Csor.00g084500 (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.ATGGCCGGCGAGTTTTCCAACTGCGTTGAGTACGGTCTCCATTTGTCGAAGCGAATTTACTATGGCAAAGGATCGGCGCCGGCGGCTTTAGGGCGGCAGATGTCTAGAGTATCGGAGGATTACCTTCCGACGGCTCCGATGGTGTATGCCGTTATACCGGACCCGACGATTGTGGACAATCCGGATGTTCCGAGCTATCAACCTTACGTGCACGGGCGCTGCGTACCACCGGTGTTGATTCCGCTGCATATGAATGGAGTTGCCATGGAAATCGATTGTTGTTTCGATACTGCGTTCATTGGCGTTAGCGGAACGTGGCGCGTGCATTGCGTGATGGCGGGGAAAGGCTGTGAGTGCCTTATAGCGGTGCCGATGGGAGAGCAGGTAGCCAGATTTTTCTCCATTATATTCTGAAACCTTGAGTTTATTGGTTTAGGTCGTACTGGTCAATCTGTAGTCGTGATTCGTCGCGCTTATGGGAGATGTTGTTTATTTGAGTTCTGGAATTACTCTTACTGCAGCTGTAGCTACGTAAGCAAATCCGAATCTCGATTTGGAAAATGCTCTATGAAGTTTTGCATTCTGAAATTGCTTTGGAGTCTCAATCGAATTGAAATTTTGTCTTTCGAATTGACTCCAGTGTTATTTTAATTGAGATTCTACAAGGTCAATTAATCAATCAAACGTAACAGAGATTTTCTTTGTTAATCGTATGCCTGAAAGGATGTTAAAGTGTAGTCGATTGTTAAATTCTTCATCCAATTGATTGGGACTTGCGTTTCCATGACAAGCTGCATAAGTCCCTATCCTTCAACTTCCCATTTTTGCATTCTGAAAAAAACATTGTGGCTAACAGGGTTCACTTCTAGGTGTTGAAGTCGATGTTACTGGAACGTCATATCGCACTGAATTAGTCTCCATGGAAGACGCGGAAGCTATACAGAAACTAGCAAAATCTGAAGATGGAAAGTTTCTGAAAGGGCGCCGGATATACACATTAAAAATCCCCAAGGTTACATCGCGTTAATCCTGTATATTTTTTCATCATGATCTGCTGTTCATTCTACCTCAAGGGTAAATAAGATACAGTTGTTCTCCAGGTCGATGGTGGCTGTACTCTTTCAGTTCGAATCAATTGGTCCCAGAGAATACCATACCTTGATGATCTCTTCTGTCTCAATGTACCTTTCAATTTTCCAGCATATTTAGTTCCTCCTGGGAAAAAAGTCAAGAATATTCAGAAGATCTTATTGCATATAAATTCCGGTATTTCATCAGAAATTGTATGTAAACATACAAGCCATCCGATGAAGGTAAAACAAAGGTCTCACGAGATAATACTTGTTTCAGAATTTACTGACTATGACTGAATTTTTTGTATTATCTTCTAGATACTAAGTCGAGAGGTTGGCAGCTTAAGTTTCTCAAACGAGACAGAGGTCTCAGCATGGTCAAATATAGATTTCGATCTTTCGTATTCTGTAAGTATCATTTATTTGAATCTTTTCTGAGGAAAACTTGAAGAATTTCTTGTTTTCAGAAACCCAAAACTTTCATCCCAGTTGGGAAATGCTGCATGCTTAAGTTCATTTCTACCCTGTTGGCAGATTTCTCCTAGTGACTTGTTTGGGGGTGTTCTGCTCCAATCGCCATCTCTTCATGATTTTGATCAAAGAGAGATGTTTTGTCTGTACATTTTCCCCGGCCAGAACCAGAACCGGAAGGTTTGTTCTTTTTCTTTTTTTAGTACAGAAATATGTGGGATTAGATTTTAACCTCTTCCTTGGAGTAAAAAGTGATTGAGAATTGTTGGGAGAGTAGTTCTACATTGGCCAATTAAGAGGAAGATCATGAGTTATAAGTAAGAATACTATCTCCATTTGTATGAAGTCTTTTGGGGAAACCAAAAGTAAAGTTACAAGAGCTTATGCTCAAAGTAGATAATATCACTCACGGTAGGTAGTTCGGGCCCTTCTTTTTTCTTTGGTTGGTAGCTAATTAATTTTGTGTCATTGATTTGGCAGGCCCTATTTTAACGTCTCACTGTTTTTCTTTGTTAGGTTTTCAGAAAGGAAGTAGTATTTATTATTGACATAAGTGGAAGCATGAAGGGTGGTCCTCTCGAGAGTACAAAACGCGCAGTGCTCGCGTCAATTTCGAAGTTGAATCATGAAGATACATTTAACATTATAGCGTTCAATGGAGACACTAAATTATTTTCATCATCGATGGAGCAAGCAACCAACGAAGCAATTACTAGAGCAACAGAATGGATTGACGCTAATCTAGTAGCTAATGGTGGCACTAACATCCTGCTTCCCGTGGAACAGGTAACCTTGGCCCATAAGCCTTAACTACATTACCTTCCATTGTGTTTAGTTAGCAATTAAGGTGTGTTAACCCTTTTCATTTGGTCATCTTCATAGAGGTTTTTGGTTCACAGTGTTATTCTATTGCAGGCTATAAAGATGTTGGCTGAAACTGGAAATTCAATTCCCCTCATTTTTCTCATTACAGATGGCTCTGTTAATAATGAGAGAGAAATATGTAATCTTGTGAAAGCTTCTTTGAAGAGTGGAAAGACGATCTCTCCTCGTTTATGTACTTTTGGTATTGGTAAGACCTTGCCTTACTGTTCTTTCAAGAAATATTTGATGTCCTGAGTAAAAACATTTAAATAAAAGCAATTGTTTAAATTCTGCTTAAGTTCAAATCCTTGAAGAAAACGAGTTCTCTCCCTGAAATATTGTCCGAGAGGACCCACAAAATGTGAATGAAATCGAAGGCTATATTGCTTCAATTATTGATCTCGTTTTAGGACACTCCTCAAAGGCAGGGCCCTAGGACTATTGAACTGACTAGACTATTTTGAGTTTAGCACACACAATAATTTGGGGGGAAAAGACAACAACACTTGTTTCATTCACAAACAATGTGGGTTAACATGATGATAATTCTACTGGCATAACCTGATTATAGTACTCCATGGTATTTATGGTTTCCTTTTGCTCTTTATTAACTGCTTCCCATTAATTTGGCTCATCTATAATGTGAACAGTTACTTGCATTCGATCTGAAATTTTACGTTTATTGATGTTTAAAGCTTTTCCCAGGTACATATTGCAACCATTACTTCTTACAAATGCTATCAGAAATTGGAAGGGGTGTGTACGATGCTGCTTATGATGTAGGTGAATATCTCTTTCTCTGACTGATGCTATAATGATCCATTTTCTTGTGGTACTCCCGTAATTTTCTTGTATTGAAGCATTAAATCGTTTCGAAAGGAATTTTTTTTGGCTCCATGACCACAAGGTAAAAATTCCCATCGGTTCTTACTTTGATAATAGGGTGTTGTTCATTAGACTGATGTGAATGAAATTGAGGTAGCAGCCTTAATTAATATGGTATAGTTAAACAGTGAGCTAAACAAAAACTACAAAATCTTAGAGATTCATCACACGAAATAAGCCCCGTTTTTTAAGTTTTTTTTTAATGAGTAAGAGGCGTTTATGTTTTATTGTTCATCCATCTAATTTCTCCGTCTTTTTTTTGCCAGATTTGATTGATTCTCGGTTCCAGATGTTATTCACAAAAGCCTCATCGCTCTTTCTCGCCAACATCACCGTGGATGTTTTCAAGCATCTTGCTTCCCTTGAGGTTAACAATTCTTGAAGAACTTCTTTCTGTTTTCAGTCATACTTTTGAAGTCCCGATCTTTCTTCCACAGACACTACTCTCTTATTTTCTGACTGCATCTTGACATTCCTTTCCAACATGATGTTCTTGTGCAGTTGTTTCCAACTCAAATTCCGGACCTTGCATGTGGAAGCCCGTTGATAGTATCAGGCCGATACAATGGAAGTTTTCCAGAGTCGTTCAAAGTTAGTGGCATCTTAGCGGATATGAGCGATTCCGCAATCCATCTCAAATCCCAAAGAGCTAAAGAACTGCTTCTTGAAAGGGTACTGGTTCTCCCTTCCTGCTATAGGATGATCAATCATAATTTTCTTTTGGGATTTCTTTCGCCAACATAAAGTTTTTAGTATTATAATTATGTTTTAGAAGCAGTCTTGCTATACATGTTGAGGATTGTTGGGAGGGAGTCCACGTTGACTAATTTAGAGATGATCATGGGTTTATAAGCAAGAAATATATCTTTATTGGTATGAGGCCTTTTGGAAAAGTCCAAAGCAAAACCATGAGAGCTTATGCTCAAAGTAGACAATATCATACCATTGTGGAGCGTCATGATTCCTAACGTGTCATTGGTGGTCGTACTGAGAATTGTATTACATACTCTTTTGACGAGGCGCCTTCATTCTCTTACTCCTTTCTACTGCAGGTGCTTGCGAGAAGACAAATTGATATAATGACTTCACATGCATGGTTATTGGAGAGCAAGGACCTAGAAGATAAGGTTCGTGGCTTATAGCTGTTTGTTTATAGGGTCAACCATAATGATCACCGTGGATGAAGTTTCAATTAGCTTAAGCTTTTGAGATTGAATGGATCCTATGAGCCTGCCAGAATAGAGAAAAAATTGAGGATAATATTAACGTCATTCACAGTAATGATGGTTTATCTAATCCCGGTTTAATTCTGTTTGATTTGCCTCTTCCAGATTGCTTGTATGAGCAAACAAACTGGGTTTCCGTCCGAGTATACACGTTTGATTCTAATGCTGACCAAGGAAGGGAAAAAAGCTCCACCATCCATTATCGTACAGGAGGTAAGATTTCCCTCTAAACTTCTGGAATCTGCCCTTGTTTTCAGGAGAATATTTGAGCAGCCGGAAGATTATCGCTAGCAGTTCTTTTGATAAATGAGCAAAACTATGATATAACCATATATTTCATAGTTTTGAGTTTAGAAGCCTTTGGCTTTTTGGGTCTCTGCCTTAGCAAGTCAATCAATAGTCACATTTAATAATTTTTTCCACTGTCCAAGAATCTTGGTAAAATTATAACCATTGGAGATTCTTTTACTGCTCATATTCATTAGAATACTAAAGAATACTGAAATCGAAGATTGTTGGGAGGGAGCCCCATATTGGCTAATTCCTAATTAAAGGAATGATCATATGTTTATAAGGAAGGAATACATCTTCATTGGTACGAGATCTTTTGGGAAAACCAAAAGTAAAGTCACAAGAGCTTATGCTCAAACCGGACAATATCATACTATTTTGGAGGTATGTGGTTCCTAACATGGTATTAGAGTCAGAGTCGTGCATTAACTTAGCCATGTCAATAGAATCCTCAAGTGTCGAACAAAGAAGTTGTGAGCTTCGAAGGTGAAGTCAAAAGTGAATTAAGTGTCGTCGAACAAACGGTATACTTTGTTCGAGGACTTCATAGGCTTCAAGGGAGGCTATATGGTGTACTTTGTTCAGGAGAAAGATTCTTGAGGATGGTTGGGAGAGAGTCCTACATTGGCTAATTAAAGGAAGGTCCTGATGAAGATCATGAGTATACGTGAGGAATACTATCTCTATTGGTATGAGACCTTTTGGGAAGACCATAACAAAGCCATGAGAGCTTATGCTCAAAGTGGACGATATCATACCATTGTGGAGATCCGTGATTCCTAACATGGTATTAGAGTCATGTCCTAAACTTAGTCATGTCAATAGAATCCTCAAATATCGAACAAAGAACTGTGAGCCTCGAAGGTGTAGTCAGAAGTGACTAAAGTGTCGAACAAAGGGTATACTCTTTGTTCGAGGGCTCCAGATAAAGGAGTCGAGCCTCGATTAAGGGGAGGCTATTCGAGAGCTCCATAAGCCTTAAGGGAGGCTTGTAATGTATTTTGTTCGAGGGGAGGATTGTTAAGGATTATTTGGAGCGTTGGTTAATCATTCAAAAATCCCATGAATCGAACATTTGTTTACCTTCAAATCATTACATTACCAAAAGAAAATTGCTAATTTTGTTATATAAAACAGATGCGCAAGAGAATTGACATGTGGAAGTCGAATAAGGTAGAATGGAAGGGGCAAGAGATCGTTTTATTGGGGAACCAAGGCGTTGGATTTGGGAACCTGACCGCAACCGCGGAGAATGTGCAGCCAGGAAAGGAAATAAAGGCAACTCAAGCAACAGATTTGTTGGTGAAAGCCGCTACAAATTGCTGTGGGCGACTGATAGACCGGTTCTGTTGCATGTGTTTCATAAAGTCTTGTATGTACATGAATGACAGGTGCGTCGTGGCTTTTACACAACTCTCCGCCGCTCTTGCCTGCTGTGAGATCTTTAATTGCTGCTTTGAATTATGTGAATGTGATTGCTTCTAATGTTAATACTACTTTATATCATATTTATAAGCTGAAATATTGAGGTCTTGTTTTGTTTAGCTCAATCATTCCTTTGGGGGAGAGGAATTGAATCATCTATAGCTTATCCTTAATTATAGATTTGACAATATACGGTCCCAAAAAATAATATTTCCATGACTAGTAGAGTATGCTAGCAAACAACGTCGAACTAGACAATGACATATATATCTAACTTTGTTAAGAATGAGAAATATAAGTGGGATTGAAAGTGGGATCTTCGTTTATATAAACTTTGATTTGCAAGTTGAACTTTCCACTTTGGTGTCCTATATTTTTACCTTTAGTGGTGAATATTAATATACGTCCCATCCAAAATCAAGATTGGAATGAAATAACAAATTTCACTAAACTAACTGTTTACGGTGTGCTCGATTCCTCGAGTTGCATTGAGAGAGGGAGACCCACTGGTTGGTTGTGAGCTCAACTTTTTATAGCCGACCCTTAAAGTTAGGTTTCTCGTTTGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGGATTTTACGTAATTACAGGTGTTTCGTATTGAAGGTATGTCTCGGAGTAGCTCATTAGTTATATTGGCATCTTTCATTCCCATTACGAATAAGAAAATAATAAGACTTATTCCTCCAAACTATTAGGTTTGTTTATAATTTAAAATATTTATTCACAAGGTATTTATAGAGTGCTTCTGTCCTCACACTTAGAAAGCATTTTTCATTTTTAATAATATAAAGATACATTAATATGATATATAATTGGTAATTAGATCGGCTAAAAATACGTACTCAGTGATCATTCATTCACACTCCATATTTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATCACAATTTCATGCTTTCTATTTTTGTTCGTGAATTAGGAGTTTAGGTGATTTTTTAAATTATTTTTTAGTTAAAAAAGAACGAGTGTCAATTTACAGATTAAAAATTTAAGTTAATATTACAACTTACCTAAAATTATATGCCAAGCCAAGAATATTAAAAATAAGTTTGATTATAAAAAAAAAAAAAAAAAAAAAACCATATTAAGTCTTAAAAATGGTGATTATATTTATTTTAGAAGATTTCAAAAAGTGTTTTCTAATTTGATTGAATTCTTAAAATTAAAATTGAAAATAAAGTCGTATATTTTATGAGTTGTTTGAGACATATATTTTATGAGCATTTAACATGTTACTATAAATTTATATAATATTGCAATTCTTTTTTAAAAAAATTAAATTAGATTATTTTTTAGAGTTAAAAGAGTATGAATATTTATAGATTACCCAAATTATAAATATTAAATTGGATTGAATTTAAAAAAAAAATAAAAAATATGGGGAGAATATTTTTTTAAAAAAAGTTGTACCATAGTTTTAAAAAAACAAGAATATTAACACGTGTGGGACAAGCAAGGAGACGGCGTCAGGGACTATCGAAGTCCAGCACGCTCCACGTGTCCTTAATTAACTTGATAAACCCGGTCCGTTTCTTTAGACTAATCCTCCAATCCTTCGGCTTCGCGTAGTTACCGCGATATTCTTCCTCTCTCTCTCTCCCCCCTGAAACAATGCCCGCGCCCCTCGTTTTGTAGCGCTTCATACTTTCCCGCCAATATACTGATCTACAAGTGCTCGAGTTTCTATTGTCGTTCTTTTCGTTGCAGCTTCTCAATCTCGATTCGACGAATCGCAGGTACGTGTTTTCGATCGGTTATAGAGGTTAAGGAACTGCAGGATTAGATAGCGTTCTTGAAATTACTGAATATTTGTTGAAACGGATTGTATGTCTAGCTGTAGCGGTTGAGATTACTGACTGTGAGTTCGTTTAGCTGAAATACTTTAAGTATCCGATGTTCTTCGGCCTTGGGCCTCGGAAGTTTTGAATCCAATGGATTTTTTTGAACTTGACGCGATTTTGAGTGATATTGTTGTTGTTGCAGTTTCTTCCCAGGATATGAAGATCCGTTTGGTTTTGCTCGGTTCGCGGTTTCTATTTTTCTTCGTTCTCGTTTCTATCGCATTTTCTGGCATGTAAGTAATGCTATGGCGTCATGTTTCCTTTTGAAAATTTTCATCATCTCGTTGCTTAGGTGTGCGTAGAGGAATCTAGTATTTGTCATCAGCATCGGTAATCACACCGTTTTCGTTTGATTATAGATAGTAGCGAAAGTTTGCTTGGTACATATTGACATCATTTCTTGTATCTTAGACAGAACTCGTGTTAGATGATTTAGCTAATCGGACGTAAATCCAATTGTTAATGATGGAAATTTAAAAAAAACAAAAAAAAAAAATCCTGGTTGGAAATTTCTCTTATCTATGGATGATTCTGTTGAGCAATTTCCGGAACTGATTTCTTTTTTTAATTTGTACATTTAAATTAAATGATATTAAGTTGACTTAGTTTACTTTTTTTTTTTGGTTGTCTTGAAGATCTTGTCACGAGCATTGAAATCTCCGTTTCTCCTTATTATCATCAATCATATTAACATTGCGATATTTGAAGTGACACTACTTCATTGTCTCAATCTACTTTGATCTTACTCTGACATTTCTACTCATGGTAACTTGTTTTTCGTTTCTTGAAGATCTTTTTCTCTTTTGCACGATAAATAATTCTTAAAATATTGAATCCCTGATTTTAGATTTGCAAGTAATGGAGGTATGGAAACGGAGAAAACATTGGCTATGATAAAACCAGATGGCTTGCGCGGTAACTACACCGATAGTATCAGAAGGGCCATTGTGGAGTCCGGATTCAGGATTTTGAAGGAAAGAGTAGTTGAATTGGATGAAGATAGAGCAAGTCGCTTTTATGCCGAACATTCGTCAAAAAGCTTCTTTCCTACTTTGGTCAAATACATGACGAGGTATATATTAAATCTTTGAAATGTTGTCAAGTTTCCTCTGCTAATACTCATTTGCATAATTTCATATGATCCGTGGTACTAGTGTATTAATACTGATGTGTAATTTACTGCATTTAAACTGCTTTCCTCTGCATTAATTTGCTAGCAAGTGGTGAATATGTTTGTCACTCATGCAATTTAGCAGCCATTACACCACATCTGTGTGTACTGAAAAAAGAAAAATTTGAAAGTGCTGATATTGCAAGATTACTAATTCATTCCGTAACTATTTTGTTGAGGACTATTAAGAAGAGTAGTCTCACCTTGGCTAATTAAGAGGAAGATCATGGATTTATAAGTAAGGAACACTATCTTCATTGACATGAGACCTTTTGGGAAACCAAAAGCAAAGCCATGAGAGCTTATATTCAAAGTGGACAATATCATACCATTGTGGAAATTTGTGATTCCTAACATGGTATCAGAGCCATGCTCAACTTAGCCATGCCAACAGAATCCTTAAGTGTCGAACAAAGAAGTTGTGGGCCTCAAAGGTGGTGTCAAAGGTGACTCAAGTGTCGAACAAAGAATGTATTTTGTTCGAGGGCTCCAGAGAAGGAGTCAAGTCTCAATTAAGGGGAGGTTGTTCGAGAGCTCCCAAGAATGAGGCCTCAGGGAGGCTCTATGGTATACTTTGTTCGAGGGGAAAATTGTCGATGATTATTAAGAGGAGTAGTCCCACATCGACAAATTAAGAGAAAGATCACGGATTTATAAGTAAGGAACACTATCTCTATTGGCATGAGGCATTTTGAGAAAACCAAAAAAACAAAGCCATGAGAATAGTGGACAATATCATACCATTGTGGAGATTTGTGATTCCTAACATATTTATCTTACGTTCTTTTCGAGTAATTTCAGTTATGAATTAGCAACATAGAGAAGTTCATGATACGTACCTCAAGCTATGTTCATCAGTGTGGTTCTCCACCTTGAGCAGCCATATTCTCATCGTTTAACTTAGTTGAAATATGGGTCTATGTAGAAGACATTAAAATCAATCTGGACTTCTAATCTATCTTTTTGTAGCCATATGTAAAGGTTTTAAACAAACATGAAATCTTTCTTGAATTGTGCGATTGTGTAAGTTCTTGCATAATGGTGTTCTTCCTCTGTCTAACACTGCTCATTAGTGGCCCAGTATGCGTTATGGTTTTGGAGAAACAAAATGCCATTGCAGATTGGCGTGCTATGATTGGGCCAACAGATGCAACGAAAGCTAAGGCTACGCATCCTAATAGGTCATAAATTTTTCTCTTCGTCTCTATATATACTTTGCCTCCAGAAGTTTGAGATATGAATTCCGTACTGATTTTCATTCACTTGCTACCAGTTCACTTTAAGTTTTGGCTTTTATTATGGTCTCTTGCACGATTTCAGCATTAGGGCAATGTGTGGCTTGGATTCAGAGAAAAACTGTGTTCATGGTTCAGATTCTCTTCAATCAGCTCAAAGAGAGATCTCATTTTTCTTTGAAGAAACTGGTAAATTCTATTCCCTCTAACTGGTAAATTCTATTCCCTCTATCACGTATATATAAAATGCATATTATTTGTTTGTCCGCGTTCTATTTTCGTTTTTTATCACTGCAATACTTTTTACTGTCATATTTATAGTGTCACACATTCTTGCGATCTATTTGGGGAAACATGCAGCTATCCGTTAATATCAAAATCCTATAAATGAAAGTAAAAATGCAATATTGATTGATGTAGAAATAAATGTTGTACATTTAGAATCAGAAGCTGTAAATTCTAGATAGGAGGAGGGTACTGGTTGGGAGCCGGCAAAGGCTAGATTTATCTGCCATTTACAACAAAACCCATTTTTTTAGATTATAAAGATTTTTTAAAATTATATTTCTCATAGAAAATGATAAAATGGAACTTTTCTTCAATTCTTCTCCCACAAGGCACGTCTGTTTCTTGGTCCTTAAAAGCGTACTCTCTTTTCTGTTATTGTACTTCTTTTGACAGGTGAAATAGTTGGAAAACATGATGAATTATAA