Identity = 105/412 (25.49%), Postives = 188/412 (45.63%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy Swiss-Prot
Match: Q9FIT7 (Pentatricopeptide repeat-containing protein At5g61990, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At5g61990 PE=2 SV=1) HSP 1 Score: 154.1 bits (388), Expect = 5.0e-36 Identity = 93/392 (23.72%), Postives = 197/392 (50.26%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy Swiss-Prot
Match: Q9SIC9 (Pentatricopeptide repeat-containing protein At2g31400, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At2g31400 PE=2 SV=1) HSP 1 Score: 149.4 bits (376), Expect = 1.2e-34 Identity = 90/342 (26.32%), Postives = 182/342 (53.22%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy Swiss-Prot
Match: Q9FMF6 (Pentatricopeptide repeat-containing protein At5g64320, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=At5g64320 PE=2 SV=1) HSP 1 Score: 144.4 bits (363), Expect = 4.0e-33 Identity = 93/338 (27.51%), Postives = 171/338 (50.59%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy TrEMBL
Match: A0A0A0LCK2 (PPR_long domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G842670 PE=3 SV=1) HSP 1 Score: 1114.8 bits (2882), Expect = 0.0e+00 Identity = 558/587 (95.06%), Postives = 570/587 (97.10%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy TrEMBL
Match: A0A1S3CN74 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103502713 PE=3 SV=1) HSP 1 Score: 1100.9 bits (2846), Expect = 0.0e+00 Identity = 548/574 (95.47%), Postives = 558/574 (97.21%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy TrEMBL
Match: A0A1S3CMQ2 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X2 OS=Cucumis melo OX=3656 GN=LOC103502713 PE=3 SV=1) HSP 1 Score: 1065.8 bits (2755), Expect = 6.3e-308 Identity = 530/554 (95.67%), Postives = 540/554 (97.47%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy TrEMBL
Match: A0A6J1IWQ9 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111479891 PE=3 SV=1) HSP 1 Score: 1038.9 bits (2685), Expect = 8.2e-300 Identity = 516/570 (90.53%), Postives = 546/570 (95.79%), Query Frame = 0
BLAST of PI0025559 vs. ExPASy TrEMBL
Match: A0A6J1DRU4 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic OS=Momordica charantia OX=3673 GN=LOC111023788 PE=3 SV=1) HSP 1 Score: 1032.3 bits (2668), Expect = 7.7e-298 Identity = 509/571 (89.14%), Postives = 543/571 (95.10%), Query Frame = 0
BLAST of PI0025559 vs. NCBI nr
Match: XP_004141206.1 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X1 [Cucumis sativus] >KGN59861.2 hypothetical protein Csa_001278 [Cucumis sativus]) HSP 1 Score: 1104.0 bits (2854), Expect = 0.0e+00 Identity = 550/574 (95.82%), Postives = 561/574 (97.74%), Query Frame = 0
BLAST of PI0025559 vs. NCBI nr
Match: XP_008464969.1 (PREDICTED: pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 1100.9 bits (2846), Expect = 0.0e+00 Identity = 548/574 (95.47%), Postives = 558/574 (97.21%), Query Frame = 0
BLAST of PI0025559 vs. NCBI nr
Match: XP_031738874.1 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X3 [Cucumis sativus]) HSP 1 Score: 1093.2 bits (2826), Expect = 0.0e+00 Identity = 544/567 (95.94%), Postives = 555/567 (97.88%), Query Frame = 0
BLAST of PI0025559 vs. NCBI nr
Match: XP_031738873.1 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X2 [Cucumis sativus]) HSP 1 Score: 1091.6 bits (2822), Expect = 0.0e+00 Identity = 543/569 (95.43%), Postives = 556/569 (97.72%), Query Frame = 0
BLAST of PI0025559 vs. NCBI nr
Match: XP_038903773.1 (pentatricopeptide repeat-containing protein At1g10910, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 1079.7 bits (2791), Expect = 0.0e+00 Identity = 537/566 (94.88%), Postives = 554/566 (97.88%), Query Frame = 0
BLAST of PI0025559 vs. TAIR 10
Match: AT1G10910.1 (Pentatricopeptide repeat (PPR) superfamily protein ) HSP 1 Score: 772.7 bits (1994), Expect = 2.1e-223 Identity = 374/557 (67.15%), Postives = 462/557 (82.94%), Query Frame = 0
BLAST of PI0025559 vs. TAIR 10
Match: AT1G74850.1 (plastid transcriptionally active 2 ) HSP 1 Score: 157.5 bits (397), Expect = 3.2e-38 Identity = 105/412 (25.49%), Postives = 188/412 (45.63%), Query Frame = 0
BLAST of PI0025559 vs. TAIR 10
Match: AT5G61990.1 (Pentatricopeptide repeat (PPR) superfamily protein ) HSP 1 Score: 154.1 bits (388), Expect = 3.6e-37 Identity = 93/392 (23.72%), Postives = 197/392 (50.26%), Query Frame = 0
BLAST of PI0025559 vs. TAIR 10
Match: AT2G31400.1 (genomes uncoupled 1 ) HSP 1 Score: 149.4 bits (376), Expect = 8.8e-36 Identity = 90/342 (26.32%), Postives = 182/342 (53.22%), Query Frame = 0
BLAST of PI0025559 vs. TAIR 10
Match: AT5G64320.1 (Pentatricopeptide repeat (PPR) superfamily protein ) HSP 1 Score: 144.4 bits (363), Expect = 2.8e-34 Identity = 93/338 (27.51%), Postives = 171/338 (50.59%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) 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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