Tan0009555 (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.TCTGAATTGATGCATAAAAGAATCGCCAATGCCATCACCAATCGCCCGCAACCGTACCGAAACCAGAACTTGATTCGCTTTCTCCATCTTCTTCACTACCACCGACCACACATTCTCGTCGCCGGTTTCCTCCACAGCCTCACTCTTCCACTGCTCCTCTTTCTTTCTCCGGTAATGTCAGCTTTCAAGCAGCCATTTCAGCTGACCTCCTCCTCTTCTTCTCCTCTCTGCTCTCTTCGGGGCTCTCTCCTCACTCTCGCCATTCTCACCCTCCTCTCATTCACTTATCTCTCCTTCACTTCCCTTCATTCATCCGCTTCCTCTTCCCCCTCTCAGGTATGCGATTCTCTTGATTTCTTCCTTTTCCTTTCTGATCTTTGCTTATGGATTTGGGATTTTCATTCCGAAGCTGCCCGTCAAGTTGGGAGGCGTTAATGACGATGCTGCGGAAGAGGGGATTTCGGATGTGTATCACTCTCCTGAGGTTTTCAGGTTGAATTTTGCGGAGATGGAGAGGAAATTCAAGGTTTATATATACCCAGATGGCGATCCCAATACTTTTTATCAAACTCCGAGGAAGCTCACTGGCAAGTATGCAAGTGAGGGTTACTTCTTCCAGAATATTAGAGAGAGTCATTTCCGCACCAACGATCCAGATCAGGCTGACCTCTTTTTCATCCCGATCTCATGCCATAAGATGCGAGGCAAGGTATAGTTTTCATCCATTTTTTTATTTAACTAGCAATTGGGTAACTAGTGGTGGGCGTGGGATTTCCAGTTTATGTGGATTTGTAGCTTCTTGCTTTGTTACTTGTGTATCTAGAAGGCATTGGTTTTGAGGGAATGTGAGTTGTGAAATGAACTTCTTAATTTCTCCTGTGGCTTATAAATTTTGGTGTTTATGGATACAATGAAGGGCACATCCTACGAGAATATGACGATAATTGTCCAAAATTATGTCGAAGGCTTGATATCCAAGTATCCTTACTGGAACAGAACCTTGGGTGCGGATCACTTCTTTGTCACTTGTCATGATGTTGGTGTGAGAGCTTCTGAAGGATTGCCTTTTCTTATAAAGAACGCAATTCGAGTTGTGTGCTCTCCTAGCTATGACGTTGGATTCATACCCCACAAAGATGTTGCTCTTCCTCAAGTGCTGCAGCCATTTGCTCTTCCAGCTGGAGGAAATGATGTAGAAAATAGGTAAAGGAATTGAATACCTTCCTTGTTTCCCCCCTCAAAGCACTGAATAGTAACAGCACAACATCACATTTAGTTTGGCATTACAACCTAAATCTGGTTTTAACTATTCTCCTTGTTTGAACTTTGATCTTTATTCTCAATGCATGGGATCTTGTTTCTATATTTTTGGTTTATACTGTTTTCAGATTCAGAAGTGGAGCAGAAGAGAAAAATATGACAATCTTTTGTGTAAGTTTGCTCAATGAGATATGACCTATCAATATATCCATGAAAATGGATGATATGTGACAATGAATCACTAACTTTTTCTCTACCTGTATGTATCATTGCTTTTTGTTGGCTCCTTGTTATTCCAATTCTAAAAAAGGATCTGAAAAGAAACCCTACAAGCTATGCTAAATTTAAATTTGGCTGTTTTAAGAATTTTGTGATTTCTCTTTGAATGAAACACCGATCACATAATTAGTTAATTATTTCAGGTTCCCACATAAAAGCTAAGCATAATTTCTTCAAACTTTGAGCAAATTAGGATGGTTAGCAAAAGTACAGTATTGACTGCATTAGAGATGGGATTCTTTGATTAATTATGGATTAAGCGTGTTCTGTTACTATTGATTCTTAGGTTAACCAATAGACCTGGGTGTTGAACCATTTAGATAATCTGCTAGGTGATAATTCCTGAAAAGTTACCTGCCTGGTAGTAATTCAAGAAAATCAGAGTTGTGGAACTTATTGACGGCAAACTTGGCGAAGCTTCAAAAATGGAAGAAAGCCCTTTGATTTAAGGTGGCAGGTTAACCCTAAAAAATCTTGTCCTTTCCGTGTACCATTTTATAGTTTATTTTTATTTTTATTTTGTCATTATGCCTATTCTTGAGAAGCATGTTGAGTTGATTAAGAGGTTTTGGAGCGTTTCTATTTGGGAAAAATAAAGATTCAGATATGGATGGAGTCATCTTGTTAACTGGAAGAAGGTTACACTGACTCTAAAGATGGGGGTCTTAGTATTAGGAACTTATGGATGAAAAGCTTTTATTCTTCTTAATGACTGGGGAGAATTCCCAGATAAGGGGATGCTTTAGTTTATAGCATAAGGTGGATGTGAGTATTTATTGGGTGGTGGGGAGAGATGAGGCTGGCTCCTGGATTATGTTAACTGAGAATTCTAGGAGTCCTTGGGCTCTGTTATGAAGAGAAGAAGGGCTTTTTAGGAGATATTTGGTTTAAGGTGAGCATATGGTAAAAATGAGATTTCAGGAGGATGTTTGGCTTAGAGCATATTGTTAGAAAACTTTCAAAGTCTCTTTAACATAATGGAGAGCAAACGTAATGTTAGTGTTGTGTGGGACTAAAAGCAGCTTGAATGAGATCTAGAGTTCAGTCGGTGTTTCTCAGATATAGGAAGACAGAGGTTTTGCTAATGAAGATGAGAATTTTCAGAGTTTTAGCCCCTGTAGATAAGCCTAATAGCAGATGGTGGATTCCAGAAGCATTGGGTATATTTTCGTATCAATGCCAAATATTTTTCTATATTTTATATTTTAAATGGAAGATTTGTATAAGAACCTAGATGTAGTTTGTTACGATTTGGAAAATTTTCTTAAAAATGTATGGTTTACCTATGGTTCCTTTATCATGGGAAGATTAATATTTTGGACTAGATTCAAAGGAAGAACCCATGTTAGTTATTTGACCTAAATCCTAATTAGTGCTGGTTAGGGAAGACTATTGAAGAATTTCAGGAGCATTGGGGTTCAAATTCTGTGCTCTTTTAAGTAAGGTGTGGCTCAAGCTTCTTCAATTGTTTGGTGTGAGCTGGATCTTCTCATACTCCTTGAGAGAATTCCTTCTACAGTTGCTGTCCCGGCCTCATGGTTCAGAGAGGGTGTTTCGCAGTTGAATGCTTACTGGGCTTTACTTGGAGCTTATTATTAGAGAGGAACCTGAAGAACTTTTATTATATTTGAGAGATTTTTTGGATTTCAAAGCCCATTCTTCTTATCTTTTAGAGAGTTTATTGGACTTTACTTTTTTCTTTCTTTTATTTTTTTTTGTTTGTTATTCAAATGTAAATTCTCTTTATAAATTCTACTGAGAGGAAACTCTTGTCTTCTCTATTTAATGTATTTTCTTCTTTTAATGAAAGGTTTCTTTATTGAAAAAAGATTGATCATTTACATTGGAGAGCAGGGCGCATGGTAGCCAATCTATCCCTTTAGAGAGACCTCAGAGATGAGATCTTAAAATTAGGATTCGCATTGATAGTTAGACCAGAATAGTTGATGGGTGAACAACATTTAGCACAAGAGGAGAGGGCAGTCCAACCTGATCTTCTTCTTGAATGTTATGCCTGCTTCAGTGTTATTTTTTTGACTAATGATACTTTTTTTTTCTTTTTGTTTTTTACAAGCCCTGATGAGACTTTTAGACAATTTGGCATATTTACCACAATATTATGAATGAAGTTTTTTATTTCTTCATGGTATTGAATCAAATTAAAAAAATATTCTATTCAGATCATTTACTAATATCATAGTTGCACAATATTTTTCTCTGAAAAGAATTGCTGTCAAATAAAAATTTAGTTCATTTCTGATGGAGATGATAATGTTCTTCACAGGACAACCCTTGGATTCTGGGCAGGCCATCGGAACTCTAAAATTAGAGTCATACTAGCACGTGTGTGGGAGAATGACACAGAACTAGACATTTCAAACAACCGGATAAGTAGGGCTACTGGACATCTAGTTTACCAGAAAAGATTTTACAAGACAAAATTCTGCATATGTCCAGGAGGTTCACAAGTCAACAGTGCTCGAATAGCTGACTCAATCCACTATGGATGTGTTCCGGGTGAGAACATGACTTGTTTTGGTTATTTGGCTATAGAAAATCTGTTTTCTATTTTTCTTTATCATCTTTTCTACCGAAAGGTTAAGGTAATTAATTTACTTCCTTCATCTTCTTGGGGAAGTGGGCGAGAAGGAAGCTGGTTTTCATTTCTTTTTTCCTAATAAACCCAAAATATTCATGATTAAAAAATCCAATTTATTAAAATGTAGGGATAGTAATCAAACGTTCCAATTGAATTCAAAAGAAACAAAATGGAAGGCTCATGGAAATTTAAATTGAAGTCACAGAATGGATTTCTCTTCACACGATGTCTCTGTCTGTCTTTCTTTTTTGGGCAAGAAATAGAACCTTCAATTAAGTGTAATGAAATGTATAAAATTTCCAGGTTTTAAGGAAATTGCAAAAGACATTCCAATTGGATGAGAATAAGGTGTGGGTAACTACAAAAATCCTTATGGGCCATTTTAGGTGAGGGTATTTTGCATCAGAAACGGGTTGGTGTTGGTTTTTTATTTGCCATGTTTGGGGTGCTCTTTAAACCTTCCCTCAAACACACACACACTCACAGCATCTTATGCTAATAACATTTTCCATCAACTCCTTTTTAGTCAGATGAGATATTGTATCCCAATACTCTTATAAAAAAAGCTTTCTCCACAACAACACCCTGTGTTCAATCATGATCTCGCTCTCCATTCTGTGTAAATCCTTTTGTCAGATCCCAGAATTTTTTACTTCCTCTGCCATGATCTCTCTCTCTTCCTCTATTATGTTCTCTTTAGTGCTCCTTGCTGAGGGATTACAATTGCGTCAAAAAACCTCCTCAGGCAAGTGGAGAAAGATGGGAGAGGTGGGCTGGCTGGTATAGAGTGGCTGAATGAAATGGTGAGAAATTGGGAGAGCATGTGAGAAGGGAGAGAGATTGGCTGGGTCATTCATTTATGTTCTCAGTTTGACTTTCTGCTTTTTTGTGAAGTTATTTGTTTCATGATCTTGATTTAATTTTTCCCTTTAGTCTTCTATGGAGAGGGGTCTCAATCAGAGTTGTTCACCTTTCTCTCACCTTCAACTCGGAGGAGGAGAAGTATTTTTTCCATTTTGTTAATATCTTGCATATGAGGGAGTGTGGGGGGTCTAGGTGAATGGGGAGAAATGCTCTATTATACGAGTAAAGTGTATGAAAGTGATAGACCCTTGATAGTAAGTGTATAAAAGTAAAAGGGTGAGGGATCCGATGTAACTTAGGTAGTTAGAATGGCAGGAAATGTGTAGTCAGAAGTATTCAAGAGTTATATTATAAAGGCGATGATACTTTTTTGGGGTAGGGGCCTCTTAGGTGAACAAGAGAAATAGTATACTCTCCCTTAGCTATGTACCTATATGTGAAATAAACAAATAGATTCTATCACGATTCACGAAGTTAAACTTAGGAATTAGGAGAGCTGTTTTAGTTGTGAGGCTGTCTCTACTGGCTGTGTATTTGGACACACCCCTTAGTTATAATACTAGGGTTCTTTGATGAAGTTTAGAAAAGTCTCATTAGAGGAAATCTGATAGACCCCAATTGTAAAAGTGTATACACGCAAAAGAATAAGGAAGGGTGTTGGTGTGTAAGAAGAGTTGGCTCGTGTGGAGAGGAAAGTTGTAGCCAGAGATGTTTGTTAGTTAGCTATGGGTAGAGAGAGGCTGGTTATATAGCCAGAGATGTTTGTTAGTTAGCTATGGGTAGAGAGAGGCTGGTTATATAGCTTTTTGTTTTTGTTTGAGGGGTATCTTTTTGGCTATTTTTCTTGTTGGGCATTCTCTGGGAGAATTGGGAGAGGTGGGAAGCTTGGCACCTTGTTATCTAAATATAAATAGTGTTGTTGGCCTATCAATTTTTGGTATAGAGTAGCGATTTTGGAGAATGGTGGGAAAGATGGAAGGTAGAATAATTGAGTTGGAAGAGAAGTTGAGTGAGATTGGAAAGAATCAATCATAGATGGAGGCTAAGATGGACTTACAGTTTGCGGGAATAGGAGAGCAACAATTTGCATCGAAGATGAAAATGGACACTCAACTTGCAATCCTTTGTGAAGAGTTAAGACAATCCTCTCTTGAATGGGGGGAGGGGCGGCGATGGAAAAAGGATCCGGATCATCCGAGCGAATGGTGACGGATAAGGAAAAGAAAGTGATGGAGGAGGAATTTATAAGGAAAGTAAAAGAAGGTGAGGAGAAAAGCATGACTAATAGCAAAGGGATTAGTGCCCCGACTATAAGAGAAGTACCTTTGTTTGATATGAGGTTGCATAAATTAGAGGTACCAATCTTCAAGGGAGAAGAAGATGAAGACCGGGATGGATGATTGCATTGGGTTGAGCAGTATTTTGTGGTTAATCGACTGATTGAAAGGGACAAATTGGAGGCGGTGATTATGTGTCTCGAAGGTGAAGCCCTTGATTGGCCACTAGTGGGAGGAGGATCGATCACCAGTGACGAGTTGGAGTGAATTCCGCCGATTGCTGCTGGAGCGTTTCTGATTGTCGGCCTAAGGAAATCGATAGGCTCGATTGATGAAGCTTCAACAGGAAACAATGGTGAGGGAGTATCACCGGAAGTTTGAGAGGTTTGGCGGATAGATTGATGTCTGCGATGGGTGCTTGAGGGCAAATTTGAAAATGGGCTTAAGGAAGAGATCCAAAGTGAAATGAGAAAGCTACAACCCTTGGGCCGTAAGGCCAATATGATGATGGCCTAACTTATTGAGGTGAGAGTGATAACCTAGTCCAGCAAAAGAAAAATAGCCAAAAAGATACCCCTCCAACGAAAACAAAAAGCTATATAACCATTCTCTCTCTACCCATAACTAGCATACCTCTCTGGCCCACACACACGTACAACTTTCCTCTCTACATGAGCCAACTCTTCTCACACACCCACACCCTTCCTTACTCTTTTGCGTGTATACACTTTTACAATTGGGGTCTATCAAAATCTTAATTTTGTGAAGGAAGCAAACTTATTGTAATCCAATCTTGTGGTGAGAAGGATTTCAATTTTCTTATTACCTTCAAAATTTTGGGATGGCTGAAGATCATATTGGTAGGGATTATGAGAAATATTTTTTGTAGGATGTGTTTGATGGAGGAAAGGGTCGCATTTAGGTTATTGGAAAATTATGTCGAAACTGTATGAGGAAGTCCAGGGATTGAGTACTTAGATTGTGAAAATGTTGGCCATTTATGTAAACAGTTACGGCGATATCCCTTCAAACATCAAGCCCTATGATGTTAGGTCATAGCGAGTAAGTACAAGAAGCCCTCCAATGGTTGAGAGATTCAAGGTTTGGTCCCGCGGGCAACCTTAGGAACCTTTGGAAGGTGATTTCGTAGTAATATTCTTTATCCATTTCTAAGAACTTCTAAATGTGCTAATTTTTAATTCGAAGTACTTAGTAAATGTAGAAGTTTTTGGACAAAGTTCCTTAAAAGAGGAAGTTATGTCAAAAGTTCCTTACAAGAGGAAATTATGTCACTGTTAATGATGGTAATATGCGGTGACATGTTTGAAGAAAGAAAGAAAACTTTCAAATTACGATGATAAAATAATGCAACAAATGTAATGCAATTTTTTTATAACATGTGGGGTGTGAGATTCGAACTTTTGACCTATTGGTCGGAGTATACACTTTATGCTAGTTGAGCTATGCTCATGTTGGGAACAAATGTAATGCAACTTACTCATTTGAAGTCTTTAAACACTTACTCATTTGAAGTCTTTAAACACTGCTGTTTGAGTAGTTTGCTTATACATTTGCAGAATCTTTTCCCTATTTCTTTCAAACCTCATTTGCGTTACTTATTAAAAAAAAAAAAGGGAAAACGAAAAAGAAAAAGGAAGCTTGTCTTGTATCAAATGAGAGAAGAAAGGAGGAAATCGCGGAAAGGTATTTTCTATACTGATGGTGCTTAGAATGAAAAAAGGAGCAGAGTCTATACAATGAGTAGCCCAAAACCTATTTACAGATCATACACGTGTCAAGCTAATATAGGTGGACAAATAACAGAAAAACAATAAAGAAACTTAAGAAAGCAGGCTACATAAATCAGAGGGATAAAAAAACTAATCTTGATTAATAAGTGGTCAATAAGGATTATGTAAATAATAAAGAGGTTCAAGCCATGGTGGTTACCTATCTAGGATTTAGATCCAACCAGTTACCTTCGCAACCAATGTTAGAGTAAAATTGGTGGTTGTCCCATGAGAATAGTCGAGGTGTGCAAGCTAGCTTGGACACTCACGGATATAAAAAAAAAGTTTTAACATGTAGGCTACTATTAGCTATAGTATATTGAGTATGAACAAGTTCCCAAGGGTATCCGTAAATGCCGAAGTTTGCAATCTATCTGATCTTATCAATTATGAAGAGGAATTAGATAACCAAACGTGTTTCTTTTCTTCATGTCTGGAAACTTTGCTTATTATATTTTGTGAGAACCTCTTTTGGGGTTTACCTGAGTTCTTTATTTGCTTGCAGTGATATTGTCAGACTATTATGACCTTCCATTCAATGATATTCTTGATTGGAGGAAATTTTCAGTGATAGTTAAGGAACATGATGTATACCAATTGAAACAAATTCTGAAGGACATATCTGATATGGAGTTCATTAAACTCCACAAAAACCTGGTGCAGGTACTATGTCATTTCCTACCCCGTTCATCTGGTAATCGTAAATGCAGATTTTCAGTGCTTAGATGTTTTATTAATCTCTTTCACTCATTTTTGTGTTACATCCTGATAGTAAATGTCTGCTTTAGATTGGGAATTCTTAGTGATCTTCTAATTTAAACTCTTAATATAAAAATAGTTTTAATTAAAATCCTTGTGTTTGGTCTCATTTCTTAAAGGTGATTCTAATCACAAGTTTGTTTGCACTGTATCTAAAAGTGATTCTACAAATGTCCAATGACTGTAAAGTGATTGGTTATTTCAAAAGTGATTTCTGGTTGGTACCAAACCCTCTGGATTTAAAAGAAAACACTTTTGGCCCCTCTGGGGGATTGTTTGTGGCGCTGAATGAGTTATAATAACATGAATTATAATATTTTGTGAGTTATTATAGTTAGTGGAATCATATAATATTATTTAGAATGCAGAGTTGTTTAGTTCAGAGTTAATAATCTGTGTTTGGGGTGCAGAGTAATCTACATGTTATTATAACCTATGCCTCAAACATGCCTTAAAAGTTAATCCAAACACACCACTTATTACATTTGCTAAACTTCTCTCATCTTGCACATTCATCAGGTTCAAAAGCATTTCCAATGGAATTCACCACCGATCAAATATGATGCATTCCATATGGTGATGTATGACTTATGGTTACGGCACCATGTCATCAAATATTGATATCTTGTAGCTTCAGGTTTTCTTCTACAAATTTTTGTTTGTTACTCATTTAGAAAAAAAGGAAAAAAAAAATGTTTGTAACCGAACTTTGTATATTCTAGAATATAGTCGATCTTCTCCGATAATCATATTTTTCTTTTTGCCTTTTAACTTTCGGCAAATATTTTTGTTTGATTAAATTCATTACAGGGTTGTAAAATGTATTTTTCTTCTTCTTTTTTATTTTTTACTTTGCATGTGTAACTGTAGCACTGCACCAAAATATAGTCAACTTAACTCTTTGTTTTCTTGTTTAAGATAAAGCTCCCCAGACCCCTGTTTTAAGTGTCTTTAATGTGAG TCTGAATTGATGCATAAAAGAATCGCCAATGCCATCACCAATCGCCCGCAACCGTACCGAAACCAGAACTTGATTCGCTTTCTCCATCTTCTTCACTACCACCGACCACACATTCTCGTCGCCGGTTTCCTCCACAGCCTCACTCTTCCACTGCTCCTCTTTCTTTCTCCGGTAATGTCAGCTTTCAAGCAGCCATTTCAGCTGACCTCCTCCTCTTCTTCTCCTCTCTGCTCTCTTCGGGGCTCTCTCCTCACTCTCGCCATTCTCACCCTCCTCTCATTCACTTATCTCTCCTTCACTTCCCTTCATTCATCCGCTTCCTCTTCCCCCTCTCAGCTGCCCGTCAAGTTGGGAGGCGTTAATGACGATGCTGCGGAAGAGGGGATTTCGGATGTGTATCACTCTCCTGAGGTTTTCAGGTTGAATTTTGCGGAGATGGAGAGGAAATTCAAGGTTTATATATACCCAGATGGCGATCCCAATACTTTTTATCAAACTCCGAGGAAGCTCACTGGCAAGTATGCAAGTGAGGGTTACTTCTTCCAGAATATTAGAGAGAGTCATTTCCGCACCAACGATCCAGATCAGGCTGACCTCTTTTTCATCCCGATCTCATGCCATAAGATGCGAGGCAAGGGCACATCCTACGAGAATATGACGATAATTGTCCAAAATTATGTCGAAGGCTTGATATCCAAGTATCCTTACTGGAACAGAACCTTGGGTGCGGATCACTTCTTTGTCACTTGTCATGATGTTGGTGTGAGAGCTTCTGAAGGATTGCCTTTTCTTATAAAGAACGCAATTCGAGTTGTGTGCTCTCCTAGCTATGACGTTGGATTCATACCCCACAAAGATGTTGCTCTTCCTCAAGTGCTGCAGCCATTTGCTCTTCCAGCTGGAGGAAATGATGTAGAAAATAGGACAACCCTTGGATTCTGGGCAGGCCATCGGAACTCTAAAATTAGAGTCATACTAGCACGTGTGTGGGAGAATGACACAGAACTAGACATTTCAAACAACCGGATAAGTAGGGCTACTGGACATCTAGTTTACCAGAAAAGATTTTACAAGACAAAATTCTGCATATGTCCAGGAGGTTCACAAGTCAACAGTGCTCGAATAGCTGACTCAATCCACTATGGATGTGTTCCGGTGATATTGTCAGACTATTATGACCTTCCATTCAATGATATTCTTGATTGGAGGAAATTTTCAGTGATAGTTAAGGAACATGATGTATACCAATTGAAACAAATTCTGAAGGACATATCTGATATGGAGTTCATTAAACTCCACAAAAACCTGGTGCAGGTTCAAAAGCATTTCCAATGGAATTCACCACCGATCAAATATGATGCATTCCATATGGTGATGTATGACTTATGGTTACGGCACCATGTCATCAAATATTGATATCTTGTAGCTTCAGGTTTTCTTCTACAAATTTTTGTTTGTTACTCATTTAGAAAAAAAGGAAAAAAAAAATGTTTGTAACCGAACTTTGTATATTCTAGAATATAGTCGATCTTCTCCGATAATCATATTTTTCTTTTTGCCTTTTAACTTTCGGCAAATATTTTTGTTTGATTAAATTCATTACAGGGTTGTAAAATGTATTTTTCTTCTTCTTTTTTATTTTTTACTTTGCATGTGTAACTGTAGCACTGCACCAAAATATAGTCAACTTAACTCTTTGTTTTCTTGTTTAAGATAAAGCTCCCCAGACCCCTGTTTTAAGTGTCTTTAATGTGAG