Csor.00g210220 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGTCTGGCAGTGGTGGAAGTGCGATCTTGAAATGGAAGAAGTTGCAGGCGATAAGGCTGCTCTGTTTCTCAAATCCGAATCACCGCACGACCCAGATTTGCCCCATTTCGACCCATCTCAATTATCTTCATGTTTCGAGTTATCGCCGGCGGGAATCGTTTATCGGCGTTCAGGAGCGGTACAAATGGGACAACGGCGGGTCTGGTTCCGATGATTTCAATTCACAGTCCAATAACACAGGTACTCCAATCCGTAAGATTCGGGCGGAGGCGAATTGCCCTCGTTGCTCCAAGCATATGGATATCATCTTCTCTAGCCGCCATTTCCCAACCCTTAATCCTCCTTCTGGTGATGCTCCTCCCAAGGCTGCTGGAGGAAGAGAAGCTTACGAGGCTGTTAATTTGTGCCCCAATTGCAAATCCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGCTTCATTGAGATCGGTAATCTGAATTCCAAACCGAAGACGGCAGTAAAAAGGATCACTAGCAAAGATGGTAAAGGTAATGCCATCATCGGTTCTTCAGATGAAAATTATGCGAATGGTAGGCTGAGAGTCTCGTTACTCGAAACTATGAGATCGTCTGGTGGAGAACCGCCTGAAAATTGGCCTCCTGGACCGCCCCCCGTCAATGGGTTGGCGGTGCATTCTCCTCCGGGACCGCCATTTGTGCCTGGCGTGAACTTCGTTCGTGCTACAGGTCCTGGTGGAAACACCTCCGGTTCTGGTGGAAATGGCGCTGGTGATGGTAAGAAGAGTGAGTGGGGTGGATCGAATTTGGGGAAGGATCTACCAACTCCAAAAGAGATTTGCAAGGGGTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTCTGCATACTCTTTTTCAGTGATCTAATAGAATTATCATTTGTATGCATTTCATCGTGGCTTTTCTGCATAAAAATGGACATATATTCAGCTATCATGCAGTTAATTATGCCCAGCTTGTCATGTTTTAGTTTCTTTCTAAATTTCTCCAATTACTTGGTCTTTGAAGTTTGATCACGTTCTAGCACATCGATAACTAGGAGCGAACGAATGTAAGCTATAATATTCGGTGCTGAAGAACATAGTTTTGCAAATTTAGGTGATTGTTGTTGCAAGGGGAAGTTGTGTCATTATTTTGTGAACCATTGTTAAATTTTGAATTCAGCATTCTTTATCTTTCTCAGGTACTCTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTTAGTTTTTTTCGTTTTGATGCAAATATTTCCCTTCCGTTCATGTCCATGAGTTAGCTGCTATTGGTGTTGTGGATTTGTGTTGCAGGTCGGGAACTGAATCAGGTACCCAAGATCGGATAGATGATGATGATAATGTCGAGTTAGAAAAGAGCAATGTTCTTTTGATGGGCCCAACAGGCTCTGGTATGAACTTATACGCTTATCGAGTTCCAATGTATTGTCTCTGATTGTTATTGGCATAATTTGCGAATTGTAATATAGGGAAGACACTCCTTGCAAAGACTTTGGCTCGATTTGTGAACGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGTGAGTTTCTTTCTTTCTTTGTTCCCTTTCGGAACGGTCTACAGGAAACCGTAAAATATGAAGGTGTTCATATGTTTACTGTGAGCTTCTGGCACATCCTAGTCATCATCTTGTGCCCTTTCTTCCTTTGTGAATAATTTCATGTTCACCCATTTATGATTTGCTAAACTTAATAACTTCTGTATGAAGTCATGAAGTTAAGGTTTGCCATATTGATAAAAATTCATAGTTTCTTCGGACTAGAAAGCATACCGCCTTTTACGGTTTTGCTTATACGTTCTTTTTTTAATTATTTGAAACAAAGGGTAGCTCAGTTGCAGCACAATTCTTGGGATGGTTGGGTATGTCTTAGGTTGATTCTCAACGAGATAAGAGGCTAGCAACTAAGCGGTAAAGAACGGGAGAGGGCTTTTATGTCAGATGAAGATATCTTAACTTCATGATATTAGTTCTTTCTTGTACCACTACTCAATTATGAGGTGCTTTAAGCCATGTGATTTAGAAGTGTTAAGAAACTTTCCTTTTCTATCTCAAAATACTGACCAAAGTAGCTTTTCTCCGTTCGGAGTATCAAGCTTCGATTCCCTCGAGACTTCCTTCAGAGCCAGGATTGAAATGTTATGGAATGTTTCTTTTATGGAAGATAAAATACTGCTTTGAATCCAAAGAAGAAATAAATTAGGAACTAATGTGTGAAAGATGTCTGACTAGAACTAGAAGGAAAGTTTTGGACAATGGATATAGACCACACATTATTGTATACATATTTTCTTTTGCAATCCCCACTGGGATCAGGTGGAAGATTACAATTATTTATAGAGTTAGGTAGCCCTAACCCACAAAGTGGAAGTAGATAGTGCGGAAAATTGATAAGAGATCAAAGAGAATTGTATGGTTAATGTGTTAGGTGGCTCCAATGACATCATTAAACTTTTCAGTATTAATCTGCTTCTTTTCACAATTTATAGGCTTCTAATTCCATTTGACGTGCGCTGGTCTTTTTGTGAAGAGATATGTCTTGATTGTTGCATAAGGTGCCTAAAAGTGAAACAAGAAGACTATGATATCTCACGTTGGTTGGGGAGGAGAACGAAACACCCTTTATAAGGGTGTGAAAACCTCTCTAGTAGACGCATTTAAAAACCTTGAGGGGAAGCCCGAAAGGGAAAACCCAAAGAGGACAATACTTACCTATTAGCGGTGGGCTTGGGCCATTACAAATGGTATCAAAGCCAAACACCGGGCGATGTGCCAACGAGGAGGCTGTTCCCTGAAGGGAGTAGATACGAGGCGGTGTGACAGCAAGGACGCTGGGCCCCGAAGGGGGTGGTTTTAGTGGGGTCCCACATTGATTGGAGAAAGGAACGAGTGCCGAGGACGCTGGGCCATGAAGGGGGGTGGATTGTGATATCCCACATCGGTTGGGGAGGAGAACGGAACACCCTTTATAAGGGTGTGGAAACCTTTCTCTAGCAGACGCATTTTAAAAACCTTGAGGGCAAGCCCGAAAGGGAAAGCCCAAAGAGGACAATATTTGCTAGCAGTGGGTGGGCCGTTACAATATGCCTGGAAAAACCAACCATGTGATTAGACACTCTGTTGGCTATTTGTTGAATGAGAAGATGGTCTTCAAAGATGAGGATGAAAATGTGGAAGCTGCATGGGATAGAGTTAATTGCTTTACTTATTATTGGTTTTGGAGTGTTAAGTCCTTGTATTTTGGAATTTCTTCTTCTTGTAGTCTACATAGTCGACTTTTCGAAGATAAAGTTTTTCAGTTTTCATTAACGGGTGCCTTATCCTTTTGTTTGTTTCCTCTCAAAATGTAGAAGCAATCCATTAATTTGATAGTAGAGAACCAGAATACACATTGCTGTAATTTTCTTCATTTTTCCATGTGTTCCAAGCCTCCAACACTAGTTCATACAATATTAGCTTCTTCTCAAGATAATAAAATTTGTTATTGAATTAAGAGAGGATGCTTTTACTTTTCGCAGGCTGGTTATGTTGGAGAAGACGTCGAATCGATTTTGTACAAGCTACTTGCTGTAAGTTTCATGTTTAATTTCCTTAACTGTGTTTAGAAATTGCCCTGTAGCTTGCTGATATGGTGTATTAGTGACTTATAATTCAGCTCAACAAACTGAGAAAATGTTAATACCCAAATGACACCTGAAACTACCACTAATTTGGATTTTGTCACCAGCTAGCTGAAACATAAGCAAATATTTGCTTGGCTTAACTCAACTCGTCCCTTTATGATTGATGAAGTTCTTCCATGCTCTTGATTTGAATGCTGGTTAAAACTCGTGTCATTCTGTTAAAGTTGTTCTTCCACAAGATCATATGCCTTTTCTGGTATACAGAAATACATCTATGTCGTTTCGTCACCATTTTGTTAAACTGATTGGATGCTCGATGACTGTTTTAGTGCAAGACATCTGGTTCTTGCTAATTAATCTATGAGCTGCTGATATTGATGCACATTTTATATTGATTTAGGCAGCAGAATTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGTTTTCACGATTCTTCATTTAATCAATTGCTTCCTTTATCTAGATCTACTATATCAACATAAACCCACTGGTGTTCTTCTTCTTAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAAGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACTGTGAGTTGATCAAACTTTATCACTTCCAGTGCATTACTTTTTCCAATTTAACGATGCTATTTCAGGTTGTACATTATTTTGTTCTTTTTTTGTGTACATCTTTTACTGAAAGGGGCATTATTGATTCTAGGATGAGTGAGACGTGTGTTATATCCCTAAGAAAGATAAGACTAACACAGTTAAAGGCTTTACACCCATTAGCCTGTACGTGTTTATATAAGATCATAGATTGAGGAAGGTCCTTCTTAGTACCGTCTCTAAATCTCGAGGCTTTTGTATAGCTAGAAGACAAATCTTAGACCAAGTGTTGATAGCTAATGAAGCCATTGAAGATCATAGGAAGCAAATAGAAGGGGTTATCTTCAAAGTTGAATTAGAGAAAGCTTTTGACCATCTGGATTGAACCTTCTAAGATAATGTTGGGAGGAGGAGTGTGATGTCCCACATTGGTTGGGGAGGAGAACAAATCACCCTTTATAAAGGTGTGGAAACCTTCCCCTAGCAGATGCGTTTTAAAGCCTTGAGGGGAAGCCCGAAAGGGAAAGTCCAAAGAGGACAATATCTGCTAGTGGTGGATCTGGGTCGTTACAAATGGTATCAGAGCCAGACACCGAACGATGTGCCAGCCTTCTCGCTGTTCCTCGAAGGGGGGTAGACACGAGGCAGTGTGCTAGTAAGGACGCTGGCCCCAAAGGGGGGTGGATTTGGTGGTGGTCCCACATCGATTAGAGAAAGGAATGAGTGCTAGTGAGGACGCTGGGCTCCGAAGGGGGTGGATTGTGATGTCCCACATTGGTTGGGGAGGAGAACAAATCACCCTTTATTGGGGGCGGCGGAGGGTTTTAAGGTGGGAAAGGAGTCAATTCATTTGACTCCATCTTTAGTTTGCTAATGACATTCTTTTCTTCTATTCAGGCCGTGATAGCTCTTTCGTTAATCTTAATGTACTCTTGTCGTTCTTTGAAGCAATTTTTAGCCTTAAGACTAACCGGGGTATAAGTTCCATCATTGGTCCCTATTTTTGCTCTGCCAAATCAAGTTCTTGGGCTTCTTAACCTGCATGTGGGGTGACTCAATTTTCATCCACTTATCTTGGGCTGCCATTGGGAGGTAATCTGCTGAGTCACATTTACATGGTCGGGCGAACACTATGTATTAGGTCCAACGCCACTCTTCCTTTTTAGTACAACTGCAATGGTGCATTCTCTGTAGACAACCGGAGGAGGACCTTCACCACCTTCTATGGGATTGTCATTGTGCACCATCAATTTGGAGAAGATGGTCGAGGGCTTTTAACATGTGGCTTGGAGGTGAGATTGCTTTTTATGATTGAGGAGGTCCTCGTGTTCGATTTTCAGTGAGAAAGGCAATGTGTTGTGGCAAACTCGTTTTTTGTAGAGAAATATTAGGATTTTTTGAGAGGTGGATAGATTGAGTAAGGAGGTACAGGAGGGGCTCACTTTCTTTTTAGTGTTGTTTTTGCACGCCCTTGTTTTCTTTCGTTTTATCTGAATAACAGCTCGGTTTCTTACCAAAGCAAAAAAAAAAAAAAAAAAAAAAAACGTCCTTTTCTTTTTAGAATTTATCCTTCATGAGTAGATTAAAGCCATTGCAGTCACCATTGATTAATCTTATTATCTATTTAATCTTCCATAGAACACATGGGTCGAGTATATCTTGTTTTTGTGTATTACCATTACATTTTCCGTATAGAGTCGATTTTGCTATTGTGTGGGGAGAGGCTTGTGGTAGGCTTGTTTCTGCTATATTGTGGAGAGTTTGGATCAAGAGAAATAGTAGAATTTTTAGAGGGGGAGAGATCTTTATTAGAAGAGGTGTGTGACATTGTGAGGTTTTATGCATCTCTTTGAGTTTTTGTTGGCCGGAATCTATCTCGAATCAGGATCTTTTTATCAGCTTGATATGATTCTCTTGGCTTGAAGTTCTTTCAATGGAGCGGGGACCGGCTCCTTGCCCCGTAAACCTCTTTATTGAGGACTACGTTTGTGATTATTTTGTATGCCACTGTACATTTCTATGAAAGCTTGGTTCTTAAGAAATTTCCAAGAGTTTGTAAAGAACGAATTTCTTAACAAGGGGACGAACAAAACGTATGTAACTTTGGTTCCAAAGAAGAGTGAGGTGTTGAAAGTGAGCGACTTTAGACCTATGAGTCTTGTTACTTCCCTTTGTAAAACCGCGGTCATAGTTCTTGGCGAGCGACTAAGAAATGGCTTGTCCTATACCATGGATGATACACAAATGCCTTTTCTGGAGAGGAGGCAAATTCTTGATGCAATCTTGCTTCCTGCTGAATCTATTGATGATCTGACTTGGCATTGCAAGAAAAGAGATCTGCTCTTTAAGTTGGGGAGGTTCGGTACCCGAAAGGGCGGTTCCTCCTTTGAACAGTTGCTCACAGCAGCATTAATACTCATGATAAGATGCAAAGAAGATATCCTAACCTTAATATCTCCCCTACATATGCAAAAGAGAGTGGAACTACTTTGGTAACTTATTCTGTCTAAGTTGGTGACACTGTTTGGCGTTAGATCAGTGGCTGGTGGAGTCTTTGAGCTGCTGGGGATTGAAAGACAAAGTTCGTATTATGATCAAACACTGCTAAGGCTATTTTGTGTCTTATTTGGGACGAAAGAAGTGCTAGAATTTTTCAGATAAATACAATTCTTTTGATTGTTTTTGTGACCTTATACAGTTCACGGCCTCAGGAGTAGCCATTTAGATTGGGAGTTTTTTTTTGTAAGTTCGTAGGGAAGGGGCGTCTTGTTCTTCGGCCCGCTAAGCTGGCCATTGGTTGGAGAGGAGAACAAACCACCATTTATAAGGGTGTGGAAACCTTCCCCTAGCAAACGCGTTTTAAAGCCTTGAGGGGAAGCCCAAAGAGGACAATATCTGCTAGCGGTGGGCCTGGGTCGTTACAAATGGTATCAGAGCTAAACACTGGACGATGTGCCAGCCTTCTCACTGTTCTCCGAAGGGGGGTAGACATGAGGCGGTGTGCCAGTAAGGACGCTGGGCCCTAAAGGGGGTGGATTTAGGGGCGGTCCCACATCGATTGGAGGAAGGAAAGAGTGCCAGCGAGGACGCTGGGCCCCGAAGGGGGATGGATTATGATGTCCCACATTGGTTGGGGAGGAGAGCAAACCACCATTTATAAGGGTGTGGAAACCTTCCCCTAGCGGACGCGTTTTAAAGCCTTGAGGGGAAGCCCGAAAGGGAAAGCCCAAAGAGGACAATATCTGCTATCGGTGGGCCTAGGTCGTTACCGCTTGTCTTCTTGATGTTCTGGAATGAAATATTTTCTGGTTCTTATAAAAATCTTGATCTTTTGAAATGAAAGGTTTTCGAAAGATAAAAAAGTGCCTTTTAAGAACCGTTGCCTTTTGCACTTTCTCTTTTATACATCGAACGGTTTAAAACTACGTGGTTTCTCCATCGAAGGTATTGAAGATCGAGAGCGATTCCTTCTAATGTGGGTTCTTAAGGAAAGAATCCAATCTCTAAGCCCTGTCCCAAGTCCAATACTAAACACCATAAGAATTAAGAAACACGTTGCATGATTTGTTTATGTTGTCATTTAAAGATCCAAATTTTGTATTATTTTTAACTTATATTTCCGCATCCTAAATTCTGGGTATGACTTGTTGTCAGATAGTAAATGTTCCTGAGAAGGGGACGAGAAAACATCCTCGCGGTGATAACGTTCAGGTAATATATACAAAAACATACTCTCGAGTTTCTTTTATTCACCTGTATGCAAGTGTCCATTGTTTTTCTTTGTCAGATATTTCTGAAGAAATTTGTTTATCTTTGCTTAGAGAGAGCTTTACACGTATTACATGTACACATGTACACACATAAATAGAATAAACAGGGAATAACTGAGACCCGAGGTAAGAAGCAAACATCCACGTAGTAGGAGCACCGGTTGGGGTCACTCAAGACTTCATGTGCTGCAAGCTGCGAGCATAAGCTCAAGGCTCGAAATGATGGGTAAAAAGAGAGTTACTATGTAGGTGTGAGATTCCACATCGGTTGGAAAGGGGAACGAAACATTCTTTATAAGAGTGTGGAAACTTTTCTTTAGTAGACGCGTTTTAAAACCTTACGGGGAAGCCCGAAAGGAAAAGCCCAATTGAGACATGAGGTAAGAAGCAAAGATCCACGTAGGAGCACGAGTTGGGGTCATTCAAGACTTAATGTGCCTGCAAGCTGCGAGCATAAGCTCAAGGCTGTGAGATCCCACGTCTGTTGGAAAGGAGAACGAAGCATTCTTTATAAGGGTGTGGAAACCTCTCCCTAACAGACTCGTTTTAAAACTTTGCGGGGAAGTCTGAAAGGGAAAGCCCAAAGAATTGAGACCTGAGGTAAGAAGCAAAGATCCACGTAGGAGCACAGGTTTGGGGTCACTCCAAGACTTCATGTGCTGCAAGCTGCGAGCATAAGCTCAAGGCTGGAAATGATGGGTAAAGAGAGAATTACTATGTAGGTGTGAGATCCCACGTCTGTTGGAGAGGGAAACGAAGCATTTTTTATAAGGGTGTGGAAACCTCTCTCTAGCAGGTGCGTTTTAAAACCTTTCGGGGAAGCCTGAAAGGGAAAGCCCAAAGTATTGAGACTTGAGGTAAGAAGCAAAGATCCACGTAGGAGCACAAGTTTGGGGTCATTCAAGAATTCATGGTGCAAGCTGCGAGCATAAGCTCAAGGCTGGAAACGATGGGTAAAGAGAGAGTTATTATGTAGGTGTGAGATCCCACGTCTGTTGAAGAGGGAAACGAAGCATTCTTTATAAAGTTGTGGAAACCTCTCCCTAGCAGACGCGTTTTAAAACCTTACGAGAAAGCCCGAAAGGGAAAGCCCAAAAAATTGAGACCTGAGGTAAGAAGCAAAGATCCACGTAGGAGGGTTTGGGGTCACTCAAGACTTCATGTGCTGCAAGCTGCGAGCATAAGCTCAAGGCTGGAAATGATGGGTAAAGAGAGAATTACTATGTAGGTGTGACATCCCACGTCTGTTGGAGAGGGAAACGAAGCATTCTGTATAAGGGTGTGAAAACCTCTCTCTAGCAGATGCATTTTAAAATCTTGAGAGAAAGCCCGAAAGGAAAAGCCGAAGGAGGACAACATCTGCTAGCGGTAGGCTTGGGCCGTTCCAGAAGGGTAGGGTAGTGTGGGTGAATGTTTAAGTCAATCATCAAACCTGCAGAACTTCAACTTAAGTATGTCAGGTCCAAGAGCCCTTAGAAATCAAGGTAGCTTATGTATACCTCGTTGATAACAATGTACCTTTTGTGCTGTGAAACTACATACACAGGTCGTGAATCTATCACTTGTAGACATTTAAATTTATATCTCTTAATTATAATCTGAGAACCATCCCTTGTAGACATTCACACCCTGCTGCATTTAAGTTTCATAGCGACTTCTTGTTGTGCATACAATCCCTTTATGGGGTTTGATATTGGCTATTGCTTTGAAAATGTGCAGATAGACACAAAAGATATTTTGTTCATATGTGGTGGAGCGTTCATAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATCGGTTTTGGCGCGCCTGTTCGTGCTAACATGAGAATGGGTGGGGTTACGAGCGCTGCTGTTACATCTTCGTTGCTGGAAACGGTGAGAACGAAAGCTCTTTGGATTTGTTGGCATAGTCAATGAATATTACTTTATTTTTGGGATGATACATCCCCTCGACATAATGCCCGAGTCCCTTTAAAGTTCGTCTAAATGTTCTATTTCGTGCTTTCCAGGTTGAGAGTTCTGATCTTATAGCATATGGTCTGATACCAGAGTTTATAGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTGACTGAAGAACAGCTTGTCCAGGTATCCATCATTATTTCTTTATTGTTCATCTAGAACACCACAACTGGAAGAAAGAACTTCGATAGAGATCTAATATTTAGTTAACAATTTTGTTTATATGAAATATTGTCTGAATTGTCCTATAAGTTAGTCACATCAGTTGGGGAGGAGAACGAAACACCCTTATAAGGGTGTGGAAACCTCTTCCTAGCAGACGCGTTTTAAGAACTTTGAGGGAAAGCCCAAAGAGGACAATATCTGCTAGCGGTGGGCTTGGGCAGGTACTAATGGTATCAGAGCTAGACACCGGGCGATGTGCCAGTGAGGAGGCTGAGCCTCGAAGGGAGTAGACACGAGGCAATGTGTCAGCCAAGACATTGGGCCCAGAAGGAGGGTGGATTTGGTGGGAGTCCCACATCGATTGGAGAAAGGAACGAGTGTCAGCGAGAACGCTGGGCCTCGAAGGGGATGGATTGTGAGGTCCCACATCGGTTGGAGACGAGAATGAAACACCCTTTATAAGGGTGTAGAAAGCTCTCCCTAGCAGACACATTTTAAAAACTTTGAGGGGAACCCCGAAAGAGAAAGCTCAAAGAGGACAATATCTGCTAGCGGTGGGCTTGGGCCATTACAAATGGTATCAGAGCCAGACACCAAACGATGTGCCAGCGAGGAGGTTGAGCCCCGAAAGGGGTAGACATGAGGCGGTGTGCTAGCAAGGACGCTGGGCCCCGAAGGGGGGTGGATTGTGAGATCCCACATCGGTTGGGGAGGAGAACGAAACACCCTTTATAAGGGTGTGGAAACCTCTCCCTAGCATATACGTTTTAAAAACCTTGAGGGAAAGCTCAAAAGGGAAAGCCCAAAGAGGACAATATCTACTAGCGGTGTGGGCTTGGGCCGCTACATAAAGCCTCCGTTGCTTAGACCTCGAATGAGCTCGAAACCCAAAATATTATCCGAGTTGATTCTCTTCGCCATTTTCTTTCTACAACCCAAATGAGATCGAAACTTTACTTGGACCTGCTGTTGTTAACAGGTCCTCACTGAACCGAAAAACGCCCTCGGTAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTAAGTATTTTACTTTCTCATGCAACGATTTCTACGTTTTCCTACACGAAACTCTCTCCTATCATTGTGGAGTAGAGACCGTCTTAGCCGAACCACCATTCGATTTCCAGGTGAAGCTGCATTACACAGAGAAAGCACTGAGACTGATTGCCCAGAAATCAATGGCTAAGAACACCGGTGCCAGAGGCTTGAGAGCCATACTGGAAACCGTTCTTGCAGAAGCCATGTATGAGGTATTGATGCCAAAATCATCCATCTGAATATAGCCCATTACAACATTAGCTCATTTCTATTCTCAAATGGTTTAGATCCCCGACGTCAAGACTGGAAATGAAAGAGTAGACGCCGTTGTCGTCGACGAAGAATCCGTTGGCTCACTAAATTCGAGAGGCTGCGGAGGCAAAATTCTTCGTGGTGATGGAGCGTTGGAGCGGTATCTAGCTGAAACCAAGTCGAAGGAATCAGAGGTACCATTTCTTTCAAATATGGCCTAACATTTTTTATATGAACCACGAATAAGGAATTTCCATATCTCAAGGTTCAAATACAAGGACGAGAGCTAAGAAACTACAACAAACCTCGTGAGCTCATCAAAGGAAATTCTAGAAGACGTTGGAGACCTCCCTTATAAGAAAGAGATGCATTAAATGCACTTTAAGTTGCATTCAATGAACTCAGCTGAATTTATGGAATTAGTCCTAATAATCACATTTCTTGAAGCTCAACTTTGCACAACATATAAAGGAGGTCTCTAATGTCTTCTAGAATTTCATTTGATGAGCTCACCATAGCTTGAATATAAGTGTACAAGGTTTGTTGAAACTTCTTGGCTCTCGTCCTTGTAATTGGACCTTGAGGTATGGAAATTCTTTGTTCGTGGTTCATATCAGTTTTATTCTTTGTTGCAACTAAACAATATGTTTATAGGATAATATGGAGGAAGGCGAGGCAGAGATGTCATCGAGAGCTGTGAGTCTATAG ATGTCTGGCAGTGGTGGAAGTGCGATCTTGAAATGGAAGAAGTTGCAGGCGATAAGGCTGCTCTGTTTCTCAAATCCGAATCACCGCACGACCCAGATTTGCCCCATTTCGACCCATCTCAATTATCTTCATGTTTCGAGTTATCGCCGGCGGGAATCGTTTATCGGCGTTCAGGAGCGGTACAAATGGGACAACGGCGGGTCTGGTTCCGATGATTTCAATTCACAGTCCAATAACACAGGTACTCCAATCCGTAAGATTCGGGCGGAGGCGAATTGCCCTCGTTGCTCCAAGCATATGGATATCATCTTCTCTAGCCGCCATTTCCCAACCCTTAATCCTCCTTCTGGTGATGCTCCTCCCAAGGCTGCTGGAGGAAGAGAAGCTTACGAGGCTGTTAATTTGTGCCCCAATTGCAAATCCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGCTTCATTGAGATCGGTAATCTGAATTCCAAACCGAAGACGGCAGTAAAAAGGATCACTAGCAAAGATGGTAAAGGTAATGCCATCATCGGTTCTTCAGATGAAAATTATGCGAATGGTAGGCTGAGAGTCTCGTTACTCGAAACTATGAGATCGTCTGGTGGAGAACCGCCTGAAAATTGGCCTCCTGGACCGCCCCCCGTCAATGGGTTGGCGGTGCATTCTCCTCCGGGACCGCCATTTGTGCCTGGCGTGAACTTCGTTCGTGCTACAGGTCCTGGTGGAAACACCTCCGGTTCTGGTGGAAATGGCGCTGGTGATGGTAAGAAGAGTGAGTGGGGTGGATCGAATTTGGGGAAGGATCTACCAACTCCAAAAGAGATTTGCAAGGGGTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTACTCTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTCGGGAACTGAATCAGGTACCCAAGATCGGATAGATGATGATGATAATGTCGAGTTAGAAAAGAGCAATGTTCTTTTGATGGGCCCAACAGGCTCTGGGAAGACACTCCTTGCAAAGACTTTGGCTCGATTTGTGAACGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGCTGGTTATGTTGGAGAAGACGTCGAATCGATTTTGTACAAGCTACTTGCTGCAGCAGAATTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAAGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACTATAGTAAATGTTCCTGAGAAGGGGACGAGAAAACATCCTCGCGGTGATAACGTTCAGATAGACACAAAAGATATTTTGTTCATATGTGGTGGAGCGTTCATAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATCGGTTTTGGCGCGCCTGTTCGTGCTAACATGAGAATGGGTGGGGTTACGAGCGCTGCTGTTACATCTTCGTTGCTGGAAACGGTTGAGAGTTCTGATCTTATAGCATATGGTCTGATACCAGAGTTTATAGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTGACTGAAGAACAGCTTGTCCAGGTCCTCACTGAACCGAAAAACGCCCTCGGTAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTGAAGCTGCATTACACAGAGAAAGCACTGAGACTGATTGCCCAGAAATCAATGGCTAAGAACACCGGTGCCAGAGGCTTGAGAGCCATACTGGAAACCGTTCTTGCAGAAGCCATGTATGAGATCCCCGACGTCAAGACTGGAAATGAAAGAGTAGACGCCGTTGTCGTCGACGAAGAATCCGTTGGCTCACTAAATTCGAGAGGCTGCGGAGGCAAAATTCTTCGTGGTGATGGAGCGTTGGAGCGGTATCTAGCTGAAACCAAGTCGAAGGAATCAGAGGATAATATGGAGGAAGGCGAGGCAGAGATGTCATCGAGAGCTGTGAGTCTATAG ATGTCTGGCAGTGGTGGAAGTGCGATCTTGAAATGGAAGAAGTTGCAGGCGATAAGGCTGCTCTGTTTCTCAAATCCGAATCACCGCACGACCCAGATTTGCCCCATTTCGACCCATCTCAATTATCTTCATGTTTCGAGTTATCGCCGGCGGGAATCGTTTATCGGCGTTCAGGAGCGGTACAAATGGGACAACGGCGGGTCTGGTTCCGATGATTTCAATTCACAGTCCAATAACACAGGTACTCCAATCCGTAAGATTCGGGCGGAGGCGAATTGCCCTCGTTGCTCCAAGCATATGGATATCATCTTCTCTAGCCGCCATTTCCCAACCCTTAATCCTCCTTCTGGTGATGCTCCTCCCAAGGCTGCTGGAGGAAGAGAAGCTTACGAGGCTGTTAATTTGTGCCCCAATTGCAAATCCGCTTACTATTTCCGCCCTTACAAGATCGCTCCTCTACAGGGCAGCTTCATTGAGATCGGTAATCTGAATTCCAAACCGAAGACGGCAGTAAAAAGGATCACTAGCAAAGATGGTAAAGGTAATGCCATCATCGGTTCTTCAGATGAAAATTATGCGAATGGTAGGCTGAGAGTCTCGTTACTCGAAACTATGAGATCGTCTGGTGGAGAACCGCCTGAAAATTGGCCTCCTGGACCGCCCCCCGTCAATGGGTTGGCGGTGCATTCTCCTCCGGGACCGCCATTTGTGCCTGGCGTGAACTTCGTTCGTGCTACAGGTCCTGGTGGAAACACCTCCGGTTCTGGTGGAAATGGCGCTGGTGATGGTAAGAAGAGTGAGTGGGGTGGATCGAATTTGGGGAAGGATCTACCAACTCCAAAAGAGATTTGCAAGGGGTTGGACAAATTTGTTATTGGCCAAGAAAAAGCCAAGAAGGTACTCTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTCGGGAACTGAATCAGGTACCCAAGATCGGATAGATGATGATGATAATGTCGAGTTAGAAAAGAGCAATGTTCTTTTGATGGGCCCAACAGGCTCTGGGAAGACACTCCTTGCAAAGACTTTGGCTCGATTTGTGAACGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAGGCTGGTTATGTTGGAGAAGACGTCGAATCGATTTTGTACAAGCTACTTGCTGCAGCAGAATTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTTGACAAGATAACAAAGAAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAAGGCGTTCAACAGGCATTATTGAAGATGCTAGAAGGAACTATAGTAAATGTTCCTGAGAAGGGGACGAGAAAACATCCTCGCGGTGATAACGTTCAGATAGACACAAAAGATATTTTGTTCATATGTGGTGGAGCGTTCATAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATCGGTTTTGGCGCGCCTGTTCGTGCTAACATGAGAATGGGTGGGGTTACGAGCGCTGCTGTTACATCTTCGTTGCTGGAAACGGTTGAGAGTTCTGATCTTATAGCATATGGTCTGATACCAGAGTTTATAGGGCGTTTTCCAATTCTTGTTAGCTTATCAGCCTTGACTGAAGAACAGCTTGTCCAGGTCCTCACTGAACCGAAAAACGCCCTCGGTAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTGAAGCTGCATTACACAGAGAAAGCACTGAGACTGATTGCCCAGAAATCAATGGCTAAGAACACCGGTGCCAGAGGCTTGAGAGCCATACTGGAAACCGTTCTTGCAGAAGCCATGTATGAGATCCCCGACGTCAAGACTGGAAATGAAAGAGTAGACGCCGTTGTCGTCGACGAAGAATCCGTTGGCTCACTAAATTCGAGAGGCTGCGGAGGCAAAATTCTTCGTGGTGATGGAGCGTTGGAGCGGTATCTAGCTGAAACCAAGTCGAAGGAATCAGAGGATAATATGGAGGAAGGCGAGGCAGAGATGTCATCGAGAGCTGTGAGTCTATAG