
Tan0012430 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CCAGTGTGTGTTGTTTGTCTGTACAATGCAATGCACATCCATAACGAATTTCAATCTCATCCAAAATCAAACTTCAATTTCACGACTGGAATGCTTGAAAAAGAAGATCAGTCTGCAAGAAATTGATAAGAGCTCATTTTCGTTCACAAAGGGTAGATCGAAGCGTCGAAATAACTGACAATGAGGCCTGAGATCGTTCTATTTGGAGATTCTTTGACTGCACAATCCTTCGGTTCAGGTGGATGGGGAGCTGCTCTTGCTGACAATTACTCTCGCAAGGTGGCTTTTCTTTTCTTTTCTTCCTTTCATTTGTATTTTCATTCAAGTGTTTGAATATTTTGTGTTGGTAATTTGGTATCGACAGGCCGATGTTCTAGTTCGTGGCTATGGCGGATACAATACTCGATGGGCTTTGTTTTTACTTCATCACATTTTCCCATTGGTATGTGCTAAAGTGTTCTTTCTGTTCTTTGCCTACTTTGATTTTGATGACTTCGTTTTTACTTGAATTTGAATCTCAATTCTCCAAGTCCAATGTGGGGATCCGATCATCTACTTTCATTATGCGCGGTAAGTGGGATCTTGGTTATTATTGTCATTATCGTACTTCTTAGACTTTTTTGAAATGTAACTTATCATCGTAGTTATGTTGGAGGATATGTATCCATTTCTGATCCTTACAATTGATTTCAGCTTCGTTGAGGAAAGTGGGAAAGTTTTGGCCAATGGGCCTAGACTTGTAGCTAGATCATACAATGAACTCAAAGATGTAATTGAACTACAAAAACTACTCATTTTTTTAAGGATTCTGGACTATTGATGTACCATTTAGTTAATGTTGTTGTATACTAAATGTTTGGGAGTCTAAATACGTACTTGCACCGATATTGCCCAAAATTCGTGTGTGAAATAGTCGATTATAGTCTAAAAGGTACGGGAGCTGGCTTTTCTTGAGCATTATATTATTTTTCCCCTAGATACATTAGTTGCAAGGTTTAGTAACCCAAAATTGGCATGGCTTTTCCAAAAAGCCTCATCGAAGCTCACGAGGCATCCCTCTCGCAGTTGGGGTTTCTGACCTTGCCTCATTCCAAAGTTTTTGTGTTTCCTGCCCCTCTGAGACCTTAAAGAATGAACTACTTTTCTTTAGAAGGATTATAGTCGAAATTTTGCTAGTATACAGTAGATATTCTTTGTACTGGCTTACTTAAGTCATGGGTAGAAATATCTTTGTAGGCTTCTGAAAATGATGTCTCATGTATATTCTGCATTCTAAGTAAGTAATATCACTTGTACTGCAGGATATTCCTAAGGCCCCCATTGTCGTGACAATTTTCTTTGGGGCCAATGATGCAGCTATTTTGGGGAGAACAAGTGAGAGACAACATGTACCTCTTGAAGAGTTTAAGGATAATCTTAAAAAAATGGTAAATCATTTGAAGGTACTGACTCCTTCCTTCATTCCTTGAAATCTTTTCCTCAACACGTAACATTAGAATGATCTGTGATTCATTTTGAAGATTTAAATGAGTACAATACATTAGTCCATGTCTTCTTTATTCTCTCTCTTTATAAGTTCCCAATTGAGAAGGTAGTTGCCTCAGGAAGAGAGGGGTTAAAAAAAAAAACAGGTACTGGAAATGCTTCAATGGACACCCATAGTTTCTTTTAATTTGTTGGACCACTAATTTGGTGGTTTTTGATAATTGCTAATGAAATTGTTGAAGATTGGTGGATTGGAGAGAGCCACCCTCAACTGTCTGATAATACATATTTTGTGTAGACAAGAAGAATGAGATCGATAATACTCTTAAAACCATATATACATAGATATTTCTTTTCAGTTTTAGCGTGAATTGAAGACTGAACTAAATATACGTTGTTTGGGATTAATATGGATGGAGATGCTAAGAAGAAAGTTGTCCTTGTACTGAAAAAAATTCTGGCTACTTAGCTATTTGGGTACACCCTCGGAGCTAATCTTAGGAGTTCGGACTTTTGGAATCTGGGCAAGATCTACCTTTCTAAGTGCCAGACAAGTCACTTCTAAATAGGTTAGATTAAGTCTAGTAACTAGTGCATTGGGTAACTACCATTAGTTGGCCAGTTGTCGTTCACAATTGGTAAACTCATATTCATTTAGGTAATAAGTTCAAACCATGGTAACCTCCAATCTAAGATATTAAGCATCCTACAAAATTTCCAGCACCACATCTATGATGAGACAGTCAACTTGTGAGAGATCTATTGGCATGTGCTTGCCAATTCAAAACACCTACAAATATTAGTGGAAAAAAAAATCTAGTGCAAACTGCATTTGATCTGAGAACATTCTGACTTCCTGCCTTTCCCTTTAAAATTCTTGATAAGGTAGCTAAAGCCTAAGAGTTCGATTGGGATGTCAGGAACTTCTTATGGGCCGGCAGTCTGAATGAAAGAGGGTAACCACCTGGTGGGTCCAAAAGTGATTCTCTTTCTTCAAATGGGGGGTTGGGTTTGGGGAACCTGAGAAAGAGGAAGAAAGCCCTTATTACTACATAGGTTTGGCATTTTTCACGCGAAGAGAGCTCTTTAAAGCATAAAATCTGAAGAAGCAAATATGGAAATGGAAAATGTTAGAAGTTAGTTTACAGTTACATACCATTTTAGAAGCAGCAATTGCCCGTCAAAAAACTTCACCAAATGCTATTAGCTCTTATACTCCAAAGTGGGAAGTAAAAGAGAGAGAAAAATGCCCTAAGGGGTTAAAAAAGAGGGTGTTACAAAAAGCTCCCAACCTATTCAAGAGGGTTGGTAATCTCTCCTCTTCCTCACTACTAACAGTCAACACTCTAGACAAAAAGCATGAAACGAAAATACTGGCCTCTGACCTTATATACTCCCCTACACCTTCATTTGCTAGCAAACTCGATCCCAGTGGTCCCCCCTAAGTGCACAATTTTGCTAAACAACTAACTTATCGATGGTGCTTTCCCCTTTTTGCCCGTTCTCGAGTAAGAAATGGTAATTGGGGCCTAACACAAATGTCTGTCAAAAAACTTCACCGAATGGGATTAGCTCTTATACTCCAAAGCGGGAAGTGATGACCAAATGAACTCGCAATTAATTTTGGATCACTGAACCCACCAATAGAGAATCTCCCTAAGGACTCTCCTATAGCAGATTCTTATGGTTCTTCTGAAGTTGATAGAAACCTTAGATTCATAAGATTGTTTTCGTACCTATCGCTCATAGCAAATGTCCTCCCTAGCATTCTAGAGGATGAATGATATGATATGGAATTTGGAAAAGTCTGGATCCTCTGAACTTTTTTTTCTCTTCTGTTTCCATCTCCCACAGCTCCTAGCTAAGCAATGAAAGAAAGAACTTCTCTTTTTTTCTTTTTTTTTTAAACTTTATTAAACCAAGCTGTCCATTCTCCAGATTGGTACATTATGTGTATGAAGAGCATGGAGGGTAAGAATCATCTCTTGTGTAGCTGCAGACTAGCTTATAACTGCTGAATAAGGCTCCTAAATGTTTCTCCACTTATTGTTGCTTTCGTCAGAATTTTGAAGGATGGTATTCTTCACCTGCTTCGTGGGCATCCCTTTAAGAATAAAGCCTAGATCACTAGGATAAAAGGGGTTATATCTAACATTGGATGCTGTGAAATGAAAGGAATCATATGGCCTATAACGAGCACAGTTCACAAGTTTTAAAAGGGTCAAGTTTGCTTTGCGTCCCTCTGGTGCACCCTTCCCAATTTATTTTGTAATTCTTTATCCTAAAAAAAAAACTTTTGTTTTTGATTCAACCCTGTTGGATTTTCTTGTAACCTCCTTCCTCCATTTACATCTCATTTATTGTAGCATTTTGGTTGCAGGAGTACTCCCCAACCACGCTGGTCGTACTAATTACTCCTCCTCCTGTTGATGAGGAAGGGCGTAATGAATATGCGCGGTATGACTTCTTCTTTCTAATCTCTGCTCAATTTTTTAGCTTGTTTCCAGTCTAAGTGTAATGGTACCTACAACCATCTATATTTTCCATTTTCCTACTTTTCCTTAACTAGTTTCATGATCAATGATATTAATATTTGTATTAGTCAGAAAATTCTTTTGCAGCCTTTTTATGATCATTGGCAATGGAAAAACTCTCTTTTATTTGTCGTTGGGTGGGGATCTGTAAGACTACTAACGAGACACACACTTACAATGCTATTGAGAATACAACAAACAAGTAATAGAGAGGGAAATGAGGACCCAACTCCTTCAATATCGAGAGTTCTTCGATATTAAGGAGGGGTTATTTCATTAGATATAGAAGGGAAAACCGATACAAGCATTCTCCAGCTAACCGAGAGGCTGGTTCTCTCCACTACACAAGACTGATTCACTCTCAAAAAAGATACCCTTCCCCTGTACCCCGACAGAATATAAAGCCCTCACTCCCATGCTACCCTTACACGTCTGCCCTCATTCCCCTGTGGTCCCACGTTCCCCAGAAACAATTACTCTTTTGCCCCTTCTAACATATTTCTTAATAATCGGGGGTCTTACAATACCCCGGGGTTCAAAAGGCACCTTGTCCTCAAGGTGGAAGTCTGGATACTGCTTCATAATGTCCGCGCAAACCTCCCAAGTAGCATCGGTAGTATTTCGTTTGGCCCAACGAATAAGGCATTCCCAATACGATTTATCATCATTCCATCGCACACCCAACACCTCTTCGGGTTTCTCTGTCCATTCATATTCCTCGGAGAATACAGGGTCGAAGGTTTGGATGACAGCGTGAGATCCCACGGCCTTCTTTAATTGCGAGATGTGGAAAACAGGGTGAATGGATGTGGTTGGCGGTAGCTGCAGCTTATAAGCCACTTGGCCTATACGTTCCAGTATTTCGTAGGGACCGTAAAACTTTGGGGATAGCTTCTCGCATCGTTTCTTTGCCAGAGATCGATGTCGGTAAGGCCGCAGTTTTAAGTATACCCAATCTCCCACCTGGAATTCCAATTCCCGTCGATGTAAATCAGCCTGCTTTTTCATTCTTTCCTGTGCAAGTCGAAGTTGGTCCTTTAGGGCTGCCAAATTGGCGTCACGTTCCATGAGTTGCTGATCAAGCGTGCTATTGGAAGTTTTTTGCTCTCCATAAGACACCAAGGGTGGTGGGGCTCTACCATAGACAATGTTGAATGGGGTGGTGTTTATGGAGATATGGAAATTAGTATTGTACCAGTATTCCGCCCAACTGATCCATTGTTCCCATTTGCGTGGCTGCTCATTGCGAAACACCTTAAATACGTTTCAAGGCAACGATTGACCCGCTTCGGTTTGGCGTGCATGCTGGGGTGAAAAGAGGTACTCTTCTTGATTCAAGTGCCTGCAGCGGAACAACTCTTTCCAAAACGTGCTCATAAAGATTACATCTCTCGCGCCGAAATGATGGATTTTGGGAAGCCATGTAGTCGGACTATTTCCTTAATAAACAGGCAGCTACATCCTTGGCGGTGTAGGGGTGTTTGAGCGTTAAGAAGTGAGCATACTTGCTCGGCGATCCACCACAACTAGAATCGAATCGACCCCATGTGATTTAGGCGGTCCCTCAATAAAGTCAAGACTAATGTCTTCCCAAATGCGATCCGGGACCGCAAAGGTCAGAGGAGACCGGCGGGAGCTAGAGATTCTGTCTTGTTCCGTTGACAAATCGCACATTGGTCCACATAGTTTTTAACTTGACGCTTCATTCCTTTCCAAACAATTCTCCCGCTATGCGTTTATAAGTTCGCAGAAAAAGCCAATGGCCACCTAAAACCGAGTCGTGATATAGTTGTAAAATGGTTGTAAGCGAGGAGGAAGAATTGGATAATACTAATCGATTCTTGTAACGGTTGTCCTTGGACTAAACTATACTTCCGGATGGGATGAAGGATCACTCTTGAGTTGGGAAACAATCGCTCAAGATCGAGTATCTTCATCCACTTCTTTCATAATTGTGGCAATATCAATAATTCTTGGTGCGAGATAAGGAAGAATAGTCCCTCACTTGCCGAATCCGAGATGCGGGGCATCCGCCGCTTGATTTCAAATCATATCCTAGTAGCTTAATTAGCCACTTTTGATAATCAGTTGTACCTCACGCCGCTGCTCTGCAGATTCTTTAAGGCTCTGCAGTCGGATTAACACGGTGAAACGCCGCCCCAACAGTAGTGTCGCCACTTTTGTACACAACTACACAATTGCCATTAGCTCGCTTCATAAACGGATTTTAGTCGGGCTCGCCCGGATAACGGTACCGGTAGTAGGCTATCGGTCTCTGTTTACGCATCAACACCGCCCCAATCCAGCCTCCCGATGCATCCGTTTCTATAACAAATGGAATGGAAAAATGCGGTAGTGCCAACACCGTAAAGTCATCATTGCTCTTTTTAATTTGGTGAAAGCCTCGGTACTCTCTGGGACCAACAAAAAGGCGTTCTTCTTCAACATTTGATGCAATGGTGCGGCTATGGACCCATAGTTCGATTACAAATCTGCGATAGTATCCGGTAAGTCCCGGGAATCCCACGAGTTCCTTCATCGATTGTGGTGTGGCCACTGAGCATAGCCACACCTTTCCTTCGCGCCTCCACGCTTCTCCGGTGACCCGGTGGCCTAAATACTCCACTCGCTCTTGGCGAGAAAGTGCACTTCTTTTCGTTTAAGATCAACCGGTTCTCTCTCAAAACATTAAAAACCAATTCCGGATGCAACAAATGTGTTTCCATATCGTGTCGTATATCAATATATCATCAAAAACACAAGGACGCACCTTCCGTAGAAATGGCCTAAAAATCTTATTCATCAATGACTGAACGCTGTTGAGCATTGGTGAGGCCAAGGGCATGACCACAAATTCATAATGTCCTTCATGGGTTCGGAAGGTCGTTTTCTCGATGTCCTTCCCTTTCATCCGTATCGATGATATCCGATTTAAGATCTAACTTGGAGAAATACCGTGATCCGTGCGGCTTTCATCTAATAACTCTTCAATCATTGGAATCGGAAACTTATCCGAATTGTCACCGTTTAAAGCCCCATAATCGACCACGTAACCTCCAAATTCCATCTTTCTTTTTGACTAATAATACCGGGCTTGAGAAGAAATTTGTACTTGGTCGGATGATCCCCGTAGTTAGCATTTCAGTCACTAGTCTTTCAATCTCGTTCTTCTGGGCATGGGCATACTTATACGGACGCACATTAACTGGCCCCTTTCCTTCTGCGAGCACAATGCCATGGTCCACCTCTCTGTGAGGGGGAAGTTCTCTGCTCCCCTGAAAAAGATCACTATATTCTGATCTTAACCTTTCCATGTCCCGTGGTGTGGTCATTTCCTTCTGCTGGGATTGTTCTCCGTCGACTATCGACACTCCTTTGCAGGTCACATCTCGTAGTTCGATCAAATATCCTTGATCACTCTCACTCCATTCTTTTGCCATCATCTTTAGGGTCACCTGGGCCTTTGTAAGGGAAGGGTCTCCTCTGAGAACGACTTGATCCTTTCCCATTGCAAAAGTCATGGTGAGTTCCTTCCAGTCGACTTCCATCACGCCAAGGGTTCTTAACCAAATAATTCCTAGAATGACGTCGACTCCTCCTAAATCGAGAGGTAACAGGTCTTCTTCCAGGGTGATGTTTGCGAGTTGTATCGTGACTCCTCGACAGATACCTCTCCCATCCGTTGTCATTCCATTTCCCATTTGCACACTGTATTGCAAGGTGTCGCCCTTAGGAAGCTCCAGCTCATCGACTAATCTGTTGGAAATGAAGTTATGAGTCGCACCGCAGTCAATGAGAACTATCACTTCTCTCCCGAGGATTTTGCCACGTAGTTTCATAGTTTCTGGCGATGAGAATCCCACTAAGGATTTTAAATCCAATTCCACGAAGTCAACGGTCAGTTTTCGAAACTCCGTCTCAGCTAACACCCATTCTTCATCTTGTTCCGCTTTCCTTCTGCTTTCACCTCCAAGTCCCCATACTGCCTCTCCCAAATCACTTGTAATTCTCGAGAGCTCGATTTTCTTGCAGCGGTGATCCTTGAGTACTTTTCGTCGCACCTAAGCATAACCCTTTTTCTCGCTTTGCTTGGAACTCTGCATCGGTGAGGCGGCGTTGAGGGGTTCACGGCGTTAGGGGTTGCTCTTCTCGAGAACCGTGACGGATCTCAAGTTTTCATTGGGCGCGAGTTATGTTTTTTGGTTCGGGGCCCGTGACTTCTTTCCTCTGTGGAAGCCTCCTCCCCTCATTTTACTCCAATGGGCGGCCCATTTTTCCTTTCTAGATCGCTTTCAAGGATTCTTCACGATCTTCAATCAACTGGGCTGTTTCATTATTTCCTCCAAATTTTTGGTTCTCTCTCGATAACGGCCGCCCTAATTTCCTGCATGAGACCGCTTGAGAAAAGTGTTTTCCAAGACATCTTCACCACTCCGTGAACGGCCCCGAGTAGGATTCGAATTTCTTCCTGGTAGTCTCTTCATCGTTCCTCTTGCTTGATCGATAAGAAACGACCGCAGACACTTCCTTCTTGGGTGGCTCTATATCGATTCGATAATCTCTCCCCAGCATCCTCCCACGATACTATCTTCCTTCATTGTTAGTCCACCTGCATTACCATTCGATCACGCCCGCTCAAAAACTCACAATGGCCACGTTCATTTTTTCTAAATCGCTTAGTTGATGTACTTCGAAGTATGTTTCTGCTCTCACCATCCACGCATCGGGATTGTCACCTGTAAAAATCGGCATTTCTAACTTTTTGTATTTACTACGATCAGAGGTTACCTCTGTTCTTTTTTGCTCGACTTGACTCGCTTATTTCCATTCTCAACGATTCGCCGTCCGGTGGTTTTCCTTTAACTTCATCGGTTTTCATGAGCCCAGAGAGGCTCGTTTTCCGCCCCGACCATTCGCCAAAGATTAGAACCAAGGCCTTCTGATTTTCCCTCATGTCACTCGCCACCCTCTCCCATCCCTTATCGATGGCATTTTCCATATTTTTCATTCTTTCTTTCATCTCCGATATCTCCCTTTCCGTGCTGGAGATTCTTTCCTCCATGGCCATAGACCGTGTTTTCCCCAGGTCGACGTGCTCTGATACCAATTGTAAGACTACTAACGAGACACACACTTACAATGCTATTGAGAATACAACAAACAAGTAATAGAGAGGGAAATGAGGACCCAACTCCTTCAATATCGAGAGTTCTTCGATATTAAGGAGGGGTTATTTCATTAGATATAGAAGGGAAAACCGATACAAGCATTCTCCAGCTAACCGAGAGGCTGGTTCTCTCCACTACACAAGACTGATTCACTCTCAAAAAAGATACCCTTCCCCTGTACCCCGACAGAATATAAAGCCCTCACTCCCATGCTACCCTTACACGTCTGCCCTCATTCCCCTGTGGTCCCACGTTCCCCAGAAACAATTACTCTTTTGCCCCTTCTAACATATTTCTTAATAATCGGGGGTCTTACAGGATCCCTCTTCCCCTAGCCCTTAGGCTGTTCAGTTCTTCTCGGCAGTAATGCACTCTTGTTTCTTAAAAAAAAAAGTTTCATGATCAATGATATTAAAAGAAACCTCACATCAGTTATGTTGAGCATCCCACATTGGAAAAGTGGAGAGAAACCTTACATCTTATAAGATATATGGGTTACTCCTGGTGTAAACCAATTAAAAGAAAAATACCAATCTAATTTATTTCTAACAACCGACCCTACTCCTTTATATAAAAACGAAGAGGGGTAAAAAAACAATTACAAACTAACTGACTAATGACTTTAAAACAGTAAAACAAGTAGTTGTTGTGCAGAATTCAAAATATTACAGCATTTTTACCCCACAATGAAACTAAAAAAATAAAGAATCTTCAAAACTGTAAAACACCATACACCAACTCCTCTCATTGCCAATTGGTTTTGAGAGAAACCCCATATAATCTAATATGGTATCAGAGCCCATTAAGTCCAAACAGGCATCGGTCCAGGGATCCGATTCAAGAATGGTGAACCCAAAGAGGCACTATTTTGAGGGGGCATGTTGAGGATCCCACATTGGAAAAGTGGAGAGAAACCTCACATCTTATAAGATATGTGGGCTACTCCTCTTATTGCCAATTGATTTTGAGATGGAACCCCATATAATCTAATAAGTTATATCAAGGCGTTACCAAAATATACTTTCTCAGTTCATCTTATTCTTTCTCATTTTTTGAACCTATTGTGTAAATGTATGCACGTGCACTGGTGAGTCCAAATGTACTCCATGCCTTTATTACACCTTCGTTACAGATCATTACCGACACTGGCAATGCCAGTGGGAACTGAGCAGTAAAGGTGGTATAATAACACTACCTTCGGCATGATATAAACATGATTAGCATTTTAAAGTACGGTTTGTTCCAGAAAATCCCTTGCCTCTATCATCTCTAGGATATTGAAGTTGTTCAAATTTTTTATCAATATGCTGAAGAGAGATTCTATCCTACTTAGACCAAGACAACTTTTACTTGTTCAAAAACCAATTAAGGTGAAGTTGGTCCCGTTGAATTGTAAAGATAAACTTGTGTCTTAATCTAGCAGATCTCTTTATGGTGATAAAGCAAGAGAATTGCCAGAGAGAACAAATGAAGTGACTGGACTTTATGCGAAAAAATGCCTTGACCTAGCCGAGGAAATGGGTCTTTATGCCATTGATTTATGGTCCAAATTGCAGGAAACAGTGGGTTGGCAGAAAAAATTTCTCAGGTCTGTAATTCACGCTCCCCCAATTCATAAGTTTTACTCATTTTTTGAAATATTATATCTGGCTCTGATATCTTTAATGTTATGTGTCCTCATTTTATATTAATAATCTACATCTTAGTCTTGTGAATCAAATTTGATATCCCAGCCTACGTATGAGAAGGGAGAGAGTATGTTAAAGAATATTATAAATGATTTAATTTATCTTAACTCAACTTAAACGTTTTTTTATCTATCTAGTAAAAGTTTAGCAAGCATGATATCAAAATAAGAGGTCTCTAAGTTCTAAGTTTCTGCAAGGTTATTCCTCTTTTATTTGGTATCAATGGTTGTGTTGGTTGTGTTGAAATTTGTGAACTGAATAAATATTTGGAGAAATTATTAGAGGAGACCATCACAATGTGGCTGTTAGTTTGACATCAATAGATATATGAGAGAGAAACTAGAAGAGTACTTTGAATCTATATCATGTGGTTATTAGGAGGCATGTAGATTTCAAATCTATATCTAATGGTTATTAAAAGGTAACCACATTGGCGGTCTCACTGAATAATCTTTCCAATATTTGAGATGGGATGAACAAAATTATATTAAATGACTAAATGTTCATATTCTAATTCCAATAGCTTAAACTTTTAAATCTAACCGTGATTTAAGACTAATAAGCAAGAAAGTAGAATTCTTGTAATGTCATATCCCCCTCCATTTCATATTAATAGTTTGTGTGTTAAGTCAGACCTTGTCGATCAAAATTTAATATTGGAGTTTGCGTTCGGGATGTTGATATAGTCTTTTAATACAGGGATGGATTGCATTTCACACCAGAAGGTAATGCAATTGTGCATCAAGAACTAGAGAAAGTACTGAATGAAACATCAGTTTCTGCTGCAAAAATGCCTCTTGATTTCCCACATCACTCAAAGATTGATGGAAAAACCCCTGAAAAAGCCTTCCAATATCTTTCTTTGTGATACTCTCATCACCTTATATATACATATGATGATATGATCATTGTTCTCCCTCCCCTTATGTAATCTTGTTTGAAGAATTCAAGTTGCCTATTTGCATTTGACTTGTTGCCCATTTAAATCTCTGATATTGTTTGATGGGCATGAATGTTAAATATTTGAGAGGGAAATGTGTGTGC