ATGCATAAAAGAATCGCCAATGCCATCACCAATCGCCCGCAACCGTACCGAAACCAGAACTTGATTCGCTTTCTCCATCTTCTTCACTACCACCGACCACACATTCTCGTCGCCGGTTTCCTCCACAGCCTCACTCTTCCACTGCTCCTCTTTCTTTCTCCGGTAATGTCAGCTTTCAAGCAGCCATTTCAGCTGACCTCCTCCTCTTCTTCTCCTCTCTGCTCTCTTCGGGGCTCTCTCCTCACTCTCGCCATTCTCACCCTCCTCTCATTCACTTATCTCTCCTTCACTTCCCTTCATTCATCCGCTTCCTCTTCCCCCTCTCAGCTGCCCGTCAAGTTGGGAGGCGTTAATGACGATGCTGCGGAAGAGGGGATTTCGGATGTGTATCACTCTCCTGAGGTTTTCAGGTTGAATTTTGCGGAGATGGAGAGGAAATTCAAGGTTTATATATACCCAGATGGCGATCCCAATACTTTTTATCAAACTCCGAGGAAGCTCACTGGCAAGTATGCAAGTGAGGGTTACTTCTTCCAGAATATTAGAGAGAGTCATTTCCGCACCAACGATCCAGATCAGGCTGACCTCTTTTTCATCCCGATCTCATGCCATAAGATGCGAGGCAAGGGCACATCCTACGAGAATATGACGATAATTGTCCAAAATTATGTCGAAGGCTTGATATCCAAGTATCCTTACTGGAACAGAACCTTGGGTGCGGATCACTTCTTTGTCACTTGTCATGATGTTGGTGTGAGAGCTTCTGAAGGATTGCCTTTTCTTATAAAGAACGCAATTCGAGTTGTGTGCTCTCCTAGCTATGACGTTGGATTCATACCCCACAAAGATGTTGCTCTTCCTCAAGTGCTGCAGCCATTTGCTCTTCCAGCTGGAGGAAATGATGTAGAAAATAGGACAACCCTTGGATTCTGGGCAGGCCATCGGAACTCTAAAATTAGAGTCATACTAGCACGTGTGTGGGAGAATGACACAGAACTAGACATTTCAAACAACCGGATAAGTAGGGCTACTGGACATCTAGTTTACCAGAAAAGATTTTACAAGACAAAATTCTGCATATGTCCAGGAGGTTCACAAGTCAACAGTGCTCGAATAGCTGACTCAATCCACTATGGATGTGTTCCGGTGATATTGTCAGACTATTATGACCTTCCATTCAATGATATTCTTGATTGGAGGAAATTTTCAGTGATAGTTAAGGAACATGATGTATACCAATTGAAACAAATTCTGAAGGACATATCTGATATGGAGTTCATTAAACTCCACAAAAACCTGGTGCAGGTTCAAAAGCATTTCCAATGGAATTCACCACCGATCAAATATGATGCATTCCATATGGTGATGTATGACTTATGGTTACGGCACCATGTCATCAAATATTGA MHKRIANAITNRPQPYRNQNLIRFLHLLHYHRPHILVAGFLHSLTLPLLLFLSPVMSAFKQPFQLTSSSSSPLCSLRGSLLTLAILTLLSFTYLSFTSLHSSASSSPSQLPVKLGGVNDDAAEEGISDVYHSPEVFRLNFAEMERKFKVYIYPDGDPNTFYQTPRKLTGKYASEGYFFQNIRESHFRTNDPDQADLFFIPISCHKMRGKGTSYENMTIIVQNYVEGLISKYPYWNRTLGADHFFVTCHDVGVRASEGLPFLIKNAIRVVCSPSYDVGFIPHKDVALPQVLQPFALPAGGNDVENRTTLGFWAGHRNSKIRVILARVWENDTELDISNNRISRATGHLVYQKRFYKTKFCICPGGSQVNSARIADSIHYGCVPVILSDYYDLPFNDILDWRKFSVIVKEHDVYQLKQILKDISDMEFIKLHKNLVQVQKHFQWNSPPIKYDAFHMVMYDLWLRHHVIKY Homology
BLAST of Tan0009555 vs. ExPASy Swiss-Prot
Match: Q9FFN2 (Probable glycosyltransferase At5g03795 OS=Arabidopsis thaliana OX=3702 GN=At5g03795 PE=3 SV=2) HSP 1 Score: 264.6 bits (675), Expect = 2.1e-69 Identity = 132/359 (36.77%), Postives = 218/359 (60.72%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy Swiss-Prot
Match: Q9SSE8 (Probable glycosyltransferase At3g07620 OS=Arabidopsis thaliana OX=3702 GN=At3g07620 PE=3 SV=1) HSP 1 Score: 247.3 bits (630), Expect = 3.5e-64 Identity = 136/379 (35.88%), Postives = 215/379 (56.73%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy Swiss-Prot
