PI0006581 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTATTTATGGCTTTTTATATCTCTTTAAAACCAAAATTTTTTCTCATCATAAACTCTAAAAAACCCCCCAATTTGTTGGCAAAGCTTGATTTGCAATGGCGAAAACATCGTCTATTGGAAGCAAAATGAGAAACAAACTTGCAGATATTACGAATTCAAAAACAATGAGAGCTCACCTTGAAGATGAAAAATCTTTCGAAGCTTCGCAGCCGAAGAATAGCATTATCGATCAGCTAGTGAAGGTAAGTATCTGGTTTCTTCTTGCATCTTCTTTCAGATTTTAAAATTAAATGTTGTTTTCTTGTTTCTTTAATTTCAAGTTGTTGTTTCTGAGATTTTTGTTGGGTTTGATTTTAATTTGTGGAGCAGGAAAATATGGGTCTTATGAAACTTATCATGGAGAGGAAGTATCCTTCTAGATTTTGCTATTCTGTTTCATATTTTATAGTCCTGAATAAATTTTCTTTACATTACTTATTTCACTGGCTGTTCGATTTCATCATTTGTCTGTTTTTTTCCCCTTCCTAGAATGTTTGATTGACAGTTTAAGAAAGTTCTTGCTTTAGCACTGTTGCTTAGATCTGGTTAAGGAATGATTTTGAATTTTCTTTTTTTCGGTTTTGAAAATTAACCCTATTGTCTTACGTTTTCTTGCAATAGTTTGCATGTTTATTTGCGTAGAAGGGTTGCATTCTTAGCCAAATTATGGAAATAAAAACTATATTTTCTTAGAATTTAAACTTTAACTTGATTTTTGAAAACATGGATACAAAGTAAAGAACATGTTTGTAGACTTAATTTCAAAAATCAAAACTAAAATCCAAATAGGGCCTTTAATAATTTAGTATGAAATGTAATCATTTGTTAGTACATTCAAATGTTTGTACTGTTTCTCCATATTTTATCCTACTTTGTGTACTGTTAGTGCCAAATTATCACTCACTAGTCCAGTTACTATGTGAGTTGAATATTAGAAATGAATAGCACAAAGAGGGGGTACGCTAACAACATTGAGGGTGCTCGGCCAAAATATTTAGTTTGAGATGTATTTTACCATCAATCTCATTGATTTTTTATCTGTTGACAAACCACCTTATTAATATGACTAGTCTACTCTCTAGGTGTTGTATCGTGTTGAATTCAGTTTTTAGTCTGATTAACTTGTCCAGTCGTAAGAATTTAGATAACAGTTAGTCATGTTGAAGAAATTTGCAGTAAAGGAAGAGGGATAATTTCTTTGAATAAAAACTTTTATTGAGAAAGAACCAAAATGGACACTTTGGAGAGAATAATCTTTTACTCCCTCAAGACACTTACTTGCTTTTCACTCAAAGCATTTCTCTAACTCTTTTTTGCTTTCTTTCTTTCTCTCTTTGCTTGCTTGGTTCACAAATGAAAACACAACTACTATTTATAGGTGTGAGATCCTTGGAGCCCAAGTAAAAAGGATCTCTCTAGAATTCTAATTGTTCTGGATATTGCTTGTTTTGATCTTTTCTCAAGGAATTCTAATTCCTTAACATAAAGAAAATCTATGATATTTCTAGATTTTTTTCTCTTAGATATTTGTTTACATCCATCAATATAATTATTGAGAAATTTAATTTACACACTAATAATATATTGTGGATACTTTAGGACCCTTTTAGACTAGTTAGTTTTGCAATATATTTATAGACTCTCCCTCAACACTAACTATTCTAGCTCTTTCCATCATCTTGAGTTGTTGATGTAACTTTGCATGTTTGGATGCACTTAACCATTTGGCACATTGTCCTAACGTCTATGTCTTCTCAATGCATCCATTTCTTCTTCTAGGACCTTTCTCCATTGGATATTCTATGACTTCATATGTTGGTTCTTCATATATTGCTAACGCTGCACTTGAAATTTGGACCATGACTCGGTGTCTTTGTCTAGTTGATCTTCGTAATTGTAGTCCTCGATCATGTGGACCATGACTCGGTGTCCACTCTTCTTCTTGTTCTTTTTCCTCCTTTTAAAAGATTTTCTTCTCTTTCTCCTGGAGCTTGTTGCCAATGGCTCATCTCTTCTTTTGATATTTCTTGAAAAGACCTTTCATCCTTGGGTGTTTTTTTTATTAAGTGGTTGCCATGATGGTGCTTCACCAAATGTAACAAAATCAATGCACTCCGTCCTTGGGTGCTTTTGCTTATCCACATGGACGTCCTCAGTTGTCATAAGGTAGATGAAGTCCACACCTTGTCCCTCCATCAATGATGTATTGATGTCATTGAGATCTTGGTACACCTTAACACCATTAGGTCCAAACACAACACAACAAAGTTGAGATACAGACACCAAGTTCTTCTTCATTCCACGCACATAAAATACGTTATTCAGTTTCACTTGATTAGAATTTGAGCGATACATTATCATAGTTTTGCTAACGTGGGCAACTGGCAACTTTGAGTTGTTTATTGTCACAACAACTCGACTTCCTTTGTACTTTGATGTGTTTTGCGACTTCCTTTTATCTCCTATCATGTGATTAGAGCAACCTAAATCAACAATTCAATCATTTTCATAATTTACCTCTTCTGCATGGAAAGCCAACACTTTGTTCTTCACCACATTGGATGTTGACTGGGGGTTGATATCCACTATTGCAAACCATGCCTTTGCATCCCATTCTTCTTCATTAATTCTCTGAACCTAAGAGGTGATTGTGTTTCTTTTTACTCTTTTTCTTTTGACGACATTCTCTTGCATAATGATCTATCTTTCCACAATTATAACATCCAACCCTTTTTTTATTGGCGTGTTGTTGATCAATTTTACTAGATCATCCTACTTGGGAGCGTTTTGAAGTCTCTTCCTCTCCTTTTGATCCTACTTTCTTTTGATATTTTAAATGACCTTTTCTTTAGCCACTAAAGAGCGCTTCTTTATTATTACTCTTTATTGTGACATTCGACATTTGCGTCAATTCTTGATTGGCAAACATACTTTCTAGGTTAATCAAAGAAGATTGGATTGTCCAACCTTGAATAGCAACAATAAAGCTTCTATATTCAGGTTTTAAGACCATGGATAATAATTCTTCTAATTCTTGATTCTGAAATAGGAGAACTAAAATCTAATTTAGAGATTTCATGGCATAAAGCTTTTACCTTGATGAAGTACTGGTTGATAGTCATCTCTCTCTAAGCAATTGATAGGAGCTCATTCTCTAAAAACTGCAATCCTGTATCATTTTTTTTTAGAAAAGTGAGGTAAACGTGTCCAATGCTTTCTTCAGCGTCTCCACAATATTGGCATGCTCCAACACTTCTTCATCAATTGTAATTTTAATTGCAAACATGACCTTACCTGCCTTGATATTCTATTTCTTCAAAGCAATAGCATCCTTAGGTGGATTGACTGACTTCATTGTCTCCTACAACATCCTACAAGTCTTGGTCTTGGAGATATGACTTCATGCATTGTAGACCATGTTTTGTAATTTGGAATGTTGAGCTTCTTGATTCCTCCAATAATTTGAATGTATCCCATGTAATGATGAATGCCCTCCACGAGTAGCTGTGTCCCAGACAATAAGCTTCACAGTCTTAGACTAACTCGATCTCCAAAAGCTTCAATACAACAAGCTAAGGTAACTTGGCTTTGATATCACTTATTGAAGAAATTGACACAAAAGGAAGAGAGACAGTATTTTTTAAGAAAGAAAACTTTTATTAAGAAAGAACAAATATGGACACTTTGGAGAGGATACTTATTTTTTACTCTCTCAAACACTCACTCACTTTTTACTTAAAGTTTTTCTCTTACTCTCTTGCTTTCTTTCTCTCTCTTTGCTTGTTTGGTTCGCAAATGAAGATACAACCCCTATTTATAGGTGTGAAATCCTTGAAACCCAAGTAAAAGAATCTTTTAGAATTCTAACTATTCTAGATATTTCTTGGATTGATATTTTCTAAAGGAATTCTTCCTTAACTTAAAGAAAATCTATGATATTTCTAATTTTTTTTTCTTTTAGATATTTGTTAACATCTTTCAAGATAATTCTAGAGAAACCTAATTTATACACTAATGATATATTGTGGATACTTCAGGATTCTTGAAGACTAGTTAGTGTTGCAATATATTTTAACAAGTCACACCCTATTAAAGGGTTGCTTGGAAAAAGGAAGTTAAACTAGTATTGCAACAATAACTAACTAGTTTAGAAGATTCTTGAAGTATTCACAATATGATATTAGTGTGTAAATTAGACATCTTTAGAATTATTTTGAAGTATGTAAATAAATATCTCAAAAGAAAAATCTAGAAATATTCTAGATTTTCTTTAGGCTCCAATAGAATTCATTTAGATAAGAAAACAAAAAATATCTAGATATTTATGAGCTAAGATCAATCTAGAGAGATCCATTTGCTTAGGCTCACATTATAAATAGGGGTTGTGCCTTCATTTGTAAACCAAGTAAGCAAGCAAAGCAAAGAAGAAGAGGAAGAAAGAAAGCATGAGAGTTAGAAAGAAACTTTGAGTAAAAAGTGAATGAGTGCCTTGAGAGTAAAAGTGTATTCTTTCAATAGTGTCCAACTTTGTTCTCAATAAAAGTTTTCTTTCTTCAAAGAGATTGTCTCCCTTTCTTTTGTGAAAATTTCTTCAACAAGTAGTATCAGAGTCATGTTAGCTTAGCTTTCTGTGTTGGAGCTTTTAAAGATCGAGTACAGCTCGGGACTGTGAAGCTTATTGTCTGGGACAAAGCTACTCATTGAGTGAATTCATCACTGCATGATGATGGAAGACCTTCAACCTTCTAGTTGTTAGAGGAATAAAAACGCTCAACACTCAAAATTATGAAACTTGGTCCACATGCATGGGTCAATATCTCCAACGCCAAGATTTGTGGATGTTGTAGGAGGCAATGAAGTCAATCCACCTGACGATTCTATTGCTTCAAAGAAATGAAATAGCAAAGGCAATGTCTCCAATTAAAACAAACTACAGTTGATGAAGAAATGTTGGAGCACATTAGTATTTTGGAGACACCAAAGAAAGAATGGAACACGTTCACCTCGCTTTTCTCAAAGAAAAATGATACAAGATTACAATTCCTAGACAATGAGCTCCTGTCAATTGCTCAGAGGGAGATAACTATCAACCAATTTCACCAAGGTAAAAACTCTATGTTGTAAAATCAAATTTTCGCTATTTAGAATCAAGAATGTGGATAATTAATATCCATGGTCTTAAACTTGCATATAAAAGCTTTATTGCTGCTATTCAAGGTTGGGCAGTTCTTTGATTGACCTAGAAAATATGCTTGCTAGTAAAAAAACATATTTGTTTAGCAAACGTTTAAGGTTGATAAAGAGCAATAATAAAGAAGCGTTTTTTAGTGGCCAAAGAAAAGGTCATCCAAAATATCAAACGAAAGTAGTTAAAAGGAGATGAAGAGACTCCAAAACGCTTCAAGTAGGAGGAGCTAGTAAAACTGATCGACAACACGCCATAGAAAAGGGGCATATTCTATAGGTCTTTATGCCAACATGACATAATGAAAGATAGGTCATTATGCCAAAGAATGTCATCTAAAGAAAAAGACAGTAGAAAGCAACCCAGTCAGGTCCCAGGGGAAGAAGAATGGATTGCAACAGTAGATCCTAACCCTCAATCGACATTCAGTTCGGTGAAGATTGTTGATTCAGGTTGCTCTATGGTCGATGGATTTTGTCGCCTAAATTTGTATAAAATATTTAATCGAATTACGCACCAAGAGCTAGTCCTAGTGGTAAAGTCCGGATCAAATTCAAGGAGCACGTAAAATGCTCAAGCAAAATTATTTTTCACCAGAGGTAACCGAAGGGTGGTTTTGAAATTGTTTCGAATTGCAAGAAAACTAAATTGCATGAAACAAAGAAAATTGTAAATGTGAATCAATTCAAGAAAGCCTAGCTTGGATAATGACCTATGAATCATCATTACTTGCCTCTATGTAACGTTTCACCTAACCAATTTAATTGGTGAAGCTAACTAAATTGTCTTATAATTTTAATTGTTCTAATTCAACAAGATGAAAGCATGCATAATTGAATTTTTTCAATCGCATTAAGTTCAAGAGATCTTTAGACAGAATGACCAATTTCCATGCACCTAATTGAACATATATTTATTAGGTACAATCCTAGGTTGGTTAGAACAATGCTCGTCTAAATAGAATAACTGGCTAACTTAACCTATTGCTTCTAACTAAATCTTATCAAGAAAGTCATGAGTCAAAGATCTAATTGAAAGTGAGAGTCATACATTCCTCATGCGTCTGAACATATAACGAAAATTTATTCAATGACAAAATTGAAACCAAACATACAATAGAACTAAGTTCAAACTTTCACAAATTTTGAGAAATAAAGGGAAATCTCTAGAAACCTAAGCTATAACCAAGTACCTTATCTACGATACATCATCGAAAACGCTGACAATAAGTGAAAGTCCCTAATTGAGTAGTTCAAGAGAGTGCCGTGAGTTTTTGTGAAGAAAGTCTAAAAGTATGTGTCGAAGTGTCTATCGCGAAGGCTGACGGCTAGGTAAAATAACGTAGCGTTATGCTGCTGTGTGTTTGCGCACACTCATTCCTCGTTCGAAGTTTTTAGAGCCGCAACGTTGTTCATTTTGCTTGAAATTGGCCTGTTCTGCCTTACGGCGTTGCGACATCGTGGCTTCAATTTGCCAATCATGAAAATGGCTTCTAATTATGTTCGTTTAGTCCCAAAATAGGCATTATGGTGTAAAATACTAGAACGATTCCAATTTTAAGTAGAATAAGATAGCATATTTTCAACGCTATCATCACCCTCAACTTAAATTTTGATAGTCCAAAGCATGGTAAAAAACATACATTCACACATGATAGTTTGCTAAGTTGCCAAGTTACTTGCTCATGCCTTGACATTACAATACAATATAAAAACAAGGAATTGATTGATGTACAAATTAGAATTCTTTCCTCAAATCTATTCATGCATAAACAAGTTTGAAATCCTTCTAACTTAAGTCTAAACAAAACCCGACATAGAATTAAAGAACTCTCAATATGCTTTTCCCCTGCTTTGGCAAAAGTAAGATTTAAATGCAACCCCCTAAAGCAAAGTGGTAATGTCAGGTAGTTAGGCAAACCAACTTTCAAGGTCTATTCCCTTTTCGCTTTTTATTCTTTTCTTTATTTGCTCATGCTGATGATCTTACCCTCATTGAGATTAAGATATTGGACAAGACTCGTTCAAAGCCTAAATTTTCATGCTAGGCTGGATTTCTTTGGCACTAACATTAAGTTGGTTTATTTTCTTTTTCTCTTTAATTTTCATGCATAACTAAATTCCTTTCGAGGTGACAACAAACATATAGATCCGATAAAACTACTCTAAGCATGCAAAACCTAGGATAGTCAGGCTAAAGAAAAGTGTGCATGAGAGATGGAAGAAAAGTGTCACGACAGCAATCGACAAAATTGTGTTTGTCTGCGAATAGAAGCCATTTGCCCCCTTTCTTCTTCATTATTTATCTCAGACTTTTCTTTCTCCTACTCGATTTTTCCTCCTTTTCACCAAAATCCCTCTTTTTCATCAAATATCACACACATATTCTCATCTTACCTCCTTTCGAGCTTTATTTTTGTGGTTTTTCTCCACATTTGGCTAAAATTTGAGTTTTTTTCTACCCATTTGAAGCATCTCCGAATCCAAGGTATTTTCTCAATATTTTTTGCTTGTCTATGAGCTTTGATGATTTTTCTTGGATCTCTTTAAGCATGCTTCATTTATGTAGTTGAACTCCATATATGTGAAAGGATAAATTTGAATATTGTGTTGGAATTTTTCTGCTTGCAAGTTGGAGGTAAGTGTTTGTGGATCTTGTTGGGGTGAATTTTGTGAGATTAGTGTTCTCCTAGTTTCTTAGAGTTGTCATCCCGGCACAACTTGAGGTTCTTAGAAATCTCCCTTTATCCTTTTGAATTTATGAGTACTTGAACTTAGTTATTTTTTGTTTTGATTATGAATTTGAATGATAATTCGTTATATGTTGGATGCATGAGAATGTATAGCTATCGCTTTTGATAGAATCTTTGACTCGTGACAATTAGATAAGATTGAGTTAGAAGGTTAAGTTAGTTTGTAAATCTAATTTGAACCTATTGAATGTCAATTAGACGCATGAAAATTACGCATTCCACCTAAGGATCTCTAGAACTTAATGCTATTGGGAAATTCAATATTGCATGCTTAATTGTATTGGATTAGAACAATTAGAATCCTGGGACGATTTAGTTATCTTAAGTAATTAAATTGGTTAGGTGAATGTTGCATATAGACAAGTGATGATAACTCGATGAATGAATTCTTTTGACATAGAATTTTCTTTTCTTTGCTTTACTTTGTTTTTTTGCAATTTACTTTCTTGCAATCAATTTCAACTCAAACCCCCCCTCGATTACCTCGGGTTGGAAATTAGTTTGTTAGAGAATCAATGTGCTTGTTGAGTTCGACCTGGACTTGCCACTAAGAGTTTGATATGTGATTCGACAAAATTATTTGGCACAGGCTTGGGTGACGAAATTTGTCTGTCAAATTTGGTAATAGAAGGTTAATGTACTCAAAGCTAAAGAAAACTAGATGACCCGAAACTGTACATGAATCACTTTCCTTATCCATGTTCGAATAGAATTCTCACGATGGGCACAACAACGCTCTCAGGCTGCTGGACGAACAACTACCACCCACACCTCTATATATTATATCAGAGGTGATGTGAAGGTAGAAGTCAACGTCTAAACTCAAGCCCTGGTCGGGTATAATCTAGCTATTGGAAAATGTATTAGAGAACCTATCAAAGGCTTTCTCTCGGGACAAATTTTCGACGATCGAATGTCAGCCCACGAGCTTGCTCACTACTCGAAGTCTCACCTTTCCCTCTACTTTTCCTAGGAGCCATATGGATTTTTAGAACCTAAGGGACAACTGTAGCGGATACTAATCTCACAAAACTCACCCCAACGAGACCCACAAACACAAACACTCACCCCCAAAATGCAAGCAGAAAAATCCCAACAACAACACAAGATTCAAATTTATCCTTTCACATATATGAAGTTGAACAATAAAGGAACCATGCACAAAGAGATCCAAGTAAAATCATCAATAAAGCTCATAGATAAGCAAAAAAGGAGGGATTTTTTGATGAAAACAAAGGATTTTGATATTTGTGGAGAAAAACCAAAAAATAAAGTTTGAAAGGAGGTAAGATGATAATGTGTGTGTGATATTTGATGAAAACAAGGGATTTTGATGAAAAGGGGAAAAATTGAGTGAGAGAAAGGAGAGTTTGGGAGAAAAAATGAAGAAGAAAAGGGGGTAAATGGCTTCAATTTGCGAAACATAGTTCTGTCAGTTGGCGCCGCGATGTTGTGCCCTAATTTCATTGTTTTTTTAGGAATAAACAAAAATTAAAATTAAACTGATTTTTTCTTTTTTGTTTTTTTAAATTCTTTTTTCCTTTTTTTTTCTATTTTTAAAAACTAAATTAACTTACTCCTAAGTTAACCTATTAATCCTAAATTAATTTAAAATACTCCTAACCTAACCAACCTAACCTAGTCTAAGAAAACAGTAAATTTGTCGCATGGCTTCCTGGCTTCCTCCAGGAAGCGCAATTTTAGGGTCAGTTGCTCAACCTTGGTCGATTTCATCTACCATAGTTATCATGAGGTATCAAATCTCGAACTACCCCCAACTTAGGAGGTAGCCTACTATCTTGAAAAATCTTGGAACTAGAGCAAGAAGGATTAGTAATAGTAGTGTCAGAGATATAAAATGACTCAACTATATTGTTATGCCGAAGCCTTAGTGACTCTTTGTCCACAAAATCAAAGAGAGGAAACAAAAACAAAAGATAGAGAGAAACAAAGCAAAGATCTCACACCTATAATCAGGGGTCGTGCCTTCTTGTAAACCAAGTAAGCAAGCAAAACAAAGCAAAGAGAGGAAGAAAAAAGCAAGAGATAGAGAAACTTCGAGTGAAAAGTGAGTGAGTGCCTTGACAGTAAAAGTGTACTCTCGAAAGTGTCCATCTTTGTTCTTAATAAAAGTTTTCTTTCTTCAAAGAAACTGTCTCTCTTTCTTTTGTACCAATTTCTTCAACAAACGACAATACAAATGACAATAATTAGGCATGTACCCCATATATTGTCTGTTCACAAAAAATGGAAAGAAAATGAAGCTTAGCCCACATGTAACGAGTAAAATGTCGCAAATGCTCTTATTCAGTGTCCTACATTTTAGAGTGTCACCCACATAATACCATGCAATTTATCTCCAATTTTTTGATTCGTCTTCTGTTTCTCACTGTTTCATTTCATCTTCTTCCCACACTTTCCACCCTTTACTCTTCGTCGATATACTTCATCTCCATCGATACATTTCCAAACTTTTGACCATTCCTTTTCGACTTCTTCCCTTCTTTTCCACCATTTCATCTCATTGATACACTTCTCCATCTTCCAAACTGACTTTATAGTTTTAAATTGTTGCAATCAACAAAATGGCAAGGTCTTTTTATTCATCATACTTCCATACATTTACATTCATTTACCTCTGATAGCATATCTTTGTCATTTCTTATCGTTCACTTGTGTTTTTACCAATTTTTTCACTTTGTTTTAGTTTCGTAAATTTTCTATTTCTTATCACTTTTTCTTTTTGTAGTTTAGTTGTGTTGTGCCCAATCTCTTGTTTACATCTTGAATTTTTTTTTAAAAAAGGTTAAACTTGAAGAAGTGAAAAGGACAGAAGGAAAAATAACTTTGAAAAAGGAGAAACTTCGTAAGAAAAGAAAGAAACAAAAAAGAAGACAGAAACGGATGAGGAAATAAGTACAATATTTTTCAACACTTGATACGATTGATTGATTTACTTGATATAATGATTCACTTGACTAATATAATTGAAAATGATACACTTGACGATGTTTATCCTGATCTAAAGAATACTCGTAAAGTTTATATCCTTCTCCTTGATTAGAGCCTATATCTATTTACTATGTTCAAGATAAATCTAGAAAATATAATGTGTCATACTTTTAATGGTTCTGGATAAGGATATTTTAGATCTTAGAAAGGTCTAGGGAAAATTCTTTTGCTCTAGCCTCAAGGATTTCATGCCTATGAAATAGGAAATGTGTAAGTCGGTCAAGTAAGAAAAAGTGAGCAATGTGAGAGAGGGAGTAAAGAGAAAGTCAGAGAGTCATCTTTCGAAATTGTTCATCTTTGTAGTTTCTTAATAAATGTTTGTCTTTTCGAAGGGTTTGGTAACTATTTTGACTAAGAATTCAAATGATTCTTTTTGTGTAAATTCAAAGGGTTTGGTAACTATCTTAAGTAAGAATTCAAATGATTAATAAAAGTTTGTCTTTCTTTTTGTGTAAATTTAGATCCCGTTTGGTAACTATTTTGACTAAGAATTCAAATAATTCTTTATGAAAATTGAAAACTATGCTGGAGATTGTGCAATAATTTTAAAAAACGACCAAAATCCGAAAACAAAATGTTTATAAAACAAGCTCTAAGGAACTAAACTTAGTTTAGCCTAAATATTGCTCCCAACCTTTTTCTTTTTCTACTTGAAGTTTCCATCAAAACAGAAACTTGAAAAAGAATTTCCTAAACGTTTCAACAGTAAAATAATTGAGCTGAGTGAAGCTGAGTTGGAGAAACTTAGGGCAAGCATTCAGAAACTGCAGCTTCAGAATTGGCATCTTGCTCAATCAAACAGTCGCTTTTTAGCAGTAAGATTATATACAATTCTAGTTATTCCTCTGATGAGTGTTATTATCATTGTTTAATTATAACCACACTGCTTTCCTTTTGCAGGAAATCAATTTAGGGAGAAAGAGAGTAAGTTTCAAAATGTCTGGAATTGATTTCTTGGTGCATAATGCATTTATTTATATGTGATGCTCAATAATTTGTTACTGATGTGTTGTAGATAAAATCGCTGGAGCATGAGTTGGAATGCAAGGAGGCTTTGCTAAGGGCAAAGTGTTTGACTGTAGAGGTATTATCTTAAGACTCTTACTAGCAGGGACATTTATTTTACTTAGTTCCCAATCTTTCTGTCATCTAATGATAAAGATTAGGTAGAATCACAATCCAATGTTTAGAACTATATAATGCCAAAATCCGAATAGGGTTGTACCTAACCTTCACATGATAGCAATAGTGAATTTTTAATTTAGCGAAGACGTGAGGCAAGGAGAGTCTAGGCACTCGTGCATCTCTTGGCACAACACGTTCAATGCGTAAGAGGCTATAGTTTAAAGTTTTTAGGGATGAGAATGAACTTATTTCTTCTGTAGTTATAATGATGTATACATAGGCCAATTAACCACAGGTTTTCCCTCTCCTCTTTGGATATGGGCTATAGGAGCAGGTCCACTCTTCAGCCAAAAGGTTGCCCTTAGCCTCATCGCAAGCCAAGGGTAACTCCTCATGGGCTTCAGCTCAACATTTTATCCTTTGTCTCAGTCGAATCCGATTCTTCTTGAGTCCAAATTTACCCAAAATAAAATTATTATCCAAATTTGCTGACTAAATTTGTAATTTGATTATGGGGAAAATAATGAACTAGGAAGAGCTTACAAACCAAGAATAGAAATAAATAAGTTCGTACAATGCATTCTTATGAATTGGTAGAAAAGATTCATATTATTAAAGGATGCATCAGCACATTCAGCACAAATGAGACATTCTAGCAGCTATATGTAAAATAACAACACTTTTTTACGAACAAGAACTAACTAGCCTTTGAGGGGAGATCAAAGTTTAAACAATTTAGATAAGCTAGTTTTATGAAAATACTGAGCCATTTCTCATTGATGAACAATGACTTTATATTCTGACAGGGTAAAGCAGAGATGAATAACAGAAATTCTGAATGGCAGGTAATTTGTTGATTTTTTATTTTTTTTTTCAGGTATCTGATTTATTATTGTGCTTAGTCCTCACACTTGCTCACAAATATTTTAGATAACTTCACCTATTTTCCTGCCTTCAGGAAGGAGAGAAGGCAACAGGGCAACCTTCACTTGCAATTGTTAATACTGACACCAAATCTTGCAATGGAAATATAAAGCCTCCTGGAAGAACTAGAAGTCAATGTAAGTTTTCACGAAATGATATATAGAAAATGGGTGTGATATCTTGGGACTGAGAATTAGTAACTTTGATTCCAATACTTTAAGGTTTAGGGGTTTAGGGTTTGAATTCGGAATTATAGTACTTCGATTACAATACTTTAGTTACCCAATGACCAAGGGGGTCTCAGTAAAAATTTTTCCACAAGAAATTATTTGACACTGAGTTTACTTTTCTGAAATTGCTTTTGATAAAGTGCTTCTCCATGAATCCTTTGTCATACAACACATTAAAACATTTCTTAACTCCTTTTTGGCTTGCCCTCAGAACCATAACATTACTCTGATTTTACACATTTATTGAGACTGATGAGATATTGACACTATATTTACTATCATTTCTTTTCTCTGTTTTTTCTTCTTCTTATCTTACTTGCTTATTGTTTTGGTTGAAAACTAATGGCAATTTGACCAATGCAGCTATGAGCCCTTCAACTTCATACTCAACAGTGGTTGATAAACAGAAAGTTGAGAACAAGAGGTACTAGTCAGTCCTGCACACGTTTATATACATAACCATATTTGTGCATCATTGTTTCCAATTTTTACATGTTTGATAACATCTAGACCTTATTTAATAACCATTTCGTTTTTAGTTTTTGGTTTTTAGTTTTACAAATACCTCTTCCACCTCTAATTTCTTGCTTAGTATACTCTCTCAATGTTTTCAAAAAATTAAAAAAACTCAAAAAAGTAGTATTAAAAACTTGTTTGTTTTTTGAATTTGGCTAAGAATTCAGCTCTTTTACTCGATCAAAACCATTGGGAAATATGCTTACTTTTCAAAAATCAAATGGTCACTAAACAGGGCTTAGCTCTTGGTTTATAAATATTTTTTAAAATACACTACAAGTTTTAAACTTAGCTTGAACACACAACTCTTTGATTCAAGGATGCACCCTCCTGCCACTACACAAGATAAATACCATTGTTTTTTTTGAAAAGATAGTCTTTAAGAACTTGTTTTGGTTTCAAGAATTCGACTAAGAATTCAAATGTTTTTTAAGAAAAATGAAGACCGTCCGTAAAGAAAAGGATGAGAAAACAAGTTGAATTTTCAATAACCGAATGATTATCAAACAGAAATCAGAACTGGTTTCAACTATTTGGTTTACATATTTATCTATTTTCAGGCATTGTGTAAGAAGGCACTCTAGTAGATTTAGACATCAAGTGAGAGACCTTGAAGAGAAGTTGTTTGAAATAGAAGACATAAAACTTGTTGCTGGTGAAAAAGAAAAGAACTCACTATCCTCCCCCAGATTTGAAGAAGCTTCAGCTTTGCAAAGAACTTCAATTGGAAGGCCATTACGCCGAGCAGCTGAAAAAATTAGATCTTATAAAGAATCTCGTCTCAATATTAAATCAAGAAGACAGGAATGAGAAACATCGACAGTTTTAACGTAGGCTCAAGGGAGCTCGAGTTCCCACTCAACTTTATGTTTATTATATAATATATACATAAAAAAAATGACATTATATCATTAACGTAGTGGTAAATTAGTCTACCAGCCAGCCCTTTTAAATCAGATTATATATGATATACCCTGTTTCAGCTTTGCAGTTGAATTCTACTTACATATATTTACATTATTACATATAAGGTTTGTTGTTTTGTGATGTTTATGTATCATATTGGATGTGGGAATTTGGTTTCATGTATGTATATGTAATTACATCATTTTTAGACTATTGTGTCAGAATGTGGGTAAAGAGATTTGAACTTAACCAAAA GTATTTATGGCTTTTTATATCTCTTTAAAACCAAAATTTTTTCTCATCATAAACTCTAAAAAACCCCCCAATTTGTTGGCAAAGCTTGATTTGCAATGGCGAAAACATCGTCTATTGGAAGCAAAATGAGAAACAAACTTGCAGATATTACGAATTCAAAAACAATGAGAGCTCACCTTGAAGATGAAAAATCTTTCGAAGCTTCGCAGCCGAAGAATAGCATTATCGATCAGCTAGTGAAGGAAAATATGGGTCTTATGAAACTTATCATGGAGAGGAATAAAATAATTGAGCTGAGTGAAGCTGAGTTGGAGAAACTTAGGGCAAGCATTCAGAAACTGCAGCTTCAGAATTGGCATCTTGCTCAATCAAACAGTCGCTTTTTAGCAGAAATCAATTTAGGGAGAAAGAGAATAAAATCGCTGGAGCATGAGTTGGAATGCAAGGAGGCTTTGCTAAGGGCAAAGTGTTTGACTGTAGAGGGTAAAGCAGAGATGAATAACAGAAATTCTGAATGGCAGGAAGGAGAGAAGGCAACAGGGCAACCTTCACTTGCAATTGTTAATACTGACACCAAATCTTGCAATGGAAATATAAAGCCTCCTGGAAGAACTAGAAGTCAATCTATGAGCCCTTCAACTTCATACTCAACAGTGGTTGATAAACAGAAAGTTGAGAACAAGAGGCATTGTGTAAGAAGGCACTCTAGTAGATTTAGACATCAAGTGAGAGACCTTGAAGAGAAGTTGTTTGAAATAGAAGACATAAAACTTGTTGCTGGTGAAAAAGAAAAGAACTCACTATCCTCCCCCAGATTTGAAGAAGCTTCAGCTTTGCAAAGAACTTCAATTGGAAGGCCATTACGCCGAGCAGCTGAAAAAATTAGATCTTATAAAGAATCTCGTCTCAATATTAAATCAAGAAGACAGGAATGAGAAACATCGACAGTTTTAACGTAGGCTCAAGGGAGCTCGAGTTCCCACTCAACTTTATGTTTATTATATAATATATACATAAAAAAAATGACATTATATCATTAACGTAGTGGTAAATTAGTCTACCAGCCAGCCCTTTTAAATCAGATTATATATGATATACCCTGTTTCAGCTTTGCAGTTGAATTCTACTTACATATATTTACATTATTACATATAAGGTTTGTTGTTTTGTGATGTTTATGTATCATATTGGATGTGGGAATTTGGTTTCATGTATGTATATGTAATTACATCATTTTTAGACTATTGTGTCAGAATGTGGGTAAAGAGATTTGAACTTAACCAAAA ATGGCGAAAACATCGTCTATTGGAAGCAAAATGAGAAACAAACTTGCAGATATTACGAATTCAAAAACAATGAGAGCTCACCTTGAAGATGAAAAATCTTTCGAAGCTTCGCAGCCGAAGAATAGCATTATCGATCAGCTAGTGAAGGAAAATATGGGTCTTATGAAACTTATCATGGAGAGGAATAAAATAATTGAGCTGAGTGAAGCTGAGTTGGAGAAACTTAGGGCAAGCATTCAGAAACTGCAGCTTCAGAATTGGCATCTTGCTCAATCAAACAGTCGCTTTTTAGCAGAAATCAATTTAGGGAGAAAGAGAATAAAATCGCTGGAGCATGAGTTGGAATGCAAGGAGGCTTTGCTAAGGGCAAAGTGTTTGACTGTAGAGGGTAAAGCAGAGATGAATAACAGAAATTCTGAATGGCAGGAAGGAGAGAAGGCAACAGGGCAACCTTCACTTGCAATTGTTAATACTGACACCAAATCTTGCAATGGAAATATAAAGCCTCCTGGAAGAACTAGAAGTCAATCTATGAGCCCTTCAACTTCATACTCAACAGTGGTTGATAAACAGAAAGTTGAGAACAAGAGGCATTGTGTAAGAAGGCACTCTAGTAGATTTAGACATCAAGTGAGAGACCTTGAAGAGAAGTTGTTTGAAATAGAAGACATAAAACTTGTTGCTGGTGAAAAAGAAAAGAACTCACTATCCTCCCCCAGATTTGAAGAAGCTTCAGCTTTGCAAAGAACTTCAATTGGAAGGCCATTACGCCGAGCAGCTGAAAAAATTAGATCTTATAAAGAATCTCGTCTCAATATTAAATCAAGAAGACAGGAATGA