ATGGCCGGCGAGTTTTCCAACTGCGTTGAGTACGGTCTCCATTTGTCGAAGCGAATTTACTATGGCAAAGGATCGGCGCCGGCGGCTTTAGGGCGGCAGATGTCTAGAGTATCGGAGGATTACCTTCCGACGGCTCCGATGGTGTATGCCGTTATACCGGACCCGACGATTGTGGACAATCCGGATGTTCCGAGCTATCAACCTTACGTGCACGGGCGCTGCGTACCACCGGTGTTGATTCCGCTGCATATGAATGGAGTTGCCATGGAAATCGATTGTTGTTTCGATACTGCGTTCATTGGCGTTAGCGGAACGTGGCGCGTGCATTGCGTGATGGCGGGGAAAGGCTGTGAGTGCCTTATAGCGGTGCCGATGGGAGAGCAGGGTTCACTTCTAGGTGTTGAAGTCGATGTTACTGGAACGTCATATCGCACTGAATTAGTCTCCATGGAAGACGCGGAAGCTATACAGAAACTAGCAAAATCTGAAGATGGAAAGTTTCTGAAAGGGCGCCGGATATACACATTAAAAATCCCCAAGGTCGATGGTGGCTGTACTCTTTCAGTTCGAATCAATTGGTCCCAGAGAATACCATACCTTGATGATCTCTTCTGTCTCAATGTACCTTTCAATTTTCCAGCATATTTAGTTCCTCCTGGGAAAAAAGTCAAGAATATTCAGAAGATCTTATTGCATATAAATTCCGGTATTTCATCAGAAATTGTATGTAAACATACAAGCCATCCGATGAAGATACTAAGTCGAGAGGTTGGCAGCTTAAGTTTCTCAAACGAGACAGAGGTCTCAGCATGGTCAAATATAGATTTCGATCTTTCGTATTCTATTTCTCCTAGTGACTTGTTTGGGGGTGTTCTGCTCCAATCGCCATCTCTTCATGATTTTGATCAAAGAGAGATGTTTTGTCTGTACATTTTCCCCGGCCAGAACCAGAACCGGAAGGTTTTCAGAAAGGAAGTAGTATTTATTATTGACATAAGTGGAAGCATGAAGGGTGGTCCTCTCGAGAGTACAAAACGCGCAGTGCTCGCGTCAATTTCGAAGTTGAATCATGAAGATACATTTAACATTATAGCGTTCAATGGAGACACTAAATTATTTTCATCATCGATGGAGCAAGCAACCAACGAAGCAATTACTAGAGCAACAGAATGGATTGACGCTAATCTAGTAGCTAATGGTGGCACTAACATCCTGCTTCCCGTGGAACAGGCTATAAAGATGTTGGCTGAAACTGGAAATTCAATTCCCCTCATTTTTCTCATTACAGATGGCTCTGTTAATAATGAGAGAGAAATATGTAATCTTGTGAAAGCTTCTTTGAAGAGTGGAAAGACGATCTCTCCTCGTTTATGTACTTTTGGTATTGGTACATATTGCAACCATTACTTCTTACAAATGCTATCAGAAATTGGAAGGGGTGTGTACGATGCTGCTTATGATGTAGATTTGATTGATTCTCGGTTCCAGATGTTATTCACAAAAGCCTCATCGCTCTTTCTCGCCAACATCACCGTGGATGTTTTCAAGCATCTTGCTTCCCTTGAGTTGTTTCCAACTCAAATTCCGGACCTTGCATGTGGAAGCCCGTTGATAGTATCAGGCCGATACAATGGAAGTTTTCCAGAGTCGTTCAAAGTTAGTGGCATCTTAGCGGATATGAGCGATTCCGCAATCCATCTCAAATCCCAAAGAGCTAAAGAACTGCTTCTTGAAAGGGTGCTTGCGAGAAGACAAATTGATATAATGACTTCACATGCATGGTTATTGGAGAGCAAGGACCTAGAAGATAAGATTGCTTGTATGAGCAAACAAACTGGGTTTCCGTCCGAGTATACACGTTTGATTCTAATGCTGACCAAGGAAGGGAAAAAAGCTCCACCATCCATTATCGTACAGGAGATGCGCAAGAGAATTGACATGTGGAAGTCGAATAAGGTAGAATGGAAGGGGCAAGAGATCGTTTTATTGGGGAACCAAGGCGTTGGATTTGGGAACCTGACCGCAACCGCGGAGAATGTGCAGCCAGGAAAGGAAATAAAGGCAACTCAAGCAACAGATTTGTTGGTGAAAGCCGCTACAAATTGCTGTGGGCGACTGATAGACCGGTTCTGTTGCATGTGTTTCATAAAGTCTTGTATGTACATGAATGACAGCTTCTCAATCTCGATTCGACGAATCGCAGTTTCTTCCCAGGATATGAAGATCCGTTTGGTTTTGCTCGGTTCGCGGTTTCTATTTTTCTTCGTTCTCGTTTCTATCGCATTTTCTGGCATATTTGCAAGTAATGGAGGTATGGAAACGGAGAAAACATTGGCTATGATAAAACCAGATGGCTTGCGCGGTAACTACACCGATAGTATCAGAAGGGCCATTGTGGAGTCCGGATTCAGGATTTTGAAGGAAAGAGTAGTTGAATTGGATGAAGATAGAGCAAGTCGCTTTTATGCCGAACATTCGTCAAAAAGCTTCTTTCCTACTTTGGTCAAATACATGACGAGTGGCCCAGTATGCGTTATGGTTTTGGAGAAACAAAATGCCATTGCAGATTGGCGTGCTATGATTGGGCCAACAGATGCAACGAAAGCTAAGGCTACGCATCCTAATAGCATTAGGGCAATGTGTGGCTTGGATTCAGAGAAAAACTGTGTTCATGGTTCAGATTCTCTTCAATCAGCTCAAAGAGAGATCTCATTTTTCTTTGAAGAAACTGGTGAAATAGTTGGAAAACATGATGAATTATAA ATGGCCGGCGAGTTTTCCAACTGCGTTGAGTACGGTCTCCATTTGTCGAAGCGAATTTACTATGGCAAAGGATCGGCGCCGGCGGCTTTAGGGCGGCAGATGTCTAGAGTATCGGAGGATTACCTTCCGACGGCTCCGATGGTGTATGCCGTTATACCGGACCCGACGATTGTGGACAATCCGGATGTTCCGAGCTATCAACCTTACGTGCACGGGCGCTGCGTACCACCGGTGTTGATTCCGCTGCATATGAATGGAGTTGCCATGGAAATCGATTGTTGTTTCGATACTGCGTTCATTGGCGTTAGCGGAACGTGGCGCGTGCATTGCGTGATGGCGGGGAAAGGCTGTGAGTGCCTTATAGCGGTGCCGATGGGAGAGCAGGGTTCACTTCTAGGTGTTGAAGTCGATGTTACTGGAACGTCATATCGCACTGAATTAGTCTCCATGGAAGACGCGGAAGCTATACAGAAACTAGCAAAATCTGAAGATGGAAAGTTTCTGAAAGGGCGCCGGATATACACATTAAAAATCCCCAAGGTCGATGGTGGCTGTACTCTTTCAGTTCGAATCAATTGGTCCCAGAGAATACCATACCTTGATGATCTCTTCTGTCTCAATGTACCTTTCAATTTTCCAGCATATTTAGTTCCTCCTGGGAAAAAAGTCAAGAATATTCAGAAGATCTTATTGCATATAAATTCCGGTATTTCATCAGAAATTGTATGTAAACATACAAGCCATCCGATGAAGATACTAAGTCGAGAGGTTGGCAGCTTAAGTTTCTCAAACGAGACAGAGGTCTCAGCATGGTCAAATATAGATTTCGATCTTTCGTATTCTATTTCTCCTAGTGACTTGTTTGGGGGTGTTCTGCTCCAATCGCCATCTCTTCATGATTTTGATCAAAGAGAGATGTTTTGTCTGTACATTTTCCCCGGCCAGAACCAGAACCGGAAGGTTTTCAGAAAGGAAGTAGTATTTATTATTGACATAAGTGGAAGCATGAAGGGTGGTCCTCTCGAGAGTACAAAACGCGCAGTGCTCGCGTCAATTTCGAAGTTGAATCATGAAGATACATTTAACATTATAGCGTTCAATGGAGACACTAAATTATTTTCATCATCGATGGAGCAAGCAACCAACGAAGCAATTACTAGAGCAACAGAATGGATTGACGCTAATCTAGTAGCTAATGGTGGCACTAACATCCTGCTTCCCGTGGAACAGGCTATAAAGATGTTGGCTGAAACTGGAAATTCAATTCCCCTCATTTTTCTCATTACAGATGGCTCTGTTAATAATGAGAGAGAAATATGTAATCTTGTGAAAGCTTCTTTGAAGAGTGGAAAGACGATCTCTCCTCGTTTATGTACTTTTGGTATTGGTACATATTGCAACCATTACTTCTTACAAATGCTATCAGAAATTGGAAGGGGTGTGTACGATGCTGCTTATGATGTAGATTTGATTGATTCTCGGTTCCAGATGTTATTCACAAAAGCCTCATCGCTCTTTCTCGCCAACATCACCGTGGATGTTTTCAAGCATCTTGCTTCCCTTGAGTTGTTTCCAACTCAAATTCCGGACCTTGCATGTGGAAGCCCGTTGATAGTATCAGGCCGATACAATGGAAGTTTTCCAGAGTCGTTCAAAGTTAGTGGCATCTTAGCGGATATGAGCGATTCCGCAATCCATCTCAAATCCCAAAGAGCTAAAGAACTGCTTCTTGAAAGGGTGCTTGCGAGAAGACAAATTGATATAATGACTTCACATGCATGGTTATTGGAGAGCAAGGACCTAGAAGATAAGATTGCTTGTATGAGCAAACAAACTGGGTTTCCGTCCGAGTATACACGTTTGATTCTAATGCTGACCAAGGAAGGGAAAAAAGCTCCACCATCCATTATCGTACAGGAGATGCGCAAGAGAATTGACATGTGGAAGTCGAATAAGGTAGAATGGAAGGGGCAAGAGATCGTTTTATTGGGGAACCAAGGCGTTGGATTTGGGAACCTGACCGCAACCGCGGAGAATGTGCAGCCAGGAAAGGAAATAAAGGCAACTCAAGCAACAGATTTGTTGGTGAAAGCCGCTACAAATTGCTGTGGGCGACTGATAGACCGGTTCTGTTGCATGTGTTTCATAAAGTCTTGTATGTACATGAATGACAGCTTCTCAATCTCGATTCGACGAATCGCAGTTTCTTCCCAGGATATGAAGATCCGTTTGGTTTTGCTCGGTTCGCGGTTTCTATTTTTCTTCGTTCTCGTTTCTATCGCATTTTCTGGCATATTTGCAAGTAATGGAGGTATGGAAACGGAGAAAACATTGGCTATGATAAAACCAGATGGCTTGCGCGGTAACTACACCGATAGTATCAGAAGGGCCATTGTGGAGTCCGGATTCAGGATTTTGAAGGAAAGAGTAGTTGAATTGGATGAAGATAGAGCAAGTCGCTTTTATGCCGAACATTCGTCAAAAAGCTTCTTTCCTACTTTGGTCAAATACATGACGAGTGGCCCAGTATGCGTTATGGTTTTGGAGAAACAAAATGCCATTGCAGATTGGCGTGCTATGATTGGGCCAACAGATGCAACGAAAGCTAAGGCTACGCATCCTAATAGCATTAGGGCAATGTGTGGCTTGGATTCAGAGAAAAACTGTGTTCATGGTTCAGATTCTCTTCAATCAGCTCAAAGAGAGATCTCATTTTTCTTTGAAGAAACTGGTGAAATAGTTGGAAAACATGATGAATTATAA MAGEFSNCVEYGLHLSKRIYYGKGSAPAALGRQMSRVSEDYLPTAPMVYAVIPDPTIVDNPDVPSYQPYVHGRCVPPVLIPLHMNGVAMEIDCCFDTAFIGVSGTWRVHCVMAGKGCECLIAVPMGEQGSLLGVEVDVTGTSYRTELVSMEDAEAIQKLAKSEDGKFLKGRRIYTLKIPKVDGGCTLSVRINWSQRIPYLDDLFCLNVPFNFPAYLVPPGKKVKNIQKILLHINSGISSEIVCKHTSHPMKILSREVGSLSFSNETEVSAWSNIDFDLSYSISPSDLFGGVLLQSPSLHDFDQREMFCLYIFPGQNQNRKVFRKEVVFIIDISGSMKGGPLESTKRAVLASISKLNHEDTFNIIAFNGDTKLFSSSMEQATNEAITRATEWIDANLVANGGTNILLPVEQAIKMLAETGNSIPLIFLITDGSVNNEREICNLVKASLKSGKTISPRLCTFGIGTYCNHYFLQMLSEIGRGVYDAAYDVDLIDSRFQMLFTKASSLFLANITVDVFKHLASLELFPTQIPDLACGSPLIVSGRYNGSFPESFKVSGILADMSDSAIHLKSQRAKELLLERVLARRQIDIMTSHAWLLESKDLEDKIACMSKQTGFPSEYTRLILMLTKEGKKAPPSIIVQEMRKRIDMWKSNKVEWKGQEIVLLGNQGVGFGNLTATAENVQPGKEIKATQATDLLVKAATNCCGRLIDRFCCMCFIKSCMYMNDSFSISIRRIAVSSQDMKIRLVLLGSRFLFFFVLVSIAFSGIFASNGGMETEKTLAMIKPDGLRGNYTDSIRRAIVESGFRILKERVVELDEDRASRFYAEHSSKSFFPTLVKYMTSGPVCVMVLEKQNAIADWRAMIGPTDATKAKATHPNSIRAMCGLDSEKNCVHGSDSLQSAQREISFFFEETGEIVGKHDEL Homology
