Tan0019660 (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.ATGGCGATTGCGGTGGCGAAGCCTCGAGTGCTACTGTTTCCTTATCCGGCGCCGGGCCACGTGAAGCCGTTTTTATCTCTGGCGGAGCTGCTTTCCGACGCCGGCCTTGACGTCGTCATTCTCAGCACCGAACATAACCACCGCCGAATCCCCAATATTATTGAAGCATTATCCTCCAGATTCCCATCGCTTCATTTCGAAACCATATCCGATGGTCTGCCTCCCGATCAGCCACGGTCTATTGTTGATGGTCCTCTGTATTTCACCATGCGCGACGGAACTAAGCCGCGATTCCGGCAACTGGTTCAATCTTTTAACGACGGTTCTTCTGCAAATCCTCGGCCGATCACCTGCATTATCAGTGACGTAATGCTGTCTTCTCCGATTGAAGTGGCGCAAGAATTTGGGATTCCTGTAATTGCTTTCTGCCCCTGCAGTGCTCGCTACTTATCGACTCACTTTTTTATGCAAAAGCTGGTTGAAGAAGGTCAAATTCCGTACACTGGTACGACTCTTGTTCCCTTGTGATCCAATAATTCGTTCTTCTTTTTTTTTTCCTTTCTTGTTAGCTAGATTTCGAATTTTGTCGGTTTGGGCATAGTTTGAATCTGGGTCATCGTTATGGAGAAATTATTCTGAACGTTTCGTTCTAATCTCTGGCTTCAATTTGATTGGTGGATAACCTTTTTCCTTTTTCCTTTTTGGTTTTTCTGTTTTTAGTTTTTTAGTTTCAATTTTTAAAAACACAAAAGCCATTCATTTGGCGATTGTTTTTGGTTTTCAAAAAAATAGAAAACCAAGCATGTTCCTTTTAGTTTTGAGGTTGATTTTTGGTTTTTAGTTTTTGAAAACTAATTCTATAAATATTAGTTTCACCCCTAGATTTTCTTGTTTTGTCCTCTATTTTTTATATATATTTTTAAAAACTAACCTAAGTTTTGAAAACTAAAAACATAATTTTCAAAAACTTATTTTTTTTTAATTTGATTAAAAATTCAAATGATTTGTTAAGAAAAATGAAACACATGGTAGAGAATTGATGAGAAAACAATCATGATTTTCAAAAACTAAAAAACAAATAATTATCAAACAACCCAAAAAAAATTAGTACTACTAAGTACCATATTCCCTTTGTTTAACTATGTATTTTGGTTTTTTAATACAAGTAACCTCCACATAATTTTTGGTGGACCTCACATCATTTTTAAAAATATGTTGGCGTGACAAGCATTAAATAAGAGTACTATGAAAATTCTCTAAACTACGGTACTAATAAAAAATTTTCCAAATGAATCTTATTAATAGTTTTTGCTTTTCTATTTTATTTTAAAAAATTGAAATAAAAAAAAATCCTGTGACAGTTTGATACTGGGTAATACTCTTTTTTTTGTTCTAAGTTTTGAGTGTAGTTTACATTTGGTCTCTAAATTTCGAAATGTTACGTTTTACCTTGAGTTTTGAGTTAGTTTTAAACAAGTATAACGTGACATTTTTATTTAATTTTAAGGCAAAAATTATTTGTACTCCTAAACTTTTGAGATTGTATTTATTAAAACCCTAAGACCCTTCTGATAACTATTTTATTTTTTATTTTTTATTTTTGAAAATTAAGCATATAAATACTACTTTCATCTATGAGTTTCCTTGTTTTGTTATCTACTTTTATGTATGTTTTCAAAAACCAAGTTAAGTTTTTTAAAACTACTTTATTTAGTTTTCAAAAAACTAAATAAATATTGTAAATATTACACATAATAGATGCCCATGCAATGTGCCCTTCAATACTCATGCCAAATGGCAAAGCCTCCATAGCCATAGTGTCGTCCATGTGTCCATCTCTTACCAATGCTTGGTGTCCAATTGTACCAACACACCTTTTCCAAATTGCCTATAAATAGTGGCTTTTGGTGGAAAAATAAAGTTGGTGAAATTCTCTCCAATTCTCTTCATTCTCTCCCACTTTCTCTTTTTAGTCTTTATTTAATTTTCCATAAATTTCCACTATCTCTTTATTTATATTATATATATTGCCCCCACTTTCCAAACACTTATTTTAATATTATTATTATTATTATATTATTCTTATTATATTATTATTATAAATATATTATTATATTAGTATTCTAATATTGGTAAAAATTATACCCTTTTCATCCTATTTTTACAACACGTTATCGCATCGAAGCTCTGCGATTTTTCCACTCAAGGTAGGTCCTCCTGATAAGCCATTTTTTTAATAATTAAATGTTATTTTGCATGTTTAATTAATTTCCTAATGTAAATGCAATTTCTTTGTATATAGTATTACTATGGCAAATCTTGCAAAACTAGAATTTGCGACCACGGATATTAATGGAAATAACTACTTGTCATGGGTCCTTGATCGTTTGAGATCCATTTAGACTCCATGAATCTTGGAGAAACAATTAAAGAAGGAAATGATGCATCAAATCAAAAAAAAAAAGCCAAAGTTATGATCTTCCTTCGCCATCATCTTCACGAGGATTGAAAATGGAGTATCTTACAATAAAAGATCCCTACATTCTATGGCAAGGCTTGAAAGAAAGGTATGATCATCAAAAAAACGATTTATTCTTCCAAAAGCTCGTTATGATTGGATGCACTGAGGTTGCGGGACTTCAAATCGATAAGTGAATATAATTCCGCACTTTTGCATTAGTTCAAAACTAAAATTATGCGGAGAAAAAATTACGATGTTGATATGTTAGAGAAGACATTCTCCACTTTTCATGTCTCGAATATGCTCCTCAGCAGCAGTGAATATCGAGAGAAAGGCTTTAAAAATATTCCTAACTAATTTCATGTCTTCTCGTAATTTGAACAAAATAACGAGCTATTAATGAAAAATCATGAATCTCGACCAATCGAGCAACACCATTCCCCGGCGAATGCTTTGTGAATTTCAATAATCGTGGTCGAGGTCGTGTCGTCGTGGTCGCAGGTCGAGACCGCGGTAGAGGAAGAAATACCTATTTTCGTGGTGGGCATTATAATTTTAAGAAACCCACACGAACTGATGATCATAAAGGAAAAGCTCCACAAGATAAAAGTTCAAAAGGTGATGAACATAAATGTTTCCGGTGCGGAATGAGTGGGCATTGGTCACGTACCTGTCGTACGTCAAAACACCTTGTTGATCTCTATCAAGCTTCCCTAAAGAAAAAAGGAAAAGGGAAGAATGTGGAGGTGAATCTTGCCATTTAAGAAGATGATGTGTTCGATCCCTCCAATATGGTGCATCTTGATGTGGCTGATTATTTTGAATCTCCTGGAGAGAAAATTGATGCGATCAAGCAAGTAGAGGATGTTTTGTATGAAGATATATAATTAAGTACTGTTTGTAATTATAATATGTTTTTCTTGTCTTTGTATATATATTTAGGACTCTTTGTAATCGCTTTTCTTTTCTTATCAATGAAGAAATATGGACAATTTCAATATGTTGAGTAACCCGAAAATGAGCAATGAGGATTTATGTCTAGCAGACTGCGCAACTACGCACACGATACTCATAAACAAAAAATATTTTTCTAAATTGACAATGTTGGAAGCAAAAATCAATACTATATCAGGTTCTGCAGACCTGATTGAAGGTTTTGGAAAAGCAAGTTTTATCTTGCCTAAAGGAACAAAATTTTCAATTAATAACGCTTTGTTCTCTAGCAAATCAAAAAGAAATCTATTGAGTTTCAAAGATATACGTAATAATGGTTATCATGTTGAAACAGATCGTAAAAATAATATAGAGTATCTCTATATCACATCTATTGTTTCACATGAAAATGTATATTGGAAACATCGCCAATTTTTCTTCTGGATTATATTATACTCATATACGAGTAATCGAAAGTTATGCAACAATGAACCAGAAGTTCATGAATCCAGAAATATTCAGTGTTTGGCATGATCGACTGGGTCATCCAGGATCGATAATGATGAGAAAAATTATTGAGAATTCACATGGACATCCTTTAAAGAACCAGAAGATTCTTCAATCAAATGAGTTGTCATGTGATGCTTGCTCTCTAGGAAAATTAATTATTAGACCATCACCAGCTAAAGTAGAGATTGAATCGCCTACATTTTTAGAGCGAATTCAAGGTGATATTTGTGGACCTATTAACCCACCAAGTGGTCCATTTAGATATTTTATGGTATTAATTGACGCATCCAGCAGATGGTCACATGTATGCTTATTATCAAGTCGAAATCTTGCATTTGCAAGATTACTTGCTCAAATAATTAAGTTAAGAGCACAATTTCCTAATTATACAATTAAGACAATTAGACTTGATGATGCTGGTAAATTTACATCCCAAACTTTTAATAATTATTGTATGTCAATTGGGATAAATGTTGAACATCCTGTAGCTCATGTTCATACACAAAATGGTCTAGCAGAATCATTTATAAAACGTATGCAATTAATTGCAAGACCATTACTTATGAGAGCTAAACTCCTACATCGATGCCCTGGGTCATGCTATTTTACACGCCGCATCATTATTACGTATTAGGCCAGTAGCCTATAATAAATATTCCCCATGCAATTAGCTTATGGCCAGCAGGCCAAATGTATCCCATCTGAGAATTTTTGGATGTGCAGTATATGTTCCAATTGCTCCACCACAACGTACTAAGATGGGTCCTCAAAGGAGGTTAGGAATATATGTTGGATATGATTCCCCATCAATTATTAAATATCTTGAACTCCACGACGGGTGATGTATTTATCGCACGATTTCTTTCGATTGTCATTTTAATGAAACAATTTTTTCAACATTAGGGGAGGAATTAAGAAGTTGGAAAAAGAAATTACGTGGAATGCATCATTATTATCTCATTTAGATCCTCAAGAGAGATCGATGTGAACTTGAAGTTCAAAGATAATTCATTTGCAAAATATAGCAAATCAATTACCGATGCATTCACGCATGCTAAAAGGGTGACTAAATCATATATACCAAAGAAGAAATGCTCCATCAAAAATTGATATTCCACGAGAACAAGTTGTCAATAATGAGTCCGGAGCACGCCAAAAGCGTGGTAGACCAATGGGTTCCAAAGATAAAAATCCTCGAAAAGAAAAGTAGTTGAGAATCAAAATGATTCGATAAAAGGTATAGATGTTCCGAGAAGAAATCCAAGATACAACTACTCAAAAGAGTATTGATGAAAATCAAACGCTTGAGGATAATAATGAAATTTCTATAAACTATGTTACAACAGAAAGAGATGGAACCGAAATGATATTATTGTTGACAACATTTTTGCTTATAATGTTGCCTACGATATTATTCATGAAAGTGACGATTTTGATCCAAAATCTATCGATGAATGTAAACGTAGAAAGGATTGGTTGAAGTGGAAAAGCAATCCAAGCGAGTTGAACTCACTTTCAAAACGTGAGGTTTTTGGACTGATAGTCCTAACACCGAGAAGGTGTTAAACTCATGGGATACAAATGGGTATTTGTAAGGAAAAGAAATGAAAAGAATGAAGTCACAAGATATAAAGCGAGACTTGTTGCACAAGGATTCTCGCAAAGCACCGTATAGATTATGAGGAGACATATTCTCCGTGGTGGATGCAATAACATTAAGATATTTGATTGGCTTTGTCAGATATGAAAAAACTTGATATGCATCTAATGGATGTAATCACGCGCGTATTTATATGGATCTCTGGATAATGACATTTATATGAAAATCCGGAAGGATTTAAAATACCGTAAACATATGAATCAAGTTCTCGGAATTGTATTCAATAAAGTTCTGAGAGATCATTATATGGATTAAAACAATCGGGACGAATGTGGTATAATCGCCTTGAGTGAATATCTGTTGAAAGAAGGATATCAAAATAATCCAATATGTCCGTGTGTTTTTATAAAGAAATCTCGATCGAGATTTGCTATTATAATCAGATATGTTGATGACTTAAATATAATTGGAACTCTGAAGAGTTATCCAAGGCAATAGAATATCTTAAGAAAGAATTCAAATGAAAGATCTTGGAAAAACAAAATTTTGCCTTGGTTTGCAAATTGAACATTTAGCGATGGGATATTTGTTCATCAATCAACTTATACTGAGAAAATCTTAAAAAGATTTTATATGGATAAAGCACATCCATTGAACATTCCAATGGAAGTTCGTTCACTAGATGTAAAGAAAGATATATTTCGACCTCTCGAGATGATAATGAAGAACTTCTTGGTCCCGAAGTACCATATCTTAGTGCAATTGGTGCACTTATGTATCTAACTAATAACACAAGACCAGGATATTGCATTTTCATGAAATTTATTAGCTAGATATAGTTCATGTCCTACAAAAGACATTGGAGCGGAGTTAAGCATGTACTCAGATATCTTGAGGGACGATTGATATGGGTTTATTTTATTCTAACAAATCTAGTTTTGATCTAGTTGGTTATGCAGATTCTGTTTATCTATCCGATCCACACAAAGCTAGATCTCGAGATGAGTTATCTATTTACATGTGGAGGAACAGCTATATCATGGCGATCGATGAAATGCAGACCATCACGGCCACTTCTTCGAATCATGCGAAATTCTCGCAATTCACGAAAACAAGTCGAGAATGTGTATGGCTAAGATCAATGACACAACACATTCGTGAGAGACATGTGGCTTGTCTTCGAGCAAACCCCTTCCAACAATATTATACCAAGACAACACAACATGTATAGCTCAAGTCAAAGGAGGATATATCAAATGAGATAGAACGAAGCATATCTCTCCAATGCTTTTCTACACTCATGACCTTGAAGAAAATGGCGAGATCTCAGTACAACAGATTTGTTCGAAGGATAACTTGGCAGACATATTTACAAAAGCATTACCAACTACAACATTTAAGAAATTGGTTCACGATGTGTTGGGATGCGAAGACTCGGAGATCTCAAGTGATGTCGTCATGAGGGAGTAAATGTATTATATAAAATATGTACTCTTTTTTCCTTCACTAGGGTTTTTATCCCATTGGGTTTTTCCCTAGTAAGGTTTTAACGAGACATATTTTATATAAATGGGCATCTAAGGGGGAGTATTGTAAATATTACACATAATAGATGCCCATGCAATGTGCCCTTCAATACTCATGCCAAATGGCAAAGCCTCCATAGCCATAGTGTCCTCCATGTGTCCATCTCTTACCAATGCTTGGTGTCCAATTGTACCAACACACCCTTTCCAAATTGCCTATAAATAGTGGCTTTTGGTGGAAAAATAAAGAACATCCATTGGTGAAATTCTCTCCAATTCTCTTCATTCTCTCCCACTTTCTCTTTTTAGTCTTTATTTAATTTTCCATAAATTTCCACTATCTCTTTATTTATATTATATATATTGCCCCCACTTTCCAAACACTTATTTTAATATTATTATTATTATTATATTATTCTTATTATATTATTATTATAAATATATTATTATATTAGTATTCTAATATTGGTAAAATTATACCCGGTTTTCATCCTATTTTTACAACAATAAATAGTTAATTTAGTTTTTTGAAAACTAAATAAACTAGTTTTCAAATACTTATTTTTGTTTAAAATTTGGTTGAGAATTCAAATGTTTTCTCAATAAAGATGAAAATCATAGTATAAAAATTATGAAAAAACAAGCACAGTTTTCAAAAATAAAAATCAATAATCAAATGGTTATCAAACTGGACTTTTTAATTCTATCAATTTAAACATCAAACTTTGACAATTGTCAATTTATATTTATGTTATATTCTGTTTGAAAAATATTAGTTCACACGTGCAAACTTATAATTGTATCAATTAAACTCTTGTACTTTCATGTCAAACTAAGTCTAGCTCAACTAGCATAAAACATGTTTAGAAATGTCCCACGAGACGGGCAGGGACAGAAATGGCTTTTCTGCCCCCAACTCCACCCTCATATGAATACCCATCCCTCGAATTTTTTTGTTAAATTTTGCTGGGATTAGGGTAGAGATTCTCCGCCAAGAATTCGTGGGGATTGGCTTCTCTGCAGAGAATTATTTATCGTTTAGTTTTTTTCTTCTTTTTTTAACCATCAAACAATTTTGTTGATAAACTTTCCAATAGTTAACTTCCATGGAAAATATATATTAATTTTCAATTACATTGTTAATTGTTCACCAAAAATCTTCATTTAAATAGTTAATATTCTATAAAAAAAATCATTTAAAGAAAAAATTCTTGAACCTACTAATAAAAACAAAACAATCTTACATATCAAATTATCCAATTAATTCATACATATAATTCAAATGTTTAACAATATAATTCTAGCATATCCAATTATCTAAATCATTAACAATAAAATTTTAAAGGGCATATATACATATATATAACTATACATATTACATATATATATATATTAAAAATAAATTAAAAATATATAAGAAAATTAAATGGGGCGGGGAATGAGGAATACATTCTCCATCATGGGAGATTTTTTTCTCCACTGCCTCTCCCATATTGTCCACCTAAATAGGGGATTCCTCACCCTGTTAAGGTGGATCACACCTAAATGGAAATTTTCTGCTCCATTAAGGTGGGGCCTATCTCCCCGCAAAAAATAGACATCTCTAAGGGTTGTTTGGGGCGCTAAGTGGGTTATAATAACAGGGGATTATAATAGTTTGTGGGTTATTATAGTATGTGAAACATATAATATTATTTAAAATGCAGAGTAGTATAGTCTAGGGTTATAATAGTCTGTGTTTGGGGTGCTGAGTATTTCACAGGTTATTAATATGAGTTATAATAATCAGTGGGCCAAACAGCCCCTGAGTGTATCTTTAAATTAAGATGTCTGAGGCGGGAGTCCCTCCACCCTCACATTTATTCTTGGAAAAAAAAATACCTCTCTTGCACTTTCATAAATTCTTCAATTTACACACGTGTAGACTTTTAAATTAGGGATAATGTAATGGATAGCAAAATATGAGTTTTTATTTGCAAATATAGCAAGTCTTTTTAAAAAAATTACAAATATAGCAAATATTTTAAATAATATTTTTAATTTCTATTTTACCCTTGATTGAAGCCCGATAAACTTTTATCATTATTCATAATCTATCGGTGATAGACTTTTATCCCTGATAGACTCTTATCACAGTTAAAACTCTATTAGTCATTCCTAAATAGACATTTATCACAATTAGGAGTTGTTGGTGATAGACTTTTATCATTAATATATTCTTATCACAGTTAGAAGTTTATGAGTGATTGAATGTGGTATAATGCAATTTTGAAGCTTGGAGTAGTCTGATAGACTTTTACTAAAGAAATGCTCTCTCAGTCTCATCACACAGTGATCTCGCGTCTGGTATTTATAAATTCAAAACCGTTTTTAAAATTTCAAAAACAAAAGATTGAATTTATTAGCTCTCGTATGATAATATTTTAGGTCCCGTTTTATAACCATTTAATTTTTTATTTTTTATTTTTAAAAATTAAGCCTATAAATATTACTTCCACCCATGGATTATTATGTTTTCTTATCTACTTTTTAGATGTGTTTTAAAAAATCAAGTCAAGTTTTGAAAACTAAAAAATAGTAGTTTTCAAAAACTTGTTTTTGTTTTTTAAATTTAGCTAAAAATTCAAGTATTTTCTTAAAAAAGATGAAAACCATTGTAGGGAAGATGAAAATCATTGTAGAGAAATGGTAAGAAAACAAGTACAATTTTGAAAAAAAAAATCAAAAGGTTATCAAATGAAGCCTTAGTTTTTAGTTTTTGAAAATTCTACTTGTTTTCTCACCATTTCTCTACAATCACTCTCATCTGTCTTAAAAAAAAAAACATATCAATTCTTAGCCAAAATCTATAAAAAAAAAAAATTAAAACTAATTTTTAAGCCTTCATCTGATAACATGGTTTTTTAAAATCAAGCTTATAAATATTACTTCTACCTCTAAATTTTCTTGTTTTGTTGTCTACTTTTTACATATGTTTTTAGAAAGCCAAGTCATGCTTTGAAAAACTAAAAAAAGTAGTTTTCAAAAAGTACTTTTGTTTTCGTAATTTCACTAAAAATTCAAATGCTTCTGTAAGAGAAATGGAAACCATCTTAGAGAATTTGGGAGAAAACAAGCTTAATTTTCAAAAATCAAATGGTTAGCAAATGGGTCTTAATTTGAATTTTGAAATCATAGGTAAAAAGTAGACAATAAAATAAAATAAATCGATAGATGTAAGTAGTGTTTCTAAGTTTAATTTTTATCCTTAGCAAATGAGCCTATTTATTAAGAATTAAAAAAAAAATAGAAAACCAATTGGTTATCAAATGATTCTTTAGTGTTAACATTTTTAATTTCTATTAAAAAAATAATTTATACATATAAATTTTAAGTTTCTATTCTATCCATTAAAATTTTAAACTAATAAATGTATCAATTTAAACTCTAAGTTTTCCTGATTGAATCAATTAAAATAATATATTATTGATTTATAACTATTTTCACTGAGTTCCATTTCAAATCATCTCAAATTCGCCAAAATAAAATTATCCTCCTCCCATAATTTTATTTAAATAGCACGAAAAAATATCACTTAATTTGTCCTAAATTAAGGGAAGAAAATAGAGGAAGATGAGAAGATGAAAAACTACTCATATTAATGAAAAGTTGTTACTCATAGAAATGATTCCAACATTTCTCTCTAATATTACGTTAATTTTTTTTTAGTTCAACGATGGAAGATTTAAACATCTGACCTTTTAGTCAAGAGCATATACCTCAACAAATTGAGCTATGCTCAGTAGCTCAGGCTGGCTATATTGTGTTAAATACTATATTTAAAAAAGTCTTATATACACATGTGAAATGTAGGTTTTAAAATGGATTCCTAACATAATGGTCTAAATTGATTCACTCATAGATACAAATTATTAGTTTAAGATTTTAATTGATACAAGTCTCAAAACTTAAGATATAAATTGACTTTGTTCCTCATTAATACTATTATTAGTATTATTATTATTGAGTTCTCATTTTCTTTTATTGAGTTCTAATTTTTTTTTTTTTTTTTGTAATTTATAAAATATATATATGGGTTTAGATGACAATCCTGTTGGAGAGATCCAGGGGCTACCTCTGAAATCACTTGCCGGGTTCTTGGTGTCATAAATCTTCAGATATATCTTTCTTCCACTCCATGATTAATCAGACTCTTGCAGCTGTTCGAACATCTACTCTTATACTCAACACCTTCCACGAACTGGAAGCCCCATTTCTGAGCCATCTCTCTTCCATTTTCAACAAAATCTACACCATTGGACCCCTCCATGCTCTGTCCAAATCAAGGCTAGGAAATTCCTCGTCCTCTCCTTCGGCCCTCGCCGAATTTTGGAAAGAGGATGAAGCCTGCATGTCCTGGCTCGACTCACAACCATCAGGATCGGTGATTTTCGTCAGTGTTGGAAGTACAATGAAAATGGAAGCCAGTAAATTAACAGAGTTTTGGCATGGTTTGGTGAACAGCGACAAACGCTTCCTCTGCGTGTTGAGATCCGACGTTGTTTTCGGTGGAGAATCGGGAAGGAGGGAAGAACAGGGGAATTGTAGTGGAGTGGGCAGCACAAGAGATAGAGAAGGTTTTGGCCCACCCTGCAGTTGGTGGGTTTTTGACGCATTGTGGCTGGAATTCGACGCTGGAAAGTATTGTGGCCAGAGTTCCGATGATTTGTTGGCCATTTCTTGGGGATCAACCCAGTAATGGAACTTGGATTGACAAAGTGTGGAAAGTTGGGATTCAAAAGAATGAGAAATGGGACAAGTCCACGGTGGAGATGATGGTCAGAGAATTGATGGATGGCCAAAAGGGAGTGGAAATCCAAAGATCAATGGAGAAGCTTTCAAAATTGGCAAATGAAAACGTTCTTAAAGGTGGGTTGTCTTTTGATAACTTGGAAATTCTCATAGAAGACATCAAAAATTTGAAACCATAG ATGGCGATTGCGGTGGCGAAGCCTCGAGTGCTACTGTTTCCTTATCCGGCGCCGGGCCACGTGAAGCCGTTTTTATCTCTGGCGGAGCTGCTTTCCGACGCCGGCCTTGACGTCGTCATTCTCAGCACCGAACATAACCACCGCCGAATCCCCAATATTATTGAAGCATTATCCTCCAGATTCCCATCGCTTCATTTCGAAACCATATCCGATGGTCTGCCTCCCGATCAGCCACGGTCTATTGTTGATGGTCCTCTGTATTTCACCATGCGCGACGGAACTAAGCCGCGATTCCGGCAACTGGTTCAATCTTTTAACGACGGTTCTTCTGCAAATCCTCGGCCGATCACCTGCATTATCAGTGACGTAATGCTGTCTTCTCCGATTGAAGTGGCGCAAGAATTTGGGATTCCTGTAATTGCTTTCTGCCCCTGCAGTGCTCGCTACTTATCGACTCACTTTTTTATGCAAAAGCTGGTTGAAGAAGGTCAAATTCCGTACACTGATATATCTTTCTTCCACTCCATGATTAATCAGACTCTTGCAGCTGTTCGAACATCTACTCTTATACTCAACACCTTCCACGAACTGGAAGCCCCATTTCTGAGCCATCTCTCTTCCATTTTCAACAAAATCTACACCATTGGACCCCTCCATGCTCTGTCCAAATCAAGGCTAGGAAATTCCTCGTCCTCTCCTTCGGCCCTCGCCGAATTTTGGAAAGAGGATGAAGCCTGCATGTCCTGGCTCGACTCACAACCATCAGGATCGGTGATTTTCGTCAGTGTTGGAAGTACAATGAAAATGGAAGCCAGTAAATTAACAGAGTTTTGGCATGGTTTGGTGAACAGCGACAAACGCTTCCTCTGCGTGTTGAGATCCGACAACAGGGGAATTGTAGTGGAGTGGGCAGCACAAGAGATAGAGAAGGTTTTGGCCCACCCTGCAGTTGGTGGGTTTTTGACGCATTGTGGCTGGAATTCGACGCTGGAAAGTATTGTGGCCAGAGTTCCGATGATTTGTTGGCCATTTCTTGGGGATCAACCCAGTAATGGAACTTGGATTGACAAAGTGTGGAAAGTTGGGATTCAAAAGAATGAGAAATGGGACAAGTCCACGGTGGAGATGATGGTCAGAGAATTGATGGATGGCCAAAAGGGAGTGGAAATCCAAAGATCAATGGAGAAGCTTTCAAAATTGGCAAATGAAAACGTTCTTAAAGGTGGGTTGTCTTTTGATAACTTGGAAATTCTCATAGAAGACATCAAAAATTTGAAACCATAG ATGGCGATTGCGGTGGCGAAGCCTCGAGTGCTACTGTTTCCTTATCCGGCGCCGGGCCACGTGAAGCCGTTTTTATCTCTGGCGGAGCTGCTTTCCGACGCCGGCCTTGACGTCGTCATTCTCAGCACCGAACATAACCACCGCCGAATCCCCAATATTATTGAAGCATTATCCTCCAGATTCCCATCGCTTCATTTCGAAACCATATCCGATGGTCTGCCTCCCGATCAGCCACGGTCTATTGTTGATGGTCCTCTGTATTTCACCATGCGCGACGGAACTAAGCCGCGATTCCGGCAACTGGTTCAATCTTTTAACGACGGTTCTTCTGCAAATCCTCGGCCGATCACCTGCATTATCAGTGACGTAATGCTGTCTTCTCCGATTGAAGTGGCGCAAGAATTTGGGATTCCTGTAATTGCTTTCTGCCCCTGCAGTGCTCGCTACTTATCGACTCACTTTTTTATGCAAAAGCTGGTTGAAGAAGGTCAAATTCCGTACACTGATATATCTTTCTTCCACTCCATGATTAATCAGACTCTTGCAGCTGTTCGAACATCTACTCTTATACTCAACACCTTCCACGAACTGGAAGCCCCATTTCTGAGCCATCTCTCTTCCATTTTCAACAAAATCTACACCATTGGACCCCTCCATGCTCTGTCCAAATCAAGGCTAGGAAATTCCTCGTCCTCTCCTTCGGCCCTCGCCGAATTTTGGAAAGAGGATGAAGCCTGCATGTCCTGGCTCGACTCACAACCATCAGGATCGGTGATTTTCGTCAGTGTTGGAAGTACAATGAAAATGGAAGCCAGTAAATTAACAGAGTTTTGGCATGGTTTGGTGAACAGCGACAAACGCTTCCTCTGCGTGTTGAGATCCGACAACAGGGGAATTGTAGTGGAGTGGGCAGCACAAGAGATAGAGAAGGTTTTGGCCCACCCTGCAGTTGGTGGGTTTTTGACGCATTGTGGCTGGAATTCGACGCTGGAAAGTATTGTGGCCAGAGTTCCGATGATTTGTTGGCCATTTCTTGGGGATCAACCCAGTAATGGAACTTGGATTGACAAAGTGTGGAAAGTTGGGATTCAAAAGAATGAGAAATGGGACAAGTCCACGGTGGAGATGATGGTCAGAGAATTGATGGATGGCCAAAAGGGAGTGGAAATCCAAAGATCAATGGAGAAGCTTTCAAAATTGGCAAATGAAAACGTTCTTAAAGGTGGGTTGTCTTTTGATAACTTGGAAATTCTCATAGAAGACATCAAAAATTTGAAACCATAG MAIAVAKPRVLLFPYPAPGHVKPFLSLAELLSDAGLDVVILSTEHNHRRIPNIIEALSSRFPSLHFETISDGLPPDQPRSIVDGPLYFTMRDGTKPRFRQLVQSFNDGSSANPRPITCIISDVMLSSPIEVAQEFGIPVIAFCPCSARYLSTHFFMQKLVEEGQIPYTDISFFHSMINQTLAAVRTSTLILNTFHELEAPFLSHLSSIFNKIYTIGPLHALSKSRLGNSSSSPSALAEFWKEDEACMSWLDSQPSGSVIFVSVGSTMKMEASKLTEFWHGLVNSDKRFLCVLRSDNRGIVVEWAAQEIEKVLAHPAVGGFLTHCGWNSTLESIVARVPMICWPFLGDQPSNGTWIDKVWKVGIQKNEKWDKSTVEMMVRELMDGQKGVEIQRSMEKLSKLANENVLKGGLSFDNLEILIEDIKNLKP Homology
BLAST of Tan0019660 vs. ExPASy Swiss-Prot
