Moc10g05020 (gene) Bitter gourd (OHB3-1) v2
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.ATGCGCCGGGAGGTGATATTGCCGTTGTTCGTACTCAGCTTCTTCGCCGTAGATCTTGTTCCAACTGCCCATTCGATCTGGTTGAACTTACCTCCGTCTGGAACCAAGTGCGTCTCCGAGGAAATCCAGGGTAACGTAGTTGTTCTTGGCGATTATGTCGTCGTCGCCGATCAGTCTCACGCCCCTACCATTTCTGTCAAGGTGAAGTATAAGAACAAACCCTTTCTTTTTCTTTGATTGCTCACCAACGTCTCATTGATGAGAACCTCGGGGCTTTATTTCGAATTTATTGATTCATTAATTTATTTGGCTGCTGCAAAAATGATTGGATAAATTAAATAAACCTGATGAAATGTTTAATCCACTTCTCGTGATTTGTTGTCGCCATGCTATTTATTATATGTTGATTTGTATTCTCCCTTTTGGTTATGACCGAACCGATCAATTTCGAGTTTTCTCACGATGATGGCTTTGGGATTTTTTCCTCAGCTTCGTTTTTTTTTTTTTTTTTTGTCTTTTCAATTTTGAAGGGAAGTGAATTAATTGGAATACCTAGAGGCTTTGATCTATTTCTTGGGGGCCATGTCCTTGTTCCTTTTCTTGAAGATCAAATTTGTTCTTCTCATTGATGAGCTAGCGAGACCAAAGGATTTTTTCCTGCTAAATTGATTTGGAAATCCAGTACGACAAAGAATGTCTGCCTTTTTCTCTGGCTTGTTGCTCAAGGGAATAAAGGCCTTATGTTCTCCCAACCTACAAGCCTATCCTTGTAGTGAGATGAAAGAAAGAGATCGATTCTCTGAGATTCCTTTTTAGTTTTTTCTTTAACATTACGGAGGTTTTTCATCCAATTTTAGTTTGTTTGTCTTCTGCATTTGGTTGTGAAGATTATTTCAACAGATTGATGGGAACAGATAAAGATAGTTTTAGAATTCACCTTTAGCAATCACAAATATGATTTCTTTTGTAATGAGTGGATGGGAGGATGGTTCATGAAGAAGGTGTTAAAAAATGTTGCAACTTGAGTGTCTGGTTTGGAAGGATGTTCCATGAAGGGCATGATAAAAAGGTGGAAACTGGAGTGTCAGCTTGGCTTCCATTTTGCACTTTACTTTTCCTGTTAATAGTTCAAATCAGGCACAGTCATTTAGGGATTTGGCTCTCTTTTTGTGTCCTAAAATTTCTGTAAGTTTACTTATCATTTTATAGTTTAAACCATTAGGTGTGTCAAAACCTAACCAGTATTGTGTTATTGGCAGAGCCTTGTTTACCGTTCAATTTTTGTCTATAAACGTCAACTATCTGTCGTATCTTTGGTGGATTCCATTGAGGGGCTGTTTTCTAACCTCTATCTTTCTGTTGGACACCTTGGGATGTAATTTCTCTTGAATGATAAGCTTCTCTACTTTGTTTATGGTGCTAGCCCAATATGGTTTGTGCTATTTCTTGGTTGTAACTACTTTTTATCGTTAAGTCAAATTGCCAGGAGAACTGCACTATATGTTTTAGGAATATGGTGAGTCCAATTTCGACTTTCAAGACTAGATTAATAACAATTCTGGTGCAATGTTTTCTTTTGCTTCACGTTTGGAAGGATCTTTTATTCAAGTTTTTGAAGGCCAGCTTCCTTTAATGTCGATTTTGTTATTATTTTGTAGTTCACTGATTGATGGTGGCCTCTTTTAGGTAACATCTCCATACGGGAACAATCTTCATCTCTCGGAGAACGTAACGCATGGTCAGTTTGCGTTTACAACTACTGAGGCTGGTAACTACCTAGCATGTTTCTGGCTGACTGACCTCAAGCATGAAGCTGGGGTAGAGATAAGTGTCAACCTCGACTGGAGAACTGGGATTGCAGCCAAGGATTGGGAATCAGTTGCAAGAAAGGAGAAGATTGAGGTAACTACTTCGTCTTCACCTTTCCATATTTCACTACAACTTGTAACATCCATTCCTAATCCTAATCCCAATATCATTCTCGTATAGGGTGTCGAACTCGAGCTGAGGAAACTCGAGGGTGCAGTCGAAGCCATCCATGAAAATCTACTCTATCTCAAGGACAGGTAACGAGCTATCATAGTGGAACTGATTGCTTCTACCAAAATCTAGCCAATTTGATTTATATGATTTTGGATTCTTACAGGGAAGCCGATATGAGGACAGTGAGTGAGAGAACAAACGCACGAGTTGCGTGGTATAGTATCATGTCGTTGGGTGTCTGCATAGTTGCTTCTATTTTTCAGATATGGTACTTGAAGCGATTCTTTCAGAAGAAAAAGCTTATCTAGAGAAATTGTTGGTGTAATGTTGTTGCAGAAGAGAGTTTGGCAACTTATTTAGTCTTCTTTGGTCATACAAAGTAGAAAAGTTTTGACACCAACTGCAAACCATGCAGGTTTGTTTATATTTTGTATTTCAGTTTCTTGTTTCGCTGTTGATTCGGTTGTTTAAAGCTGAATAGAATCTAGTGAGTTTTGATTCTTGAGACTCATCATTGTTCACTATCCTTTATATGACTAGGAATTTTGGTGAAACTGAAGGACATAAATCATACCAATTACCATGATTTTATCAAATTGTGGCCATATAAGAAATGATAAAAAAAAAAAATAATTAGGTCATTGATTTCAAAATGGTACATTGTTTTCGTTGTTTTTAGGGCTCGTTTCGTAACTTTCTTGTTTTTTTAGTTTTTTAGTTACTTATTTTTGGTTTTTTAGAAACATACGTATTTGGTAACTATTCATCAATTCATGTTTCTCATTCTGTTTTTTTTTTTTTTTTTCTCTTTTTGAGTATAGTATCTTCAAAGGGTTTGTTTATTTGACTTGTGAAAGTTAATATTATTGCACAGATTGAGATTATTATTTACAAATCTGTGGTTTTTTAGGGGAAGAACGACTTCTTTTACTTCAAAATTAGGCCATCCATAAAATTGGAGAATAAAAAAAAAGTAACTTTTTTAATTTTTTTTGTTGGACGTTAAAAATACTATTTTGAGAACATTATTTCTGAAACAAGTCGAGTAGTTAAGAGGGCGCTTGGCTTGGGATTAATGATTAAAAAGAAAAGGTATTTTGGATTTTTTTAAAAACAAATTTTTTTTTTGATGATGAAGTCTTGTTTGGATATTGATTTTCTAAAGCTATTTTTGTTGGTTGAAAATAAAGGTAGGATTTAGGAATAAATGCAATTTTCTAAACTAACCCTAAAAGCATATTCAATATAAACCACACCCTAAAAAAGACTTAAAAGATTTTACTTTATAGTAGTTAAAAAGAAAAAAAGATAACATTTTATAATATGGTGGGTAGTGGAAGATGAGAAAAACATATAAAAAAATTTATCAATGACTTATCTCTTATAATTTATCAACGATAAAATCGTAAGGTATCTTGATTTTGATTGATTGATTAAAGTTTAGAAGGTATATGGTGTGAGAATTAATGATGGAAAAGACATTGAATGTTTTTAGGAATATGAAATAAAATTTATCCTTTTTTTCTTAGAAATATGGTACGAAATTTTTAGCACTGAATGATGATGATATATACAGTTTCAAAAGAACTAAGAAAATAATTTATTCTATATACTTGTTTAAAGTGGTTAAAGTTTGCAATTCTTTTCTTTTTGTTATGGATTCAAATCAAGCACCTTCACCGACTAGGACAAGTGTATTCAGGCTTCAACTCAGGCACCTCGAAAATGAGGAGGGAGCAGAGTAGAGCTCAGCTTGACTTCGACTTAGAGAGCATTCTAACTGGCTTCAAATTGCTAGTAAAAGATCTTGTCAGCTAATGATAGGTACGATTGTCGTTGTGATAGAGCTATGATTCTCAATGTCCTCTGGTATAAAAGGAAATCTCACATTCTCAAAAGTACGTGATCTCTTGCAAGTTAAGTTTTAGAGTGTACGTATAGTCAAGCACCACACCAATATAAGGTTATGTTTACAAGTACCGGCAGAACCTATGTCAGAATCCACACTAGACAACCTAATGGCGTGTCACCTCTGACAGAATTGTACATTAACACTAGTAATTTTAAAAATTTTGCGATTGTTTTCTAACAATTATGATAGAAAACTAAATGAAAAAAAAATCAAATATATCGTTTAACATCTCCAACTAGTTTAATTGAACAATCAAATTATACACATTGATTCAAAATCTTCAAAATAAAAAAATATATATATATTTTGGAATCCCACATAAAACCCATATGGCCATATAGGGGTCCAATTGTCCATCTCATGGGCAATTTTGTCAAATGATGCTTTGAAATTGAAGAAGCTTTTAGAACAAGTTTTCACAAAAAGTTGCCACCACTTCCAAGTGTTAGTCCATTTCACAAACCACATTTTTTTTTATTCTTATTATTTTTTCCAAAACAGTTTCAACACTTCTTTTTATTATTATTATTATCATTATCTTATATAGTTTTTAGATTTTAAAAATCTCAATAAAAACTCCTTTTGGACCCAAAAAAAAAAAAATTACACTATATATCTATCTTCCAAATTTTACTAATGTAACATTAAAAAAAAGCATTTTTTTAATGACTAAATTCTAAAATCAACTTTAAAATGCATTAAATTTTACAATCATCAGTTACATAATCCGGAAGAATCTTTCTTTTTCCCGTTGTGTCGCCTGTAATCTCCAAATTGGAATTCTTAAACCTACTTAGAACACGCTTATCCCGATTCTGCTTCTGATTACATCGTGGATTTTGCACATTGGCCTCATCACTCCCGCTGCCACTGAACCCAAAAATCAGATCAAAATTTAATTCTTTTGCCCATTTAATATTCAACGGACAGTAGAAAAAGTTGCAGAAGGAATTGAGCCAGTGAGCATTCCATTGGATCTCCATTTGTTGGTGGACAAACTTTTGTTTTAAATCCCCCAAGTGGGGTTTCTTTCTTTATTCTCGACTTCCCCTTTACCCCTTCTCTTTAATCCCTTTGCTTGTCTTCAACGTTGCGTTGGGTTGCCCAACAACACCCATCCATTCCAATTCAGTTCGGGAAATTTCTTCTGTAGTTTGAGTAAAATCCCACAAGGGGGATTTGTTTTGGGTTCGATTTTAGCGACTGAAGTTGGGGGATTCTTACAGTCTACAGATGCTCTGCAAATGGGGAAAGGCGAAGAGCAAAATCTGCCGATTCAGCGGCGTCGTGAGGTGGCTGACAGTGGCGATTCTTCTGGGTTTCTTTGTGGCCAATGCTCGATTGCTCTTCGTAGAGTTCGTGAGGAGTTGAATTTCAAGTGTGTGTTCGTTTTGATTCTTGGGTTCTTGGTGTTCGTCCCTGGGTTCTTTTGGCTTCTTCCTCTTCGTGAAAGAAATTCAGGGTTTGAGGCCAAAGACGACATTAAACTCAGTGGTATGTCGTTTCTCTTCCCAAATTTTCTCATCTTCAAACTTGCCAAAGAAATTTGGAAGTGTTGTGATGTTTTGAGAAGATGATTTTGCTTCAATTCAGTTCATCTACCATTTCTTATTCCACACAAATTTCTGATAGTTATTTTGATGATCCTCAGAGACCATTTTCTCAAGGTTTAATCCTGGTTTAAGGTGTTTTTTACTCTTGTCTTGTTTAAGTTTTCCTTGGAGGTTTTGATTTGTTTGATCTGTTGGTAGAAATATTTGAAAATTTGGTGCCTTAGTCCTAGTTCTGCAGAATCTGTTATCTGAGTTTAGTGTAAATTGCAACAGTTCACTTGATGCTGGTTTCATTCTTCCATATGGAATCTAGTTTTCCCAAGGGGAGAAAGTTGAACCAAAACTTTAACTATTTAGAATAGAGCAAGGGCATCATGTTCCTCCCTTACCATTTTGCTTGGGGAATCATATTCTCAGCAGAATCAGATTTGGGACAATCGGTATCGGGCGGATCGGGCATGCAGTCATCCTGGCATACTTTTGAAACTTTTTGCTCTCTAGTTTATTGGATAGCTACAAACTAGACTTTTGCTTTTGCTTCGATTTAGATTTTCTGTGATCTGTTTGCTCTTAGAATCGGATTCGCGAGGATTGGGTCCGTGTTCCTTCCCGAGATTAACGTCGAAACTCTTACTCTAAAGTTTGTTGGATAATGGATCAACTTAGATTCTCTGTGAACTAGTTACTCAGAAAGTTTTTCTCTCTTTTCCAGCTACAGTTCAGGTCTATTTTGTTCTTGAAAAGCCTGTGAAGGAGCTTCTCCCTCACATCAAGAGATTAGAGTTTGATATCAATGGTGAATTAGACATTTCTAATGTGAAGGTTTTGTGCTCTGTTACTCAGTTGGATTTGGATTTTGTAGGCAACGTCGTATATGACTAACAATCATCGTTTATGTTGCCAGGTTTCTGTTCTATCCATGCACGATGTAGGTGAGTCGAACAGGACATACGTGGTTTTTGGTATTCTTTCTGAATACATAACTGCTCCAATAAATCCAGTGTCCTTAAGTCTTGTGAGGTCGACTTTATATGACCTTTTCCTTCGCGAATCCAACCTTACTTTGACGACACCGATCTTTGGACAGCCATCTACTTTTGAAATTCTGAAGTTTCCTGGGGGGATCTCTATAATCCCGTTCCAACATGCTTCGATTTGGCAGTTTCCCCAGATCGTATTTAACTTCACTCTTAGTAACTCCATTTCTGAAGTACTTGACAATTTCGCCAAGTTCAGGAGCGAGCTGACGTTTGGATTGCGTCTCAGGCCTTACGAGGTATTGAACACTATTCGAGTTAAACTTTGCTTTCCAGTTATGGATTGAATTTATCGAATATTAGCTCTAGACCTTGAGATCATTTTATGTATCTGGAGTTGAATAATGGATGTTGGATTCCACTCTTTTTTGTCATACAGAATGTGTATTTCCAAATAACAAACAAGATTGGCTCGACGATGCAACCACCCATAATTGTTCAGGCTTCAATTTCATCAGAGTTGGGGCGCTTAACATCGCAGAGATTACAGCAGTTGGCTGCAATCATCAATGCCTCTCCCGAAAGAAATCTCGGCCTTGATTACTCTGTTTTCGGAGAAGTTAAGAGTGTGAGTTTGTCTTCTTATCTGAAGGGAACCTCTAACTCAATTCCGCCTAGTCTTTCTCCAGCTCCTGCCCCAGCACCGGGCGATCATGCAGAACCATCAAGTGCCCCACGTGCTTCAAGATCATCGTCTCACAGCCGAGTGCAACCACCTGCAAATCGTTCCCCACCTGCAACTTGCAGAGCCTTGTCTCCAGCCCCTTCTGTGGTTCCTGCACATTCCCCTCATCGACATTCAATGCCTCCAAGCTCCTATCCGGATTCTACAAGACTGATTGTTTCTCCACCTCCTGTAGGTTTTACACCATTGTTGCCCCCTGATCTCTTACCTAAGCCAAAGCCTCGTTTCGGGTTCAAACCAGGGTGGAGAAAGGAAAATCCGACTAGAGTTAAGCCTGCCCGGTCTTCTCATCCAGATCATGTAAGCTAGCTTTGATACACTCATTCTGCATCATCTGGTGGTTTTATACACAACATTTGAAGGCATGTAGCTCACACATTTCTTAGCACACACAATCAGCTCATTTATATCTGTCAATCATCTTTCTTTGCAGGATTGA ATGCGCCGGGAGGTGATATTGCCGTTGTTCGTACTCAGCTTCTTCGCCGTAGATCTTGTTCCAACTGCCCATTCGATCTGGTTGAACTTACCTCCGTCTGGAACCAAGTGCGTCTCCGAGGAAATCCAGGGTAACGTAGTTGTTCTTGGCGATTATGTCGTCGTCGCCGATCAGTCTCACGCCCCTACCATTTCTGTCAAGGTAACATCTCCATACGGGAACAATCTTCATCTCTCGGAGAACGTAACGCATGGTCAGTTTGCGTTTACAACTACTGAGGCTGGTAACTACCTAGCATGTTTCTGGCTGACTGACCTCAAGCATGAAGCTGGGGTAGAGATAAGTGTCAACCTCGACTGGAGAACTGGGATTGCAGCCAAGGATTGGGAATCAGTTGCAAGAAAGGAGAAGATTGAGGGTGTCGAACTCGAGCTGAGGAAACTCGAGGGTGCAGTCGAAGCCATCCATGAAAATCTACTCTATCTCAAGGACAGGGAAGCCGATATGAGGACAGTGAGTGAGAGAACAAACGCACGAGTTGCGTGGTATAGTATCATGTCGTTGGGTGTCTGCATAGTTGCTTCTATTTTTCAGATATGTTTGAGTAAAATCCCACAAGGGGGATTTGTTTTGGGTTCGATTTTAGCGACTGAAGTTGGGGGATTCTTACAGTCTACAGATGCTCTGCAAATGGGGAAAGGCGAAGAGCAAAATCTGCCGATTCAGCGGCGTCGTGAGGTGGCTGACAGTGGCGATTCTTCTGGGTTTCTTTGTGGCCAATGCTCGATTGCTCTTCGTAGAGTTCGTGAGGAGTTGAATTTCAAGTGTGTGTTCGTTTTGATTCTTGGGTTCTTGGTGTTCGTCCCTGGGTTCTTTTGGCTTCTTCCTCTTCGTGAAAGAAATTCAGGGTTTGAGGCCAAAGACGACATTAAACTCAGTGCTACAGTTCAGGTCTATTTTGTTCTTGAAAAGCCTGTGAAGGAGCTTCTCCCTCACATCAAGAGATTAGAGTTTGATATCAATGGTGAATTAGACATTTCTAATGTGAAGGTTTCTGTTCTATCCATGCACGATGTAGGTGAGTCGAACAGGACATACGTGGTTTTTGGTATTCTTTCTGAATACATAACTGCTCCAATAAATCCAGTGTCCTTAAGTCTTGTGAGGTCGACTTTATATGACCTTTTCCTTCGCGAATCCAACCTTACTTTGACGACACCGATCTTTGGACAGCCATCTACTTTTGAAATTCTGAAGTTTCCTGGGGGGATCTCTATAATCCCGTTCCAACATGCTTCGATTTGGCAGTTTCCCCAGATCGTATTTAACTTCACTCTTAGTAACTCCATTTCTGAAGTACTTGACAATTTCGCCAAGTTCAGGAGCGAGCTGACGTTTGGATTGCGTCTCAGGCCTTACGAGAATGTGTATTTCCAAATAACAAACAAGATTGGCTCGACGATGCAACCACCCATAATTGTTCAGGCTTCAATTTCATCAGAGTTGGGGCGCTTAACATCGCAGAGATTACAGCAGTTGGCTGCAATCATCAATGCCTCTCCCGAAAGAAATCTCGGCCTTGATTACTCTGTTTTCGGAGAAGTTAAGAGTGTGAGTTTGTCTTCTTATCTGAAGGGAACCTCTAACTCAATTCCGCCTAGTCTTTCTCCAGCTCCTGCCCCAGCACCGGGCGATCATGCAGAACCATCAAGTGCCCCACGTGCTTCAAGATCATCGTCTCACAGCCGAGTGCAACCACCTGCAAATCGTTCCCCACCTGCAACTTGCAGAGCCTTGTCTCCAGCCCCTTCTGTGGTTCCTGCACATTCCCCTCATCGACATTCAATGCCTCCAAGCTCCTATCCGGATTCTACAAGACTGATTGTTTCTCCACCTCCTGTAGGTTTTACACCATTGTTGCCCCCTGATCTCTTACCTAAGCCAAAGCCTCGTTTCGGGTTCAAACCAGGGTGGAGAAAGGAAAATCCGACTAGAGTTAAGCCTGCCCGGTCTTCTCATCCAGATCATGATTGA ATGCGCCGGGAGGTGATATTGCCGTTGTTCGTACTCAGCTTCTTCGCCGTAGATCTTGTTCCAACTGCCCATTCGATCTGGTTGAACTTACCTCCGTCTGGAACCAAGTGCGTCTCCGAGGAAATCCAGGGTAACGTAGTTGTTCTTGGCGATTATGTCGTCGTCGCCGATCAGTCTCACGCCCCTACCATTTCTGTCAAGGTAACATCTCCATACGGGAACAATCTTCATCTCTCGGAGAACGTAACGCATGGTCAGTTTGCGTTTACAACTACTGAGGCTGGTAACTACCTAGCATGTTTCTGGCTGACTGACCTCAAGCATGAAGCTGGGGTAGAGATAAGTGTCAACCTCGACTGGAGAACTGGGATTGCAGCCAAGGATTGGGAATCAGTTGCAAGAAAGGAGAAGATTGAGGGTGTCGAACTCGAGCTGAGGAAACTCGAGGGTGCAGTCGAAGCCATCCATGAAAATCTACTCTATCTCAAGGACAGGGAAGCCGATATGAGGACAGTGAGTGAGAGAACAAACGCACGAGTTGCGTGGTATAGTATCATGTCGTTGGGTGTCTGCATAGTTGCTTCTATTTTTCAGATATGTTTGAGTAAAATCCCACAAGGGGGATTTGTTTTGGGTTCGATTTTAGCGACTGAAGTTGGGGGATTCTTACAGTCTACAGATGCTCTGCAAATGGGGAAAGGCGAAGAGCAAAATCTGCCGATTCAGCGGCGTCGTGAGGTGGCTGACAGTGGCGATTCTTCTGGGTTTCTTTGTGGCCAATGCTCGATTGCTCTTCGTAGAGTTCGTGAGGAGTTGAATTTCAAGTGTGTGTTCGTTTTGATTCTTGGGTTCTTGGTGTTCGTCCCTGGGTTCTTTTGGCTTCTTCCTCTTCGTGAAAGAAATTCAGGGTTTGAGGCCAAAGACGACATTAAACTCAGTGCTACAGTTCAGGTCTATTTTGTTCTTGAAAAGCCTGTGAAGGAGCTTCTCCCTCACATCAAGAGATTAGAGTTTGATATCAATGGTGAATTAGACATTTCTAATGTGAAGGTTTCTGTTCTATCCATGCACGATGTAGGTGAGTCGAACAGGACATACGTGGTTTTTGGTATTCTTTCTGAATACATAACTGCTCCAATAAATCCAGTGTCCTTAAGTCTTGTGAGGTCGACTTTATATGACCTTTTCCTTCGCGAATCCAACCTTACTTTGACGACACCGATCTTTGGACAGCCATCTACTTTTGAAATTCTGAAGTTTCCTGGGGGGATCTCTATAATCCCGTTCCAACATGCTTCGATTTGGCAGTTTCCCCAGATCGTATTTAACTTCACTCTTAGTAACTCCATTTCTGAAGTACTTGACAATTTCGCCAAGTTCAGGAGCGAGCTGACGTTTGGATTGCGTCTCAGGCCTTACGAGAATGTGTATTTCCAAATAACAAACAAGATTGGCTCGACGATGCAACCACCCATAATTGTTCAGGCTTCAATTTCATCAGAGTTGGGGCGCTTAACATCGCAGAGATTACAGCAGTTGGCTGCAATCATCAATGCCTCTCCCGAAAGAAATCTCGGCCTTGATTACTCTGTTTTCGGAGAAGTTAAGAGTGTGAGTTTGTCTTCTTATCTGAAGGGAACCTCTAACTCAATTCCGCCTAGTCTTTCTCCAGCTCCTGCCCCAGCACCGGGCGATCATGCAGAACCATCAAGTGCCCCACGTGCTTCAAGATCATCGTCTCACAGCCGAGTGCAACCACCTGCAAATCGTTCCCCACCTGCAACTTGCAGAGCCTTGTCTCCAGCCCCTTCTGTGGTTCCTGCACATTCCCCTCATCGACATTCAATGCCTCCAAGCTCCTATCCGGATTCTACAAGACTGATTGTTTCTCCACCTCCTGTAGGTTTTACACCATTGTTGCCCCCTGATCTCTTACCTAAGCCAAAGCCTCGTTTCGGGTTCAAACCAGGGTGGAGAAAGGAAAATCCGACTAGAGTTAAGCCTGCCCGGTCTTCTCATCCAGATCATGATTGA MRREVILPLFVLSFFAVDLVPTAHSIWLNLPPSGTKCVSEEIQGNVVVLGDYVVVADQSHAPTISVKVTSPYGNNLHLSENVTHGQFAFTTTEAGNYLACFWLTDLKHEAGVEISVNLDWRTGIAAKDWESVARKEKIEGVELELRKLEGAVEAIHENLLYLKDREADMRTVSERTNARVAWYSIMSLGVCIVASIFQICLSKIPQGGFVLGSILATEVGGFLQSTDALQMGKGEEQNLPIQRRREVADSGDSSGFLCGQCSIALRRVREELNFKCVFVLILGFLVFVPGFFWLLPLRERNSGFEAKDDIKLSATVQVYFVLEKPVKELLPHIKRLEFDINGELDISNVKVSVLSMHDVGESNRTYVVFGILSEYITAPINPVSLSLVRSTLYDLFLRESNLTLTTPIFGQPSTFEILKFPGGISIIPFQHASIWQFPQIVFNFTLSNSISEVLDNFAKFRSELTFGLRLRPYENVYFQITNKIGSTMQPPIIVQASISSELGRLTSQRLQQLAAIINASPERNLGLDYSVFGEVKSVSLSSYLKGTSNSIPPSLSPAPAPAPGDHAEPSSAPRASRSSSHSRVQPPANRSPPATCRALSPAPSVVPAHSPHRHSMPPSSYPDSTRLIVSPPPVGFTPLLPPDLLPKPKPRFGFKPGWRKENPTRVKPARSSHPDHD Homology
BLAST of Moc10g05020 vs. NCBI nr
Match: KAG6600353.1 (Transmembrane emp24 domain-containing protein p24delta3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 957.2 bits (2473), Expect = 7.5e-275 Identity = 519/682 (76.10%), Postives = 564/682 (82.70%), Query Frame = 0
BLAST of Moc10g05020 vs. NCBI nr
Match: KAG6576973.1 (Transmembrane emp24 domain-containing protein p24delta3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 921.8 bits (2381), Expect = 3.5e-264 Identity = 513/722 (71.05%), Postives = 557/722 (77.15%), Query Frame = 0
BLAST of Moc10g05020 vs. NCBI nr
Match: XP_022149235.1 (uncharacterized protein LOC111017707 [Momordica charantia]) HSP 1 Score: 871.7 bits (2251), Expect = 4.1e-249 Identity = 447/447 (100.00%), Postives = 447/447 (100.00%), Query Frame = 0
BLAST of Moc10g05020 vs. NCBI nr
Match: KAG7014992.1 (Pathogenesis-related protein 5, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 766.5 bits (1978), Expect = 1.9e-217 Identity = 454/721 (62.97%), Postives = 495/721 (68.65%), Query Frame = 0
BLAST of Moc10g05020 vs. NCBI nr
Match: XP_008456084.1 (PREDICTED: uncharacterized protein LOC103496125 isoform X1 [Cucumis melo]) HSP 1 Score: 665.2 bits (1715), Expect = 5.9e-187 Identity = 352/459 (76.69%), Postives = 386/459 (84.10%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy Swiss-Prot
Match: Q6IDL4 (Transmembrane emp24 domain-containing protein p24delta3 OS=Arabidopsis thaliana OX=3702 GN=At1g09580 PE=1 SV=1) HSP 1 Score: 282.3 bits (721), Expect = 1.4e-74 Identity = 139/204 (68.14%), Postives = 165/204 (80.88%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy Swiss-Prot
Match: Q9FVU0 (Transmembrane emp24 domain-containing protein p24delta4 OS=Arabidopsis thaliana OX=3702 GN=CYB PE=1 SV=1) HSP 1 Score: 253.4 bits (646), Expect = 7.0e-66 Identity = 125/204 (61.27%), Postives = 159/204 (77.94%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy Swiss-Prot
Match: Q8RWM6 (Transmembrane emp24 domain-containing protein p24delta5 OS=Arabidopsis thaliana OX=3702 GN=At1g21900 PE=1 SV=1) HSP 1 Score: 238.0 bits (606), Expect = 3.0e-61 Identity = 126/198 (63.64%), Postives = 149/198 (75.25%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy Swiss-Prot
Match: F4J4Y0 (Transmembrane emp24 domain-containing protein p24delta6 OS=Arabidopsis thaliana OX=3702 GN=At3g10780 PE=1 SV=1) HSP 1 Score: 186.8 bits (473), Expect = 8.0e-46 Identity = 98/189 (51.85%), Postives = 125/189 (66.14%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy Swiss-Prot
Match: Q9LQY3 (Transmembrane emp24 domain-containing protein p24delta9 OS=Arabidopsis thaliana OX=3702 GN=At1g26690 PE=2 SV=1) HSP 1 Score: 156.0 bits (393), Expect = 1.5e-36 Identity = 77/189 (40.74%), Postives = 123/189 (65.08%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy TrEMBL
Match: A0A6J1D566 (uncharacterized protein LOC111017707 OS=Momordica charantia OX=3673 GN=LOC111017707 PE=4 SV=1) HSP 1 Score: 871.7 bits (2251), Expect = 2.0e-249 Identity = 447/447 (100.00%), Postives = 447/447 (100.00%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy TrEMBL
Match: A0A1S3C2E0 (uncharacterized protein LOC103496125 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103496125 PE=4 SV=1) HSP 1 Score: 665.2 bits (1715), Expect = 2.8e-187 Identity = 352/459 (76.69%), Postives = 386/459 (84.10%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy TrEMBL