MAKTSSIGSKMRNKLADITNSKTMRAHLEDEKSFEASQPKNSIIDQLVKENMGLMKLIMERNKIIELSEAELEKLRASIQKLQLQNWHLAQSNSRFLAEINLGRKRIKSLEHELECKEALLRAKCLTVEGKAEMNNRNSEWQEGEKATGQPSLAIVNTDTKSCNGNIKPPGRTRSQSMSPSTSYSTVVDKQKVENKRHCVRRHSSRFRHQVRDLEEKLFEIEDIKLVAGEKEKNSLSSPRFEEASALQRTSIGRPLRRAAEKIRSYKESRLNIKSRRQE Homology
BLAST of PI0006581 vs. ExPASy Swiss-Prot
Match: Q4QSC8 (Shugoshin-1 OS=Zea mays OX=4577 GN=SGO1 PE=2 SV=2) HSP 1 Score: 83.6 bits (205), Expect = 3.9e-15 Identity = 52/122 (42.62%), Postives = 71/122 (58.20%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy Swiss-Prot
Match: Q0WTB8 (SHUGOSHIN 2 OS=Arabidopsis thaliana OX=3702 GN=SGO2 PE=2 SV=1) HSP 1 Score: 78.6 bits (192), Expect = 1.3e-13 Identity = 85/291 (29.21%), Postives = 121/291 (41.58%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy Swiss-Prot
Match: E3VXF2 (Shugoshin-1 OS=Oryza sativa subsp. japonica OX=39947 GN=SGO1 PE=2 SV=1) HSP 1 Score: 76.3 bits (186), Expect = 6.3e-13 Identity = 65/194 (33.51%), Postives = 99/194 (51.03%), Query Frame = 0
HSP 2 Score: 42.4 bits (98), Expect = 1.0e-02 Identity = 40/100 (40.00%), Postives = 49/100 (49.00%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy Swiss-Prot
Match: F4J3S1 (SHUGOSHIN 1 OS=Arabidopsis thaliana OX=3702 GN=SGO1 PE=3 SV=1) HSP 1 Score: 69.3 bits (168), Expect = 7.7e-11 Identity = 59/198 (29.80%), Postives = 101/198 (51.01%), Query Frame = 0
HSP 2 Score: 41.6 bits (96), Expect = 1.7e-02 Identity = 22/50 (44.00%), Postives = 34/50 (68.00%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy TrEMBL
Match: A0A1S3CJ55 (uncharacterized protein LOC103501433 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103501433 PE=4 SV=1) HSP 1 Score: 491.1 bits (1263), Expect = 3.0e-135 Identity = 263/279 (94.27%), Postives = 272/279 (97.49%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy TrEMBL
Match: A0A0A0LSM0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G097670 PE=4 SV=1) HSP 1 Score: 487.6 bits (1254), Expect = 3.4e-134 Identity = 264/279 (94.62%), Postives = 269/279 (96.42%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy TrEMBL
Match: A0A1S3CIS6 (uncharacterized protein LOC103501433 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501433 PE=4 SV=1) HSP 1 Score: 486.5 bits (1251), Expect = 7.5e-134 Identity = 263/280 (93.93%), Postives = 272/280 (97.14%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy TrEMBL