CCAGTGTGTGTTGTTTGTCTGTACAATGCAATGCACATCCATAACGAATTTCAATCTCATCCAAAATCAAACTTCAATTTCACGACTGGAATGCTTGAAAAAGAAGATCAGTCTGCAAGAAATTGATAAGAGCTCATTTTCGTTCACAAAGGGTAGATCGAAGCGTCGAAATAACTGACAATGAGGCCTGAGATCGTTCTATTTGGAGATTCTTTGACTGCACAATCCTTCGGTTCAGGTGGATGGGGAGCTGCTCTTGCTGACAATTACTCTCGCAAGGCCGATGTTCTAGTTCGTGGCTATGGCGGATACAATACTCGATGGGCTTTGTTTTTACTTCATCACATTTTCCCATTGGATATTCCTAAGGCCCCCATTGTCGTGACAATTTTCTTTGGGGCCAATGATGCAGCTATTTTGGGGAGAACAAGTGAGAGACAACATGTACCTCTTGAAGAGTTTAAGGATAATCTTAAAAAAATGGTAAATCATTTGAAGGAGTACTCCCCAACCACGCTGGTCGTACTAATTACTCCTCCTCCTGTTGATGAGGAAGGGCGTAATGAATATGCGCGATCTCTTTATGGTGATAAAGCAAGAGAATTGCCAGAGAGAACAAATGAAGTGACTGGACTTTATGCGAAAAAATGCCTTGACCTAGCCGAGGAAATGGGTCTTTATGCCATTGATTTATGGTCCAAATTGCAGGAAACAGTGGGTTGGCAGAAAAAATTTCTCAGGGATGGATTGCATTTCACACCAGAAGGTAATGCAATTGTGCATCAAGAACTAGAGAAAGTACTGAATGAAACATCAGTTTCTGCTGCAAAAATGCCTCTTGATTTCCCACATCACTCAAAGATTGATGGAAAAACCCCTGAAAAAGCCTTCCAATATCTTTCTTTGTGATACTCTCATCACCTTATATATACATATGATGATATGATCATTGTTCTCCCTCCCCTTATGTAATCTTGTTTGAAGAATTCAAGTTGCCTATTTGCATTTGACTTGTTGCCCATTTAAATCTCTGATATTGTTTGATGGGCATGAATGTTAAATATTTGAGAGGGAAATGTGTGTGC ATGAGGCCTGAGATCGTTCTATTTGGAGATTCTTTGACTGCACAATCCTTCGGTTCAGGTGGATGGGGAGCTGCTCTTGCTGACAATTACTCTCGCAAGGCCGATGTTCTAGTTCGTGGCTATGGCGGATACAATACTCGATGGGCTTTGTTTTTACTTCATCACATTTTCCCATTGGATATTCCTAAGGCCCCCATTGTCGTGACAATTTTCTTTGGGGCCAATGATGCAGCTATTTTGGGGAGAACAAGTGAGAGACAACATGTACCTCTTGAAGAGTTTAAGGATAATCTTAAAAAAATGGTAAATCATTTGAAGGAGTACTCCCCAACCACGCTGGTCGTACTAATTACTCCTCCTCCTGTTGATGAGGAAGGGCGTAATGAATATGCGCGATCTCTTTATGGTGATAAAGCAAGAGAATTGCCAGAGAGAACAAATGAAGTGACTGGACTTTATGCGAAAAAATGCCTTGACCTAGCCGAGGAAATGGGTCTTTATGCCATTGATTTATGGTCCAAATTGCAGGAAACAGTGGGTTGGCAGAAAAAATTTCTCAGGGATGGATTGCATTTCACACCAGAAGGTAATGCAATTGTGCATCAAGAACTAGAGAAAGTACTGAATGAAACATCAGTTTCTGCTGCAAAAATGCCTCTTGATTTCCCACATCACTCAAAGATTGATGGAAAAACCCCTGAAAAAGCCTTCCAATATCTTTCTTTGTGA MRPEIVLFGDSLTAQSFGSGGWGAALADNYSRKADVLVRGYGGYNTRWALFLLHHIFPLDIPKAPIVVTIFFGANDAAILGRTSERQHVPLEEFKDNLKKMVNHLKEYSPTTLVVLITPPPVDEEGRNEYARSLYGDKARELPERTNEVTGLYAKKCLDLAEEMGLYAIDLWSKLQETVGWQKKFLRDGLHFTPEGNAIVHQELEKVLNETSVSAAKMPLDFPHHSKIDGKTPEKAFQYLSL Homology
BLAST of Tan0012430 vs. ExPASy Swiss-Prot
Match: Q9FM04 (GDSL esterase/lipase At5g62930 OS=Arabidopsis thaliana OX=3702 GN=At5g62930 PE=2 SV=3) HSP 1 Score: 361.3 bits (926), Expect = 8.5e-99 Identity = 164/238 (68.91%), Postives = 195/238 (81.93%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy Swiss-Prot
