CmaCh12G006210 (gene) Cucurbita maxima (Rimu) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGACGCAGGTGTTACGTAATATTGTTAATATTATAATAATTAATAAACAGTTATTTATATTTTGAAACTAATTTGGTGTTTTTATTTGACATGACACCAACACCAACCTTATGCTTGCTCCATCTATATAAAGCTGTCTCATCCTTAAACGAACATCTCCATCGTTAGAAAGTTCAATTTATTTATGAGACTTTACCGTGTGGAAAATGAGCGGAAACATTGTTTATCCATTAAATAAATAGGGTTGGAGTATAAGATTATATTCTCCGTTCCTGTCCAATTCGCCATTATGTCCCGCTTAATATAAATATATTTTTAATATATATTTTTGGCTATGTTAAATAAATAAAATAGTTAATTTTGAGACTCTAATTGTAATTATTATTAATTTTTATTTGGTTTAACCATTTTTTCTAATAAAAATTATATTGAAAAATGAAAACTATTTTTTAAAAATAATAACAAATTGAAAAAAATTATATGCAGGCAAATTCTTTATGCTTTATGGGTGGATGATGAAAGTCTCACATCGGCTAATTTAGGAAATGATCATGGGTTTATAATCAAGGAATACTATCAGAAGCCCAAAGCAAAGCCATAGAAGCTTATGCTCAAAATGGACAATATCGTACTATTGTGAAGAGTCGTGTTCATCTAACATTCTCTACCCTGAAATATCTATATGTATAATTCATCATTGTCTCAACATTCTGAACTCATCTCACGTACCATTTTAAAACATACTACACCTCCCCGGGAAAGGATTCTAAGGCTACAATTAAATATATTATTCTTGTTGTCACATCATTTGAAATTATTTGATATTTGAAAAGGAAAAAAAGAAGAAAAAAAAAAAGGTGAATAAAGGGGAAAGGATTCCAAAGTTATCTGATTAGACAAAACAATAGAGAGTGAATAATGAATGGTCTTCAAAGAATAAATGCATGGTTAGTAGGAAGGCGTACACTATGATATGATTATATGAATGATCTTTAATGTGCTTATTCTCGTTCGTAATTAAAGAATAAACGCATGATTAGTAGGAACGCATACACTATGATGTGATTATACCGTATTATGTACACAATGATATATGTGTACTCCCTTTCCTTTGTAGTATACTGACAATGTGGTGTATGCTAGTCAAAGGCTAGGTCTAGGGAGTACGTATACAAGTTCACTTGAGGGTTTATGTGTGGGTCGTGTGTAGAGAAATACTATACGTACAATTCTTCTCGAACTAGAAGTTGAAACGAAGACCATGAAATGGTATGTCCTAAACATGATTGCATGTGATTGCATTTCCCGACACAAGAAATGAGATCATTTACGGAGTACTTCTTAAAATACTCAAATCATGTGCTACTTTTACTTTTCATGTAAAAGCAAGACATATCCAAATTTGCAATCAACACACATACCTCTAACATTCCTATGTGTATCTACTATGACATAACCACATTACCTGCTTGACTTAAATTGTTTATAAGAGTGAGAATTATAAGACTAACACAAATTCTTCTAGCAAACTTTGTCCTCAGTCATGTTTCCTAAGAAAATTATTAGGTCATAGAATTGTTATAAGTTAAATACCTACTCGGGCCTTCAACAAGCATATTTTTTCCCCTCTTGTCTATTCGATGTCTCTATCTTGCTTATGTCTCAACTTGTCTTCAATATCCACTTCGTGTGGTGTGTGGTGTGTTGTATATTTCACTGTTCTCTTCAGTCGCATCATGGCACTCATCTAGGCCCTTGCGCAGTTGGATGGGCGCCACTTGAAGGTCGCTGCTTCTCTTGTCGCAACGTGAAGGTCACAACCTACTCTTTTCATAGTTAGATTGTGACATTCTCCTCCACTTAAACTAGTCATCGTCTTCGATGACTTACTTAGGAGCACAACCATTGTTAGACTGTGACATCTCAACAGTGAAATTTAAATGACTAAATCACTAAAAAAAAGAAAGGTATGTATGGTTGAAATAGATAGTAACTATAAATTATTCTAAGTATTTCTTAGTGTCCTTCGTCAGTGTTTTGTCTTTCTTAAGTCCCTTTCAACATTAGGTGCATCCCTCATTTAAGAAATTCAGCCTTATCCTCCCCCTTCCATCAATTTTCCCTTTTCTTTTCACTGTTTACTCTTCAAATTTGTACCTTTTCTTCTTAGCAATACCAAGGGATGAAAAGAATAAAAGATAGAAAGATAATGAGATAAAGTCCATATAAAACCCAAACCATATCCATTCAATTTGCATAAAGAACCATGTTACCGAAATGTGATCCAAATCTTTTAGGTTATGTTTTACGAACATAATTTTGGTTGGCCAATCGTTATTATAAATTGTACTCAAAGATTGATTGATTTACTAGTGAAAGAATCTAATAATTAGTTTTGCAGTATACCGTATGGACTATTAATCGGTAGTATGAAATATTTTTGTACCAATAGGGGCTGGCCCGATCGATTCTTTTGAATTTTGGACTAGTAACCGTACTCTTTAGATAGAGTGCTTCACGCCATACCTCGACAATAGTAGGGACCTAGAAAGCTATCTATGCTTTTGTCGTTCTCTCACTGATTTTCGTATTTCACGTCATGAAATTTCTCTCCCTAATGAGTGAATTTTAATGTAATAATCTTTAAAAAAATCCATTTTGGTTAGCAATTATAGAGAGGAGGCATGCATGCATCTACATACATAAATCCATGATACATCCATCCATCCATACACATACATTAAGAGGTGTCCAATCTTTCAACATCATCACACTTTTTATATTATTATTCAAAGGAAAAAAAAGAAAACGTCTTGTCCAGCACCTAAGTCGCCGGAGACATGGCCGTCGCCGTCGCCGTCGTCCTTGTCTCTCTCTAGCTACCCCATAGTAGCCAAAAAAACAACCTAGAAATTTCCGAAATCAGCTCGTTTCAGTTCAGTTCCCTTCAAAACTCAAATTTGATAAAACCCCATCTTTTAAAATCAAAAACCCATTTCAAAAATAAAATAAAAAAACTATATTTTTGGCTCTGTTCTTTGGAAATTGACTGCTAGCTTTTTCCCATAACTTCACTGTTTAATTATTCCCCCACTTTAGGGTTTTGTAATAATTCCATTTTCCTTTCTCTCTCTTCTGTTACTCAGTTATTTTTGTTGTTTTAATGGAAGATCAGTACAACCCTAATTTTCATTATCATCATCAACAACAACACCAACAAGTTCATGATTTTCAAATAAGTAGCGGTGGGAGTAAGGATACTGATATCATGAAGGCCAAAATCATCTCCCACTCTCAATTCTCTAATCTCCTCCAAGCTTTCTTGGATTGCAAAAAGGTTGACTTGGGTCACTTTAGAATTTTAAATTTTTGAGATGAGCTAATTAAAGGCAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTNTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCAGGTGGGAGCTCCGCCGGAGGTGGCGGCGGAACTTGGGTCGGTAGGGGAGGAGTTTGAGGAGCGGCGGCGGTGTTCAATGGCGGCGAGTGGGGGTTATAGTGATCCAGAACTTGATCAGTTCATGGTGAATGGATTATTTGTTCTTTGTTCTTTGTTCTTAAATAAACAAGAACTTTGAAGATTAATTTGGAATCTTTGAATTGGAAACAGGAAGGTTACTATAGGATGTTGGTGAAGTATAGAGAGGAGCTGACAAAGCCTATTCAAGAAGCTGCTGATTTCATGCTGAGAATTGAATCTCAGCTCAATACTCTCTGTAATGGCTCCTTCCAAATCTTAGCTTCTGGTACTTCTTCTTCATCCACAAATATTTTTTGTTTTTTGGGATTTTACTTTGCAACCCATTTGATTTTGTGAGATCCTTAGCTGGTTGGAGAGACTAACGAGTGCCCGCTAGAACCCTGACTCTAAAGATGTGGATTGTGAGATCCTTAGTTGGTTGGAGAGAGTAACGAGTGCTAGCGAGGACGCTGAACAAGTGCTAGCGAAAGAGTTGATCCCTAATAGTGTGGATTGTGAGATATTTAGTCGGTTGGAGAGAGTAACGAGTGCTAGCGAGGACTTTGGACCTTAAGAGTGTGGTTTGTGAGATTCTTAGTTGGTTGGAGAGGTAACAAGTGCTGGTGGGACGTTGACCTCTAAGAGTGTGGACTGTAATATGCCACATCGGTTGTTGCATATGAAAACTAAACATTTTTTTATAAGAATGTGGAAACTATCCCAACGGACGATTTTTTAAAACGTTGAGGAGAGTTCAAAAATAAAACCCTAAAAAATATAATATCTCAAAATGGGAATTTTTTTTTTTAACCCTTACTACTATTGAAAGGACTTAACAGCCCTTGTCAGAAGAAAAGATTAAAAATAAAAAACCCTAATTTCAGAGTGATTTCAACCTTCTGTCCTTTTTCCCCCTTCTTGTTTGTTTTTTCCCCTATATTTCTAAATAAAAATGTTGGTTTAATTAATGGATTTAGTGCTTAATTAAGTCTTAATTGGGGATTAAATGTTATGAGACAAAATAATTAGTGGCTTCACATCAAATTAAATATGTTTTATTTTGTTTTACAGATGTAATTTCTTTATAAATATTTAAAGAAAGCTATTTTAATCATTAAATTTGACTATTATTTTAAAGATGCAGCGACCGAAGAAAATCGCGACGGAATGGGATCATCGGAGGAGGAGCAAGAGAAGGGGGGCGGGGAAGCCGAAAGAGATGCAACGGAACAGATTGACCCACGAGCAGACGAGCGAGAGCTAAAGAATCACTTACTAAAGAAGTACAGTGGGTATCTGAGCACTCTAAAGCAAGAGCTTTCAAAGAAGAAGAAGAAAGGAAAGCTCCCAAAAGACGCAAGGCAGGAGCTGCTCAGATGGTGGGAAGTGCACAGCAAATGGCCATACCCATCGGTAAGTCACTCTGCTTCTTTTTGTTCTTGCACACAACCTGTTTGTGAAAATGCCTCAAAGAACCAAACCCCGAAAAACACTGTTAATTTGTGCGTGTGGGGGGCAGCAGGAGGCAGAGAAGTTGGCGCTAGCGGAATCAACTGGGTTGGATCAGAAACAGATAAATAATTGGTTCATAAACCAGAGGAAAAGGCATTGGAAGCCGTCTGAGGATGTACAGTTGATGGGTATGGAGGGGTTTTACCATCCCAACACTGCTGCTGCTTTTTACTTCGATGGGCGTTACATGGGCGATGCCCATTACCGTTTGGGTCCATGACAGGAATTCAGCTCACTTTGCTTCGAAGTCAGAGCTTGGTTTCAGCTGCTTATCCCATATGGTATGCTAACTCTTTTTAGTTCCTAGTGATTATAAAACAGGAAAAAGAGAAGAAAAAAAAAGGAAAGGGGTAATAGTTGATGATAGGGTATTTATTTTATTGTGTTTACTCATAATATTCTGCCTCTCATTTGGTGAATATTCCTAAATGCATGTCAAGTAATAATATCCACCCTTTAGTCTTACCATTTCATTTTCTGCTTTACATTGGTTTTTTCTTATTCTTTGCGTTTTAAATGTTTTATTCACTTTGTCTGTTCCCATTCGGTTTATGAATGTTATGAAAAGGGTTATTTTAGTTTTTTATACCAAATTTGAAAGTATATAGGGGTGAAGATTATTGGGAGGGAGACCCAGTTGGCTAATGAAGGGGAAGATCATAGTTTATTAGTAAGAAATACTATCTCTATTGACATGTGACTTTTTGGGTAAAAAAAAAAAAAAACAAAGTCACGAGAGCTCATGCTCAAAGGGGACAGTATAATACCATTGTAGAGGATCGTGGTTCCTTATATGGTATCAGAATCATGTCCTTAATTTAGTCATGTCAATGGAATCCTCACACTTCAAATAAAGGAGTTGTGAGCCTTGAAGGTGTAGTCAAAAGTGACTCAAGAGTTGAACAAAGGGTGTACTTTGTTCAAGGGCTCTATAGTCTTTCGGGAGGGGGGGGGGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGACTCTATGGTGTACTTTATTCGAGAGGTAGATTGTTGGGAGGGAGAAGGGAAAGATCATCTGTTTATAAGTAAGAAATATTATCTTCATTAACGTAAGACCTTTTGGGTAAACCAAAAGTAAATCCATGAAAGCTTATGCTTAAAGTGGACAATATCATACTATTGCGGAGAATCTTAGTTCTTAACCTATTGTAGTTTTTATTATTTGTTGAATGCATTGATAGTTGAGTTGAATCACTTCACTATCTATCTTGTTTTAACTATCGATCTCGTTTTAAGATATAAAAGGATGGATGGATTTCAACATTTTCGGTGGTTTCCTAAATATGATTTTCTCCAATGTTTGAGAATTTGGTATGATCTTCCATTTCCATATGCTCTCTATTATCATTGTGCGAAAACTAATCAGAGGTACAACACAGATGAGTGTCCTTATAAGATGTTAGTATTTGGCATGTCAACTGGAGTGCGTTCATGATTGACTCCAAGTTTGTGAGTCCATGGGAAAATTTGATGTTTGCACCCGAAATGCCAATTTCTTTGAGAGGATCTATCACTTATGGATATATTTCTGGGAGATAAGGTCAGCTTTACCTAAGAAATTTATGAGTTATTTTTCTTTTTTTGAAATTTTTTCTTTGAAAGAACATAAATTTGTATGAGAGCGATCAAAGTTCACTACAAATAAGAGCAAGAACATCTTATGTGAGATCTAACGTTAATTAGAGAGGGGAACTAAACATTATTTACAAATGTGTGAAAACCTCTCCCTAGCAAACCCATTTAAAAATTCTTGAGGGGAAGTCCGAAAGGAAAAGCCTAAAGAGGACAATATGTGCTAGCGGTGGGCTTGGACGGTTACAAATGGTGTTAGAACCAGATACTGGGCAGTGTGCTAGCAAGAATGTTGAGTCCCAAAGTAAGGTGGACACCGGACAGTGTGCTAATGAAGATGTTGAGCCCCAAAGGAGGGTGGACACTGAGCGGTGTGCCAGCAAGGACATTGAACCCCAAAAGAGAGTGGACACGAGGCGATGTGCCAGCAAGGATGTTGGGCCTCGTAAGATGGTGGATTGTAAGATTCCACGTTGGTTGGAGAGGGGAACGAAACATTTTTTTATAAAGGTGTGGAAACCTCTCTCTAACTCACACGTTTTAAAAATCTTGACCCCGTAAGATGGTGGATTGTAAGATTCCACGTTGGTTGGAGAGGGGAACGAAACATTTTTTTATAAAGGTGTGGAAACCTCTCTCTAACCCACACGTTTTAAAAATCTTGACGAGAAATCCAAAAAGAATAATATCTACTTAGCATAAGCTTACGCTTTTACATCCATGTCCTAACATAACAAAACAAAACAAGTGAAAGATTACAATATTTGGGCCGTCAACAGAAGAATTGTGGGCTGGGCGTTTCCATGGATTTAGTGGATCAAACCTACACACCACAATGATGTTGCTAAGGAAGGTCCAGCCCAGATATCTTTTGAAATATGTAAACTAACCAACATTTTTGTGTAATAATTTTCATAATACATCCATTTTTCATTTTTGTCCTGTAATATGAAAAGAAGAATGCGCCTGTGACCGCTGTACACTGTTACCCAACTTTGATTTTCGGGTCTGAAGCGTTGAAGAGGCTGGTTTTTGAGTTTTTACCCAACTTTGATTGACTATATCTTACTCATTTCTTTATGGAAATTTATGAAATTTATTTCATTGTGTTCTTGAAATGTAGATCTACAAGTTTGATCAAGAAAGTATTTTGATTTGAGCAGTGGAACACCCAAGACAGAGTCCATAAAATGGTGTCAGTAGTGATGTTAGCAAGGCAGCAACGACGTGAGCGACCGTATTGTCTAACGGTTATGGTCAACAATCAGATTTTGATACGATAGAAATTTGAGTTGATTTTATATTTGAAAAGGTTATCGTACTTTTTACTTGAAATTGAATTGAAAACATGGCATAGAAACATATTATCAAGATTTGAGCATGGAATGAGTTGATTTGATGTATCAAAGCATAAATTAAGCTCCTATCTGAATAAAATTGAACCCTTGACTAGGTATTTATGTTATGGACACTATGTTATGTCTCTACTATTTATGTATTTGATTTTTATGCGGTTATATGAGAGTGATTAAGAGTTCGTCAAATGACCCTAATTGTAAACTTGCCTGGATCGTCAAGTGTCCTGATAACTATAGAATTGACTTATGGTGTATGATTGTACAATGTTGGGATTATTAAAGAGTTTGTCAGTTAGTTTCCTTTTAGTGAGTTTCCTTTTAGTGAATCTGTAACGAGCTGGAAAGGGTCTACCGTTCTACTTTTAAAGTAGGTTGAACTATAACTTGATGATGATTAGCTCATGCGTGCAACTTTTATGCAGTTCGACGGAGACAATTAGGGGCCGCCAACCAGTCCCTAATAGTAAACTTGACTCAATTGCTAGTAGTCCAAATAAATATAGAACTGATTATGATGTATGACTGTACACCGTTGGGATTCTTAAGGACTTGTAATGTATCACTTCATGGAAAGAATCGAACCTAGCCTACTTAAGGACTTGTAATGTACCTCCTTATCTTTCGATATGCCATGAGCTCACGACCCTCACCTCGATTGATAAGATGCAAATTATGATTATACTATCTAGATTGGTAGTCATACGATTTTGTACCGACCACGTGACCTAGATTGGTCTAAGTCGGGAAGTGTCTCAAATTAAAAAAGTTATGACTATGTATTGTGTGTGGAAATGGACTTGCGCTCTATAAATCACCTTGGAAGGGTGAAGGATCACATGGGAACATAGAATCAAGATTTAGCTGCGAGTGTATGAATCTTTCATGAATCTGCGATTATGAACATTAAGGAACTAGACTCATGGTACGATCAAGAGCTTATAAGACCACCATGAAAGAGTCATTGATGCAAACCATGAGAGAACATCCTTATGGACTCAATGAGCGTCAAAAGGAGGGAATTGGGACAAACCTCAGTGACGTTGCACAAAGATATACGAGCCCATACAGTATTGAGAAGAGTACGACACGAGAGCAAATTTTTGCTAGCAATGTGTGATAGAGAAACTAAACTGTCGCTCGATATTGGTCACTTGATAGGTAGAGGAACATGACAGAGTACATAAATCGATGTTCGATATTTTTAAATAACCATGTCGGTTTTACAAGAGATCGATAAATATATATAAATACAGTGTATCCTACCACATAAAACCATATCATAAAATCCAAAAATTTCAAATTTGACGAAATTATGTTGGTGGTTAGGATTTTACAAAGTGTGGTTTGAATAATGCCTTTAAATACTCTGTTTCCTCATCTCCCAACGCATACTCTCCATTCTTCTCTGCAGCCCCTCTCATCGATCAGCCATCATGATCCATAGAACTCTCTTCCCCCGCTCTTCATGGCCTCGTTCTTGCCTTTCTTCATCCTCTTTCTCTAAGGTTTGACAAAACTTTTCAATTCTTTCTTTCTTTTTTTAAATTACTCTTTTTGTGTACATATCAACGATCTCGTCATGATCTTCTCTTGTCGAGAGTTTTCGTGAACGAAGCATCCATATGGTTCCGTGATCTAAATCTTGATTGTATCTTTTTGATCGAGTCTGATTTGTTTTCTCTTCCTAAAAATGAAAAAGAATGCGTTTTTTTATCATCGTTAGAGATGTCTGTAGAACAGGGTGAGGTGGTAGAAGATTTTTTTTTTTTTTTTTTACGAAAATGTTTTTTTTTTCAAATAATATAATTTATATTTTTCAATATAATTTGAAGGACAGACAATTTTGGGAGTGTACGAGGTTGTAGTTTCAGTAAACTTGTCATCATCGAAAAAGTTAAAAGAGTTGCCAAGGTAGGTTAACATTAGTCCACTCTTTGCAATAAGACAGCAATTTAAATGGACACCCTTTTTTTTAATTGTTTGAACTTCCTTGTATGGCAAATTTGTGTAGGAATTTGTTCCATTTCAATAAACCCTAATTCTCTTCTTATTTTAATCAAAGCTTTACATTTCTGTAAAATGCTTCAACAAAGTACACTTGATAATACTTTTCAGAATCGCAATTTCTTTCTTCGAAATTAAAGACATTCTGATGTTAGGTTAGGTTAGGGATGAGGAATTAGAGCTTTGATTTGGGGGAAAATCTTTCATTTATTTGAAACCCAAATAGTTTTGAATCTTTTGATAATTGCAGCTTGGAGGCGGCTGCCATGGCGATGCGTCTAGGGCTGTATCTTCCATGCCGGAACCTTGCCGGTCATCGCCTTTCAGGTACTTCTAATTCCACATATTCTTGCCGGTGTCTTATTAGTTGTTCAAAGACTGAGAAATTGGCTCTCAATTTGGCTTTGGTTTGATTTCAGCGATGATGAGAGCCGTGATATTGATTGGGATAGCCTTGGATTTGGGCTGTTGCCAACAGATTACATGTATGTTATGAAATGCTCTGAAGATGAGAATTTCGAACGAGGTCAGCTGAGTCGTTATGGGAACATTGAGTTAAGCCCTGCTGCTGGGGTTCTAAATTATGGCCAGGTATCTTCAACTTCCAGTTTCTGATCCTTGTTTTGATTTGGTTTGGTTCTGAAACTGTAAATTTTGTTTAGTTTTGAGGATTGGATAGCTGAGATTCATTGTTTACGCATTTTCCATGTATATGATTGATTATGCATACAACCTGTTTGACGAAATGCCAGACAGAGTTTTAAGGCATGGTTTTGATGATTTGAACAGGGATTGTTTGAAGGTCTGAAAGCATATAGGAAAGAAGATGGAGGCCTTCTTCTCTTTCGTCCGCACGATAATGCTCTTCGTATGAGGACCGGTGCCGAACGAATGTGTATGCCGTCGCCCTCTGTCGAACAATTTGTTGATGCTGTGAAGCAAACTGCCATTGCTAACCGGCGTTGGGTTGTCCTCTCTTTTGAGCTGTGATGCAAACTGTTGACTTTGGTTTGTTTTTCATCCTCATGATTGATTTCACTTGCAGGTCCCTCCGTCCGGGAAAGGATCATTATACCTGAGGCCCTTGCTCGTCGGAACTGGTCCCGTTCTCGGCTTGGCTCCGGCACCTGAATATACTTTTCTTGTTTATGCTTCCCCTGTTCGCAACTATTTCAAGGTGGGACTTCTTTCAATGAAGCTAATTTCTGTTTACATCAAAAGTGCATGATTTATCTATCTACACGTTCTTGGTTTCGAAAACAGGAAGATTCAGGAGCCTTGAACCTATACGTCGAGACCAAGTTCGATCGTGCATCTCGTGGTGGAACTGGAGGTGTGAAAACCATCTCAAATTATGCTCCAGTAAGTGAATAATCTTTGCTGCTGAGCTCAGTTTTTAACTCAATCTTCTGGTGGAAAATGGCATAACTTTATGATGTTGTCATCTCTGTAGGCTTTAAAAGCTATCACCAGAGCCAAAAGTAGAGGCTTTTCTGATGTCTTATATCTTGATTCAGTGAATAAGAGAACTCTGGAGGAAGTTTCTTCTTGCAACATTTTTCTTGTCAAGGTATCTTTATTCTTAATCGACACGAAGCGTTCGATAGATTTATTAGCTTTGATTAGAAAAAGTACTGACGAACTTGTGTGATAAATGATGATCTGATGATGATGATTGTAATGCAAAGATTTTCCATTTCTATAGGGAAATGTTATATCAACTCCTGCTACAAGTGGAACGATTCTTCCAGGAGTAACCCGGAAAAGCGTCATCGATATAGCCCGTAATCGCGGTTACGAGGTGATTATCAAAACAGTTTGATTTTCCAGCTGCCATATACTTATCCTTATACATTTTCAGGTTGAGGAACGGGCTATCGACATGGATGAACTGTCCGACGCTCGTGAAGTTTTCTGCACGGGAACTGCTGTCGGTGTGGCCCCTGTTGGCAGCATCACTTGTCTGGATAAAAGGTAAACTAACTAACTGCTAATTACCCTGCCATTCCTCCAAATAGTTCGATAACTGAATTACATTGGCAGTAGTACAAGTGTTGTCTAGTTTATTGGCAAGTTTTGACGAATTTGTATTGTAAATTCTGCAGGATTGAGTACCAAACAGGTGCTGGGACAACATGTCAGGAACTATACTCAACTCTTGTTGGGATTCAAACTGGAACCACCGAGGATAAGATTGGCTGGACTGTTGAGATCTCTTAAGTTTTCATTTCGCCTATTGATATGAATCATAAATTGTGTGTCGCATGTACGATTGTTTGCTCAAGAGCAAATTTTCATGATATCCGATTGTGAGAGGAGGAAGGTATGAACCTCTCTCAAATTTTGATGAATTAATGTGGGACGAAGGTATGTATCTCTCAAATTTACATGATAATAACGAGCACTGGGTTTTGA ATGACGCAGAAAACGTCTTGTCCAGCACCTAAGTCGCCGGAGACATGGCCGTCGCCGTCGCCGTCGTCCTTGTCTCTCTCTAGCTACCCCATATACAACCCTAATTTTCATTATCATCATCAACAACAACACCAACAAGTTCATGATTTTCAAATAAGTAGCGGTGGGAGTAAGGATACTGATATCATGAAGGCCAAAATCATCTCCCACTCTCAATTCTCTAATCTCCTCCAAGCTTTCTTGGATTGCAAAAAGGTGGGAGCTCCGCCGGAGGTGGCGGCGGAACTTGGGTCGGTAGGGGAGGAGTTTGAGGAGCGGCGGCGGTGTTCAATGGCGGCGAGTGGGGGTTATAGTGATCCAGAACTTGATCAGTTCATGGAAGGTTACTATAGGATGTTGGTGAAGTATAGAGAGGAGCTGACAAAGCCTATTCAAGAAGCTGCTGATTTCATGCTGAGAATTGAATCTCAGCTCAATACTCTCTGTAATGGCTCCTTCCAAATCTTAGCTTCTGATGCAGCGACCGAAGAAAATCGCGACGGAATGGGATCATCGGAGGAGGAGCAAGAGAAGGGGGGCGGGGAAGCCGAAAGAGATGCAACGGAACAGATTGACCCACGAGCAGACGAGCGAGAGCTAAAGAATCACTTACTAAAGAAGTACAGTGGGTATCTGAGCACTCTAAAGCAAGAGCTTTCAAAGAAGAAGAAGAAAGGAAAGCTCCCAAAAGACGCAAGGCAGGAGCTGCTCAGATGGTGGGAAGTGCACAGCAAATGGCCATACCCATCGGAGGCAGAGAAGTTGGCGCTAGCGGAATCAACTGGGTTGGATCAGAAACAGATAAATAATTGGTTCATAAACCAGAGGAAAAGGCATTGGAAGCCGTCTGAGGATGTACAGTTGATGGGTATGGAGGGGTTTTACCATCCCAACACTGCTGCTGCTTTTTACTTCGATGGGCGTTACATGGGCGATGCCCATTACCGACAGACAATTTTGGGAGTGTACGAGCTTGGAGGCGGCTGCCATGGCGATGCGTCTAGGGCTGTATCTTCCATGCCGGAACCTTGCCGGTCATCGCCTTTCAGCGATGATGAGAGCCGTGATATTGATTGGGATAGCCTTGGATTTGGGCTGTTGCCAACAGATTACATGTATGTTATGAAATGCTCTGAAGATGAGAATTTCGAACGAGGTCAGCTGAGTCGTTATGGGAACATTGAGTTAAGCCCTGCTGCTGGGGTTCTAAATTATGGCCAGGGATTGTTTGAAGGTCTGAAAGCATATAGGAAAGAAGATGGAGGCCTTCTTCTCTTTCGTCCGCACGATAATGCTCTTCGTATGAGGACCGGTGCCGAACGAATGTGTATGCCGTCGCCCTCTGTCGAACAATTTGTTGATGCTGTGAAGCAAACTGCCATTGCTAACCGGCGTTGGGTCCCTCCGTCCGGGAAAGGATCATTATACCTGAGGCCCTTGCTCGTCGGAACTGGTCCCGTTCTCGGCTTGGCTCCGGCACCTGAATATACTTTTCTTGTTTATGCTTCCCCTGTTCGCAACTATTTCAAGGAAGATTCAGGAGCCTTGAACCTATACGTCGAGACCAAGTTCGATCGTGCATCTCGTGGTGGAACTGGAGGTGTGAAAACCATCTCAAATTATGCTCCAGCTTTAAAAGCTATCACCAGAGCCAAAAGTAGAGGCTTTTCTGATGTCTTATATCTTGATTCAGTGAATAAGAGAACTCTGGAGGAAGTTTCTTCTTGCAACATTTTTCTTGTCAAGGGAAATGTTATATCAACTCCTGCTACAAGTGGAACGATTCTTCCAGGAGTAACCCGGAAAAGCGTCATCGATATAGCCCGTAATCGCGGTTACGAGGTTGAGGAACGGGCTATCGACATGGATGAACTGTCCGACGCTCGTGAAGTTTTCTGCACGGGAACTGCTGTCGGTGTGGCCCCTGTTGGCAGCATCACTTGTCTGGATAAAAGGATTGAGTACCAAACAGGTGCTGGGACAACATGTCAGGAACTATACTCAACTCTTGTTGGGATTCAAACTGGAACCACCGAGGATAAGATTGGCTGGACTGTTGAGATCTCTTAAGTTTTCATTTCGCCTATTGATATGAATCATAAATTGTGTGTCGCATGTACGATTGTTTGCTCAAGAGCAAATTTTCATGATATCCGATTGTGAGAGGAGGAAGGTATGAACCTCTCTCAAATTTTGATGAATTAATGTGGGACGAAGGTATGTATCTCTCAAATTTACATGATAATAACGAGCACTGGGTTTTGA