Match: Q9LFP3 (Probable glycosyltransferase At5g11130 OS=Arabidopsis thaliana OX=3702 GN=At5g11130/At5g11120 PE=3 SV=2) HSP 1 Score: 245.4 bits (625), Expect = 1.3e-63 Identity = 129/357 (36.13%), Postives = 203/357 (56.86%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy Swiss-Prot
Match: Q3E7Q9 (Probable glycosyltransferase At5g25310 OS=Arabidopsis thaliana OX=3702 GN=At5g25310 PE=3 SV=2) HSP 1 Score: 237.7 bits (605), Expect = 2.7e-61 Identity = 127/359 (35.38%), Postives = 199/359 (55.43%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy Swiss-Prot
Match: Q3E9A4 (Probable glycosyltransferase At5g20260 OS=Arabidopsis thaliana OX=3702 GN=At5g20260 PE=3 SV=3) HSP 1 Score: 235.7 bits (600), Expect = 1.0e-60 Identity = 130/354 (36.72%), Postives = 201/354 (56.78%), Query Frame = 0
BLAST of Tan0009555 vs. NCBI nr
Match: XP_022929527.1 (probable glycosyltransferase At5g03795 isoform X1 [Cucurbita moschata]) HSP 1 Score: 858.6 bits (2217), Expect = 2.5e-245 Identity = 423/472 (89.62%), Postives = 435/472 (92.16%), Query Frame = 0
BLAST of Tan0009555 vs. NCBI nr
Match: XP_022985045.1 (probable glycosyltransferase At5g03795 isoform X1 [Cucurbita maxima]) HSP 1 Score: 857.4 bits (2214), Expect = 5.6e-245 Identity = 422/469 (89.98%), Postives = 435/469 (92.75%), Query Frame = 0
BLAST of Tan0009555 vs. NCBI nr
Match: XP_023551773.1 (probable glycosyltransferase At5g03795 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 856.7 bits (2212), Expect = 9.5e-245 Identity = 424/472 (89.83%), Postives = 436/472 (92.37%), Query Frame = 0
BLAST of Tan0009555 vs. NCBI nr
Match: KAG7015423.1 (putative glycosyltransferase, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 855.9 bits (2210), Expect = 1.6e-244 Identity = 421/469 (89.77%), Postives = 434/469 (92.54%), Query Frame = 0
BLAST of Tan0009555 vs. NCBI nr
Match: XP_038905298.1 (probable glycosyltransferase At5g03795 [Benincasa hispida]) HSP 1 Score: 855.1 bits (2208), Expect = 2.8e-244 Identity = 422/471 (89.60%), Postives = 436/471 (92.57%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy TrEMBL
Match: A0A6J1EN04 (probable glycosyltransferase At5g03795 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111436068 PE=3 SV=1) HSP 1 Score: 858.6 bits (2217), Expect = 1.2e-245 Identity = 423/472 (89.62%), Postives = 435/472 (92.16%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy TrEMBL