Match: Q6NMR9 (GDSL esterase/lipase At5g45920 OS=Arabidopsis thaliana OX=3702 GN=At5g45920 PE=2 SV=1) HSP 1 Score: 243.0 bits (619), Expect = 3.4e-63 Identity = 120/240 (50.00%), Postives = 157/240 (65.42%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy Swiss-Prot
Match: O80443 (GDSL esterase/lipase At2g38180 OS=Arabidopsis thaliana OX=3702 GN=At2g38180 PE=2 SV=1) HSP 1 Score: 177.6 bits (449), Expect = 1.7e-43 Identity = 89/227 (39.21%), Postives = 138/227 (60.79%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy Swiss-Prot
Match: Q2TAA2 (Isoamyl acetate-hydrolyzing esterase 1 homolog OS=Homo sapiens OX=9606 GN=IAH1 PE=1 SV=1) HSP 1 Score: 170.2 bits (430), Expect = 2.8e-41 Identity = 99/237 (41.77%), Postives = 136/237 (57.38%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy Swiss-Prot
Match: Q9SRM5 (GDSL esterase/lipase CPRD49 OS=Arabidopsis thaliana OX=3702 GN=CPRD49 PE=2 SV=1) HSP 1 Score: 169.9 bits (429), Expect = 3.6e-41 Identity = 86/236 (36.44%), Postives = 136/236 (57.63%), Query Frame = 0
BLAST of Tan0012430 vs. NCBI nr
Match: XP_022922525.1 (GDSL esterase/lipase At5g62930 [Cucurbita moschata]) HSP 1 Score: 474.9 bits (1221), Expect = 4.0e-130 Identity = 225/242 (92.98%), Postives = 237/242 (97.93%), Query Frame = 0
BLAST of Tan0012430 vs. NCBI nr
Match: XP_023551925.1 (GDSL esterase/lipase At5g62930 [Cucurbita pepo subsp. pepo] >KAG6576884.1 GDSL esterase/lipase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 474.9 bits (1221), Expect = 4.0e-130 Identity = 225/242 (92.98%), Postives = 237/242 (97.93%), Query Frame = 0
BLAST of Tan0012430 vs. NCBI nr
Match: XP_038904756.1 (GDSL esterase/lipase At5g62930 isoform X2 [Benincasa hispida]) HSP 1 Score: 474.6 bits (1220), Expect = 5.3e-130 Identity = 225/242 (92.98%), Postives = 236/242 (97.52%), Query Frame = 0
BLAST of Tan0012430 vs. NCBI nr
Match: KAG7014907.1 (GDSL esterase/lipase [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 473.4 bits (1217), Expect = 1.2e-129 Identity = 224/242 (92.56%), Postives = 237/242 (97.93%), Query Frame = 0
BLAST of Tan0012430 vs. NCBI nr
Match: XP_022985167.1 (GDSL esterase/lipase At5g62930 [Cucurbita maxima]) HSP 1 Score: 471.1 bits (1211), Expect = 5.8e-129 Identity = 223/242 (92.15%), Postives = 235/242 (97.11%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy TrEMBL
