Tan0014920 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCACTGGAAATCCAATCCAACGAGCTTCCTGAAGTTTTGGTTCTAAGTCCCCCCACGGTATTCACACCTCTGGAGTCCCAATTCCCAAACATATTCCATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCACCTCTTACGCCCAATCCGCTCGAGCCTTGCTCGTCATTCCAGGTGACCGTCTCGCAGTGACCTCCGCCGTTCTCGACTGCCTCCCCTCGCTGAAGCTCGTCGTCACTGCCAGCGCCGGTGTCGATCACTTGGACGTGGCGGAGCTACGGCGGCGTGCGGTGGCTATTGCCTATGCAGGAAACTTGTTCTCTCAAGATGTCGCCGACATGGCGGTGGGATTACTAATCGACGTTCTTAGGAATGTGTCGGCAGGAGATCGGTTCGTGAGGCAAGGACTTTGGCCTACGAAAGGAAATTTACCTCTCGGATTAAAGGTCCAATGGTTTTAATCTACTCGCAAATTGATGTTTCTATTTTTCATTTCCAATCGCTAGTTTATCTCTAATGGAAGAGGTGTAATTGAATTTGGATGTTTTAGATCTTTTATGAATTTGAAGGTTGAGCATTTTCGCAGTTGAGCGGTAAGCGAATTGGAATTGTTGGATTGGGGAAAATAGGCTCTGAAGTTGCCAAAAGGCTGGAGGGTTTTGGCTGCAAGATCTCATACAACTCAAGGACCAAAAAGCAAATAGTCCCATACTCCTACTATCCCAAAGTACCTGAACTAGCAGCCAATTCTGAGGCTCTCATCATTTGTTGTAGGTTAACCGAAGAAACCCACCATTTGATCAACAGGGAGGTGATGATTGCATTAGGAAAAAATGGAGTGATAATCAATGTTGGTCGAGGGGCGATCATCGATGAGAAGGAAATGATTCAATGTTTGATTCAAGGGGATATTGGAGGAGCTGGGCTGGATGTGTTTGAGGATGAACCTAAAATTCCTCAAGAGTTGTTTAATCTTGAAAATGTAGTGTTGTCGCCACATGTTGCTGTGACAACAACTGAATCTGTAGTGGGATTGATAGAGTTGGCGGTGGAGAATTTGGAGGCATTCTTTTCGAACAAATCTTTAGTGTCTCCGTTTGTGGATTAGAGTTGAGGTTCGGCTGAGTTTAATGGGGAGACTGCAAAAATTTTATGACAGAGATACCTTGATGTATTGGTGAATTAAACTCTACTATATATATTTATGGTCATGCCGAGAGACGTTTGTTTCGCAGCCATCGGCACCATCTTTGAACTTCAATCTGTTTTTTTTTTTTTCTTAACTTTTAAAGTTAATCCTTCGAGCTAGAGCTTTTCTTTCCATAGCTCTTTGCAGGAGAAATTCAGGAGATAGTGGAGAGAGAGGAGGGAGATGCGAGGGTGAGATATGCCTAGGGTTTAATGGAATTAAGTAGCTCCCTTGGAATTTTGAATTACTATACTAACAACGACAGATTATGGAATAAAAACCGAACGGGCCCAACAGAAAAAAAAAAGTGTAAAAAAGTGATTGGGTGTTTTAAAAAACTTTAATTTTATTATTCTTTATCATTTTTATTTTACTATTTTTAACCTCTCGTTTTTATTTGTTAGTTCTGAAAGTAGAATAGATGATGATTTAATCAAGTTGGCCCACAAGTCCCTCTTTGGAATAAAATGGTGTTTCTTAAAATTAAGTGATAATGAGTGAAATAATTCAAATATTTTAAATAGAGTGGGGAGTATTTTAATCTTTTCGAAGGGAGATCTTTTGTTGTTTAATTTACTAAGGTAAATAGGTTGATTATTTTAACTTTCTATTCTCTATTTCCTACCGAAAACTCATCATGGGCATAAATGGAATGAGATGAATTTTTTTCACATGCTAGCACGACAGCGTTTTCTAGAGAACAAACTCAATGAATATCAAAGGTATATTTAGCTGTAATGAGTTTCAAAAAAAAAAAAAAAAAGAACAAAGCAGTTATGGGAGATTTCAACTAAATGAATTTCAAAGGTATTTGTGGAGTCTAACTTCAATGGTTATTATATTTATAACTAGAGATGGAACTTATATGTCCCTATTATCAGGGAGAAGTCATATTAAAATGGTCCGATGGCTCATATTATTCGGTCTTATGAAATAATTTTATCAATTCCATGGCATGGAACTACTTGATCCACCCATTCTTGATGATGACCATATTGACACAACTAACAAGTTAAATTAAATTAAAAATTCTTAAATAAACGTTGTCCTTCTCGATTGTCGTTTTAAATATTCTTACAGGTGGCCGGAGTGGGTGTAGATCTGGACAACGTGTGTGCGTACCCGTGCTTGATTCGATAATTGCAAGAAGATTTTAAACTATAAACAGTGACAACGAAAAAAAGAAAAGAAAAGAAAAGGAATTATTCTTCAAAAAAAGAAAAAGGAATTATTCTTCTTCCCTGGACAAAACATGGGGTCTGCACATATACCATATCTGTCTATTAGTTCTTGCAGTCTTTTTACTATTATTTTTTGGAAAAAACTTGGTGCAGCCCAAACAGTGACAACGAAAATAAAAAAAGAACTATTCTTCTTCCGTGGACTAAACATGAGGTCTGCACATGTATCGTGTATATCTAATACTTGTTGTTGCAGTCTTTTATTATTATTTTTTTAGAAAAAACAAATTGGCAACTCCACTCATTACAATTATAGAATTTTTAAAAATTCGGTAGGGTGGTAAAAGTGACAGGTCTAGAACTTTGTGCAAGGAGGCTTAAATTTGATTTTGAACATATTAATATATTAGTTTTGTTAATATATATTTTTGGTCCCACATGAATCTCATCCCATTTTAATCTTTACATTTTTAAATGTCCGATTTAGCTTATATAATTTCAAAAACAAATCTTAAAATTAGTCATTATTATTAGTTTGTGAGTTAATTTTTTTATCAAATTTGATAAAATAATAATAATAATAATTTTATTTAAGGAAAAAAATACAAAATAAATATGTTTCTAAAATTTATACATAGAAGTTAAGGGAAATGACTTCTTTTTGTAAGTTAACAATAAACTAATAATGTAAACTAATTTTATGATTTGTTGAAAGTACCCACACTAAATTAGGACATTTGAAAGTATAGAGACTAAAATATAACTAAACTAAAATTTCTCAAGTACCTGCCTCTAGGATGTTTAGGTAGCATTGTGTTGTTGTTGTTATTATTATTATTATTATGATGGAAGATAAAGTTATTTGAAGAGAAATTTGCATGGAAAACTCGTTTTTCACGCATTAATGATGATTTACCTACGTGCTCAAATTAATGACATTCGACTTTTTCAGATCGTGACATTCCGTCCAAATTACCATAAGGGCATCATACTGACTCTAGCTCTCGCTCAAGTCTGACTCTAGCTCTCGCTCAAGTCACGTTCTCGCTCTCGCTTATGATAGTAATTAAGTTGTCAAAATTCTGGAGAAAAGAAAAAAATAATAAAAATCGTACTATAGTTGACTCGCTCTCTCTCTCCTACTCCAGCTCTTCTCTGTCTTTTTTTGTCATTTTTTCTTTATATTTTTTTCCATTCATTTGAGCGAGAGCGAGACAACGGGAGCGAGACAACGGAGCAAGAGCGTGAACAACGTGAACAAGAAAGACCGCTCCATATTACCCTTATGAGTCATTTTGCGTGCATTGCCACGTCAGAATATATCATATTTCATTATTTTTAAATGTCAGGTCAAATGTCATTAATGTATTGAAAAATGGGTTATCCGTACGAATACCCCTTATTTGAATTAAAAAAATTTATATATACCACTCAATCCATTAAGAGCTTTTTCATCATAACTTCTGTGTTCGTCTGAAATATATACCTTTTATAAATGGCACCCGAAGATCAGGCCAACGAGCTTCCTCAAGTGTTGGTTCTGGATCCCCCCTCGGTATTCTCATGTCTGGAATCCCAATTCCCAAACAGATTTCATTTCCTCAAACCATGGCTTTCCAAACTTCCCCTAACTCAATTTCTCACCTCCTATGCCCAATCCGCCCGAGCCTTGCTTACTCGAGGTGGTAGCACTATCAATCTCACCTCCGTCATTCTCGACTGCCTCCCCTCGCTGGAGCTCGTCGTCACTTCTAGCGTCGGCGTCGATCACTTGGACTTGCCGGAATTACGGCGGCGTGGGGTGGCCATTGCCTATGCAGGAAACTTGTTCTCTCAAGATGTCGCCGATATGGCGGTAGGATTACTAATCAACGTACTTAGGAAGCTTTCGGCGGGAGATCGGTTCGTGAGGCAACGGCTTTGGTCAACGAAAGGGGATTTTCCTCTCGGATTAAAGGTCAAGCTCCAATAGTTTTTCTTTATCTAGTTGCAATTTCCTCTCTTTCCTTTTCATTTCCAATCATCTTAGTAACAAAAGATGTGACAGATTTTGATTTTTCTGATTTGTCAAGCGGTAGCTAATTAGTTAGTTGTTAATGGAAAAGTATAGTTGAATTTGGGTGTTTTAGATTGGTGAATTTGAAAATTACCCTAGTTCTACAATCCGTCCAATTTTTCACAGTTGAGTGGCAAGCGAATTGGGATTGTTGGATTGGGGAAAATAGGTTCTGAAGTTGCCAACAGGCTGGAGGGTTTTGACTGCAGAATCTCATATAACTCAAGGACCAAGAAGTCATTAGTACCATATTCCTACTATTCCAATGTATATGAACTCGCAACAAACTGTGAAGCACTCATCATTTGTTGTGGGTTAACTGAAGAAACCCGCCATATGATTAACAGGGAGGTTATGCTTGCATTAGGGAAAAATGGAGTAATAATCAATATTGGTCGTGGAGCCATCATCGACGAGAAGGAGATGGTTCAATGTTTGATTCAGGGAGAAATTGGGGGAGCTGGCCTGGATGTGTTTGAGAATGAACCTGAAATTCCTAAACAGCTCTTTACTCTTGATAATGTAGTGTTGTCGCCACATGCTGCTGTCTCAACATATGAATCTAAGGTGGGTTTGGCTAATTTGCTGGTGGATAACTTTGAGGCATTCTTCTCAAACAAACCTTTGGTGTCTCCCTTTGTGAATTAGTAGTGGTGCAGCCGAGTTTCTGCTGAGGGAGGATGGTTTGTTGAGAAAAAGAGGAAACTCCAACAACTTGACGACAGAGCCACCCGAATGCAAAACTTCTGACCTCAGTTATAATGCCTAAACGTTGAGCGGACCTTTTTTTTTTTTTTTTTTTGGCATGGACACTAAAGAAATTTTAAGTTCTTCCATTTTCTCTCTCAAATTCTGACGAGATAAAAGCTCTTAAATGCAGTTTTTGTTAGTTAACTCAAGCTGGTTGATATCTCCTACAATAAGGTCAAAGAAACGTAGACTAAAATAGTGGAGGAAGAATAGGTCTTCCTCTGGCAAGCTTTATATAGCCTCTCACAAGTCTCTCGACTACCCAAAAGATGAGGGAAGTTGTTATTTTTAGTTGGTTTAAGTTGTAAGTTGCTATTTTTAGCCTTAGAGGTAGTATTTATTTTGAGTTGTGATGGAATAAAATTGGAGATTTTTCCAATTCTCCTCCCCTCTCTAGAGACAGTTTTCTTGTTTCTGGGGTTATCCTTACCAGCAAGGAGCTTTTCTTCTCGAGATCTTTGCGGGAGAGGGTAAAGGTGTGGCGGTGAGATATGCCTAAGATTGCATGATTAACAAGTTCCCCTTTAAAATTTAAATTACTATATCAATAACAGGTTATGGAATAAACCGAGATCAATGTGCAGCACAGAACCAAGCAAATCTGACGCGACGAATCATGGTCAATTCCTATGGTTCTGATTTGCTAAATTAGATCAAAGGCTTAGAAAGCCGAATAGGAGCAGTATTCTCCAAGCTTGGAAGACGACAGTAAATGTCGCATCAAACTCTTACTCTAAACAAAACGGAATTAAATGAATTTCAAAGATTTATTTAAATGTGATATGAGATTTCCCCAACCCCATGCCATGCAGTAAACCAAGATAAGCAATTTAAACGTAGAGAGAGAGGGGGAGAAAGACACACACCTAAAAGCTGCAAATATCCAGATACTTTATGAAGAATATGACTTGTTGATGAAGTTGCATTGGCGAAGATGAAGATGACCGTAATCCAGATACTTTTATCTACTAGGGTCAATACTTTGTCATCGCTATCTCCATTCAAGGTCCATAGAATATGACTTGTTGGTTTCATGTTGAGATTATTAGTAACCAGGTGGAATACATGTTATGAAGAATCCTGCCGTGCAGTGAAAGAAATATGCATAATTAAAATACAACATCAACAGACAAATGTTTGACCATAATCTACCATGCATGCATGTCGTACATTTCCAGTAAATTAATAAGTTGAATATACCTTAGTATTCATTACAGTTGAATACACAACTACCACCGCAGCCAACATGTTGTCTCAGAAGAGGGCATAATGATGAAATTTTGGATTTGTAAAATTTTCACCTCTTGGGGAAAATTCTCTTCTCCGTAAGTGAAAGGTAATAATCGATAGAAGGCACAAGGACAGGCAGCGAATACCATCTGGAATTTCCGAACACCCAATAAGTGTGGTACTCCTTGTTTGTGCTGCTTGCAATATCATGAATTACCTGCAGTAGAGCTGTAATCAATATTTGACACGAAACACTGCTATATTTGAAAAGCAGATAAGTATAATTGATCAGAATTACCTAGTATCGTATCCTAACTCGTACGCCATGTAATTAATTAAAAAAAATAGGCTATGATGTTGATCAAGGATGAAGAAAAACAGAGATAACAAGCATACATGAATAATAATAAGAATAGCACACAAGAACACACACATAATCTACGAATGCTGTGATAAAATGGTGACTAAACTTCACCTTTGTGATCCTCTTCAGGACCCATACATCCACAAAAACGCCGTGGTGGATGCTGACTAGGAGGTGAGGCTGGATTATTTGTTTATTTATTTTTCCTCAAGGAGGGCTAATGTTGGTTGATTATTCTAGTTTGAAACTGCTTCATATCCAAAAGGAAGAGAGGTTTGTATTTTCACGATGCTCTCCACTTATTTAATTTTTCTTTTGCTATTATACGGACTTAGGTGGCCTAATTACTCATCACCTTCCCTTCTGAAGAGTTAAACCTTATATTTGTTCTAGTTAGCTCACCCTATCAGTACTCAGAAAATTTCGACAGACGAGTCCATAAAGTTCAAGTGGTTGCTATAGGAAAGTAGCCGGAAATTCAGAGCCATGGTGTGCTGGTAAAGGCATCAATAATTCCTTGCAAAAAGAAGTTCAGATGGCCATAATTACGTAGTTCTAAGAAATTCAATTGTTGGTTCTTAGTTCTCTTTTCCCTCTCTCCCTTTTATACCGAACGCGCACAATTTTTCGTAGAGACACTAAAAATGAAGCAACAAATTCGATCCAAAGAAATGACGCCTATTACTAATACATCTTTGTGCCAAATGCGCAAGCATTGTTTTCAAACATATAGTACGGTGTTAAACTTAATGCGAAAAATTCTACTAGAACTCAAATTTCTGTTTCGTAATCCCTTCATTCAGTTCCCGAAGCGAACACCACACTTATTTGGCGCTAACAAATAACCAATCACAGTTAGAAGCTCATCGTGAAATAGCCAGTTCTAAACTCCCAACCTGAAGTAGCCGTAGTTTTTCCGATATAGAAAACAATATAGCTAAGTAAATTAACTAAGACTTTCAATCTATGCTAACAAAGAATCAATCACACCACACTTGTTTGGCGCTAACAAATAATCAATCACAGTTAGAAGCCATCGTGAAATAGCCAGTTCTAAACTCCCAACCTGAAGTAGCCGTAGTTCTTCCGATATAGAAAACACTATAGCTAAGTAAATTAACTAAGACTTTCGATCCATGCTGAGGAAACTAAAGAGAAGACTGACTGGAGTTCTCTAATAATTAAAGATCCGGAGTAAAAAACTAGATTACGTTCATTTTCCTAAACCACAGGAAGATTAAAAGAAGGAGAAGAGATACACCAGCAATGAGGAAGCCTCCGCCGACGACAAAAGCCGAAAAGAACCTCTATTCTCCGGCATCGCCATTTACCTAACTTCGTCCTCGTGCTTAGCCAAACCAGATGTCCATCCTTTCTTCAGCGCCATTGTCGTTGATCACGACAACGGAGAGAATCACAACGAAGAATCACAACGAGAAGAGCATTGGAGTGGAAGAATGGTGGGAGAATCTTTTTTTTCGTGCGGTTACGCAGGAGAGAGCGCGAAGTTGGCAGAGGGATGGAGAACAATTCACGAACAAAAAATGAACGTCGGTCCATTTTATAATCCCTCCCAAAATTATTGCCAAAATATACACAATATTTTCTATTCTTTTGGGCAATTATAATTTATTTTTTATATCTTTACCTTACCATCATAAAAAGTGGTTGAGGAAGATAATCATTTTTGAACCATTTCTTCTTTTATCAAATATTAAATTTACAAACATACATGCCAGCCACTAATAATTATAAAAAAATTTATATATTTAATTTAACTCATAAAATAGCATTTAAAAAACTTGAATATGAGACATTTTTAGACAATGTTATCATTAATTTTAAATATAATAATTAAATTGTCCTTACTAGATTATTTTAAAATTAAAAATGGATAAAAAAATATCCACACCTAGCTCTCACGTTGCCACTAATAGTTTTTTTTAACAAAAAAAAAACATTATTTAGCATGTATCCAAGGTAAATATTTAAGAGATGAAGAGGGTTTTTTTTTAGTACTTCAACAATTGGGGGTGAGGGATTCGGACGAAGTTGGAATATGAAAAGTACTACATCCTTATTTCTATAATTTAATTTCTAAAAATTATGAGTTTATCTTAAATTATATTTAATGGTGAAATTTCAAAGAGATTGTAACTTTTATACAAACATTTGAGTTTCATATATGTTTAGATTTGTTTTTCTTCTTTTATCCATTATTTTACTTTGTCTTATAATTTTTGTTGGATTACTTAATATAACATTTATCTTGCTTTTCTTTTGTTGTAATATTGATTATTTGTAATTTAAGAAAATGTTTGAAGATATTAAACAAAAAAAAAGTTTGAAAATAATATATTGCTAATTGAAGTTAAGCGCAAATACGTAATTTAACCTTTATCTTGCTTTTCTTTTATTGCAATGTTGATCATTTGTAGCTTACGAAAAGAATTGAAGACATGCAAAAGAATAAGCTTGAAGATATATCCTATAATATCCTGTCAATTGAAGTTCAACGCACGTATGTTTTAAGTTAAATTTATAGTATTCTTTTTTATAAATGTATTTATCTATTTTAATAATAATAATAATAATACTTGTTATTAACTTATTTTATATTTAAGTAATAAAAGACCCCTCAAATTAAATTTTAGTCTACAAAGAAGAATTTGGAAAGTTTATTTTAATCATCTCCAACTAATTAGGCATCGTAAAATATCATTATAGAAAATCAAACACAACTATCAAAATGAGTTTTAAATAATTTTATATTTAAGTAATGAAAGTGCACTAGATTATTATTACTATCATCTTCTTTTTTAATATATACTTATTATTATTACTATTACTATCATATTATTCTTGATATTATTCTTTTTTATTATTACTATTTCTATTACCATTATTAGTACTGTTACTATATTATTATCGTTGTTTTTTCCCCTTCATGCCAAGCCGAGTTTTTTTTTTTTTTTAAGATATATGTGTATAATAATAATAATTATCAATTAAAAAGCGATGAACTCTCCCACATTCTAAATCTTTTAAAATTGAATTCTAATTTTTCAAATTCCATAAAAAGTTAAATAGTCCATTATGAAACAAAAAAATATTTTTTCTTCTTTGGCAAATTGGTTGATTCTAGATATATCACAATCTTAAAATTTTTATTTTTTTGCATTTGCAAAGTCATGTTAAAAAAATGATATTTTTTTGTTAATGCCAAATAGGTGAAAGAAACATCTTAATCTTATAATTTTGTTATACCAAATTCCTTTTTATTTGTAAATAAATTTTTGTATTTCCTTGGTTATTTATAAAGTAAAATCTTTATATAGACTACAATTTAGAGTTTTAATAGGTTAATTATCTTTCAATAAGATTCACATATTGCAAATATAAAAAGTATGTTGTCTAAACGAATTAGACTTTTTCAATAATTGTATTTTTTTTTATGTAAAATTGTACAAATAAAGTGATCATCTACTTATAGTGAATCTTGAACCTCAACAAAAAGGTTATAAAAAAGAATAATTTTTTTGTAATTTATTGTTGACTTTTTTTTGTTTGAGTATTAATTTAATTATATATTAGGTTATTTCATATCATCACTCATAGTAAATTTGAAATAATAACATTTCTAAATGTTAAGTTGATATACTTTTTATAATCGTCTAAATTATCTTAGATCTTAAGAAAAACTTGAGAATATACCTTGCAAAAAAAAAAATGACAATATTATGCATAATATCAAATTTTACCATCTTTTTTAATAAAAAATTTGACCATTATTATTCACTCATGTATGTGAATGTTCATAGAAGTTTTCTTTTCAACCTTTTTAACTAAATTATATTTTAAAATTTACAAAATACGTGCATCACACACGTAGTTTCGAACTAGTTTTTTAAAATTCTCATTTGTTTTGAAAATCCTTATGTAAAAATAAATAAATAAATAAATATATATATATATATATATATATTAATCATTAAATTATTTTTATTGACATATATGTTATTTGAAATATGACATTCAATTAGTTGATCTTCGAAGTTCCATTCATCCCTCAACAAAATTCATTTTTTTAGCTAGCATTTTTAAGTAGCATCTTCTAAATGTCTTAATATAAGAGTAATAATTTAACGGGACATGGGTTTTTTAAATAAATTATAACTAAATTCATGTTTTGATTTATTCCTTATTGTGGTTTGTTTATTCCTCTAAAAATGAACCTAGCACACCATTAAATAAATAAATACCGATATGCACCACATATATATTAAGGCATAATAGACGTGGTAATAATTACAGGGTTTGTGATTCGAATCCGTAAACATAAATTCTACTTAAAAACAACCACGTTGAGAAAAACAATGAAGAATAGAAAATTAAATCATTATCTAAATCATCCTAATTTCAACTTTAAAAAGATGTTTGAAGTTTGAATACAATCTTAAATTGTTAAAAATTTCAATTTGTTAATATAATTTGAGCTTGATTTATATTATTTAAAATTTGAATTTTATCTTTATGGTTTTAAAAGTGTTCCCTTTGAGTCTAAGTAAACTTCGTAGGACCGTATCAAGTCTGTTTTTTTTTTTTTTGCAGGTATAAAGATAATTAATTTTCATGATAAGTCTTTTATTCTCATATATGGGGTTCTATCTCAAACTAATTGAAAATGAAAAAAGTAACCCACATATCTTATATATTGTGAGGTTTCTTTCCACTTTTCCAATGTGGGATCCTCAACATGCCCCTCAAGATGGTGCCTCTTTGGGGGTTCACCATTCTTAGATCGAATCCCAATTTCATTTTTTTTATCGAATACCCGTTTGGGTTTAATGGGCTCTATGGGGTTCTATCTCAAAACCAATTGACAACAAGAGAAGTAACCCACATACCTTATATATTGTGAGGTTTTGTTAAGGGATAACGACCCTCCACATATCTCCACATTGGTATGATATTGTCCACTTTGAGCATAAACCCTCATGGATTTGCTTTTGGTTTCACACCAAAAGCGCCATCATACCAAATGGAGATCTATCCTCACTTATATACCCATGATCTTCCCCCTCTCTAGTCGATGTGGGACTTTGGTCGCACTCCCAACAATCCTCCCCTCGAACAAAGTACCAACCGAGCTTCCCCTCAAATAGTCATCCATCCGCCTAGCTCTTATCCTGGCCAACTCCTATACCCGGAGGACACCTGTGGGACTTTGGTCGCACTCCCAACAATCCTCCTCGAACAAAGTACCAACCGAGTCTCCTCAAATAGTCATCCATCCGCCTAGCTCTTATCCCGGCCAACTCCTATACCGGAGGACACCGCCACCAGGCAAACTCCTTTTACCCGAGCACACCGCTTTATCCGACAGAGCTCTCTCACCACGGATCTACACCATGACTACACTTCAAGGCTCTCGCCTCCTTTGTTCTAAGCACCGAGGATTTTACCGATCACGGCTCTCGGGGGCATGGCTCGATACCATCATTAAGTGATAACGACCTCCACATATTTCCGCGTTGGTATGATATTGTCCACTTTTGGGCATAAACGGATTTCTTTTGGTTTCACCAAAAAGCGCCATACTTAATGGAATCTTATCCTCACTTATATACCCATGATCTTCCCCTATAGTCGATGTGGGACTTTGGTCGCACTCCCAACAGGTTTCTCTCCACTTTTCCAATGTGGAATCCTGAATAGTCTGTTTCCTCTAATTTCTATAATGGTTAAGACGGCTATTATTCTAACAAGATGCTTTTTGAGGGATCACCAGTGACTAAACTTGGTTGCCAATCGCTATATTATCTTATCCCAAAAAAGGAAACCCGTCTTTCTTCTTCATCCTTTTACAGTCAGCGAGAGAGAGAATTTCTTCTAGCAATTAGAAATGGCAGATGAAAGCCAGGCCGACGAGGTTCCTGAAGTTTTGGTTCTAGGTCCCCCCTGGGTATTCTCAGTTCTGGAATCCCAATTCCCAAACAGATTCAATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCGCCTCTTATGCCCAATCAGCCCAAGCTATGCTCGTCGCAGGTACCATGTGCAAACTGAATACCGCCATTCTCGACTGCCTCCCGTCGCTGAAGCTCGTCGTCACTACCAGCGCCGGTGTCGACCACTTGGACGTGGCGGCGCTACGGCGGCGTGGGGTGGCCATTGCTTATGCAGGAAACTTGTTCTCTGAAGATGTTGCCGATATGGCGGTTGGATTACTAATCGATGTCCTTAGAAAACTGTCGGCGGGAGACCGGTTCGTGAGGCAAGGCCTTTGGCCTAAGAAAGGCAATTTTCCTCTCGGATTAAAGGTGCCATGCAAAGGTTTTTTTTCTTTATCCAATTGCAATTTCCTCTTTTTTTTGTTTTTTTTCTTTATTTCCAATCACCAAAATTTGATTTTTCTGATTTTTTTTAAGTTCAACAACAAATTCCCTTGAATTAAAGGTGCAATGGAATGGTTTTTTCTTTATCCAATTGCAATTTCCTTTCTTTATTTCCCATCACCAAAATTGATTTTTCTGATTTTTTTTTGTAAGTTCAACAACTTAGTTGTTGAAATAACAAGAGATTATAATAGTTTGTAAATTATAATAGTTTAAATTTATGTAATTTATGCTTAGGATGCAGGTTACTTGATTTAAGTTATAATAATAGGGGTGTAGAGTATTTTATAGGTAGAGATTAGAGGGGTACATGTCAATTATAAGCTATGCTCACTTTACTTAATTTTTTTCTTGATTTGTTAAGCAGTGGTTAATTAGTTAGGCTAAATTATACAAAATAACCCTAAAGTTAGAGATTAGTTTCAATTATGCATCTAAAATTTGAAAAGTTCCAGTTCAGTCAACTTTGAAATTTGTTCCAAAAAATTACCCTTGAACTTTGAAATTGGTAAAAAAAAAATTATCAAACAAATGATGAACATTGATAGCTAATGTATAAAAATGGAAAGATATGCATGATTTTATTTACAATTATATAGAATATTAAGATGGTTGTTACTATTTATTTCATCTTAAAAGATAACATAATCAATTTTACACATCAACTGCCACATCAATTTGTTGTAAACAATACCATTGTAAATGATATTATGTATGTCTTCTAATTTTGACAAATTAACAATCTTATTCTAATAAATAAAAAAAAAAAGAAAAGAAATTCTTCAAATTTCAAATGTCCAAAAATAAAAATAAAACTTTTCAAAATTCAAAAACATAATTAAAATTTACTTCAAAATATAGGCATGTTTGGGATAATTTAACCCATTAGTTACTTATATAGTGGAAAAGTCTAATTGAATTTGGAAGTTTTGGAAGGGTGAATTTGAAGGTTGAATTTTTTTCTACAGTTGAGCGGCAAGCGAATTGGAATTGTTGGATTGGGGAAAATAGGTTCTGAAATCGCCAAAAGGCTGGAAGGTTTTGGCTGCAGAATCTCATATAACTCAAGGACCAAAAAGCCAATAGTCCCATACTCCTACTATTCTAATGTACACGAACTTGCAGCCAACTGTGACGCTCTCATAATTTGTTGTGGGTTAACAGAAGAAACCCACCATATGATCAACAGGGAGGTGATGGTTGCATTGGGAAAAAATGGAGTGATAGTCAACGTCGGTCGAGGGGCGATCGTCGACGAGACGGAGATGATTCGATGTTTGATTCAAGGGGAGATTGGGGGAGCTGGGCTGGATGTGTTTGAGAATGAACCCGAAATTCCCGAACAGCTCTTTACTCTTGACAATGTTGTGTTGTCGCCACATGTTGCTGTTACAACACATGAATCTTTTGTGGGAATGTCTAAATTGGTGGTGGAGAACTTGGAGGCATTTTTCTCAAACAATCCTCTGGTGTCTCCCTTTGTGGATTAG ATGGCACTGGAAATCCAATCCAACGAGCTTCCTGAAGTTTTGGTTCTAAGTCCCCCCACGGTATTCACACCTCTGGAGTCCCAATTCCCAAACATATTCCATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCACCTCTTACGCCCAATCCGCTCGAGCCTTGCTCGTCATTCCAGGTGACCGTCTCGCAGTGACCTCCGCCGTTCTCGACTGCCTCCCCTCGCTGAAGCTCGTCGTCACTGCCAGCGCCGGTGTCGATCACTTGGACGTGGCGGAGCTACGGCGGCGTGCGGTGGCTATTGCCTATGCAGGAAACTTGTTCTCTCAAGATGTCGCCGACATGGCGGTGGGATTACTAATCGACGTTCTTAGGAATGTGTCGGCAGGAGATCGGTTCGTGAGGCAAGGACTTTGGCCTACGAAAGGAAATTTACCTCTCGGATTAAAGTTGAGTGGCAAGCGAATTGGGATTGTTGGATTGGGGAAAATAGGTTCTGAAGTTGCCAACAGGCTGGAGGGTTTTGACTGCAGAATCTCATATAACTCAAGGACCAAGAAGTCATTAGTACCATATTCCTACTATTCCAATGTATATGAACTCGCAACAAACTGTGAAGCACTCATCATTTGTTGTGGGTTAACTGAAGAAACCCGCCATATGATTAACAGGGAGGTTATGCTTGCATTAGGGAAAAATGGAGTAATAATCAATATTGGTCGTGGAGCCATCATCGACGAGAAGGAGATGGTTCAATGTTTGATTCAGGGAGAAATTGGGGGAGCTGGCCTGGATGTGTTTGAGAATGAACCTGAAATTCCTAAACAGCTCTTTACTCTTGATAATGTAGTGTTGTCGCCACATGCTGCTGTCTCAACATATGAATCTAAGGTGGGTCCCCCCTGGGTATTCTCAGTTCTGGAATCCCAATTCCCAAACAGATTCAATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCGCCTCTTATGCCCAATCAGCCCAAGCTATGCTCGTCGCAGGTACCATGTGCAAACTGAATACCGCCATTCTCGACTGCCTCCCGTCGCTGAAGCTCGTCGTCACTACCAGCGCCGGTGTCGACCACTTGGACGTGGCGGCGCTACGGCGGCGTGGGGTGGCCATTGCTTATGCAGGAAACTTGTTCTCTGAAGATGTTGCCGATATGGCGGTTGGATTACTAATCGATGTCCTTAGAAAACTGTCGGCGGGAGACCGGTTCGTGAGGCAAGGCCTTTGGCCTAAGAAAGGCAATTTTCCTCTCGGATTAAAGTTGAGCGGCAAGCGAATTGGAATTGTTGGATTGGGGAAAATAGGTTCTGAAATCGCCAAAAGGCTGGAAGGTTTTGGCTGCAGAATCTCATATAACTCAAGGACCAAAAAGCCAATAGTCCCATACTCCTACTATTCTAATGTACACGAACTTGCAGCCAACTGTGACGCTCTCATAATTTGTTGTGGGTTAACAGAAGAAACCCACCATATGATCAACAGGGAGGTGATGGTTGCATTGGGAAAAAATGGAGTGATAGTCAACGTCGGTCGAGGGGCGATCGTCGACGAGACGGAGATGATTCGATGTTTGATTCAAGGGGAGATTGGGGGAGCTGGGCTGGATGTGTTTGAGAATGAACCCGAAATTCCCGAACAGCTCTTTACTCTTGACAATGTTGTGTTGTCGCCACATGTTGCTGTTACAACACATGAATCTTTTGTGGGAATGTCTAAATTGGTGGTGGAGAACTTGGAGGCATTTTTCTCAAACAATCCTCTGGTGTCTCCCTTTGTGGATTAG ATGGCACTGGAAATCCAATCCAACGAGCTTCCTGAAGTTTTGGTTCTAAGTCCCCCCACGGTATTCACACCTCTGGAGTCCCAATTCCCAAACATATTCCATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCACCTCTTACGCCCAATCCGCTCGAGCCTTGCTCGTCATTCCAGGTGACCGTCTCGCAGTGACCTCCGCCGTTCTCGACTGCCTCCCCTCGCTGAAGCTCGTCGTCACTGCCAGCGCCGGTGTCGATCACTTGGACGTGGCGGAGCTACGGCGGCGTGCGGTGGCTATTGCCTATGCAGGAAACTTGTTCTCTCAAGATGTCGCCGACATGGCGGTGGGATTACTAATCGACGTTCTTAGGAATGTGTCGGCAGGAGATCGGTTCGTGAGGCAAGGACTTTGGCCTACGAAAGGAAATTTACCTCTCGGATTAAAGTTGAGTGGCAAGCGAATTGGGATTGTTGGATTGGGGAAAATAGGTTCTGAAGTTGCCAACAGGCTGGAGGGTTTTGACTGCAGAATCTCATATAACTCAAGGACCAAGAAGTCATTAGTACCATATTCCTACTATTCCAATGTATATGAACTCGCAACAAACTGTGAAGCACTCATCATTTGTTGTGGGTTAACTGAAGAAACCCGCCATATGATTAACAGGGAGGTTATGCTTGCATTAGGGAAAAATGGAGTAATAATCAATATTGGTCGTGGAGCCATCATCGACGAGAAGGAGATGGTTCAATGTTTGATTCAGGGAGAAATTGGGGGAGCTGGCCTGGATGTGTTTGAGAATGAACCTGAAATTCCTAAACAGCTCTTTACTCTTGATAATGTAGTGTTGTCGCCACATGCTGCTGTCTCAACATATGAATCTAAGGTGGGTCCCCCCTGGGTATTCTCAGTTCTGGAATCCCAATTCCCAAACAGATTCAATTTCCTAAAACCATGGAATTCCAAATTCCCACTACTCCAATTCCTCGCCTCTTATGCCCAATCAGCCCAAGCTATGCTCGTCGCAGGTACCATGTGCAAACTGAATACCGCCATTCTCGACTGCCTCCCGTCGCTGAAGCTCGTCGTCACTACCAGCGCCGGTGTCGACCACTTGGACGTGGCGGCGCTACGGCGGCGTGGGGTGGCCATTGCTTATGCAGGAAACTTGTTCTCTGAAGATGTTGCCGATATGGCGGTTGGATTACTAATCGATGTCCTTAGAAAACTGTCGGCGGGAGACCGGTTCGTGAGGCAAGGCCTTTGGCCTAAGAAAGGCAATTTTCCTCTCGGATTAAAGTTGAGCGGCAAGCGAATTGGAATTGTTGGATTGGGGAAAATAGGTTCTGAAATCGCCAAAAGGCTGGAAGGTTTTGGCTGCAGAATCTCATATAACTCAAGGACCAAAAAGCCAATAGTCCCATACTCCTACTATTCTAATGTACACGAACTTGCAGCCAACTGTGACGCTCTCATAATTTGTTGTGGGTTAACAGAAGAAACCCACCATATGATCAACAGGGAGGTGATGGTTGCATTGGGAAAAAATGGAGTGATAGTCAACGTCGGTCGAGGGGCGATCGTCGACGAGACGGAGATGATTCGATGTTTGATTCAAGGGGAGATTGGGGGAGCTGGGCTGGATGTGTTTGAGAATGAACCCGAAATTCCCGAACAGCTCTTTACTCTTGACAATGTTGTGTTGTCGCCACATGTTGCTGTTACAACACATGAATCTTTTGTGGGAATGTCTAAATTGGTGGTGGAGAACTTGGAGGCATTTTTCTCAAACAATCCTCTGGTGTCTCCCTTTGTGGATTAG