
Tan0021616 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCAGCCGCAGCAGGGGAAAGCAAAAGCAAGATTCTGATAATCGGAAGCAGTGGGTACATGGGTAAGTTTGTAGTGGAAGCGAGCGCCATGAGTGGGCATCCCACTTATGTTCTTCTTAGAGATTCCACTCTCCTTGATCCTCACAAATCTCACATAATCAACCATTTCAAGACCTTGAATGTCTTTTTTATCTCTGTAAGTCAATATTATTTTAAACCTCTAATTATTAATTTAATTAATTTCTTTAGAAAAATTTTCAAATCCCAGCTGCTTAATTATTCATTAACTTGTTGTTAATTAGGGTGATCTCTACGATCATGAGAGTTTGGTTAAGGCCATCAAACAGGTGGATGTGGTGATATCCACTGTTGGACACAGTTTGTTACCCGATCAATATAGAATCATCTCTGCCATCAAACACGCAGCCAATGTTAAGGTCCCATTAAATTCTTTAATTTCTTACCTTTATTTTATTATTCTTTATCCATTCAATGTCTTCCCAACATTTTCCTCTCAACTTCCCGTCTCAAAACTTTGGCTTGGTTTTTCAAAACATAACTAAAAACTAGATAACAAAAAAGTTAAGAAAGTAGTATTTATAGACATAATTTTAAAAACCAAGTAACTATCAAATATTACATTCGATATTCCCCTATGAGGTTTCTTGTTTTTGTTATCCACTTTTTACTTATATTTTCAAAAAGCAACTCTTTGTTTTGAAAATTAAAACAAAAAAAAGTTTTCACAAACATGTTCTTCTTTTTGGGATTGGGCTAAGATCTCAAATATTTTATGAAGAAAGATAAAAACCATTGCAGAGAAATGAGGAAAGAACAAACATAATTTTTAAAAGGGGCACTTGCATGAATAACAAAAAAAAAAAAAAATACAAATATTGCAACCATGTCACTCCTTAATTCAATTTGCAAAAATAGCAACAGAAAAAGGCCCAACCCAAACAGATGGAGTGCAAAGTAAAAAATACCCCTATATTTTTCGCGTGTGTTTTTCAATCTAAAGTATATCAATAATCTATCAGTAGTTTATCAATAATATACTGATGATATACTAATTATATACCTTAAATTAAATATACTATTAATATACTACTGATATACCAAATATAAAGTATATCTGATATACTACTGTATTTAAAAAACTATTGTTAGATTTACTAATACCTTCTCCGTATTTTTCAATATCGAGAAAATCAGTAGTCTATTAACAGTAGATCTAATATAGCTATGATATATCTAACCGAAAAATAATTGCATGAGTGATATACTGTCGATTCCATTGATTTCACTAATATTAAGTATATATTAATGTGATAAACTACCGATATACTTTATTTAGTATATCACAAACAATGATTTATGTTTGATAGTGATTTATGTTGAGATACTTTATTCAGTAATATTAAGTATATCAATATCGAGAAAATAAGTAGTTTAATTATCAACAATAGATCGATATACTAATGATATATATCCAATCAAAAGTAACTACATGAGTGATAGTTAGTATATATCCAATCACCATTTGTGATATACTAGTGATATCCGATGATTTCACTAATCTTAAGTATATATCAGTATGATATACTTTATTTAGTATATTAACGATACATCACAAATGGTGATTTATGCGTGACGGTGATTTATGCTTTACAGTGATTTATGCTGATATATTTTATTTAGTAATATTAAGTATATCAACGAGATCTAAAAAACTATGGATAGATTTGGAAATGTCCTTATGCATTTTTCAATATCGAGGAATCAGTAGTCTATCAACAATAGATTAGATATACCATGGGTAAAATAGGAATTCCAATAAAAATGTAAAAGGAAAAACCTAAAATTTTGCTACATTTGCAAAAGGAAAAAATGGATGATAAATTTACACAATTAATCTAATCCTTTTTGCCACCTATTATAATTCTCTTTTTTAAAAACAAAAAACTAAATGATTATCAAATAATGGTTAAAATTTTAGATTTTGTTTTTGTATTAAAAATTTTCAATTAGGTCGGTCACTAAAAAAGTTCGTAAAATATGTTGATAAAAAGTTTATGTATCATTAAGTTTATGTATCATTAAGTTATATTACTTTTTTTAATGACTTTACATCGTAAACCCGCCCACCCATTTAATTCCCAATAACAAAATTCTTATAGATGGATATGTCGAACCAATTTGATCTTAACTCAACTAGTTTTAAAAAAAAAATTATGGTTTCAATAAATAATCTTACATATGGTTCTGAAAAAAGATGTTCAAAAAGCATTTTCAGGTGCTCAAATATTTTAATAAAAAAAACAATAATTTAATATCTACATATTACAGATAATTAATTATGTAACTGAAAGTGTATAGAACCTTAGAACCTCACTTCCCATCATTTTTTGAGTACATCAATAATTGGGGGTGAGAGAATTCGAACTCATGACCTCTTGATCATAAGTCTTACTTCATAACAGTTGAGCTATGCTTTTGTTGACCTTCACTTTCCATTATAGATAATAATCGATAATAGAGTTCGAATTAGATTTGACTTTTGAACCGAACATATTTGTCTCATTAATTAAGAAATTTCATTTTCATAGATGAAGTGTCTTATTCATATGTTTATGACCCAACTCTAAGATCTTTTAGGTTGAGTGGTGATATAAAACAACTTGTGTAATTAAATACCATGAATAAGATCGCATGCCTAATTATCCTAAAGTATTAAGGGCTTGTTCAGTAACAAGTTGGTATCTAATTTTTGGTTTTTGAAAATTAATCCTATAAGCACTATTTCCACTTATAGGTTCCCGTATTTTCTTATTAACTTTTTATCTATATTTTCTTACAAGGCCAAGTTTTGAAAACTATTTAAAAAAAGTAGGCCCCATTTAATAACCATTTGGTTTTTGATATTTAAAAATTGTGCTCATTTTCTCAATAGTTTTTTTTACCCTAGTTTTCATATTCTCTGTAATGGATTCCATCTTTATTACGAAAACACTTGAATTCTTAATCAAATTTAAAAAACAAAGACAAGTTTTTTAAAATTATATTTTTTTTAGTTTTCAAAACTTGACTTGTTTTTTGAAAACAAATCTTTAAAATAGATAAGAAAACATAGAAATTCATCAATGAAAGTAGTATATATATAGGTTTAATTTTTAAAAACTAAAAACCAAAAACCAAATGAGTTATCAAACAAGGTTGTAATTTTCAAAAACTTAATTTCATTTTTTGAATTTAGTTAGAAACTCAAATACTTTCTTAAGAAATATGAAATCATTATAGAGAAATTGTCAGAAAACAAACACAATTTTCAAAAACTAAAAACCTAATAGTTATCAAATGGGACCTAATTTATATATATATATTTTTTTTGCCTGCTTCACTCATTATTTAACAAGAGCATGATTATGAGTAACTGTTCTTCTCTTTTTTAAGAGATTTTTTCCTTCGGAGTATGGGAACGATGTGGATCGTGTGCATGGCATTGAACCAGCAAAATCAGCCTTCAATGCGAAGGCTGAAATTCGTCGAGCTGTGGAGGCTGCAAATATTCCATATACCTTTGTATCATCCTTCTTATGTTCTGGTTGGTTCCTTCCTTCACTGGCTCAGCCACAACTTCAACCTTCTCCACCTAAAGATAATGTTCTTATCTTTGGAGGTCAAAATACCAAAGGTAAAATAAGATTTATGAGAAGAAGAAAAATGAAAGTTGCAGGTTAATACCTTGTTTCTTCTATATTTAGAATAGTGATAGAACACTGATATTTATACACCTTGAGGCCAATCAATAAAGAATAATTGTAACAGAAAAGAAAAGAATAAAAACAATAAATAACAGAATAACAACCAAGAGTATCAAACGTAACAAGAATTTGTTAGGATCTGCTTCTAGAATGCTCCTGTTGGGTTGGATCAACATAGTCTGATGTTTGGCTACTTGGGCCTCTGTGGTGGTGTGATCCATGAGACAAAAGTTGTGGGGTTGGATCGTTAACATTCCCCCGCAAACGAGCGGGTAGTCCAACTATCCCGAGTTTGGAGCGAAGAGAATAGAACTACGAGTGTGTAAGAGACTTTGTAAGACAGTTAGCAAGTTGATCAGCCGAGGGAACATACCGAACATCAAGGCAGCCGGCAAGGACCTGATCACGCACAAAGTGAGCATCAATCTCAACGTGCTTTGTGCGAGCGTGGAAGACAGGATTGGCAGCCAACACATTGGCACTGATGTTGTCACACCACAGTACCGGAGTAGAAGGAGAAGAGAGACCAAGTTCACGCAGGAGTTGCTGAATCCAAATTATTTCGGTAGAGGCATGAGCAAGGGCGCGATATTCGGACTCCGTGCTTGAGCGAGCAACAACACTTTGTTTCTTTGAAGACCAAGAGACAAGAGTCTCGCCAACAAAGACACAGTAGGCAGCGATAGATTTTCGGTCATCAATGTTGGAGGCCCACCGCATCGAGAAACGCTCAGAATGAGATAATCAAGGTGAAATTTGCACACAAGAGGCCAAAATGTCGAGTACCACCGACATAGCGAGCAGCACGTTTGACAAACTTGCGGTGGTCGTCGCTGGGTTGTTTGAGGAACCGGCCGAGATGATTAACAATGTATGTAATGTCCGGGCGAGTGTTAGTGAGATATTGCAGGGCCCCGATGGTGCTTCGATAGATATAAGGATCAGACAGAGGAGTGCCAGTATGAATGGAAAGATGCTTGCCGATGACACTCTGGGAAGGAGCCGACGAACCTCGATCGAGTTCAATTTGTGCGAGAGATCAAAGCAACATATTTAAACCGATTCAAAAGAACGCCGCACTCAAGATAATGAACCTGAATGCCCAGAAAATATCGCAGCAATCCCAGATCCTTAAGAGCATACCGTGAATGTAACTTGCAAATCAGTTGAGAGACCAGAAGTGAATTGTTGCCAGTTATAACAACATCATCAACGTAAACCAACATCAAGATGAGGGAACCAGCTGACTGATGTATATATAGAGAAGAGTCGATCTCTCGAGTTCGTGAAACCCGGGACGAAGTAAGAGTGCCTTTGAGAGTGTTTGTCCAAGCGCGATGAGCTTGTTTGAGCCCATAGATGGCCTTGTCAAGCTTACACACATGGTTGGGAAACTGAGAGTTAACAAATCCGGGTGGTTGACACATATACACATCCTCATCGAGATGACCGTTGAGAAATGCATTGTTGAAATCAAGTTGTCGCAAGGCCCAACCCTTGGATACAGCTAGATTGAGGACCACTCTAATTGTGGACTCTTTGACCACCAGGCTAAACGTCTCAAAGAAGTCAATGTCAGGGGTCTGATGGAATCCCTTAGCCACAAGACGCGCTTTGTAGCGCTGAATGGAGCCATCCGCATTGGTTTTGATACGAAAAATCCACTTGTTGCCCACCACATTACACTGTGACGGACGAGGAACCAAATGCCAAGTGCCATTTTGAGTGAGAGCCGTGTACTCCTCAATCATGGCCTGCTTCCATTGTGGGGTGGCAAGAGCATCAACAACCCGGGTAGGTTCAGTGAGAGACCAATCAATCAAGAGGTATTCGTTGAGAGAGCCGGACTTTTGGTTTGAAAATACCGCCTTAGCACGGGTGATCATCGGATGGAAGGGTTGAGGGAGGAAGGAGAGAGGTTGGGTTGACCGGCAGGTGGTGTCGGCGAGGGAATTAAGGGGCGACATATCGTAGGGAGAGCAAGCGGGAGGAGAATGTCTTTGGGAGGATAGGTGGAGGATTCGTGGGAGTTGGGTGCACCGTGTAGGTGAAAGAGGAAGAGAGGGCGGGGATTGTGGTGGGGATGGTGGGGAGACCTGGGAAGTAGGCAGTGGGGGAGAAGGAGCTAATATAGTGGTGGAGAGGTTTGGGAGTAATACAGAGGGGAAATGAGAGATTACAGGTTGGAGGGCAGAGGCAGACACATTAGGGGGTTGGTAGCCAAGAGAACAAGATGGTGAAAAGAAGCCTGTGAAACAAGGAAAATCAACTTCATTAAACGTAACATGACGAGAAATGAACAACTTACCAAATCAATCGAGGCACTTGAAGCCTTTATGATGTGTACTTGGTCCCAGATAGATGCATTTAGTTGTATGAAACTCAAATTTGTGTGTCTGGTAAGGACGTAAATTGGGGTAGCAAGCACAACCAAAAGTCTTGAGAGTAGTAAAATCAGGTTGTCTGTTATATAGTAATTTCATCGGTGATCGCTGCTCTAGGACAGGGGTGGGCAGTGAATTGATCAAGGAGACAGCCACGAGAAATGCATCCCACCAGAAAGTCAGTGGCATAGTTGCTTGGGCCAGGAGTGTCAAACCAGTTTCAACAATATGTCTGTGCTTCCTCTCAGCCCTTCCATTCTGAGCTGATGTATAAGGACATGAAAGTCGTGATATGATGCCAAGTTGACTGCAGATTTGTGAACCTTGGTAAATTCTCCACCATTATCAGAGTGAAAACACTTAATAACTTTGTTGAACTGAGTCTGCACCATTTGTATAAAATGTTCGAAAGCTTGAAGTGTATCACTTTTTTGCCTAAGAGGATAAATCCATACATATCTACTGAAATCATCAATAAACACCACATAATATTTAAAGCCATCAAATGATAACAGAGGGGTTGGTCCCCATAGATCAGAGTGCACTAAATCAAAAATAGAAGAAGCTTTAGCCAAAGACAAAGAGAATGGGAGAGCATGAGTCTTTCCATACTTGCAGGATTCACAGAAATCAACACCTTCATTAACTTTAACTGGGAGGTTACAACTTTTAATGACAGAGTCTAGAATTTTAACTGAAGGATGTCCAAGGCGTCTGTGCCAAATTGCCTTAGGTACAACTTTATTGACTGAAGAACTACCTTTAAACACAGAATAAGCATATAGTTGGTTATTTTTATGCAACGGTAAAGTTGATTTGGTAGAAGCAGCTGCAGATTGACCAATTCGTGGTTCTATATTGGCATTGTCCAGTTGATATAGTCCATCTCTAAGCACTCCTTTCAGCATTGTTCTGTCCGTAGCTTTGTCCTTAACAAGACAATAAGTACCATGAAATTCAAAGTAAATATCATTATCCTGAGCTAATTTTGACACACTTATTAAGTTCTTTGCTATTTCAGGTACATATAATAAGTTTTCAAGCCTGAGATCTTGACAGCCATTAGTCAAATATGCATTCCCTATATGCGAAATTCCTAGGTTATGACCATTTCCAATAACAACATGATCGGTACCTCCATATTCGATCGGGTTGGCGGATTGCCAAAATCAGAGGTGACATGAGCAGAGGCACCACTATCAGCATACCAGGTTTGATCAGCCACGGTGTCTGGACTTGCAACAAATGGATTGGTATTGGGAGCTGCAACAAAGGCATGGACACTTTGATTTCCAGTTGGACTGAATGATTGTGGTTGTGGATTGTAGTTGTTTCCTCTGTTTTGATTGATATTGGGTGCATAATCCTTGTTGAACTTTGTTGTAACATACCAAGGCGAGTGACCAAACTTCCCACATACCCGACATGTCGGTTTGTTTTGACTATTATAGCCTCTCGCCACGACCTCTTCCTCGTTGACCACCATTACCTCTCTCGAGTATTGCCATTATCATCGCTTATTTGAGTTGTAATTTTGATTTGAGGAAGGATTTTTCTGATTGACATTGCTTCTATTGCTCGCCATATTTACAGATATATTATGGGAGAAAGACGAGTTGGTTCGCAAAGAACTCTGATGTTCCAAGCGTTTTTCAAATACCGTAAGTTCATTCCAACATCTTCCCATGAAATTCCGCTTCTCCCTTGGATCGTAGGCTACGATCAAGTTTGTATTCTTCATCCAATCCCAAGAGAACTTGTGAAATTAGGGCCACAGTGGTTACCGGACTACCATCATCCCCAAGTTATCTGCATTGCATTTCATTAACCTTAAAAATTCAGGCATTTTTAAATTACCTTTGCGGATCATTGAAACACTTGTCTTAGGTAATCTTCTTCGCCTCGATCAGTAGTCCAAATAGAGTTTGTATAGCTCTCCCACGAGATCTTTTGAGTTTTCATAGCCCATCACCTGAGTAGCCACTTCAGTTGTCATGGAGTTATATAGCCAACCCAAAACGAGTTGATCGATAGTCCTCCACTGTTCGTAGTCTGGATTCGTGACACCACCGCTTCGAGTTCACTCATCGAGCTTGATGCTCCTTCTGCGGAGGTTGCAACTCCATCATTCTGCTGATCCTCAGATTGAGAGATAAATATCGGTGGGCACAATTTTGTTCCAAGTAAGAAGCCTTCCAACTTATAGCTGCGGAGAATAGGTAGGGCTAAATTCTTCCACAACAGGAAATTTCCACGGTCAAGTTTAATTGTTGTAACTTGATTTAGCAAATGATTTAGAGAGGGTGTCATCAAACTTGATGCTCCAGGTCACCAAGGAAGAACTTCCACTAAATCAAGCGTTAGCCATTATAGGCTCTGATACCAAAATAAGATTTATGAGAAGAAGAAAAATGAAAGTTGCAGGTTAATACCTTGTTTCTTCTATATTCGAATGTTGATAGAACACCGATATTTATACACCTTGAGGCCAATCAATAAAGAATAATTGTAACAGAAAAGAAAAGAATAAAAACAATAAATAACAGAATAACAACCAAGAGTATCAAACGTAACAAGAATTTGTTAGGATCTGCTTCTAGAATGCTCCTGTTGGGTTGGATCAACATAGTCTGATGTTTGGCTACTTGGGCCTCTGTGGTGGTGTGATCCATGAGACAAAAGTTGTGGGGTTGGATCGTTAACAAGGTAATCAAATCTAGATTCTTTACCAAAATTAGCCTTAATCATAAGGCACTTATTACTTTACTTAAAGTTTAGGGTTATTAAACCTACTATAAAAACCTAAACTCTCATCCAATATTACCTATATGATTTTTGATGTAATACTTGGTATATTTCATAAAATTCTTCCACACATATTACAAGAGGAATGGGCTACATTTATAAGAGGAAGTAAGGCCCATTCTATCTAACAGTTTAACAACCCATATATCTAACAGTCTAACAACCCATATAAAAAACACAAGTATTATAACTAACCATAGTTATAAAAAACACAAGTATTATAACTAACCATAGTTAAAAACTCAACTAGAGAAACTAAACCTTTAACAGATATGATAACATCACCCTCAAGCTGGAGACTCTAAAATACCAAACTTGGTTCGTAACATTATGAAACGTGAACATGATAAAGGTTTAGTGAAGAGATCTCCAAGCTGATCTAGTGTGTGTTGATGTAGTTGATCTGAATGTCGTTCCAAACAACTTTCTCCCTCACAAAGTGATAATCGATTTCTATGTGCTTCATTCTGCCATAAAACAATGGGTTGTTAGCTAGTGAGATCGTAGAAACATTATCACACCAGAGTGTTGGAGTTTTCTGAATAGGTATCCTGAAATCACAAAGAATTTGCCTAATTCAGGTAAGCTCAGTTGTTGTAACAACAAGAGTGTGATACTCGGCTTCCGTGGATGATCTAGCAACAGTTGGTTGCTTCTTTACTCCCCAAGCAATCAGATTCAGTCCCAAGAATACCACAAACCAGTCGTGGATCGCCTATCATTGGGATCCCTGCCTAATCTGAGTCACACTAGGCTTGTAGATCAGCAGATCTTGCCTGAAACTTTAAGCCAATGTGGCTTGTGCCCTTTAGGTAGCGGAGAATGCGTTTGGCAACAACCATATCCCCTTCAGTTGGGGAGTGCATCCTTTGGCAAGCACGATTGACAGAGAAACTGATGTTAGGGTGTGTGAATGTCAAATACTGTAACGCCCCAACTAGACTTTGGTAGCCTTAAGGATCGTTGAGGAGTGTAACAGAGGGGGTTGTTTCTTTTATCGCACAAGGAGTTAGACAAGGCTTCGAAGAGCTCATTCCAGCTTGATGCAGAAGATCAGTCACGTATTTGTGCTGATTGACAGAGATAGTAGTCCTATCTCTTGTGATTTCCATGCCCAAAAAATATTTAAGCTCTCCCATATCAGTCATTTCAAATTCTGTGTTTAGATGTCAGATAAGCTGCTCAACATACGAGGATCATTCCCTAATATTATTATATCATCAACATACAGTAACAAAAAGGTATTGGACCCTTCAGCACATCGAATGAACATGGAGGAGTCAGCCTTGGATGCCTCAAAATCTTGGTGAGTAGATAATTGGTAAAACACTCAAACTAGGCTATGGAAGCTTGTTTGAGTCCACATAAGGGTTGAGTCATGTAAACTTCTTCTTGAAGTGTTCTATGTAGAAACACATTCTTCACATCTAACTGTCGTAAAGACCAATTGTATTGAGAAGCTAGTGAAAACAGAATTTGCACTGTTGTTTGTTTTACCACGGGACTGAAGGTTTCGGTATAGTCAACACCTTCTTTTTAATGGAATCTTTTGGCTACAAGTCTAGCCTTGTAACGAGATATAGAACCATATGGATTTATTTTAATCCTATAGACCAATTTGTTGCCAATTATTAGATTCTTGCCCTCTGGTAAATTAACTAAATCCCACATTCCTTGTTTTTGTAAGGCCATAAATTCCTCAGCCATAGCTGACCTCCACTGTTCATGTTTGTTGGTCATAGTATATGTGGTTAGTTCCTCACTGTAACTAGGACTACGACTAGGGGTAGAGGCTAAGTAAGTCTTCTTCCTTTTTACAATACCATGCTTCGATCGAGTCATCATAGGGTGGATATTTGTCATAGGCACAGAACCTGCATCAACACCCGGTGAAGAGATGGAGATGGGACTGAAAGATAAGGAGGAACTAAGGTTAGAAGACATCGGTTAGGTAAATGAATTTGGGTTTGACAAAACAAAGAGGGGAGGGAGATTTGAAAAAGATGGTGGAGAGCAAACAAAGGTGAAGAACTAATAGGTGCATTGGCAAAAGGAAAGAGATGTTCATTGAATAGGACATGTCTCGAAGTAAAAAACTTGTTTGTCTCAATGTGGTAGCAAATATATCCTTTTGTATTTTGAGCATATCCTAGAAATACACACTATGAGGTTCTGGACTGGAGTTTGTGTTTATTTGTAGGGTCTTAGGAGAGGATAACAAGCACACCCAAAAGTCTTTAAATGGGTGATGACTGGTGGTTTGTTGTAAAGTTTTTCAAAAGGTGAGACATTGTTAAGAATAAGTGAAGGTAGCCTATTTATGAGATAGCAAGCAGTGGAATAAGCATTTCTTCATCATCTATATGAACATTTGCATTATTCAGCGAATCTTTAATATCCTTTGCCCTTTGTACATAAACATCAATACTTTCATCAGGTTTCTTGGATAAGGTTTGCAGAGAAGAGCGTAGCTGAATAATATGAGATTGAGATAAAGAAGAGAACCTTGTTTCAAGCCTCACCCATGTATCTCGGGACATGACACACCCCACAACCAGGGACATAACAGATGGTGAGAGCGTTGAGTTTAAGAGAGCTTTGATTCCCCGATCTTGAGTGAACCAATTCGAATAGCGGGGATCTTCGTTGACTGTAAAAAATTCATTCTCATCACGAAGGTACTGGTCTGGAGCGATGCAAGAATCATCGATGAACCCAACCAATTTGTGAGCTTCGGAGATAGGAAGAATTTGATGCCTCCACAAAGAGTAATTTCTAGATTTGAGCTTCACAGAAACCAGATTGCACACATTGGAAAGAAGGAGAATCGGGAGAGAAGTTGAATTCAAAATAGCTTTTGAGGTGGGCATGGTTGTGGAAGAGGACGGTGACGCCATGTGGAAGATTCTTGAAAGAAAAAGAGTGGTGTGGGTCTTATTGCGTTGATACCATAACGTAATATACTTGGTATATTTCATAAAATTCTTCCACACATATTACAAGAGGAATGAGCTACATTTATAAGAGGAAGTAAAGCCCATTCTATCTAACAGTTTAACAACTCATATCTAACAGTCTAACAACCCATATAACAAACACATGTATTATAACTAACAACAACTAAAAACTTAACCAGACAAACTAAACCTTTAACAGATATGATAACAATTTTAAGTTTTATTTCGATTATAAACTTTCATTTCATTCTTCTTTTTGGTCCTTACGGTTAAATATTCTATTCATTAAATTACACAAATACTCTTGAATTTGATGGTATAGGTCTTTGGAGTAGGTTTCAGTTATGCCCCTAGATTTTGAAAAGTTTTGTTTTAACTTTTGAACTTTCAAATTGTTCCAAAAAATACTCTTGGAGTTTTTTACATTAAAATGATGAATGAAAATTGGCACGGTAACATACAAGTAAAAATTGAAAATTAAAGCATGCATGATATCATTTACAACATCATTCATGTAAATTGATGTAACAACCCATATGTTAACATTGATTTTTTTAATGATTTTGATTATCTTTATAGTTTAGATTGAATTATAAATGATATTATATGTATGCTTTCTAATTTTTAAAATCAACCCATGCCAGTTTTTGTCCTTTATTTTGATGAAAGATTCTCGAAGTGTATTTTTTTAGAATAATTTTGAAGTACAAGAGTTAAAATTTATTCTCATTGTTTGAAGAGTTTTAATTTAGTCTTTTATGTTTCAATATTTTTCCATTTAGTCTCTCACCAATGTGAATGTTAAAAATGACTAAGATAAAATCACATAACATAATACTGTGAATTGATGGAATTGATGGAAATTTAGAAGGGAAAAGTCATCTAATTTAATTAAGAGAGGATTTTTTTTTAATTTCTCATCCAAATTTATAAGAAATTGGTAGAACTTTAGAATTTTTTTTTCTCTTTTAAGTTTTTGTCATTATACTAAATATGATGTCATGTAAGTTTATCATCAACCAATTAATTTAACATTCGTCACAAACTAATTTTTCTTTTTTTAGAGAAATTAAAAGAATACAACATTAGAGAAACAATCCTTCAAGGACTCGACATTCTACACCCGTCCAAGTTTGCATAGAAAAGGAAAACTGCACACTCTTTGCTAGCCTATTCACCATTACATTTATATCCCTATGGTTCTATACAAAACGCGTATCTGATTCCACCGCTGAGTCATAGCTTGCGCATCCCTAATGTCATAGCTTGCACATCCCTAACGTAATCCATCGCCTTTGTTAGATCCTGTCGATTATTATCTATCAAAGTAATCGTATTTAAAGAGTCAGATTCTACTTCCAGCGGAACAACATAATTAGTTATTAACAACAATCTCTGATAAATAGCTGCTAGCTCATAAATAAGTATTGGCCAAGCAGAATCACAAAACTTATGTCCCACACTTATGATGCATCCTTGACAATCACACGTAGGATCCAACCTAAACCTCCTCTCGCCTCTTTATCATCCCATGCTGCATCCGTCACAAACTAAATTGACAAATATTAAAATATATGTAATTAAATTGAAACCTTTTTTAACAAAAAAAAAAAAAAAAACATGAAATTGATCAAAATAAAAATTTGAGAAAAAATAACATTAACATTTAAACCTACCACCATTATATGATTGTAGGCCGTCTATTGGGCTAATATTCAAGTTGGTCTTCTAGAGTGTCTTTTTTTAAAAAAAGAAACAAAAAATATATATATCTAGCACAAACTTATTGTTTCATTTTTCTATGATCAGCAATATTCAACGAAGAACATGACATTGCCAACTATATTATTAAAGCTGTCGAGGATCCAAGAACTATGAACAAAATCCTCTATGTTAGACCTCTTCAAAACACCTACTCTTCCATTGATCTTGTGTCCCTTTGGGAGAAAAAATGTGGGAAAATTCTCGACAAGATCTATGTTTCAGAGGAACAATTGTTGAAGAACATCCAAGGTTAGCATTTATAATTTATTTAATTTTGAAGTTAGCAAAACGTATGCCATGAGAATGAAAGCTTAACTTTTGAACAACAAAATTGTTACCATCAAACTTAATTTTGTACCTCAAGTTTTTGCTTTTCAATTTGAAATGGTCAGATTATTGTTAATGACTAATATTATAGTTTTCAAATTTATGGAGTTAAAACTTTTAGTGTTAAAATGAATTTTGGTTAGACAGTAATAACTATATAGTTCGAGGGTTTGATTGTATCAATTTTTGTAGTTTATGGGTGATACGCGCATTCTACAATATGTTAAAGTTTAATTATAAAATTTTCTATGTTTTAGATGTGATTGATCAAATTGAAAGTTCAAAGATATAAATAGTATCAATTTATATAATTTAGTGTTTTTTTTTGGATATTTCCTCTTTTTGTATACTGAAATTTCTTATCATTATCATTATAGTATAAAGTTTGGGTTATAGATTAATGATAAGACCCATTTGTGAAGGTGAAATTGTTTTTTATATTATATTTAGTTCTACAAAATATATTTCTAACATCTCGTTTGATAATTTTTTGGTTTTTATTTTTGAAAATTAAGCTTATAAAACACTATTTTTTATGAATTTCTTTATTTTGTTATCTACTTTAAAATATTTTCAAAATCCAAGCTAAATTTTGAAAACAAAAAAAAAATTAAATTTTTCGTTTTATTTTTGGAATTTTACTAAAAAAGCAAACTTATTTTAAGAAATGTAAAAATCATAATAAAGAAGTTGTGAAAAAACAAACATAATTTTTAAAAACAAAAACTAAAAGCAAAGGCTCGACTCATAACCTTTTGTCTTTTAGTTTTTGACAATTGTGTTTGTTTTTCTCACATTTCTCTAGAATGAGTTTCACATTTCTTAATAAAATATTTGAATTATTAGCCAAATTTCCAAATAATAATAATAATAATAATAATAAATTTTCGGAAACTACATTTTTTTAGTTTTCAAGACTTGACTTAATTTTTGAAAATATAAGTAAAAAACAGATAACAAATCAAAAAAACCCATAAGTGGAAGTAGTATTTATAAGCACAAAACCGAAATTATTATTGAACATGACCTAAATAATTATTCGGTTAAAGCAAGAAAAAGAGTTAATGACAATCATCCACTTTAGCATCTTTATGGAAAACAAAAATGGTAATATGATCATATTCAACAAGAACCATTTCAAATTTTTTTTTCAAACAAACAACTTGAAAACCTACAAGTTCTCACATTCTACAAAAATTCAACTAATGGTTTACCTAATTGTGTGTTTGTATTTCAGAGGCTCCATTTCCAATAAACTTCACACTATCAATTTTTTACTCGGCTTTTGTGAAGGGAGATCAAACCAGCTTCGACATTGAGCCATCAATTGGAGTGGAAGCCACAGAACTTTATCCAGATGTTAAATATACAACTGTGGAACAATTTCTCGATCGGTTGGTTTAA ATGGCAGCCGCAGCAGGGGAAAGCAAAAGCAAGATTCTGATAATCGGAAGCAGTGGGTACATGGGTAAGTTTGTAGTGGAAGCGAGCGCCATGAGTGGGCATCCCACTTATGTTCTTCTTAGAGATTCCACTCTCCTTGATCCTCACAAATCTCACATAATCAACCATTTCAAGACCTTGAATGTCTTTTTTATCTCTGGTGATCTCTACGATCATGAGAGTTTGGTTAAGGCCATCAAACAGGTGGATGTGGTGATATCCACTGTTGGACACAGTTTGTTACCCGATCAATATAGAATCATCTCTGCCATCAAACACGCAGCCAATGTTAAGAGATTTTTTCCTTCGGAGTATGGGAACGATGTGGATCGTGTGCATGGCATTGAACCAGCAAAATCAGCCTTCAATGCGAAGGCTGAAATTCGTCGAGCTGTGGAGGCTGCAAATATTCCATATACCTTTGTATCATCCTTCTTATGTTCTGGTTGGTTCCTTCCTTCACTGGCTCAGCCACAACTTCAACCTTCTCCACCTAAAGATAATGTTCTTATCTTTGGAGGTCAAAATACCAAAGCAATATTCAACGAAGAACATGACATTGCCAACTATATTATTAAAGCTGTCGAGGATCCAAGAACTATGAACAAAATCCTCTATGTTAGACCTCTTCAAAACACCTACTCTTCCATTGATCTTGTGTCCCTTTGGGAGAAAAAATGTGGGAAAATTCTCGACAAGATCTATGTTTCAGAGGAACAATTGTTGAAGAACATCCAAGAGGCTCCATTTCCAATAAACTTCACACTATCAATTTTTTACTCGGCTTTTGTGAAGGGAGATCAAACCAGCTTCGACATTGAGCCATCAATTGGAGTGGAAGCCACAGAACTTTATCCAGATGTTAAATATACAACTGTGGAACAATTTCTCGATCGGTTGGTTTAA ATGGCAGCCGCAGCAGGGGAAAGCAAAAGCAAGATTCTGATAATCGGAAGCAGTGGGTACATGGGTAAGTTTGTAGTGGAAGCGAGCGCCATGAGTGGGCATCCCACTTATGTTCTTCTTAGAGATTCCACTCTCCTTGATCCTCACAAATCTCACATAATCAACCATTTCAAGACCTTGAATGTCTTTTTTATCTCTGGTGATCTCTACGATCATGAGAGTTTGGTTAAGGCCATCAAACAGGTGGATGTGGTGATATCCACTGTTGGACACAGTTTGTTACCCGATCAATATAGAATCATCTCTGCCATCAAACACGCAGCCAATGTTAAGAGATTTTTTCCTTCGGAGTATGGGAACGATGTGGATCGTGTGCATGGCATTGAACCAGCAAAATCAGCCTTCAATGCGAAGGCTGAAATTCGTCGAGCTGTGGAGGCTGCAAATATTCCATATACCTTTGTATCATCCTTCTTATGTTCTGGTTGGTTCCTTCCTTCACTGGCTCAGCCACAACTTCAACCTTCTCCACCTAAAGATAATGTTCTTATCTTTGGAGGTCAAAATACCAAAGCAATATTCAACGAAGAACATGACATTGCCAACTATATTATTAAAGCTGTCGAGGATCCAAGAACTATGAACAAAATCCTCTATGTTAGACCTCTTCAAAACACCTACTCTTCCATTGATCTTGTGTCCCTTTGGGAGAAAAAATGTGGGAAAATTCTCGACAAGATCTATGTTTCAGAGGAACAATTGTTGAAGAACATCCAAGAGGCTCCATTTCCAATAAACTTCACACTATCAATTTTTTACTCGGCTTTTGTGAAGGGAGATCAAACCAGCTTCGACATTGAGCCATCAATTGGAGTGGAAGCCACAGAACTTTATCCAGATGTTAAATATACAACTGTGGAACAATTTCTCGATCGGTTGGTTTAA MAAAAGESKSKILIIGSSGYMGKFVVEASAMSGHPTYVLLRDSTLLDPHKSHIINHFKTLNVFFISGDLYDHESLVKAIKQVDVVISTVGHSLLPDQYRIISAIKHAANVKRFFPSEYGNDVDRVHGIEPAKSAFNAKAEIRRAVEAANIPYTFVSSFLCSGWFLPSLAQPQLQPSPPKDNVLIFGGQNTKAIFNEEHDIANYIIKAVEDPRTMNKILYVRPLQNTYSSIDLVSLWEKKCGKILDKIYVSEEQLLKNIQEAPFPINFTLSIFYSAFVKGDQTSFDIEPSIGVEATELYPDVKYTTVEQFLDRLV Homology
