Bhi04G002042 (gene) Wax gourd (B227) 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.TAAGAATTATACTTATAATTTAACCAAATAATTAACTAGTTTTTGACAACACTGCAAAATCAATGTAGAGTGAAACTAGGGCACTCTTCCTCTTCACTTGACGACGAAGACGACCAACCAGGCAATCACTTGAAGGCTGCCGTTGCGAGATTTGTGCCTTGATCTTCTCTTCTTCTTTCCTCTCTTCTTCTTTCATTTTCCAATCACGAATTAGATTCCACAATCTCAACCTTCCATTTGTTTTTCTAGTTCAATCATGCAGCCACGCCGTACCTGAGTTTGGTGAGTTTTCTTTCTCGTTTTCTAGATCTATTTAAATCATGCTTTAGATTCTATTATTTACACGATGTTTTCACCACCTGCGGATTGGTGTTCTATGTTTTTTTTCTTACATTTCAATCGCTTGAATGTTTTTGGTTCTTACCCTGTTTTATGATAATGAGTTTTGTTTCCCCCCATGGAAATCTGTGAAAACTCAATAATGAAAGCGATGATTCTTGCTATGATAATACGACCAAGATGCTACATTAATGCTAACCCACTTCATTATTGCCTTGTCCTTTTCTCAATCCTCCGATGTCTTCTATTTCTATCTGTCCATATTTTCCACAAATAGTTGTTGACTAGACCTGTCTAAATGAGCTTGGCTTTCCTTCTGGATAAAGACATCGCTATAATCTGAAGAATCAAATATTTGATTTTAGAGGGAGCTATTTGGTGAGATTGAAGGAACTGAGAAGACCCAAAATCCTTGTCGTGTATTAACAGTGAATGAATAAACAATCTATTAAGTCACTGAAAAGGCTTGATGTCCGGCTATGGTTTTGTACTGTCAGAGCATAGAATTTTTTGGAGTAAAAGATCCTAAAGAAGAGTTGCAGGGAAGGTGCACTGTCTCATATTAAGTCACTGAAAGGACTTGATGGAGAAAATAACTGAGGTTTCAAGCCTCTAGTGTGTAATGTTGCAATTTGAATGGCAGTAATTGAGCCCATGCAACAACTTAATTGAATTCAACTAAGTGGTTGATAGTTGAATGCAACTTTTACCTCGTCCTTTTAGTTTTGGAAATGAAAAGATACGTAATGACTTGTTTCAGCACCTTTTTAAATGGAAAATGAAATTTGGAAAAAGAAAAAAAAGCACAAAGGATTGTTGTTGTTATTAATGAAGAAACAAAATCCACTAGCCCTAGATGTTGCAGAAGTGAAACACAGGGATTTTTGGAACTTTTAATTTCTATATAATACACAGCCTCTAGTTGGAGTGCCTTGGATTGAACTTGCAGCAGCGATTATCTTAATAAATATATATCACGGGTGCTTCTTATAATCACCCATTTTCTGGCTGGGGAGATGTCCTTTTTCAGCCTACTCTTTGTAACCTTGGGTTCTAGCTAGCTAATTGTGTTTCTTTATATGTTTTTGTTCTTATGAAAAAAAGCTGTTGTATATGTATATTTATAATTGTCTTTCTAGATGGTGATAGAACTGTGATATATTTAGACTTTATAGAGCCTTGGTTTCTTGCAGAGCACACCTAAATGAAGTTTTATGCCTCAAGATTTTGATCGTGCATCAAGAGTGATCAAACGCTTCTGTCACAATAGCAAGATCTTTGGTTTACCCTCTGTTGTAAGTGGCAGCGGCCATCATTTTAGACTTTCTAGTGCTATGAAAGAGATTAAAGTCAAAGGTGGTTCTAATGCAGATCCTCATCCGTTGGAGAATGAAGCACATGCACAACAATTGTCTTGTGCAAATCAGGGATGTTCAGCATCAAATGTGCAATGCACCCCGGAAATTGAAAAGAAGTATGTGCATCGCGTTTATGATGCCATTGCACCCCATTTTAGTTCCACTCGATTTGCAAAGTGGCCAAAAGTTGCATCATTCTTATCCTCCTTACCTCTAGGGTCTCTCGTCCTCGATGCTGGCTGTGGTAATGGAAAGTACTTGGGTTATAATCCCAACTGCTTTTTTATTGGATGTGATATTAGTGCCCAACTTATTAAAATTTGTAATGAAAGGGGGCATGAAGTTTTGGTGGCTGACGCTGTAAATCTTCCTTACAGAACTGGTTTTGGTGATGCAGCAATCTCTATAGCTGTATTACATCATCTAAGTACTGAGAACAGGAGGAAGAAAGCAATTGAAGAATTAATACGTGTTGTAAAAAAAGGTGGCCTGGTTTTAATAACGGTCTGGGCTGTTGAACAAGAGGACAAATCTTTATTGACAAAATGGATGCCCCTTTCAGAGAAGTATGTTGAAGAGTGGGTTGGACCTGGTAGCCCGCGCGTACGCAGTCCAACGTCGTTGGCACTTGAAAGCATTCCTGAAATGAATGAAAATAATTCAGGTATTTGTCTAAGGGGGGATTCCAAGGAAAACTTTACTGGAAGCATACCAGAAGAAAAACTTCTACCCTCTCAATGTGAAAATGATTTGGCGAATTGCAACCATGAAAACTTGTTGAAGACCCAGCAAGAGTATTTTGTCCCATGGCACTTACCTTATCATCGTGCAGAAGTCAGTGGCACGTCTGCCAGTGCCCTTGCTAGTGGTTTGGCCAAAAAGGATGATAAGAAAGCAGCTGTTGTGTATAACAGATACTATCATGTTTTCAGTGAAGGCGAACTTGAAAGGTATTCCTCTCCCTCATCTCTATTGTATGATTTTTTTCTCTCTTCTTTCGGTGATTGGGTATGAGTGAACCTCTTGAATACATCTCATTTCAGATGTGACTTTGCTGTTCTAGATCTAGTGTGTACAGTCTCTTATTCCCTCCCTCTGCTACTCAATACATTACATAAGCCAAATTTTTATTGTTCAAAAATTAGCTGGATGAAAGTTAAACAGAAGGGGAATGATGTAGACGTTTATTTTTATGTCTGCAAAAATAAATAAATAAATAAATAAATAAATAAATAAATCGTAATGTACTAAGTAACAAAGTCGCAAGATGCGCCAGTATCTGTAAAGTTTGTTTTTGCACATGGGAGATGATGCTGGTCACGTTGATTACTCATCGTCCATTTTAGACATGTATGGAAAAGGAACATTGTACTTCTCCCAGCTTTGGCTGTACAGATTGTTGTTTCCGTACATTCAAAATCGAAACAGAAAATCCTTCCTAGAAAAGAGGTTCACAGATAGGGAGGAGGGGAGATAAGAAGACATCCATATGCAAGACAAATAGAAAGATCACAATTAAACTCCCCAATTTTTAGCAAAAAAAGAAAAGGAGAATACAGTTTTGAGGCCAAAAGGAGAAAAAAAGAAGGATATGGACGGGGAGTTAAGCAAAGGTGCCTAAAATTAAGCTTAATTTTCTTTAGATGTCTAATTTGGGGTATCAGTGGCATATATTAATTTGTTCCTAGAGCATTTCCTTGTTACTAGTTCCAGTTCCATTACTATGTGATGAGGTTATAACTGGTAATCTGGGTCATTTGCTATTTTGGTATCATTCCATCTTTTGACTTGAGATGCCTTGGCTGTAGAATTAGGAAACTCAGTATATCGAACTTCAAGACAAAATTTTATTTGATTCCATTATCCCCTCGATATACGTCTCTGCATAATTTGGTTTTTTTTTACAGCTTTCTCATTTTGGGTGCATTTGCAGGTTGGTTTCTGGTATGGACAATGCAGTAGTAGTTGATCGTTTTTATGACAAATCAAACTGGTGTATAGTTCTTGAGAAGACGGTGTGAGTATTTAAACGAGTTCATTGCTTTTACGAAGATATGATTCAAGCATGTCTGCCTGCTGTGCGAACTAAAGTCGGGCTTTCAAGATAAATCCCCTTGCTGAAGGGGGTCCCTGATATTTATCACTGTTGCGATCTCGGTTTCGTTCTTGTCGTCCAGTCATGGTTTGGGGATGGAGATCTGCAGGCTCTCTTGCAGGAAATGCACGCACTGTAAGGATTTACAATTGTATTATGATTAATAATGTGCTGGATTGCCCTTTGGTTCAGTTCTAAATTGTTTGAATTGAAAAGGTTCGGCTTCTTTCTAATAAAAACTTGTTTTTACCGACTCATCTCTTGAGAAAGTTATTGACGGTTATTTCCTTTTAGGCTCAAGGTTTCTGGTGCAAGATTTTCTGGATTTTGAAAACACCAACTATACTAATTTGTATGTTTAAGAGTGATTATAAAATAGTTAAAATCACTATTTTATGTTTAAAATCACTTCGAAACATGCCTTTGTTTATTCAATATCAATTTAGTGCTTGATTTTACACTTTTATGAGGTATTTGGGCAGTTGAGCTGTATTATAGTGTGGGTTATAATAATTTGTGTTTGGGGTGTTGATTATTTTTAGCTTGAATTGTAATAATCTGTATTTTGGATGCAGACTATTTTAGTCTGGGTTTAATAGTAAACATTGTGACAAGAGAGAGAAAGGATGAGTAGGAAATAATAAACACGGTAACAAAAAGAGTTTTGAAGTAGTATTGATAGATATTGTTGGAGTGAGCTATAAAATTGTGATTTTATAAAGTAGTACTTTTATAGCTCACTCCACCACAGCCCCTTGAATGTTATTTTTATACTATAAAATTGATTTTAAATTATTGGAAGCAATTTTTTTTTTTAATTTTGAACCTGACAAGTTATTTTAACATGTCCTTAGATAGCCGAGACAGTTTTCTGACTTTTATTAGGCAACCCTTTGTGGGTGCAAATGTAGCTTGGTTATCTAAATCAATGTTGTGCCCAATAAAAGCTCAAAAATGGTCTGAATCAATGGTTGCAAATGTAGCTAGGTTATCTAAATCAAATGTAGTCATTAAACTCGGTTTGAAATTCACCTGAGTTGGCAAAGAAAAATAATAAAAGAATGCTAAATAGGATAGGAAATTGCAAAGTAAATATGTGTTAAACATAAAATGTACGAAAGACTTGTTACTTGATCCAAAGAAAGAAAGAAAATCGGTGCATCTTCAAAGCAATAATTTGGGCCCCATGTAACAAGCATTCTGTAGATTGTAGTTTACTGGAGTCTCTTGCAATTTGGTTTGTATTTGTGAAGAATTCCATCCTCTCCACCGATGACGAAGAGTGAAATTACTGAGACCTTCCCCTTTCAACTATTTTTCGTGGGATTTGAGAGATTGTCCTGGGTTTAGAACTCTAACACAACCCATTAAAATAACCTGACCCGACATTTCCCTTCCAACTCAACTCATTGGCAATGTTTTATTCTTTTATCATCTGTGCCAACTCAGCTGAATGTAAGACTATTTTTTTTAGTACTGAGGATGAGAGAATTCAAAACCGACCTCCAGAGTAGGAACACATATCAATACCATTGAACTAATCTTTCAGCTTTATTGAAAGTTCAGAACTAAAACCACAGTATAAATGATCAGAGATACTGGACCAAATTAATACTTTTAATGTATAATTGTTATTATAAAAAAAAACCCCAAACTTAGAGAACTGACAAAATCATTCGCCAAATAAAATCGAACAAAACAAAAAGTAAACCAACCATCATTAGATTTAATATTTCCAAATATTGAATTTTCAGACAGCAACTTGAAACATGTAGGTTTAGATACTATAAATTTAAGTAATAGTCTGGTAGTTGTACTATTCTTCTTTATTTAATTTTGGTCCATCCATTTAAATGATTGCTTTTTAAAACTACAAAAACCAAAATGAACATTTTAAAATACAAGTCGAAATAAACTAAAGTAAAAAGTATATAAACCAAAATAGTACATAAATTACTTCAAGTCATTCAATATTTATAACATAGAACTGATTTAAAACTAGTTTTTCCAAACAAGCCATGAATTTTAGTAATTTCCCCTGAATTTTAGTAATTTTAGTAATTTTAGTAATTTCGAACAAACCGTCTCAATGCCTTCCTTCCCATGAAGGTTTCGGCTAAGTAATTTCCCCAACAAGACAAATCGAGAGTGATCAAGAAACAGGCATTACTTTTTGTATATTGGTTGTATCATACTTCTTTCAATATAATATGAATATACACACTACATTCGGACGCACAACTACACAGTAAACAATTAAGAAAAGAAACTCCAAAGGGTAATAATGCACTATTTTGCCTTTCCCTGCACCGTCTCATGTGCCCTTTTGGTTCGCTATAATGGATCTGAGGTAATACTTACTTCCAATATTCATACCTTTAAGTTTGTTTGTTTGACTAAAGCAGCATTTTTACTAATATTTGGAGCCAGCTATGTTAACAGTTTAAACCCCAATCATATGTTTGATATACTACCTTCAATTGGGAACTGGCAAGCAATTCAAGCAATGCTTGAGAATCTTCTGGTTTCAAGTAGTTTGAAGCATGCTTCATGACTTCTTGCTCGTTCTTACCGAAGTCCGTG