Csor.00g224180 (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.ATGGCGGCTTTCCTTCTTCTCTCTTCTCCTTCTTTCACCTTCCACAGGTTTTTTCTTTTCCCTTTCTTCATCTGTTTCTCAGGGAACATTTTGAAATTTTATTCTTCTTTTTCAGAATTCGTATTCCTGAGGTTTTCTTTTTTTAACTGGTTCATTGTTTTTTGAATTATGTGAAATATGACCTCTGAATGGCGTTGATGCTGTTATCGGTTATGTATTTTGATTCTACTAGTGAATTTTGTTGAAATTGGAATGCTGTTGCTTGCACATCCATTAGTTTATACTTTTAATGTCATTTCTAGGTTGGTGGCAGCGAGTTCGAATGTTTCCTTATGACTCTTGTGTTTTTGAGATGTGTAATGTGGAGGAAGTTTGTGGTTTCGCTGCTAATTTTTCGTGCATCAACTACATAGATAGTGAATTTGCTGCAAAATAGTAAAATTCTGTCTCTGTTGATATTGAGGAAATGAGAAAAAAGAGCTATTATATCATTATATGTTACCGATTCGAAGTTTGATTGTGGTGTAATTTGACAACACTTCGGATTACAGAGTTGCTAATGTCTTTTCTGCTGATTACATTTGGTTTTTAGTCGGTATATGCTTCGGCTACTGTAAAATAGTTGATGAAGATGCTCTAAGCAATTTTAGGAGATCAATTATTCTAATTCTTTTTCTTGAATATCTTAGGATGAGCGAAATCTGTCTTTGCATGCAGTCCTTGCAGCTGCAAAAGGGCATCACATGCTCCTCAGTTAGCCTTCAAAAACAGAAATGTAATATCAAGCTTTATGCGGTACCTGTTAGAGCCTTTTCTTGTCGATTTGCATCGACTGGTTCTGCTTCTAGTAGAGCTGATTTGGGCAGTCAGAGGAAACATATTGCTTCTGCCTTCACTGTTCCAAATGGGTATCAGAGGTTAGGACCAAATTAGTAATTTCATTATTGTCTTTGAGAATGCTGTCAAGAGGTGTCTCTGTCGTTCAGATAAAATATTGAATGATTATTTTATAGTAGGCCTGGTCACATGCACTACCGTACTGATGGGACCAGCACGAGTGAATTTGAGGGTCAATTGGACGAATTATTCAACGAAGTCAGAATGCTGATTGTTAGCGGAAGGAAGAGTGATGCTGTTGAGCTACTTCAAGCAAATTATGAAGCTGTAAAAGAACAGATGGAATCAGGTGCTATTGGCATTGAACAAGCTGCTGTTCTTGACATCGTGGCTTTGGGGTATATAACTGTTGGAGACTTGAAGTTTGTTGCTTCTATACTGGATATAGTAACTTCTTTTTCCCTTATCATCTATACAATAGTTGATTTGAACAATTCAGTGCACCTCTGTTCTGTGCAACAAGGATTATACTCATATGACTTGGGTTTTTTTTCTGTTTAGGTTATGATCTAGCCATAGTTACTTTCGGGGGACTTTCATGTGTAAAAATTCTAGTTCAAGTACCTATAAACTGGCATTTGTTGGTTGAGTCGTTTGGCCCATGTTGTATTGACTGTATGATAGCCGGTAAGGAGGCAAGGTCAGAGACCATGTATAGGTGTGAGATCCTACATCGATCGGAGAGAGGAACGAGTGTCAGTGAGAACGCTGGGCCCCGAAGGGGGCGGATTGTGAGATCCCACATGGGTTGGAGAGGAGAACAAAGCATCTTTACAAGTGTGTGTGGAAACCCCTCCCTAGCAAACACGTTTTAAAAACCTTGAGGAGAAGTCCGAAAGAGAAAGTCTAAAGAGGACGATATCTGCTAGCAGTGGGCTAGTGGGCTTGGGTTGTGACAATAGGACTCAGCAATTCCTTTTCCTCTTTTCCTCTTGATGGCATTTTAATTCTGTTTCAAAAATTATATGAGCATGTCCGGGCCTTATTCTTGCTCAAAGCAAGTACACATGGTCATCTAGCAATGCGTTCACATTTTTTTAGCTGATTTTGGAGTAATAAAGAGGTAGCTTTTAATGTTTACCTCATTCTTACGCTCCAAAAGTATTCCATACTTTTACAGCCAAAGTTTCAACTGGTCAATCCTCTGGACTCCCTTCAATTTTCTACTGAGTAACATGATTCTCTTCTTGTTTCCTTCTTCTGATCAATTTTCATATATGCAGTTGAACAACATTGTTGACAGTCTGAAGGACAATGAACCTTGTCTGGATTCAGTGCTTCTGCATATGGGGAGCATGTACTCGACTTTAAAGAAGTTAGAGAAATCAATGTCTGCGTACAAGAGGGCTATTGACATCATAGAGAAGAAAAGTGGTACGGAAGATTTTGGGGACACATATTTATTCATCGAACTAATGCTTTAATGATTTTGCTCAAGTTCTCCTGTTTCAGTTTATTTTTCTGATTTAATATATCTATAACCTCCTTAATAGCTACAAAAGCAACCTTGGGGCCAGGTAGAGAGTACCCGTGCCTAAAAGCTACAAAAGCAAAACCTTCCAATTGTTAATAATGTCTCACCACCTTAAATAAGGTTCTCTTGATGATCTCATAAAGAAGAAAAATCAACTTTGGTGGACTTTATCATGTTTTTCACTAGTTTTTATATTCCTCTTTAAATCTTCTTACAATGAGTCCTTTGCAGGAAAAGACAGTAGCTTTCTCATCACTCCAATTTTAGGGATGGCAAAAGTTCTTGGTACCAGTGGAAAAACTACAAAAGCAGTAGAATCTTACCATCGTGCAATTTCAATTTTGGAATCAACCAGAGGCTTTGAGGACGAGGATTTGGTTATACCTTTATTTAGTCTGGGCAACCTTTTGCTCAAAGAAGGAAAAGGCAAGGATGCAGAAACTTGTTTTGCTAGGTACGATCTCTCGCCGTCTCTCTCGCTTTGCTTCGAACTATTCACTTACTTTTATGGTTCTATATAGGATTGTGAACATATACAAAAAGTTATATGGAGAGAAAGATGGAAAAGTTGGAATGGCTATGTATTCTCTGGCTAATGCGAAGTGTGCAAGAGGTAATTTTGTGTATACTTGTGTCATCTTTCGAACACCAGCAAGATTGTTCATTTGCTGAATGTTCTCCCACTTTTCCACAGGGGAAGCAGACGAAGCTATTACCTTGTATAGAAGAGCTTTGCAGATTATAAAGGATTCAAATTATATGGCTTTAGATGATAGCGAGATGGAGAAGATGAGGATTGATTTGGCAGAACTACTACATGCTGTAGGAAGGTAATGTCATTACTGATATTGGGATTTCTTCTTTTACTCCGCCCGGATGTTATTGCTCAGATTTATGGGTCTGAAAACGTCTTCAAACATAATTATTTGAACCCAAATAACTGAAATAGAAGATAAAAATTGTAACCGCCCAAGCCCACCACTAGTATATATTGTCCTCCATTAGTTTTTCCCATTCGGGCTTTTCCTTAAGGTTTTTAAAACACGTCTGCTAGGGAGAGGTTTTCACACCCTTATAAAAAATGCTTCGTTCATCTTTTCAATCAATGTGGGATCTCAGAATCCACCCCCCATCGGAGCCAGTGTCCTCGCTTGCACTCGTTTCTCTCTCCAATCAACATGAGATCTCACAATCCACCCCTCTGGCAAATCGCCCGGTGTCCCCCCCTTCGGAACTTAACGTCCTCATTGGCACACCGTCCGGTGTTTGACTCTGATACATTTGTAACAGCCCAAGCCCACCACAAGCAAATATTGCCCTCTTTGGTTTTCCCATTCGGGATCCCTTTCAAGGTTTTTAAAACGCGTTTGTGAAGGAGAGGTTTCCGCATCCTTATTATAAAGAATGATTTGTTCCCCTCTCCAACCAATGTGGAATCTCACAATCTACTCCATTTCGAGTACTAGCATCCTGTTGGCATTCGTTCCTCTGTCCAACTGATGTGAAACATCTTCAAACTTAATTATTGAACCCAATTAACCAAAATAGAAGATAAAAGTGAAAAAAAAAATGATAATAATTCTCGAGTAATTCAGGTACTTAGACTCTCTCTCTAGCCTAAATCAATTCTTGCATTTATAATCAATTCTTAACTTTGGCTAATAATTAATATGCTCTTGCTATTCGGATAGTATTCCTAACTACCCAAGTGTTCATGAATTCCTGGAATGGTTTGTTACAGAGGGAAGGAAGGCAGGGAACTTCTGGAAGAGTGCTTGTTGATCAATGAAAAGTCAAAAGGAAAAGACCATCCCAGCTCAGTGAAGCACCTTGTAAACCTTGCAGCTTCTTATTCACGGTCAAAGAATTACGCCGAGGCCGAGCGTTTACTGCGAATCGGATTAGACATTATGGTAAAAGCAGTGGGACCAGATGATCAATCAATTACAAATCCAATGTTGAATCTCGCTGTCACTCTTTACAATCTAAAACAAGACGATGATGCCGAGCAACTTGCACTAGAAGTCTTGCGAATACGGGAAAATGCATTCGGAAAAGATTGTCTTCCTGTTGGTGAGAACTGAGAATTGCTTCTATTTCTACTTGATGGATAGTGATCTTAGATCATCTTCACATAAGCTCCTCTTTTTATTGAACTGCACGCAGGTGAAGCTCTAGATTGTCTGGTTTCCATTCAGAGCAGGCTCGGAAAGGACGAAACCGAGCTACTGAAGCTGCTAAAGAGAATTCTAAGAATCCAGGAGAAAGCGTTCGGGTACGAGGCAAAAGAAGTCATTGACACCCTCAAGAAAATAGTATTCTACATGGATAAACTAGGAATGAAAGATGAGAAGTTTCCAGTTCAAAAACGACTGTCCCTGCTTCGAACGAAATTCAAGAACCAGATGCAATACTAACGGTACTCATCATTCATCCATCTTTCTTAATCTTGTGATTATATTTTCCCTTCTTTGAGTTAGAGATGAGGTTTCTGGGTTAACTATATACATAGATTGCATATATTTCGATGGTCATATCGATTTAATTATGATATATCCCGAGCTTACTTTGAATTGTGATTCTACGTAGTTCCTAAAAAGAGTTATGATATATCCCGAGCTTACTTTGAATCTTGATTCTATGTAATTCCTAAAAAGAGTTATAATATCTCGAGCTTACTTTGAATTGTGATTGTATGTAGTTCCTAAAGAGTTATAATATATCCCGAGCTTGCTTTCAATTGTGATTATATGTAGTTCTTAAAAAGAGTTATGATATATCCCAAGCTTATTTTGAATTGTGATTCTATGTAGTTCCTAAAAAGAGTTATAATATCTTGAGCTTACTTTGAATTGTGATTCTACGTGGTTCTTAAAGAGTTATAATATATCCCGAGCTTGCTTTGAATTTTTAATTTTGATTCTATGTAGTTTCTAAAAAGAGTTATAATATATCCCGAGCTTACTTTGAATTGTGATGGTATGTAGTTCCTAAAGAGTTATAATATAGCCCGAGTTTAATTTAAATTGTGATTCTATATAGTTCCTAAAGAGTTATAATATAGTCCGAGTTTAATTTGAAGTGTGATTCTATGTAGTTCCTAAAAAGAGTTATAATATCTCGAGCTTACTTTGAATTGTGATTGTATGGAGTTCTTAAAGAGTTATAATATATCCCAAGTTCACTTTGAATTGTGATTCTATGTAGTTCCTATAAATAGTTATAATATATCTCGAGTTTACTTTGAATCGTGATTCTATGTAGTAAAACTACAAACCTGGAAGACACTTTGTTTTGGACGATATTAACCTTGCTGTTTTTAACTATTACCAAATTGTCCCTCGTTTAAGATGTACATTATTTTCAACTCTACATATTAATTTTTTTTTATTTTAAAAAAAGTAAAATTATTTATTGAATTAACTTTTATTATGAAATTAGAAAGTATCATTTTAATAATAATTAAAATATTTTTGAACTATTTACCAAAATGTAAATTAGTATAAACAAATTCTTTTGGATAAATATATCCAACATAAAATTGACCAACAAGAAAATATTATCAATTTTTTAATTTAATTATTGATGAAAATATTATCAACATAAAAATTATTACTATTTTGAATATATTTTTTGTTTTTACTTGAATTATGTTTTTACATGTTTTTATTTTTAGGTTAAATTATTCTTTTAAATGTACAATTTAGTTAGAACTTTGACATTTTATTTCATAAATGTATTTAGCAAGTTTAATTAAGTACTAATTGAATTCATCATTTATTGTTACGCATTGACTTTTTTGAATTTTTAATCCAATTTTTATACGCAATAAAAATATTTAATACAAAATTATGATAATATTTCAAAAAAATTATTTTAGTATAAAATTAACTCAAAAGGGTCCCTACTAACATTTTAGAGATGTCTATTTAATTTTTAGGGTTGTGGGACCTACCTCGGACATAATCATAGCCTAATCTAGAGATTCTCTATTAAAAAAAGGAAGTGAAAAAAGATTCCCGATTAGATTCTCTGTTTCTGTCCACTCATAGCTATTATTATTGATTCGACTATTAGTTTATTAATCGAAAAATAAACTAATTGCTATCATTTTTTTTTTTGTAGTATTTTTCTTGTCTAGTTTAATTTTATATTTCGTTTGCTTTATGATAAAAACAAATAATAATTTTACAATAAAATAATTCGACTCCAATTTTTATAGACATAATTGAAAAAAAAAAAGTATTCATTAAAAGGTTTTTTAAAAAATGATTAAAAGAATAATACACCGTGAAAAAGTTTCTGAAGAGAACCGACCACAACCAATTTCTTGCAGCAAGGAATCTCGTAAAAATAAATCGAGAATTTTAGAATGAAATAGGTGGCATGAATGGAGACGGGCGAAAATTTATATTTATTTCTCGAAAAAATGGAAAGTTGTAAGAAAATTTCAACCATTTTTTTATAAAGTATTTTATTTTATATATTTTTCATTAGGTTAAGAAAATCAGGATAAAATGTAAAGCTCTTAATTTTATAAAAATGTGAATATTAATTAATATTTTAAAGAAACTTTTAGATATAAAATATTCATAAAAATATTTAAATTAACACAATTTCACCATTTTAATATATATATATATTTTTAATTAAGTTTAAAGTAATGATATTTTGTTAATATTTTTGTTCATTAAATATAACTAAATTAGTTCCTTCATAACTAAATTAGTTAAATTAAATTAGTTAACCTATATTTTAGTTCCTTCATTTACTTTTTCCTAACCTTTTTTTGTTTTATGAAACTGCTGATTTGTTGAGTAAACTTTAAGACTTGATGCTTCGAAGACGTCGCTAAGAATCCAACAATTTCGATCCCCGGACCTCTGAAACGCGCTGATCTTTTCCACGGTAACCTTCTCCCTGCTATGGCGTTTCGGTTCTTGATTTTGCTTGTCAGATTTCGATATTAATAATATTGTGATCGCGATTACTGTTCTATTTCTGTGTTTACTTATTGAGTTCATTTTCTGGGATGACAATCGATTTTTAGTGGACAAATTTGAAGTGGATTCTGCTCGTCTTCCGGGAAGATGGCTGAATTTTGCTAATTTTTGTGGTTATTTTCTGTTGTAATTTGGGGGTTGTTTAGGATCAGAGCAAATTATGTAGAATTCCTGTCGTGCTGTTTGAATAATCGTGTCTTATGGGTAGGGGATATCCATTTTCAGAATTATCAGTTTGTTCATTGGATTGTTTTTGTTCTGATTGTCATTGAAGTGTTTTTTTTTTTTTCTTTTTCTTTTGATTGGAGAATGAAATGATATTCAAAGAGATTATGAAAAGTGAGAGAATTAGGGCTGTAGTTGTTAAATGGAGCTGTATTTTTACGCCAATAAAGTTCCATAAAAAGCAGGGCCTCTAGGACTTCTTGTGGAGATCTTTCCTTGTCTTGAAAAATCTTTGGGTTCCTGTCATTCCAAATCTTTCAAATAACCGCCCATATAATAGAAAATTGATTTTTTGGGGGTAAGGCGCTTGCCCTGTCTTCTTCTATAGCTCACAAGGATGTGAACCAACTATGTAGCATCTAAATCGAGAATTCAAGTATTGTATACGTCATTAGTCCGATCCTTTGTAGGAACTATCCATAATAACGAACTTGCAAAATGAATCTCTTTATCATAAAGAGATTTGTTGTTCTTGACACTGCTTCACCTTAAGCCAGGGGTGAAAGTCATATGTCCGATCTATATGGAATTTTGTTTATATGGTTACATTGAATTAGCCGGAGTTTATAGCCTTTCTTTGACAAACTAGCTACTCATAATGTCATGATGTAAGGCTGAAACCAGAAATGTTATTGGAATGGATCCTCTGTCATGAATCCAAGCTCGATGTTATTGTCTGTCAATGAGCTGAATAGAGGAGATGAGCTAAGATAGAGAAGCCCATTCTGAAATTTCATCTATTTGAGGTTTCTATGAAAATTCACAAAACAAGAGCTATTTGTCTTGTCCCAAACTTCTGCAATGGAAGCACTCTTTGTTTCTGCTATGGTATACAACCAAGGAAATTCAACTTTCTGCTAGAACATAGTTTCTCTTCCATCACCAACTTTGTTGTGAATGTTTCTGAAAATAAGGTCACTGTGCTTAAGAATGAAGCTTCATGGGCTTTTTTGTGGAAGCCTAGTGACGAGGGACCATTTTGAGATCAAAGTGGTAAGATCTGAATTTGGCTCTAATCCCTTTCTACATAGTGCCTCTTTTTCATGACAAAATCTGCATGTCCATTTCGCTAAGAGAGCTTTGTTCCAAATTTTTAAAGTCTAGATACCAAGCCATCCTTCCAGAATTGGCTTTTTCACCTTAGCCCTTCGAAGGAGATGAGACAAACTCTTTCTCCTATTTTAAGACCATACAAAAAATGTGATGCCAAGAATGACACCTCTTGTCAATTTTGTCTGCAATGGGCTGCCAAATAGCTAAAGCAATAGGCTTACCAGTTACCAAAGAGGGGAAGACCCAAATAAGTCGATGGCCACAATCCTACTTTGCAACCAACTTGCTAGGCTGTTCAATGCGGCCAGCTTCTCAACTAATACCCAAAAAGTTTTGATTTGTGCCGGTTGACATTAAAACCAGAAGCTTCTTCAAAGAGTATAAAAAATTTGAACAGAGTTTCAATGTCTTCCTCTTCATGCATGGAGAATAGAATGGTTATATCAACAAACAATACATGATGGATTCGCAGATATTCGTCTCCTACTTTGAAACCATTTATCAAGCTTTTGTCAGAGGCAAAGGAAACAACCTTCTAAAACAATTCATAAAAATGATGAAAAGAAAAGGAGGCAAGGGATCGCTTTGTCTAAGGCCGATCGAACTCATGATTTTTTCCCTTGGCTTGCCATTGTTGATTATATAAAAATTTACAGAAGAGATACAGCCTCTTATCCAAAGCTTCCATTTGATACAAAAGCCCTTTACTTTCAACAATTCTTGAAGAAAGTCCCAACATCAAGCTTAATTACCCTCACCTTCTCAACATCAAGCTTAATAACCACGCCTTTTTTTCTCTTGCTCTGCGGTTCTTCTATGAAATCATTCGCTACAAGAAAGGCATCCAAGATTTTCCTTCCTTCCACCGTTGCTGATTGAATTTCTGTAATTGTGGATGGCAAAACCCTCTTCAATCGATTAGAGAGGTCTCTAAGAATGATCTTGTGGAAGCATGCGGTAAGTCTAATCGGTCAGAAGTCCCCAACCTTTCTTGCGTCAATTTTCTTTGGTATATGAGATTATCGATGAAGTTATTTCCAATATTTCTCAATTCTTAGTAGATGCATGCAGTCAAAGCTAACCAAATCAGCTGTCTAAGTCCTAGCCCCTTTTGAGTTTAATGAATTGGTAGAACATATCTTCTGGATCATTGAGATTTGATTCATTATTTGCAAGTGCTATGGAATTTCTAGATGTGGACATTTCATTACTTGAGCTTGATAGACTGGTTCTTTCCATCTGAATCAAGCTTGGATATTGTAATTTCTAGACTTATTTATGGTTTTTGTCTTCTCTATTTGACTTTTAGCTGCTTTATATGTAACATAAAGTTTACAAACTTCTGTGGTATTGAACATCATGTCTAAGTTTCTAACTGATGGTTGTCTCGTCTGTATAAAACCAGTCCTGGATGTTAGAGTAATGGCTGCAGCAGAAGCGAAGCCTCCTCGAAAGCATTCAGGAAACCACTTTCCTGTCCAAGGTGATGGCTGCAGAACTTCAAAATTATTGACAACTCCACCGTTTTCCTCAAAGTCAGAATGTGATGCTGCATCTAATCATAGAGTTCGTGGGTTTTATTCCCCAACCAAAGCTGCTCATGTTCCAACGTTCTATCAAACAGTTGGCATTAAGTTGGAAACAGATGAGCAACCTAATGTTCAGCACCATAAAGATTTTGCAGTAGGATGGGCAAAAGCTTTGCAGGCTGAAGTGGATGTTTCAAGCATTCAGATTGCAAATAAAACTACTGTATCTGGTAAGGAACATCGAAACATAGAAGAATTTGATTATCGAGTTTGCAAGAATTATGTTGCCACAGAGGTTATGAGTAATAATAAGTCAGTAAACACGACCAAGAAAATAGACAGCATGGATGAGTTCCACTACATAGAGGATGATTTTACGGACTTGCACAATTTTGACAGTCAGGTCTCCAAGCAAGGAGAGAAGGTCTCTGATTTGGAGTCGCATTGGACAGGAACTGAGAAGACTAAACCATGGTGGCAATCTGCTAGTAAAGATGAGTTGGCATCCTTTGTTGCCCGGAAGTCTCTTGCAAACCTGGAAAATTGCGATCTTCCTCAACCACGAACCAAACACCAGAGAAAGGACCAATCTACCTGTCTTGAATGTTTTGAGCAAGATTGCTTTCTCACTTCATCATTTACGGAGACGCAATTATCCGGTTTGGATGAATATAACAGGGGAATGCACCCTTCAGTTGGCATGGGTGAGAGACGGTCCATTGTTAGTAAAGTAGGTCGCCCACGGCATCATCACAGTCATTTCAGGTATTGCTCGAGTACAAATCATGCATTTCTTTTTTGCTTTCTCGTTATCTTTTCCAGTTTGTCTAAGAAGTTTCTCTGATCGAGCGATCTTTTAGTAGGTTTACTTGAACTGTATTCGTCCTTTTAATCGCATGCTCCCTTATATCTCCATTATCTTTGTCTCTGTCCGAATGGGGTTGCTCTCCAGTTCTTATATTTCCCATTGTCTTGGGGATCCTGCATAGATAAGGCTTGAGCATAAAGAATATATGTTATGTTGCTTGAAAGAAAACAATTGATTAACAAGCCATAAAAAGATAACGTTCTATCTGTAATGACAACATTAGCAGAACTAGTAACGAAGAAAACAACCCAAGAAGTATTTCAAATCTGAATGTTGGCAAAGCCCAATTGCTGGAAGCACTTTGCCATTCACAAACTCGAGCAAGGGAAGCTGAGAAAGCAGCACAGGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTTTGAGACAAGCCACCCAACTTTTTGCTTACAAACAGTGGTTCCAGTTGATGCAGCTGGAGAACATTTGCCTTCAACTTAGGAGCAAAGAACATCCAGTCACTGGTCTGGTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAGTTTTATCAGCCTAGAGACAAAAGGAAGAAACGGGGCCGATATAGTCGCAAGTTTACGATGTACGAAATCGCTTTTGCTTTGGGATTGGGTCTTGCTGGTGCCGGTTTGCTCCTTGGATGGACGACGGGTTGGTTGGTTCCCATTTTTTGA ATGGCGGCTTTCCTTCTTCTCTCTTCTCCTTCTTTCACCTTCCACAGGATGAGCGAAATCTGTCTTTGCATGCAGTCCTTGCAGCTGCAAAAGGGCATCACATGCTCCTCAGTTAGCCTTCAAAAACAGAAATGTAATATCAAGCTTTATGCGGTACCTGTTAGAGCCTTTTCTTGTCGATTTGCATCGACTGGTTCTGCTTCTAGTAGAGCTGATTTGGGCAGTCAGAGGAAACATATTGCTTCTGCCTTCACTGTTCCAAATGGGTATCAGAGTAGGCCTGGTCACATGCACTACCGTACTGATGGGACCAGCACGAGTGAATTTGAGGGTCAATTGGACGAATTATTCAACGAAGTCAGAATGCTGATTGTTAGCGGAAGGAAGAGTGATGCTGTTGAGCTACTTCAAGCAAATTATGAAGCTGTAAAAGAACAGATGGAATCAGGTGCTATTGGCATTGAACAAGCTGCTGTTCTTGACATCGTGGCTTTGGGGTATATAACTGTTGGAGACTTGAAGTTTGTTGCTTCTATACTGGATATATTGAACAACATTGTTGACAGTCTGAAGGACAATGAACCTTGTCTGGATTCAGTGCTTCTGCATATGGGGAGCATGTACTCGACTTTAAAGAAGTTAGAGAAATCAATGTCTGCGTACAAGAGGGCTATTGACATCATAGAGAAGAAAAGTGGAAAAGACAGTAGCTTTCTCATCACTCCAATTTTAGGGATGGCAAAAGTTCTTGGTACCAGTGGAAAAACTACAAAAGCAGTAGAATCTTACCATCGTGCAATTTCAATTTTGGAATCAACCAGAGGCTTTGAGGACGAGGATTTGGTTATACCTTTATTTAGTCTGGGCAACCTTTTGCTCAAAGAAGGAAAAGGCAAGGATGCAGAAACTTGTTTTGCTAGGATTGTGAACATATACAAAAAGTTATATGGAGAGAAAGATGGAAAAGTTGGAATGGCTATGTATTCTCTGGCTAATGCGAAGTGTGCAAGAGGGGAAGCAGACGAAGCTATTACCTTGTATAGAAGAGCTTTGCAGATTATAAAGGATTCAAATTATATGGCTTTAGATGATAGCGAGATGGAGAAGATGAGGATTGATTTGGCAGAACTACTACATGCTGTAGGAAGAGGGAAGGAAGGCAGGGAACTTCTGGAAGAGTGCTTGTTGATCAATGAAAAGTCAAAAGGAAAAGACCATCCCAGCTCAGTGAAGCACCTTGTAAACCTTGCAGCTTCTTATTCACGGTCAAAGAATTACGCCGAGGCCGAGCGTTTACTGCGAATCGGATTAGACATTATGGTAAAAGCAGTGGGACCAGATGATCAATCAATTACAAATCCAATGTTGAATCTCGCTGTCACTCTTTACAATCTAAAACAAGACGATGATGCCGAGCAACTTGCACTAGAAGTCTTGCGAATACGGGAAAATGCATTCGGAAAAGATTGTCTTCCTGTTGGTGAAGCTCTAGATTGTCTGGTTTCCATTCAGAGCAGGCTCGGAAAGGACGAAACCGAGCTACTGAAGCTGCTAAAGAGAATTCTAAGAATCCAGGAGAAAGCGTTCGGGTACGAGGCAAAAGAAGTCATTGACACCCTCAAGAAAATAGTATTCTACATGGATAAACTAGGAATGAAAGATGAGAAGTTTCCATTTCTAAAAAGAGTTATAATATATCCCGAGCTTACTTTGAATTGTGATGACGTCGCTAAGAATCCAACAATTTCGATCCCCGGACCTCTGAAACGCGCTGATCTTTTCCACGTCCTGGATGTTAGAGTAATGGCTGCAGCAGAAGCGAAGCCTCCTCGAAAGCATTCAGGAAACCACTTTCCTGTCCAAGGTGATGGCTGCAGAACTTCAAAATTATTGACAACTCCACCGTTTTCCTCAAAGTCAGAATGTGATGCTGCATCTAATCATAGAGTTCGTGGGTTTTATTCCCCAACCAAAGCTGCTCATGTTCCAACGTTCTATCAAACAGTTGGCATTAAGTTGGAAACAGATGAGCAACCTAATGTTCAGCACCATAAAGATTTTGCAGTAGGATGGGCAAAAGCTTTGCAGGCTGAAGTGGATGTTTCAAGCATTCAGATTGCAAATAAAACTACTGTATCTGGTAAGGAACATCGAAACATAGAAGAATTTGATTATCGAGTTTGCAAGAATTATGTTGCCACAGAGGTTATGAGTAATAATAAGTCAGTAAACACGACCAAGAAAATAGACAGCATGGATGAGTTCCACTACATAGAGGATGATTTTACGGACTTGCACAATTTTGACAGTCAGGTCTCCAAGCAAGGAGAGAAGGTCTCTGATTTGGAGTCGCATTGGACAGGAACTGAGAAGACTAAACCATGGTGGCAATCTGCTAGTAAAGATGAGTTGGCATCCTTTGTTGCCCGGAAGTCTCTTGCAAACCTGGAAAATTGCGATCTTCCTCAACCACGAACCAAACACCAGAGAAAGGACCAATCTACCTGTCTTGAATGTTTTGAGCAAGATTGCTTTCTCACTTCATCATTTACGGAGACGCAATTATCCGGTTTGGATGAATATAACAGGGGAATGCACCCTTCAGTTGGCATGGGTGAGAGACGGTCCATTGTTAGTAAAGTAGGTCGCCCACGGCATCATCACAGTCATTTCAGCAGAACTAGTAACGAAGAAAACAACCCAAGAAGTATTTCAAATCTGAATGTTGGCAAAGCCCAATTGCTGGAAGCACTTTGCCATTCACAAACTCGAGCAAGGGAAGCTGAGAAAGCAGCACAGGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTTTGAGACAAGCCACCCAACTTTTTGCTTACAAACAGTGGTTCCAGTTGATGCAGCTGGAGAACATTTGCCTTCAACTTAGGAGCAAAGAACATCCAGTCACTGGTCTGGTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAGTTTTATCAGCCTAGAGACAAAAGGAAGAAACGGGGCCGATATAGTCGCAAGTTTACGATGTACGAAATCGCTTTTGCTTTGGGATTGGGTCTTGCTGGTGCCGGTTTGCTCCTTGGATGGACGACGGGTTGGTTGGTTCCCATTTTTTGA ATGGCGGCTTTCCTTCTTCTCTCTTCTCCTTCTTTCACCTTCCACAGGATGAGCGAAATCTGTCTTTGCATGCAGTCCTTGCAGCTGCAAAAGGGCATCACATGCTCCTCAGTTAGCCTTCAAAAACAGAAATGTAATATCAAGCTTTATGCGGTACCTGTTAGAGCCTTTTCTTGTCGATTTGCATCGACTGGTTCTGCTTCTAGTAGAGCTGATTTGGGCAGTCAGAGGAAACATATTGCTTCTGCCTTCACTGTTCCAAATGGGTATCAGAGTAGGCCTGGTCACATGCACTACCGTACTGATGGGACCAGCACGAGTGAATTTGAGGGTCAATTGGACGAATTATTCAACGAAGTCAGAATGCTGATTGTTAGCGGAAGGAAGAGTGATGCTGTTGAGCTACTTCAAGCAAATTATGAAGCTGTAAAAGAACAGATGGAATCAGGTGCTATTGGCATTGAACAAGCTGCTGTTCTTGACATCGTGGCTTTGGGGTATATAACTGTTGGAGACTTGAAGTTTGTTGCTTCTATACTGGATATATTGAACAACATTGTTGACAGTCTGAAGGACAATGAACCTTGTCTGGATTCAGTGCTTCTGCATATGGGGAGCATGTACTCGACTTTAAAGAAGTTAGAGAAATCAATGTCTGCGTACAAGAGGGCTATTGACATCATAGAGAAGAAAAGTGGAAAAGACAGTAGCTTTCTCATCACTCCAATTTTAGGGATGGCAAAAGTTCTTGGTACCAGTGGAAAAACTACAAAAGCAGTAGAATCTTACCATCGTGCAATTTCAATTTTGGAATCAACCAGAGGCTTTGAGGACGAGGATTTGGTTATACCTTTATTTAGTCTGGGCAACCTTTTGCTCAAAGAAGGAAAAGGCAAGGATGCAGAAACTTGTTTTGCTAGGATTGTGAACATATACAAAAAGTTATATGGAGAGAAAGATGGAAAAGTTGGAATGGCTATGTATTCTCTGGCTAATGCGAAGTGTGCAAGAGGGGAAGCAGACGAAGCTATTACCTTGTATAGAAGAGCTTTGCAGATTATAAAGGATTCAAATTATATGGCTTTAGATGATAGCGAGATGGAGAAGATGAGGATTGATTTGGCAGAACTACTACATGCTGTAGGAAGAGGGAAGGAAGGCAGGGAACTTCTGGAAGAGTGCTTGTTGATCAATGAAAAGTCAAAAGGAAAAGACCATCCCAGCTCAGTGAAGCACCTTGTAAACCTTGCAGCTTCTTATTCACGGTCAAAGAATTACGCCGAGGCCGAGCGTTTACTGCGAATCGGATTAGACATTATGGTAAAAGCAGTGGGACCAGATGATCAATCAATTACAAATCCAATGTTGAATCTCGCTGTCACTCTTTACAATCTAAAACAAGACGATGATGCCGAGCAACTTGCACTAGAAGTCTTGCGAATACGGGAAAATGCATTCGGAAAAGATTGTCTTCCTGTTGGTGAAGCTCTAGATTGTCTGGTTTCCATTCAGAGCAGGCTCGGAAAGGACGAAACCGAGCTACTGAAGCTGCTAAAGAGAATTCTAAGAATCCAGGAGAAAGCGTTCGGGTACGAGGCAAAAGAAGTCATTGACACCCTCAAGAAAATAGTATTCTACATGGATAAACTAGGAATGAAAGATGAGAAGTTTCCATTTCTAAAAAGAGTTATAATATATCCCGAGCTTACTTTGAATTGTGATGACGTCGCTAAGAATCCAACAATTTCGATCCCCGGACCTCTGAAACGCGCTGATCTTTTCCACGTCCTGGATGTTAGAGTAATGGCTGCAGCAGAAGCGAAGCCTCCTCGAAAGCATTCAGGAAACCACTTTCCTGTCCAAGGTGATGGCTGCAGAACTTCAAAATTATTGACAACTCCACCGTTTTCCTCAAAGTCAGAATGTGATGCTGCATCTAATCATAGAGTTCGTGGGTTTTATTCCCCAACCAAAGCTGCTCATGTTCCAACGTTCTATCAAACAGTTGGCATTAAGTTGGAAACAGATGAGCAACCTAATGTTCAGCACCATAAAGATTTTGCAGTAGGATGGGCAAAAGCTTTGCAGGCTGAAGTGGATGTTTCAAGCATTCAGATTGCAAATAAAACTACTGTATCTGGTAAGGAACATCGAAACATAGAAGAATTTGATTATCGAGTTTGCAAGAATTATGTTGCCACAGAGGTTATGAGTAATAATAAGTCAGTAAACACGACCAAGAAAATAGACAGCATGGATGAGTTCCACTACATAGAGGATGATTTTACGGACTTGCACAATTTTGACAGTCAGGTCTCCAAGCAAGGAGAGAAGGTCTCTGATTTGGAGTCGCATTGGACAGGAACTGAGAAGACTAAACCATGGTGGCAATCTGCTAGTAAAGATGAGTTGGCATCCTTTGTTGCCCGGAAGTCTCTTGCAAACCTGGAAAATTGCGATCTTCCTCAACCACGAACCAAACACCAGAGAAAGGACCAATCTACCTGTCTTGAATGTTTTGAGCAAGATTGCTTTCTCACTTCATCATTTACGGAGACGCAATTATCCGGTTTGGATGAATATAACAGGGGAATGCACCCTTCAGTTGGCATGGGTGAGAGACGGTCCATTGTTAGTAAAGTAGGTCGCCCACGGCATCATCACAGTCATTTCAGCAGAACTAGTAACGAAGAAAACAACCCAAGAAGTATTTCAAATCTGAATGTTGGCAAAGCCCAATTGCTGGAAGCACTTTGCCATTCACAAACTCGAGCAAGGGAAGCTGAGAAAGCAGCACAGGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTTTGAGACAAGCCACCCAACTTTTTGCTTACAAACAGTGGTTCCAGTTGATGCAGCTGGAGAACATTTGCCTTCAACTTAGGAGCAAAGAACATCCAGTCACTGGTCTGGTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAGTTTTATCAGCCTAGAGACAAAAGGAAGAAACGGGGCCGATATAGTCGCAAGTTTACGATGTACGAAATCGCTTTTGCTTTGGGATTGGGTCTTGCTGGTGCCGGTTTGCTCCTTGGATGGACGACGGGTTGGTTGGTTCCCATTTTTTGA MAAFLLLSSPSFTFHRMSEICLCMQSLQLQKGITCSSVSLQKQKCNIKLYAVPVRAFSCRFASTGSASSRADLGSQRKHIASAFTVPNGYQSRPGHMHYRTDGTSTSEFEGQLDELFNEVRMLIVSGRKSDAVELLQANYEAVKEQMESGAIGIEQAAVLDIVALGYITVGDLKFVASILDILNNIVDSLKDNEPCLDSVLLHMGSMYSTLKKLEKSMSAYKRAIDIIEKKSGKDSSFLITPILGMAKVLGTSGKTTKAVESYHRAISILESTRGFEDEDLVIPLFSLGNLLLKEGKGKDAETCFARIVNIYKKLYGEKDGKVGMAMYSLANAKCARGEADEAITLYRRALQIIKDSNYMALDDSEMEKMRIDLAELLHAVGRGKEGRELLEECLLINEKSKGKDHPSSVKHLVNLAASYSRSKNYAEAERLLRIGLDIMVKAVGPDDQSITNPMLNLAVTLYNLKQDDDAEQLALEVLRIRENAFGKDCLPVGEALDCLVSIQSRLGKDETELLKLLKRILRIQEKAFGYEAKEVIDTLKKIVFYMDKLGMKDEKFPFLKRVIIYPELTLNCDDVAKNPTISIPGPLKRADLFHVLDVRVMAAAEAKPPRKHSGNHFPVQGDGCRTSKLLTTPPFSSKSECDAASNHRVRGFYSPTKAAHVPTFYQTVGIKLETDEQPNVQHHKDFAVGWAKALQAEVDVSSIQIANKTTVSGKEHRNIEEFDYRVCKNYVATEVMSNNKSVNTTKKIDSMDEFHYIEDDFTDLHNFDSQVSKQGEKVSDLESHWTGTEKTKPWWQSASKDELASFVARKSLANLENCDLPQPRTKHQRKDQSTCLECFEQDCFLTSSFTETQLSGLDEYNRGMHPSVGMGERRSIVSKVGRPRHHHSHFSRTSNEENNPRSISNLNVGKAQLLEALCHSQTRAREAEKAAQEADTEKKHIVSLFLRQATQLFAYKQWFQLMQLENICLQLRSKEHPVTGLVSDVLPWVPCKDRQFYQPRDKRKKRGRYSRKFTMYEIAFALGLGLAGAGLLLGWTTGWLVPIF Homology
BLAST of Csor.00g224180 vs. ExPASy Swiss-Prot
Match: Q07866 (Kinesin light chain 1 OS=Homo sapiens OX=9606 GN=KLC1 PE=1 SV=2) HSP 1 Score: 76.6 bits (187), Expect = 1.8e-12 Identity = 59/205 (28.78%), Postives = 98/205 (47.80%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy Swiss-Prot
Match: Q5R581 (Kinesin light chain 1 OS=Pongo abelii OX=9601 GN=KLC1 PE=2 SV=3) HSP 1 Score: 76.6 bits (187), Expect = 1.8e-12 Identity = 59/205 (28.78%), Postives = 98/205 (47.80%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy Swiss-Prot
Match: P46825 (Kinesin light chain OS=Doryteuthis pealeii OX=1051067 PE=2 SV=1) HSP 1 Score: 76.6 bits (187), Expect = 1.8e-12 Identity = 56/204 (27.45%), Postives = 96/204 (47.06%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy Swiss-Prot
Match: P37285 (Kinesin light chain 1 OS=Rattus norvegicus OX=10116 GN=Klc1 PE=1 SV=2) HSP 1 Score: 75.5 bits (184), Expect = 4.0e-12 Identity = 58/205 (28.29%), Postives = 98/205 (47.80%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy Swiss-Prot
Match: Q9H0B6 (Kinesin light chain 2 OS=Homo sapiens OX=9606 GN=KLC2 PE=1 SV=1) HSP 1 Score: 75.5 bits (184), Expect = 4.0e-12 Identity = 60/205 (29.27%), Postives = 96/205 (46.83%), Query Frame = 0
BLAST of Csor.00g224180 vs. NCBI nr
Match: KAG6605791.1 (Nephrocystin-3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 2063 bits (5344), Expect = 0.0 Identity = 1045/1045 (100.00%), Postives = 1045/1045 (100.00%), Query Frame = 0
BLAST of Csor.00g224180 vs. NCBI nr
Match: XP_022958168.1 (nephrocystin-3 isoform X3 [Cucurbita moschata] >XP_022958169.1 nephrocystin-3 isoform X3 [Cucurbita moschata]) HSP 1 Score: 1067 bits (2760), Expect = 0.0 Identity = 555/563 (98.58%), Postives = 560/563 (99.47%), Query Frame = 0
BLAST of Csor.00g224180 vs. NCBI nr
Match: XP_022995907.1 (nephrocystin-3 isoform X3 [Cucurbita maxima] >XP_022995908.1 nephrocystin-3 isoform X3 [Cucurbita maxima]) HSP 1 Score: 1047 bits (2708), Expect = 0.0 Identity = 546/563 (96.98%), Postives = 552/563 (98.05%), Query Frame = 0
BLAST of Csor.00g224180 vs. NCBI nr
Match: XP_023533270.1 (nephrocystin-3-like isoform X3 [Cucurbita pepo subsp. pepo] >XP_023533271.1 nephrocystin-3-like isoform X3 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1034 bits (2673), Expect = 0.0 Identity = 539/563 (95.74%), Postives = 552/563 (98.05%), Query Frame = 0
BLAST of Csor.00g224180 vs. NCBI nr
Match: XP_022958166.1 (nephrocystin-3 isoform X1 [Cucurbita moschata]) HSP 1 Score: 1023 bits (2645), Expect = 0.0 Identity = 532/539 (98.70%), Postives = 536/539 (99.44%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy TrEMBL
