Tan0022242 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTTTGGACCTTATCGCCGAACTCAAAACAATCAACTCAACTCAATCAATCGCTTCTGGAGTTGGGACAATCTCGTTTTGCTCCGATGAAAATCCATTACATTCCTTGCTTGGAAGACAACTACTCTTACCTGTACTAATCGAACCCCACATGTTCAAGTCTCCAGTTTTTGTTTTTCACTTGTGCTTCCTCATTCTGAAATCCCCAGTTCGATTGCATATTTTATTTTGTCTATGGTGAATGAAGTTCTTCTTTATCATTGGGTCTTGGTGGATGTCAGGATCATTGATGAGAGCACTAAAGAAGCCGCGGTGGTTGACCCTGTGGAGCCGGAGAAGGTTCTGAATGCTGCTAATGAACATGGCGTCCATCTCAAGCTCGTCCTTACGACTCATCATCACTGGCATGATCCCTCCCTTTTTCCCTCTTCATTCATATGTTAACTTGTTTTTCATTTCACTGCATCCTTGAATTGCTGGCGGATGCTATTGCTATGTGAAATTGTTCTTATTAGTATGTCTGTTAATTTTTAGGGATCATTCAGGGGGTAATGAGAAAATGAAGCAGTTGGTTCCTGGAATTAAAGTTTATGGCGGTTCCATTGATAAGGTCAAGGGTTGTACTGATGCAGTGGAAAATGGTGATAAGATAACACTTGGTGCTGATGTCGTTATATTGTCTCTTCATACACCTTGGTATGCCACCTTTTTTTTAGATCATTCTATCCTTTCCGTTTGTCGTTAAAATTTCTTTGGGGAACTTGCATTTGTAATGTCTCCATTCAGTTGCAACTTGAAGCTTATTACCTTTCTCCGAATTGGAAATCAGACAGACCTATTCTTGAAGAAATAGTATCATGTCTGCTCCCAAAAAAAAAAAAAAAGTATCAGGTTATGATCCTTTTGAGCTATGTAGTTCGGCCCTTGATTGAATTATTAGTTCCTGTATACCCTGCTTTTGCGTTGCTCCCTATCTTTTTCTGCCTTAGTCTCTGAGTTAGTATTGTTAAAAAGATAAGCATACTTTGAATTTCCAAGAAAGATTAACTCATCTTTTCTCCTTCTCTGCTAGGCTTCTTGAATTGTTATAAATTTTAGACATTTCCGCAGGTAATTAGAACTTGTAAGCTTTTTACTGAATGCCAATAAAATCAAATCTGGGTCTTTTTCAGAGTTGAACTCATGTTGTCTCTGGATCATGGAGAACTACCTATATATGTATGATTAGTCTTTGTCAAAGTCAATTGTTTCGCTTAACACCCTTTCAGGCTTTCACTGATTTTCGGGTGGGGGATTGAGAAGAATACTTTTCCTTTATCTCTATTAACTATTATTTCCCACCCAATGATTGCTCTTGATTTTCTTTGCTTGACTTTCTGTCATCAGCCACACCAAAGGGCATATAAGTTACTACGTCTCTAGCAAAGAGGGTGAGGACCCAGCTGTCTTCACTGGTGATACATTGGTAAGTCGATATAAAAAGAGTTAATGATTTGTTTGTCAATCTCTTATATTTGCTGAAGCTTTTAATGGGATATCATTAATTCAAGATATCATTTTTCATTTTGTCCCCTTTGAATTAGAAGATTTTTTTTTAAATAAAAAAAGCCATAGGGAAATATTACATCCTTCCAATTACAAAACCCTAGGAGATCACAAAAGTATCCCTTTGTTAGCCGATAGGCACTGATAATAATAAAAATAACAACTAACATCCTTAGCTATAGAGCTCCATCTTGTGAAACGAGAGGGATTAGATCAAAATGGCAAGGGCTTACAAAACCTTCACATGCAACAATGCACTTGGGGGAACCTAGTTGACATTAGGAAGCGAGCAACTTTCTTTGTGCGGCATCTACAAGTTGAGGGAATTAAGGTTTGTTACAACATTACAATACCTCAATATAAATTGTTTGGAAGAGTTGTTCTTAAAATTATCGCTTTATCCTACCGAAGTTCAAATTATAGAAGTTGAGGTCAGCTAGCATTTTTGTTTCTTACAAGCAATAGTGTACATATTTCTACTTCTCCAAATTGGAGAGAAAACCTTAACTTTAAGAGAAGATAGACGAGTTTTTTTTTTGGGGATAAAAAACCGAGTTTTCATTGAGAAAAAATGAAAGAATACAAGCGCATACAAAAAACAAGCCCACAAAAGAGAGAGGGGGAGCTTACAACAAAGCACTCCACCCAAGCAAAATAAAATCTAGAGGATACTTACAAAAAGACTTAGCCATTGAGGCCCAGAGAGAAACATAGAATCTAATAAGGGCCCAAATATCAAAGGAGGAACGCTCCAACCCTCGAAAAATTCTATTGTTTCTCTCCCCCCAAAGTCCCCAAAGGACAACACAAACCCCCGCCTTCCATAAAAACGCCCCTTTCCCCCTAACTGGGGGGTGCAAAAGGAACTCCTCAAACCTCTCCCTACAAACCCCCTTCTCCTCCAGAAAAGGAAAGCCCAAACTCATTGACAAAAAGATTTCAGACATCCTGAGCCAACTCACAACTCCAAAATAAATGGTCGATATCCTCCGCCGCCCTCTTGCAAAGAATACAACACCAGGGACCAACCAAGGATGGTAATCTTCTCGAGACCCTATCCAGAGTATTGACTCTTCCGTGAAGAACCTGCCTAGCAAAAAACTTAATCTTCTTTGGGATTTTCACCTTCCAGATTGAGGCAAAGACGTCTCCCCCGTGAAGTAGAGGAAGGAGGATTAACCAAAGTGAGGAAGAAGGACCGACATGAGAACCTTGCAATCGGGTCGGGACTCCAACAACGGACGCCCTTCCTTTCTGGACTACGACAAAGGCGTTCCACCAAGGAGAGGAGGGAAGAGAAGATAGACGAACTTAAACTAAGCGACATTCAAGCGAAGTCTAGGAGAATGATGGAGTTGAGGTTTTAGACTCATAAGTTGCTCGCTCAAAAGCCTGGCCAACTTTCATAATCTTGGCCATGTGGATACTCTTCCATGGTAGCTTCTATAGCCAAATTACCAGCCGTCTCAGTACTTGAAAGAGCATGAGACTTTTGCGCCACACTATAATTCCTCTGTCTCCACTAGAGGTGTGCAAGGGAAGTGTATGGGTTCCCTTCCCTTGACAAGGGAGACAAAGTTTCGAGGTGCATTTGATGGTGTTGTTCAACAAGATGCTAATCAATCACCTTTTAACCAAGACCTTTTTGAGCAATTCCTCTCCACCCATTGTAAGGCTCTTTAGAAAATTCTTCATCCTGGTAGCAGTTAAGTGAGTTGTACACATCTAACATCACGATAAATTCTCATTTGCCTTTTCAAACTGTTAGTCAAGTGCTAGTGTGATGTGATGTACTGGAGCACGCTACACGTCAACTTAAAACAATCATCATGAGGTTGGGTAGGGTGCACCTGTGTCTTTGTTAAGGGTGAAGGTGAAGAACCTACATCACTTTAGATAGGAGCAGAATGGATTACTTATAACTAGAAGTCAATTCTTTGGATTGATATACATACCTTACCAAGTAATGGAGATCTTGGTCTAGATCTGGTGGTTTTATTCCTTTTTTGCATTATATCACAAACATTTGAGTTCACCAAGGACCAAGGACTAGTAGAAAATATTGTTTTGGTCGACATTTTCCATGGTTGGTAGGAAAAAGATTTAGGAATTGAAATTAGTCATACCATGACTACCTGAAATGACACTTTTTTTTTCTTCTTTTTTTTTTTAATATTTGTGAGTGTTTCAGCCATATGCATGCCCCTTAACTATTCTCATGGGAGATTTGCCTAACTCTACTACATTTAATTGTCAAGGAAACGCATAGAATATTAAGTCCTAAGTAGGTAGCCATCATAGTGACTAGTTGAAAAAGACTTGAAGTTACCAAATTTATCCAGATTCCACACACAGTAATTGGGTCGCATGACACTTGTGAAAATCTTCCATCTCTCAGATGAAAAGGCTCACTCATCGCTCTCCTTACCATTGAGAGGTTATCTTTAGCTAACCACCTCCTAACAAAGGTTCACTACATCATGTACATTTTGAGTACTTTTTTAAAAAAGGAATACACTAGGCGAAAGTAGTATTGATTTCCATCCCCTACCTTGAAACGGGAACCCAATCTTGCATGAACTTCACAACAAACAATGGAATTGCACAGAGACCTATTGCTGTTATGATAGTCGTTGCTCAAATAAACCAAGTGCTTGTGATCATCTTGTGTCATAAGGAAACTCCAAGGCTTCTTATAGGTTTTTGATTTGGGGGTATTTACTTCCCTTCTTTGCTATGTACTGGTAACAGTTTCATAACTTGCTTAAAGGGGTAAGATGTAATAGCAAAAGGGGTGATTTCTTATTTCTGCAACCTATTCAGAATAGGAGATAATATACCAGGCAAGGAGATGGATTATCTTGTGATAGTAGTATAGATTTGTGATCTGGAGCTTACCTTTCTCTTTAATGGAAAGTTATTTCTTACAATAAAAAATTGGTTCTGGTTCTGGTATCATGTATCCGGTGGTATGTACTCTTCTGCCAGAACACTCCAGTTTGTTGGTATATAATTATTTTATTTTTTCTGGTACATGATTCTCATGCAGTTGATTTTCTAGATAATATATCATGTCTTAACTTTGGTTTCTCTGCGTGTAGTTCATTGCTGGATGTGGTAAGTTTTTTGAGGGAACAGCAGAGCAGATGTATCAATCTCTATGCGTCACATTGGGTTCATTGCCAAAGAAAACGCGAGTGTACTGTGGGCATGAGGTAATTAGTTATCCTGACTCTTATCCATTTCCTGGTTAGTTAGGTCCGACCTTCTGGGTTTAGGTTTGCTGTTGTGCTCATTGCTTTGGTGTTTGACTGAAATGACTAAAAACCAAATGCTGAAGTAATTTATAGAAACGGGCAATCTAGAAGTGATCTATCCAAAAGAAGGGATGAATAGGCTAATATACCAATTTACCAATTGATATGTTCTCAAAACATTTAATAAAATAAAAATAGTAAACATACATAAATCTTAATGGGACTTGTCTAGTCCCAAAATTTACTAAAGTTGTAAGAACTTATGAAATATTAACTTCCTATCCTTTCAAGCGGGCATAAAAACATTATCTTCTTCTTTCTTTGGTCCTTATAGGATCTCTTGAACCATGACAACCCGTGCTAATATTATGATCATTGCATCTCTGTTTTACCATGAGTTTAAATCCTCAATAGTTAGGATGTAGATTGTCTTGAACTTTAACCTAAGAGAAAAATGAAGTAGGTTTTGTGGAAACATTCACGAGCCTTTGGAGGACTCCATGAACAGAAAAGATCAAAATGTTCACAAATTGTAGTAGTTTAGATGTATTGGTTTTGATGGATGGCCATAATGGATTTGCTCTATTTTCATGAAGATGAAGAGTGGAGAATCTGCAATTTTCAAAGGAAGAACCCATCTCAATCTGTTGGCCAACACTTTGGCCATAATCTTATACACACTCGGTACCATACCAGGCTAATCGGCCAAAGTTCCCAACCTTCCTCTTCCTTATAATATCTTTCTTAGGAATTAAACAGACAAGGTTTCATTTAAGGAACTATCCAAAACCCCTCTCTCGTAGAACCCACAAAAAACCTTCCAAAGGTCCCCTTTAATTTCCTCCCAAAATTTTTGAAAAAAGCCATCGAGAACCCATAAAGGGCTAGGAGCTTTGGTCCTCTCAAAACTAAAGACAACCTTCCTTATCTCCTTAAGGGTAAGTGGGGCAACCAACTCCAAACGGTCAACCGTAGAAATGAGACTCCAATCAACACCCTCTAAAAACAATCTTGGTCGAACAAGAGGCACATAAAGGGATGACTAAGAAGAAATAATCTCCTCCTCGATCTCTCTCCGCCCTTGCAACGTCTCGTCCTGCTCATTCTCTAGAGGACCAATAAAATTCTTACCTCATCTACCACTAGCGACTCTATGAAAGTAAGCAGTATTGGCATTCCCATCCTTAAGCCATCTTTCTTTGGCTTTTTGTCTCCAACTAACCGCTCTCTACTCACCAACTCTGCATACTCCCCTTTGATTAAGAGTCTCACACAAAGCACTCTCCTCCTCCCGTCTGCCCAAGGCTTTAAGTCTTCCCAAAACCTCTTGGTTTTTTATTTTTACATCCCAAAAACCTCACGATTCCAAATCTTCAACTTATCTTTAAGTGCCCTTAGCTTACCCATGAACCGATACCCTCCCCACTACCAGACTCCTCCTGCCACCATGAAGGAAAGGAAGCCTTAAAAGGCGGATGATTCAACCACATATTCTCGAATCTAAATGGGCAAGGACCCCAACTCTCGAACCTAAATGGGCAAGGACCCAACTTGGGGAGCTAGAATCCAAAAACAACGGCCAATGGTCCGAGGTAATTCTGGGTCCTAAGGATTGTCTAGCAATAATGAAATTTTGTTGTACGACTGTAGTCTTAGATAAGCCAAGTACCCAAGGAAAATAGCAATCCTATGTTTGTCATAAGCATTCATATGCTGTTGAGCACAAAGGATATACTTCTTTAAGTTCAACTAATGGTCATTGTCTTGAAGTTAATTGTCCACCTTTGAAATCAAAGAAGAACAAGCTCTATAGGATAGAAATGGTGGAGGATCTTGGCCGAAAATGAGCCAAAAAGGAGTGACGATCCAAAAAGAAGTGGATTGGGCATCCTTTAGTTTGTATATGGTGAAACACCGCTAGTTTCTAAACAACAATTAATCATTTCTCTTTGACAGCCGTTTGTGGGTGATAAACAAGACTTTGGTTGAGTTGGGTGCTTCGCAAATGGAAACTTTGGTCCATAAGTGCACTTGGGTATTCCATTTAACTTCACCATATCGGAAAAGTTCATTATACCCACCCAATGATGAAAAATTATCAAATAATGTTGGTTGGGGCTGGAATGAAATTCCTGCATTATTTCTTGATAGGGAGAACATGAATGGCATGAACCCTGTTCATAAATGACGCTAAATCATTGTCTTGAACTTAAAGGCTCGCTAAAAAGAAAGCCATAGGGTGGTCCTCTTGCATCAATATGGCACCAAGATAATATTTGGTGCATCTGTTTCCCTAGCAAATAACTTGGAAATTTTGGGTAAGACCGCGAGAGTCAAGAGAGAGAGATAGGGAAAGGGCTTCTATAGGAGGATTCAGGTAGAAGATTAGATTTAAATCAGTTCATTAGAGGAAAAGAGCTTAACAATTTTGCCACATAAATATAATCTAACCATTGTCGACTCTGGTCTACAAGCAACAAGAAACATTTGTGCATCTAATAGTAGTATTTATACAATGATTGGTTTGAATGCTATTGTAAGTGATAATGTGATATTTGCTATAGTAATTTCTAAAAAGTGATATTTTTTGTAATGATTTCTTGGTTGGAAGGAGCTTTCCTTCCTATTGATTTTATCGTTTTATGTTCTAACATATATCATTATGCCCCATTCGATTCCATGGGCAAATCAATGGCTGGGTGACTGAGTCTATGGCCCTTGCAATGCTCAACAAAGGAGAAAGTTTATGCTGGAATTATTTGACCTCTCTAGTCTATGTCAAGGAAGCGGGTGTGCGGTTGGAGATTTTAATGGGGTAAGATGGCTTGATGAGAGACTTAATGCTAATAGAATCTCTAAGTGCATGAGAAAGTTTAATCGTTTCATCTCCTCCGCAGATCTGATTGATCCCCCCACGGCTAATGACAGTTTTCTTGGTCCAGAATGGGGGAAAGAGTAGCAGCTTCGAGGATTGACAAATTTCTAATTTCTAGGCTTTCGGTGGATAATTTTAAGGAGTATAGAGTGGATAGACTCATCGGTCAACCTCTGATCATTTTCCCATTGCTCTTTCTTTAGGAGCTTTGAAGTGGGACCCTACTCCATTTATATTTGAAAATATGTGGCTTGATAATCCAGATTTTAAGAAGAGTGTGGAAACTTGGTGGAATGCGCAGTCTTCGGAAGGATGGGCTGGTTTCAAATTTATGGAAAAGTTGAAGGGGATGAAACTATGCTTTAAAGCTTGGAACACAGAGGTGTTTGAGAATGTGCTTGACAAGAAAATGATATCCTTAGTCAAATAAATCCATTTGATATGCTAGAAGAACAAGGCCTTATCCAACCTCAACACCTAGATGAGAGATCGAAGTTGAAGGTTTCTTTGATTGAGTTGACGATTAATGAACAAAGATATCTAAACCAAAAATTCAAAATCAGATGGTTGAAGGAGGGTGATGAGAATTCTTCTCTTTTCCATCGATGGGCCTCAACAATAAAAAAACAGAACTTGTATTTCTGCCTAGAGTGTGAGGATGGGAGGTTGCTAACCTCGGAAGCAGAGATTGAGGAAGAAATTTTGGGTTACTATAGGAAGCTGTATGCTAGAGATTTTGGGCCCTTGGTTTACTATTGAAGCGGTTGAATGGGTCCCCATTGATAATCAATGTAGGTTGAATTTGGAAAAGCCTTTTGAGGTGGAAGAAATCTTCAAAGAAGTACAAGGCCTTGGGAATCTAAAGTCATCGGTCCTAACGATATGATAGGTGAGTTTTTTTAAAAACTTTTGGAACATTTTGAAGCTCGATTTAATTGAAGTGTTTCAAGAGTTTTTTGAAACTGACATCATTAACAAGTGCACCAATGAGACTTATATCAGTTTAATCCCAAAGAAGAAAAAAGCGACCCTTGAGTGTGAGGATGGGAGGTTGCTAACCTCGGATGCAGAGATTGAGGAAGAAATTTTGGGTTACTATAGGAAGCTGTATGCTAGAGATTTTGGACCCCGGTTTACTATTGAAGGGGTTGAATGAGTCCCCATTGATGATCATTGTAGGTTGAATTTGGAAAAGCCTTGAGGTGGAAGAAATCTTCAAAGCAGTACAAGGCCTTGGGAATCTAAAGTCACTAGGGCTTGACGGTATGACAAGGGAGTTCTTTAAAAACTTTTGGAACATTTTGAAGCCTGATTTAATCAAAATGTTCCAAGATGGCATCCTTAACAAGTGCACCAACGAGACCTATATTAGTTTAATCTTGAAGAAGAAAAAACTGTGAAAATGAGAGATTTCAGGCCAATTAGCATTATGTCATCGCTATATAAAATTGTGGCTAAGGTCCTTGTTAATAGGTTGAAGGAAGTGTTGCCCAATACTATAAGTGACTACCAGGCAGCGTTTGCCCAAGGAAGACAGATCCGTGATGCTATCCTCATGGCGTCTAAAGCAATTGAGGAGTGCAAGAGTAATAAAGAGAAAGACGTCGTGCTCAAACTTGACCTAGAAAAGGTCTATGACAAGGTCAGTTGGGAGTGTCTAGACGCCATTCTTAAGCTCAAAGGCTTTGGGACCTCCTGGAGACGGTGGGATCAAAAGTTGTTTGAGGATCACTAATTTCTCGGTTATGATTAATGGAAGACCTAGGGGGAAGATTGTGGCCTCTAGAGGTTTAGGACAAGGTGATCCTTTGTCGCCCTTTCTTTTCACACTTGTTAGGGATGCTCTCTTTGCTTAGTGCAGTATTGTGTAAAAAAAGGGTTCCTAAGAGGACTTTTGGTGGGCAAGATAGAGTTGAGGTGCCTATATTACAATATGCAGATGATCTTATAGTGTTTTGTTCGAATGAGGGTAACGTTATTGAGAGTTGGTGGGAGATCCTTCATGTTTTTATGGTAGGGTTAGGGCTCTCTTTGAATCGAGTTGAAACTTCGTTGATTGGAATTAACGTAAGCCTGGAAGTTGTGGAGGAGTGGGCTCGCAAGTTTGAGTATCAAGCTGATGTGTTGCCGATTGATTACCTTGGCTTTCCCTTGGGGGGAGGTCATCACAAGTGAGCATTTTGGGAGCCGTTAATTGATAGATTCAAAGCAAAGCTGGATGTTTGGAGATGTTTTCTCCTGTCTAAAGGGGGAAGAATGACTTTGGCTGAATTGGTCCTTAATAGTTTGCCTATTTATTTCTTTTCTTTGCCGAAAGTTCCTAAGATGGTGATTAAGGCAATGGAGAAGCTTCTCAGAGACTTTACTTGGAGTGGAGGTAATTACATTGTTAAATAGGATTGGATACCTTTGCCTACAAGTCATGATTGCCCGGAGTAGGCTTTCTGTTACATCACAATGTCACTTTGCTAACTAAATGGTTATGGCGATTCACTCAAGAGAAGTCTTCGGTGTGGCGAAAAGTGATAGCCAACATTTACGGTGTCTCTCGCTTTGAGTGGAGGACTGGAGAGTTGAACAAAAAGAAGGGGAATAGGCCGTGGATGGACATTGCTGCCAATTATCCCTTTTCTGAGAAGTTCACGAAGTTTCAAGCAATGTGTGGCAAGAATATTAGATTCTGGAAGGATGTTTGGTGTGATAACGAGCCTCTTATGTGTAGATTTGTAGACTTATATTCGTTTTTCTGCAAAAAAGATGTCTCTATCTGTGATGGTTGGGATAATAACACTCAAACCTGAAACCTTGGCCTTTGAAGAGGTTTGTTTGACAGAGAACTTAGTAACTGGGTGACCCTAGTTGAGAAACTAAATTCAATATACTTGGGAGTGGATGCGGATAAAATAATTTGGCATTTGGAAGGGCCGAGACTCTTCTCTAGCAAGTCGGCTTTCTTAAGGCTCTCTAGTAGAGCTCCAAAGATTAACTTGGTTTTATCTGGCCTAATTTGGAAGCATAGAAGCCCAAAGCAAGTGGAAGCTTTTCTTTGGTCCTTGGCATTCTGTAGCTTAAACACGGATGATAGACTACAAAAGAAGTTTAGTGGGTGGTCTCTTTCTCCTTTGGGTTGTAGACTGTGCCTCAAAGAGGGGGAATCTCTTGATCACCTTTTCCTACATTGTGGGTTTGCTTATAGAACTTGGAGCTTTGTCATGGGGCTGCTTGGTATCTCATTATGCTGTATGGAAAGATAGATGATTGGCTGATCGAAGAACTAAATGCGTGGAATTTGAAGGGGAAAGCCAAGGTGATAGCTAGTTCGACTTTCAGAGCAACCCTCTGGTTTTTGTGGGAATGCCAGGGGGTTTGAAGATAAGTCTTTATGTTTTAACACCTTTTGTAACTATGTTTATGGTCTCTGGGTGGATTACTTTACACAAAGGAGGTCTTTTGTAATTGTAGTTTGCTGATGATTATTAGCGATTGGCAAGCTCTTTTGAGATAGTTTTTGGGCAGGGGTTTTCTCTACCCCTGGCCCCTAGGTTGTTTTCTCTCCTTTTGTTGAATACATCTTTTTTTGAGATTTCTTATCAGGAAAAAAAAAAAAAATTCATGTCCCTTTTTATTGTTTAACTGTTCTCCGTTAAAATTACATTTGTCATGCCATTCTTGTAAAACTTATTTGAATTTCCGAACTTTTTGTTGTTGGTGAGTTCTGAGGTAAACTAAAAGTTCTCTCTTTATCTAGTACACAGTGAAGAACTTGCTGTTTGCTCTGACGGTTGAACCAGACAATGAGAGGATAAAAGGTAAGTTGTCGTGGGCTCAGGACCAGCGGCAAGCAGGACAAGCAACTGTTCCCTCGACCATTGAAGAAGAAATGGAGACAAACCCATTCATGCGGGTTGATCTACCACAACTTCAGGTATTCCTATTCTTAAAAGTTCTAAAGCTTTTACATACAATTCCTCTGTTTTACTGTGAGGTTGGGCAACCACGATTGGTTAATTTTACTGGTAGATTGCCAACATTTGGCTGGTAGGTTGCCAACATGAGCATAGCTCCGTACTTAAAACATTTATTTCTTCCTTAAGAAAGGTTCAAATCCCCACCTCTAGATTTGTTGTACTAAAAAAAATTTGACCGGTGGGTTGTGATGGGCATTTCCTTGTGCAAATTGAGCTTTCTTGAGATATTGTTGAACTTCTGCAAAAAAGACATGAATTTAGGCTGTAGTAATTCATTTTTCAGAATGAAAGCATACTATTTTGTTCCATCCACCATCATTTCATTCTCACTCTCAACTTTATCTCACCTATATCAGATTTCTTTTCAATTTTTTTATTTTACAAGGAAACAAAGATTTCATTGAAATAATGAAAAGAGACTATTGCTCAAAATACAAAATCCAAAGGGAAACATGAGAACCAGAGAAAAAAGAATAACAAAACCAAATAAAAGAAACATCACAAAGAAACCCATTAACACAACCAAAACAGCCAAAAGGAAAGAGCACACCAAGAACTAGAAACCAGCTTCAAAACAACAAAAGCAACCAACAAAACTCGAAACCCACAAACTCCTCTATCTTCAACAAACTTCACAAGGAAGAATCCAAGACAAGGAAATTGACTCTCAAATGACAAAAGCCATCCACCTTGGTAAGCGAACAAAAACCATGATGAGATCTTAAAAACCAAGTACCAACTGATCATTTAGTGCTAACATGCTAACACAAAACCAATCGCCAAAACAAAGTCCAAAAAATATCACTCCACCTCCAAACAAACTCGAACAACTTCCCCATGGAATCCAAAAAAGAGATTTCAATGAAGAGAGGAGGATCCTCCACCCACAACCACTTCTTTAAATTGTAGACCAAATGCTTTGATTAAAGAACTAAAACGACTCAATACTGGACAAGAGACATCAACTAAACCATCGAACACCTTTGAAAAATGTCCTCTCTTGGAGATGCAAAAATATTATCCAGATTAAAACAAGGAGAACCCGCTAAAGAAACATCTTGCATGAAATTCCTACAAGAACCCAAATCAGGACTACTTAAGCTGACTTTCGAATCGAAATCAAAATCCTTCTCTGGCACAGGAGAGAAGCTATCCAAAGAATCTAAAGCACCACTCGAAGGCTGAAAAGTAGCCTTAAAGAAGTGAATCCTTTTTGGACCTAACTGATAATCATCAATAAGAACGGAATTTTCCTTCAAAGGAACCTCATCAACCTGTTTGGAAACCAAAGAAGAAACCTTCAGGGAAGAGAAAACGACAAAGTTTGTTCAAAAGAATCAGAGGAGAACTGCACAAAAACGCTTTATTTCTTTGCATGCAACTCCTTATCACCCTTCCTCGTGTAATATTTAGCACATAACTTATCCCTTACCTTCTTAACCGAGGAAGGAGTCGGGGATGAAAATAAATCGACAACCCCCTTTTCGCCATTATCAGAATCCAAAACTAAATGCATCAGATGCTCTAAAATTAAGGGAAAGCCCCCTTGCTTCTCATCGTTGCCATCAAGAGACAGATCCGAAAAACCACCATGATCTTTATTAAACAAACCGACCACCAAAGAGTCACCGTGAACTTCCTTAGACAAAATAGTACCCAATTCAATGAATCCCTTCTCATGAATTACCGAAGAGCCACCTTCCAAGGGGATAATAATCTCACCAACCACTTCCCTTTGCATCGACACCACCTTGTCAAATGGCGAATCCAACTGGGGAGAAACCCCCTGACCTTCCCGCTCAAAGCCACCCAAATGCAACTTTCCAATCTTGATAGGAAACTCATCCTCCCCAAATTCATCATGAAAGACTTAAGCAACCCTAGCCAGATCAACTGAATTAGAAAAATCTTGCAACACCAAGGAATCAAAAACCTTTTCAGGAGGAGAGATTGCCGCAACCGCAATATCCCCAAACTTCAAGTCAAACTTACCAAGAGACTCAACAAAAATTTCAATAGAAGAGGGAAGGAATCCACAAAGGTTAGGATTTACCTTAATACGAGCGGCCGAAATGTCAATCAAGTTCAAAGTATCATTTGAGATTTCTATCAAGCCTCCGAGATGTAATCCTATCGCCTCAAAAGTCGAATTCTTCTAAAATTTGAGGGGGAGATTTCTAATTGAAATCCAACCCCATAACTACAAATGAAATCCGACAAATTGTGATGTTTATCCGACCAACATTCAAACTTGAGAAAAGAAACATCCACCCTTTGCCATTTCCCAAGCCGAGACAAAAGCGCTTAAGAAGAACCCTCCACCACCAAATTAATGCCTTATCAACCATAAAGGGATTAATCTGAATCTTAACACCAAAATAATACTCAATCATCAACTTGATATCTGCCCAAGAAATATGACAGAGACGAGATACCACCAACTGATCTCCAAAATCAAGATCAAGGACTTCATCTTCTTTTCTACCCAAAGGGCTTGACTCAAAGATAACACAGAATGGATACCCCAGATGTTTCCAGCAGGAAAAGTCAACTCCTCATCCCCACCTTCCATCCCCGTAGGAGAAACAACCGGGCAAATGACATTGAAATGAGGATCAAACTGCTGCAAAAAATCAAACAACAACATCTCCCAAAAACTGCTATGCAAACCCAATGAAACCCTGATCCGTTTTCGACCACCAGAAGGAGGCCAAACAAAGCAATCTGCAAACCAAAAAGAACCTAGCCGAACCTTGTCTCCATTTCTTCTTCAGATTTCTTCTCAATTAGCATACAGATTCCAGAAATGGCTATGAGCTTCAATGCTTGTCTCATGGATGACCATCTCCTTTCCTTCAAACTCCAATCTTCTATTATTTATAGAGAAATCTCTAGTTAGTGGTAGAACAAGATCTATTTTGCATCATGTCTTAGGAATCTTAGCACAGTACAATTCATATGATATGACAAAAACAACTTTCTGGTGCCTGATTTGGTGGTCTTACTGTTGCAGCAAAGGGTAGGTGGTCATTCTCCGGTAGAAGCTCTTAGAGAAATCAGGCGGCTAAAGGACAACTGGAAGTGTTAAGTTGACTGATACCCAACTCATGACATGGTTTGGAGTCGCAATCTCTTGTACGCAGGTATAACACTTCTTAATAATACAGCTTGAAAATATCGTGTTTATGTTTTGGTTGGGGACACAATCTCCTGATAATAAAGCTTGGGCGTTGCTGTACACTACAGTGTAGTACAGTGTGGTAATCAAACTTTTTATATGGTGTTGGATTCTTCCTAAAATGGGATATTTAACCCATAAGGTAAAAACTTGAGAATGGTATTGTAGTAAGGAGCAAGTTT GTTTGGACCTTATCGCCGAACTCAAAACAATCAACTCAACTCAATCAATCGCTTCTGGAGTTGGGACAATCTCGTTTTGCTCCGATGAAAATCCATTACATTCCTTGCTTGGAAGACAACTACTCTTACCTGATCATTGATGAGAGCACTAAAGAAGCCGCGGTGGTTGACCCTGTGGAGCCGGAGAAGGTTCTGAATGCTGCTAATGAACATGGCGTCCATCTCAAGCTCGTCCTTACGACTCATCATCACTGGGATCATTCAGGGGGTAATGAGAAAATGAAGCAGTTGGTTCCTGGAATTAAAGTTTATGGCGGTTCCATTGATAAGGTCAAGGGTTGTACTGATGCAGTGGAAAATGGTGATAAGATAACACTTGGTGCTGATGTCGTTATATTGTCTCTTCATACACCTTGCCACACCAAAGGGCATATAAGTTACTACGTCTCTAGCAAAGAGGGTGAGGACCCAGCTGTCTTCACTGGTGATACATTGTTCATTGCTGGATGTGGTAAGTTTTTTGAGGGAACAGCAGAGCAGATGTATCAATCTCTATGCGTCACATTGGGTTCATTGCCAAAGAAAACGCGAGTGTACTGTGGGCATGAGTACACAGTGAAGAACTTGCTGTTTGCTCTGACGGTTGAACCAGACAATGAGAGGATAAAAGGTAAGTTGTCGTGGGCTCAGGACCAGCGGCAAGCAGGACAAGCAACTGTTCCCTCGACCATTGAAGAAGAAATGGAGACAAACCCATTCATGCGGGTTGATCTACCACAACTTCAGCAAAGGGTAGGTGGTCATTCTCCGGTAGAAGCTCTTAGAGAAATCAGGCGGCTAAAGGACAACTGGAAGTGTTAAGTTGACTGATACCCAACTCATGACATGGTTTGGAGTCGCAATCTCTTGTACGCAGGTATAACACTTCTTAATAATACAGCTTGAAAATATCGTGTTTATGTTTTGGTTGGGGACACAATCTCCTGATAATAAAGCTTGGGCGTTGCTGTACACTACAGTGTAGTACAGTGTGGTAATCAAACTTTTTATATGGTGTTGGATTCTTCCTAAAATGGGATATTTAACCCATAAGGTAAAAACTTGAGAATGGTATTGTAGTAAGGAGCAAGTTT ATGAAAATCCATTACATTCCTTGCTTGGAAGACAACTACTCTTACCTGATCATTGATGAGAGCACTAAAGAAGCCGCGGTGGTTGACCCTGTGGAGCCGGAGAAGGTTCTGAATGCTGCTAATGAACATGGCGTCCATCTCAAGCTCGTCCTTACGACTCATCATCACTGGGATCATTCAGGGGGTAATGAGAAAATGAAGCAGTTGGTTCCTGGAATTAAAGTTTATGGCGGTTCCATTGATAAGGTCAAGGGTTGTACTGATGCAGTGGAAAATGGTGATAAGATAACACTTGGTGCTGATGTCGTTATATTGTCTCTTCATACACCTTGCCACACCAAAGGGCATATAAGTTACTACGTCTCTAGCAAAGAGGGTGAGGACCCAGCTGTCTTCACTGGTGATACATTGTTCATTGCTGGATGTGGTAAGTTTTTTGAGGGAACAGCAGAGCAGATGTATCAATCTCTATGCGTCACATTGGGTTCATTGCCAAAGAAAACGCGAGTGTACTGTGGGCATGAGTACACAGTGAAGAACTTGCTGTTTGCTCTGACGGTTGAACCAGACAATGAGAGGATAAAAGGTAAGTTGTCGTGGGCTCAGGACCAGCGGCAAGCAGGACAAGCAACTGTTCCCTCGACCATTGAAGAAGAAATGGAGACAAACCCATTCATGCGGGTTGATCTACCACAACTTCAGCAAAGGGTAGGTGGTCATTCTCCGGTAGAAGCTCTTAGAGAAATCAGGCGGCTAAAGGACAACTGGAAGTGTTAA MKIHYIPCLEDNYSYLIIDESTKEAAVVDPVEPEKVLNAANEHGVHLKLVLTTHHHWDHSGGNEKMKQLVPGIKVYGGSIDKVKGCTDAVENGDKITLGADVVILSLHTPCHTKGHISYYVSSKEGEDPAVFTGDTLFIAGCGKFFEGTAEQMYQSLCVTLGSLPKKTRVYCGHEYTVKNLLFALTVEPDNERIKGKLSWAQDQRQAGQATVPSTIEEEMETNPFMRVDLPQLQQRVGGHSPVEALREIRRLKDNWKC Homology
