CmaCh01G008880 (gene) Cucurbita maxima (Rimu) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGAAATCATGGAGAAAAAAGATTGAAGCTGTTTTCTTGCCCTGTTTTCTTTCCCAAATCCCACATTCCTTCTCATCCTCTCAATCTTAAAATATTCCTCACCTTTCTCTCTCTCTCTCAATAAATTAACGCGAAGTTTGTATTCTTTCATTTTAGGCGCACTTTTTCCTCTACTTCTCTCTCTCACTCGCTTTCTCTTTCTGTTCTCTAGATTTAGAGCTTGTACTGTATTGAATTTCTTCTGGATTCTTGACCAACTATCTTATTTGTTTATCCGTTTGAACTATATACAAATTTGTACATGTCTGGAAGTGGTGGAACTGCGATTTTCAAATGGAAGAAATTGAGGGCAATAAGGCTGCTCTGCTTCTCCAATCACAGTCACCGTTTGACCCAGATTTGCCCCATTTCGACCCATCTCAATAATCTTCATGCTTCGAGTTATCGCCGCCGGGAATCGTTTATCGGCGTTCAGGAGCGTTATAAATGGGACAACGGCGGGTCTGGTTCTGATGATTTCCATTCACAGTCCTACAACACAAGCACCCCAATCCGTAAGATTCGGGCCGAGGCTAATTGTCCACGTTGCTCTAAGCATATGGATATTCTCTTTTCCAACCGCCATTTCCCAACCCTTAATCCCCCTTCTTCTTCTCTTCCATCTTCTTCCGATGCTCCTCCGAACCGAAAAGAAGCTTACGAAGCTGTTAATTTGTGTCCCAATTGCAAGACCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGTTTCATCGAGATCGGCAATCTGAATTCCAGACCGAAGAATTCCTTAGAAAGAAGAATTACTACCAAAGATGGTAAAGGTAATGCCATCGCCGGTTCTCCAGATGAAAATTATGTGAATAGTAGGTTGAGAGTCTCGTTTTTCGAAACTGCAAGATTGTATGGTGGAGAACCGCCTGAGAATTGGCCTCCTGGACCGCCTCCCGTTAATGGGCTGGCGGTGCATTCTCCTCCAGGTCCGCCATATGCGCCTGGTGTGAACTTCATTCGTGCTACAGGTCCTGGTGGAAGCACCTCGGGTTCGGGTGGAAATGGCGCTGGTGATGGGAAGAAGAGTGAGTGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCTAAAGAGATTTGCAAGGGCTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTTTGCATATGATCTAATGAACTTGTTATTAGTGTGCATGTTATCGGTGGTTGCATAAGAGCGGACATATTTAGTTTAAAGCCTCACAAGGGATGTTGCTTTCATAAACTAGCTATCTTGCTTGTCATATTTTAATTTCTTTTTACATATCTTCAGTTTCTTGGTCTTTGAAGTTTGACCACCATCTAGCACGTTGATAACCAGGAGTGAGTGAGTGTAAACTATGATATGCAGTGCTGAAGACATACTTTTTATCCAAAATTTAGGTGATTGTTGCAACGAGCGAGAAGTGATATCAGCGTGCTCTGATTTGTTGCATTATTAGTTTATGAGCTGTTGTAAAATTTCAAAGATAGCTTTCTTGATCTTTCACAGGTACTTTCTGTGGCAGTACATAACCATTACAAACGAATATATCATGCTTCCTTGAAAAAATGGTTGGTTTTTCCTTCAACTTTTGCATTAAGAATTATCTTGCCCTTCAGTCTGTGTCCATTAGTAACTAGCTGCTACTGTTGTTGTGGATTCATGTAGCGCACCAGGAATTGAATCAGAAACCCAAGATATGATAGATGATGATGATAACGTGGAGCTTGAAAAGAGCAATGTTCTCTTGATGGGTCCAACAGGCTCTGGTATGACCTCTTGCACTTATCAAGTTTCAATGTACTGACACTGGTTGTCATTGGCATGATATTAAGCATCCACAATGTGTCGGAGTTCTTTCTAATTTGCAAATCCTAAAATAGGGAAGACGTTACTTGCGAAGACTTTAGCTCGCTTTGTCAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGTGAATTTCTTTCTTCCCATTTTTTCCTCTGAATGATTTGTAGAAAACAATAAAAATCTGATGTTCATTTGTTCACCATGAATTTCTGGCATGTTCTAACCATCTTCTTATGCTCCTTTTCCTTTTTGAATAAGGTCGCCTATTTAGGACTTCCTCAACTTCATAAGTTCTTAATGGAGCCATTTCTTCATGAGAGCTAAACTCAAGCCTTGCCTCACTGATAAAAATTCATAGTTTTTTGGGGCTAGGAATGTTCTCTGCATTTTACAGCTTTGCTGATATGGTATTTTATTTTATTGACACAAGGGGTAGCTCAATTGCAGCACAGTTCTTGGGATGGTTGGGTAGTCCTTAGGTTGAAACTCAACAAGGTAAGACGGCAGTAACTGAATGGTAAAGAATGGGAGAGAGGTTTCTTGTCAGATGGAGAAACCCTAAGTCCTAACTTTGTGATATTATTTCTTTATTGTACCCATACTTGATGATTGGCTACTTTAAACCATATTTGAAGGTGGAAATTATGATTTTAAAATGTTAGGAAACTTCACATATTTATCTCAAAAATCGGACATTTCCAGTAGCTTTACTAGGTCTGGAGTATCGAGTTTTGCTTCCATAGAGAAGTCCTTGAGAGCCAGGATTGAGAAGTTTTTCCAATTTTTCTTTTATGAATGATAAATACTGCTTTGAACCCAAAGAACTACGTTAGTAACTAATGTGTGAAGGATATCTTACTCGAACTAGAATGAAAGTTGTGGACAATGAATATAGACCACTTGTTATGATATATGTATTTTCCTTCATGACCCGCATTGAGATTGGGTGGAAGATTATAATTCTCTATGCAATTAATTAGCCCTAATCCACAAAATGGAAGTAGACTTTGTGCTGAAATTTAATGAGAAAGAAAAGAGAACTGTATGGTTAAGGTATTGGGTACTGTGGCTCAAATGGCATCAATAAACCTTCCAGTATTAATCCACTTCTCTTCGAAGAGATATGTCTTGGTTGTTGCCTGAGGTGCCTAAAGCCAGATTGTTTTGGGGTTACATGGTTTGTTTGGAGGAAGAGAAGAAACCGATGTCTCTTTCAATATTTTCACCGTTTATCCCTAAAAAATTTCAATATATCCACTCGTTCTTAGAAAACAATGGAGACCGATCGTTTCTTTACGTCATATCCCTTGCTTGGAGGTTATGGGAATCCTTCGGAGTTCTTGAACTTTCTTCCTTCATTGGTAGAAGGTCTTCTATACCTTTACTTTTTCCTACCCTACGTGGAAACAATCATAAAATCCTTTGGGAGATGTATGTGCTGCTCTACTCTGGGGTAACTGGCAGATGAAAGCGTTATTTTAGGGATTTAATTCAAATATAATAGTTAAATTATTTTAAATTTATTTATTTTTCTTTTAAAATAAACAAATATAAATATGAAAATGTATAGCCATTGTAGGCTACTTCATATTTTCTTTTGAGAAACACTTATGCCCTAATGGGATTAGTAGTTGTCATTCTGCTAGGTTTCCAGGGTCTTTCTCCTCTAACTTAGTTGATAAAGAATTCTCTTAGGTTTCTCAATTCCTCTCACAACTGGGAGGCCTTTTCGTAACTTCCTTGGTGGGCCTTTGGCAATAATTCTTCTCTCCTCTAGGTTGTTAATCTGCTTATGCATATACATTCTATGAGGTTTTTTATTAGTATATTTCTGCACTTGCTCCTTTATCTGAAAAATTCAACTATGTGGTTAGGGAATGTGATGGTTATCTGATAGAACAGGGTTATGATTTACAAATATGAGTATGAAGATGTGGAAGTTTCTGGATTGAATTAAATTCTTTACTTATCGTTGGTGTAGGAATGATAAGACCTTGTATATTGGAATTTCTTCTCTTTATTTTCCTGGTCATATTTTCTATAATTAAAATTATCTTTTGAGCGTTGAATCCTTATATTTTTTAATGTCTTCTCTTGGTAGTTTAAACAGTCATCTTCTCTACAATAAAGCTTTCTTTAAAGGGTGCCTTACTATTTTGGTTGTTTTTTCTAATAAGGGAGGTGGAGATAATAAGAGTTGAAACAATCCTTTAATTTGGTTATAGATAACAAGAGACACATTGCTTTAATTTGCCTCATTTTTCATGTGCTCCAAGCCTCCAACACTAGTGTGAATAATTAATTTTTATTTGACAATACAATCTTAGTTTCTTCCCAGAATAATAAAGGTTTGTTATTGAATTACGAGAGGATGCTAATTTTGCAGGCTGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTTGCTGTAAGCTTCATGTTTTATTTCCTTTAAAAAGACTTCGTACTTAACAATTTAACTTGTAGCTAAGTGATTTTATCAAGTCGTGTATAAACTTTGACGCCATTCATCTCTGCCTTGAATAGTACATTTATTTGTTTTATATTTCTGCAAAATGGTTGGTTTTTCTTCCTTTCGTTTTATTATTTTATCGTTTGATTTTTCAAAAACATATATGTCGTTCAACTTTCCATAGAATGTAATCAATATGATGCTGGACAATTAACTGGGGAAAGAGTGCTAGTTTCTAAGAAGGGTGTTTATTAATTCATAAACTTTGAGATCAAGAAATTGCTCTACTCCTGTAAAGATGAAGGAATAAAAAATTGGCCAAACCTATTTGTAGTTAAATAGGAAACTACCAATAATTTTGATTTTGTGATCACCTTGCTATTAGGAAAATATTTGCTTCACGTTAAACAATCGTAAAGCAACATTGATAAGGGCACGAGATTGACCAAGTGTGTCAGTGCTCTTAATTTTAATGCTGGTTAAAACTCAATGCCAATATTTTCTTTTTCTATTTCACAAGATCGTATGCCTTTTCTCGCATACAGAAATAGATATGTGACATTTCTTTGCCTTTTTTTGTTAAACTGATTGAATGACTTGATCACAGTCTCAGTGCAAGAGATCTGGTCCTTACTTATCTATTCTCTTACCCCATTGAACTGCCAGTTTACTTTATAATCTTCCAGATCTTACCTTAACTGAACAGCTAAAATTGACGTACATTTTATATTTGATTTAGTCAGCAGAATTCAATGTACAAGCAGCTCAGCAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGTATTCATGATTCTTCGTTGTATCAATATCTTTTCTTTATAGTGATCTACTATATCAACGTAAACCTGGTTATTATTTCTCAGGCTGAGAGTTTAAATATTAGCAGAGATGTTTCTGGTGAGGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACCGTGAGTCAATAAAACTTTTGTCTTTTCCAATGCATTACTATTCCCAATTTAATGTGTTAAAGAAAAAATTGTTACGCCATATCGGTTGTGATTTCTTTGTTCTTTTTCGAGTACTTCATCTTTTCATATTGGCATTAGTTAACTATTTTATACACAAAATTTCGCTTTAGCTGGAGATGCTTGTTGTCACAATTGAACCCTATTGAGACTCACAATGCGACACTTACTCTCACCCTCACCCTCGAGTAAGTTGGCCAACTAAACCTTGGGTCATTGGTGGCTCAAACGGCCTATAATTTAACTTCTATCTTGTTCTTGAAAAGTGGTTTTAAAAAACGGAATTAGAGAAAGTTTTGGGCAACATTTTGAAAGCAATTTGAAAAAGCAAATGGTATAAGCTAGCAAGCTATAAGGAACAATAACATTGATAACTCGGCTGCGAAAATTTGTCGCCTAGTCATAACCCCCTATAGTACATTCTGATGCAAATTGTATAAATACCAACACGGGTGAGGAGTCATATGCTTACAAAATTACAAGGAAAATCAATAAATACACTAGAATGAAAGGTATACCATGAAAGTAAGTAAGAGGGTTTAGTATGGGTATGCAGCACGGGCAACATGCCCTAGACAAGCATGACTATGTCATCCTTCCCCTTTGTCAACCAACCCTACTCGAACTCAACAATGTGAATAGCAACTGACTTTAGGTCTTCAACGCATTCTCCACTGATCTCTGCGCCCCTTCCACTGTGCAAGGAACTCATGCATATCTCTTTTCAGTTGCCTATTCGTCTTGTCCTCTCATCTAGGATCTCTTCCACTTCTTTTTTGACAATATTATTCATAGTGACAGGAGGCTCTTGGGTTCCCTTTCTCATGACAATATTATTTGGACCTTGTGTTCCCTTTTCTCATGAGAGGGCTAGTGTAGTTTGCTTCCTAGGGCAGGCATAGACCAAAATTAGGAACGTCTACTTTTTATCTTTTTTTTTTTTTTTTTTTTTTGAAGAAAGTATATTTTCATTGATTGAATGAATATACGAAAAGGGAGGGAAAAAACCATCTTGGATTGATTACAAAAAACTTCTCCATCGAGCAATAATATTCAAAATACTATAATTGAATAGGTGGTTCCTTTCTCTCCTTAGGAACTCTGTAGAATCCAAAAAGATTAGGAATGCCTCTAGGGTGTTGTGGTAGAATTATAGATTTGTATGTACGGCGTGTTCTCTAAATTCCACCTTATATACAGTAATATCATAGTTTCACATCTGCTGAAAGTTAAATTTATATTTTCCAAATCCTTTTTTAATGGAAGTTTTCAACAAATTAATATAGCTTCTTGCTTAGCAACTCGGTAGGACTATGGAATATTGGAATTTGTTTATGTTTCCATTAAGACCCAAATTATCAAATAAGAAAATGAGATTCATGCATCTCTATTAGACTCATTGGAGTACCCAGCTCATGTGTTTGTCCATCTAAATGATTCATTGGTTATTTCTACCCTTTTAGTCTTGTTGATTCTAAGTTTTCTGTTCTGTTATCTGTGTGGTTAATTGTAATTAAATTTCCAAAAATGGAAAAAGGAATATGGATCATATTGTACTAGTTTTAGCTTTATATTTTTTCTTCATCCTAAATTCTGCGTATGAATTTTTGTCTAGATAGTAAATGTTCCTGAGAAGGGGGCAAGGAAGCATCCTCGGGGTGATAACATTCAGGTAATATATTCTCAAAAAAACACTCTCGAATGTTACTGTGTATTGTAGTGTGGGTGAATGCTCAAGTCCGTGATCAAACTTGAGTTGGTTTGGTTTCATAAAGGGATAGCCTCACCTTAAGTTTGTCAGATCCAAAAGCCTCTAGAAAGGGTATTGGGGCAAGGGATGCCTTGTGGTTTGCCATGGTTCAAATGTTGGGAGCCCGACCAAGCTAGGATATGTATATACCTCAAGGATTACAATGCACCTTTTTTTTTTTTCCTTCTTTTTACAGGAAACTACATAAACAAGATTTGCATCTATCACTTCTTTAAAGAAATTTGAAACTTTTATGTCTTCTCATCATAATTTGTTACTGCAAGGATTAGTTTTTTTACATATAATTTCATATATAGGATAGAAGACATTTCACTGATTGCTAGAGGTTTTGGGTTTGGGTTGGACAGCTAGGCTCCCTCTGCTGTATATTGTACTGTCGGACTGGAATTAATGTTACCTTTTACCATAAATAGTTTCCTTAGACGTCTTACCCCGTTTCTAACCTTTTAACCTTACGGTTCATGTAACCCTTTCTGGGGTTTGATGTTGGTTATTGCTTTGAGATATTATCTCTTAACCGAGTTGAAAAAATCTGCAGATAGATACAAAAGATATTTTGTTTATATGTGGCGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGGTAGCTTATTAAGTATTTTCCATTACTCTCATTTTATCTGTGTTCAAGGGTGCTTTCTCAATACTAAAATGGTTTTTGTTACTGATCAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACAAGTGCTGCAGTTACATCATCATTATTGGAAACGGTGACAAGAAAATCCCTTTGGCATTAAATTTCTGCATTGATTTATTTATTTCACATGTTTTGAATTTATAATCAATGCATATTACTTTATTTTTGAGATGATAAAATGGTCAGAATCCCTTTAAAGTTTATGTAAACGTTGTATTTGGTGCTTTTCAGGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCCGAGTTTATTGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTAACTGAAGACCAGCTTGTCCAGGTATCATAATAGTTTCAAGTTGTTCATCTAGACACTACATCGAAGAGATAATTTTATTAGAGATTGTAGCTACTTTCAATATCAATAAACTTGTTATTTAGTTAGCAATTACGTTCATTTGAAATTTTGTCTGAATTGTCCTCATTGCATCTGTATTGAGATAAGATACTCCTAAGCTTCCATTGCCTGTCTCAATCCGTTTTCCATGAGTTAGCGAACATCGTGTTGCATATTTTTCTTGTCATACATGGATGCCGATAGATAGTTCATCTTAATAATGAAATGTGCACGTTATGCATGCAGTTGATTCTCTTTGACGTTTTCTTTCTATAACCAAAATGAGTACGAAAGTTTCCTTGGACCTGCTGTTGTTAACAGGTCCTCACTGAACCGAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTAGCATGAATAAAGTGAGTATTTACTTTCTGATGTAGCCGATTTCTACACTGAACCCTCTCCCTTTGCATCTCTCCTGTCACTGTGGAGTAGACCCTCTTAGTTGAACCGTCATTAAATTCCCAGGTGAAACTGCATTACTCAGAGAAAGCGCTGAGACGGATTGCCCAGAAAGCAATGAACAAGAATACTGGTGCCAGAGGATTAAGAGCCATACTAGAAACCATTCTTACTGAAGCCATGTATGAGGTATTGAAGCTGAAATCATCAGTGTATAGCAATGGGGTCCTATAATACCCTTGGTTTAATCTCATTTTTATTCTCAAATGTTTAGATTCCAGATGTTAAGACTGGAGACGATAGAGTAGATGCTGTTGTTGTCGATGAAGAGTCCGTTGGCTCGGTAAATTTGGCTAGTTGTGGAGGGAAAATTCTTCGTGGGGATGGAGCATTGGAGCGCTACCTGGCTGAGACCAAGTTGAAAGAATCACAGGTACCGTTTCTTTCAGATATGTCTTTCATTTGAGGCAAATGATTTGCTCTAAAAAGAAGTCAAACACCCTTTTGAATTCTACCCTTCACCCTTCTAATTGTTCCTAAAATAATACCCTCTTGGCCCTTCTTATGAATCTAAGGGCTTACTCATGGTACAATTTGTTTGTAGGATAATTTGGAGGTGATTGAGTTACCGGAAGGTGAGACAGAGCTGTCATCAAGAGCCGTGAGTATATAGAAACAACGTCAAGATAACCACGATAGTTCTAAAATACATTTGTTTTCCCTTTTTTGGGTTTATGGTTTTTCTGGGGGGAAAAACAATAAAATACATTCATAACAATATATGGTGTAATTACCCCATTCTAACACCGCATACCTCAGGTTCAGTTCATTGTATTAGGGAAGATGAAGGAAAGAAGGCATTCATCATTTAGGCTATAACATCATCTATGTCTAAATAAATCTCTAAAATGCATTAAATTATAAAGGTAGTCTTTGAATTTTGATTTTGTCTATTTACTTTGATCTTTCAATTTGATTCACAGTCTATTAGTGTTACGCACACACAATTGCTTAATCATTGATGTGATACTGGAAAGTGAG AGAAATCATGGAGAAAAAAGATTGAAGCTGTTTTCTTGCCCTGTTTTCTTTCCCAAATCCCACATTCCTTCTCATCCTCTCAATCTTAAAATATTCCTCACCTTTCTCTCTCTCTCTCAATAAATTAACGCGAAGTTTGTATTCTTTCATTTTAGGCGCACTTTTTCCTCTACTTCTCTCTCTCACTCGCTTTCTCTTTCTGTTCTCTAGATTTAGAGCTTGTACTGTATTGAATTTCTTCTGGATTCTTGACCAACTATCTTATTTGTTTATCCGTTTGAACTATATACAAATTTGTACATGTCTGGAAGTGGTGGAACTGCGATTTTCAAATGGAAGAAATTGAGGGCAATAAGGCTGCTCTGCTTCTCCAATCACAGTCACCGTTTGACCCAGATTTGCCCCATTTCGACCCATCTCAATAATCTTCATGCTTCGAGTTATCGCCGCCGGGAATCGTTTATCGGCGTTCAGGAGCGTTATAAATGGGACAACGGCGGGTCTGGTTCTGATGATTTCCATTCACAGTCCTACAACACAAGCACCCCAATCCGTAAGATTCGGGCCGAGGCTAATTGTCCACGTTGCTCTAAGCATATGGATATTCTCTTTTCCAACCGCCATTTCCCAACCCTTAATCCCCCTTCTTCTTCTCTTCCATCTTCTTCCGATGCTCCTCCGAACCGAAAAGAAGCTTACGAAGCTGTTAATTTGTGTCCCAATTGCAAGACCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGTTTCATCGAGATCGGCAATCTGAATTCCAGACCGAAGAATTCCTTAGAAAGAAGAATTACTACCAAAGATGGTAAAGGTAATGCCATCGCCGGTTCTCCAGATGAAAATTATGTGAATAGTAGGTTGAGAGTCTCGTTTTTCGAAACTGCAAGATTGTATGGTGGAGAACCGCCTGAGAATTGGCCTCCTGGACCGCCTCCCGTTAATGGGCTGGCGGTGCATTCTCCTCCAGGTCCGCCATATGCGCCTGGTGTGAACTTCATTCGTGCTACAGGTCCTGGTGGAAGCACCTCGGGTTCGGGTGGAAATGGCGCTGGTGATGGGAAGAAGAGTGAGTGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCTAAAGAGATTTGCAAGGGCTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTACTTTCTGTGGCAGTACATAACCATTACAAACGAATATATCATGCTTCCTTGAAAAAATGCGCACCAGGAATTGAATCAGAAACCCAAGATATGATAGATGATGATGATAACGTGGAGCTTGAAAAGAGCAATGTTCTCTTGATGGGTCCAACAGGCTCTGGGAAGACGTTACTTGCGAAGACTTTAGCTCGCTTTGTCAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGCTGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTTGCTTCAGCAGAATTCAATGTACAAGCAGCTCAGCAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGCTGAGAGTTTAAATATTAGCAGAGATGTTTCTGGTGAGGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACCATAGTAAATGTTCCTGAGAAGGGGGCAAGGAAGCATCCTCGGGGTGATAACATTCAGATAGATACAAAAGATATTTTGTTTATATGTGGCGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACAAGTGCTGCAGTTACATCATCATTATTGGAAACGGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCCGAGTTTATTGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTAACTGAAGACCAGCTTGTCCAGGTCCTCACTGAACCGAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTAGCATGAATAAAGTGAAACTGCATTACTCAGAGAAAGCGCTGAGACGGATTGCCCAGAAAGCAATGAACAAGAATACTGGTGCCAGAGGATTAAGAGCCATACTAGAAACCATTCTTACTGAAGCCATGTATGAGATTCCAGATGTTAAGACTGGAGACGATAGAGTAGATGCTGTTGTTGTCGATGAAGAGTCCGTTGGCTCGGTAAATTTGGCTAGTTGTGGAGGGAAAATTCTTCGTGGGGATGGAGCATTGGAGCGCTACCTGGCTGAGACCAAGTTGAAAGAATCACAGGATAATTTGGAGGTGATTGAGTTACCGGAAGGTGAGACAGAGCTGTCATCAAGAGCCGTGAGTATATAGAAACAACGTCAAGATAACCACGATAGTTCTAAAATACATTTGTTTTCCCTTTTTTGGGTTTATGGTTTTTCTGGGGGGAAAAACAATAAAATACATTCATAACAATATATGGTGTAATTACCCCATTCTAACACCGCATACCTCAGGTTCAGTTCATTGTATTAGGGAAGATGAAGGAAAGAAGGCATTCATCATTTAGGCTATAACATCATCTATGTCTAAATAAATCTCTAAAATGCATTAAATTATAAAGGTAGTCTTTGAATTTTGATTTTGTCTATTTACTTTGATCTTTCAATTTGATTCACAGTCTATTAGTGTTACGCACACACAATTGCTTAATCATTGATGTGATACTGGAAAGTGAG ATGTCTGGAAGTGGTGGAACTGCGATTTTCAAATGGAAGAAATTGAGGGCAATAAGGCTGCTCTGCTTCTCCAATCACAGTCACCGTTTGACCCAGATTTGCCCCATTTCGACCCATCTCAATAATCTTCATGCTTCGAGTTATCGCCGCCGGGAATCGTTTATCGGCGTTCAGGAGCGTTATAAATGGGACAACGGCGGGTCTGGTTCTGATGATTTCCATTCACAGTCCTACAACACAAGCACCCCAATCCGTAAGATTCGGGCCGAGGCTAATTGTCCACGTTGCTCTAAGCATATGGATATTCTCTTTTCCAACCGCCATTTCCCAACCCTTAATCCCCCTTCTTCTTCTCTTCCATCTTCTTCCGATGCTCCTCCGAACCGAAAAGAAGCTTACGAAGCTGTTAATTTGTGTCCCAATTGCAAGACCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGTTTCATCGAGATCGGCAATCTGAATTCCAGACCGAAGAATTCCTTAGAAAGAAGAATTACTACCAAAGATGGTAAAGGTAATGCCATCGCCGGTTCTCCAGATGAAAATTATGTGAATAGTAGGTTGAGAGTCTCGTTTTTCGAAACTGCAAGATTGTATGGTGGAGAACCGCCTGAGAATTGGCCTCCTGGACCGCCTCCCGTTAATGGGCTGGCGGTGCATTCTCCTCCAGGTCCGCCATATGCGCCTGGTGTGAACTTCATTCGTGCTACAGGTCCTGGTGGAAGCACCTCGGGTTCGGGTGGAAATGGCGCTGGTGATGGGAAGAAGAGTGAGTGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCTAAAGAGATTTGCAAGGGCTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTACTTTCTGTGGCAGTACATAACCATTACAAACGAATATATCATGCTTCCTTGAAAAAATGCGCACCAGGAATTGAATCAGAAACCCAAGATATGATAGATGATGATGATAACGTGGAGCTTGAAAAGAGCAATGTTCTCTTGATGGGTCCAACAGGCTCTGGGAAGACGTTACTTGCGAAGACTTTAGCTCGCTTTGTCAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGCTGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTTGCTTCAGCAGAATTCAATGTACAAGCAGCTCAGCAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGCTGAGAGTTTAAATATTAGCAGAGATGTTTCTGGTGAGGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACCATAGTAAATGTTCCTGAGAAGGGGGCAAGGAAGCATCCTCGGGGTGATAACATTCAGATAGATACAAAAGATATTTTGTTTATATGTGGCGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACAAGTGCTGCAGTTACATCATCATTATTGGAAACGGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCCGAGTTTATTGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTAACTGAAGACCAGCTTGTCCAGGTCCTCACTGAACCGAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTAGCATGAATAAAGTGAAACTGCATTACTCAGAGAAAGCGCTGAGACGGATTGCCCAGAAAGCAATGAACAAGAATACTGGTGCCAGAGGATTAAGAGCCATACTAGAAACCATTCTTACTGAAGCCATGTATGAGATTCCAGATGTTAAGACTGGAGACGATAGAGTAGATGCTGTTGTTGTCGATGAAGAGTCCGTTGGCTCGGTAAATTTGGCTAGTTGTGGAGGGAAAATTCTTCGTGGGGATGGAGCATTGGAGCGCTACCTGGCTGAGACCAAGTTGAAAGAATCACAGGATAATTTGGAGGTGATTGAGTTACCGGAAGGTGAGACAGAGCTGTCATCAAGAGCCGTGAGTATATAG MSGSGGTAIFKWKKLRAIRLLCFSNHSHRLTQICPISTHLNNLHASSYRRRESFIGVQERYKWDNGGSGSDDFHSQSYNTSTPIRKIRAEANCPRCSKHMDILFSNRHFPTLNPPSSSLPSSSDAPPNRKEAYEAVNLCPNCKTAYYFRPYKIAPLQGSFIEIGNLNSRPKNSLERRITTKDGKGNAIAGSPDENYVNSRLRVSFFETARLYGGEPPENWPPGPPPVNGLAVHSPPGPPYAPGVNFIRATGPGGSTSGSGGNGAGDGKKSEWGGSNLGKDLPTPKEICKGLDKFVIGQEKAKKVLSVAVHNHYKRIYHASLKKCAPGIESETQDMIDDDDNVELEKSNVLLMGPTGSGKTLLAKTLARFVNVPFVIADATTLTQAGYVGEDVESILYKLLASAEFNVQAAQQGMIYIDEVDKITKKAESLNISRDVSGEGVQQALLKMLEGTIVNVPEKGARKHPRGDNIQIDTKDILFICGGAFVDLEKTISDRRQDSSIGFGAPVRANMRMGGVTSAAVTSSLLETVESSDLIAYGLIPEFIGRFPILVSLSALTEDQLVQVLTEPKNALGKQYKKLFSMNKVKLHYSEKALRRIAQKAMNKNTGARGLRAILETILTEAMYEIPDVKTGDDRVDAVVVDEESVGSVNLASCGGKILRGDGALERYLAETKLKESQDNLEVIELPEGETELSSRAVSI Homology
BLAST of CmaCh01G008880 vs. ExPASy Swiss-Prot
Match: Q66GN9 (CLP protease regulatory subunit CLPX3, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX3 PE=2 SV=1) HSP 1 Score: 750.7 bits (1937), Expect = 1.4e-215 Identity = 422/655 (64.43%), Postives = 486/655 (74.20%), Query Frame = 0