TAAGAATTATACTTATAATTTAACCAAATAATTAACTAGTTTTTGACAACACTGCAAAATCAATGTAGAGTGAAACTAGGGCACTCTTCCTCTTCACTTGACGACGAAGACGACCAACCAGGCAATCACTTGAAGGCTGCCGTTGCGAGATTTGTGCCTTGATCTTCTCTTCTTCTTTCCTCTCTTCTTCTTTCATTTTCCAATCACGAATTAGATTCCACAATCTCAACCTTCCATTTGTTTTTCTAGTTCAATCATGCAGCCACGCCGTACCTGAGTTTGAGCACACCTAAATGAAGTTTTATGCCTCAAGATTTTGATCGTGCATCAAGAGTGATCAAACGCTTCTGTCACAATAGCAAGATCTTTGGTTTACCCTCTGTTGTAAGTGGCAGCGGCCATCATTTTAGACTTTCTAGTGCTATGAAAGAGATTAAAGTCAAAGGTGGTTCTAATGCAGATCCTCATCCGTTGGAGAATGAAGCACATGCACAACAATTGTCTTGTGCAAATCAGGGATGTTCAGCATCAAATGTGCAATGCACCCCGGAAATTGAAAAGAAGTATGTGCATCGCGTTTATGATGCCATTGCACCCCATTTTAGTTCCACTCGATTTGCAAAGTGGCCAAAAGTTGCATCATTCTTATCCTCCTTACCTCTAGGGTCTCTCGTCCTCGATGCTGGCTGTGGTAATGGAAAGTACTTGGGTTATAATCCCAACTGCTTTTTTATTGGATGTGATATTAGTGCCCAACTTATTAAAATTTGTAATGAAAGGGGGCATGAAGTTTTGGTGGCTGACGCTGTAAATCTTCCTTACAGAACTGGTTTTGGTGATGCAGCAATCTCTATAGCTGTATTACATCATCTAAGTACTGAGAACAGGAGGAAGAAAGCAATTGAAGAATTAATACGTGTTGTAAAAAAAGGTGGCCTGGTTTTAATAACGGTCTGGGCTGTTGAACAAGAGGACAAATCTTTATTGACAAAATGGATGCCCCTTTCAGAGAAGTATGTTGAAGAGTGGGTTGGACCTGGTAGCCCGCGCGTACGCAGTCCAACGTCGTTGGCACTTGAAAGCATTCCTGAAATGAATGAAAATAATTCAGGTATTTGTCTAAGGGGGGATTCCAAGGAAAACTTTACTGGAAGCATACCAGAAGAAAAACTTCTACCCTCTCAATGTGAAAATGATTTGGCGAATTGCAACCATGAAAACTTGTTGAAGACCCAGCAAGAGTATTTTGTCCCATGGCACTTACCTTATCATCGTGCAGAAGTCAGTGGCACGTCTGCCAGTGCCCTTGCTAGTGGTTTGGCCAAAAAGGATGATAAGAAAGCAGCTGTTGTGTATAACAGATACTATCATGTTTTCAGTGAAGGCGAACTTGAAAGGTTGGTTTCTGGTATGGACAATGCAGTAGTAGTTGATCGTTTTTATGACAAATCAAACTGGTGTATAGTTCTTGAGAAGACGGTGTGAGTATTTAAACGAGTTCATTGCTTTTACGAAGATATGATTCAAGCATGTCTGCCTGCTGTGCGAACTAAAGTCGGGCTTTCAAGATAAATCCCCTTGCTGAAGGGGGTCCCTGATATTTATCACTGTTGCGATCTCGGTTTCGTTCTTGTCGTCCAGTCATGGTTTGGGGATGGAGATCTGCAGGCTCTCTTGCAGGAAATGCACGCACTGTAAGGATTTACAATTGTATTATGATTAATAATGTGCTGGATTGCCCTTTGGTTCAGTTCTAAATTGTTTGAATTGAAAAGGTTCGGCTTCTTTCTAATAAAAACTTGTTTTTACCGACTCATCTCTTGAGAAAGTTATTGACGGTTATTTCCTTTTAGGCTCAAGGTTTCTGGTGCAAGATTTTCTGGATTTTGAAAACACCAACTATACTAATTTGTATGTTTAAGAGTGATTATAAAATAGTTAAAATCACTATTTTATGTTTAAAATCACTTCGAAACATGCCTTTGTTTATTCAATATCAATTTAGTGCTTGATTTTACACTTTTATGAGGTATTTGGGCAGTTGAGCTGTATTATAGTGTGGGTTATAATAATTTGTGTTTGGGGTGTTGATTATTTTTAGCTTGAATTGTAATAATCTGTATTTTGGATGCAGACTATTTTAGTCTGGGTTTAATAGTAAACATTGTGACAAGAGAGAGAAAGGATGAGTAGGAAATAATAAACACGGTAACAAAAAGAGTTTTGAAGTAGTATTGATAGATATTGTTGGAGTGAGCTATAAAATTGTGATTTTATAAAGTAGTACTTTTATAGCTCACTCCACCACAGCCCCTTGAATGTTATTTTTATACTATAAAATTGATTTTAAATTATTGGAAGCAATTTTTTTTTTTAATTTTGAACCTGACAAGTTATTTTAACATGTCCTTAGATAGCCGAGACAGTTTTCTGACTTTTATTAGGCAACCCTTTGTGGGTGCAAATGTAGCTTGGTTATCTAAATCAATGTTGTGCCCAATAAAAGCTCAAAAATGGTCTGAATCAATGGTTGCAAATGTAGCTAGGTTATCTAAATCAAATGTAGTCATTAAACTCGGTTTGAAATTCACCTGAGTTGGCAAAGAAAAATAATAAAAGAATGCTAAATAGGATAGGAAATTGCAAAGTAAATATGTGTTAAACATAAAATGTACGAAAGACTTGTTACTTGATCCAAAGAAAGAAAGAAAATCGGTGCATCTTCAAAGCAATAATTTGGGCCCCATGTAACAAGCATTCTGTAGATTGTAGTTTACTGGAGTCTCTTGCAATTTGGTTTGTATTTGTGAAGAATTCCATCCTCTCCACCGATGACGAAGAGTGAAATTACTGAGACCTTCCCCTTTCAACTATTTTTCGTGGGATTTGAGAGATTGTCCTGGGTTTAGAACTCTAACACAACCCATTAAAATAACCTGACCCGACATTTCCCTTCCAACTCAACTCATTGGCAATGTTTTATTCTTTTATCATCTGTGCCAACTCAGCTGAATGTAAGACTATTTTTTTTAGTACTGAGGATGAGAGAATTCAAAACCGACCTCCAGAGTAGGAACACATATCAATACCATTGAACTAATCTTTCAGCTTTATTGAAAGTTCAGAACTAAAACCACAGTATAAATGATCAGAGATACTGGACCAAATTAATACTTTTAATGTATAATTGTTATTATAAAAAAAAACCCCAAACTTAGAGAACTGACAAAATCATTCGCCAAATAAAATCGAACAAAACAAAAAGTAAACCAACCATCATTAGATTTAATATTTCCAAATATTGAATTTTCAGACAGCAACTTGAAACATGTAGGTTTAGATACTATAAATTTAAGTAATAGTCTGGTAGTTGTACTATTCTTCTTTATTTAATTTTGGTCCATCCATTTAAATGATTGCTTTTTAAAACTACAAAAACCAAAATGAACATTTTAAAATACAAGTCGAAATAAACTAAAGTAAAAAGTATATAAACCAAAATAGTACATAAATTACTTCAAGTCATTCAATATTTATAACATAGAACTGATTTAAAACTAGTTTTTCCAAACAAGCCATGAATTTTAGTAATTTCCCCTGAATTTTAGTAATTTTAGTAATTTTAGTAATTTCGAACAAACCGTCTCAATGCCTTCCTTCCCATGAAGGTTTCGGCTAAGTAATTTCCCCAACAAGACAAATCGAGAGTGATCAAGAAACAGGCATTACTTTTTGTATATTGGTTGTATCATACTTCTTTCAATATAATATGAATATACACACTACATTCGGACGCACAACTACACAGTAAACAATTAAGAAAAGAAACTCCAAAGGGTAATAATGCACTATTTTGCCTTTCCCTGCACCGTCTCATGTGCCCTTTTGGTTCGCTATAATGGATCTGAGGTAATACTTACTTCCAATATTCATACCTTTAAGTTTGTTTGTTTGACTAAAGCAGCATTTTTACTAATATTTGGAGCCAGCTATGTTAACAGTTTAAACCCCAATCATATGTTTGATATACTACCTTCAATTGGGAACTGGCAAGCAATTCAAGCAATGCTTGAGAATCTTCTGGTTTCAAGTAGTTTGAAGCATGCTTCATGACTTCTTGCTCGTTCTTACCGAAGTCCGTG ATGCCTCAAGATTTTGATCGTGCATCAAGAGTGATCAAACGCTTCTGTCACAATAGCAAGATCTTTGGTTTACCCTCTGTTGTAAGTGGCAGCGGCCATCATTTTAGACTTTCTAGTGCTATGAAAGAGATTAAAGTCAAAGGTGGTTCTAATGCAGATCCTCATCCGTTGGAGAATGAAGCACATGCACAACAATTGTCTTGTGCAAATCAGGGATGTTCAGCATCAAATGTGCAATGCACCCCGGAAATTGAAAAGAAGTATGTGCATCGCGTTTATGATGCCATTGCACCCCATTTTAGTTCCACTCGATTTGCAAAGTGGCCAAAAGTTGCATCATTCTTATCCTCCTTACCTCTAGGGTCTCTCGTCCTCGATGCTGGCTGTGGTAATGGAAAGTACTTGGGTTATAATCCCAACTGCTTTTTTATTGGATGTGATATTAGTGCCCAACTTATTAAAATTTGTAATGAAAGGGGGCATGAAGTTTTGGTGGCTGACGCTGTAAATCTTCCTTACAGAACTGGTTTTGGTGATGCAGCAATCTCTATAGCTGTATTACATCATCTAAGTACTGAGAACAGGAGGAAGAAAGCAATTGAAGAATTAATACGTGTTGTAAAAAAAGGTGGCCTGGTTTTAATAACGGTCTGGGCTGTTGAACAAGAGGACAAATCTTTATTGACAAAATGGATGCCCCTTTCAGAGAAGTATGTTGAAGAGTGGGTTGGACCTGGTAGCCCGCGCGTACGCAGTCCAACGTCGTTGGCACTTGAAAGCATTCCTGAAATGAATGAAAATAATTCAGGTATTTGTCTAAGGGGGGATTCCAAGGAAAACTTTACTGGAAGCATACCAGAAGAAAAACTTCTACCCTCTCAATGTGAAAATGATTTGGCGAATTGCAACCATGAAAACTTGTTGAAGACCCAGCAAGAGTATTTTGTCCCATGGCACTTACCTTATCATCGTGCAGAAGTCAGTGGCACGTCTGCCAGTGCCCTTGCTAGTGGTTTGGCCAAAAAGGATGATAAGAAAGCAGCTGTTGTGTATAACAGATACTATCATGTTTTCAGTGAAGGCGAACTTGAAAGGTTGGTTTCTGGTATGGACAATGCAGTAGTAGTTGATCGTTTTTATGACAAATCAAACTGGTGTATAGTTCTTGAGAAGACGGTGTGA MPQDFDRASRVIKRFCHNSKIFGLPSVVSGSGHHFRLSSAMKEIKVKGGSNADPHPLENEAHAQQLSCANQGCSASNVQCTPEIEKKYVHRVYDAIAPHFSSTRFAKWPKVASFLSSLPLGSLVLDAGCGNGKYLGYNPNCFFIGCDISAQLIKICNERGHEVLVADAVNLPYRTGFGDAAISIAVLHHLSTENRRKKAIEELIRVVKKGGLVLITVWAVEQEDKSLLTKWMPLSEKYVEEWVGPGSPRVRSPTSLALESIPEMNENNSGICLRGDSKENFTGSIPEEKLLPSQCENDLANCNHENLLKTQQEYFVPWHLPYHRAEVSGTSASALASGLAKKDDKKAAVVYNRYYHVFSEGELERLVSGMDNAVVVDRFYDKSNWCIVLEKTV Homology
BLAST of Bhi04G002042 vs. TAIR 10
Match: AT1G36310.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 474.6 bits (1220), Expect = 8.0e-134 Identity = 253/381 (66.40%), Postives = 288/381 (75.59%), Query Frame = 0
BLAST of Bhi04G002042 vs. TAIR 10
Match: AT1G36310.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 474.6 bits (1220), Expect = 8.0e-134 Identity = 253/381 (66.40%), Postives = 288/381 (75.59%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy Swiss-Prot
Match: Q94A09 (tRNA (carboxymethyluridine(34)-5-O)-methyltransferase OS=Arabidopsis thaliana OX=3702 GN=TRM9 PE=1 SV=1) HSP 1 Score: 474.6 bits (1220), Expect = 1.1e-132 Identity = 253/381 (66.40%), Postives = 288/381 (75.59%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy Swiss-Prot
Match: Q07G10 (Alkylated DNA repair protein alkB homolog 8 OS=Xenopus tropicalis OX=8364 GN=alkbh8 PE=2 SV=2) HSP 1 Score: 223.0 bits (567), Expect = 5.9e-57 Identity = 123/309 (39.81%), Postives = 174/309 (56.31%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy Swiss-Prot
Match: Q80Y20 (Alkylated DNA repair protein alkB homolog 8 OS=Mus musculus OX=10090 GN=Alkbh8 PE=1 SV=1) HSP 1 Score: 220.3 bits (560), Expect = 3.8e-56 Identity = 124/314 (39.49%), Postives = 182/314 (57.96%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy Swiss-Prot