BLAST of Tan0022242 vs. ExPASy Swiss-Prot
Match: O24496 (Hydroxyacylglutathione hydrolase cytoplasmic OS=Arabidopsis thaliana OX=3702 GN=GLX2-2 PE=1 SV=2) HSP 1 Score: 424.1 bits (1089), Expect = 1.1e-117 Identity = 190/257 (73.93%), Postives = 229/257 (89.11%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy Swiss-Prot
Match: Q6P963 (Hydroxyacylglutathione hydrolase, mitochondrial OS=Danio rerio OX=7955 GN=hagh PE=2 SV=2) HSP 1 Score: 306.6 bits (784), Expect = 2.7e-82 Identity = 144/258 (55.81%), Postives = 190/258 (73.64%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy Swiss-Prot
Match: Q3B7M2 (Hydroxyacylglutathione hydrolase, mitochondrial OS=Bos taurus OX=9913 GN=HAGH PE=2 SV=3) HSP 1 Score: 302.4 bits (773), Expect = 5.0e-81 Identity = 144/258 (55.81%), Postives = 184/258 (71.32%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy Swiss-Prot
Match: Q99KB8 (Hydroxyacylglutathione hydrolase, mitochondrial OS=Mus musculus OX=10090 GN=Hagh PE=1 SV=2) HSP 1 Score: 297.4 bits (760), Expect = 1.6e-79 Identity = 144/258 (55.81%), Postives = 183/258 (70.93%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy Swiss-Prot
Match: Q16775 (Hydroxyacylglutathione hydrolase, mitochondrial OS=Homo sapiens OX=9606 GN=HAGH PE=1 SV=2) HSP 1 Score: 296.6 bits (758), Expect = 2.7e-79 Identity = 142/258 (55.04%), Postives = 184/258 (71.32%), Query Frame = 0
BLAST of Tan0022242 vs. NCBI nr
Match: KAG6600866.1 (Hydroxyacylglutathione hydrolase cytoplasmic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 511.5 bits (1316), Expect = 4.1e-141 Identity = 243/257 (94.55%), Postives = 250/257 (97.28%), Query Frame = 0
BLAST of Tan0022242 vs. NCBI nr
Match: XP_022986362.1 (hydroxyacylglutathione hydrolase cytoplasmic [Cucurbita maxima] >XP_023535622.1 hydroxyacylglutathione hydrolase cytoplasmic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 511.5 bits (1316), Expect = 4.1e-141 Identity = 243/257 (94.55%), Postives = 250/257 (97.28%), Query Frame = 0
BLAST of Tan0022242 vs. NCBI nr
Match: XP_022941655.1 (hydroxyacylglutathione hydrolase cytoplasmic [Cucurbita moschata]) HSP 1 Score: 509.2 bits (1310), Expect = 2.1e-140 Identity = 242/257 (94.16%), Postives = 249/257 (96.89%), Query Frame = 0
BLAST of Tan0022242 vs. NCBI nr
Match: XP_004146429.1 (hydroxyacylglutathione hydrolase cytoplasmic [Cucumis sativus] >KGN50754.1 hypothetical protein Csa_005782 [Cucumis sativus]) HSP 1 Score: 508.8 bits (1309), Expect = 2.7e-140 Identity = 239/257 (93.00%), Postives = 249/257 (96.89%), Query Frame = 0
