Csor.00g260190 (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.ATGGGGTGTTTGGTTAGCCGACAGGCGTCTTCTAGAAGTGTAGAACCCCCTGTAGATAACGGGAAGAGGAATCAAATTACTGAGCCTGGTGTCCAAGTCGAGCATGTACAGGAAAAAGAACTAGAGCATGTTAATGCTAATGTAGAGGAGCATGCAAATGTGAGCAAGGAGGAGGAGCAGAAGGCTGATGGTGGTCAGGATCGGCCACGAGCAGAGCGGCGGAGGTCGAGGAAGGTTCCAAGGCCTGTTAACCTGCCAAACCATTCCCAGGGAGAGCAAGTTGCTGCTGGATGGCCATCTTGGCTCACAGCAGTTTGTGGGGAGGCTCTCAATGGTTGGATTCCAAGGAAGGCTGATACGTTTGAAAAGATTGATAAGGTGGGCAATCGACTAAGTAATAAGATCCTCCTGTAATGCATTCTTGCTTTCGTTCTTTGTTTTTTTTTTTATACACTCCATTTACAGGCTTCTAACATGATTCTTTTGGTTGTTAGATTGGACAAGGAACGTATAGCAATGTGTATAAGGCTAAAGATATACTTACAGGTAAAATTGTTGCACTGAAGAAGGTTCGATTTGACAATCTGGAACCGGAAAGTGTGAAATTTATGGCTAGAGAGATTCTAATCCTTCGGAGATTAAATCATAATAACGTTGTGAAATTGGAGGGGTTGGTCACATCGCGGATGTCTTGTAGTTTATACTTGGTGTTTGAGTACATGGAACATGATTTAGCTGGTCTTGCTGCAAATCCATCAATCAAGTTTACGGAATCTCAGGTTAGCTTATTGTTTTTTTGTTTCTTTAAGATTTCATATCCAAACTGAACATCGGTACAGTTGTAATAATTCTTTTGTTGAAAATATGCTTATTTATAGGTTAAATGTTTCATGCAACAACTGCTATCTGGACTGGAACACTGTCACAATCGTCATGTGCTTCACCGTGATATTAAAGGATCTAATCTTCTCATTGATAGTGGGGGAGTGCTTAAGATTGCTGATTTTGGATTGGCTTCTTTCTTTGATCCTAATCACAAGCACCCAATGACTAGTCGAGTTGTTACCTTATGGTATCGACCTCCTGAACTTCTTCTTGGAGCAACTGATTATGGAGTAGGTGTAGACCTCTGGAGTGCTGGGTGTATACTGGCTGAGTTATTAGCTGGGAGGCCTATTATGCCTGGCCGTACAGAGGTAATTGCTTTCTTTCCTATTTACCTTCATAGCTTAGATTCCATTTTCATCATGTGAAATGAGGAATAAGTTTGTTTCACTATCTCTATTGCACTTAATTGCTCTCAATGACTTCAGGACATCTGGCGTTCATATGGATAATTTTTTAGTGCCAATGTTGTTCGAGTTCTGATCTTCACTTTCAAACATTTCTTGTCTAAGTACTATTTTTCTTGGACGTATGAAGTATTTCATTATGTTCTTGTTTGATTTGGTAATAAGTTTCCAGGGATACTTTGGTTAGAGAACGGGCACTTGAAGTAACTTTTGCAAGAAAATCATGCTCATGAACTGTATTTTATTATTTTTTTTTTAATATGAGATAACTTCATTGATGTTTGAAATTTACAAGTGGGATGTGTTATCCATTATGCTTATAAAAGATCTTCTCAATTTACAATGAAGGAGGTATGACGGTAGGAAGCAATTTACACCAAGATATGGCGTAGTAAACAACATTTTCTAAGAGTCTATTATAAGTCTATGTCTTCTTCGTGGATACTCTTTGATTTCTTTCTTTCCATCGATTCCAAAAGGAAGCCATAATAAGATTTGTCTATAGCAGGGGTTTTTGCATTCTTGGAGGGATGGTACATTAAAGCCATGTCTAATAACTCTTTTACTTCCCTAGGAAAAGCGAGATGCCATTTGAAAATATTAAGAATCTTTATCTAGAAATTATGAGCATATGTGCACTGCATAAATAAGTGGTTTTGTGATTCGTTGTCTTTCTTGCATAATGGCCACCAACTTGGAAATAGAGTCATGTAGGGCATTTGTTTTTTTTTTTGGAGGTAGATTTTCACTTGTGCTAATGACTTTATGCACTATTTTCTATAGGAAAAAATTCACCTTTTTAGGGTGTCCTTTCCATACTGTCTTTGCTAGTATGGGGTTATTGCTTCTACCGTTTCCCCCCTCCCCTTCATCAAATATTTTGTTAAGAAGACCCTATCAATGCTATGATGCCATTTCAATGAGTCTGCCTTTTTTAGACAATATAATTGGGGCAAGGTCAAGGCTTAATTTTGCCCGTTCCGTAGCCTTGTTATCCTTTAAGTTCCTACCAAGCTTCAAGTCCTATAATTTGTTGACATCTTTCCATGTTTCTTTGGTTGTGACCATTTTGCAATGAGAGAGTCTATACAAAAGTGGATCCTGCAAGACTAGTGTGTGGTTGTCAATACAAGGGTTAGTTCAGAAAGATATGCTTCCTCCATCATGCACCCTATGGTGAATTTGGTTGGTAATGAGCTTTTGATGCTTTTTTATATACTTCCATGGCCTCTTTGCAGAAGGTGGAGGGGATCGATTTGTACATGATGTGGGAGTATATTTCGTCTTAATAAGATTTCTCCACAAGGTGTTGCCTTTGTGATAATATCTCGATATCCATTTGGCTATGAGAGTTCTATTTTTCTCCTTTATTGAATGCAAACCGAGTCCACCCTTGTTTACCAAGAGATTTATGGTATCCCATCGGATAATGTGTGGGTCATCTTTCCACAAATAGTTTCGGAATAATCTTTCTATTTTGTAGCATTTTGAATAGAAACATTTAGCAAGTGGGACGGTTGGAACATGTGACTTGTATTAGGGTGAGCTTTCCGCATTTAGAAGTGTAACATGATGACCATGTTGATAACCGTCTTTCTATTTTTATCAATAATGGTCTTGGGTGAGCTTTCCGCATTTGGAAGTGTAACATGATGACCATGTCGATAACCTTCCTTCGATTTTTATCAATAATGGTCTCCCGGGAGGAGAAGGATGTGTGGTTTCCATTTAAGGGCAGTCCTTAGTACATATTTGGCCATTCACCCCTTTTACAACCAAATTTGTTGGGAAGTCTTCGATAACCTCTATACTAATATTAGTGCCCATAATCATTTTTTTTTTTTTTTTTTTTGAAGGGTGATGTTTTGTCCTAAGAATCTTTTTTAAGGTTTTCACCCTCTCAAACATGTTTTTTTTTTTTGGAGGACAATTCAGTGAAGAGGATTGTATCATCTGTAAATTGAAGGTGGTTGATACTTGAGCTTTCGTTACTCACCTAAAAGCCATTTATCTGCCCTTGGTTTTTTTTCTTGGTGAGTAAGTGACTAAGACAATCCATTACCATTATGAAAAGAAAAGGAGATATTGAATCCTCTTGTCGAAGACCTCGTGAAGCATAGATCTTCCCTCTTGGCTTCCATGGATGATTATGAAGAAGTTTGTGGATGAAATGCAACATTTTACCCACACCCACCATTTTGAGCCAAAGTCATTTGCTACAAGAAGTTTTTCGAGGAAAGTCCAATCGACCTTGTCAAAAGGTATTTTCAAGTCAAGTTTGATGACTAAACCTTTTTATTTCTTCCTTTTCCTTTTGTCTATAAGTTCATTTGCTGTTAGGGATGCATCAAGGATCTGATGTCCCTTTATAAAAGTTGTTTGCTGCTCAATGATCGTGAAAGGGAGAACCCTTTTAAGACGTTCTAATAGTACCCTTGCTATAACTTTGTATAGTCCCGTCGTAAGACTTATGGGGTGGAAGTTAGTAACAGTGTGGACATTCATTTTCTTTGAGATCAAACATATGTATGATTCATTTATGTTACTATGTTAATTCCATTTTGAAAAAAAAATCTTGGGACACTCTCTTGATATCGGCTCTAAGAATGTTTCAACATCTTTTAAAGAATTATGAGGTAAAACCATCCGATCTGGGATTTTTGTTGGAGCTCAGTAAGTTTATCGCCTTCCCTACCTCTTCTTTGGTGAAAACAGCCTTGAGGGAGGCCGCTTGTTGTTGATCAATTGGGCTCCAACCAAGATTGGGGTCAATGAGGATATCATCATTTGCTTATAAAAGCGTGTAAAAGGACATAAATTCTGAGACAATTTCATTAAAGCTTTTGCCTTGTGTCAATATAATTTCCTTGATGGTGCTTTTTGGTTTCTTTGAGGCCATGATACGATGGAAAAATTTAGAGTTTATGTCGCCCTCTTCCTGCCATTGATTTTTTACAGTCTCCAAGATTGCTCTCCTTTGCTACCAATGAGATAAGTTTTGCTTTCATGAGCTTTTTATGTGTGGGTTGAACTAATTGACAGATCCAATTTCCTCCACCTGATTAGAGAGCAATTTCTGTAAGGAGATTGATTCTTTTTGTAGAAATACAACCGAAAATCTCCTTGTTTCATTTCTTGAATACTGCTTCTTGCCTTTTGAGTTTGAATCAGTTGAGTTTGTTGATGAGAAGATTATATCTGAGTTTGAGACAGTTTCCTCCATTTGATCAAGGAGAGCAAAACTGCATTAATGTATAAGGTCTTGAGTGCGTGCATTGCCATATCCCATGTAGATCATCATGAGAAAGTATGACTTAATATCAGGAAAAATAGGAACATTACGCCTTTGATAGGTCATTTTATCTCCAGTTTTCGTTTCAGTGATAGAACTCCTCTTTGATTGTGTACCTTGCCTAATGGTGCATGATACCATTACCATCCTGGCTTTGCTTTAGTGATAGGGTCCCTTAGATATGGTACATGAGCCTTTCAGTGAGATATAGGTGCTTTTTTGGTCACATTGTTGAATGTGGTTGACATAGACATGTTCCATTGATACCTTTGGTTTGCTAGATTCTTCTGTACAATCATTTTACCATTGAATGAATGTTTCGAATCTAAAACAGTTACCACCTCTTTTTATTGTAATCAAACATATGAACGTAGTCAGGAACATTGCATGGTTTAAACTTTTACATAGGTTGTTCTCGTCTTTTCTGAACTTAAATCTTTCTAGCATTCTCTGCCTGCTGTGTTTGCTGATTATGTTTTTGCTCACCCAGGTGGAGCAACTACACAAGATATACAAGCTTTGTGGCTCCCCTTCAGATGAATATTGGAAAAGAGCAAAGCTTCCAAATGCAACATTATTTAAGCCCAGAGAACCTTATAAAAGATGTATAAAGGAGACATTTACAGATTTCCCGCTATCTTCCCTGCCCCTTATAGAAACGCTTCTTGCAATTGATCCAGTTGAACGAAAGACAGCAACAGATGCATTAAATAGCGAGGTAAGCTAAAAAACTATCAGAATAGATCTCATTTATGATTTTCACTTCTGTCATTAATCTGATCGAATATATTTGGTTGCATTTACTATGCACATCAATCTTCCCACTACATTCATCAATCAAAGTTTTGTTGCTTCCTATGCCTTTTTCTGGTTTGGTTTCATCAAGACAGCGTACTATGTCATTTGCATCAATCTTGTCCTTGAAAATTTTGCTAGTTTTAATATAATTGTCTTGATAGTTTCTGCCGTTAATGAGTGTAAGCAAATTGGTGGTACTGCATGTTAATCCATATTACTGCTATTTCAACTTTCCATTCTAACACCAACTCATCAACTACATGGACCATTGGGATTAACAAATTAAAGTATTGGGACCAAATTTGATCTCTCAAACGTATAATGTTGAAACTGACACAGATATAGGGGAATGAATGATAGAAGACTATAGATAATAAAATATCTTAATTTTTAATTGAAATTAAAATTTGATGAGAAATAACCATAGTTTATTAGATGTAAATTTGTTTGTTAAATGAAGTTTGAAGAGTTAAAAAAATGCACACGTGGTGATAAAAGTCATCATTACATTCACATGTTCTTGTGTTCGTTTTGTTTTTCTGTTTGTCATTCATTGCTGCATTCTTATTGAATATGAAACATAGGTAAATTTACTATCTTCAATAGTATCTAAAGTTATTATTATTTGTTTGATTTTAATAATTGAAATTAGTTTCATATCAGGAGTGTGGAATGTTTTAAGGAATATCTTCCCAAGGTGTGTGTAAAGGGATTCATTGGTTGGGCTATGAATAAGATTACATTTATTTGTTGGCCAGAAAGCAAAATAGGACTTTAGGCCTATTAGTTCCGTTACCAATTTGTATATGATAATTCCTAAGCCCTTATTAATAGGAAGAAGTTATTTAATATCATCTCTATAAGCAACGGGTGTTAGTATGCGCAGCCAATTTGGATGTGCTCGTAATATAGATTGCCAGATGTGACTGGAGGAGGTTGTGTTATTCACTCTCTTTCATGATAAGGACAGAGTTCTCTAGCAGGCTCTTTTCTTCATGGCCGTGTAGAGTATTTGGCTTGAGAGAAATGGTAGAATTTTTGGAGGGGTTGAGAGGTGTTGGTAAGTAACATGGAATAACATGATCTTTGACTTTTTTTCTTTTTTATAAGAAACTAATATATTAAAAAAAGACAGAAAAGGAAAGACAACCTAAGGGCTGGGGGATGAGAACCCCACCTAAAGAGCTACTTACAAAGGCTTTCCAGTCATTGAAAATAAGAGAGAAAGAGTAGTACAAAAGAATTTGCTACCCATGACGCCAGCATGAAGCATTCAGCTGTTCATAATCCCAAAAAAATACTGGAGTAGACTTTGAGGCAAACTTCCATAGGATTCTAGACTTTCCTTTCAGCTTAACATTAGGAGGCAATGCAAAAAGATGTGGTCCATGAACTCTTCATTCACCAAACATAGAGAGCAAGTAGAGGGGCATAGGGCAAAACTTGGATACTTTTTCTGAAGTCTTTTATGATTGTTAATCTTGAAGACTGATCTTGAAAAAAAAAAAAAGATGTATGATTTTATTGATTCATCCTTTTTGGTTAATGTGTTGTGGAAAAGGAAAACATGAGTGTGTAATTGGTGATGAAGGCTCTTAAAGGTGCATGTGGAAAATGGAAAATGATTTTGCAATCCTAGTTTTCTCAATTTCATTCATTGTTGTCTAGGGGATCGAACTTGTGTTTGTTTTTGGTTGATCATCAACTATGGAAAGTTATTATCCCTAAGAAGATTAGGTTCTGGCGGTTTACAAGGGGATTTTGAATCCATAATTGTATGCTGTAAGCGGGCAATGAAGATGTGTACCACATTGTTTATGGATATCAGGGACGATTTTCTTTCGTTATTTTGGCTCTTAGTAGAAATTGTTGGTCTATGTTGGAGGAGAGGCCTTTCTACAATCACCATTCAGTGGTTGGTATAGGGAGATTGTTGTGGTAGGCTTGCCTTTTTGGCCATTATTTGGTTGGAAAGGAACTGGAGATTTTTAAGTGTGGAGAAACTGGGACCATAAAAACTCTTCCACCTTTTTTTGGCTTCTAGACTTCAAATCAGCAGAATCAGTGGGCCTGAAGGGGAGCTCTAACCTCCAAGCTCTTCAAAAAAGCATATTTAGAAGTAGAGCGGATCATGAAGCCAAATCCTTTTATCCTCCAAATTTCTAAGCTCAAAGACATCAATGGTGTTTATTAACCCTGTCCAGCTTTGAATCTCTCTATCAAAGAGGCCTCTACAAAAGCCCAAGTCCCAGGTATTCTGCGTCTCATCCCAACAATTTGCTAAGACTTTCTCTGCGGGATGTTATAAAGATCAGGATAGACACTATCAAGAGGGTTACTCCAATCCACTTATCTTTCCAAAACCTCATCCTTCGACGATTACCAGCTTGTAGACTTAATGAAATTAAGAAACAGGGCAGTATTTTTTGCAATATCAAACCAGGGTCTTCCATGGGCACTTCCTTTTGGAGGGAGGGAAAACCACCCATGATTGTGGACTCCATACACACTTCCTATAACCTTCTGCCGTCAAGTGCCTTTTTCATTTGCAAATCCCTATAACTATTTCAATGGGAGCATTGTTTCTCTGTTAAAAGGAGCCGGTCCCTAGACATCCATAATGAATATGAAAAGAAGTCCATTCCCAATTAACAATGTGTCGACATATTTTAAACTCTTCTCCATCCCAAAAGAAGTTCCTTACCGAACGGTCCACTTCTTTAATCACACCCTCTGTGGCTTTAAGGAGCGATAAATAATAAAGGGATACTTGAGCTAACGTTTCTCCCTCCTTTAGATAAAAGAAGCCCGTGCCATTTTTTCAATTTTGACCTGAATTAATCCACAATAGGATCCCAAACCTCGAGGTATCTATGGTTACACCAGGACAAAGCTCAAGTAATTAAAAGGAAGGACCTCTATTTTGCAACCCAGAAAATCAGCCTTCCCCAGAATCTACCTCTTCATATCCAACTTAGCGAGCTAATATGCCGTGTGCCACCCAAAAAAAAAAAAAAAAAAAAAGAAGCTGATTTTATTACATCTTATGTTGCTGTCTCACTCTTCCCTCTTGTGACAACTATGCACCTCTTCATAATCAGGGGTCTATCAAGAACCAAGTTTCGTTCAGAGTGAAAGTTGAAAAGGGAAAACCAGATGAAAACAGAGACAGGAACAAAACAAAAGGATCCCTAAAGAGAAGAAAGAAGTTTACAGAAAGACTCCAGTTGTTGGTATTCAGGGAAAAATTCCAGAAAACATTGTCAAGTAGACTAGAATGGACCTAAAGAGAACCGTTGAGGTGTTCCACACTCCCAAACTTCTTTCACGACTCCTCCTACCCCCTTTTAAGCCTTATACCAGTGTTTTTTAAAGCTAAAGGTGCACGCACAACGGATTTCCAATGCTTAATGCAAATAATAAGATGATAAAAAGTTTAAGTAGAGCTTTTATTCTATATCGTAAGGAAAAATGATTATTTTCTAAGAAGATCCTTGATTTTCTCCCTTACAACTCAGAAAAGCTTAAAAAATAGCAGGAAAAGTAGGAAGTAAAGCAGACTTCATTAATGGAGCCTCTGCTTTTTTGAAATGAGGCACATGGGCTATGCCTTGGGCCTAGGCGCATTAGACCCCTGCCTTTGGGCTTTTCAAAACGGTCTTCAAAATAGCAGAAAAGCTAGTCCGCCAAAGATTTCTACTTCTATTAAAAAAGGAGGTTGTAAAATAATTTCCTCTATCATTGAACAAACCATCTCTGCTTGGGAACATCTCTCTAAAAGCTTCCAAGAACCTAATAAACCAAATATTTTTAGCAACGGGGACTTATAAAAAAGAAAATCAACCCTTTTGTTCGGATGGAACAAAGGACATAACAATGCCTGCTTATTCTAAATGGCCCTCTAAGAGTTGAAAATCATGCGCAAGAAGGGGGCCCTTGGAAAAAGGAACTTACATGAGCTATGTAGAGATTTCTTTCAGGGGAAGATTTGAAAGATGAGGGAAGAGAAAGTGATGAGAATATGGCTAAAGTAATAGTCCTCCCAAAATATGAGAGCAAGTCTCATCCCCAAACGAGAAATTTTCGAAGCTGAGAAATTGGGGTTATCATTGAGAAATAGCTTTTGAAGGATCCTTAAACTTTTCAAGTAAAACTACATTAGAGGCCGAACTATTCAAATGACGCCCATGCTTACAGTAATCTTGTGCCATGACATCTGGTTCTAAGGGAAAACACCTCATATAATCCAAACCATCCTCCTCACATAAGATTCCACTAAGCCTTCATGATTTTCTTTAGTTTGGTATTAAAAAGAAAAAGAAAAAAGGAGTTCTGATCCCTCCTGGGGGGGTTGTCATCATTCATTCATGAGAGACTGAATCAAGGAAAGCCTATCTCTTTTGGAAATTTCATTTTACTCTAAATGAGAAGCGTTTCTGATCCAGGATTCTAGAAAGAAAGCCTTGTTGGATTATTAATCCAAAGGAATGCCCAATTACTGGAAAGGAAGCTGGAAACCCCACATCGCACAAGTTGTGCCAACCTAGTAAGCTCAGGGAAGTTACAATTCACTTCTGCCATATACATCTCCTATTAATTTTTAGGTTAGAGTCCTCCTAAAATGTATGACAATTTTGTTAAAAATAATGAAAGAATCCCTCCCTATCACAATATATAGATATATATATATATATATATATAATAAGAACAATAAAAAAAAATAATGGCCATGAGTTGCATATTATAAATGAGTGAGGATCTATTCTTCCCCACTTTTTTTTAATATCTGTGAGTGCCGGGACCAGCTTGCGTGCACCTTTACTATTCTCACAGGACAATTGCTTGACCTTACTAAATAAAGGAAATGCAAAAGTTCTATTAAGAAATACTTTGAGCTATTTTGTGGATGATTTGGATCATTGATTGATAGAAAGCTTCACCAAAAGATGCAAATTTTCCTTGACTTTATAAGAAGTTAAACCTGCACTTGTATACAGAACTAAATATGTTGTATAAAATGCATGTCTACTCTAGTCAATAACCTATATCTTTTAAACTTGTTATTTTTTTAACTTTTACAAATCTTGCTAATCTTTTTTCTTTGCAATGCAACCTTCTATGCTTATTTTTTGCTTCAACTTATGAGGTAGCTTTAATCAGGGAAATTTTCGCAGCCATTTGGATGTATAATAGATTTTACATTCTCACTTCTGTGTCTGCTATAATGGTAATTATGCCATATTTCTTGTATGCCTTTCAAACTTTGTCCATTGCAATACAGTTCTTCATGACAGAGCCTTTAGCTTGCAAACCCTCCAGCCTCCCGAAATATCCTCCCAGTAAGGAGATGGATGCTAGAAGACGGGATGATGAAGCCCGGAGGTATGAATGCCTTGATTTCAGTTTCTGCTCAATATATGCCTGGTTTGTTTTGTGAGCTATTGAGAAATTTGGGCTAGCTATTTTCATGAAGTCGAGGTCTTTTCCCTAAAAGATGTTCTTATCTCTTCAAAGATTTGGCCATTATAATATAAAATGGCTGGTTCTAATGGTAAAGAAGCTGAAGATACCTGTCTTTTCTGTTTTTAGTTTCGGTTAAATTTACAAATATACTGCCTGGGCTTTATTTAGTTCTTGAAGTTTTAAAGGTTTTAGTGATTTTCTTGAACTTTTAATTTTGATTTGTTACAATGGAAAAGGAGCTGAAGGTATACTTAATTTACAAATATAATGCTTGAACTCTGAGAATTGTGTTTATTTAGTTTCTGAAGTTTAAGAGGTTTCAAGTTATGTTCATCAATTTTTAATTTCTGTCTATAAAGCTTTCTCCATTATGCATTACTTAAATGTTGATGTAGTGCCTCATTCAACTAACGATTGTTGATTTGGTACGACATAGTAACAGGTGTCCCAAAAGAGTAGACCAGCCAATAATAAGAACAAGTAGGGTAAAACATTTGGTATAGAATGGGTTGGCATAATACAGATGAAACTAATTATTTTTGGCTCATCTATGCTTATTTATCCAATTTGCTTACTCTCTTAGAAGAGACTTCATTGAGTAAAATGGCTTACTCTCTTCTCTTTGTGCCACCTATTGATCTGTGTGATATTGTTACTTGTTAGTAATACCACATTAACGTTTAATTAAGGTGTTAACAACAAGAGCTTATTAGAATTTAAATTGAAAGCTTAGATTCTAAATTGATACAACTATCAAATTTAGAGACGTTTGTAAATTAACTTTATATCTTTCTTTAAGTTAGAGTGTTAACTCTCTCCCTCCAACACACAAGTGTGCACTGGGAAAATCAAGCGTTTGAAACCATCAGCACTGGTGTAAGTTGTGTGCTCAAATTACTAAAAAAATGTTTAAAAATAGGACTTAAAAGCTAAAAATTCTTGCAGCCGAACCGAGCATCTGAACAAAAATGATGGAATTCAACTAAACTGACCATACAAACCAAAATAGAATTGAACTTTTTTTTTTTTTTTTGACAAAGCTTGGGATAATTGTTGCTATTATTCTTTAGTCCTGTGAACTTGCTGTGTCTTTGTTGAGCATCATTCTAAATCGGTTTTTGCAGACTAAGAGCAGCTAACAAAGCCCAGGGAGATGGAGTGAAGAAAACACGCACACGTGTTAGGGCGATTCCAGCTCCTGAAGCCAATGCAGAAATACAAACAAATATCGATGTAAATGCTCCTCTGCTAAGTTCAAAACTGTCAACCAGCTAGACATTGTCTAATAGTACAGTATATCATGTCCTTAGATTTTCAGTGTTAAACCGTTTGAAACTGTTGTACCTTGAAACAGAGAAGGCGCTTAATTACACATGCAAATGCAAAGAGCAAAAGCGAAAAGTTCCCCCCACCGCACCAGGACGGAGCGCTTGGCTTTACGCTAGGATATTCACGGCATATGGATCCATCCGGTGTTCCTCCCGACATACCATTCAGCTCGACGCTGTTCACTTACTCTAAGGAGCCAGTCCAAGTCTGGTCTGGTCCACTGGTCCCTGGTGCTGGCACTGATGCTCCACCTAGGCAGAAGAAGCATGTGGGAGGTAAAGGCAAGAAAATCATGGTCTAAAGTTTTGATAAGATTGTGATCGTACTCTGCCTGTTTGCTGATAGGAGTGACATCAAATTCTTCCCACTGTTCATCCAAAAACATTGACAATCAATCAGCCGGGCCTGCTCTAAGCTGA ATGGGGTGTTTGGTTAGCCGACAGGCGTCTTCTAGAAGTGTAGAACCCCCTGTAGATAACGGGAAGAGGAATCAAATTACTGAGCCTGGTGTCCAAGTCGAGCATGTACAGGAAAAAGAACTAGAGCATGTTAATGCTAATGTAGAGGAGCATGCAAATGTGAGCAAGGAGGAGGAGCAGAAGGCTGATGGTGGTCAGGATCGGCCACGAGCAGAGCGGCGGAGGTCGAGGAAGGTTCCAAGGCCTGTTAACCTGCCAAACCATTCCCAGGGAGAGCAAGTTGCTGCTGGATGGCCATCTTGGCTCACAGCAGTTTGTGGGGAGGCTCTCAATGGTTGGATTCCAAGGAAGGCTGATACGTTTGAAAAGATTGATAAGATTGGACAAGGAACGTATAGCAATGTGTATAAGGCTAAAGATATACTTACAGGTAAAATTGTTGCACTGAAGAAGGTTCGATTTGACAATCTGGAACCGGAAAGTGTGAAATTTATGGCTAGAGAGATTCTAATCCTTCGGAGATTAAATCATAATAACGTTGTGAAATTGGAGGGGTTGGTCACATCGCGGATGTCTTGTAGTTTATACTTGGTGTTTGAGTACATGGAACATGATTTAGCTGGTCTTGCTGCAAATCCATCAATCAAGTTTACGGAATCTCAGGTTAAATGTTTCATGCAACAACTGCTATCTGGACTGGAACACTGTCACAATCGTCATGTGCTTCACCGTGATATTAAAGGATCTAATCTTCTCATTGATAGTGGGGGAGTGCTTAAGATTGCTGATTTTGGATTGGCTTCTTTCTTTGATCCTAATCACAAGCACCCAATGACTAGTCGAGTTGTTACCTTATGGTATCGACCTCCTGAACTTCTTCTTGGAGCAACTGATTATGGAGTAGGTGTAGACCTCTGGAGTGCTGGGTGTATACTGGCTGAGTTATTAGCTGGGAGGCCTATTATGCCTGGCCGTACAGAGGTGGAGCAACTACACAAGATATACAAGCTTTGTGGCTCCCCTTCAGATGAATATTGGAAAAGAGCAAAGCTTCCAAATGCAACATTATTTAAGCCCAGAGAACCTTATAAAAGATGTATAAAGGAGACATTTACAGATTTCCCGCTATCTTCCCTGCCCCTTATAGAAACGCTTCTTGCAATTGATCCAGTTGAACGAAAGACAGCAACAGATGCATTAAATAGCGAGTTCTTCATGACAGAGCCTTTAGCTTGCAAACCCTCCAGCCTCCCGAAATATCCTCCCAGTAAGGAGATGGATGCTAGAAGACGGGATGATGAAGCCCGGAGACTAAGAGCAGCTAACAAAGCCCAGGGAGATGGAGTGAAGAAAACACGCACACGTGTTAGGGCGATTCCAGCTCCTGAAGCCAATGCAGAAATACAAACAAATATCGATAGAAGGCGCTTAATTACACATGCAAATGCAAAGAGCAAAAGCGAAAAGTTCCCCCCACCGCACCAGGACGGAGCGCTTGGCTTTACGCTAGGATATTCACGGCATATGGATCCATCCGGTGTTCCTCCCGACATACCATTCAGCTCGACGCTGTTCACTTACTCTAAGGAGCCAGTCCAAGTCTGGTCTGGTCCACTGGTCCCTGGTGCTGGCACTGATGCTCCACCTAGGCAGAAGAAGCATGTGGGAGGAGTGACATCAAATTCTTCCCACTGTTCATCCAAAAACATTGACAATCAATCAGCCGGGCCTGCTCTAAGCTGA ATGGGGTGTTTGGTTAGCCGACAGGCGTCTTCTAGAAGTGTAGAACCCCCTGTAGATAACGGGAAGAGGAATCAAATTACTGAGCCTGGTGTCCAAGTCGAGCATGTACAGGAAAAAGAACTAGAGCATGTTAATGCTAATGTAGAGGAGCATGCAAATGTGAGCAAGGAGGAGGAGCAGAAGGCTGATGGTGGTCAGGATCGGCCACGAGCAGAGCGGCGGAGGTCGAGGAAGGTTCCAAGGCCTGTTAACCTGCCAAACCATTCCCAGGGAGAGCAAGTTGCTGCTGGATGGCCATCTTGGCTCACAGCAGTTTGTGGGGAGGCTCTCAATGGTTGGATTCCAAGGAAGGCTGATACGTTTGAAAAGATTGATAAGATTGGACAAGGAACGTATAGCAATGTGTATAAGGCTAAAGATATACTTACAGGTAAAATTGTTGCACTGAAGAAGGTTCGATTTGACAATCTGGAACCGGAAAGTGTGAAATTTATGGCTAGAGAGATTCTAATCCTTCGGAGATTAAATCATAATAACGTTGTGAAATTGGAGGGGTTGGTCACATCGCGGATGTCTTGTAGTTTATACTTGGTGTTTGAGTACATGGAACATGATTTAGCTGGTCTTGCTGCAAATCCATCAATCAAGTTTACGGAATCTCAGGTTAAATGTTTCATGCAACAACTGCTATCTGGACTGGAACACTGTCACAATCGTCATGTGCTTCACCGTGATATTAAAGGATCTAATCTTCTCATTGATAGTGGGGGAGTGCTTAAGATTGCTGATTTTGGATTGGCTTCTTTCTTTGATCCTAATCACAAGCACCCAATGACTAGTCGAGTTGTTACCTTATGGTATCGACCTCCTGAACTTCTTCTTGGAGCAACTGATTATGGAGTAGGTGTAGACCTCTGGAGTGCTGGGTGTATACTGGCTGAGTTATTAGCTGGGAGGCCTATTATGCCTGGCCGTACAGAGGTGGAGCAACTACACAAGATATACAAGCTTTGTGGCTCCCCTTCAGATGAATATTGGAAAAGAGCAAAGCTTCCAAATGCAACATTATTTAAGCCCAGAGAACCTTATAAAAGATGTATAAAGGAGACATTTACAGATTTCCCGCTATCTTCCCTGCCCCTTATAGAAACGCTTCTTGCAATTGATCCAGTTGAACGAAAGACAGCAACAGATGCATTAAATAGCGAGTTCTTCATGACAGAGCCTTTAGCTTGCAAACCCTCCAGCCTCCCGAAATATCCTCCCAGTAAGGAGATGGATGCTAGAAGACGGGATGATGAAGCCCGGAGACTAAGAGCAGCTAACAAAGCCCAGGGAGATGGAGTGAAGAAAACACGCACACGTGTTAGGGCGATTCCAGCTCCTGAAGCCAATGCAGAAATACAAACAAATATCGATAGAAGGCGCTTAATTACACATGCAAATGCAAAGAGCAAAAGCGAAAAGTTCCCCCCACCGCACCAGGACGGAGCGCTTGGCTTTACGCTAGGATATTCACGGCATATGGATCCATCCGGTGTTCCTCCCGACATACCATTCAGCTCGACGCTGTTCACTTACTCTAAGGAGCCAGTCCAAGTCTGGTCTGGTCCACTGGTCCCTGGTGCTGGCACTGATGCTCCACCTAGGCAGAAGAAGCATGTGGGAGGAGTGACATCAAATTCTTCCCACTGTTCATCCAAAAACATTGACAATCAATCAGCCGGGCCTGCTCTAAGCTGA MGCLVSRQASSRSVEPPVDNGKRNQITEPGVQVEHVQEKELEHVNANVEEHANVSKEEEQKADGGQDRPRAERRRSRKVPRPVNLPNHSQGEQVAAGWPSWLTAVCGEALNGWIPRKADTFEKIDKIGQGTYSNVYKAKDILTGKIVALKKVRFDNLEPESVKFMAREILILRRLNHNNVVKLEGLVTSRMSCSLYLVFEYMEHDLAGLAANPSIKFTESQVKCFMQQLLSGLEHCHNRHVLHRDIKGSNLLIDSGGVLKIADFGLASFFDPNHKHPMTSRVVTLWYRPPELLLGATDYGVGVDLWSAGCILAELLAGRPIMPGRTEVEQLHKIYKLCGSPSDEYWKRAKLPNATLFKPREPYKRCIKETFTDFPLSSLPLIETLLAIDPVERKTATDALNSEFFMTEPLACKPSSLPKYPPSKEMDARRRDDEARRLRAANKAQGDGVKKTRTRVRAIPAPEANAEIQTNIDRRRLITHANAKSKSEKFPPPHQDGALGFTLGYSRHMDPSGVPPDIPFSSTLFTYSKEPVQVWSGPLVPGAGTDAPPRQKKHVGGVTSNSSHCSSKNIDNQSAGPALS Homology