BLAST of Csor.00g084500 vs. ExPASy Swiss-Prot
Match: Q6NLG3 (Probable nucleoside diphosphate kinase 5 OS=Arabidopsis thaliana OX=3702 GN=At1g17410 PE=2 SV=1) HSP 1 Score: 195.7 bits (496), Expect = 2.4e-48 Identity = 93/144 (64.58%), Postives = 119/144 (82.64%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy Swiss-Prot
Match: B0USF1 (Nucleoside diphosphate kinase OS=Histophilus somni (strain 2336) OX=228400 GN=ndk PE=3 SV=1) HSP 1 Score: 123.6 bits (309), Expect = 1.1e-26 Identity = 60/138 (43.48%), Postives = 95/138 (68.84%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy Swiss-Prot
Match: Q9CM17 (Nucleoside diphosphate kinase OS=Pasteurella multocida (strain Pm70) OX=272843 GN=ndk PE=3 SV=1) HSP 1 Score: 123.2 bits (308), Expect = 1.5e-26 Identity = 61/139 (43.88%), Postives = 89/139 (64.03%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy Swiss-Prot
Match: Q8DEZ5 (Nucleoside diphosphate kinase OS=Vibrio vulnificus (strain CMCP6) OX=216895 GN=ndk PE=3 SV=1) HSP 1 Score: 122.5 bits (306), Expect = 2.5e-26 Identity = 64/139 (46.04%), Postives = 89/139 (64.03%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy Swiss-Prot
Match: Q7MNF4 (Nucleoside diphosphate kinase OS=Vibrio vulnificus (strain YJ016) OX=196600 GN=ndk PE=3 SV=1) HSP 1 Score: 122.5 bits (306), Expect = 2.5e-26 Identity = 64/139 (46.04%), Postives = 89/139 (64.03%), Query Frame = 0
BLAST of Csor.00g084500 vs. NCBI nr
Match: KAG6575435.1 (putative nucleoside diphosphate kinase 5, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1837 bits (4757), Expect = 0.0 Identity = 920/920 (100.00%), Postives = 920/920 (100.00%), Query Frame = 0
BLAST of Csor.00g084500 vs. NCBI nr
Match: TYK03939.1 (von Willebrand factor A domain-containing protein 5A isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 1614 bits (4179), Expect = 0.0 Identity = 797/909 (87.68%), Postives = 851/909 (93.62%), Query Frame = 0
BLAST of Csor.00g084500 vs. NCBI nr
Match: KAG7013979.1 (von Willebrand factor A domain-containing protein, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1454 bits (3763), Expect = 0.0 Identity = 724/726 (99.72%), Postives = 724/726 (99.72%), Query Frame = 0
BLAST of Csor.00g084500 vs. NCBI nr
Match: XP_022953610.1 (uncharacterized protein LOC111456095 isoform X1 [Cucurbita moschata]) HSP 1 Score: 1446 bits (3744), Expect = 0.0 Identity = 716/724 (98.90%), Postives = 720/724 (99.45%), Query Frame = 0
BLAST of Csor.00g084500 vs. NCBI nr
Match: XP_023549064.1 (uncharacterized protein LOC111807537 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1443 bits (3735), Expect = 0.0 Identity = 713/724 (98.48%), Postives = 720/724 (99.45%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy TrEMBL
