Tan0005610 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGAACGAACTGAAGAACAAGCAGGTGATCTTCAAGGACTTCGTCACTGGATTCCCCAAGGTTTCAGATATGTTCGTTAGCACCAACAGCGTGAGGCCGAAACTTCCCCAATCTTCAAATGCAGTCCTGGTGAAGAACCTCTACCTTTCCTGTGATCCCTACATGCGAATCCTCATGCGACAAGGAATCTCCGCAACTTCTTCTTTCACTCCTGGCGCGGTAATTCCTCTCGATTCTCCTCTCTTTGTTCTGTGTTGCGATTTTCAATTCTTGTTGAATTCAATTTTGATGGATAATTTCTACGTTTCTTGCTTTTCGTGCATTCGAAGCCTCGCGCGGCGCGAAATAGCCGTGATTTCTATCGCTCTTGGCGCTGTAATTACTCTCGATTTTTCTGCTTCTATGTATCGATTATCAATTCTTGTTTCAGATTGTGAATCTTAAGTTCAATATCACTGAGGAACTTTTACCTGTCTCGCGATTCATTCATATAAGCGTAGCCCTATGCGGCAAGGATTAGAAGGAATTTGTTTCGCACTTGGCCGTGTAATTGCTCCTGATTTTCCTTGTGTGTTTAAGAATCTTAAATCCAAATATTGACGGAGAACTTTGACTTTTCTGGCAATTCATACAACGAAGTCTGATGCGGCAAGGATTGGCCGCGAATTCTTTCACTCCTGGATCTGTAACGAGGATGATAATTGCGGTTGCAGGTGCTGTTTGGATTTGGAGTAGCGAAGGTAGTGGAATCTTCGCACTCAAATTTGAAGGAAGGGGACTTGGTTTGGGGCATAACAGGGTGGGAAGAATACACTGTGATTGAGAAGCCTGAAAAGCTCTTCAAAATCCTCCACACTGACGTGCCCCTCTCCTACTACACTGGAATTCTTGGTCAGTGCTTTTCCCCGGTTTAAATTTCAAAATCATTTATGAAAGTATAACCATTTGATTTTTGGCTTTTAATTTTTTAAAATTAAGCTTCTAAACATATCTTCTGATTTGTCATCTACTTTGTTTTTAGAATTTGACTGAGAATTCAAATCTAATGAGAACTATTTCTGAATTTCGCTAAAAATCCAAATCTAATGAGAACCATCGTGAAGAAATGGTGAGAAAACATGAGCCAGTAAGAAATGAAAGCAAAATGGTTGATGAATGGGGTCAAATCTCGGATATCAAATTCAAATCGTATTTTAGTCCATAATTGTTTCTGTCTTGATCAGAATTGAGCTTCAGCTTCTTAAAGTTTTTACTGGAATCATTATTGATCTTTGAAATAATTAAGTATCCTTGTTGAGTTCTCATAGAGAATTGTGGGGATAGAATAATGAATGAATGAATTAGTTTTCTTGTCTTGTGTGAATGAGGCATGCCTGGGATTACTGCATACTTTGGATTCCATGAAATATGCTCTCCGAAGAAAGGAGAAGAGGTGTACATATCAGCAGCATCAGGTGCAGTTGGTCAGCTTGTTGGCCAATTTGCAAAGCTTCTGGGTTGCCGTGTTGTTGGCAGTGCTGGCAGTGCAGAAAAGGTATGATCCTTTTTCTAACTTTTTTATTGACCAACTCTCTAGGAATTCAAGTTGTATCTACACAACAGTTGCATTTCTTCTCCAAACCAAAAATAATAAAGGTTTCATTTACTCCTTTTCATAACTCTTTTATTTTTAATTGTTCTTTAAAATTAGACATATAAATACTATTCCTACTTAATGACTTACTATTTTTTATCTACTTGTTACCTATGTTTTCAAAAATCAAGCTATGTTTTGAAAACTAAAAAAAAAAAAAACAATTTTCAAACACTTGTTTTTGGTTAAGAATCCAAATGTTTTCTTAAAGAAGATGAAAACCATTTAGAGAAATTAAAAGAAAAAAAACTTAATTTTAAAAAACCAAAAACCAAATGTTTATAAAAAAAAAAAAAAAAAAAGCCTAAAAACCACTTTTGTCCTAATTTAAAATGTTTTAAAATTTTATTAAACTGTTTTTTATCATAAAAAGTGTTAGAGGAATTTTTTATTGATTAAAAGAACTCTTTAAAATTTCAACTAAATACCACCCATTTTTATTAAGGTTATAGTATTATGTTGATCCCTGGATTTTAAGTTTCATTTTATTTTAGTCCATATATTTTCTTAAATCTTAAAATTAAATCCTTAAAGTTAGTTTGAAGTTTTTTTTGTAGTAACATTAATATTTGGTGTGTGGAGATTCGAATCCATGACCTCTTGATCATCAGTATTACTTGATGTCAGTTGATGTCAGTTGAGTTATGTTTTTGTTGGCATGTTAGTTTGAAGTTAGTTTTGATGAAAATGGGTTAAAATAATAATATAATTTTCATATAAGAAATTAAAGACAACATGTAAATATATTTCTAAAAATTTATGAAAGGAAAACTAATAAAAACTATTTTTTTAAAAAAAAAAAAAGTAACATAAACTAATAGTAAAAGACTAATTTCTAAGATTGCTAAAAAAAAAAACTAAAATATTGGAGACTAAATTTAGATATTTGAAAGAACAAAGACTACAATGAGATTTGACCTAATCCAATAGGGACTAAAATGAGATTTCAACCTTTATAATAAATACTTGAGAAAAATACTTTTTTGATCTCTCAATTTGTAAATCCGTTTTTATTGAGTTCTTGAGTTTTTAAATTTAACAATTAAGTCTCTCAATTTTATAAAATAGTTTTATTAAGCCTTTTCACTGTTAATTTTTTTAACAGATTTAACGGAATGCTAACGGGTTAACTTTTAATATTAAGATAATATTTTTTTAAATAAAATAATAATAATTTTCAAATAATAAAATAATAAAACTAATAACAATTAAAAATAAAAAAGAAAAAGAAAACTTTTGTTTCCCCTTCTCTTCTCTTTTCCCTTTCCTTTCTCCTTCTCCTCCGATCACATCCCAGGGTGTACGTGTACTCACTACCACCACAATCTTCTTCTTCGAAAACTAATAACAATTAAAAAGAAAAAGAAAACTTCTCTTGGCCCAATTCATTTTTTTGTCTCCCTTCCTCCGTCCCTCTCACGTGAGCCTGTTGCAGACTCCTTCGTCCTCTAGACCACCCCATCTTTCTTCTTCAAAACCCACCCCAACCACTTCTCCTTCTCTTATTTCTTCTTCTTCTTCTAATCGACCCCATCTTTTTCTTCTTTATTTTCCAAATCTGGGTTTAACCCCATCTTCTTTGTTTTCCAGATCCGAGTTTAACCCAGATCTGGGTTTAACTTTAAACCCTCTTCTTCTTTATTATTTATTATTTTATTTTAATTTTATTTTATTATTATTATTTTTAAAAGATATTATTTTAATATTAAAAGCGGTTAGGAATTTGATTGTTCGATTATAAAACACAAGAGCTCAATAGAAACCGGCTTGTAGACTGAGGGAGTAATAAGATATTTTTTCCAAAATACTTATAGGGATTGTTTGGCCCCTGTTTTGGATTTGGATGGTTTTGGATGTTTGACCCAATGTGATCAAAACTCTTGATTTTGAAACACAACCTCATGGGTTAAAACAGTGCAATCCCATGGGTTTGTTCCATATTTTCTTATGTTATTTGTCAACTTTCATTTTCGACGATTACTTCAACAACAATTTCGATAACAACTCCAACAACTACACCGGTGACCCGACTACAACTAATGGCTACCTCCGGCAACAACTCCAGCGACCCCACCACTGCTGATAATTACCTCCAACAATAACTCCAACGACCACACTGGTGACCTCACTACCGCTGACGTCTACCTCCGACGACTACACCGACGACTCCCCACCGCTGACAACTACCTCTGATGGCAACTCCAACGACCACACCGACGACCCCTGCCACCACTGACGACTACCTCCGGCCACAACTCTGACGATCATACTGATGACCCCGACCACCACTGACGACTATCTCTGACGATAACTCCGACGACCACACCGATGTCCCCAACCACCGCTGACGACTACCTCCGACGACAACTCCGACGACCACACCGACACTTCAACCATCGTTGGCGACTACCTTCGACGACAACTCTAATGACTACATCGACAACCTAACCACTACTAACGACTACTTTCGACAACCACTAAAGAGACTTATATACGCCGATCCCAACAACCCGATCACTCGAGCAATCGACTACCCTAACGACCTAACTTGTGCGCAATCATCACTTTTCTTATTAGAGTTCAAAAAATAGGGTTTTGGATACTTTGTATAATAAAAGTTTAAATTTTCTAATCACTTAAATAGACTTCCGATTTTTTAATTTCTAAAATAGAATTCCATAAATAAGTTTTTGAATGCTCTATAAAATATATTTTCAAATTACCTAATTTGTAACGCCTCAGGCCCAGGAACTCCTACGACCTGGCTGCGTCACTATATTATCCATGACTACTTGTAAGAGTGAAAACACTATCCCCACAAACCACGGGGTCATTTCAGCATGTTTTGTCCTCACTCACATGCTCCGTAGGAAAATTCACAGAAGGTCACCCAACATAGGATTACTCCCAGCCAAGCACGCTTAACTGTGGAGTTCCTATGATTGAGCCACCAAAAAGGAAGGTACACCTTGTTGGTATAGGTAGTCGCTATCAATTCTTTTATGTCATTCTCAACTATACTTTCATATCCTCACGATCACTCGCATGTACCCTCTTCCTCGGACACCATTCTTTCATATCCTCAAGATCCCTCTCATTCAGATGTGGACTCGATTCATTCATGTACCATTTTTTCTCGGGTGTCACATTGGTATCAGAGTCATGCCCCTGAGCCGTGATTGGTAGAATCATCGGGTGTCGAACAAAGGAGGAAAGCCTTGAAGTGTAGTCATGGTGAAGATCCGTGGTAGAGAGCTCTATCGGATAGGCGGTGTGCTCCGGGTAAAAGGAGTTGGTCTGGGTTGGCGGTGTGCTCCGGGTAAAGGAGTTGACCAGGATAAGAGCTAGACGGATGGATGACTATTTGAGGGGAGGCTTGGTTGGTACTTTGTTCGAGGGGAGGATTGTTGGGAATGCTACCAAAGTCCCACATCGGCTAGAGACGGGGAAGATCATGGGTATATAAGTGAGGGATAGTATCTCCATTGGTATGAGGTCTTTTGGGTGAAACCAAAAACAAAGCCATGAAGGTTTATGCCCAAAGTGGATAAAATCATACCAATGTGGAGATATGTGGAGGGTCGTTGTCCCTAACAGTGCTGCGAGGGAGCAGATCGAGTGAGAAAGGGAGAAGCTGCACGAGAGAGGGAGGGAGAGATCGGCGACAATGGCTTCGTGAATGCAGGAACGCGCGGGTTGACTCAAATGCGGGGGGAGAGATCGGCGTCGTGACTCCTCCGGTGGTTGGCGGCTGCGAAGAAAGGAGAGTCCAAAATGAGGGGGGACGAACGGGTCGACGGAGAGAGAAAGGGGAAGGTCGGGTTGAGAGATCGACGAGGGAGAGAGGAGGGAGAGAGAGAGAGGAACGAGGCGGCGAACGGAAACGAAGGAGGAGAGGGAGGGCGCTCGCCACACAGCAGTGGTGCGCGCGCCTCTCATGCGAGGCAGAGTGTGAGGAGAGGAAGGGGAACCGAGGGGGGGCCGACGACCTCCTCCATTTTTTTTCTTTTTTTTTCTTTAAACTAAAACCTAAAAAAAAGAAAAAAAAAAGAAGGAAGGTCCAAAGTTTACCTCGTTTTCCTTCTCCAAAGACGTTTGATGAGAAACCCAAGGCTGCCCCACCCAATTTAAAGCGAGATTTATAAATATTTTGGTCCCTGCAAGATCCAAAAATTAACCTTCTGACCCAGAGTTAACTTTGAAAAGAATTAACTTTCTTACTTGAAATTACCGGGCGTCACATCCTCCCCATCTTAAGAACTTTCGTCCTCGAAAGTGTCTAGTTCTCAAACAACTCTGGGTAGTTCGTTCTCATCTCGTCCTCACGCTCCCAGGTGGCTTCTTTAAGCTGCTGATTCTGCCACAAAACCTTGACAAGGTCAATTTCTTTGTTCCTCAACACCTTCTTCTCTCGAGCTAAGATTTCCACTGGCTTCTCCTCATAGCTCAGGTTCTCGTCCACCTGTAGTGGCTTGTAATCAATCACATGGGACGCATCTGGCACGTAGCCTCACAGCATCGACACGTGCAACACATCGTGCACGGCTGCTAGGGACGGTGGCAAGGCTAAACGATACGCCACTGGGCCAATACGCTCCAAGATCTCAAATGGCCCGATGAACCTAGGGCTCAACTTCCCTTTCTTGCCAAATCTCAACACACCTTTCATAGGTGCAACTTTCGAACGCGCATTTCCAAATCTGCGAACTCTAAGTCCTCTGCGCCTCACATCGGCATAACTCTTTTGTCGCTTCCGAGCCAAGCACATTCTCGCTCGATTTTCAGACAACCTCATTTGTAACTCCGAACCACCAGTCCCAAAAGCTTACGCCACTAACCTCTCCCAATAAATTGGGGACTCGCACCTTTCCCATACAAGGCCTCAAAGGGCGCCATCCTAATCGTTGCCTGATAACTGTTGTTATAAGCAAATTCCATCAAGTGAAGGTGCGTATCCCAACTCCCTGCGAAATCTAGGGCACAAGCTCGGAGCATATCTTCCAAGATCTGGTTCAACCTCTCAGTCTGACTATCCGTTTGGGGATGGAATGCTGTACTGAAACTACACTGCGCTCCAGCCTTCTGGAAACCCATCAAGAAGTTAGATGTGAAACGAGGGTCCCTGTCAGAGACAATCTTCACCGGGACTCCGTGTAATCTGACAATTTCCTCCATGAACAGCTTCACCCATTTCTCCACCGTATAAGTCGGTTTTCCAGGAAGGAAGTGTGCCGACTTTGTCAGCCTATCAATGATCACCCAAACCACCGTGAATCCTCGAACGGTTCGGGGTAGACCTGAAATGAAATCCATCGAAACTTCTTCCCATTTCCACTGAGGTACCTCTAAAGGTTGCAATAGCCCTGCCGGCTTCTGCCTCGGGGCTTTAACCTATTGGCAGACTAAACATCTTCTAACAAACTCCGCTACGTCTTTCTTCAATCCACTCTACCAACTACTTCAGGTCCTGATACATTTTAGTACTGCCAGGATGCACTAAGAAAGGGGAACTGTGAGCCTCGGCTAGAACTTCCTCCTTGAGGCCACTTACATCTGGAACGCATAACCGTCCTCTGAACAACAAGCCCCCATCTGATGACACTGTGAACTCACTCTCTTGGCCCGACTGACCTGTTTCCACCAATCCACAAGACCGGGTTCCCTGCTTGGGAGTCTAGAACCTGCTTTCTCGTCGGTTGCTGCACCGACAATCGGTTAAACTGAGCCATGACCTGTCCTACCATCACGGCAATACCGACACGCTCCATATCGACTCGCAAATGGAACTCCTTCGTGACTAAGGCCGATGTGTGAGCTCCCTTTCTACTAAGGGCATCGACAACCACATTTGCCTTACCCGGGTGATACAAGATCTCAATCTCGTAATCCTTCACCAACTCCAACCACCTACGTTGTCTCATGTTCAACTCTTTCTGCGTAAACAAGTATTTCAAGCTCTTGTGGTCTGTCTACATTTGGATTTTCTCACCATACAAATAGTGTCTCTAGATTTTCAAGGCGAAGACCACTGCCGCTAACTCCAAGTCATGGGTCGGGTAGTTTTCTCGTAGTCTTTCAACTGTCGGGAGGCATAAGCAATCACCCTCCCATTCTGCATCAAAACACAACCCAAGCCCTTCTTGGAAGCATCATCAGAAACCACGGTTTTTCGATCCATCCGCATCGTAAGCACCGAAATGAGATCAACCTCTGCTTCAAATCCTAAAAACTTGCCTCGCACGCCTCACTCCACACGAAGGCATTCCCCTTCCGTGTTAACTGAGTAAGGGGTGTTGCAATCTTGGAAAAGTCTTTCACAAATCGTCGGTAATAACCGACCAACCCTAAGAAACTGCGAACTTCAGTGACGGTTTTGGGTCAAAGGCCACCTGAAATCGCTTCACCTTTCGCAGGCCCACAGAGACACCCTCCTTAGATACTACATGCCCTAAAAAGGACACCTGTGACAACCAAAACTCGCACTTGGAGAACTTGGCGTACAACTGATTTTCTCTCAAGGTAGCCAAGACCTTCCTCAGGTGGTTCTCGTGCTCTTTACTCGACTTTGAGTAAACCAGGATGTCGTCTATAAATACAATTACGAAGGTGTCCAGAAACTCCTTGAACACCCTGTTCATCAGGCCCATGAACACGACCGGAGGATTTGTCAATCCGAACGACACCACGATAAACTCGTAATGTCCATACCTAGATCTGAACGCTGCCTTTGGGATATCTTCCTCTCTTATTCGCAGCTGATGATAGCCCGAGCGCAAATCAATCTTAGAGAACACAGTGGCTCCCTGCAGCTGGTCAAACAGATCATCAATTCTGGGGAGCAGGTACTTGTTCTTTACCGTTCCTTTATTTAACTCTCGATAGTCAATGCAAAGGCGCATCGACCCATCCTTCTTTTTCACAAAAAGTACCGGCGCACCCCACGAAGAGACACTAGGGCGAATGAAGCCCTTGTCTATCAACTCCTGCAATTGAGTCTTGAGCTCCTTTAACTCGGTTGGGGCCATTCTGTACGGAGCTTTCGATAACGGTGCAGTGCCTGGCTCTAACTCAATACTGAAATCCACCTCCCTGGCTGGAGGTAGACCGGGCAAATCCTCAGAAAATACATCAGCAAACTCCCTGACTACTGGAACTGACGACACGTCTCCTTTCTCACTTCTCAAGTCTGTCACACTTGCCAAGAAGGCCCAAGCCCCTTGACCAACCAACTTACTCGCCTTAAGTGTTGAGATCACCTTGGGAACCGTCTTTGACTCGCTCCCCTTAAACTTGAAGCTTGGTTCTAACGGAGGCTTGAACACAACCTCTCTACGGTGACAATCGATGTTGGCATGATTTGCTGATAGCCAATCCATGCTCAGAATTACATCAAAGTCACTCATCTGCAGGACAATCAGGGTCACTTCCAACGAGCGACCTTCTACCAACACCTGACCGGTCTTCACCTTTTCCCGTGTCACTAACTCTGCCCCTACAAGGGTTGCAACTGATAAGCTAAAACCTAAGGGTTCTACTTCTAGTTGGGCTTGCCCGACAAACAGTGTAGAAATAAAGGAGTGCGTACAACTAGAATAAAAAAGTACAAAAGCTAAATGACCGAGAATAGGTAGGGTACGTGTGACGACTTTACCAGCACCCTCCGTGGCTCGACCAGCATTAGCGTACGCTACTCCTCTCTGGCAACCCTCCTGGTTTCCAACATTTCTATTATCGGGACATGCTGAGGCCACATGGCCTTCCTTACGACAAATATAGCAAACTCTCAAATCTGGCTTCTTCTTCTGCCTGCACACCAATGCCATATGGCCCACCTTACCACAATGGAAACAGACTTTGGTAGCTGATGGGCAAGCTCCTCTGTTATGTTGCCCTCCACAGTTAGGGCACGAACCTCTGCCTGCCCCTTGGGCCCACTGTTGCCCCTGCGCTCCTGGTCGGTTTGGCCTAGGGAAGGCCTGATTGTGTCTCTCTCTTCGACTGGTCCGTAAGTCCGCCTGCCCCTCGATGTCCGCCAACATTACTCCCATGCTGTTTCAAATCTGCATTAATTAGGGTGGCCACTCGAACAACTGCAGCATAGGTCTTCGGGTCGTGGGCAGCTACAGACCCACGTAACCCTCCGCGCAGACCTGTGAGGAAGTGCTTAATTTTCTTCTTATCCGTGTCCACCAATTCTGCAGCAAACTGGGACAACATGGTGAACTCGTGCTCATACTCTTCGACCGATTGATTCGGTCCCTGCTTCAGATACAGAAACTCAGCATGCTTCTCGATTCTCATCGCGGCTGGGTAGTACTTCTCATAGAATGCTTCCCCTGAATCGCGCCCGTGTTATATGCCCTTCATCGACGCCAATGGACCGCGAGATGCTTCTTCCACCATACATAGGCTCGTCCTCTGAGTGCGTAGACTGCGCACTGGACCATTTGTCGATCAGGACAGCACATGCGCTCAAATATGTCTTCCACCATCCCGAACCATGCCTTGCAGCCACATGGTCGACTCCTTGCCCATCAAAGAGAGGTGGCTCGTACTTCCTGAAGTCCTGAAGGTATCTGGCCTCCTCTGTAGTGGCTCCACGTGCCTGGGCAGTCTCGAGCTAGAACTGCCTGGTTCTGATTCTGTGCTTCCTGATTTTGGTTAGCCATCTCCCCCAGAACTTGGGTGGCCTGATTGAGCAGCCGCGTCCGCGCAGCTGGCGAGTTGCTCTGCGAGATCTCCCGAGTCCTCGCCAAAGTTGCGGGAGCTGGCTGTGGGGCTTGGTCGTTCCCTCGCTCCTGAGGGTTTTCATCGACATGCTCCGACGGCTACCCGACAGCTGGGGCGTCCTGATTAAGCTCCTCCTAGTGCTCGGAGTGCTCATCCACTGGTGGATCCACCACCGGGCCCTGGCCACGGGCTCCACGACCTCGACCTCTTCGACCCCCACGACCACGCCCACCAACCACAGCTCTACCACGTCCACATGTCACATCCATGTACCATACTCTGAGTTAACCACAACAAACCTTAAAACCCAACACCAAGGTCTTAAACAAGCACAAACTCAAACATCCAGAGGCAAACAACTTACTAAACCCGACTTACTTTACAAAAATAAAAACAAGCAAACCTGGAGGTGACGAGGCGACATTCTGCGAGAAGCTATGAGGACCAGTACCTACGATGTAGGCAAGTATACAAGACCTAAAAACTTTCACTCTAATACCAACTGTAACGCCCCTAATTTTCAACACAATTTCAACTAGTGACGTCCCTAGTTGGAATTGTATTGAAAATTAGGGGCGTTACATAATTTATTAAATAGACTTCCAATTTTTTAAAGTAGAATTCCAAAAAATAGTTTTCAAAATGCTATGTGGCGTGAAATAGAGTTTTTAATTTCCTAATTTCTTAAATAAACTTCTATTTTTTAGTTTCTAAAATAGAGTTCCAAAAATACTTTTCTAAATATTTTTTGAAATAGAGTTTTAAATCCCTAATTTCTTAAATGGACTTTCAATTTTTAAATTTCTAAAATAGAGTTCCAAAAATATTTTTCTAAATACTTTGTGAAATAGAGTTTTAAATTCCCTAATTTGTTACATAGACTTCTAATTTTTTTAATTTCTAAAATAGAGTTTCCATTTATGTTATACAAAGGTTTCTAAAATTGACAAAACATCCACTAAAAAATAAGAGAACAAAACAACAAAAGAAAAAAGAAAAAAAAATCACCATAAACCTAGGATTCAAAACACTGCACCACAAACAATGTTTTCTTATTCCGCGCTCGTAACACCGCACCTCAAACACGCTTTTTTCTCGATTCTCATTACCGTAACCCCCTAACAAAATCCTCAGAGTTTTGATTCCTAGAATTTTGATTCCAAGACAAAGGGCCAAACAACCCCTTAGTCTTTCATAAGCATTTTAAAAGACACGGTAAATGTACTCTAATATTAATGGTCTCAGTAACAAACAGGAGCAGATCTACCGTAGACTTAACAGGACTCGAGCCTCCTAGCACTTTCAAATATATCATAAAGTTTCCATAAATCTTTATTATGTTATTTTGTCATAGTTGCAATTAAGCTCTAAGCCCCCTCTAAGCTCAAGTTCAAATCTTGAGAAGTACATTTTTACTTTATTTTTGTGCGCGTTTTTTGGAAAAATAGTGCGTCCTTGCCCAAGTTCGAATCTTAGGAAGGACAGTTTTCCGTGATTTTTTTTCTTTTGTCATTTTCTATTTACAAAGTATATACCATTTATCAATTTAAAATATAATATTTTTGTTTTAATTTCTCGTTTACGTGTGTTTTTTTTTATTCGTGATATCAAATATAATTGGAAGTAGCGAAAGCGAGCATAGCTTAATGATAAAGAATTTATTAACAATCACTTATGTGCATCGGATTCTCTAACCCTCTTATATTCAATATATATCTATATATATATATAGGGGAATTGTGATGGGTAAAGATAAAATATTAAGATATTTGCAAAGCTTTAATTTATGATTTTTAGATTTGCAAATCTAGCAAATTTTTTAAATCTGATTTTTCGTTTTTTATTATTCCAGTTTACCCTCATTGGTGTAGAAGAAATATATATCAAGTAGTATATCCGATATACTTTACATTTGGTATATCAAGAGTATATCTCTATATACTTTATATTAGTATATCAAAAGTATATCTGATATACTTTATATTGGTATATCATAAGTATATCTGATATACTTTATTTTTATATACCAATATATACCTAAAACAAAGTATGTTAATAGTATATTATTGATATACCACTTTGATACCCTTCTCTTAGGTATATCATTTAGAATGATATACTTCCTATATATCCGTAGTAAATTAGAGATATTTTGCATATTAGTATATCACTAATGTACTTCATTTTAGATATGTTTATTTCACTAATATACCTAACATTTAGTATATCATTAGTATATCGTTGAAATGGACATATATCATATGCTGAGTTCTTGATATACTCTTAATTAACTTCATATACATATATCAGTAGTATATTAGTGATATACTCTATACAATAACACATCTCACACAATAAAATATAACAATCCAATTTGGTTTTAAATTATGAATTTACCTAAAATTTAAAAGCATAACCTGAAATTTACTCTACCTAAAATGCTCTGACATTACAAATAGCTTTTGAGATCCCGTTGATATACTTAATATTACTTTGAATAAAGTATATCATCATAAATCATTATCAAGCATAAATCACTATTTGTGATATATCGTTGATATAATCGAATAAAGTATTTTGGTAGTATCGAGATCGATGGGATATCCGATATACTTAATATTTGGTATATCAATCAGATATCGATAGGATATCCGATATACTTAATATTTGTATATTAATAGCATATAAGTAGTATATCCGATATACTTTATATTTGGTATATCTAGTAGTATATCAAAGAGGATACTTGATATCCTTAATAATTGGTATATCAATAGTATATCCGATATACTTTATATTTGGTATATATTAATCAACTAGTATATACCTATATATGTAACACCCTAGGTCCAGGATTCAGATCAAGATTTGGAATCCGGATTTGGCCTTAACATGAGATTTCTTCAAGCCAAACACGCTTAGCTTTGGAGTTCCTATGATTGAGCCATAGAAAATTAGGAAGGTGCATCTTGTTGGTATATCAATTCTTATAAGTCTTTTTCATCTATATTTTCATAACTTCGAGATCACTCTCATTTGGATGTGATCTCGATTCATTCATGTACCCTTCTTCTTCGAACATCACAATATTAGTTGTATACTACGGATATACTATCGATACACTTCTTTTTAGGTATCATTTAAATGATATACTTTATATATATCGTAGCGTATTATGAATATTTTGCACATTTGATATATCACTGATATACTTTATATTACGTATGTCTCATTTCATTTCGATATAAGTAAAATGTATTAGTAGCAAATCACTAATATGCTTCATATTAGGTATATTTGATACATTAAATATAAATCACTATTATACTCTTGATATACTTCATATTAGCTATTTTTTATATATTGTTGATATACTAAGTACGAGAAATTCTAGTTCATTGATATACTTAAGTAAGTGTATCATTAGTATATCACTAATATACTTCATATTAGGTATATCGTGGGTATATAAACAATATATCATCGATAGACGATTGATATACACCATATTACAATTACGCAAGTTTACACAGGAAGGGTATTTTGGACATATCGCTGACTCCAATTGGGTTGAACCAATTTTTTTTGCTAGAAACAAATGGTAGACACACTTGCAATTCAACATTTATTTTTTGTCATTTGTGCAACTAACTCTTTTTATTTTAAATAATATTATTAGATTAAATTAAAATTTTAGCCCAGGAACTTTAAAAGATGCTCTACAATGTGTCGAAAATAGCTGAGAACTTTTATTTTTATGTCTAATAAATTCTTAATATTTTCTACATTTTTTTTAATTTAATCGACCTATTAGACATACAATTGATTTTTGTATATTCGGGTATCAATAGTATATCTCTCGTGTAGTTGCTTTTGGTTAGATATATCATCGGTATATCAGATATAAGGTTGATAGACTCCTGATATATACTTAATGTTAGTGAAATCAACGAGTATCAATAGTATATCACTCGTGTAGTTACTTTTTGTTTAGATATATCGTCAGATATCGATATAAGGTTGATAAATTACCGATATATACTTAATGTCGATGAAAATCAACGGTATCAATAGTATATCACTCGTGTAGTTACTTTTGTTTAGATATATCGCTTCATATATCGATATAAGGTTGATAGACTACCGATTTTCTAAAACACGTAAGGACATTTTGGACTTTTTCTTTCCTGTTGTTGGGCTGGACTTGGACATTTTGCTATTTCTGCAAAACAAATTAATCAATGATATGGCTGCAAATAGAACAAATCTTATTGCCATTTGTGCAAATGCCCCATATATATATATAATAATAATGGGAAATGAATACAAATATTTTTAAACATTAATAAATTAGGTTCTAATACTTATTTCTATAAGAAACAATAACTAGTATAAAATTAAAAAAAAAATATAATATTATTTCAAATTTTATTTATATATATATATATATATATAGGTAAAATAAGTTAAATACCATTTTTGTTAGTGTACTTAGTCAATTTCTTCAAATAAAGTATGTTTCTAAAAGAAAACCAATCCAACACTTATTTTTAAATGGTCAATTCAAACATAGCTTGGTGGATAAAAACACCAATTATCATACTAAAAGTTGATGGTTTGATCCTTTCTCTTCACAATTGTTAAACTAGAAAATCACTTATTTTGAAAATCGTTGTAAAATATTTCTTTTAAGTGTTCAAAAAGTTTCTAAGATTATTGTTTTACCTTGCAAAAATGCGTTAAGAAGGTCAGATGCGTTTAACTAGTTCACAATGTACACAGATTGAGTTGTTGAAAAACAAGTTTGGCTTTGATGAGGTTTTCAACTACAAGGAAGAACCAGACTTAAATGCAGCACTGAAAAGGTCAGTTAGTTTACCCTGATTTGAGATTAAGCGTGAAAAATCTAATTAGTCTAGTCTAATTTTTTTGCTAATTTGTTGACCATAGTTTGATTGATCAAAACATTAATATCTAAGATTGTAGTTGAAAATAACAAGAAACAGTAACTAAGATTGTAGTTTCAAATAATAGGAAACAGTAACGTTACCAAACAAATCGTACTTAACACATTTCTATTTTCTTTTTTTCTTTTTTCAATAAACTAGTCAAAACAAAGGTTAAATTACAAATACTTTTCTATTTTTTTAAAAAAATAAAGTACTCAAATCAAAATTACAAATGAAGTACTTAAATTTGTGTGTATTTAAATCTCCAAAATGTAAAAGTTTCCATTATAACCTTGAATTATTAACATGATACGTTAATTGAACTATTGTGTAGTGATTTGATATAATATGGTATGAGGTTGACAAGTGGATGGAAAAAAAAAACCAATTTCAAATATTCGTCCCATGTCATGTTATCGTTTGTTATGTCAGTTCAATCAGCAAATTATATATATAGATATATATATTAAAAATAGTTTATATATATAAAAAAAAACATGAACTTTGCCCTTCATTTCAAACATACCCCTAATACTAGTTTACCCCTAATACTATTATTATTATTATTATTATAATAGTTTAGCCAAAAACATAATTAAAACTTTTGAGAGTTGAAATTAACCAGACATTTCATTATTGCGAAAGGCCAAAGTGTCCATATAGATAGAGATAGACATGATGCAATTTTTGTATACAGATGCTTTCGTCAAGGCATAGACATATATTTCGAGAACGTGGGAGGAAAAATGCTAGACGCAGTGCTGGAGAACATGAGGCCACGAGGCCGCATAGCAGCGTGTGGGATGATATCACAGTACAATCTCCAGCAGCCTGAAGGCGTACACAACTTGCTGAATGTAGTAACAAAAAGGATTCGAATTGAAGGGTTTGAGGCCCCTGATTTCTTCCCTCTCTATCCCAAGTTTCTGGACGAGGTTCTGCCGTATATCAGAGAGGGGAAGATTGTTTATGTCGAGGACGTGGCGGAGGGCCTCGACGCAGCCCCTGCTGCCCTCGTTGGCCTCTTCACAGGACGAAATATTGGTAAACAACTTGTTGCTGTTGCTAAGGACTGA ATGGCGAACGAACTGAAGAACAAGCAGGTGATCTTCAAGGACTTCGTCACTGGATTCCCCAAGGTTTCAGATATGTTCGTTAGCACCAACAGCGTGAGGCCGAAACTTCCCCAATCTTCAAATGCAGTCCTGGTGAAGAACCTCTACCTTTCCTGTGATCCCTACATGCGAATCCTCATGCGACAAGGAATCTCCGCAACTTCTTCTTTCACTCCTGGCGCGGTGCTGTTTGGATTTGGAGTAGCGAAGGTAGTGGAATCTTCGCACTCAAATTTGAAGGAAGGGGACTTGGTTTGGGGCATAACAGGGTGGGAAGAATACACTGTGATTGAGAAGCCTGAAAAGCTCTTCAAAATCCTCCACACTGACGTGCCCCTCTCCTACTACACTGGAATTCTTGGCATGCCTGGGATTACTGCATACTTTGGATTCCATGAAATATGCTCTCCGAAGAAAGGAGAAGAGGTGTACATATCAGCAGCATCAGGTGCAGTTGGTCAGCTTGTTGGCCAATTTGCAAAGCTTCTGGGTTGCCGTGTTGTTGGCAGTGCTGGCAGTGCAGAAAAGATTGAGTTGTTGAAAAACAAGTTTGGCTTTGATGAGGTTTTCAACTACAAGGAAGAACCAGACTTAAATGCAGCACTGAAAAGATGCTTTCGTCAAGGCATAGACATATATTTCGAGAACGTGGGAGGAAAAATGCTAGACGCAGTGCTGGAGAACATGAGGCCACGAGGCCGCATAGCAGCGTGTGGGATGATATCACAGTACAATCTCCAGCAGCCTGAAGGCGTACACAACTTGCTGAATGTAGTAACAAAAAGGATTCGAATTGAAGGGTTTGAGGCCCCTGATTTCTTCCCTCTCTATCCCAAGTTTCTGGACGAGGTTCTGCCGTATATCAGAGAGGGGAAGATTGTTTATGTCGAGGACGTGGCGGAGGGCCTCGACGCAGCCCCTGCTGCCCTCGTTGGCCTCTTCACAGGACGAAATATTGGTAAACAACTTGTTGCTGTTGCTAAGGACTGA ATGGCGAACGAACTGAAGAACAAGCAGGTGATCTTCAAGGACTTCGTCACTGGATTCCCCAAGGTTTCAGATATGTTCGTTAGCACCAACAGCGTGAGGCCGAAACTTCCCCAATCTTCAAATGCAGTCCTGGTGAAGAACCTCTACCTTTCCTGTGATCCCTACATGCGAATCCTCATGCGACAAGGAATCTCCGCAACTTCTTCTTTCACTCCTGGCGCGGTGCTGTTTGGATTTGGAGTAGCGAAGGTAGTGGAATCTTCGCACTCAAATTTGAAGGAAGGGGACTTGGTTTGGGGCATAACAGGGTGGGAAGAATACACTGTGATTGAGAAGCCTGAAAAGCTCTTCAAAATCCTCCACACTGACGTGCCCCTCTCCTACTACACTGGAATTCTTGGCATGCCTGGGATTACTGCATACTTTGGATTCCATGAAATATGCTCTCCGAAGAAAGGAGAAGAGGTGTACATATCAGCAGCATCAGGTGCAGTTGGTCAGCTTGTTGGCCAATTTGCAAAGCTTCTGGGTTGCCGTGTTGTTGGCAGTGCTGGCAGTGCAGAAAAGATTGAGTTGTTGAAAAACAAGTTTGGCTTTGATGAGGTTTTCAACTACAAGGAAGAACCAGACTTAAATGCAGCACTGAAAAGATGCTTTCGTCAAGGCATAGACATATATTTCGAGAACGTGGGAGGAAAAATGCTAGACGCAGTGCTGGAGAACATGAGGCCACGAGGCCGCATAGCAGCGTGTGGGATGATATCACAGTACAATCTCCAGCAGCCTGAAGGCGTACACAACTTGCTGAATGTAGTAACAAAAAGGATTCGAATTGAAGGGTTTGAGGCCCCTGATTTCTTCCCTCTCTATCCCAAGTTTCTGGACGAGGTTCTGCCGTATATCAGAGAGGGGAAGATTGTTTATGTCGAGGACGTGGCGGAGGGCCTCGACGCAGCCCCTGCTGCCCTCGTTGGCCTCTTCACAGGACGAAATATTGGTAAACAACTTGTTGCTGTTGCTAAGGACTGA MANELKNKQVIFKDFVTGFPKVSDMFVSTNSVRPKLPQSSNAVLVKNLYLSCDPYMRILMRQGISATSSFTPGAVLFGFGVAKVVESSHSNLKEGDLVWGITGWEEYTVIEKPEKLFKILHTDVPLSYYTGILGMPGITAYFGFHEICSPKKGEEVYISAASGAVGQLVGQFAKLLGCRVVGSAGSAEKIELLKNKFGFDEVFNYKEEPDLNAALKRCFRQGIDIYFENVGGKMLDAVLENMRPRGRIAACGMISQYNLQQPEGVHNLLNVVTKRIRIEGFEAPDFFPLYPKFLDEVLPYIREGKIVYVEDVAEGLDAAPAALVGLFTGRNIGKQLVAVAKD Homology
