MELO.jh101111.1 (gene) Melon (Harukei-3) v1.41
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGAACAACGGCGACGGCATCACCGACGCCTTCTCTTTCTTTTGTTGACAAGTCCCACTTAATTGCCCTCAAAGTTCAAACTTGTTTCAGTGGTAGTAGCCGTCGCAACTTGTCCGGATTCACCTCTTCTGCAATTGCGACTCCCAATTCCATACTCAGCGAAGAGGCTTTAGAAGTCTCGATGGCTTTCTAAAGACCCCTTGGATGATAATCTCATCGACCCTGAACCTAATTCATCTCTTGCATTTTCTGCTGACGATGACGAGCTCGCCATTTCCAAATTAAACTTGCCCCAGCGGCTGACGGATGCTCTTCAGAAGCGTGGGATTACCCACCTCTTCCCCATTCAAGTACTATCCCACTTTCTGACCTCGCTTTATGTCCCATTGCTCATTCCTGTCTCATTTTACAGTTAATGTTGTTAGAAGTTTTTTTTTTTTCCAATTACTTGCTAAATGCTACGGGAAAGGGGGACACAGTTTCTTTCTTTAACCAGACGCACTGCTTTACGTTTGTAGTTGTGATTTTCTCCGTTCTCTTTCAGTATTTTTGTTAGGTTTTTTGAGGCTATTACTTTTAATTCAGATATTATCTGTTGGCTTAAATTTAAAATTCAAAATGTTATAGATGTGGGAAATGCTAACATGCAAAATCCATAGTGCACAAATTTTGAGAATGATGCATACACCTGCTTGTTTAAAAACTTTCATTTAGGATATAGATTCATTTTATTCTTAAGTTAATCTTCCAGGTTATGTTAACCACACCAGAAGAAGTAATTTGTTTCGAAGCTTAATATTCGTTTCGTTACAAGATATTTGTTGTTGAATAATTTGATTACTCATGTGGTGTGATTTTATCTCTATTTTATTTATTTATTTATTTGTTCATTTGAAACATGCAGAGAGCTGTTCTTGTCCCTGCATTAGAAGGTCGAGACCTCATTGCCCGTGCAAAGACTGGTACTGGGAAGACATTGGCTTTTGGGATACCAATTCTTAAAAAACTCACTGAAGATGATGAATCAAGAAGTTTGCGGAGGTACGAATATGTGACTGCCTAAAACCTAGTACTTAATGCATGTTTGGATTGAATTTTTAAATGTTTAAAAAAGTGTTCATAAGTGCAAAAAAAAAAAAGTGTAACCCTTGGAAAGTCAATTCAAACACTTTTAGAGGTTTGTCTCGGGATTACTAACTTTTCAGTATTTGTTACAGGCGGTCTCGACTTCCGAGAGTTTTGGTGTTAACTCCCACCAGGGAACTAGCCAAACAAGTGGAAAAAGAGATTAAGGAATCTGCACCTTATCTGAACACTGTTTGCGTTTATGGAGGAGTTTCATATGTTACACAGCAAAATGCTCTTTCTCGTGGAGTTGATGTGGTAGTTGGAACACCTGGTCGACTAATAGACCTAATAAATGGTAACAGCCTCAATTTGGGGGAAGTTGAATATTTAGTATTAGATGAAGCAGATCAGATGCTTGCTGTTGGGTTTGAGGAGGATGTGGAAGTAATTTTAGAAAAGCTTCCATCTCAGCGACAAAACATGCTTTTCTCTGCTACTATGCCAACGTGGGTTAAGAAACTTGCACGCAAATATTTGGACAATCCATTGACCATCGATTTGGTAATCTTTTACATTTTTTTAACATCTTAACTAATTACTTAATCTACCGATTTTTGACATTTGCATATTTTTTTTATTGAAATAAACAATAAAATTGTGTTGGAAAGATGGTTACTCTTTGGATTATGGTGTAATGAAGAGATGAGCTAGGTTCTTTTTGTATGTTCTCTTTTCGATCCTTTTTTTTTTCTTTCACTTTTCAGTTATGTTTGGGCATGCAATTTTAGTAAAGGAAGTAATATTCATCTTCTATGTGACATTGTTGTCAATTGTCATGACAGGCTAGTGTATGCAAAAAGGAAAAATTCCAATAGTATTCTGCTTGCCTGATGCAAGTTTTAAGGAATGGAATCCACTTTGGCGTTGGAAATTGCATTTAATTCTCCATATAAAATTCAATTCCTGTTGGGTAAAAATAATCATCCTGTATCAAATGTGTAGGTTGGCGACCAAGATGAAAAGCTTGCTGAGGGGATCAAACTTCATGCCATATTAACGACTGCAACTTCGAAGCAAACTATTCTGAGAGATCTTGTAACAGTAAGAATTGAATCAGATCCCCATTTCTTCAACCATTACAGACGATTAATCTTGGGACTTGTTCTTCTGTATGCTGTAACTGTGAAGCTGTTATTTGATGTCCTGTTATGTGGTTGGTTTGAACATATTAGATTATCACTAATTATTAAAGTTTAAACTTTTGGAAAACATCAAGTTCTTTTATTGAAAAGCAAGCTGTCACTGAGAAACAAAAAACTAATTTCTTTTATCTATAAATTCTTCACATTCACCTCTAACATGAATTTTAGCTTAAAATCAATTAATTCCATTCTCATGGTTCATTTTAATAAAAGAGCATTTATGCTTGATCAAGTGTGTGTGTGTGTGTCTACTCCTTTACTAATTAAAAATTGCATCTCACTTCATTCTTGTGATACTTTTGTTTTTGCTTTTTCTTTACCTCCAGAACCTTACAAATCTTTTTTAATAATTGTCTTAAAATTTGATTTAACCCTTTTGCCCAACATAAACTGGGCATTACACGATATAAAATGCAGCCCTTGAGAAATATCTTCTACGAGACTCTTTCATTCATAATAGCATCCTTTCATTTTCATGTGAACCATATTATTTTAATGCCTGATCTCCCCAAAAACTGAGTCTAATAACATCCTGGTTTCAGGTTTATGCAAAGGGGGGAAAGACCATTGTTTTTACTCAGACAAAACGTGATGCTGATGAAGTCTCCTTGGCATTAGCTAATAGCATAACATCAGAAGCATTGCATGGAGATATATCACAGCATCAACGGGAAAGAACATTAAATGGCTTTCGGCAGGGGAAGTTCACTGTGCTGGTTGCAACTGATGTAGCTTCACGAGGACTGGATATCCCAAATGTTGATTTGGTATTCTCATTTGGACACTATTTCAGTGCCAATTTCTTTTAGTTTCAATGCTTTTCTACCCTGTCCAAATTTTCAATCTGAGGCGTTCACTAATGATTTTGCCAATTTGAGAGTAATTGAGCATTCTTCAAGTGATAGAGTCATTGTTGGCTTGTGAAGTATCTAATTCTTAGAAGTTTCTTTCGTACTCATTTTAAGAGCTTGTAAAATTAGACCTCTTTCAAAATTTTCATTTTCTATAACAATTATCTAACTGGACTTCTATCTACCTTCACTTCAGGTTATCCATTATGAACTTCCTAATGATCCTGAGACTTTTGTACATCGCTCTGGCCGCACTGGACGTGCAGGAAAAGAGGGTACTGCCATTTTAATGTTTACAAATAGTCAAAGGAGAACAGTTAGATCACTTGAGCGTGATGTGGGGTGCAAATTTGAGTTTGCAAATCCACCTGCAATTGAGCAGGTTCTAGAATCATCAGCTGAGCAAGTGGTTGTTACTCTTCGGGGTGTTCATCCTGAATCTATTGAGTATTTCACTCCAACTGCACAGAAGTTAATTGATGAACAAGGACCGGGTGCTCTGGCGGCTGCACTTGCACAATTAAGTGGGTTCTCCCATCCTCCTTCATCACGGTCACTTATTAACCACGAACAGGTATTAAGAGTTCTGTTTGTGAATTTATTATAGCTAGAAAATTATCTCTTGCAAATGGTTGTCATTAAGGTAAAACATATTTGTTGCAGGGATGGGTGACATTGCAGCTGACCAGGGATCCATCTTATTCACGTGGGTTTTTGTCTGCTAGGTCTGTCACTGGATTTCTGTCTGACATTTATTCTCCAGCTGCAGACGAAATTGGAAAAATACATCTAATTGCCGATGAAAGGGTGAAAATCTTTTGCATGCTGTACCTATTTCATGTCTTTAATTTTAAATTTTCACTGGCATTCAATTTTGTTTATAAACTTAAATATTGATGTTGGTAATGGCAGATAAATGGAGCAGTATTTGATCTTCCAGAGAAATAGCAAAAGAGTTGCTGAATAAGGAACTACCAGAAGGAAATACTATTTTGAAGGTAACGAAGGTAAGTTTGTTCCTTCCTCCTCTCACGATCACAATTGTGGCTTAGTTAATAATATTCTTATGTTGCCTCAAAAATAATGTTATCTCTTTGATGTGACCATTGACTAACAGAATGTTGGAACACATTCCAATACTTCATTTTTTTGCAGTTACCTCCTCTGCAGGACGATGGCCCACCAAGTGACAACTACGGAAGATTTTCTGGCAGAGAAAGAAATAGTCGAAATAGCTCTAGGGATCGCAGAGGTTTTAGAACTTCAAGGGGATGGGGAAGCAGTCGAGATTCTGATGACGATGGTGATATGTTTAGTAGAAATCGCAGTTTAGAACCAACAGCAGCAAGGGTCGAAATTTTAGAAGCTCAGGAGATGATTGGCTAATTGGAGGCAGACGATCAAGCAGGTCATCATCCGTGGATAGGTAACTTTTTTTGCTTATTATGATAGAGGGTATTGTGCATTTCCTTGTAACAGTGTTTTGGAAGTAAAATGATGGGTTTTAGCAAGACAGTGAAAGGCATGCATTAATCTTTAAAAGTATAGCAAGACTGTTTTGGGATGGTGTGTTGAGTATGCAGTTGATTTGGTTTGGATTTCCTTTTTTAATTATTGGCGTATTTAGGTTCTTTCTCTCTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN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ATGGGAACAACGGCGACGGCATCACCGACGCCTTCTCTTTCTTTTGTTGACAAGTCCCACTTAATTGCCCTCAAAGTTCAAACTTGTTTCAGTGGTAGTAGCCGTCGCAACTTGTCCGGATTCACCTCTTCTGCAATTGCGACTCCCAATTCCATACTCAGCGAAGAGGCTTTAGAACGGCTGACGGATGCTCTTCAGAAGCGTGGGATTACCCACCTCTTCCCCATTCAAAGAGCTGTTCTTGTCCCTGCATTAGAAGGTCGAGACCTCATTGCCCGTGCAAAGACTGGTACTGGGAAGACATTGGCTTTTGGGATACCAATTCTTAAAAAACTCACTGAAGATGATGAATCAAGAAGTTTGCGGAGGCGGTCTCGACTTCCGAGAGTTTTGGTGTTAACTCCCACCAGGGAACTAGCCAAACAAGTGGAAAAAGAGATTAAGGAATCTGCACCTTATCTGAACACTGTTTGCGTTTATGGAGGAGTTTCATATGTTACACAGCAAAATGCTCTTTCTCGTGGAGTTGATGTGGTAGTTGGAACACCTGGTCGACTAATAGACCTAATAAATGGTAACAGCCTCAATTTGGGGGAAGTTGAATATTTAGTATTAGATGAAGCAGATCAGATGCTTGCTGTTGGGTTTGAGGAGGATGTGGAAGTAATTTTAGAAAAGCTTCCATCTCAGCGACAAAACATGCTTTTCTCTGCTACTATGCCAACGTGGGTTAAGAAACTTGCACGCAAATATTTGGACAATCCATTGACCATCGATTTGGTTGGCGACCAAGATGAAAAGCTTGCTGAGGGGATCAAACTTCATGCCATATTAACGACTGCAACTTCGAAGCAAACTATTCTGAGAGATCTTGTAACAGTTTATGCAAAGGGGGGAAAGACCATTGTTTTTACTCAGACAAAACGTGATGCTGATGAAGTCTCCTTGGCATTAGCTAATAGCATAACATCAGAAGCATTGCATGGAGATATATCACAGCATCAACGGGAAAGAACATTAAATGGCTTTCGGCAGGGGAAGTTCACTGTGCTGGTTGCAACTGATGTAGCTTCACGAGGACTGGATATCCCAAATGTTGATTTGGTTATCCATTATGAACTTCCTAATGATCCTGAGACTTTTGTACATCGCTCTGGCCGCACTGGACGTGCAGGAAAAGAGGGTACTGCCATTTTAATGTTTACAAATAGTCAAAGGAGAACAGTTAGATCACTTGAGCGTGATGTGGGGTGCAAATTTGAGTTTGCAAATCCACCTGCAATTGAGCAGGTTCTAGAATCATCAGCTGAGCAAGTGGTTGTTACTCTTCGGGGTGTTCATCCTGAATCTATTGAGTATTTCACTCCAACTGCACAGAAGTTAATTGATGAACAAGGACCGGGTGCTCTGGCGGCTGCACTTGCACAATTAAGTGGGTTCTCCCATCCTCCTTCATCACGGTCACTTATTAACCACGAACAGGGATGGGTGACATTGCAGCTGACCAGGGATCCATCTTATTCACGTGGGTTTTTGTCTGCTAGGTCTGTCACTGGATTTCTGTCTGACATTTATTCTCCAGCTGCAGACGAAATTGGAAAAATACATCTAATTGCCGATGAAAGGATAAATGGAGCAGTAACGAAGTTACCTCCTCTGCAGGACGATGGCCCACCAAGTGACAACTACGGAAGATTTTCTGGCAGAGAAAGAAATAGTCGAAATAGCTCTAGGGATCGCAGAGGTTTTAGAACTTCAAGGGGATGGGGAAGCAGTCGAGATTCTGATGACGATGGTGATATGTTTAGTAGAAATCGCACCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTAGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCC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ATGGGAACAACGGCGACGGCATCACCGACGCCTTCTCTTTCTTTTGTTGACAAGTCCCACTTAATTGCCCTCAAAGTTCAAACTTGTTTCAGTGGTAGTAGCCGTCGCAACTTGTCCGGATTCACCTCTTCTGCAATTGCGACTCCCAATTCCATACTCAGCGAAGAGGCTTTAGAACGGCTGACGGATGCTCTTCAGAAGCGTGGGATTACCCACCTCTTCCCCATTCAAAGAGCTGTTCTTGTCCCTGCATTAGAAGGTCGAGACCTCATTGCCCGTGCAAAGACTGGTACTGGGAAGACATTGGCTTTTGGGATACCAATTCTTAAAAAACTCACTGAAGATGATGAATCAAGAAGTTTGCGGAGGCGGTCTCGACTTCCGAGAGTTTTGGTGTTAACTCCCACCAGGGAACTAGCCAAACAAGTGGAAAAAGAGATTAAGGAATCTGCACCTTATCTGAACACTGTTTGCGTTTATGGAGGAGTTTCATATGTTACACAGCAAAATGCTCTTTCTCGTGGAGTTGATGTGGTAGTTGGAACACCTGGTCGACTAATAGACCTAATAAATGGTAACAGCCTCAATTTGGGGGAAGTTGAATATTTAGTATTAGATGAAGCAGATCAGATGCTTGCTGTTGGGTTTGAGGAGGATGTGGAAGTAATTTTAGAAAAGCTTCCATCTCAGCGACAAAACATGCTTTTCTCTGCTACTATGCCAACGTGGGTTAAGAAACTTGCACGCAAATATTTGGACAATCCATTGACCATCGATTTGGTTGGCGACCAAGATGAAAAGCTTGCTGAGGGGATCAAACTTCATGCCATATTAACGACTGCAACTTCGAAGCAAACTATTCTGAGAGATCTTGTAACAGTTTATGCAAAGGGGGGAAAGACCATTGTTTTTACTCAGACAAAACGTGATGCTGATGAAGTCTCCTTGGCATTAGCTAATAGCATAACATCAGAAGCATTGCATGGAGATATATCACAGCATCAACGGGAAAGAACATTAAATGGCTTTCGGCAGGGGAAGTTCACTGTGCTGGTTGCAACTGATGTAGCTTCACGAGGACTGGATATCCCAAATGTTGATTTGGTTATCCATTATGAACTTCCTAATGATCCTGAGACTTTTGTACATCGCTCTGGCCGCACTGGACGTGCAGGAAAAGAGGGTACTGCCATTTTAATGTTTACAAATAGTCAAAGGAGAACAGTTAGATCACTTGAGCGTGATGTGGGGTGCAAATTTGAGTTTGCAAATCCACCTGCAATTGAGCAGGTTCTAGAATCATCAGCTGAGCAAGTGGTTGTTACTCTTCGGGGTGTTCATCCTGAATCTATTGAGTATTTCACTCCAACTGCACAGAAGTTAATTGATGAACAAGGACCGGGTGCTCTGGCGGCTGCACTTGCACAATTAAGTGGGTTCTCCCATCCTCCTTCATCACGGTCACTTATTAACCACGAACAGGGATGGGTGACATTGCAGCTGACCAGGGATCCATCTTATTCACGTGGGTTTTTGTCTGCTAGGTCTGTCACTGGATTTCTGTCTGACATTTATTCTCCAGCTGCAGACGAAATTGGAAAAATACATCTAATTGCCGATGAAAGGATAAATGGAGCAGTAACGAAGTTACCTCCTCTGCAGGACGATGGCCCACCAAGTGACAACTACGGAAGATTTTCTGGCAGAGAAAGAAATAGTCGAAATAGCTCTAGGGATCGCAGAGGTTTTAGAACTTCAAGGGGATGGGGAAGCAGTCGAGATTCTGATGACGATGGTGATATGTTTAGTAGAAATCGCACCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGGCCTGGGCCTGGGCCTGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTAGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGAGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGGGCCTGA MGTTATASPTPSLSFVDKSHLIALKVQTCFSGSSRRNLSGFTSSAIATPNSILSEEALERLTDALQKRGITHLFPIQRAVLVPALEGRDLIARAKTGTGKTLAFGIPILKKLTEDDESRSLRRRSRLPRVLVLTPTRELAKQVEKEIKESAPYLNTVCVYGGVSYVTQQNALSRGVDVVVGTPGRLIDLINGNSLNLGEVEYLVLDEADQMLAVGFEEDVEVILEKLPSQRQNMLFSATMPTWVKKLARKYLDNPLTIDLVGDQDEKLAEGIKLHAILTTATSKQTILRDLVTVYAKGGKTIVFTQTKRDADEVSLALANSITSEALHGDISQHQRERTLNGFRQGKFTVLVATDVASRGLDIPNVDLVIHYELPNDPETFVHRSGRTGRAGKEGTAILMFTNSQRRTVRSLERDVGCKFEFANPPAIEQVLESSAEQVVVTLRGVHPESIEYFTPTAQKLIDEQGPGALAAALAQLSGFSHPPSSRSLINHEQGWVTLQLTRDPSYSRGFLSARSVTGFLSDIYSPAADEIGKIHLIADERINGAVTKLPPLQDDGPPSDNYGRFSGRERNSRNSSRDRRGFRTSRGWGSSRDSDDDGDMFSRNRTWAWAWAWAWAWAWAWAWAWPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLRPGPGPGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLSLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLSLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLGLRPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPGPEAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWAWA Homology
BLAST of MELO.jh101111.1 vs. NCBI nr