Match: A0A6J1JA93 (probable glycosyltransferase At5g03795 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111483136 PE=3 SV=1) HSP 1 Score: 857.4 bits (2214), Expect = 2.7e-245 Identity = 422/469 (89.98%), Postives = 435/469 (92.75%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy TrEMBL
Match: A0A6J1ESD6 (probable glycosyltransferase At5g03795 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111436068 PE=3 SV=1) HSP 1 Score: 844.7 bits (2181), Expect = 1.8e-241 Identity = 419/472 (88.77%), Postives = 431/472 (91.31%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy TrEMBL
Match: A0A6J1J700 (probable glycosyltransferase At5g03795 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111483136 PE=3 SV=1) HSP 1 Score: 843.6 bits (2178), Expect = 4.0e-241 Identity = 418/469 (89.13%), Postives = 431/469 (91.90%), Query Frame = 0
BLAST of Tan0009555 vs. ExPASy TrEMBL
Match: A0A1S3BN33 (probable glycosyltransferase At5g03795 OS=Cucumis melo OX=3656 GN=LOC103491850 PE=3 SV=1) HSP 1 Score: 808.5 bits (2087), Expect = 1.4e-230 Identity = 390/413 (94.43%), Postives = 398/413 (96.37%), Query Frame = 0
BLAST of Tan0009555 vs. TAIR 10
Match: AT4G38040.1 (Exostosin family protein ) HSP 1 Score: 698.4 bits (1801), Expect = 4.0e-201 Identity = 330/417 (79.14%), Postives = 362/417 (86.81%), Query Frame = 0
BLAST of Tan0009555 vs. TAIR 10
Match: AT5G03795.1 (Exostosin family protein ) HSP 1 Score: 264.6 bits (675), Expect = 1.5e-70 Identity = 132/359 (36.77%), Postives = 218/359 (60.72%), Query Frame = 0
BLAST of Tan0009555 vs. TAIR 10
Match: AT4G16745.1 (Exostosin family protein ) HSP 1 Score: 260.0 bits (663), Expect = 3.7e-69 Identity = 137/383 (35.77%), Postives = 218/383 (56.92%), Query Frame = 0
BLAST of Tan0009555 vs. TAIR 10
Match: AT5G11610.1 (Exostosin family protein ) HSP 1 Score: 256.1 bits (653), Expect = 5.3e-68 Identity = 129/343 (37.61%), Postives = 200/343 (58.31%), Query Frame = 0
BLAST of Tan0009555 vs. TAIR 10
Match: AT3G07620.1 (Exostosin family protein ) HSP 1 Score: 247.3 bits (630), Expect = 2.5e-65 Identity = 136/379 (35.88%), Postives = 215/379 (56.73%), 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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