Csor.00g264510 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSstart_codoninitialpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCTTCCGGAGCTGGAACTATGTTTTTCAGAGTCATCGTTTTCTCCGCCATCGTCGCTGTATGCGTTGCTCAGCCACCGCCGCGGTTCAACTGCAGCTCGACCTCAAAATGCGGCTCTCTAATCGACTACATTCCGCCAAACGCAACCACCGTTGGAGACGTGATGAAGCTCTTCGATGTCAAGCATCTCCTCTCCTTCCTTGGGGCTAACAACTTTCCGATGAACACCTCGTCAAGCTTTTCCTTACCGGCGTCTCAAAAGATCAAGATTCCGTTCAACTGCAAGTGTGGAAATGGTACTGGTCTCTCCGATAAGCGTCCGATTTACAAAGTCCAGAGCGGAAATACTCTCGACAAAATCGCGGAAATCACTTTCGCGAGACTCGTAACTTCCCTGCAAATCGCGGCCGCAAATGGAATTCCTGATCCGAATAAAATTGAGGTAGGGCAAGAGCTGTGGATTCCTCTGCCGTGTAGCTGCGACGATGTGGAGGGGAACAAAGTCGTCCATTACGGACATTTGGTGGAACCTGGAAGCTCCGTATCGGCGATTGCCACAATGTTTAATGTATCGGATGCTATCATCTTGAAGCTGAATGGAATTGCAGATGCGAGAGATCTTAAAGCTTCTCAAGTTCTTGATATTCCTCTCAAAGGTTCATTTCATCTCCCTCATTTTATTTCTGAATTTCTCGTCGATTTTAGGTGGAAATTGAAACTGATTACATGATTTCTTATCACTCTGAACAAATTTAGGGCGTAATTGGCTGAGTTCTTCATCCATTTGGCTTTTGTTTTCTGATGATTTCAATTGATAATCCATAATCGTTAATTCTAAGTATGATTTAGGGTTTAAACTGAAAGATTTTTCCATCTGAATGAAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAACTGATTTTACTTTTTAGTCCTTTTGCTTCTTGTCTTTTCTCGTATTCTTAAATATTAATAATAAATACATAAATAAATAAATAAATAAAACTCTATTTTAAGTAATTTTCCATAACTTTTTTTAATGTCTATTTAAAAAAGGGGTTTTTTTTTTAAAACCCTATTTTTTGTTTTGTAAAATTCTAAAGTGCTTCTATAAATAAAATGGAAATAATAAAAGTTGCTTTTTTGGTTCAATAAAAGTTTTTTTTAGTTCAATAAAAGTTGTTGTTTGTTAATAAATATAAATTATATATATATTTTTTAAAAAATAGATTTAAATTTATGTTCTAATATACTCTTTTTACCTTTTGAGATTTTTTACCCATGTTAAAATGTTGAGAATATATATATATATATATATATATATATATATATATATATATATATTAAGGTGCTTAGAAATAAGATTGAAATAATAAAAAAAAAAAATTAGTTACCGTTATTTGTTAATAAATATAAATTATATTGAAGCTATTAGGATTTAAATTTATTTCTAATTTACTCTTTTTACCTTTGAGATTTTTTACAAATGTCAAAAGGTTGAGAATTAAAAAAAAAAAAAAAAAAAAAAAAAAAAATATATATATATATATATATAAGGTAAGAGTTTGGCCTAATCTTTATCGATTGAGCAAACAAAGCTGTTATTTTGCGAAGTGTGTGCATTGGTCAACCCATAGACATTTTTGTTTTATTAATGGGTGGTCTGTAGATTCCTTAATGATTTAAGGTTGTATGGTTTGATCCTGATATTAAGGATTTGGTTGTTCTCCTGTTCCGTTTGGGAAAATGACTGGACTTGACTTTTGAGTATTAAATTATATTGACGTCTGAGACAGTACGCTGTTTGGTAGTTTTATATTAGCAAACACCTTGATGTCACACTGATAGGTTTTGAGATTTTTTTATATGAAAAAATGGAGAGAGAGTGGCTTCCTGACATTGCTGATGTTTTCACACCCTTGGGTTGACTCTTGGAGGGGAGAAAGTCCTCCATTAGAAATGGGTGAAGGGTAGTTTTGGTATTAGTGTTAGTAGAGAGAGAGAGTGGCTTCCTGATATTGCTGATGCTTTCACACCCATGGGTTGGCTGTTGGAGGCGGGATCCTCGATTTAGAATTGGGTGAAGGGTAGTTTTGGTATTAGTGTTAATAGAGAGAGAGAGAGAGAGGCTTCCTGATACTGCTGATGTTTTGAGAACCTTGGGTTGGCTTTTGGAGGGAGAAATCCTCCATTAGAATTGTGTTGTGTGGGTTGAATGGCACTGCGTTTTGTATGGGTCACGACCTCATGTATTTATAGATGTCTGAAGATTACATTCTAAATCATAGATTTGGTAACAAACCATGAAATCATAGATTTGATAACAAACCAGTAGATTATCTTACTATATCTATTCTACGTTTAACAGGGAGAAGGGTAGTTTTGGTATCAGTGTTAGTAGAGAGAGAGAGAGGAGTGGCTTCCTCATATTGCTGATGTCTTCACCCCCTTGGGTTGGCTCTTGGAGGGGAGAAAGTCCTCCATTAGAAATGGGACAAGGGTAGTTTTGGTATTAGTGTTAGTAGGGAGGGGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGTAGCTTCCTGATATTGCTGATGTCTTCACGCCCTTGGGTTGGCTCTTGGAAGGGAGAAAGTCCTCCATTAGAAGTGGGTGAAGGGTAGTTTTGGTATTTTGTGTTAGTGGGGAGAGAGAGAGAGAGAGAGATGAACAAAGTCAACTAAAAAAAACCCAAAGATGGTAAAAACAATTTGAAGTCAACTGATCACAGTCAGAGTGGAGTGGTGGAGATGGATTTGAATTTTTTTTAGTGGTGGAGGGATTTGGAAATTGTGTTGTTTAATTTACTATATCTTATTCATCCAAGCAACAAAGACATCATTAAAAATAGAGCATTTGCAAGGATGGTGCGCTCTTCTTGTTGGGGCCATAGTGATGAACTCATTGAAAGTATAAGAATGTGTTTGTTGACTTTGATCATATTTCTAGGAATGTCGTTAGAGAGATCGCCATTCTATGATAGAGGACATTTTTACATTTTGTTGTTCCATGTTCGGGTTGGATCATTTAGCATGCTAGTTCGTTGTGTAGTTATGTCAAACTCGTGAGAGGAATAATGACCTTTACGAAGAGATTTGGATTTGATTCGTCGTTACACCACAAAGATTTCCATAAGTAACTTATTCTTTAAACTTCGAACGTTCTCACTACGTCGTCTTTTTTGAGTGGTAATATTTTTTGTTTTCTAATAGCTAACCTAACAATTCTGAACATGTTTGAGAGTGATTTTAGTTTTAGAACGAAGAAAATAAGTGATTTTGAGCATAAATCACTCGCAAACATCTCTTCAATGTTCACGTTCATCACACAAACACTATTATTAACTTTCACTCCGTCAATCTAATCCTAGACTGTATTGTCTAAACGACGGAGATTGAAAGATGCTTACGAGCTGACTAGCCGTTCAACGAAGATATGCTTCGTTCGTCAATTCATCATTATCATTCCTGAAGCTCCTTTATTTTTGTTCAACAAATGCCATTATCATGAAAGATAACTGTTCTGAATTCTATCTGCAGCTTGTTCATCTGTGATCAGGCAAGACTCTTTAGACTTCCCATTCCTCCTCCCCAATGGCACGTACGATTACACAGCGAACAACTGCGTATTGTGCAAGTGTGATGCTGCAAAAAACATGATGTAAGTGTTGCCAATACTGAATAACTTATTATATTGAGAACTTGTTTGCTCTAAGTTGAAGGTAGCTCGAGTTAGTGAGCTTACCTTTTGTTTGGAACCACGACCCTCCACAGTAGTATGATATTGTCCACTTTGAGCATAAGCTCTCGTGGCAGAGATGTATTCCTTATTTATAAACTCATGATGATCCTCCTCTAAATTAGCGAATGTGAGACTTCCTCCGAACAATCCTGAATGCGTTTTTCTGGTTTTCTTTTTTGTCAGTCTTGACTGTAAGCCATCACAGCTGAAGCCACCCTCACAGAAATCATCAAATTGGTCGACATGCCCAGCCATGCCATGTGAAGGTAGCAATTTGCTCCTTGGTAACTCAACAGCTTCTGGTTGCAGCACCACTACATGTGCCTATGCTGGTTTCTCTAAACAAACCATCTTCACAAATATTTCTACTCTGAACACTTGCCCTGGACCTGAAGGTGGACCTCAAGGTGAGCTGCAAACTTAAGTCGTTTAAAAATACAAGGACCAAAACGATATTTTAACCTACTTTTACTACTTTTATTATGGATAGAAAATGCTCACTACTCGAAATCATCGTCTGAGAGCAACATGAAAGCAGTATTAAAAATGTCAAAAGAACACTACATGTGGTTTGTTTTTTAAATAGCTTAGAAGCATTGTTATGTGTTTTGTGGGAAAACACTAGTAGAGTGCTTTTAGTCTTGGTGAGAAGCACTTTTGATCCCATGTTGGTAGGAGAGTAGAACGAAACATTCATTATAAGGGTATAGAAACCTCTCCCTAGCAGATGCGTTTTAAAACCGTGAGGTTGACGGTGATATGTAACGGATCAAAGCGAACAATATCTGCTAGCGGTGGGTTTGGACTGTTACAAATGGTATCAGAGCCAGTCACCGGATGGTGTGGTAGCAACGCGTTCGTTGGGCCTCTAAGGGGAGTGGATTGTGAGATCCCACATTGGTTGGAGAGGAGAACAAAACATTCATTATAAGGGTGTGGAAATCTCTCCCTAGCAACACGTTTTAAAATCTTGAGGCTGACAGTGATATATAATGGGCCAAAGCGAACAATATCGGCTAGCGGTGGGCTTGAGTGGTTAGACATCACCCCCTAAACACATATTTTAGGCTGCTCATAGGATAACTGATAACTCTATAGAAAACCAAGCCCCTTGCCCCACAATTCTTTGTTTAAACACCTCTCCTTCACTATAATCATCATCCAGAATCTGACTGTTTCCTATCATGTATGAGCAGATAATCCAAACAGCGCTTCAAGGACGGGTTCACAAGGTCTGAATGTGGTCGGTCTCGTCGTCTTTATGCATCTGCTGAGCTTTGGTTCCCTTCTCATTCAGTAAGAAGTATAATTTCCTTCTTGTATGTTGGCATAGAGAGATAATCATAATAATGTAGGTAGACTCTTGGTGTTCTGTATTTATCATTAAATAGCCATCTTTTAGTTTCCTTTTTTTCTCGTTAAGCATTAATAAATCGAGTCGAAATAAAGCTGTTCATGGCGAGAAATCGTGAGGATGAACTGGATTAGAATCCATAGTTGGCTGTGAATTTGATTATGATTTTGATTTTGATCTGTGATGTGTTGATGAATGTATTGTATTGTGCACTGAGATTGTTGCAGGAATAAGAATGATGATTTTCCCTTGTTTTCATACCTTAGCTTCTGATACAATGACTGAATAATTATCAGTGAACTTGATACCTGTTTCGAAAACGTTCGAGGCTTGGCTGCTCGATTTCGATCAAAGTTCCTTTATGCATGTTAGACGATCTTTCAAGTTCTCTTTTGGGGTTGGGAGTTTTCTTTTGGTAGTTACTCGAAGCTACCGAGACGGGAGTTTAAACATCGATAACTTTTGTTGTGTTGTTTTGTAGCATGAGTTTACTAGTTTTGTGTACTCTCGAGTTTTAGTAAACTTTCACATTGGTTAGGGAAGGGAGTGATCATGAGTACATAAATTATGACAGTTTTCTTCGTTGGTACGAGATTTTTTAGAGAAACCAAAAGAAGGATCCTCTTGATGGTCTTATCCCCTCTCGAGCATAGGTCTAATAGACCTTGTTCCGCTCGTAGATGTACTTGAACTTGGCAATGGTCGAGATGGTTGAGTCATACAAATCCTTGGCAAGAGAAAGAGTAGCCAAATGCAGTGTGGCAGCTTCTGTTCTAGATGCAACCACATGTTCGGCAGAAGTTGACTTAGGTTGGGATGTTCTTGAGGTTAGGGCCTCATAAAGTTTGAACCATCAGCTAACTCTACGACCTCAAGGTTGCCTCGAGCTAACTTGAAACTCATCGGCTCAACTTATACGACCTCGAGGGTCGTTTTATAGTATGATTGTAAAGGCTTCTTGGATCTCGTAGAATCTGTCATATGAAAATTTCATTTCGTTTTCAACCAATAATTTTACAAATGAATATCGCTCCCTTCAAAAATACTCAACCGACCATTCACTTAAAAACTAAAAATCTTACCTTTTAAAAACTTAAAAATGTTTCATAAAATTTAAAATATCTAATAAATTTCAAAACTTTAAATTTCATATTTGATTAAATTTTTTGTTATATCTGACCTTTCATAAACCTTTCCAATTTATTAAACGTAAAATAAAATATTTGGAGTCCTAATATTATAAAAACTAATTAAATATTTTTAAATTTTAGAAGTTTCAAAATTAAATTATAATTTAACAAAATTTTATTAATAATATAATTTTTTTATATAATATCGTAACAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACTATAAATAAAAAAGGAACTTCAATCTTGATGGCTCCGTTCGGTGCTAATATTTTTTTAATACGTTCGACATACTTTGGAGCTTTCCTTTCACTTCTTCTCTTCCCATTTGACACGATTTTTCTTATTCCTCTGTGCCTTCGCGCTTCCCTTCCAGATTGAAATTCAGTGTTCGTTTTCGTCATCTTCCTTGGAATTCTCCTCCTGAAACCCTAACTCGATTTGGGCTATCGGCAAGGCAAGTGTTTCTGTACTCCCAACACCATATATTTGATCTGTTGGCTTTCTGGATATTCATGCTTTGTTAATTCTTGTTTCTGAATCATTTCCTTCTCATTTCTGTTGGGTACTTGTCTTAATCTTCATTGATCCTGTTTTCATGTTGTGGGTTTACTTTTTTTTTGTTTTTGTTTTATGTTTTGCAGTTCTTGCTCTGTTTTTCTTGATTCGAATTCTATTTGCCTCTGGATTTTACTAGGTTCGTTGTGGGGTAGATTATGAAAATGGGATGAACATCAAGAGTTATTATTATTATTTTTTAATCTCTGTTTGTTTGTTCATAAATTCTACGTTCAAGCGTTTTCTTATTGCTTACGTTTACCATTTACGCGCGAATTTGCAGACCTTAAATTGGAAATGGCTTGTCAAGTCAGTGACGGGACAGTTTCGAGTGGTTTGGCTAGAATAGTAGGGAAACAGCAAGTAATTCCTGACAAGACATTGTCATTTTTAAAATTGAAGTGTAGGGATGTTCGAGTTACTTCTCAAATTAGTAGGAAGGTTTTACAGAATCGAAATGGAGTTGGAAATTGGCATTTATCCGCCAGTTTTCGACACAATTATCTGTTTACTTCACCTGTTGTACACCGAAGAAATTCCGGTTTTATCGTGGCTAGGAATCAGTTGAGCTCAGATTATGGGGTGGATTCCTCCGGAGTGGAGGAAAGTTTGTATGTAGAAGAAGATGATGCCAGTTCAAGGGATCAGAATGGTGCAGTGTAAGAATTCAAGATACCTCCATCTTAGCTGAATTATCATAGATTGTTCTTTAGCATTCCTTTTTCGGTTGCTTTAGAAAGTATCTTATGGAATTTGACAGGTTGTTTAAATGGTTGACTTTTCTTACTTCCAAGCAGGCAGTGGAAAGAACCTTCCCAATATCAGCAACAGCCTCTGAATGTTAAGCGTGAGCTTTTAGCTCTATGTGTGCCTGCAATCGCTGGACAAGCTATCGAACCATTTGCACAGCTTATGGAGACTGCTTATATTGGAAGATTAGGCATGTATCTTCAAATGGCCAATATTCTTTACTTTTAGTTTCCATGTTATAGAACAACTCCCTGATTCTTTTGTTTCACCATTACCCTGTCCTAATTGATTCTTTTCAGTCAGTCAAATTGTGCTTAAGTTAGTCTTCTTATTTTGTTCATTTATTTTCTGTGTTTCATTTGGTTTGATTTTTTCATTGATTTCAATACTGTGAATAACTGTGACTCAAACTTAGCTTGAAGTGGACTGCATATTTTTGGGTTGTGGAGTTGTACATTTGTTTGGACAACCTTAGTTTGAAGTGGCTAAGTTATTTTAAATTTATTTTCTGTAGAGATCCTTTATTTGAAAACCTTGATTCATGTTCATGTGTGTTTTCGGATTGCTTTCTGATGTCTTCTTTTGCATCAATTAAGCTGTTAGACTATGAATTTAATGGGAATTCTTGGAAGCTAACATCCTTCTGTAATCAGTTGGGACGGGCCCTGTTTATTGGGTGTAAGTCATATTAATCTTTTTCCCGCACTTCTTCCTGTCAGCAGCTGAAGTGAGTAAATGCTATTTCTGTATTGCAGTATTTTCTAGTGTTTTCATACTTGTCCATTTTCAACATATGTGCAGGTGCCTTGGAGTTGGCTTCAGCAGGCATTTCTATAAACATATTTAACTATATATCAAAGGTTTTTAATATACCTCTACTGAGTGTAGCTACTTCTTTTGTTGCTGAGGATATTTCAAAGAATGCAATTGAAGATCCTTCATCAGGTTCTTCTTTTGGCCTTTGGATTGTACGAACTTTTGTCTTAAAAGGCTGTACTGATGGAAAACTAGTTGCTTTCAAACTTATATTTTGAATTTTTCATGCAAGTAGATTCCTTAGAAGGCTGTACGGATGAGAAACTAGTTGCGCGGTTATCTGAGAGAAAGCAGCTATCTTCAGTTTCTACTGCCCTATTGCTGGCAGTCGGGATTGGACTTATTGAGGCTTTAGCGTTGTATTTTGGATCTGGAGTGTTTCTTAACATCATGGGCATTTCTTCAGTAAGTAAAATTGGAAGCCAGCTGATTTACATTTACGTTTACGTTTCCGTATGCTCACTTATGTTATAGACATATTGTTGGAGATGATTAGATAGGGTAAATTTATTAAGATTCTTTATCTCTATGATCTTATGAGTATGTTGGTTTATTTTGTTAACAGGAGTCGTCCTTGCGCATTCCATCCCAACAATTTCTTACACTTCGTGCCCTTGGTGCTCCTGCTGTCGTTCTTTATTTAACCCTTCAAGGAGTTTTTCGGGGTTTCAAGGATACCAAAACTCCTGTTCTTTGTCTAGGCACGCATCTAGTCATGAAACCTAGAATTATGTTAATGGTGGAATTTATTTCTAAGCATTTTCTCTATTATGTTCTTTCTTTGTACTTCATCTTCCTGCTTAAATTTTTGTTCTTGATTCACAGGAATTGGAAATTTGCTAGCTGTCTGTCTTTTTCCCTTGTTAATTTATTATTTTCAATTGGGTGCAACTGGAGCAGCAATTTCTACCGTTGTGTCTCAGTATGTTCCCTTCTAATAACTCTTCTTCCTGTATTCTTTATCATAGCCTCCAAACTTATCCAGTGTTTGTTTCAGATATGTTATTGCCTTTTTGATGTTATGGTTTCTCAATAAACGAGCTGTACTATTGCCGCCGAAGTTCGGTGCATTGCAATTTGGTGTATACATGAAATCTGGTAATCTCAGATTCTCATCTTCTTTTACTTCATATCTTGTAAAAATTTGATTATTACTAGTGTTATGTTCCTGGGAGTAATCTTTTCATTATGGTTTAGTCATAAAGCAATGGCCAGCAATGGCTTCAGTTTGCTCATCTTCACTAATAACAGCACTGTTTAGAAGAGAGGTCTGTTGCAAACTTCTGAGAAGGATTAAAAAAAAAAAAGCTACCGAACACGAGATTTCTGTCGACAATATCAATAGTCGTCACTTTATAGTCATTCGTATTAAGCCAAACTCTGAAACCATAGACTTAAAAGCCACTGATTAAACTTTGGTTACATCTGATATGCATGATGGAGGAATCGTTTGAATTTTCTGTATATTCTAGAATTATTCACGTCTCGTAAACCTCAAAATAGTCGTACATATCACATTAATCAAAATCAAAGAAAGCTGGAACCTATGCAATTAGATCAATGCTATATTTATGGTTTTTCTGGCTACGTTATATGATCAAGCTGGAACCTATGCACTTTTTATAATCTAATGATTTGGAGTCTGCTATTAGGTGGTTTTCTTCTTGGAAGGACTCTTTCTGTTTTAACTACTATGACGTTGGGTACATCCATGGCTGCACGTCAAGGTGCGGTGGCTGTGGCTGCACACCAAATATGTATGCAAGTATGGTTAGCAGTGTCTCTTCTAACTGATGCACTTAGTGCTTCAAGTCAGGTACATACTTTTTTTTTTTTTTTTTTTCCGTTTTAGCTCATTCTCTTTATAAGAAATCCTAATACTAAGAACATCTATTTAACTATCATGGGTTGGCCTTGTGGTCAAGGGCCAGGTAAATAATGAAGGACATATAGAGAATGAGTTCAAACCATGGTGACAGCGGTTAAGGATTTAATATCCTACGAGTTACCTTGGCAACCAAATGTAGTAGGATTAGTCAGTCTCGTGAGAATAGTCGAGGTGTGTGCAAACTGACACAGACATTCACGGATATAAAAAAAGTACATTTATTTGTCTTGTCCTTCATTATTTAATACCCTTATCAAGCAGTTATCTTTTGTGCTAACCATTATCCATAAAAATATTTTATTTTATTAGAAAATCCATTGTATTGTTAAGAGCATGCAAAACTAAGCAAGCATTCTTTTGAGCTGAGAATGAAATGCAAGGTTAAAACCTTCTGAAATTCTATCTCAAGTACAAAGCTACAGTACAAAATTGGTTACTGAAGTAGTGAAGTTCCAATTTATTTATGGTTTCGTCCTATCTCCTAATCGTGACGTAAGACCTTGAGGTTTCTAACGATGATGTCTTTATTTGTTTTCTCTCTGATCTTCGAATTATCTATCTTGGTAGGCCATGATTGCTAGCTCCGTGTCGAAAGGTGATTACAGGACTGCAAAGGAAGTGACAAGCCTATCCTTGAAGGTAGAATTTTTATGTGCAGATTTGAATTTCTACACTTTCCTGTCTTCACTCTTAATTAGTACGATGAAAAGTTTTTGAGCTATATATAACCCGTGCAATAGACGTCGAGCTTCATATGAATTTGTCTACACCCTACAGATAGGATTGCTCGCAGGTACCATATTATTTGCAATTCTTGGGCTATCCTTCGGTTCGCTTGCTACCTTGTTCACCAAGGATTCGGACGTTTTAGGAATTGTTAGAACTGGAGTCTTGGTAAGCTAAGTGAAATTATTATTAATTTCTCAAGTGTTTCTGTGATAAATTGTGAACCCTCCTACTTTTTGGTTTCATGAAACTTCTACAGTTTGTTAGTGCCACTCAACCTTTGAATTCTCTGGCATTTGTCTTTGATGGTCTGCATTATGGTGTCTCAGACTTCTCATATGCTGCGTACTCAATGGTAAGCAGTTTCTTTAATTGAAATCATGACTGAAAGTTCATTCTCTAGCAGATATGATCTTGATTGATATTGTTAATGAACTGTAGATGGTGGTCGGGGCTATCTCTTCTTCCGTTTTGGTGTATGCTTCTTCTGTTTTGGGTCTTCGTGGGCTGTGGTTGGGCTTGTCCCTCTTTATGGGCCTGCGTGCTGCTGCTGGTTTTTTCAGGTAGAATCTCACACTTTTTGCTTTCCTTCTCTCAACTGAATGATTTTTAGAGCGACATAGCCTGTAAAGGGCTCGGGCGAAACGTGTTATAATATTATGAATGATTTAAGATAATGGAGAACTTGCCTGAAGATTGTTAGAGAAGTGATGCCTTTTGAATGATGTTTCTTAATTTCCTTATTGAAAACTCCTTGTTTGGCATCTTGGGCACACTATTAGAAACCCTTTGTAGACGGTTTAGCCACGTCTAGTGCCACGAATGATTGAGAACTAAGACTAATTTAGCTTCATATTTAACTGGAAAGTATGTTTCTTTGTCTGGTGGGTAGTTTTTGGATTGCTATTAGAAACCTATTGTAGATGGTTCAGCCACGCTTGGTGCCACGGATTGATTGAGAACTACGACTAATTTACCTTCATATTTAACTGGAAAGTATGTTTCTTTGTCTGGTGGGTAGTTTTTGGATGGTTATTAGAAACCCTTGATTGAGAACTACGACTAATTTAGCTTCATATTTAGCTCGAAAGTATGTTTCTTTGTCTGGTGGGTAGTTTTTGGATGGCTATTAGAAACCCATGGTAGATGGTTCAGCCATGTTCGGTGCCACGAGATGATTGAGAACTACGATTAATTTATCTTCATATTTAGCTCGAAAGTATGTTTCTTTGTCTGGTGGGTACTTTTCGGCTGGGATCTGCTTCTCCTATGATTCTCTGCATAGCTTATAACTTCCATTTATTGTTGGATTATGCAGATTACTTTCCAAGAACGGTCCATGGTGGTTCCTGCACAGTGATGTCCAGAATACCAAGGTTCAAACATCCCCATAG