MSGSGGSAILKWKKLQAIRLLCFSNPNHRTTQICPISTHLNYLHVSSYRRRESFIGVQERYKWDNGGSGSDDFNSQSNNTGTPIRKIRAEANCPRCSKHMDIIFSSRHFPTLNPPSGDAPPKAAGGREAYEAVNLCPNCKSAYYFRPYKIAPLQGSFIEIGNLNSKPKTAVKRITSKDGKGNAIIGSSDENYANGRLRVSLLETMRSSGGEPPENWPPGPPPVNGLAVHSPPGPPFVPGVNFVRATGPGGNTSGSGGNGAGDGKKSEWGGSNLGKDLPTPKEICKGLDKFVIGQEKAKKVLSVAVHNHYKRIYHASLQKGSGTESGTQDRIDDDDNVELEKSNVLLMGPTGSGKTLLAKTLARFVNVPFVIADATTLTQAGYVGEDVESILYKLLAAAEFNVQAAQQGMIYIDEVDKITKKAESLNISRDVSGEGVQQALLKMLEGTIVNVPEKGTRKHPRGDNVQIDTKDILFICGGAFIDLEKTISDRRQDSSIGFGAPVRANMRMGGVTSAAVTSSLLETVESSDLIAYGLIPEFIGRFPILVSLSALTEEQLVQVLTEPKNALGKQYKKLFGMNNVKLHYTEKALRLIAQKSMAKNTGARGLRAILETVLAEAMYEIPDVKTGNERVDAVVVDEESVGSLNSRGCGGKILRGDGALERYLAETKSKESEDNMEEGEAEMSSRAVSL Homology
BLAST of Csor.00g210220 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: 759.6 bits (1960), Expect = 3.1e-218 Identity = 426/669 (63.68%), Postives = 499/669 (74.59%), Query Frame = 0
BLAST of Csor.00g210220 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: 664.1 bits (1712), Expect = 1.8e-189 Identity = 370/555 (66.67%), Postives = 426/555 (76.76%), Query Frame = 0
BLAST of Csor.00g210220 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: 605.5 bits (1560), Expect = 7.4e-172 Identity = 347/631 (54.99%), Postives = 432/631 (68.46%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy Swiss-Prot
Match: Q47FB7 (ATP-dependent Clp protease ATP-binding subunit ClpX OS=Dechloromonas aromatica (strain RCB) OX=159087 GN=clpX PE=3 SV=1) HSP 1 Score: 389.8 bits (1000), Expect = 6.4e-107 Identity = 203/366 (55.46%), Postives = 264/366 (72.13%), Query Frame = 0
BLAST of Csor.00g210220 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 = 8.3e-107 Identity = 206/367 (56.13%), Postives = 273/367 (74.39%), Query Frame = 0
BLAST of Csor.00g210220 vs. NCBI nr
Match: XP_022930175.1 (CLP protease regulatory subunit CLPX3, mitochondrial-like [Cucurbita moschata] >KAG6592282.1 CLP protease regulatory subunit CLPX3, mitochondrial, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1353 bits (3502), Expect = 0.0 Identity = 690/690 (100.00%), Postives = 690/690 (100.00%), Query Frame = 0
BLAST of Csor.00g210220 vs. NCBI nr
Match: KAG7025120.1 (CLP protease regulatory subunit CLPX3, mitochondrial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1350 bits (3494), Expect = 0.0 Identity = 689/690 (99.86%), Postives = 689/690 (99.86%), Query Frame = 0
BLAST of Csor.00g210220 vs. NCBI nr
Match: XP_022974047.1 (CLP protease regulatory subunit CLPX3, mitochondrial-like [Cucurbita maxima]) HSP 1 Score: 1337 bits (3460), Expect = 0.0 Identity = 681/690 (98.70%), Postives = 687/690 (99.57%), Query Frame = 0
BLAST of Csor.00g210220 vs. NCBI nr
Match: XP_023535465.1 (CLP protease regulatory subunit CLPX1, mitochondrial-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1333 bits (3450), Expect = 0.0 Identity = 685/698 (98.14%), Postives = 688/698 (98.57%), Query Frame = 0
BLAST of Csor.00g210220 vs. NCBI nr