Match: A0A0A0L6J0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G214050 PE=4 SV=1) HSP 1 Score: 664.1 bits (1712), Expect = 6.3e-187 Identity = 353/459 (76.91%), Postives = 386/459 (84.10%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy TrEMBL
Match: A0A5A7TCD6 (Synaptojanin-1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold252G00170 PE=4 SV=1) HSP 1 Score: 661.0 bits (1704), Expect = 5.4e-186 Identity = 350/458 (76.42%), Postives = 384/458 (83.84%), Query Frame = 0
BLAST of Moc10g05020 vs. ExPASy TrEMBL
Match: A0A6J1J689 (uncharacterized protein LOC111482968 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111482968 PE=4 SV=1) HSP 1 Score: 620.5 bits (1599), Expect = 8.0e-174 Identity = 340/454 (74.89%), Postives = 369/454 (81.28%), Query Frame = 0
BLAST of Moc10g05020 vs. TAIR 10
Match: AT1G09580.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 282.3 bits (721), Expect = 1.0e-75 Identity = 139/204 (68.14%), Postives = 165/204 (80.88%), Query Frame = 0
BLAST of Moc10g05020 vs. TAIR 10
Match: AT1G57620.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 253.4 bits (646), Expect = 5.0e-67 Identity = 125/204 (61.27%), Postives = 159/204 (77.94%), Query Frame = 0
BLAST of Moc10g05020 vs. TAIR 10
Match: AT1G21900.1 (emp24/gp25L/p24 family/GOLD family protein ) HSP 1 Score: 238.0 bits (606), Expect = 2.2e-62 Identity = 126/198 (63.64%), Postives = 149/198 (75.25%), Query Frame = 0
BLAST of Moc10g05020 vs. TAIR 10
Match: AT1G10790.1 (BEST Arabidopsis thaliana protein match is: hydroxyproline-rich glycoprotein family protein (TAIR:AT3G56590.2); Has 78 Blast hits to 78 proteins in 11 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 78; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 208.8 bits (530), Expect = 1.4e-53 Identity = 128/329 (38.91%), Postives = 189/329 (57.45%), Query Frame = 0
BLAST of Moc10g05020 vs. TAIR 10
Match: AT3G56590.1 (hydroxyproline-rich glycoprotein family protein ) HSP 1 Score: 189.5 bits (480), Expect = 8.8e-48 Identity = 141/399 (35.34%), Postives = 204/399 (51.13%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (OHB3-1) v2
Date Performed: 2022-08-01
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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