BLAST of CmaCh01G008880 vs. ExPASy Swiss-Prot
Match: Q9FK07 (CLP protease regulatory subunit CLPX1, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX1 PE=2 SV=1) HSP 1 Score: 658.3 bits (1697), Expect = 9.7e-188 Identity = 354/488 (72.54%), Postives = 400/488 (81.97%), Query Frame = 0
BLAST of CmaCh01G008880 vs. ExPASy Swiss-Prot
Match: F4K7F6 (CLP protease regulatory subunit CLPX2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX2 PE=3 SV=1) HSP 1 Score: 597.4 bits (1539), Expect = 2.0e-169 Identity = 354/668 (52.99%), Postives = 437/668 (65.42%), Query Frame = 0
BLAST of CmaCh01G008880 vs. ExPASy Swiss-Prot
Match: A6LT28 (ATP-dependent Clp protease ATP-binding subunit ClpX OS=Clostridium beijerinckii (strain ATCC 51743 / NCIMB 8052) OX=290402 GN=clpX PE=3 SV=1) HSP 1 Score: 392.5 bits (1007), Expect = 1.0e-107 Identity = 204/368 (55.43%), Postives = 278/368 (75.54%), Query Frame = 0
BLAST of CmaCh01G008880 vs. ExPASy Swiss-Prot
Match: Q11J59 (ATP-dependent Clp protease ATP-binding subunit ClpX OS=Chelativorans sp. (strain BNC1) OX=266779 GN=clpX PE=3 SV=1) HSP 1 Score: 389.4 bits (999), Expect = 8.4e-107 Identity = 206/368 (55.98%), Postives = 272/368 (73.91%), Query Frame = 0
BLAST of CmaCh01G008880 vs. TAIR 10
Match: AT1G33360.1 (ATP-dependent Clp protease ) HSP 1 Score: 750.7 bits (1937), Expect = 1.0e-216 Identity = 422/655 (64.43%), Postives = 486/655 (74.20%), Query Frame = 0
BLAST of CmaCh01G008880 vs. TAIR 10
Match: AT5G53350.1 (CLP protease regulatory subunit X ) HSP 1 Score: 658.3 bits (1697), Expect = 6.9e-189 Identity = 354/488 (72.54%), Postives = 400/488 (81.97%), Query Frame = 0
BLAST of CmaCh01G008880 vs. TAIR 10
Match: AT5G49840.1 (ATP-dependent Clp protease ) HSP 1 Score: 597.4 bits (1539), Expect = 1.5e-170 Identity = 354/668 (52.99%), Postives = 437/668 (65.42%), Query Frame = 0
BLAST of CmaCh01G008880 vs. TAIR 10
Match: AT5G58290.1 (regulatory particle triple-A ATPase 3 ) HSP 1 Score: 46.2 bits (108), Expect = 1.2e-04 Identity = 43/149 (28.86%), Postives = 62/149 (41.61%), Query Frame = 0
BLAST of CmaCh01G008880 vs. TAIR 10
Match: AT5G64580.1 (AAA-type ATPase family protein ) HSP 1 Score: 46.2 bits (108), Expect = 1.2e-04 Identity = 38/103 (36.89%), Postives = 55/103 (53.40%), 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.
|