ATGACGCAGAAAACGTCTTGTCCAGCACCTAAGTCGCCGGAGACATGGCCGTCGCCGTCGCCGTCGTCCTTGTCTCTCTCTAGCTACCCCATATACAACCCTAATTTTCATTATCATCATCAACAACAACACCAACAAGTTCATGATTTTCAAATAAGTAGCGGTGGGAGTAAGGATACTGATATCATGAAGGCCAAAATCATCTCCCACTCTCAATTCTCTAATCTCCTCCAAGCTTTCTTGGATTGCAAAAAGGTGGGAGCTCCGCCGGAGGTGGCGGCGGAACTTGGGTCGGTAGGGGAGGAGTTTGAGGAGCGGCGGCGGTGTTCAATGGCGGCGAGTGGGGGTTATAGTGATCCAGAACTTGATCAGTTCATGGAAGGTTACTATAGGATGTTGGTGAAGTATAGAGAGGAGCTGACAAAGCCTATTCAAGAAGCTGCTGATTTCATGCTGAGAATTGAATCTCAGCTCAATACTCTCTGTAATGGCTCCTTCCAAATCTTAGCTTCTGATGCAGCGACCGAAGAAAATCGCGACGGAATGGGATCATCGGAGGAGGAGCAAGAGAAGGGGGGCGGGGAAGCCGAAAGAGATGCAACGGAACAGATTGACCCACGAGCAGACGAGCGAGAGCTAAAGAATCACTTACTAAAGAAGTACAGTGGGTATCTGAGCACTCTAAAGCAAGAGCTTTCAAAGAAGAAGAAGAAAGGAAAGCTCCCAAAAGACGCAAGGCAGGAGCTGCTCAGATGGTGGGAAGTGCACAGCAAATGGCCATACCCATCGGAGGCAGAGAAGTTGGCGCTAGCGGAATCAACTGGGTTGGATCAGAAACAGATAAATAATTGGTTCATAAACCAGAGGAAAAGGCATTGGAAGCCGTCTGAGGATGTACAGTTGATGGGTATGGAGGGGTTTTACCATCCCAACACTGCTGCTGCTTTTTACTTCGATGGGCGTTACATGGGCGATGCCCATTACCGACAGACAATTTTGGGAGTGTACGAGCTTGGAGGCGGCTGCCATGGCGATGCGTCTAGGGCTGTATCTTCCATGCCGGAACCTTGCCGGTCATCGCCTTTCAGCGATGATGAGAGCCGTGATATTGATTGGGATAGCCTTGGATTTGGGCTGTTGCCAACAGATTACATGTATGTTATGAAATGCTCTGAAGATGAGAATTTCGAACGAGGTCAGCTGAGTCGTTATGGGAACATTGAGTTAAGCCCTGCTGCTGGGGTTCTAAATTATGGCCAGGGATTGTTTGAAGGTCTGAAAGCATATAGGAAAGAAGATGGAGGCCTTCTTCTCTTTCGTCCGCACGATAATGCTCTTCGTATGAGGACCGGTGCCGAACGAATGTGTATGCCGTCGCCCTCTGTCGAACAATTTGTTGATGCTGTGAAGCAAACTGCCATTGCTAACCGGCGTTGGGTCCCTCCGTCCGGGAAAGGATCATTATACCTGAGGCCCTTGCTCGTCGGAACTGGTCCCGTTCTCGGCTTGGCTCCGGCACCTGAATATACTTTTCTTGTTTATGCTTCCCCTGTTCGCAACTATTTCAAGGAAGATTCAGGAGCCTTGAACCTATACGTCGAGACCAAGTTCGATCGTGCATCTCGTGGTGGAACTGGAGGTGTGAAAACCATCTCAAATTATGCTCCAGCTTTAAAAGCTATCACCAGAGCCAAAAGTAGAGGCTTTTCTGATGTCTTATATCTTGATTCAGTGAATAAGAGAACTCTGGAGGAAGTTTCTTCTTGCAACATTTTTCTTGTCAAGGGAAATGTTATATCAACTCCTGCTACAAGTGGAACGATTCTTCCAGGAGTAACCCGGAAAAGCGTCATCGATATAGCCCGTAATCGCGGTTACGAGGTTGAGGAACGGGCTATCGACATGGATGAACTGTCCGACGCTCGTGAAGTTTTCTGCACGGGAACTGCTGTCGGTGTGGCCCCTGTTGGCAGCATCACTTGTCTGGATAAAAGGATTGAGTACCAAACAGGTGCTGGGACAACATGTCAGGAACTATACTCAACTCTTGTTGGGATTCAAACTGGAACCACCGAGGATAAGATTGGCTGGACTGTTGAGATCTCTTAA MTQKTSCPAPKSPETWPSPSPSSLSLSSYPIYNPNFHYHHQQQHQQVHDFQISSGGSKDTDIMKAKIISHSQFSNLLQAFLDCKKVGAPPEVAAELGSVGEEFEERRRCSMAASGGYSDPELDQFMEGYYRMLVKYREELTKPIQEAADFMLRIESQLNTLCNGSFQILASDAATEENRDGMGSSEEEQEKGGGEAERDATEQIDPRADERELKNHLLKKYSGYLSTLKQELSKKKKKGKLPKDARQELLRWWEVHSKWPYPSEAEKLALAESTGLDQKQINNWFINQRKRHWKPSEDVQLMGMEGFYHPNTAAAFYFDGRYMGDAHYRQTILGVYELGGGCHGDASRAVSSMPEPCRSSPFSDDESRDIDWDSLGFGLLPTDYMYVMKCSEDENFERGQLSRYGNIELSPAAGVLNYGQGLFEGLKAYRKEDGGLLLFRPHDNALRMRTGAERMCMPSPSVEQFVDAVKQTAIANRRWVPPSGKGSLYLRPLLVGTGPVLGLAPAPEYTFLVYASPVRNYFKEDSGALNLYVETKFDRASRGGTGGVKTISNYAPALKAITRAKSRGFSDVLYLDSVNKRTLEEVSSCNIFLVKGNVISTPATSGTILPGVTRKSVIDIARNRGYEVEERAIDMDELSDAREVFCTGTAVGVAPVGSITCLDKRIEYQTGAGTTCQELYSTLVGIQTGTTEDKIGWTVEIS Homology