ATGGCTTCCGGAGCTGGAACTATGTTTTTCAGAGTCATCGTTTTCTCCGCCATCGTCGCTGTATGCGTTGCTCAGCCACCGCCGCGGTTCAACTGCAGCTCGACCTCAAAATGCGGCTCTCTAATCGACTACATTCCGCCAAACGCAACCACCGTTGGAGACGTGATGAAGCTCTTCGATGTCAAGCATCTCCTCTCCTTCCTTGGGGCTAACAACTTTCCGATGAACACCTCGTCAAGCTTTTCCTTACCGGCGTCTCAAAAGATCAAGATTCCGTTCAACTGCAAGTGTGGAAATGGTACTGGTCTCTCCGATAAGCGTCCGATTTACAAAGTCCAGAGCGGAAATACTCTCGACAAAATCGCGGAAATCACTTTCGCGAGACTCGTAACTTCCCTGCAAATCGCGGCCGCAAATGGAATTCCTGATCCGAATAAAATTGAGGTAGGGCAAGAGCTGTGGATTCCTCTGCCGTGTAGCTGCGACGATGTGGAGGGGAACAAAGTCGTCCATTACGGACATTTGGTGGAACCTGGAAGCTCCGTATCGGCGATTGCCACAATGTTTAATGTATCGGATGCTATCATCTTGAAGCTGAATGGAATTGCAGATGCGAGAGATCTTAAAGCTTCTCAAGTTCTTGATATTCCTCTCAAAGCTTGTTCATCTGTGATCAGGCAAGACTCTTTAGACTTCCCATTCCTCCTCCCCAATGGCACGTACGATTACACAGCGAACAACTGCGTATTGTGCAAGTGTGATGCTGCAAAAAACATGATTCTTGACTGTAAGCCATCACAGCTGAAGCCACCCTCACAGAAATCATCAAATTGGTCGACATGCCCAGCCATGCCATGTGAAGGTAGCAATTTGCTCCTTGGTAACTCAACAGCTTCTGGTTGCAGCACCACTACATGTGCCTATGCTGGTTTCTCTAAACAAACCATCTTCACAAATATTTCTACTCTGAACACTTGCCCTGGACCTGAAGGTGGACCTCAAGATAATCCAAACAGCGCTTCAAGGACGGGTTCACAAGGTCTGAATGTGGTCGGTCTCGTCGTCTTTATGCATCTGCTGAGCTTTGGTTCCCTTCTCATTCATTCTTGCTCTGTTTTTCTTGATTCGAATTCTATTTGCCTCTGGATTTTACTAGACCTTAAATTGGAAATGGCTTGTCAAGTCAGTGACGGGACAGTTTCGAGTGGTTTGGCTAGAATAGTAGGGAAACAGCAAGTAATTCCTGACAAGACATTGTCATTTTTAAAATTGAAGTGTAGGGATGTTCGAGTTACTTCTCAAATTAGTAGGAAGGTTTTACAGAATCGAAATGGAGTTGGAAATTGGCATTTATCCGCCAGTTTTCGACACAATTATCTGTTTACTTCACCTGTTGTACACCGAAGAAATTCCGGTTTTATCGTGGCTAGGAATCAGTTGAGCTCAGATTATGGGGTGGATTCCTCCGGAGTGGAGGAAAGTTTGTATGTAGAAGAAGATGATGCCAGTTCAAGGGATCAGAATGGTGCAGTGCAGTGGAAAGAACCTTCCCAATATCAGCAACAGCCTCTGAATGTTAAGCGTGAGCTTTTAGCTCTATGTGTGCCTGCAATCGCTGGACAAGCTATCGAACCATTTGCACAGCTTATGGAGACTGCTTATATTGGAAGATTAGGTGCCTTGGAGTTGGCTTCAGCAGGCATTTCTATAAACATATTTAACTATATATCAAAGGTTTTTAATATACCTCTACTGAGTGTAGCTACTTCTTTTGTTGCTGAGGATATTTCAAAGAATGCAATTGAAGATCCTTCATCAGATTCCTTAGAAGGCTGTACGGATGAGAAACTAGTTGCGCGGTTATCTGAGAGAAAGCAGCTATCTTCAGTTTCTACTGCCCTATTGCTGGCAGTCGGGATTGGACTTATTGAGGCTTTAGCGTTGTATTTTGGATCTGGAGTGTTTCTTAACATCATGGGCATTTCTTCAGAGTCGTCCTTGCGCATTCCATCCCAACAATTTCTTACACTTCGTGCCCTTGGTGCTCCTGCTGTCGTTCTTTATTTAACCCTTCAAGGAGTTTTTCGGGGTTTCAAGGATACCAAAACTCCTGTTCTTTGTCTAGGAATTGGAAATTTGCTAGCTGTCTGTCTTTTTCCCTTGTTAATTTATTATTTTCAATTGGGTGCAACTGGAGCAGCAATTTCTACCGTTGTGTCTCAATATGTTATTGCCTTTTTGATGTTATGGTTTCTCAATAAACGAGCTGTACTATTGCCGCCGAAGTTCGGTGCATTGCAATTTGGTGTATACATGAAATCTGGTGGTTTTCTTCTTGGAAGGACTCTTTCTGTTTTAACTACTATGACGTTGGGTACATCCATGGCTGCACGTCAAGGTGCGGTGGCTGTGGCTGCACACCAAATATGTATGCAAGTATGGTTAGCAGTGTCTCTTCTAACTGATGCACTTAGTGCTTCAAGTCAGGCCATGATTGCTAGCTCCGTGTCGAAAGGTGATTACAGGACTGCAAAGGAAGTGACAAGCCTATCCTTGAAGATAGGATTGCTCGCAGGTACCATATTATTTGCAATTCTTGGGCTATCCTTCGGTTCGCTTGCTACCTTGTTCACCAAGGATTCGGACGTTTTAGGAATTGTTAGAACTGGAGTCTTGTTTGTTAGTGCCACTCAACCTTTGAATTCTCTGGCATTTGTCTTTGATGGTCTGCATTATGGTGTCTCAGACTTCTCATATGCTGCGTACTCAATGATGGTGGTCGGGGCTATCTCTTCTTCCGTTTTGGTGTATGCTTCTTCTGTTTTGGGTCTTCGTGGGCTGTGGTTGGGCTTGTCCCTCTTTATGGGCCTGCGTGCTGCTGCTGGTTTTTTCAGATTACTTTCCAAGAACGGTCCATGGTGGTTCCTGCACAGTGATGTCCAGAATACCAAGGTTCAAACATCCCCATAG