BLAST of Tan0005610 vs. ExPASy Swiss-Prot
Match: Q9SLN8 (2-alkenal reductase (NADP(+)-dependent) OS=Nicotiana tabacum OX=4097 GN=DBR PE=1 SV=1) HSP 1 Score: 485.0 bits (1247), Expect = 7.2e-136 Identity = 233/343 (67.93%), Postives = 283/343 (82.51%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy Swiss-Prot
Match: Q39173 (NADP-dependent alkenal double bond reductase P2 OS=Arabidopsis thaliana OX=3702 GN=P2 PE=2 SV=2) HSP 1 Score: 479.9 bits (1234), Expect = 2.3e-134 Identity = 227/340 (66.76%), Postives = 277/340 (81.47%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy Swiss-Prot
Match: Q39172 (NADPH-dependent oxidoreductase 2-alkenal reductase OS=Arabidopsis thaliana OX=3702 GN=AER PE=1 SV=1) HSP 1 Score: 470.3 bits (1209), Expect = 1.8e-131 Identity = 225/341 (65.98%), Postives = 274/341 (80.35%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy Swiss-Prot
Match: Q6WAU0 ((+)-pulegone reductase OS=Mentha piperita OX=34256 PE=1 SV=1) HSP 1 Score: 431.0 bits (1107), Expect = 1.2e-119 Identity = 199/339 (58.70%), Postives = 271/339 (79.94%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy Swiss-Prot
Match: Q9C0Y6 (Zinc-type alcohol dehydrogenase-like protein PB24D3.08c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=SPAPB24D3.08c PE=3 SV=1) HSP 1 Score: 247.7 bits (631), Expect = 1.9e-64 Identity = 150/352 (42.61%), Postives = 198/352 (56.25%), Query Frame = 0
BLAST of Tan0005610 vs. NCBI nr
Match: XP_022154379.1 (2-alkenal reductase (NADP(+)-dependent)-like isoform X2 [Momordica charantia] >XP_022154380.1 2-alkenal reductase (NADP(+)-dependent)-like isoform X2 [Momordica charantia] >XP_022154381.1 2-alkenal reductase (NADP(+)-dependent)-like isoform X2 [Momordica charantia] >XP_022154382.1 2-alkenal reductase (NADP(+)-dependent)-like isoform X2 [Momordica charantia]) HSP 1 Score: 602.1 bits (1551), Expect = 3.1e-168 Identity = 294/340 (86.47%), Postives = 320/340 (94.12%), Query Frame = 0
BLAST of Tan0005610 vs. NCBI nr
Match: XP_022154378.1 (2-alkenal reductase (NADP(+)-dependent)-like isoform X1 [Momordica charantia]) HSP 1 Score: 602.1 bits (1551), Expect = 3.1e-168 Identity = 294/340 (86.47%), Postives = 320/340 (94.12%), Query Frame = 0
BLAST of Tan0005610 vs. NCBI nr
Match: XP_022988839.1 (NADP-dependent alkenal double bond reductase P2-like [Cucurbita maxima]) HSP 1 Score: 536.2 bits (1380), Expect = 2.1e-148 Identity = 252/342 (73.68%), Postives = 299/342 (87.43%), Query Frame = 0
BLAST of Tan0005610 vs. NCBI nr
Match: XP_023530664.1 (2-alkenal reductase (NADP(+)-dependent)-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 533.9 bits (1374), Expect = 1.0e-147 Identity = 250/342 (73.10%), Postives = 301/342 (88.01%), Query Frame = 0