Match: A0A5D3C0Q7 (Nucleoside-diphosphate kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold347G001360 PE=3 SV=1) HSP 1 Score: 1614 bits (4179), Expect = 0.0 Identity = 797/909 (87.68%), Postives = 851/909 (93.62%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy TrEMBL
Match: A0A6J1GQ62 (uncharacterized protein LOC111456095 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111456095 PE=4 SV=1) HSP 1 Score: 1446 bits (3744), Expect = 0.0 Identity = 716/724 (98.90%), Postives = 720/724 (99.45%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy TrEMBL
Match: A0A6J1JWR1 (uncharacterized protein LOC111488566 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111488566 PE=4 SV=1) HSP 1 Score: 1431 bits (3705), Expect = 0.0 Identity = 711/724 (98.20%), Postives = 716/724 (98.90%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy TrEMBL
Match: A0A1S3CH51 (von Willebrand factor A domain-containing protein 5A isoform X2 OS=Cucumis melo OX=3656 GN=LOC103500681 PE=4 SV=1) HSP 1 Score: 1328 bits (3436), Expect = 0.0 Identity = 651/724 (89.92%), Postives = 689/724 (95.17%), Query Frame = 0
BLAST of Csor.00g084500 vs. ExPASy TrEMBL
Match: A0A5A7UW49 (von Willebrand factor A domain-containing protein 5A isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold242G001140 PE=4 SV=1) HSP 1 Score: 1327 bits (3435), Expect = 0.0 Identity = 651/724 (89.92%), Postives = 689/724 (95.17%), Query Frame = 0
BLAST of Csor.00g084500 vs. TAIR 10
Match: AT1G19110.1 (inter-alpha-trypsin inhibitor heavy chain-related ) HSP 1 Score: 706.1 bits (1821), Expect = 3.8e-203 Identity = 351/729 (48.15%), Postives = 486/729 (66.67%), Query Frame = 0
BLAST of Csor.00g084500 vs. TAIR 10
Match: AT1G72500.1 (LOCATED IN: plasma membrane; EXPRESSED IN: 23 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: von Willebrand factor, type A (InterPro:IPR002035); BEST Arabidopsis thaliana protein match is: inter-alpha-trypsin inhibitor heavy chain-related (TAIR:AT1G19110.1); Has 1407 Blast hits to 1406 proteins in 307 species: Archae - 6; Bacteria - 522; Metazoa - 484; Fungi - 59; Plants - 110; Viruses - 0; Other Eukaryotes - 226 (source: NCBI BLink). ) HSP 1 Score: 698.7 bits (1802), Expect = 6.1e-201 Identity = 364/755 (48.21%), Postives = 500/755 (66.23%), Query Frame = 0
BLAST of Csor.00g084500 vs. TAIR 10
Match: AT1G17410.1 (Nucleoside diphosphate kinase family protein ) HSP 1 Score: 208.0 bits (528), Expect = 3.3e-53 Identity = 103/175 (58.86%), Postives = 135/175 (77.14%), Query Frame = 0
BLAST of Csor.00g084500 vs. TAIR 10
Match: AT1G17410.2 (Nucleoside diphosphate kinase family protein ) HSP 1 Score: 195.7 bits (496), Expect = 1.7e-49 Identity = 93/144 (64.58%), Postives = 119/144 (82.64%), Query Frame = 0
BLAST of Csor.00g084500 vs. TAIR 10
Match: AT5G63310.1 (nucleoside diphosphate kinase 2 ) HSP 1 Score: 100.1 bits (248), Expect = 9.6e-21 Identity = 59/158 (37.34%), Postives = 92/158 (58.23%), 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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