ATGGCTTCCGGAGCTGGAACTATGTTTTTCAGAGTCATCGTTTTCTCCGCCATCGTCGCTGTATGCGTTGCTCAGCCACCGCCGCGGTTCAACTGCAGCTCGACCTCAAAATGCGGCTCTCTAATCGACTACATTCCGCCAAACGCAACCACCGTTGGAGACGTGATGAAGCTCTTCGATGTCAAGCATCTCCTCTCCTTCCTTGGGGCTAACAACTTTCCGATGAACACCTCGTCAAGCTTTTCCTTACCGGCGTCTCAAAAGATCAAGATTCCGTTCAACTGCAAGTGTGGAAATGGTACTGGTCTCTCCGATAAGCGTCCGATTTACAAAGTCCAGAGCGGAAATACTCTCGACAAAATCGCGGAAATCACTTTCGCGAGACTCGTAACTTCCCTGCAAATCGCGGCCGCAAATGGAATTCCTGATCCGAATAAAATTGAGGTAGGGCAAGAGCTGTGGATTCCTCTGCCGTGTAGCTGCGACGATGTGGAGGGGAACAAAGTCGTCCATTACGGACATTTGGTGGAACCTGGAAGCTCCGTATCGGCGATTGCCACAATGTTTAATGTATCGGATGCTATCATCTTGAAGCTGAATGGAATTGCAGATGCGAGAGATCTTAAAGCTTCTCAAGTTCTTGATATTCCTCTCAAAGCTTGTTCATCTGTGATCAGGCAAGACTCTTTAGACTTCCCATTCCTCCTCCCCAATGGCACGTACGATTACACAGCGAACAACTGCGTATTGTGCAAGTGTGATGCTGCAAAAAACATGATTCTTGACTGTAAGCCATCACAGCTGAAGCCACCCTCACAGAAATCATCAAATTGGTCGACATGCCCAGCCATGCCATGTGAAGGTAGCAATTTGCTCCTTGGTAACTCAACAGCTTCTGGTTGCAGCACCACTACATGTGCCTATGCTGGTTTCTCTAAACAAACCATCTTCACAAATATTTCTACTCTGAACACTTGCCCTGGACCTGAAGGTGGACCTCAAGATAATCCAAACAGCGCTTCAAGGACGGGTTCACAAGGTCTGAATGTGGTCGGTCTCGTCGTCTTTATGCATCTGCTGAGCTTTGGTTCCCTTCTCATTCATTCTTGCTCTGTTTTTCTTGATTCGAATTCTATTTGCCTCTGGATTTTACTAGACCTTAAATTGGAAATGGCTTGTCAAGTCAGTGACGGGACAGTTTCGAGTGGTTTGGCTAGAATAGTAGGGAAACAGCAAGTAATTCCTGACAAGACATTGTCATTTTTAAAATTGAAGTGTAGGGATGTTCGAGTTACTTCTCAAATTAGTAGGAAGGTTTTACAGAATCGAAATGGAGTTGGAAATTGGCATTTATCCGCCAGTTTTCGACACAATTATCTGTTTACTTCACCTGTTGTACACCGAAGAAATTCCGGTTTTATCGTGGCTAGGAATCAGTTGAGCTCAGATTATGGGGTGGATTCCTCCGGAGTGGAGGAAAGTTTGTATGTAGAAGAAGATGATGCCAGTTCAAGGGATCAGAATGGTGCAGTGCAGTGGAAAGAACCTTCCCAATATCAGCAACAGCCTCTGAATGTTAAGCGTGAGCTTTTAGCTCTATGTGTGCCTGCAATCGCTGGACAAGCTATCGAACCATTTGCACAGCTTATGGAGACTGCTTATATTGGAAGATTAGGTGCCTTGGAGTTGGCTTCAGCAGGCATTTCTATAAACATATTTAACTATATATCAAAGGTTTTTAATATACCTCTACTGAGTGTAGCTACTTCTTTTGTTGCTGAGGATATTTCAAAGAATGCAATTGAAGATCCTTCATCAGATTCCTTAGAAGGCTGTACGGATGAGAAACTAGTTGCGCGGTTATCTGAGAGAAAGCAGCTATCTTCAGTTTCTACTGCCCTATTGCTGGCAGTCGGGATTGGACTTATTGAGGCTTTAGCGTTGTATTTTGGATCTGGAGTGTTTCTTAACATCATGGGCATTTCTTCAGAGTCGTCCTTGCGCATTCCATCCCAACAATTTCTTACACTTCGTGCCCTTGGTGCTCCTGCTGTCGTTCTTTATTTAACCCTTCAAGGAGTTTTTCGGGGTTTCAAGGATACCAAAACTCCTGTTCTTTGTCTAGGAATTGGAAATTTGCTAGCTGTCTGTCTTTTTCCCTTGTTAATTTATTATTTTCAATTGGGTGCAACTGGAGCAGCAATTTCTACCGTTGTGTCTCAATATGTTATTGCCTTTTTGATGTTATGGTTTCTCAATAAACGAGCTGTACTATTGCCGCCGAAGTTCGGTGCATTGCAATTTGGTGTATACATGAAATCTGGTGGTTTTCTTCTTGGAAGGACTCTTTCTGTTTTAACTACTATGACGTTGGGTACATCCATGGCTGCACGTCAAGGTGCGGTGGCTGTGGCTGCACACCAAATATGTATGCAAGTATGGTTAGCAGTGTCTCTTCTAACTGATGCACTTAGTGCTTCAAGTCAGGCCATGATTGCTAGCTCCGTGTCGAAAGGTGATTACAGGACTGCAAAGGAAGTGACAAGCCTATCCTTGAAGATAGGATTGCTCGCAGGTACCATATTATTTGCAATTCTTGGGCTATCCTTCGGTTCGCTTGCTACCTTGTTCACCAAGGATTCGGACGTTTTAGGAATTGTTAGAACTGGAGTCTTGTTTGTTAGTGCCACTCAACCTTTGAATTCTCTGGCATTTGTCTTTGATGGTCTGCATTATGGTGTCTCAGACTTCTCATATGCTGCGTACTCAATGATGGTGGTCGGGGCTATCTCTTCTTCCGTTTTGGTGTATGCTTCTTCTGTTTTGGGTCTTCGTGGGCTGTGGTTGGGCTTGTCCCTCTTTATGGGCCTGCGTGCTGCTGCTGGTTTTTTCAGATTACTTTCCAAGAACGGTCCATGGTGGTTCCTGCACAGTGATGTCCAGAATACCAAGGTTCAAACATCCCCATAG