Csor.00g069170 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSinitialstart_codonpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAACCCCGGAAGATGATTCTCCCGTGTTTGCTGTTGATTTTGACCTTCTTGGCGACGGATCTTGTGCGTCCTACTTATGCTATTTGGCTTAACATTCCTTCTACCGGAACCAAGTGCGTCTCTGAGGAAATCCAGAGCAACGTCGTTGTTATGGCTGATTATGTTGTAATCTCTGAGAATTACACCCATACGCCCACCATTTCCGTCAAGGTGAGCCCTCGATCGGTCAACGCTAGGGTTTTTCTAGGGTTTTTTATTTTGTTCCTGCTGGTTTTCGGGCTGATTGAATATAGAATCCTATGAAATGTTTTTACCGGTAGTTCTGATTCATTATCTTTGACGGATTGAATTCTGATTCATTATTCTGTGAGGACATTTTTCATGTATGTTTTAGTTTTGTATTATCCTCGAATATGACGGAGAATGAATGTTATTGTGTTCCACATCCATATATAATTATTAGTAGACAAACTGGTTATTGGTGAAGGACACTGGGATTATATGAACGGTGGTAGGCTCATTAGTACCTGTTGAGATTTTCACCTCATACGGCTCCTCGTTCAATTCTTTCGAAGTCATTGGATCCTTTTCCTCGTTCGAGTTCTCTTGCCCAAGCCACATATTGTTCTCTTTGAGCTTTTCCTTCCGGACTTTTTCTCAAGGTTTTAAAATGCGTCCACTAGGGAGAGGTTTCCACACCCTTATAAGGAATGTTTTGTTCCCCTCACCAACAGATATGGGATCTCACAATCCACTCCCCTTAGGGGCAGTCTTAAAATGCGTTCACTACCTTCTAAGGAATGTTTTGTTCCCCTCTCATCCAACTCATGTGATATCTCACAATCCACCCCTTGACCAGCGTCTTAAAATGCGTCCACTAGAGATTAGTTTCCACACCCTTATAAGGAATGTTTTGTTCCCCTCTCCAACGGACGTGGGATCTCACAATCCAACCCCCAGGAGTCCAACGTCCTCGTTGGCATTACTGCTCGGTGTTTGGCTTTGATACCCCTTGGTGGCTGTTACATGTGATATATTTGATTTCATTCAGGGGGCTTTTACCTTAACCCCTTGGGGGCTGTTACATGTGATATATTTGATTTCATTCAGGGGGCTTTTACCTTAATCCCTTGGGCTTTCGTAGAGTTTGGTTTTAAAGTCGATTTCCATGCAATTCGTTTTTTAGTCTCTTCAAATTATAAGAACCTCCAGATTTTTTTTCTTCATTAGTTGCCAATTCTATCTATCTTAAGCGAATGTGAAGAAAATATCCAAAAACTTGCCTATGTCTTGATATATGTCTTTGTATTTTTGGCTTATTATTCAATCTGTAATTTGTTTTCCCTCAGGTAACATCACCATACGGTAACAACCTCCACTATAAGGAGAATCAAACGAGTGGGCAATTTGCATTCACCACAGCGGAGGCTGGCAACCATCTGGCATGCTTTTGGATTGATGGCCATAATCAGGGTGGTGCTGATGCTAGCTTAAATCTCGAATGGAGAACTGGAATTTCAGCAAAGGATTGGGAGTCAGTTGCAAAAAAGGAAAAAATTGAGGTGTGTTTTCTCCTTAAGCTGATTCATACACTTCCAAGATATGTTTCACATTGAGTTTCCTCTTGTTCCTAATCCTCGTCGAAAAGAAGAAAAAAACGAAAAAGTAGAAGAAATTTGAGCTTTGTTTTCTTCTTAATCCTCTTGTTTCTTCTTAAAATGCCAAGATTTTTACATATCTGATTTTTACATATCTATCTACTATCTAAACTTTATTCGAAACCTATCATCAGTATTGTGGCTCCTAAAAGCCAAAGACGAAAGGAAAACTTTTAACTTTCTTGGGACACTTGTGCTTCAAAATTATGCTAGTCGAATGCCGAGATTAAGACTGTGAACCTGCTCTTTATGCAGCTCAGCTATGGTATTTTATTGAAATTGATAGGCTAAGGGCTCTTAAAATGGGAAAATAACAAGAATTCTTTGTTGACCATTTGGTGAATCATGTAGAATGAGTTCAATAACTGTAGAAAACATCAAATGTATGAATTAAAGCTAGCAAATCTTTGGTTGAGGCCTTACTCTTCCTCTTATTATAATGGGTATATATATAATTTCATTCATCAATGAAATGCTTGGTACCTCCTTGATTAAGTTTTTTCCCTCCTCACCTTCTCATTTTCTGTAGTCATATTTTGACTTGTCTAATTTTAGTATACCCGTTTTGGTTGCTTGGTATTAAACAAAGAGGGAGTTTAGGGCTCTCTTGTGAGCATGAACCAGAAAGATAGAAATTACAAGCCAAATACAATAATGAGAGAATGGAGGGAAAGAGTTGGGGTAAATGTTAGGATCACACAACAACGCACACATTCGATCTAGACAAACACAAAAAATCGGAGAGAGAAAATGCAAAGAGGAATATTAGCTAAAAGTTTATATAGATGACTTTAGGTATATACAGCAGATTAAAGAGAATGTAGATCCTACATCTTCAAAGGAGGATTGACTAGGGGTATAGATATAGTTTCCGTTTACTATGTATAGTTTTAAAAAAGCACTTCAATATATATATATATAGTTTTAGTGCACTTCTATATACTTCAAAATATATATATATATATATATATATAGTTTTAGTTTATTATATATAGCTTTAACAGATATAACCACATAAATATCTACTTATATATTTCTCCTACATTTGTATTATAAATAGTTGTTTACATGTTTACTATGTTCGATATATAGTTTTACCATCCGTAGCCATTTGAATGGTTGAACCCGTCAAAAATATAGTTTTACTATCTGTAACTTATGAAAAAATATAGTTAAATATATTTTTACTATCTGTAACTTATGAAAAATGTATAGTTTTACTATCTGTAACAATTTACATTGAATAAGCTGAGAATTAGATGGAGACCCGTGGTTGAACACCATGAAAAATAGAGACTGAAGTCTAAGAGAGAGCATGCTAGAATTAACCTTGAAGTTATTTCCAAATTGCTAACTTTCAGGGTGTTGAGCTGGAGCTCCGGAAACTTGAAGGGTTGGTAGAGGCCATTCATGGGAATCTTCTGTATCTGAAGCGCAGGTAATCTATCTATGTGCCAAAACTCTTCAACTTCTATACAAAATATTTTGTGGATGAATGAGTTAAGTAATGATTTGGGAATGTGTGTGTATATATATATATGAACTACAGGGAAGCAGATATGAGGATAGTAAGTGAAAAGACAAATGGAAGAGTGGCGTGGTTTAGCATAATGTCCTTAGGTGTATGTATTTTGGCTTCCGCACTTCAACTCTGGTACTTGAAGCGCTTCTTCCAGAAAAAGAAGCTCATCTAAAATAGTGTTCTTCTCTACCTTTGTGACTTTTTTTTTCTTACACCAAAAAGGCATGATACTAGCTTGTAAACTATGAACCTCTCTAATAAAATTTATCACAGGAATGTTTTATCATGGATTTTTTTTCTCGTTAGGATTGCACCACTAATGCACACACTCTAACTCAATTTAGATGAACACAAAAAATAGGAGAGAGAAAATGCGAGGCAAATATTGGTTAACAATTTATATGGATGACTTCAGGTATCTACAATAAAAGAGAATATGACTAACTAAGGGTATATTGTTGGGAAAAGGGATAGTGAAACAGATAGGAATAGATAAAATAGATCAAAGTTGCCGTGCTTACTCCATGCTTAAAGGTTACACAATTCCAGTAGTGATAGGCTTATACACTGTATCAGAAATAGTAAATTATGGAAATCTAGATAATCCTCTTAATTATATCTCAACTACTCTAAATCATATCGAATACTTTCAATCATATTTCAAGATATATATGTTATATATGGTTAAACTTACTATATATACATTCATTAAATATAATCCTTTACTATGTATATATACTATAAATAGTCGTTTACTTAGTAGGACTCTTTTCCATATATAACAATTAAATAAGTTATATAAATAAGTAGGCATAACCCAATATTTTCATATAAATAATTATGGTACGGTGACCAATAAACTCCATTTGAGCATTAGACATGTTAGACTTGTGCAAATCATTATCTTATTTCTAAAGATGTGAATATTCTAGGTATTTAACTAGTTTTGTGGTTCACATTACCAACTCAGGAGTGTTGCTTGTCAAATGCATTTCATTTGCAATCATATGCCATTTCTCATGTGGTTACTTGTTTCGTTGGATTATATAGTACCATATTATGTTCGATTTTTATAAACAAACTCGATGCTCTATATCGTACCGTTCACCCCAAAAAGTAGCATTTTTAGTCCATAATTTGGCATAAATAATGCTAATATACTTGGTAAGCATTTGTAATGATTTAACCCATTTACTTTTAAATATGTAAAAAGTAACAAATTAGCCTTTGTAGTTTAATGTCTATGTTATGAACACGATGCACCATAGGAGATCTAAGGGTTTCTTGGATCGTGAGTCGGTGGACCTTGATCCTTTGTTTCTGAGTGGAACCTAGCAACTTTTACGTCGTAGTGAACTTAGAGCTTGTGTCGTTCTTTTTCTTGATTCTTGTCTTTAAATTTTATCATAAGTTCTTAAGCCCTAATCCAAACTCACGAGTCAAGAACATTTCATAAAATAAAATGTATACGTCATAAATATCGTAACATGTTTCATGAGTCTCGTTTTAAGGGAGTTGTTAAGGATAGTTTAGTCATAAGTTCTAAACGTGATCCAAACTTCTTGAAATCTCAAACAAGCCTTGTGTTCTTATATATATAGGTTTTACTTAAAATCCAATGTGATTTGAAGTTTGTTTGGACCATGAAATATCTCAAGGGAACTTTAGGGACATATTGGTCATTTTACCCTCCATTCTTGATTTAGCCCTTGAACGTGCTTCAATGACTATGGAGCTATGCAGAGTCCTTCGAAATCATAAAATAAGGCTTCTTTTAAAATTTGATGTTATTTTGAAGTCATTTGGATCATAAACTAGTGGTATGTTATTATAGAGGCTTGGATTATTTACACCGTTACTTGATTTATTTTTTAACCTTTTATAATGACCACCAAATTTCATATATAACCTCGATATGTTATATTAGGTTTTTTATTAAAAAAAATTTATGTAGCAAAGTTATAGTGGGTTATTTTAAAGTCTCTTGAATCCCGAGTAAAATGCCCGATTTAGTTTCATAATTTTTTAATAGGGAAGATCTGATTTTGGGCTAGCATGGCTGATAGTGTAACGACCCAGGCCCATTGCTAGCAGATATTATTCTCTTTGGGTTTTTCTTTCTGTGCTTCCTCTCAAGGCTTTAAAATATTATTCTCTTGGGGGGAGGTTTTCACACCCTTATAAAGGGTGTTTTGTTCTCCTCCCAAACCAATGTGGGACATCACAATCCACTCCCCTTCGGGGCTCAGCGTCCTTACTGGCACATCGCCTCGTGTCTACCCCCTTTGGGAACAGCGAGAAGGCTGGCACATCGTCCGGTGTCTGGTTCTGATACCATTTGTAACGACCCAGACCCACCGCTAGCAGATATTATTCTCTTTGGGTTTTCCCTTTCGGACTTCCCCTAACGCGTCTGCTAGGGGAAGGTTTCCACAAGGGTGTTTTGTTCTCCTCCTCAACCAATGTGGGACATCACAGATAGCTTTGAAAATGAGCCTCCACCACCTAGTATAGTGAGTTTCTAGCCTCGACTTCTCTATGGATCTTCTCGATAGTGAATCAAGGAAGAGTATGAGAATGATTTCTTGTCTTTTTCATACATGATAGCTCGAGTTATAGTTTGTCAAAGTAGGTTAGAAATCACGATTCTCGCTGAAGCAAACCCACACCCACTCTTATAGGGTAGCTTGATCTAGACCTTTTTAGCTCTCGGTTTCTTAAAAAATTCTCTTCCTTTTCCTTCCCTCAAGCTACAAGATTAATATTGGATGGACAAATTTGCGTGGATATCCCTAATTTTTGAGTCAATAGCTTGAAAGTCGAACTTAACGCTAAGAAGTCCATAAAAAAAATGTTCATCTTAGTCCTCTAAGGCTAACAGAATGATTAATTTCAAGCGAAAGGGACGGTAAGAAAGAAATTTAAGTTTACTCCCAAACTTACCCAAAAACGTTCTCGATGCCTTCTTAGAAAATACTCCTCGAGTGTTCAACAAGTAATTTTAATAGGTTAAAAGAGACAACTTGAATGTCGGTGTGAATAAAAGTTTCAAGTTTTTTCCTTCCTCTTTTAACCGCCGCTTGAATTGGGTAAATAAGGCTATGGACACCTTCCCCGCTCTTGGTTTCTTCATGAAACGTGTGGCTAATTGATTTTAGAATGCATAAGAATTGGGTCAATGGAAAATGATGGATTATTCTTACGAAGATTCTGTCGACCTCATTGTTAAGTTCAGATGTTGGATCTAAGGAACCTCAAGTTTTCTTGAACATACTCAAATTTGAGCTAAATCTAGTTAAGCATCAGTTCATAACCACGTCCATTTTGTCAACCTATATCTAATATCATTTAATAATTATCAATTAAATAATCATTCTTATATTAATCACAATTTTTTATTTTATGCTTTCGAGTGATTGTATATTTATAAAATCACACGCTATAAAATAAATTAGAAATTTTTATTATTTTATCTTAAAATTTGTTGAGTTATATATATTTTTAGGCCAAATAAATGAAAATAAATAGTTAGTTTAAAAAATATCCTTAAATCTTAAAAAAAAAATGTTTTAAAAATATTTTTCAAATTTCAAAAGTTTTATTTATACTCAAAAAACAGTTAAATTTTAAAAAATTTATACATTTTCCGTTAATGCCACGTTTTAAAAATATTGAATTTTTCGACATAATATTAAAATATTTATAAATAATCTATGAAGTTTCGATAGACAATTTTTATTCAAATACTAATCGTATGATTTTTTTAAAACTTTTTTTTATAAAGATAAACGGTGTAATCCTAGATATTTTTTTTTAAATATAACGTTAAAAGTAAATACATTTTTTTTACTTAAAAAAATAAATAAATAAAAGCTTATTATTGAAACTTTTTATCTTTTATAACCTCCATTAAATTTTTTTCTAATTCACCCGTTAATTTAAACAAAAAAAAAAAACAAAAAAAAAACTATTTTCAACAATATCAAAAATTTTAAAAAATTTAAATTTAAGTCTGCTTAATGAAAAAAATTAATCAAATCTCACCAATTTTAACAAATATTTGATTATATATAACGTTATTTATGTTTAAAATTTTATAAATTTTATACTATTTTATCATTTATTGAAAATATGTGATATTATTTTGTAATTAATTTCAAACTAAAATAAATCATTAATCATTTAATTTAATTTAAAATCAAAATTGGGATTTATAATTTTGATTTTGTTTTCGGATAAGAAAAAACAAATCAAATCAAGTGTTGTTTCAGAATTTAAAAATAAATTTAAAAAAATTGTATAAGCGATAAATGAGATTGGAGCAGAATAATTTTAGGGCGAAAAAGGAATTTAGAGCAGACAACGAAAGGGGTTGGAGACTACAAGTTTGATTCCTTCAGCTTTGGCATCCCAATCGGAGCGACGACGAACACGGAAGCAGGGAGAGGGAGGAGCGATACAATCCGCATCATTCCTTCTCCTTAATCCCCATCGCAATCATATTCTTCTCAATCTGGATTCCAACTTCATCAACTGCGATTTTTCGTAATATACATGTATGTATGAGTGTGTTTGTGTGTTCGCTTTCATGTCCGATTCTCTTTCTGCTTCTAATTAGGGTTCCGATTACTCTATGCTACTACTTACTGTCTCTATATTAGGGTTTTCGCTGCTTTACATGCTGCCTCTTTGTGGATTTTTGTGTCCGTCTTCTTCCTGAATCAAGCGTCCGGTTTGACCTTTTTAGTCGTTGAAACTCCTCAAATCCAATGTCTTTATGTTTATTTTATGGATTATGGATTATGGATTATGTTAATGTTAATTAATTTAATTTGTTAACAGAGTGAAGATTTGTACTTGTTGATACAAGATGCCACGGGATTTATCACGATCTCGATCTCCTTCGTATAGGCGGAGGCTTTCACCATCTCCCTTAGGGCATAGGTATACCAGGAGAAGTCGAAGAGACAGGAGCCGTTCACCGTATTCATCGTACAGCAGGTGATCCCGTTTGTGTTTTTAGTTTTATTTACTTTCGATTAATCGATTGAATTGTCTCCAACGATTGTTAAAAGATTGACACCATATCTCTTCCCACGCGGTTTGTATTTCACCTCCATCGGAGTTTCTGCATGAATCTTTCCCCTTTTGCTTTTAATTTCCCCCCTGTTTTTTCTTTCTAATATGAAAGCTGTTCAGTGTTGCTCTAGATTTACTTTTTTCTTAAATTTGTTCTGTGATGAGGTAATAAGACTTTGATTATACTAATTGAATGTTCGTTTATGATTTATTCTTATTATTATAACAAACAGTAGGGATGCTTTTGTTGCTGTGTTTATTGGGTTTTCGTGTTTGTTTTATTGTTCAATCATTATATATAAATAGTCCTCGTGAGGTTTGCTTGATGTTCTCTTTCAGTGAGTCCTGTCGTCCGGATCTTCACGACCTCGCTTTTATTGTTTATGTGCTGATGAATGATGATTGGTAGTCTTGTTTTGTACTTGTGCTTTACTATTTTGAATTTCACGTGAAGTTTCTGATTTCCGTGGCATAATCGTCAAGTACCTCCTGATGATATTTAATCATTTGTTGAGAATGGTGAGTGGGGGAGAAAATTTAAGAAGTCTTTGGGGGAAACTCTAAAATGTGGTGAGAGGCAAACAGAATAGTCATGATCTCGGTAAGAGAATTGAGATAAGTCAGTTCTTCCTATTACATGGGAAGTGATCAGATATGCTGATCGGTGTCCTGTCATTGCTCGATTGTGACTTTGCTTCTTCATGTGATGTGATAAAAGATGGAGCCCACAAACGTTTATTCTTAACAATGTATGAGGTAACTGTACGGTGCGAAGTTGTTGGCTAGCTTGATACTTACCTCTGTATAATGAAGTCTTTATCTCTTGCTCAATAATTCCTATGCATCATACAGAAGAAAAAGCCGCTCCATTTCCCCAAGACGTTATAGAAATCGTTCACGAACACCTAGACGCCATAGAAGTCGTTCTCCAACTTCAAGGAGTTGCAAGAAGTCAAGGCGACGAAGTTCCTCATCATCTGTGCATCATAGATCTTCTAGTTCTAGCCTTGGATCCATTGAGCAAAAAAGTACCAGTGAAAAATTGAAAAAGGAAGAGGAAGAAAGGAAAAGGTATATTAACTAAACTCGCTCACTGATTTTTATTTTCTTTCTGCCTCTCAATTGTCCTTGGGTTCATTTGCAGAATCTTTTGTTATACAACAATGGGAAATCTCATCAGTTGTTGAATTTTTTAGTTCGTTTTAGTTCTTTGTAGGCATTGACCCTTTGAATCCTTCAACTGTGAGATATTACTAGAATTGCAGTCAGGCTTTCTAGGTTTTTTACCATGAAAGATTATGGCATAACTAAAGCTCACATTAGGACAACTAAGTGAATTTTTGTCCCAAGTATCAGTGGTATCCTTAATTTCACATTATAAAATTCTATTACTACTTTTCTATTAGAATTGGAAACTATTGAAAATGGCTACAGATTTGTATAATAATGTTACAATTCTGTGGGACGATTGCCCATTTAGTTTTTCTCATTGCAAAATTCTCATTATGTGCTATGGGTGATGAAGAACCATATCTGTAAACTTATTATACATGGATGTTGCATTTTCATGGTCGTTTATAACGAAAGCATTGATTGCTTAATTGGTTTGGAACTATTAATTTGTTTTACGAGGAACCTTTCTTTTAGTTCGAGTTAAAAGTATAAAATGACTAAAGTAAAACCTAGTTGTGGGATGCAGGCAGTGTTTTTCTCACCAGAACCCGTTTATTTTTCTTTCAATTGTTTATACCAAATTGAATAGAGAAATCTACACTTTTTTGGAGTCTTGAGGAGTCCAATAGTTTGTTTGATGCTTCAAAATCTGCTCTTTTCATTTCTGCAATGTACTCCTGCTTCGTGACTCTTATCCCATATCTGACTTTATCTCGCCCGTCTAGTTCTTTCTTATAGTTTGCTTTGTACTGGATTAACTGGCTACTTTATATTCTTGTAAATTCTCTTCAATGCAGACTTCCATGTTTCAGTAGTTCTCTCTACGACTGTTGCCCGCTAACGTGCAGTCCCTAACTAATTTAAGTTTGAGCAAGTGATTTTAAGATGGGAAGAACTAATGTAATATGTGGCTTATTCAATTGCTAGAGCATAACAGTCTGCTGTTATCATTTGATGTGAACGCGTAATATGAAATATTTGTACAGTCCGACACTTGTCGACTAGTTTAAGTTTGATAGGCCTCTAGGAAAGGAACCTTGTTTTACATGAAATCCTGACTGTTAGTTTAAAGAGTCACAGTTTAGACTTTTTCCATGGCGCAACAATGGAAGACGCTTTTCACCTTTTCGATGTTTTGAAGCTATATGAATAGAAGTTTCTTTATATACATAAGAAAAAAAGAAAAAAATATAGTATACACCTCATTCAAAGAATGTTATAGTGAGAGGATTTGAGTTTTTCTAGTGATCAGTTTTAAACCTGCGACAGGTTACTTGACATTCTTCTCCACAGGATTTTCTGAAGGAAGATACTGCTATAGACTTGTTATATTTGATCATCAATTTGGTGCATCGTTAATATGCTGTTCACCAATTTCGTAACTCTTTTGTATGGATCAGGATTGAATTAGAGGTATGCCCTAAAAGGATAAGCATGTTTTAACGCTCTTACCGTCTTGGAGGTTAGTTTGTTAATTTAATCTATGCTTACAACATAAACCGGTAGAGGAAAAAAACAATGGACCAAGGCATGATAAGTCACTTGTCATTTAATTGTTGATGAATTTTGGAGGATCCTTCAGGTGGTGGTGCATTTTACCCATCCATGGTTAGCTGTTTTCTTAGATATTTATTTTTCTCTCAGGCGACAACAGGAGACAGAGGCCAAATTACTTAAAGAAGAAACAGAAAAGAGAGTGGAAGAAGCGATTCGCAAGGAAGTCGAAGAGGGCCTCAACTCCGGGGATGTTAAACAGGAAATAAACAGGAAGTTGGAGGAGGGACGGAGAAGGCTTGCCGAAGAAGTGACAGCTCAACTCGAGAAGGAAAAGGAAGCTGCCCTTGTTGAGGCCAGACGGAAAGAGGTACTACTAATGTTGATTGATCTATTGCTTAATTTTTAAGACTGGTTTGGGTTGGGTTGGGTTCGGTTTGGACAGATGTTTGAGAAATGTGCTATTTGTGGGGTTTTTCTTTTTTTCGTTTCGTTTACAGGAACAAGCTCGAAAAGAAAAAGAAGACCGAGAAAGGATGGTCGAGGAGAGCCGGAGGAGAGTAGAGGAGGCTCAGAGAAGGGAGGCTTTAGAGAGACAAAAGAGAGAGGAGGAAAGATACAGGGAATTGGAAGAGCTACAAAGGCAAAAAGAAGAGGCTATTAAGAGGAAAAAACAGGATGAAGAGGAACAGCGTCTTAAACAGATGAAAGTATTGGGTAAAAACAAATCACGGCCGAAGCTATCATTTGCCATTGGCTCCAAATAA ATGGAACCCCGGAAGATGATTCTCCCGTGTTTGCTGTTGATTTTGACCTTCTTGGCGACGGATCTTGTGCGTCCTACTTATGCTATTTGGCTTAACATTCCTTCTACCGGAACCAAGTGCGTCTCTGAGGAAATCCAGAGCAACGTCGTTGTTATGGCTGATTATGTTGTAATCTCTGAGAATTACACCCATACGCCCACCATTTCCGTCAAGGTAACATCACCATACGGTAACAACCTCCACTATAAGGAGAATCAAACGAGTGGGCAATTTGCATTCACCACAGCGGAGGCTGGCAACCATCTGGCATGCTTTTGGATTGATGGCCATAATCAGGGTGGTGCTGATGCTAGCTTAAATCTCGAATGGAGAACTGGAATTTCAGCAAAGGATTGGGAGTCAGTTGCAAAAAAGGAAAAAATTGAGGGTGTTGAGCTGGAGCTCCGGAAACTTGAAGGGTTGGTAGAGGCCATTCATGGGAATCTTCTGTATCTGAAGCGCAGGGAAGCAGATATGAGGATAGTAAGTGAAAAGACAAATGGAAGAGTGGCGTGGTTTAGCATAATGTCCTTAGGTCTTTGGCATCCCAATCGGAGCGACGACGAACACGGAAGCAGGGAGAGGGAGGAGCGATACAATCCGCATCATTCCTTCTCCTTAATCCCCATCGCAATCATATTCTTCTCAATCTGGATTCCAACTTCATCAACTGCGATTTTTCGTAATATACATGGTTTTCGCTGCTTTACATGCTGCCTCTTTGTGGATTTTTGTGTCCGTCTTCTTCCTGAATCAAGCGTCCGAGTGAAGATTTGTATACCAGGAGAAGTCGAAGAGACAGGAGCCGTTCACCGTATTCATCGTACAGCAGAAGAAAAAGCCGCTCCATTTCCCCAAGACGTTATAGAAATCGTTCACGAACACCTAGACGCCATAGAAGTCGTTCTCCAACTTCAAGGAGTTGCAAGAAGTCAAGGCGACGAAGTTCCTCATCATCTGTGCATCATAGATCTTCTAGTTCTAGCCTTGGATCCATTGAGCAAAAAAGATAAGCATGTTTTAACGCTCTTACCGTCTTGGAGGCGACAACAGGAGACAGAGGCCAAATTACTTAAAGAAGAAACAGAAAAGAGAGTGGAAGAAGCGATTCGCAAGGAAGTCGAAGAGGGCCTCAACTCCGGGGATGTTAAACAGGAAATAAACAGGAAGTTGGAGGAGGGACGGAGAAGGCTTGCCGAAGAAGTGACAGCTCAACTCGAGAAGGAAAAGGAAGCTGCCCTTGTTGAGGCCAGACGGAAAGAGGAACAAGCTCGAAAAGAAAAAGAAGACCGAGAAAGGATGGTCGAGGAGAGCCGGAGGAGAGTAGAGGAGGCTCAGAGAAGGGAGGCTTTAGAGAGACAAAAGAGAGAGGAGGAAAGATACAGGGAATTGGAAGAGCTACAAAGGCAAAAAGAAGAGGCTATTAAGAGGAAAAAACAGGATGAAGAGGAACAGCGTCTTAAACAGATGAAAGTATTGGGTAAAAACAAATCACGGCCGAAGCTATCATTTGCCATTGGCTCCAAATAA