MALEIQSNELPEVLVLSPPTVFTPLESQFPNIFHFLKPWNSKFPLLQFLTSYAQSARALLVIPGDRLAVTSAVLDCLPSLKLVVTASAGVDHLDVAELRRRAVAIAYAGNLFSQDVADMAVGLLIDVLRNVSAGDRFVRQGLWPTKGNLPLGLKLSGKRIGIVGLGKIGSEVANRLEGFDCRISYNSRTKKSLVPYSYYSNVYELATNCEALIICCGLTEETRHMINREVMLALGKNGVIINIGRGAIIDEKEMVQCLIQGEIGGAGLDVFENEPEIPKQLFTLDNVVLSPHAAVSTYESKVGPPWVFSVLESQFPNRFNFLKPWNSKFPLLQFLASYAQSAQAMLVAGTMCKLNTAILDCLPSLKLVVTTSAGVDHLDVAALRRRGVAIAYAGNLFSEDVADMAVGLLIDVLRKLSAGDRFVRQGLWPKKGNFPLGLKLSGKRIGIVGLGKIGSEIAKRLEGFGCRISYNSRTKKPIVPYSYYSNVHELAANCDALIICCGLTEETHHMINREVMVALGKNGVIVNVGRGAIVDETEMIRCLIQGEIGGAGLDVFENEPEIPEQLFTLDNVVLSPHVAVTTHESFVGMSKLVVENLEAFFSNNPLVSPFVD Homology
BLAST of Tan0014920 vs. ExPASy Swiss-Prot
Match: Q9LE33 (Glyoxylate/hydroxypyruvate reductase HPR3 OS=Arabidopsis thaliana OX=3702 GN=HPR3 PE=2 SV=1) HSP 1 Score: 341.7 bits (875), Expect = 1.8e-92 Identity = 165/284 (58.10%), Postives = 217/284 (76.41%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy Swiss-Prot
Match: A5CAL1 (Glyoxylate/hydroxypyruvate/pyruvate reductase 2KGR OS=Vitis vinifera OX=29760 GN=2KGR PE=1 SV=1) HSP 1 Score: 280.0 bits (715), Expect = 6.3e-74 Identity = 138/301 (45.85%), Postives = 199/301 (66.11%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy Swiss-Prot
Match: Q65CJ7 (Hydroxyphenylpyruvate reductase OS=Plectranthus scutellarioides OX=4142 GN=HPPR PE=1 SV=2) HSP 1 Score: 276.2 bits (705), Expect = 9.1e-73 Identity = 143/301 (47.51%), Postives = 202/301 (67.11%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy Swiss-Prot
Match: Q9CA90 (Glyoxylate/hydroxypyruvate reductase A HPR2 OS=Arabidopsis thaliana OX=3702 GN=HPR2 PE=1 SV=1) HSP 1 Score: 270.8 bits (691), Expect = 3.8e-71 Identity = 139/303 (45.87%), Postives = 198/303 (65.35%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy Swiss-Prot
Match: Q5FTU6 (2-ketogluconate reductase OS=Gluconobacter oxydans (strain 621H) OX=290633 GN=GOX0417 PE=1 SV=1) HSP 1 Score: 195.3 bits (495), Expect = 2.0e-48 Identity = 100/254 (39.37%), Postives = 151/254 (59.45%), Query Frame = 0
BLAST of Tan0014920 vs. NCBI nr
Match: KAG7028647.1 (Glyoxylate/hydroxypyruvate reductase HPR3, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 852.0 bits (2200), Expect = 3.1e-243 Identity = 448/618 (72.49%), Postives = 497/618 (80.42%), Query Frame = 0
BLAST of Tan0014920 vs. NCBI nr
Match: KAG9441611.1 (hypothetical protein H6P81_017465 [Aristolochia fimbriata]) HSP 1 Score: 664.8 bits (1714), Expect = 6.9e-187 Identity = 339/667 (50.82%), Postives = 451/667 (67.62%), Query Frame = 0
BLAST of Tan0014920 vs. NCBI nr
Match: KZM88055.1 (hypothetical protein DCAR_025130 [Daucus carota subsp. sativus]) HSP 1 Score: 664.5 bits (1713), Expect = 9.1e-187 Identity = 350/650 (53.85%), Postives = 443/650 (68.15%), Query Frame = 0
BLAST of Tan0014920 vs. NCBI nr