Match: U5NH37 (7-deoxyloganetic acid glucosyl transferase OS=Catharanthus roseus OX=4058 GN=7DLGT PE=1 SV=1) HSP 1 Score: 314.3 bits (804), Expect = 2.1e-84 Identity = 189/476 (39.71%), Postives = 264/476 (55.46%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy Swiss-Prot
Match: U3U992 (7-deoxyloganetic acid glucosyltransferase OS=Catharanthus roseus OX=4058 GN=UGT709C2 PE=1 SV=1) HSP 1 Score: 314.3 bits (804), Expect = 2.1e-84 Identity = 189/476 (39.71%), Postives = 264/476 (55.46%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy Swiss-Prot
Match: A0A2Z5CV93 (Myricetin 3-O-rhamnoside 1,2-glucosyltransferase UGT709G2 OS=Crocosmia x crocosmiiflora OX=1053288 GN=UGT709G2 PE=1 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 1.8e-72 Identity = 171/478 (35.77%), Postives = 253/478 (52.93%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy Swiss-Prot
Match: Q9LME8 (UDP-glycosyltransferase 85A7 OS=Arabidopsis thaliana OX=3702 GN=UGT85A7 PE=2 SV=1) HSP 1 Score: 271.2 bits (692), Expect = 2.0e-71 Identity = 164/479 (34.24%), Postives = 239/479 (49.90%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy Swiss-Prot
Match: F8WLS6 (7-deoxyloganetin glucosyltransferase OS=Catharanthus roseus OX=4058 GN=UGT85A23 PE=1 SV=1) HSP 1 Score: 266.5 bits (680), Expect = 5.0e-70 Identity = 160/476 (33.61%), Postives = 241/476 (50.63%), Query Frame = 0
BLAST of Tan0019660 vs. NCBI nr
Match: XP_022151546.1 (7-deoxyloganetic acid glucosyltransferase-like [Momordica charantia]) HSP 1 Score: 605.5 bits (1560), Expect = 3.5e-169 Identity = 314/469 (66.95%), Postives = 358/469 (76.33%), Query Frame = 0
BLAST of Tan0019660 vs. NCBI nr
Match: XP_022151474.1 (7-deoxyloganetic acid glucosyltransferase-like [Momordica charantia]) HSP 1 Score: 587.8 bits (1514), Expect = 7.5e-164 Identity = 301/477 (63.10%), Postives = 350/477 (73.38%), Query Frame = 0
BLAST of Tan0019660 vs. NCBI nr
Match: QWT69383.1 (7-deoxyloganetic acid glucosyltransferase [Gynostemma pentaphyllum]) HSP 1 Score: 490.7 bits (1262), Expect = 1.3e-134 Identity = 263/476 (55.25%), Postives = 329/476 (69.12%), Query Frame = 0
BLAST of Tan0019660 vs. NCBI nr
Match: XP_038883479.1 (7-deoxyloganetic acid glucosyltransferase-like [Benincasa hispida]) HSP 1 Score: 423.7 bits (1088), Expect = 1.9e-114 Identity = 224/477 (46.96%), Postives = 311/477 (65.20%), Query Frame = 0
BLAST of Tan0019660 vs. NCBI nr