Match: A1A4L5 (Alkylated DNA repair protein alkB homolog 8 OS=Bos taurus OX=9913 GN=ALKBH8 PE=2 SV=1) HSP 1 Score: 213.0 bits (541), Expect = 6.1e-54 Identity = 121/328 (36.89%), Postives = 171/328 (52.13%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy Swiss-Prot
Match: Q95K79 (Alkylated DNA repair protein alkB homolog 8 OS=Macaca fascicularis OX=9541 GN=ALKBH8 PE=2 SV=1) HSP 1 Score: 210.7 bits (535), Expect = 3.0e-53 Identity = 119/316 (37.66%), Postives = 168/316 (53.16%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy TrEMBL
Match: A0A0A0LMT8 (Methyltransf_11 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G403730 PE=4 SV=1) HSP 1 Score: 736.9 bits (1901), Expect = 4.5e-209 Identity = 363/393 (92.37%), Postives = 373/393 (94.91%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy TrEMBL
Match: A0A1S3B3R5 (alkylated DNA repair protein alkB homolog 8 OS=Cucumis melo OX=3656 GN=LOC103485433 PE=4 SV=1) HSP 1 Score: 731.5 bits (1887), Expect = 1.9e-207 Identity = 362/393 (92.11%), Postives = 370/393 (94.15%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy TrEMBL
Match: A0A6J1JY21 (alkylated DNA repair protein alkB homolog 8-like isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111489322 PE=4 SV=1) HSP 1 Score: 717.2 bits (1850), Expect = 3.7e-203 Identity = 357/393 (90.84%), Postives = 365/393 (92.88%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy TrEMBL
Match: A0A6J1K1M9 (alkylated DNA repair protein alkB homolog 8-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111489322 PE=4 SV=1) HSP 1 Score: 717.2 bits (1850), Expect = 3.7e-203 Identity = 357/393 (90.84%), Postives = 365/393 (92.88%), Query Frame = 0
BLAST of Bhi04G002042 vs. ExPASy TrEMBL
Match: A0A6J1FLV5 (alkylated DNA repair protein alkB homolog 8-like isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111445406 PE=4 SV=1) HSP 1 Score: 717.2 bits (1850), Expect = 3.7e-203 Identity = 357/393 (90.84%), Postives = 365/393 (92.88%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Wax gourd (B227) v1
Date Performed: 2021-10-22
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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