Match: BBG97455.1 (D-isomer specific 2-hydroxyacid dehydrogenase family protein [Prunus dulcis]) HSP 1 Score: 654.1 bits (1686), Expect = 1.2e-183 Identity = 331/537 (61.64%), Postives = 404/537 (75.23%), Query Frame = 0
BLAST of Tan0014920 vs. NCBI nr
Match: BBG97447.1 (D-isomer specific 2-hydroxyacid dehydrogenase family protein [Prunus dulcis]) HSP 1 Score: 635.6 bits (1638), Expect = 4.5e-178 Identity = 353/686 (51.46%), Postives = 450/686 (65.60%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy TrEMBL
Match: A0A164TW73 (Uncharacterized protein OS=Daucus carota subsp. sativus OX=79200 GN=DCAR_025130 PE=4 SV=1) HSP 1 Score: 664.5 bits (1713), Expect = 4.4e-187 Identity = 350/650 (53.85%), Postives = 443/650 (68.15%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy TrEMBL
Match: A0A4Y1R018 (D-isomer specific 2-hydroxyacid dehydrogenase family protein OS=Prunus dulcis OX=3755 GN=Prudu_006592 PE=4 SV=1) HSP 1 Score: 654.1 bits (1686), Expect = 5.9e-184 Identity = 331/537 (61.64%), Postives = 404/537 (75.23%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy TrEMBL
Match: A0A6N2MVQ4 (Uncharacterized protein OS=Salix viminalis OX=40686 GN=SVIM_LOCUS414217 PE=4 SV=1) HSP 1 Score: 644.8 bits (1662), Expect = 3.6e-181 Identity = 353/679 (51.99%), Postives = 447/679 (65.83%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy TrEMBL
Match: A0A4Y1R042 (D-isomer specific 2-hydroxyacid dehydrogenase family protein OS=Prunus dulcis OX=3755 GN=Prudu_006582 PE=4 SV=1) HSP 1 Score: 635.6 bits (1638), Expect = 2.2e-178 Identity = 353/686 (51.46%), Postives = 450/686 (65.60%), Query Frame = 0
BLAST of Tan0014920 vs. ExPASy TrEMBL
Match: A0A7J6FFS3 (Uncharacterized protein OS=Cannabis sativa OX=3483 GN=F8388_019410 PE=4 SV=1) HSP 1 Score: 609.8 bits (1571), Expect = 1.3e-170 Identity = 320/648 (49.38%), Postives = 426/648 (65.74%), Query Frame = 0
BLAST of Tan0014920 vs. TAIR 10
Match: AT2G45630.2 (D-isomer specific 2-hydroxyacid dehydrogenase family protein ) HSP 1 Score: 349.0 bits (894), Expect = 7.9e-96 Identity = 174/293 (59.39%), Postives = 224/293 (76.45%), Query Frame = 0
BLAST of Tan0014920 vs. TAIR 10
Match: AT1G12550.1 (D-isomer specific 2-hydroxyacid dehydrogenase family protein ) HSP 1 Score: 341.7 bits (875), Expect = 1.3e-93 Identity = 165/284 (58.10%), Postives = 217/284 (76.41%), Query Frame = 0
BLAST of Tan0014920 vs. TAIR 10
Match: AT1G79870.1 (D-isomer specific 2-hydroxyacid dehydrogenase family protein ) HSP 1 Score: 270.8 bits (691), Expect = 2.7e-72 Identity = 139/303 (45.87%), Postives = 198/303 (65.35%), Query Frame = 0
BLAST of Tan0014920 vs. TAIR 10
Match: AT1G79870.2 (D-isomer specific 2-hydroxyacid dehydrogenase family protein ) HSP 1 Score: 239.6 bits (610), Expect = 6.7e-63 Identity = 127/303 (41.91%), Postives = 184/303 (60.73%), Query Frame = 0
BLAST of Tan0014920 vs. TAIR 10
Match: AT2G45630.1 (D-isomer specific 2-hydroxyacid dehydrogenase family protein ) HSP 1 Score: 126.7 bits (317), Expect = 6.3e-29 Identity = 64/123 (52.03%), Postives = 89/123 (72.36%), 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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