BLAST of CmaCh12G006210 vs. ExPASy Swiss-Prot
Match: K7QKH1 (Branched-chain amino acid aminotransferase 1, mitochondrial OS=Humulus lupulus OX=3486 GN=BCAT1 PE=1 SV=1) HSP 1 Score: 505.0 bits (1299), Expect = 1.4e-141 Identity = 247/359 (68.80%), Postives = 295/359 (82.17%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy Swiss-Prot
Match: Q9M439 (Branched-chain-amino-acid aminotransferase 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BCAT2 PE=1 SV=1) HSP 1 Score: 497.3 bits (1279), Expect = 2.9e-139 Identity = 241/359 (67.13%), Postives = 297/359 (82.73%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy Swiss-Prot
Match: K7QHS5 (Branched-chain amino acid aminotransferase 2, chloroplastic OS=Humulus lupulus OX=3486 GN=BCAT2 PE=1 SV=1) HSP 1 Score: 480.3 bits (1235), Expect = 3.6e-134 Identity = 231/338 (68.34%), Postives = 275/338 (81.36%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy Swiss-Prot
Match: Q9FYA6 (Branched-chain-amino-acid aminotransferase 5, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BCAT5 PE=1 SV=1) HSP 1 Score: 474.2 bits (1219), Expect = 2.6e-132 Identity = 226/345 (65.51%), Postives = 280/345 (81.16%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy Swiss-Prot
Match: Q9M401 (Branched-chain-amino-acid aminotransferase 3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BCAT3 PE=1 SV=1) HSP 1 Score: 468.4 bits (1204), Expect = 1.4e-130 Identity = 234/365 (64.11%), Postives = 282/365 (77.26%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy TrEMBL
Match: A0A6J1KLR4 (Branched-chain-amino-acid aminotransferase OS=Cucurbita maxima OX=3661 GN=LOC111496411 PE=3 SV=1) HSP 1 Score: 738.4 bits (1905), Expect = 2.7e-209 Identity = 365/366 (99.73%), Postives = 366/366 (100.00%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy TrEMBL
Match: A0A6J1GJB2 (Branched-chain-amino-acid aminotransferase OS=Cucurbita moschata OX=3662 GN=LOC111454368 PE=3 SV=1) HSP 1 Score: 720.7 bits (1859), Expect = 5.9e-204 Identity = 357/366 (97.54%), Postives = 360/366 (98.36%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy TrEMBL
Match: A0A6J1KA39 (Branched-chain-amino-acid aminotransferase OS=Cucurbita maxima OX=3661 GN=LOC111492027 PE=3 SV=1) HSP 1 Score: 664.1 bits (1712), Expect = 6.6e-187 Identity = 316/366 (86.34%), Postives = 349/366 (95.36%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy TrEMBL
Match: A0A6J1HF84 (Branched-chain-amino-acid aminotransferase OS=Cucurbita moschata OX=3662 GN=LOC111462903 PE=3 SV=1) HSP 1 Score: 657.5 bits (1695), Expect = 6.2e-185 Identity = 313/365 (85.75%), Postives = 346/365 (94.79%), Query Frame = 0
BLAST of CmaCh12G006210 vs. ExPASy TrEMBL
Match: A0A6J1BRE0 (Branched-chain-amino-acid aminotransferase OS=Momordica charantia OX=3673 GN=LOC111005073 PE=3 SV=1) HSP 1 Score: 653.3 bits (1684), Expect = 1.2e-183 Identity = 316/366 (86.34%), Postives = 342/366 (93.44%), Query Frame = 0