BLAST of Tan0005610 vs. NCBI nr
Match: XP_022927770.1 (NADP-dependent alkenal double bond reductase P2-like isoform X1 [Cucurbita moschata] >KAG6588785.1 NADP-dependent alkenal double bond reductase P2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 533.5 bits (1373), Expect = 1.3e-147 Identity = 251/342 (73.39%), Postives = 299/342 (87.43%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy TrEMBL
Match: A0A6J1DNJ4 (2-alkenal reductase (NADP(+)-dependent)-like isoform X2 OS=Momordica charantia OX=3673 GN=LOC111021664 PE=4 SV=1) HSP 1 Score: 602.1 bits (1551), Expect = 1.5e-168 Identity = 294/340 (86.47%), Postives = 320/340 (94.12%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy TrEMBL
Match: A0A6J1DK59 (2-alkenal reductase (NADP(+)-dependent)-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111021664 PE=4 SV=1) HSP 1 Score: 602.1 bits (1551), Expect = 1.5e-168 Identity = 294/340 (86.47%), Postives = 320/340 (94.12%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy TrEMBL
Match: A0A6J1JMQ2 (NADP-dependent alkenal double bond reductase P2-like OS=Cucurbita maxima OX=3661 GN=LOC111486067 PE=4 SV=1) HSP 1 Score: 536.2 bits (1380), Expect = 1.0e-148 Identity = 252/342 (73.68%), Postives = 299/342 (87.43%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy TrEMBL
Match: A0A6J1EPW4 (NADP-dependent alkenal double bond reductase P2-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111434570 PE=4 SV=1) HSP 1 Score: 533.5 bits (1373), Expect = 6.5e-148 Identity = 251/342 (73.39%), Postives = 299/342 (87.43%), Query Frame = 0
BLAST of Tan0005610 vs. ExPASy TrEMBL
Match: A0A6J1JID3 (2-alkenal reductase (NADP(+)-dependent)-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111486066 PE=4 SV=1) HSP 1 Score: 533.1 bits (1372), Expect = 8.5e-148 Identity = 250/342 (73.10%), Postives = 300/342 (87.72%), Query Frame = 0
BLAST of Tan0005610 vs. TAIR 10
Match: AT5G17000.1 (Zinc-binding dehydrogenase family protein ) HSP 1 Score: 483.0 bits (1242), Expect = 1.9e-136 Identity = 229/341 (67.16%), Postives = 278/341 (81.52%), Query Frame = 0
BLAST of Tan0005610 vs. TAIR 10
Match: AT3G03080.1 (Zinc-binding dehydrogenase family protein ) HSP 1 Score: 480.3 bits (1235), Expect = 1.3e-135 Identity = 227/340 (66.76%), Postives = 277/340 (81.47%), Query Frame = 0
BLAST of Tan0005610 vs. TAIR 10
Match: AT5G16990.1 (Zinc-binding dehydrogenase family protein ) HSP 1 Score: 479.9 bits (1234), Expect = 1.6e-135 Identity = 227/340 (66.76%), Postives = 277/340 (81.47%), Query Frame = 0
BLAST of Tan0005610 vs. TAIR 10
Match: AT5G37980.1 (Zinc-binding dehydrogenase family protein ) HSP 1 Score: 474.2 bits (1219), Expect = 9.0e-134 Identity = 225/342 (65.79%), Postives = 277/342 (80.99%), Query Frame = 0
BLAST of Tan0005610 vs. TAIR 10
Match: AT5G16970.1 (alkenal reductase ) HSP 1 Score: 470.3 bits (1209), Expect = 1.3e-132 Identity = 225/341 (65.98%), Postives = 274/341 (80.35%), 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
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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