Match: A0A6J1E910 (GDSL esterase/lipase At5g62930 OS=Cucurbita moschata OX=3662 GN=LOC111430496 PE=3 SV=1) HSP 1 Score: 474.9 bits (1221), Expect = 2.0e-130 Identity = 225/242 (92.98%), Postives = 237/242 (97.93%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy TrEMBL
Match: A0A6J1J450 (GDSL esterase/lipase At5g62930 OS=Cucurbita maxima OX=3661 GN=LOC111483251 PE=3 SV=1) HSP 1 Score: 471.1 bits (1211), Expect = 2.8e-129 Identity = 223/242 (92.15%), Postives = 235/242 (97.11%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy TrEMBL
Match: A0A0A0KTH4 (SGNH_hydro domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G004790 PE=4 SV=1) HSP 1 Score: 466.8 bits (1200), Expect = 5.3e-128 Identity = 219/242 (90.50%), Postives = 235/242 (97.11%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy TrEMBL
Match: A0A6J1D5G5 (GDSL esterase/lipase At5g62930 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111017779 PE=3 SV=1) HSP 1 Score: 466.8 bits (1200), Expect = 5.3e-128 Identity = 223/242 (92.15%), Postives = 234/242 (96.69%), Query Frame = 0
BLAST of Tan0012430 vs. ExPASy TrEMBL
Match: A0A1S3BZF4 (GDSL esterase/lipase At5g62930 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103494719 PE=3 SV=1) HSP 1 Score: 465.3 bits (1196), Expect = 1.5e-127 Identity = 221/242 (91.32%), Postives = 233/242 (96.28%), Query Frame = 0
BLAST of Tan0012430 vs. TAIR 10
Match: AT5G62930.1 (SGNH hydrolase-type esterase superfamily protein ) HSP 1 Score: 361.3 bits (926), Expect = 6.0e-100 Identity = 164/238 (68.91%), Postives = 195/238 (81.93%), Query Frame = 0
BLAST of Tan0012430 vs. TAIR 10
Match: AT5G45920.1 (SGNH hydrolase-type esterase superfamily protein ) HSP 1 Score: 243.0 bits (619), Expect = 2.4e-64 Identity = 120/240 (50.00%), Postives = 157/240 (65.42%), Query Frame = 0
BLAST of Tan0012430 vs. TAIR 10
Match: AT2G38180.1 (SGNH hydrolase-type esterase superfamily protein ) HSP 1 Score: 177.6 bits (449), Expect = 1.2e-44 Identity = 89/227 (39.21%), Postives = 138/227 (60.79%), Query Frame = 0
BLAST of Tan0012430 vs. TAIR 10
Match: AT3G11210.1 (SGNH hydrolase-type esterase superfamily protein ) HSP 1 Score: 169.9 bits (429), Expect = 2.6e-42 Identity = 86/236 (36.44%), Postives = 136/236 (57.63%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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