ATGGAACCCCGGAAGATGATTCTCCCGTGTTTGCTGTTGATTTTGACCTTCTTGGCGACGGATCTTGTGCGTCCTACTTATGCTATTTGGCTTAACATTCCTTCTACCGGAACCAAGTGCGTCTCTGAGGAAATCCAGAGCAACGTCGTTGTTATGGCTGATTATGTTGTAATCTCTGAGAATTACACCCATACGCCCACCATTTCCGTCAAGGTAACATCACCATACGGTAACAACCTCCACTATAAGGAGAATCAAACGAGTGGGCAATTTGCATTCACCACAGCGGAGGCTGGCAACCATCTGGCATGCTTTTGGATTGATGGCCATAATCAGGGTGGTGCTGATGCTAGCTTAAATCTCGAATGGAGAACTGGAATTTCAGCAAAGGATTGGGAGTCAGTTGCAAAAAAGGAAAAAATTGAGGGTGTTGAGCTGGAGCTCCGGAAACTTGAAGGGTTGGTAGAGGCCATTCATGGGAATCTTCTGTATCTGAAGCGCAGGGAAGCAGATATGAGGATAGTAAGTGAAAAGACAAATGGAAGAGTGGCGTGGTTTAGCATAATGTCCTTAGGTCTTTGGCATCCCAATCGGAGCGACGACGAACACGGAAGCAGGGAGAGGGAGGAGCGATACAATCCGCATCATTCCTTCTCCTTAATCCCCATCGCAATCATATTCTTCTCAATCTGGATTCCAACTTCATCAACTGCGATTTTTCGTAATATACATGGTTTTCGCTGCTTTACATGCTGCCTCTTTGTGGATTTTTGTGTCCGTCTTCTTCCTGAATCAAGCGTCCGAGTGAAGATTTGTATACCAGGAGAAGTCGAAGAGACAGGAGCCGTTCACCGTATTCATCGTACAGCAGAAGAAAAAGCCGCTCCATTTCCCCAAGACGTTATAGAAATCGTTCACGAACACCTAGACGCCATAGAAGTCGTTCTCCAACTTCAAGGAGTTGCAAGAAGTCAAGGCGACGAAGTTCCTCATCATCTGTGCATCATAGATCTTCTAGTTCTAGCCTTGGATCCATTGAGCAAAAAAGATAAGCATGTTTTAACGCTCTTACCGTCTTGGAGGCGACAACAGGAGACAGAGGCCAAATTACTTAAAGAAGAAACAGAAAAGAGAGTGGAAGAAGCGATTCGCAAGGAAGTCGAAGAGGGCCTCAACTCCGGGGATGTTAAACAGGAAATAAACAGGAAGTTGGAGGAGGGACGGAGAAGGCTTGCCGAAGAAGTGACAGCTCAACTCGAGAAGGAAAAGGAAGCTGCCCTTGTTGAGGCCAGACGGAAAGAGGAACAAGCTCGAAAAGAAAAAGAAGACCGAGAAAGGATGGTCGAGGAGAGCCGGAGGAGAGTAGAGGAGGCTCAGAGAAGGGAGGCTTTAGAGAGACAAAAGAGAGAGGAGGAAAGATACAGGGAATTGGAAGAGCTACAAAGGCAAAAAGAAGAGGCTATTAAGAGGAAAAAACAGGATGAAGAGGAACAGCGTCTTAAACAGATGAAAGTATTGGGTAAAAACAAATCACGGCCGAAGCTATCATTTGCCATTGGCTCCAAATAA MEPRKMILPCLLLILTFLATDLVRPTYAIWLNIPSTGTKCVSEEIQSNVVVMADYVVISENYTHTPTISVKVTSPYGNNLHYKENQTSGQFAFTTAEAGNHLACFWIDGHNQGGADASLNLEWRTGISAKDWESVAKKEKIEGVELELRKLEGLVEAIHGNLLYLKRREADMRIVSEKTNGRVAWFSIMSLGLWHPNRSDDEHGSREREERYNPHHSFSLIPIAIIFFSIWIPTSSTAIFRNIHGFRCFTCCLFVDFCVRLLPESSVRVKICIPGEVEETGAVHRIHRTAEEKAAPFPQDVIEIVHEHLDAIEVVLQLQGVARSQGDEVPHHLCIIDLLVLALDPLSKKDKHVLTLLPSWRRQQETEAKLLKEETEKRVEEAIRKEVEEGLNSGDVKQEINRKLEEGRRRLAEEVTAQLEKEKEAALVEARRKEEQARKEKEDRERMVEESRRRVEEAQRREALERQKREEERYRELEELQRQKEEAIKRKKQDEEEQRLKQMKVLGKNKSRPKLSFAIGSK Homology
BLAST of Csor.00g069170 vs. ExPASy Swiss-Prot
Match: Q6IDL4 (Transmembrane emp24 domain-containing protein p24delta3 OS=Arabidopsis thaliana OX=3702 GN=At1g09580 PE=1 SV=1) HSP 1 Score: 259.2 bits (661), Expect = 9.8e-68 Identity = 124/180 (68.89%), Postives = 150/180 (83.33%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy Swiss-Prot
Match: Q9FVU0 (Transmembrane emp24 domain-containing protein p24delta4 OS=Arabidopsis thaliana OX=3702 GN=CYB PE=1 SV=1) HSP 1 Score: 244.2 bits (622), Expect = 3.3e-63 Identity = 119/190 (62.63%), Postives = 154/190 (81.05%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy Swiss-Prot