Match: XP_008450498.1 (PREDICTED: DEAD-box ATP-dependent RNA helicase 3, chloroplastic [Cucumis melo]) HSP 1 Score: 1135 bits (2937), Expect = 0.0 Identity = 604/673 (89.75%), Postives = 606/673 (90.04%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. NCBI nr
Match: KAA0050973.1 (DEAD-box ATP-dependent RNA helicase 3 [Cucumis melo var. makuwa] >TYK10319.1 DEAD-box ATP-dependent RNA helicase 3 [Cucumis melo var. makuwa]) HSP 1 Score: 1135 bits (2937), Expect = 0.0 Identity = 604/673 (89.75%), Postives = 606/673 (90.04%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. NCBI nr
Match: XP_004135577.1 (DEAD-box ATP-dependent RNA helicase 3, chloroplastic [Cucumis sativus] >KGN66001.1 hypothetical protein Csa_007094 [Cucumis sativus]) HSP 1 Score: 1113 bits (2880), Expect = 0.0 Identity = 590/672 (87.80%), Postives = 602/672 (89.58%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. NCBI nr
Match: XP_038879136.1 (DEAD-box ATP-dependent RNA helicase 3, chloroplastic [Benincasa hispida]) HSP 1 Score: 1110 bits (2870), Expect = 0.0 Identity = 590/678 (87.02%), Postives = 602/678 (88.79%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. NCBI nr
Match: XP_022157915.1 (DEAD-box ATP-dependent RNA helicase 3, chloroplastic isoform X1 [Momordica charantia]) HSP 1 Score: 1062 bits (2747), Expect = 0.0 Identity = 567/685 (82.77%), Postives = 589/685 (85.99%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy Swiss-Prot
Match: Q8L7S8 (DEAD-box ATP-dependent RNA helicase 3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=RH3 PE=1 SV=2) HSP 1 Score: 828.9 bits (2140), Expect = 2.2e-238 Identity = 449/634 (70.82%), Postives = 501/634 (79.02%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy Swiss-Prot
Match: Q0DM51 (DEAD-box ATP-dependent RNA helicase 3, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os03g0827700 PE=2 SV=2) HSP 1 Score: 826.6 bits (2134), Expect = 1.1e-237 Identity = 434/571 (76.01%), Postives = 482/571 (84.41%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy Swiss-Prot
Match: A0A1D6GDY8 (DEAD-box ATP-dependent RNA helicase 3A, chloroplastic OS=Zea mays OX=4577 GN=RH3A PE=3 SV=1) HSP 1 Score: 809.7 bits (2090), Expect = 1.4e-232 Identity = 438/620 (70.65%), Postives = 490/620 (79.03%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy Swiss-Prot
Match: A0A1D6LAB7 (DEAD-box ATP-dependent RNA helicase 3B, chloroplastic OS=Zea mays OX=4577 GN=RH3B PE=2 SV=1) HSP 1 Score: 807.4 bits (2084), Expect = 6.9e-232 Identity = 427/572 (74.65%), Postives = 476/572 (83.22%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy TrEMBL