Match: XP_022978164.1 (7-deoxyloganetic acid glucosyltransferase-like [Cucurbita maxima]) HSP 1 Score: 418.3 bits (1074), Expect = 7.9e-113 Identity = 221/462 (47.84%), Postives = 302/462 (65.37%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy TrEMBL
Match: A0A6J1DEZ9 (Glycosyltransferase OS=Momordica charantia OX=3673 GN=LOC111019460 PE=3 SV=1) HSP 1 Score: 605.5 bits (1560), Expect = 1.7e-169 Identity = 314/469 (66.95%), Postives = 358/469 (76.33%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy TrEMBL
Match: A0A6J1DD71 (7-deoxyloganetic acid glucosyltransferase-like OS=Momordica charantia OX=3673 GN=LOC111019406 PE=4 SV=1) HSP 1 Score: 587.8 bits (1514), Expect = 3.6e-164 Identity = 301/477 (63.10%), Postives = 350/477 (73.38%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy TrEMBL
Match: A0A6J1ITC7 (Glycosyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111478228 PE=3 SV=1) HSP 1 Score: 418.3 bits (1074), Expect = 3.8e-113 Identity = 221/462 (47.84%), Postives = 302/462 (65.37%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy TrEMBL
Match: A0A6J1DDA8 (Glycosyltransferase OS=Momordica charantia OX=3673 GN=LOC111019440 PE=3 SV=1) HSP 1 Score: 416.0 bits (1068), Expect = 1.9e-112 Identity = 226/478 (47.28%), Postives = 302/478 (63.18%), Query Frame = 0
BLAST of Tan0019660 vs. ExPASy TrEMBL
Match: A0A0A0KZS4 (Glycosyltransferase OS=Cucumis sativus OX=3659 GN=Csa_4G303180 PE=3 SV=1) HSP 1 Score: 411.4 bits (1056), Expect = 4.7e-111 Identity = 217/476 (45.59%), Postives = 304/476 (63.87%), Query Frame = 0
BLAST of Tan0019660 vs. TAIR 10
Match: AT1G22340.1 (UDP-glucosyl transferase 85A7 ) HSP 1 Score: 271.2 bits (692), Expect = 1.5e-72 Identity = 164/479 (34.24%), Postives = 239/479 (49.90%), Query Frame = 0
BLAST of Tan0019660 vs. TAIR 10
Match: AT1G22360.1 (UDP-glucosyl transferase 85A2 ) HSP 1 Score: 261.9 bits (668), Expect = 8.8e-70 Identity = 159/479 (33.19%), Postives = 239/479 (49.90%), Query Frame = 0
BLAST of Tan0019660 vs. TAIR 10
Match: AT1G22370.2 (UDP-glucosyl transferase 85A5 ) HSP 1 Score: 261.5 bits (667), Expect = 1.2e-69 Identity = 156/454 (34.36%), Postives = 231/454 (50.88%), Query Frame = 0
BLAST of Tan0019660 vs. TAIR 10
Match: AT1G22400.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 259.6 bits (662), Expect = 4.4e-69 Identity = 163/479 (34.03%), Postives = 236/479 (49.27%), Query Frame = 0
BLAST of Tan0019660 vs. TAIR 10
Match: AT1G78270.1 (UDP-glucosyl transferase 85A4 ) HSP 1 Score: 258.5 bits (659), Expect = 9.7e-69 Identity = 165/483 (34.16%), Postives = 244/483 (50.52%), 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.
|