BLAST of Tan0022242 vs. NCBI nr
Match: XP_008456973.1 (PREDICTED: hydroxyacylglutathione hydrolase cytoplasmic [Cucumis melo]) HSP 1 Score: 505.8 bits (1301), Expect = 2.3e-139 Identity = 238/257 (92.61%), Postives = 248/257 (96.50%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy TrEMBL
Match: A0A6J1J7C2 (hydroxyacylglutathione hydrolase cytoplasmic OS=Cucurbita maxima OX=3661 GN=LOC111484123 PE=3 SV=1) HSP 1 Score: 511.5 bits (1316), Expect = 2.0e-141 Identity = 243/257 (94.55%), Postives = 250/257 (97.28%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy TrEMBL
Match: A0A6J1FUB3 (hydroxyacylglutathione hydrolase cytoplasmic OS=Cucurbita moschata OX=3662 GN=LOC111446951 PE=3 SV=1) HSP 1 Score: 509.2 bits (1310), Expect = 1.0e-140 Identity = 242/257 (94.16%), Postives = 249/257 (96.89%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy TrEMBL
Match: A0A0A0KPC1 (Lactamase_B domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_5G223120 PE=3 SV=1) HSP 1 Score: 508.8 bits (1309), Expect = 1.3e-140 Identity = 239/257 (93.00%), Postives = 249/257 (96.89%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy TrEMBL
Match: A0A1S3C4I5 (hydroxyacylglutathione hydrolase cytoplasmic OS=Cucumis melo OX=3656 GN=LOC103496764 PE=3 SV=1) HSP 1 Score: 505.8 bits (1301), Expect = 1.1e-139 Identity = 238/257 (92.61%), Postives = 248/257 (96.50%), Query Frame = 0
BLAST of Tan0022242 vs. ExPASy TrEMBL
Match: A0A6J1CZ81 (hydroxyacylglutathione hydrolase cytoplasmic OS=Momordica charantia OX=3673 GN=LOC111015942 PE=3 SV=1) HSP 1 Score: 499.6 bits (1285), Expect = 7.9e-138 Identity = 237/257 (92.22%), Postives = 248/257 (96.50%), Query Frame = 0
BLAST of Tan0022242 vs. TAIR 10
Match: AT3G10850.1 (Metallo-hydrolase/oxidoreductase superfamily protein ) HSP 1 Score: 424.1 bits (1089), Expect = 8.1e-119 Identity = 190/257 (73.93%), Postives = 229/257 (89.11%), Query Frame = 0
BLAST of Tan0022242 vs. TAIR 10
Match: AT1G06130.1 (glyoxalase 2-4 ) HSP 1 Score: 199.1 bits (505), Expect = 4.2e-51 Identity = 108/262 (41.22%), Postives = 156/262 (59.54%), Query Frame = 0
BLAST of Tan0022242 vs. TAIR 10
Match: AT1G06130.2 (glyoxalase 2-4 ) HSP 1 Score: 199.1 bits (505), Expect = 4.2e-51 Identity = 108/262 (41.22%), Postives = 156/262 (59.54%), Query Frame = 0
BLAST of Tan0022242 vs. TAIR 10
Match: AT2G31350.2 (glyoxalase 2-5 ) HSP 1 Score: 196.4 bits (498), Expect = 2.7e-50 Identity = 107/262 (40.84%), Postives = 158/262 (60.31%), Query Frame = 0
BLAST of Tan0022242 vs. TAIR 10
Match: AT2G31350.1 (glyoxalase 2-5 ) HSP 1 Score: 196.4 bits (498), Expect = 2.7e-50 Identity = 107/262 (40.84%), Postives = 158/262 (60.31%), 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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