BLAST of Csor.00g260190 vs. ExPASy Swiss-Prot
Match: Q9ZVM9 (Probable serine/threonine-protein kinase At1g54610 OS=Arabidopsis thaliana OX=3702 GN=At1g54610 PE=1 SV=1) HSP 1 Score: 751.1 bits (1938), Expect = 9.2e-216 Identity = 379/550 (68.91%), Postives = 447/550 (81.27%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy Swiss-Prot
Match: F4I114 (Probable serine/threonine-protein kinase At1g09600 OS=Arabidopsis thaliana OX=3702 GN=At1g09600 PE=3 SV=1) HSP 1 Score: 552.4 bits (1422), Expect = 6.2e-156 Identity = 278/480 (57.92%), Postives = 353/480 (73.54%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy Swiss-Prot
Match: F4ICB6 (Protein IMPAIRED IN BABA-INDUCED STERILITY 1 OS=Arabidopsis thaliana OX=3702 GN=IBS1 PE=3 SV=1) HSP 1 Score: 491.5 bits (1264), Expect = 1.3e-137 Identity = 272/548 (49.64%), Postives = 371/548 (67.70%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy Swiss-Prot
Match: Q9LFT8 (Cyclin-dependent kinase C-1 OS=Arabidopsis thaliana OX=3702 GN=CDKC-1 PE=1 SV=1) HSP 1 Score: 355.9 bits (912), Expect = 8.6e-97 Identity = 177/349 (50.72%), Postives = 238/349 (68.19%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy Swiss-Prot
Match: Q5JK68 (Cyclin-dependent kinase C-2 OS=Oryza sativa subsp. japonica OX=39947 GN=CDKC-2 PE=2 SV=1) HSP 1 Score: 353.6 bits (906), Expect = 4.3e-96 Identity = 178/350 (50.86%), Postives = 237/350 (67.71%), Query Frame = 0
BLAST of Csor.00g260190 vs. NCBI nr
Match: KAG6588611.1 (putative serine/threonine-protein kinase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1166 bits (3017), Expect = 0.0 Identity = 580/580 (100.00%), Postives = 580/580 (100.00%), Query Frame = 0
BLAST of Csor.00g260190 vs. NCBI nr
Match: XP_022931579.1 (probable serine/threonine-protein kinase At1g54610 [Cucurbita moschata] >XP_022931580.1 probable serine/threonine-protein kinase At1g54610 [Cucurbita moschata]) HSP 1 Score: 1161 bits (3003), Expect = 0.0 Identity = 578/580 (99.66%), Postives = 578/580 (99.66%), Query Frame = 0
BLAST of Csor.00g260190 vs. NCBI nr
Match: XP_022989369.1 (probable serine/threonine-protein kinase At1g54610 [Cucurbita maxima] >XP_022989370.1 probable serine/threonine-protein kinase At1g54610 [Cucurbita maxima]) HSP 1 Score: 1154 bits (2984), Expect = 0.0 Identity = 574/580 (98.97%), Postives = 577/580 (99.48%), Query Frame = 0
BLAST of Csor.00g260190 vs. NCBI nr
Match: KAG7022410.1 (putative serine/threonine-protein kinase [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1124 bits (2908), Expect = 0.0 Identity = 557/557 (100.00%), Postives = 557/557 (100.00%), Query Frame = 0
BLAST of Csor.00g260190 vs. NCBI nr