Match: A0A6J1H2E0 (nephrocystin-3 isoform X3 OS=Cucurbita moschata OX=3662 GN=LOC111459474 PE=4 SV=1) HSP 1 Score: 1067 bits (2760), Expect = 0.0 Identity = 555/563 (98.58%), Postives = 560/563 (99.47%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy TrEMBL
Match: A0A6J1K9C6 (nephrocystin-3 isoform X3 OS=Cucurbita maxima OX=3661 GN=LOC111491290 PE=4 SV=1) HSP 1 Score: 1047 bits (2708), Expect = 0.0 Identity = 546/563 (96.98%), Postives = 552/563 (98.05%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy TrEMBL
Match: A0A6J1H1D9 (nephrocystin-3 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111459474 PE=4 SV=1) HSP 1 Score: 1023 bits (2645), Expect = 0.0 Identity = 532/539 (98.70%), Postives = 536/539 (99.44%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy TrEMBL
Match: A0A6J1H150 (nephrocystin-3 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111459474 PE=4 SV=1) HSP 1 Score: 1017 bits (2629), Expect = 0.0 Identity = 531/539 (98.52%), Postives = 535/539 (99.26%), Query Frame = 0
BLAST of Csor.00g224180 vs. ExPASy TrEMBL
Match: A0A6J1K577 (nephrocystin-3 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111491290 PE=4 SV=1) HSP 1 Score: 1003 bits (2593), Expect = 0.0 Identity = 523/539 (97.03%), Postives = 528/539 (97.96%), Query Frame = 0
BLAST of Csor.00g224180 vs. TAIR 10
Match: AT5G53080.1 (Tetratricopeptide repeat (TPR)-like superfamily protein ) HSP 1 Score: 592.0 bits (1525), Expect = 9.1e-169 Identity = 315/535 (58.88%), Postives = 404/535 (75.51%), Query Frame = 0
BLAST of Csor.00g224180 vs. TAIR 10
Match: AT2G46550.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G01240.3); Has 72 Blast hits to 68 proteins in 13 species: Archae - 0; Bacteria - 0; Metazoa - 1; Fungi - 0; Plants - 71; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 154.1 bits (388), Expect = 6.3e-37 Identity = 140/456 (30.70%), Postives = 204/456 (44.74%), Query Frame = 0
BLAST of Csor.00g224180 vs. TAIR 10
Match: AT2G46550.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; EXPRESSED IN: 23 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G01240.3). ) HSP 1 Score: 147.1 bits (370), Expect = 7.7e-35 Identity = 103/277 (37.18%), Postives = 144/277 (51.99%), Query Frame = 0
BLAST of Csor.00g224180 vs. TAIR 10
Match: AT1G01240.1 (unknown protein; INVOLVED IN: N-terminal protein myristoylation; EXPRESSED IN: 17 plant structures; EXPRESSED DURING: 11 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G46550.1); Has 95 Blast hits to 78 proteins in 16 species: Archae - 0; Bacteria - 2; Metazoa - 11; Fungi - 0; Plants - 80; Viruses - 0; Other Eukaryotes - 2 (source: NCBI BLink). ) HSP 1 Score: 136.7 bits (343), Expect = 1.0e-31 Identity = 96/258 (37.21%), Postives = 147/258 (56.98%), Query Frame = 0
BLAST of Csor.00g224180 vs. TAIR 10
Match: AT1G01240.2 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G46550.1); Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 136.7 bits (343), Expect = 1.0e-31 Identity = 96/258 (37.21%), Postives = 147/258 (56.98%), 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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