Match: Q8RWM6 (Transmembrane emp24 domain-containing protein p24delta5 OS=Arabidopsis thaliana OX=3702 GN=At1g21900 PE=1 SV=1) HSP 1 Score: 228.4 bits (581), Expect = 1.9e-58 Identity = 122/185 (65.95%), Postives = 145/185 (78.38%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy Swiss-Prot
Match: P0CB26 (Uncharacterized protein At1g10890 OS=Arabidopsis thaliana OX=3702 GN=At1g10890 PE=4 SV=1) HSP 1 Score: 179.9 bits (455), Expect = 7.6e-44 Identity = 116/162 (71.60%), Postives = 143/162 (88.27%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy Swiss-Prot
Match: F4J4Y0 (Transmembrane emp24 domain-containing protein p24delta6 OS=Arabidopsis thaliana OX=3702 GN=At3g10780 PE=1 SV=1) HSP 1 Score: 169.1 bits (427), Expect = 1.3e-40 Identity = 95/193 (49.22%), Postives = 126/193 (65.28%), Query Frame = 0
BLAST of Csor.00g069170 vs. NCBI nr
Match: KAG6571723.1 (Transmembrane emp24 domain-containing protein p24delta3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 982 bits (2538), Expect = 0.0 Identity = 522/522 (100.00%), Postives = 522/522 (100.00%), Query Frame = 0
BLAST of Csor.00g069170 vs. NCBI nr
Match: XP_022963957.1 (transmembrane emp24 domain-containing protein p24delta3-like [Cucurbita moschata] >KAG7011447.1 Transmembrane emp24 domain-containing protein p24delta3 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 386 bits (991), Expect = 1.38e-129 Identity = 192/193 (99.48%), Postives = 193/193 (100.00%), Query Frame = 0
BLAST of Csor.00g069170 vs. NCBI nr
Match: XP_022967522.1 (transmembrane emp24 domain-containing protein p24delta3-like [Cucurbita maxima]) HSP 1 Score: 382 bits (981), Expect = 4.49e-128 Identity = 189/193 (97.93%), Postives = 192/193 (99.48%), Query Frame = 0
BLAST of Csor.00g069170 vs. NCBI nr
Match: XP_023553672.1 (transmembrane emp24 domain-containing protein p24delta3-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 371 bits (953), Expect = 7.73e-124 Identity = 184/193 (95.34%), Postives = 190/193 (98.45%), Query Frame = 0
BLAST of Csor.00g069170 vs. NCBI nr
Match: KAG6588818.1 (Transmembrane emp24 domain-containing protein p24delta3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 341 bits (874), Expect = 4.24e-111 Identity = 182/258 (70.54%), Postives = 204/258 (79.07%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy TrEMBL
Match: A0A6J1HGJ9 (transmembrane emp24 domain-containing protein p24delta3-like OS=Cucurbita moschata OX=3662 GN=LOC111464101 PE=3 SV=1) HSP 1 Score: 386 bits (991), Expect = 6.67e-130 Identity = 192/193 (99.48%), Postives = 193/193 (100.00%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy TrEMBL