BLAST of Tan0021616 vs. ExPASy Swiss-Prot
Match: O81355 (Phenylcoumaran benzylic ether reductase Pyrc5 OS=Pyrus communis OX=23211 GN=PYRC5 PE=1 SV=1) HSP 1 Score: 411.4 bits (1056), Expect = 9.3e-114 Identity = 205/307 (66.78%), Postives = 248/307 (80.78%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy Swiss-Prot
Match: Q9FUW6 (Phenylcoumaran benzylic ether reductase Betv6 OS=Betula pendula OX=3505 GN=BETV6 PE=1 SV=1) HSP 1 Score: 408.7 bits (1049), Expect = 6.0e-113 Identity = 199/306 (65.03%), Postives = 247/306 (80.72%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy Swiss-Prot
Match: B9HRL7 (Phenylcoumaran benzylic ether reductase POP1 OS=Populus trichocarpa OX=3694 GN=PCBER PE=1 SV=1) HSP 1 Score: 407.9 bits (1047), Expect = 1.0e-112 Identity = 205/305 (67.21%), Postives = 247/305 (80.98%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy Swiss-Prot
Match: P52578 (Isoflavone reductase homolog OS=Solanum tuberosum OX=4113 PE=2 SV=1) HSP 1 Score: 402.9 bits (1034), Expect = 3.3e-111 Identity = 194/306 (63.40%), Postives = 249/306 (81.37%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy Swiss-Prot
Match: E1U332 (Isoflavone reductase-like protein OS=Olea europaea OX=4146 PE=1 SV=1) HSP 1 Score: 402.5 bits (1033), Expect = 4.3e-111 Identity = 198/306 (64.71%), Postives = 245/306 (80.07%), Query Frame = 0
BLAST of Tan0021616 vs. NCBI nr
Match: XP_038888446.1 (phenylcoumaran benzylic ether reductase POP1-like [Benincasa hispida]) HSP 1 Score: 488.8 bits (1257), Expect = 3.5e-134 Identity = 241/311 (77.49%), Postives = 271/311 (87.14%), Query Frame = 0
BLAST of Tan0021616 vs. NCBI nr
Match: XP_022953099.1 (isoflavone reductase homolog isoform X6 [Cucurbita moschata]) HSP 1 Score: 477.6 bits (1228), Expect = 8.1e-131 Identity = 238/309 (77.02%), Postives = 269/309 (87.06%), Query Frame = 0
BLAST of Tan0021616 vs. NCBI nr
Match: XP_023553617.1 (isoflavone reductase homolog PCBER-like isoform X6 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 476.1 bits (1224), Expect = 2.3e-130 Identity = 235/309 (76.05%), Postives = 268/309 (86.73%), Query Frame = 0
BLAST of Tan0021616 vs. NCBI nr
Match: XP_008448084.2 (PREDICTED: isoflavone reductase-like protein isoform X1 [Cucumis melo]) HSP 1 Score: 475.7 bits (1223), Expect = 3.1e-130 Identity = 241/316 (76.27%), Postives = 268/316 (84.81%), Query Frame = 0
BLAST of Tan0021616 vs. NCBI nr