MASGAGTMFFRVIVFSAIVAVCVAQPPPRFNCSSTSKCGSLIDYIPPNATTVGDVMKLFDVKHLLSFLGANNFPMNTSSSFSLPASQKIKIPFNCKCGNGTGLSDKRPIYKVQSGNTLDKIAEITFARLVTSLQIAAANGIPDPNKIEVGQELWIPLPCSCDDVEGNKVVHYGHLVEPGSSVSAIATMFNVSDAIILKLNGIADARDLKASQVLDIPLKACSSVIRQDSLDFPFLLPNGTYDYTANNCVLCKCDAAKNMILDCKPSQLKPPSQKSSNWSTCPAMPCEGSNLLLGNSTASGCSTTTCAYAGFSKQTIFTNISTLNTCPGPEGGPQDNPNSASRTGSQGLNVVGLVVFMHLLSFGSLLIHSCSVFLDSNSICLWILLDLKLEMACQVSDGTVSSGLARIVGKQQVIPDKTLSFLKLKCRDVRVTSQISRKVLQNRNGVGNWHLSASFRHNYLFTSPVVHRRNSGFIVARNQLSSDYGVDSSGVEESLYVEEDDASSRDQNGAVQWKEPSQYQQQPLNVKRELLALCVPAIAGQAIEPFAQLMETAYIGRLGALELASAGISINIFNYISKVFNIPLLSVATSFVAEDISKNAIEDPSSDSLEGCTDEKLVARLSERKQLSSVSTALLLAVGIGLIEALALYFGSGVFLNIMGISSESSLRIPSQQFLTLRALGAPAVVLYLTLQGVFRGFKDTKTPVLCLGIGNLLAVCLFPLLIYYFQLGATGAAISTVVSQYVIAFLMLWFLNKRAVLLPPKFGALQFGVYMKSGGFLLGRTLSVLTTMTLGTSMAARQGAVAVAAHQICMQVWLAVSLLTDALSASSQAMIASSVSKGDYRTAKEVTSLSLKIGLLAGTILFAILGLSFGSLATLFTKDSDVLGIVRTGVLFVSATQPLNSLAFVFDGLHYGVSDFSYAAYSMMVVGAISSSVLVYASSVLGLRGLWLGLSLFMGLRAAAGFFRLLSKNGPWWFLHSDVQNTKVQTSP Homology
BLAST of Csor.00g264510 vs. ExPASy Swiss-Prot
Match: Q9SVE7 (Protein DETOXIFICATION 45, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DTX45 PE=2 SV=2) HSP 1 Score: 563.9 bits (1452), Expect = 3.5e-159 Identity = 320/515 (62.14%), Postives = 390/515 (75.73%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy Swiss-Prot
Match: Q84K71 (Protein DETOXIFICATION 44, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DTX44 PE=2 SV=1) HSP 1 Score: 398.7 bits (1023), Expect = 2.0e-109 Identity = 228/526 (43.35%), Postives = 348/526 (66.16%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy Swiss-Prot
Match: Q9SFB0 (Protein DETOXIFICATION 43 OS=Arabidopsis thaliana OX=3702 GN=DTX43 PE=1 SV=1) HSP 1 Score: 336.7 bits (862), Expect = 9.2e-91 Identity = 193/483 (39.96%), Postives = 299/483 (61.90%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy Swiss-Prot
Match: Q9SYD6 (Protein DETOXIFICATION 42 OS=Arabidopsis thaliana OX=3702 GN=DTX42 PE=2 SV=2) HSP 1 Score: 328.2 bits (840), Expect = 3.3e-88 Identity = 192/481 (39.92%), Postives = 302/481 (62.79%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy Swiss-Prot
Match: O23006 (LysM domain-containing GPI-anchored protein 2 OS=Arabidopsis thaliana OX=3702 GN=LYM2 PE=1 SV=1) HSP 1 Score: 279.3 bits (713), Expect = 1.7e-73 Identity = 156/340 (45.88%), Postives = 204/340 (60.00%), Query Frame = 0
BLAST of Csor.00g264510 vs. NCBI nr
Match: KAG6589043.1 (Protein DETOXIFICATION 45, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1889 bits (4892), Expect = 0.0 Identity = 989/989 (100.00%), Postives = 989/989 (100.00%), Query Frame = 0
BLAST of Csor.00g264510 vs. NCBI nr
Match: KAE8645694.1 (hypothetical protein Csa_020341 [Cucumis sativus]) HSP 1 Score: 1437 bits (3719), Expect = 0.0 Identity = 772/959 (80.50%), Postives = 831/959 (86.65%), Query Frame = 0
BLAST of Csor.00g264510 vs. NCBI nr