Match: A0A5D3CJA2 (RNA helicase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold16G004730 PE=3 SV=1) HSP 1 Score: 1135 bits (2937), Expect = 0.0 Identity = 604/673 (89.75%), Postives = 606/673 (90.04%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy TrEMBL
Match: A0A1S3BQ06 (RNA helicase OS=Cucumis melo OX=3656 GN=LOC103492086 PE=3 SV=1) HSP 1 Score: 1135 bits (2937), Expect = 0.0 Identity = 604/673 (89.75%), Postives = 606/673 (90.04%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy TrEMBL
Match: A0A0A0M1E9 (RNA helicase OS=Cucumis sativus OX=3659 GN=Csa_1G560830 PE=3 SV=1) HSP 1 Score: 1113 bits (2880), Expect = 0.0 Identity = 590/672 (87.80%), Postives = 602/672 (89.58%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy TrEMBL
Match: A0A6J1DXX8 (RNA helicase OS=Momordica charantia OX=3673 GN=LOC111024523 PE=3 SV=1) HSP 1 Score: 1062 bits (2747), Expect = 0.0 Identity = 567/685 (82.77%), Postives = 589/685 (85.99%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. ExPASy TrEMBL
Match: A0A6J1DUC8 (RNA helicase OS=Momordica charantia OX=3673 GN=LOC111024523 PE=3 SV=1) HSP 1 Score: 1062 bits (2747), Expect = 0.0 Identity = 567/685 (82.77%), Postives = 589/685 (85.99%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. TAIR 10
Match: AT5G26742.1 (DEAD box RNA helicase (RH3) ) HSP 1 Score: 828.9 bits (2140), Expect = 1.6e-239 Identity = 449/634 (70.82%), Postives = 501/634 (79.02%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. TAIR 10
Match: AT5G26742.2 (DEAD box RNA helicase (RH3) ) HSP 1 Score: 828.9 bits (2140), Expect = 1.6e-239 Identity = 449/634 (70.82%), Postives = 501/634 (79.02%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. TAIR 10
Match: AT5G26742.3 (DEAD box RNA helicase (RH3) ) HSP 1 Score: 793.5 bits (2048), Expect = 7.3e-229 Identity = 423/564 (75.00%), Postives = 469/564 (83.16%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. TAIR 10
Match: AT3G22330.1 (putative mitochondrial RNA helicase 2 ) HSP 1 Score: 460.7 bits (1184), Expect = 1.1e-128 Identity = 239/410 (58.29%), Postives = 304/410 (74.15%), Query Frame = 0
BLAST of MELO.jh101111.1 vs. TAIR 10
Match: AT3G22310.1 (putative mitochondrial RNA helicase 1 ) HSP 1 Score: 454.1 bits (1167), Expect = 1.0e-126 Identity = 228/379 (60.16%), Postives = 292/379 (77.04%), 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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