Match: A0A6J1HR23 (transmembrane emp24 domain-containing protein p24delta3-like OS=Cucurbita maxima OX=3661 GN=LOC111467003 PE=3 SV=1) HSP 1 Score: 382 bits (981), Expect = 2.17e-128 Identity = 189/193 (97.93%), Postives = 192/193 (99.48%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy TrEMBL
Match: A0A0A0KHR4 (GOLD domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_6G411260 PE=3 SV=1) HSP 1 Score: 337 bits (863), Expect = 1.48e-110 Identity = 164/193 (84.97%), Postives = 180/193 (93.26%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy TrEMBL
Match: A0A5D3CTD0 (Transmembrane emp24 domain-containing protein p24delta3-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold496G00250 PE=3 SV=1) HSP 1 Score: 336 bits (862), Expect = 2.09e-110 Identity = 163/193 (84.46%), Postives = 179/193 (92.75%), Query Frame = 0
BLAST of Csor.00g069170 vs. ExPASy TrEMBL
Match: A0A6J1JR63 (transmembrane emp24 domain-containing protein p24delta4-like OS=Cucurbita maxima OX=3661 GN=LOC111486723 PE=3 SV=1) HSP 1 Score: 336 bits (862), Expect = 2.09e-110 Identity = 163/193 (84.46%), Postives = 182/193 (94.30%), Query Frame = 0
BLAST of Csor.00g069170 vs. TAIR 10
Match: AT1G09580.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 259.2 bits (661), Expect = 7.0e-69 Identity = 124/180 (68.89%), Postives = 150/180 (83.33%), Query Frame = 0
BLAST of Csor.00g069170 vs. TAIR 10
Match: AT1G57620.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 244.2 bits (622), Expect = 2.3e-64 Identity = 119/190 (62.63%), Postives = 154/190 (81.05%), Query Frame = 0
BLAST of Csor.00g069170 vs. TAIR 10
Match: AT1G21900.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 228.4 bits (581), Expect = 1.3e-59 Identity = 122/185 (65.95%), Postives = 145/185 (78.38%), Query Frame = 0
BLAST of Csor.00g069170 vs. TAIR 10
Match: AT1G10890.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: petal, flower, leaf; EXPRESSED DURING: LP.04 four leaves visible, 4 anthesis, petal differentiation and expansion stage; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT5G13340.1); Has 11769 Blast hits to 8435 proteins in 698 species: Archae - 22; Bacteria - 971; Metazoa - 5937; Fungi - 1065; Plants - 592; Viruses - 101; Other Eukaryotes - 3081 (source: NCBI BLink). ) HSP 1 Score: 172.6 bits (436), Expect = 8.6e-43 Identity = 116/170 (68.24%), Postives = 143/170 (84.12%), Query Frame = 0
BLAST of Csor.00g069170 vs. TAIR 10
Match: AT3G10780.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 169.1 bits (427), Expect = 9.5e-42 Identity = 95/193 (49.22%), Postives = 126/193 (65.28%), 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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