Match: XP_023530086.1 (probable serine/threonine-protein kinase At1g54610 [Cucurbita pepo subsp. pepo] >XP_023530087.1 probable serine/threonine-protein kinase At1g54610 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1118 bits (2891), Expect = 0.0 Identity = 554/557 (99.46%), Postives = 555/557 (99.64%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy TrEMBL
Match: A0A6J1EZW0 (probable serine/threonine-protein kinase At1g54610 OS=Cucurbita moschata OX=3662 GN=LOC111437752 PE=4 SV=1) HSP 1 Score: 1161 bits (3003), Expect = 0.0 Identity = 578/580 (99.66%), Postives = 578/580 (99.66%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy TrEMBL
Match: A0A6J1JM63 (probable serine/threonine-protein kinase At1g54610 OS=Cucurbita maxima OX=3661 GN=LOC111486443 PE=4 SV=1) HSP 1 Score: 1154 bits (2984), Expect = 0.0 Identity = 574/580 (98.97%), Postives = 577/580 (99.48%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy TrEMBL
Match: A0A089NBY1 (Cyclin-dependent kinase OS=Cucurbita maxima OX=3661 PE=2 SV=1) HSP 1 Score: 1112 bits (2877), Expect = 0.0 Identity = 551/557 (98.92%), Postives = 554/557 (99.46%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy TrEMBL
Match: A0A5D3CE95 (Putative serine/threonine-protein kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold16G003280 PE=4 SV=1) HSP 1 Score: 1072 bits (2773), Expect = 0.0 Identity = 540/580 (93.10%), Postives = 553/580 (95.34%), Query Frame = 0
BLAST of Csor.00g260190 vs. ExPASy TrEMBL
Match: A0A0A0LWK7 (Protein kinase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G573620 PE=4 SV=1) HSP 1 Score: 1061 bits (2744), Expect = 0.0 Identity = 527/557 (94.61%), Postives = 538/557 (96.59%), Query Frame = 0
BLAST of Csor.00g260190 vs. TAIR 10
Match: AT1G54610.1 (Protein kinase superfamily protein ) HSP 1 Score: 751.1 bits (1938), Expect = 6.5e-217 Identity = 379/550 (68.91%), Postives = 447/550 (81.27%), Query Frame = 0
BLAST of Csor.00g260190 vs. TAIR 10
Match: AT1G54610.3 (Protein kinase superfamily protein ) HSP 1 Score: 751.1 bits (1938), Expect = 6.5e-217 Identity = 379/550 (68.91%), Postives = 447/550 (81.27%), Query Frame = 0
BLAST of Csor.00g260190 vs. TAIR 10
Match: AT1G54610.2 (Protein kinase superfamily protein ) HSP 1 Score: 746.5 bits (1926), Expect = 1.6e-215 Identity = 379/551 (68.78%), Postives = 447/551 (81.13%), Query Frame = 0
BLAST of Csor.00g260190 vs. TAIR 10
Match: AT3G05050.1 (Protein kinase superfamily protein ) HSP 1 Score: 687.2 bits (1772), Expect = 1.2e-197 Identity = 370/595 (62.18%), Postives = 433/595 (72.77%), Query Frame = 0
BLAST of Csor.00g260190 vs. TAIR 10
Match: AT5G50860.1 (Protein kinase superfamily protein ) HSP 1 Score: 614.0 bits (1582), Expect = 1.2e-175 Identity = 321/519 (61.85%), Postives = 383/519 (73.80%), 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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