BLAST of CmaCh12G006210 vs. NCBI nr
Match: XP_023002600.1 (branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita maxima] >XP_023002601.1 branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita maxima]) HSP 1 Score: 738.4 bits (1905), Expect = 5.7e-209 Identity = 365/366 (99.73%), Postives = 366/366 (100.00%), Query Frame = 0
BLAST of CmaCh12G006210 vs. NCBI nr
Match: KAG7020627.1 (Branched-chain amino acid aminotransferase 1, mitochondrial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 723.0 bits (1865), Expect = 2.5e-204 Identity = 358/366 (97.81%), Postives = 361/366 (98.63%), Query Frame = 0
BLAST of CmaCh12G006210 vs. NCBI nr
Match: KAG6585726.1 (Branched-chain amino acid aminotransferase 1, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 723.0 bits (1865), Expect = 2.5e-204 Identity = 358/366 (97.81%), Postives = 361/366 (98.63%), Query Frame = 0
BLAST of CmaCh12G006210 vs. NCBI nr
Match: XP_023521098.1 (branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita pepo subsp. pepo] >XP_023538038.1 branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 721.8 bits (1862), Expect = 5.5e-204 Identity = 357/366 (97.54%), Postives = 361/366 (98.63%), Query Frame = 0
BLAST of CmaCh12G006210 vs. NCBI nr
Match: XP_022951605.1 (branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita moschata] >XP_022951606.1 branched-chain amino acid aminotransferase 1, mitochondrial-like [Cucurbita moschata]) HSP 1 Score: 720.7 bits (1859), Expect = 1.2e-203 Identity = 357/366 (97.54%), Postives = 360/366 (98.36%), Query Frame = 0
BLAST of CmaCh12G006210 vs. TAIR 10
Match: AT1G10070.1 (branched-chain amino acid transaminase 2 ) HSP 1 Score: 497.3 bits (1279), Expect = 2.0e-140 Identity = 241/359 (67.13%), Postives = 297/359 (82.73%), Query Frame = 0
BLAST of CmaCh12G006210 vs. TAIR 10
Match: AT1G10070.2 (branched-chain amino acid transaminase 2 ) HSP 1 Score: 497.3 bits (1279), Expect = 2.0e-140 Identity = 241/359 (67.13%), Postives = 297/359 (82.73%), Query Frame = 0
BLAST of CmaCh12G006210 vs. TAIR 10
Match: AT5G65780.1 (branched-chain amino acid aminotransferase 5 / branched-chain amino acid transaminase 5 (BCAT5) ) HSP 1 Score: 474.2 bits (1219), Expect = 1.9e-133 Identity = 226/345 (65.51%), Postives = 280/345 (81.16%), Query Frame = 0
BLAST of CmaCh12G006210 vs. TAIR 10
Match: AT3G49680.1 (branched-chain aminotransferase 3 ) HSP 1 Score: 468.4 bits (1204), Expect = 1.0e-131 Identity = 234/365 (64.11%), Postives = 282/365 (77.26%), Query Frame = 0
BLAST of CmaCh12G006210 vs. TAIR 10
Match: AT3G49680.2 (branched-chain aminotransferase 3 ) HSP 1 Score: 468.4 bits (1204), Expect = 1.0e-131 Identity = 234/365 (64.11%), Postives = 282/365 (77.26%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucurbita maxima (Rimu) v1.1
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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