Match: XP_038890013.1 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X1 [Benincasa hispida]) HSP 1 Score: 1232 bits (3187), Expect = 0.0 Identity = 633/700 (90.43%), Postives = 662/700 (94.57%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy TrEMBL
Match: A0A6J1EW90 (CLP protease regulatory subunit CLPX3, mitochondrial-like OS=Cucurbita moschata OX=3662 GN=LOC111436679 PE=4 SV=1) HSP 1 Score: 1353 bits (3502), Expect = 0.0 Identity = 690/690 (100.00%), Postives = 690/690 (100.00%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy TrEMBL
Match: A0A6J1I974 (CLP protease regulatory subunit CLPX3, mitochondrial-like OS=Cucurbita maxima OX=3661 GN=LOC111472676 PE=4 SV=1) HSP 1 Score: 1337 bits (3460), Expect = 0.0 Identity = 681/690 (98.70%), Postives = 687/690 (99.57%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy TrEMBL
Match: A0A5A7TCK2 (ATP-dependent Clp protease ATP-binding subunit clpX-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold64G001600 PE=4 SV=1) HSP 1 Score: 1222 bits (3162), Expect = 0.0 Identity = 625/699 (89.41%), Postives = 657/699 (93.99%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy TrEMBL
Match: A0A5D3BMP6 (ATP-dependent Clp protease ATP-binding subunit clpX-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold169G001550 PE=4 SV=1) HSP 1 Score: 1217 bits (3150), Expect = 0.0 Identity = 625/700 (89.29%), Postives = 657/700 (93.86%), Query Frame = 0
BLAST of Csor.00g210220 vs. ExPASy TrEMBL
Match: A0A6J1DP37 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X2 OS=Momordica charantia OX=3673 GN=LOC111022984 PE=4 SV=1) HSP 1 Score: 1207 bits (3122), Expect = 0.0 Identity = 622/705 (88.23%), Postives = 658/705 (93.33%), Query Frame = 0
BLAST of Csor.00g210220 vs. TAIR 10
Match: AT1G33360.1 (ATP-dependent Clp protease ) HSP 1 Score: 759.6 bits (1960), Expect = 2.2e-219 Identity = 426/669 (63.68%), Postives = 499/669 (74.59%), Query Frame = 0
BLAST of Csor.00g210220 vs. TAIR 10
Match: AT5G53350.1 (CLP protease regulatory subunit X ) HSP 1 Score: 664.1 bits (1712), Expect = 1.2e-190 Identity = 370/555 (66.67%), Postives = 426/555 (76.76%), Query Frame = 0
BLAST of Csor.00g210220 vs. TAIR 10
Match: AT5G49840.1 (ATP-dependent Clp protease ) HSP 1 Score: 605.5 bits (1560), Expect = 5.2e-173 Identity = 347/631 (54.99%), Postives = 432/631 (68.46%), Query Frame = 0
BLAST of Csor.00g210220 vs. TAIR 10
Match: AT5G58290.1 (regulatory particle triple-A ATPase 3 ) HSP 1 Score: 45.8 bits (107), Expect = 1.6e-04 Identity = 43/149 (28.86%), Postives = 62/149 (41.61%), Query Frame = 0
BLAST of Csor.00g210220 vs. TAIR 10
Match: AT1G09100.1 (26S proteasome AAA-ATPase subunit RPT5B ) HSP 1 Score: 45.4 bits (106), Expect = 2.1e-04 Identity = 33/103 (32.04%), Postives = 48/103 (46.60%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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