Match: XP_023553616.1 (isoflavone reductase homolog PCBER-like isoform X5 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 460.7 bits (1184), Expect = 1.0e-125 Identity = 233/309 (75.40%), Postives = 264/309 (85.44%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy TrEMBL
Match: A0A6J1GNN9 (isoflavone reductase homolog isoform X6 OS=Cucurbita moschata OX=3662 GN=LOC111455600 PE=4 SV=1) HSP 1 Score: 477.6 bits (1228), Expect = 3.9e-131 Identity = 238/309 (77.02%), Postives = 269/309 (87.06%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy TrEMBL
Match: A0A1S3BIV9 (isoflavone reductase-like protein isoform X1 OS=Cucumis melo OX=3656 GN=LOC103490369 PE=4 SV=1) HSP 1 Score: 475.7 bits (1223), Expect = 1.5e-130 Identity = 241/316 (76.27%), Postives = 268/316 (84.81%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy TrEMBL
Match: A0A6J1GM98 (isoflavone reductase-like protein isoform X4 OS=Cucurbita moschata OX=3662 GN=LOC111455600 PE=4 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 1.0e-123 Identity = 229/309 (74.11%), Postives = 262/309 (84.79%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy TrEMBL
Match: A0A6J1GM17 (isoflavone reductase-like protein isoform X3 OS=Cucurbita moschata OX=3662 GN=LOC111455600 PE=4 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 1.0e-123 Identity = 229/309 (74.11%), Postives = 262/309 (84.79%), Query Frame = 0
BLAST of Tan0021616 vs. ExPASy TrEMBL
Match: A0A6J1GNQ2 (isoflavone reductase-like protein isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111455600 PE=4 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 1.0e-123 Identity = 229/309 (74.11%), Postives = 262/309 (84.79%), Query Frame = 0
BLAST of Tan0021616 vs. TAIR 10
Match: AT4G39230.1 (NmrA-like negative transcriptional regulator family protein ) HSP 1 Score: 389.8 bits (1000), Expect = 2.1e-108 Identity = 197/307 (64.17%), Postives = 237/307 (77.20%), Query Frame = 0
BLAST of Tan0021616 vs. TAIR 10
Match: AT1G75280.1 (NmrA-like negative transcriptional regulator family protein ) HSP 1 Score: 357.1 bits (915), Expect = 1.5e-98 Identity = 183/304 (60.20%), Postives = 228/304 (75.00%), Query Frame = 0
BLAST of Tan0021616 vs. TAIR 10
Match: AT1G75290.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 353.2 bits (905), Expect = 2.1e-97 Identity = 173/305 (56.72%), Postives = 228/305 (74.75%), Query Frame = 0
BLAST of Tan0021616 vs. TAIR 10
Match: AT1G75300.1 (NmrA-like negative transcriptional regulator family protein ) HSP 1 Score: 328.6 bits (841), Expect = 5.6e-90 Identity = 170/319 (53.29%), Postives = 224/319 (70.22%), Query Frame = 0
BLAST of Tan0021616 vs. TAIR 10
Match: AT1G19540.1 (NmrA-like negative transcriptional regulator family protein ) HSP 1 Score: 326.2 bits (835), Expect = 2.8e-89 Identity = 170/308 (55.19%), Postives = 220/308 (71.43%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
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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