Match: A0A1S3CIT6 (uncharacterized protein LOC103501433 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103501433 PE=4 SV=1) HSP 1 Score: 455.7 bits (1171), Expect = 1.4e-124 Identity = 251/279 (89.96%), Postives = 259/279 (92.83%), Query Frame = 0
BLAST of PI0006581 vs. ExPASy TrEMBL
Match: A0A5D3DCY3 (Shugoshin-1 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold609G00300 PE=4 SV=1) HSP 1 Score: 391.3 bits (1004), Expect = 3.3e-105 Identity = 208/218 (95.41%), Postives = 214/218 (98.17%), Query Frame = 0
BLAST of PI0006581 vs. NCBI nr
Match: XP_008463238.1 (PREDICTED: uncharacterized protein LOC103501433 isoform X2 [Cucumis melo]) HSP 1 Score: 491.1 bits (1263), Expect = 6.3e-135 Identity = 263/279 (94.27%), Postives = 272/279 (97.49%), Query Frame = 0
BLAST of PI0006581 vs. NCBI nr
Match: XP_004147313.1 (SHUGOSHIN 1 [Cucumis sativus] >KGN64788.1 hypothetical protein Csa_013050 [Cucumis sativus]) HSP 1 Score: 487.6 bits (1254), Expect = 6.9e-134 Identity = 264/279 (94.62%), Postives = 269/279 (96.42%), Query Frame = 0
BLAST of PI0006581 vs. NCBI nr
Match: XP_008463230.1 (PREDICTED: uncharacterized protein LOC103501433 isoform X1 [Cucumis melo]) HSP 1 Score: 486.5 bits (1251), Expect = 1.5e-133 Identity = 263/280 (93.93%), Postives = 272/280 (97.14%), Query Frame = 0
BLAST of PI0006581 vs. NCBI nr
Match: XP_008463245.1 (PREDICTED: uncharacterized protein LOC103501433 isoform X3 [Cucumis melo]) HSP 1 Score: 455.7 bits (1171), Expect = 2.9e-124 Identity = 251/279 (89.96%), Postives = 259/279 (92.83%), Query Frame = 0
BLAST of PI0006581 vs. NCBI nr
Match: XP_038895468.1 (SHUGOSHIN 2 isoform X2 [Benincasa hispida]) HSP 1 Score: 417.2 bits (1071), Expect = 1.1e-112 Identity = 232/287 (80.84%), Postives = 250/287 (87.11%), Query Frame = 0
BLAST of PI0006581 vs. TAIR 10
Match: AT5G04320.2 (Shugoshin C terminus ) HSP 1 Score: 78.6 bits (192), Expect = 9.0e-15 Identity = 85/291 (29.21%), Postives = 121/291 (41.58%), Query Frame = 0
BLAST of PI0006581 vs. TAIR 10
Match: AT5G04320.1 (Shugoshin C terminus ) HSP 1 Score: 72.0 bits (175), Expect = 8.4e-13 Identity = 81/285 (28.42%), Postives = 116/285 (40.70%), Query Frame = 0
BLAST of PI0006581 vs. TAIR 10
Match: AT3G10440.1 (Shugoshin C terminus ) HSP 1 Score: 69.3 bits (168), Expect = 5.5e-12 Identity = 59/198 (29.80%), Postives = 101/198 (51.01%), Query Frame = 0
HSP 2 Score: 41.6 bits (96), Expect = 1.2e-03 Identity = 22/50 (44.00%), Postives = 34/50 (68.00%), Query Frame = 0
BLAST of PI0006581 vs. TAIR 10
Match: AT3G44960.1 (unknown protein; Has 34 Blast hits to 34 proteins in 10 species: Archae - 0; Bacteria - 0; Metazoa - 3; Fungi - 0; Plants - 31; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 66.6 bits (161), Expect = 3.5e-11 Identity = 57/179 (31.84%), Postives = 83/179 (46.37%), 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.
|