Match: XP_022928217.1 (protein DETOXIFICATION 45, chloroplastic-like [Cucurbita moschata]) HSP 1 Score: 1149 bits (2973), Expect = 0.0 Identity = 616/621 (99.19%), Postives = 621/621 (100.00%), Query Frame = 0
BLAST of Csor.00g264510 vs. NCBI nr
Match: XP_022989363.1 (protein DETOXIFICATION 45, chloroplastic-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 1127 bits (2914), Expect = 0.0 Identity = 605/620 (97.58%), Postives = 616/620 (99.35%), Query Frame = 0
BLAST of Csor.00g264510 vs. NCBI nr
Match: XP_023529650.1 (protein DETOXIFICATION 45, chloroplastic-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1102 bits (2850), Expect = 0.0 Identity = 591/599 (98.66%), Postives = 597/599 (99.67%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy TrEMBL
Match: A0A6J1EJA1 (Protein DETOXIFICATION OS=Cucurbita moschata OX=3662 GN=LOC111435112 PE=3 SV=1) HSP 1 Score: 1149 bits (2973), Expect = 0.0 Identity = 616/621 (99.19%), Postives = 621/621 (100.00%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy TrEMBL
Match: A0A6J1JQ19 (Protein DETOXIFICATION OS=Cucurbita maxima OX=3661 GN=LOC111486438 PE=3 SV=1) HSP 1 Score: 1127 bits (2914), Expect = 0.0 Identity = 605/620 (97.58%), Postives = 616/620 (99.35%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy TrEMBL
Match: A0A6J1JP46 (Protein DETOXIFICATION OS=Cucurbita maxima OX=3661 GN=LOC111486438 PE=3 SV=1) HSP 1 Score: 1090 bits (2818), Expect = 0.0 Identity = 585/599 (97.66%), Postives = 596/599 (99.50%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy TrEMBL
Match: A0A6J1C2N8 (Protein DETOXIFICATION OS=Momordica charantia OX=3673 GN=LOC111007817 PE=3 SV=1) HSP 1 Score: 931 bits (2405), Expect = 0.0 Identity = 512/602 (85.05%), Postives = 544/602 (90.37%), Query Frame = 0
BLAST of Csor.00g264510 vs. ExPASy TrEMBL
Match: A0A1S3BIE1 (Protein DETOXIFICATION OS=Cucumis melo OX=3656 GN=LOC103490219 PE=3 SV=1) HSP 1 Score: 930 bits (2404), Expect = 0.0 Identity = 503/598 (84.11%), Postives = 544/598 (90.97%), Query Frame = 0
BLAST of Csor.00g264510 vs. TAIR 10
Match: AT4G38380.1 (MATE efflux family protein ) HSP 1 Score: 563.9 bits (1452), Expect = 2.5e-160 Identity = 320/515 (62.14%), Postives = 390/515 (75.73%), Query Frame = 0
BLAST of Csor.00g264510 vs. TAIR 10
Match: AT2G38330.1 (MATE efflux family protein ) HSP 1 Score: 398.7 bits (1023), Expect = 1.4e-110 Identity = 228/526 (43.35%), Postives = 348/526 (66.16%), Query Frame = 0
BLAST of Csor.00g264510 vs. TAIR 10
Match: AT3G08040.1 (MATE efflux family protein ) HSP 1 Score: 336.7 bits (862), Expect = 6.5e-92 Identity = 193/483 (39.96%), Postives = 299/483 (61.90%), Query Frame = 0
BLAST of Csor.00g264510 vs. TAIR 10
Match: AT3G08040.2 (MATE efflux family protein ) HSP 1 Score: 336.7 bits (862), Expect = 6.5e-92 Identity = 193/483 (39.96%), Postives = 299/483 (61.90%), Query Frame = 0
BLAST of Csor.00g264510 vs. TAIR 10
Match: AT1G51340.2 (MATE efflux family protein ) HSP 1 Score: 328.2 bits (840), Expect = 2.3e-89 Identity = 192/481 (39.92%), Postives = 302/481 (62.79%), 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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