MS011262 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCAAGCTCCGATGAACCAAAGCTCCAACTGTTCCTCCAGTGGTTACAGGTAACGACGGTAAACTTATGCTTAGCTTTCCAAATAGGGAATCAAAAGAAAACGATGGCAGAAAATTAAGCATTTTACTGCCAAGTCGAGTCTATATAGGTGTGTGGCTGAGTTATGAATAAGAACGTTTCCGCTTTCCATTAATTGGGATTCAGTTCAGGTTAATGGAGCACAACTTCGAAGTTGCACCATCAAGTCCAGCGATTCAAGCAAAGGGTGTGGACTTTTTACTGCTAACGATGCTCCTGATGGTAATCTGAACTTTATATATTCTGTTTATCCAAAATGAAATGTATTTACGCGGGTAAATTTATGAGGCGATATTTGAGTCCGAAACCAAATTGCTTCTTAAATTCTTTAGCTTTCGCTGTTGTTTGGTTGTTTGAGTGTTAGATATCCGGCAAGAACCTCTTGAATTGCTATGTTGACAATTATCATTTTTTTTATCAGTAACCATTTTGGAATTTATTTTATCTTCTTAGATGTGCCTTGCAAATAATTCTAACTGACACTCACAGTAATATGTATACATAAATTGCATAAAAATGAAATCCACCCAACTTGATATTGGTGGAACGAAACAATTTAAATCTGGTTCTTCCAGTGGAGGTTGGTGGTTGAGTTCCTGCAGGGTGGCTCTAGTAACAGCATGGAAGAAAACTTTTCAGCGGCCTTTTTGTGGTATTGGTAAGTGTAGAAGGAAAGAAATAGAGGAATATTCCAACACTTAGAAAAGGAGGCGTCCACCTGGGAAAACATAGTTCTTACTGCTGCTTGTTGGTTGAAATTTCATTTTGTAATTACATCTTGACGTATGTATGCACCAATTGAAAATCCTTTTTTTGATTTCCTTGTGCAATGAAAGTTTAGTTTCTCGTTGAAAAAGAAAATCTACCAAACTTGCTTTTGGAATCATATTGGTTGGTAGTAGTACTTTAGGGTAACTTTTGTGATAACTTCTCAGTTTCTCAGGGAAGAGGATATAAATCAGTTTCTTACTTGCAGGAGTTCTATTAGTCGTTCCACTAGATTTAGCAATTACTCCAATGAGAGTGTTGCAAGATCCTCTTTATGGACCAGAGTGTAGAGCAATGTATGAAGAAGGTGACGTAGATGATAGATTTTTGATGATTTTATTCCTCATGGTTGAGCGGCTTCGAGAAAATTCTTCATGGAAACCGTATGTATCTTTGACATTCTCAAGTTATGTTTTCTGATAAAAAGTCCATCTAAAATGATCATTTATTTCTGTGTCTTATGGTTGGTGAGATCTCAGTGATTTATTATTAGGTACCTCGATGTTCTTCCTACGACATTTGGGAATCCACTTTGGTTTACTGATAATGAAATTTTGGAGCTGAAGGGTACCACACTTTATCGAGCAACTGAGTTGCAGGTGCAAACCTTATTGTTAGTTCATACAAAATTGTTTTTTTTTTTTGACGAGAAACTGCACTTTCATTGAGAGAAATGAAAAAAGAAGATACACAAAAAGGGCATAAAGAAAACAGCCCGGCAAAGGGAATCCTTATAAGAACGGACTCCAATCCAAAAGAATAAGACCTAACGGATAATTACAAAAGGCCTTAGTCGCCGAACCCCTTAGGGAAGTATTAAACCTAATGAGGTCCCAAACATAATCCACAAATTTCTCCACATCCATAAACAACCTATTGTTCCTCTCCAGCCAGATACTCTATAAAGAAGCCAGAAAGCACACTTGCCAGAGAAAGCGGCCTCTATCACGAAAGGGGGGAGAATAACAACACTTCCTCCATCATCATCCTGCAAACTCTGGAGCGAAACCAAGCAATACCAAAACCTCTAAAAAAACGACACCATAACTCCTGCGCAAACTGACAGGACCACAATAAATGCTCAAGATCTTCCGCGGCATTCCTACACAGAACACACCACTGCGGGCCCAAGCAAAAGGAAGACATCCTTTGAATCCGATCCAAGGTATTGACTTTACCAAGAAAGACTTGCCACCCAAAAAACTTAATCTTCTTTGGAATTTTAATCTTCCAAAGAGAGGTAAACCAAGGGGTCACCGGGGACGAAGAAGAGGAAGAAGAAAGAGAAGACAGGGAAATCAGGACTTGGAAAAAAGAGCTACAAGAAAACCTCTCGAGGGGTTGGGAATCCACACCCTCACGTCTTCCCTCCCAGAAGATAACGAAACACTAGATAACAGATCAAGTAATGCGGCAACCTCTAACGATTCCCGATCAGTTAAAGCCTGAGAGAGAACCAGCGAAATGGACGAATCCTCTTCCCCAAAATTCAACACCTCGGCCACGGAAAAGAGTTTCTTGTTAGACAGAAAGTAAATCCGAGGGAACGCAAGACTCAAGGGTTTATCGCCTGCCCAAGTATCCTCCCAAAAGTAAGTATTAAGACCCTCCCCCACAGAAACTCGAAGAGAAAGAGAGAAAACGGGGAAACACAACACAATAGGTTTCTAGGGATTAAAATTGCTCACCTTAGACCCACCTGCAGGAATCCAGTCGAACGGATGTCGCCCATACTTACTCACAATAATCTTTCGCCACAAGGCGTTAGGTTTGTGGAAGAACCGCCATAACCATTTGGCCAGGAACGCCTCGTTCCTAAGTCTCAAATTTCCAATACCCAGCCCTCCCGCTTCCAAAGGCTTGGACACCTCTTTCCAATTAACAAGATGAGCCCCACCCCCCTCCTCCACATCTTCCCAAATAAAATCCCTCATAATCTTCACTAACCCTTCACTCACTTTCACAGGGATCCTGAAAAGGGACAGATAGTAATTCAGAATGCCTCTCAAAATAGACTAAATTAACGTGAGTCTCCCACCTTTCGAAAAGAAAGCCTTCTTCCACGAAGAGAGGCGTTTCTGAAACTTTTCCAGCACCGGCGTCCAAAAGATAGCAAGCTTAGGGTTATGACCAAGAGGAAGACAGAGATGAGGGAAACTTGCCAACATTGCACCCAACAAGGGTCGCCCACTCACTAAGTTTACCATCATCACAATTAATGCCCAATAAAGAACTCTTACCCCTGTTAATCTTCAGACCTGAAATAGCTTCAAAGAAACCAAGAAGGCCATTAAGATTCTCAAACGCCCTAAAATTATCGGAGCAGAAGGTATCGTTAGCAAACTAGAGATGAGAGAGACGAGTTTTCTCCCTCCCCACTTCAAAAGCTTCCAAAGCCCCTTTCTCCACACTAACTGAGATAAGCCTACTCAGGATATCCACCACAATAATAAACAAGAAAAGGGACGAAGGATCACCATGCCGGAGGCCTCTAGAGGCTAGAATTTTTCCCGTAGGTCTCCCATTCACCAGGATAGAGTAGTTAACCGATCTAATGCAATTCCAGATCCAACCTCTCCATTTGTACCCAAAACCTTTCTTCCTCAAAACCTTATCCAAAAAATCCCAGTCCACATGGTCGTAAGCCTTTTCGAAATCAATTTTAAAAATAACACCCTCTCTCTTGCTCTTCCTATAATCCTCAATCGCCTCATTAGCAATCAACACTTGATCCAAGATTTGTCTCCCAACAACAAAAGCCCCTTGCATCTCCGAAATGGTAGTAGGCATAACCTTTTTTACCCTATCAGCAAGAGTTTTTGCAATTATTTTATAGAGGCTCGTTACCAAACTAATGGGTCTAAACTCTTTCACTTTGACAGCATTCTCCTTTTTCGGGATTAGACACACATAGGTCTCGTTCAATGAAGAGTCAATCACACCCCTCTCATGAAACTCACGAAATACTTTCATCAAATCCTCCTTAACTCCATCCCAGTTCATACAGAACTGTTGTGACCCTCTCATCACCTAAAGAAATGGAGTCAAATTATAGATATTGTTGGCTACCGCTTATGATCAATTTTAATGGTCACCTGCATGTATCTGAAGGTTGACATTGAAAATGATGGTTAAAGTAATTATATTTATAGTTCTACATCTATCGCACCATTAAGTAATATATATTTTGTTTATGCTGAAGTATACCGTACATGTTCTCATCCAAGCCTGGGTTAGTTTATATAATATGCAGTGCATGAGTTTACAAGAACTTATTTGTCATGCGGACCATAGGTAATAATAGATGACCAGAAAACCACAGACCCAACCCCAGGCAAAAAAAAAATAATAATAATAATAATCAATAAAAAAAAGGAAAGAAAGAAAGATGAAATAAGCCATTTTTGGCAATACATTTACCTGTAATATTCTTTGGGTAAGTTTCATGGAAATATGAAGTCTTATTTTCATTCAATGTGCCACCAATATATTTTGTGATAGAATCTTACCATCTGATGAAAACCACATGGTTATATGAATTATTATGTTCTGCATTACAATTTTTTGGTGATGTCTCATACCAGGTTTACCTGTTAACCAAAAGCCAGTTTTGTTTTGCAGAAAAAAACATTGCAGTCATTATATGAAAATAAAGTGAAGAAATTGGTTAATAGACTGTTGACTCTTGATGGGCTTTCAGTAAGGTCTGCAAACTTGGATGACATTTTCTCCTTTGAATTCAAACTGATCCTTTGGAAACAATTCTTTCTTTATTGTATTTCCTAGGTAAAGTTTTCCTTATTTGATATATCATCATATCTTCATTATTCTTTAAGTACCTTATTTTAAATTTCTATGGGAAATTTGAGGTTCTCTTACGTACAACCTCCCCCAAAAAAAAAAAAAAAAAGGAAAAATTTCTAGCATTCTGATACTATGATTTTTTTTAAATACTTTTTCCTGTTTAGGGGCCAGTTAGTGAATTTGTGCCAAATGACCTGATGTACTGTGTTCTGTGAGCTCATTTTGAACTGCATGGATCAGTTCCAATAATTTGAAGTTTGACTTTGCATTATCTGCCTCTGCATTTTTGTACCAGTGTATCACTATGCTGTTAACAGATGCAAAGACAAAAGATTTTGTGTAATATTATTCTTTTATTTTTCAGGGAGGTGTGCTTTGAAGATTTCCTATGGTATGTAACATAGTAGGATAGTTTTATCTTTATTTTGTTTAACGAGCCTCTGCTTAACTATCCATTTGCATTTTGTCCAAGATTGAATATTATTGCTTTTCTAGGGCAAATTCCATATTTTGGGCACGTGCTTTGAACATTCCTCTTCCACATGCTTATGTGTTTCCTAAAATTCAAGAAGAGACTGAAAGTGTCTCCTTGATCAGAGAAACTATTGATTCTACCATTTCCGAGGTGCAGTTGGCTTCCACTAAGGATGAAGATGGTGCTCAATCTTATACTTATATAGTTTGAAGTTTGTTTTTGGGGTATTATGTGGTGGAATAAATTTATGTGTACTAACAACTAGGTATATCTCAGGATGTGAAGATCACCGGATGATTGATGGCACCGTTAGTGGAAAAACATCTGGGTCAACAAAAGTAGAAACTGTCTGGGTGGAGGGTCTTGTTCCCGGAGTTGACTTTTGCAATCATGGTGTGTAGAAACTCGTCAGATATTACAACAGTTATCTTGACCTCTTTGTTCGCATTTGTATTTATTTTACATATTCTTAATAAATTCTGTTCGGATGATGTTTAATAGCAGCCATGGATGAACTATTTTTTTCTTCCATCAAGAGAATCATGCTATAAAAATAGATTGCAAATTATTTTCATTTCTAAATGAAAAGTTTGTATCTTGTTAAAAAAATAGATTGCAAATTGAATCGCAAATTGAATCAAAGATGACTCCAGGAATAGAGTACAATTCTTTTAAGTGTATGAGTTATAATTTCACAAAAGAAGGAAGAAGAAAAGAAAAAGGAAAATGTAGGGAGTAATAATTGCATGCAGGCTGAAATGTTAGGGCATTAGTTGTAATTTACTTTAATAAATATAGCTTTACATCTACGTAAATTCAGTAAAATGCACTAAGTATAGTGCTTATGTCTACAATAACTATTTACTTAATATATAAAGTTACATGTTGATATCAAATTTTTAAGGAAGAAACATGAAAGTTAATTAGAGTATTCTTGTGTATTTAGTATTTACTTAAGAACATGTTGATTGTTGACTAAACTCTTCTTCTATGTCCTATGTTCGAGTCTCCCTTTCTTTACAAAGGCATTGCTTGAGCAAGCACATACATTTAGCAAATTGTATACAAAATATATATTGTAAATAATGGATAGAGTAAATTATAATTATGTACTGGTGATGATATATTTCTGTCTTCTTTCTCGAAGATGCATTATGTGTGGTAAGGAGAGTGAAGATATAAAGGTTTGTCTCTTTAGTGCCTTTTGTTTTGGCCTCCTCTCTTGCTGAGCAAGCTGTTTTTTGCCTTTGGCTAGGGAGATGCCTGTTTAAACTTTATTTTCATGGAAGTACCGAAGAGATTGAGGGAAAACAATAGGAAAATCATTATTCTTTAACTTGCCGTCTAGAAATTATTTGGAGCAGTAGAATGGAATGAATTCTTTGGTTTTTGCTTGTAAATATTGTATGATAGTAGACATGATTGTTAAATTCTCATGGTCGTCAATCTCTGACTAAATCTCATTCGTTCAGATCTGAAGGCAAGAGCAACATGGGAAGTTGATGGAACAGGATCCATTACTGGAGTTCCTTTCTCAATGTACCTTCTCTCTGGTATTGTGATTTTTCTGGTCTTGTAATGGATTTTCATCTTCAACGCTCATGTTGGAATTCCAGATCCTTTCTCCACCCATTTATTTAATCTTGCTATTTCACGTGTTTTAGAGGACTCCTAATATTCAAATTGCTTTGAACTTTGGTGATGAAAAGATTAAATACTTGTACTTTGTTGGAAAAGGGAGGATCTTTTTATTCACTTTCATCATATTCATTTTTTCTGACGAGGCTCATGAAACCATCTTTTCCTCATTGTCATTTCACTCTTCAATTCTCATTCAGTATAATGTTAGTGAATTTTCTAACAGTTCTTTATTTTCCACGTCCCAAAAAGTCGATGCAAGGTCTTCGGGAATAGAGGAAGTTTCAATCAGCTATGGTAACAAGGGGAATGAGGTATCGATTTTTATTTTCAAAGACGATCTTGTCCGTTCCATGTAGCATGAATTTTGTTGTTGTCTTTTTTATTATTAGTAAGGTATAATATAAGGAAACAACTTTATCTATATATCAATGAAAAGTTGTTTCTTGTTCCAAAAAGAAAAATATATATATATAAGGAAACAGCTTTAGGTTACTCTACCTTAAATTGTTGCATGTGCGGTTCACTTCTGTGTAATTTCCTTTTTGATATGGTTAGATATTTTTCCTACTTTGGCAGGAGCTCCTTTATCTATATGGATTTGTCATTGAAAATAATCCAGATGATTATCTCATGGTAATGCTATCTATCACACTATGCCTACTACACAAAGTATCCTATCCTTTTCTTGTAAGATAGGGATGTGAGCAGGTTGATTTGGGCCTGAAGATTTAGGAAAGTTAAAAAAAATTATGATACTTTAAAAAATATATATTATATATATTTTTTATTTTTAATAAAAAAACCAAACTGGTTAAACGAACTGTCTGGAGAACTGGCCATACACTGATAAACTGAATCAGGAGAATCATTTTCAGTTCGGAGATCAAACAAACAAAACCAAACCAATCAGACCAACCCAGATCAGTCGGCTTTTCAATTTTTCTTTACACCTTCCATTTGCAGTGATCTGCTTCTGTAAATACGAAAATCGATGGTTTGATGGATAATATGCAGGTACACTATCCTTTAGAAGCAATCCAGAATGCTTCCTTTTCTGAACCGAAGATGCAGCTCCTTGAAGTACAGGTTAGCTATTATAACTTATATATCACATAGCTTGCGTCGTGTTGGATGAACATTATGTTTAACATGCCATATATATTACTATTTGTAAATGTGCAGTCGATTCATTGTCTGGACAAAAATTTTCAATCTGATGTTTATGAATTTGTATTTTTTCAACTCCTGCACATAAACAGAAGGCTGAAATGAGATGCCTTTTACCAAGAAAATTGCTGGATCATGGATTTTACCCACAAAACACTTCAAACGTGAAAGGAAATGATGTCTGCAGCAACAGAGCTTACAATTACAGCTGGAGTGGTCAGCGCAAGATACCTTCTTACTTGGACCAGCTGATTTTCCCCGAGAAATTTTTAACTGCCTTGAGAACTATATCTATGCAGGAGGATGAGCTTATGCAGGTTTCATCTTTGCTGACAGAGGTAGTGCCTTGGAACTTTTGGGTCCATATAAACCCATGTGTTGAACCTCCTTGTTGCTTGGTTGATACAATGCTCAAAAAATAATTATCGGGAAAGTAGATTAATGGTTTGAATGTAAGATTGTATGAACTTGTATGAACTTGAAGAATAATTTGCTTAAGCTAATTGTATGAACTTGAAGAATAATTTGCTTATCAAGCTTAACATATCTCCTTACTTTTTATCTGCTACCTGTACTTATTTTTCTTCTGTAAGGTTGTTGGACCTGATGAAGATAGGCAACCCACTGACACTGATGTCCAGGCAGCAGTCTGGGAGGCTTGTGGCGATTCTGGAGCCTTGCAACTACTCGTAGATCTTCTTCAAAAGAAGTAACTGCTAGATTGTATTTTAGAACTGTTTGTTCACCTGAACTTAAATATTTAGAAAAATAATGTACTGAATAACCTACCGAAACTCTATGATTGAGAAAGCGCTTACAGGCATCTCTTTTCGAGGTAACTGAGAGGTTATCCATGTTTCAGGATGATGGATCTCGAAGAGGGCACGGGAACTCTGGACAGAGACACTAAGCTGCTAAAAGAGGTCCAAGTGATTGAAAGCACAAACATAAATGGCGCTTGTCTGGAATCTGCAAGGTACCCTTTTAATGGTGATTAAATTTAACCTGATAATGGCTTTTATGGCTCTGAGACCTGCAAATCAAATACTCTCTAGTTTTCTAGATGAGTTTGTGTTTGGATGGGAAACAGGGAGAGGTTCATCAACACCAAATTGAATTCTCTGAAAACTTTAGACCAAGAATGTTACCCATAGGCCATAACTATATGTATGTATAATGTTTACGTGACAGTAATGGGTTCAAATTCTTCTGTTATAGAAAGATCTGAAAGCAAACTCTTCCATCTTTGATTGTAATTATTACCTTACAAATCCATTAGTTCTTAGTGTCTTCTCTTTCCAGTCTCCTTCTCGGCTGCAGCGAAGGGTCAGATGACGGAAGGCAACAAAAATTGATGAGCAGGAACCAGTGGTCTAGCATTGTTTATCGCCAAGGTCAGAAGCAGCTAACCAGTCTCTTTCTGAAGGAGGCAGAGCACGCTTTGCAATTGTCATTAAGTGAGGGAAAC ATGGCAAGCTCCGATGAACCAAAGCTCCAACTGTTCCTCCAGTGGTTACAGGTTAATGGAGCACAACTTCGAAGTTGCACCATCAAGTCCAGCGATTCAAGCAAAGGGTGTGGACTTTTTACTGCTAACGATGCTCCTGATGGAGTTCTATTAGTCGTTCCACTAGATTTAGCAATTACTCCAATGAGAGTGTTGCAAGATCCTCTTTATGGACCAGAGTGTAGAGCAATGTATGAAGAAGGTGACGTAGATGATAGATTTTTGATGATTTTATTCCTCATGGTTGAGCGGCTTCGAGAAAATTCTTCATGGAAACCGTACCTCGATGTTCTTCCTACGACATTTGGGAATCCACTTTGGTTTACTGATAATGAAATTTTGGAGCTGAAGGGTACCACACTTTATCGAGCAACTGAGTTGCAGAAAAAAACATTGCAGTCATTATATGAAAATAAAGTGAAGAAATTGGTTAATAGACTGTTGACTCTTGATGGGCTTTCAATTGAATATTATTGCTTTTCTAGGGCAAATTCCATATTTTGGGCACGTGCTTTGAACATTCCTCTTCCACATGCTTATGTGTTTCCTAAAATTCAAGAAGAGACTGAAAGTGTCTCCTTGATCAGAGAAACTATTGATTCTACCATTTCCGAGTTTGTTTTTGGGGTATTATGTGGTGGAATAAATTTATGTGTACTAACAACTAGGTATATCTCAGGATGTGAAGATCACCGGATGATTGATGGCACCGTTAGTGGAAAAACATCTGGGTCAACAAAAGTAGAAACTGTCTGGGTGGAGGGTCTTGTTCCCGGAGTTGACTTTTGCAATCATGATCTGAAGGCAAGAGCAACATGGGAAGTTGATGGAACAGGATCCATTACTGGAGTTCCTTTCTCAATGTACCTTCTCTCTGGTATTGTGATTTTTCTGGTCTTTTCTTTATTTTCCACGTCCCAAAAAGTCGATGCAAGGTCTTCGGGAATAGAGGAAGTTTCAATCAGCTATGGTAACAAGGGGAATGAGGAGCTCCTTTATCTATATGGATTTGTCATTGAAAATAATCCAGATGATTATCTCATGGTACACTATCCTTTAGAAGCAATCCAGAATGCTTCCTTTTCTGAACCGAAGATGCAGCTCCTTGAAGTACAGAAGGCTGAAATGAGATGCCTTTTACCAAGAAAATTGCTGGATCATGGATTTTACCCACAAAACACTTCAAACGTGAAAGGAAATGATGTCTGCAGCAACAGAGCTTACAATTACAGCTGGAGTGGTCAGCGCAAGATACCTTCTTACTTGGACCAGCTGATTTTCCCCGAGAAATTTTTAACTGCCTTGAGAACTATATCTATGCAGGAGGATGAGCTTATGCAGGTTTCATCTTTGCTGACAGAGGTTGTTGGACCTGATGAAGATAGGCAACCCACTGACACTGATGTCCAGGCAGCAGTCTGGGAGGCTTGTGGCGATTCTGGAGCCTTGCAACTACTCGTAGATCTTCTTCAAAAGAAGATGATGGATCTCGAAGAGGGCACGGGAACTCTGGACAGAGACACTAAGCTGCTAAAAGAGGTCCAAGTGATTGAAAGCACAAACATAAATGGCGCTTGTCTGGAATCTGCAAGCGAAGGGTCAGATGACGGAAGGCAACAAAAATTGATGAGCAGGAACCAGTGGTCTAGCATTGTTTATCGCCAAGGTCAGAAGCAGCTAACCAGTCTCTTTCTGAAGGAGGCAGAGCACGCTTTGCAATTGTCATTAAGTGAGGGAAAC ATGGCAAGCTCCGATGAACCAAAGCTCCAACTGTTCCTCCAGTGGTTACAGGTTAATGGAGCACAACTTCGAAGTTGCACCATCAAGTCCAGCGATTCAAGCAAAGGGTGTGGACTTTTTACTGCTAACGATGCTCCTGATGGAGTTCTATTAGTCGTTCCACTAGATTTAGCAATTACTCCAATGAGAGTGTTGCAAGATCCTCTTTATGGACCAGAGTGTAGAGCAATGTATGAAGAAGGTGACGTAGATGATAGATTTTTGATGATTTTATTCCTCATGGTTGAGCGGCTTCGAGAAAATTCTTCATGGAAACCGTACCTCGATGTTCTTCCTACGACATTTGGGAATCCACTTTGGTTTACTGATAATGAAATTTTGGAGCTGAAGGGTACCACACTTTATCGAGCAACTGAGTTGCAGAAAAAAACATTGCAGTCATTATATGAAAATAAAGTGAAGAAATTGGTTAATAGACTGTTGACTCTTGATGGGCTTTCAATTGAATATTATTGCTTTTCTAGGGCAAATTCCATATTTTGGGCACGTGCTTTGAACATTCCTCTTCCACATGCTTATGTGTTTCCTAAAATTCAAGAAGAGACTGAAAGTGTCTCCTTGATCAGAGAAACTATTGATTCTACCATTTCCGAGTTTGTTTTTGGGGTATTATGTGGTGGAATAAATTTATGTGTACTAACAACTAGGTATATCTCAGGATGTGAAGATCACCGGATGATTGATGGCACCGTTAGTGGAAAAACATCTGGGTCAACAAAAGTAGAAACTGTCTGGGTGGAGGGTCTTGTTCCCGGAGTTGACTTTTGCAATCATGATCTGAAGGCAAGAGCAACATGGGAAGTTGATGGAACAGGATCCATTACTGGAGTTCCTTTCTCAATGTACCTTCTCTCTGGTATTGTGATTTTTCTGGTCTTTTCTTTATTTTCCACGTCCCAAAAAGTCGATGCAAGGTCTTCGGGAATAGAGGAAGTTTCAATCAGCTATGGTAACAAGGGGAATGAGGAGCTCCTTTATCTATATGGATTTGTCATTGAAAATAATCCAGATGATTATCTCATGGTACACTATCCTTTAGAAGCAATCCAGAATGCTTCCTTTTCTGAACCGAAGATGCAGCTCCTTGAAGTACAGAAGGCTGAAATGAGATGCCTTTTACCAAGAAAATTGCTGGATCATGGATTTTACCCACAAAACACTTCAAACGTGAAAGGAAATGATGTCTGCAGCAACAGAGCTTACAATTACAGCTGGAGTGGTCAGCGCAAGATACCTTCTTACTTGGACCAGCTGATTTTCCCCGAGAAATTTTTAACTGCCTTGAGAACTATATCTATGCAGGAGGATGAGCTTATGCAGGTTTCATCTTTGCTGACAGAGGTTGTTGGACCTGATGAAGATAGGCAACCCACTGACACTGATGTCCAGGCAGCAGTCTGGGAGGCTTGTGGCGATTCTGGAGCCTTGCAACTACTCGTAGATCTTCTTCAAAAGAAGATGATGGATCTCGAAGAGGGCACGGGAACTCTGGACAGAGACACTAAGCTGCTAAAAGAGGTCCAAGTGATTGAAAGCACAAACATAAATGGCGCTTGTCTGGAATCTGCAAGCGAAGGGTCAGATGACGGAAGGCAACAAAAATTGATGAGCAGGAACCAGTGGTCTAGCATTGTTTATCGCCAAGGTCAGAAGCAGCTAACCAGTCTCTTTCTGAAGGAGGCAGAGCACGCTTTGCAATTGTCATTAAGTGAGGGAAAC MASSDEPKLQLFLQWLQVNGAQLRSCTIKSSDSSKGCGLFTANDAPDGVLLVVPLDLAITPMRVLQDPLYGPECRAMYEEGDVDDRFLMILFLMVERLRENSSWKPYLDVLPTTFGNPLWFTDNEILELKGTTLYRATELQKKTLQSLYENKVKKLVNRLLTLDGLSIEYYCFSRANSIFWARALNIPLPHAYVFPKIQEETESVSLIRETIDSTISEFVFGVLCGGINLCVLTTRYISGCEDHRMIDGTVSGKTSGSTKVETVWVEGLVPGVDFCNHDLKARATWEVDGTGSITGVPFSMYLLSGIVIFLVFSLFSTSQKVDARSSGIEEVSISYGNKGNEELLYLYGFVIENNPDDYLMVHYPLEAIQNASFSEPKMQLLEVQKAEMRCLLPRKLLDHGFYPQNTSNVKGNDVCSNRAYNYSWSGQRKIPSYLDQLIFPEKFLTALRTISMQEDELMQVSSLLTEVVGPDEDRQPTDTDVQAAVWEACGDSGALQLLVDLLQKKMMDLEEGTGTLDRDTKLLKEVQVIESTNINGACLESASEGSDDGRQQKLMSRNQWSSIVYRQGQKQLTSLFLKEAEHALQLSLSEGN Homology
BLAST of MS011262 vs. NCBI nr
Match: XP_022133062.1 (uncharacterized protein LOC111005749 isoform X1 [Momordica charantia]) HSP 1 Score: 1063.1 bits (2748), Expect = 8.5e-307 Identity = 548/602 (91.03%), Postives = 554/602 (92.03%), Query Frame = 0
BLAST of MS011262 vs. NCBI nr
Match: XP_022133064.1 (uncharacterized protein LOC111005749 isoform X2 [Momordica charantia]) HSP 1 Score: 942.6 bits (2435), Expect = 1.7e-270 Identity = 487/541 (90.02%), Postives = 493/541 (91.13%), Query Frame = 0
BLAST of MS011262 vs. NCBI nr
Match: XP_038881849.1 (protein-lysine N-methyltransferase EFM1 isoform X1 [Benincasa hispida]) HSP 1 Score: 922.5 bits (2383), Expect = 1.8e-264 Identity = 477/599 (79.63%), Postives = 508/599 (84.81%), Query Frame = 0
BLAST of MS011262 vs. NCBI nr
Match: XP_038881850.1 (protein-lysine N-methyltransferase EFM1 isoform X2 [Benincasa hispida]) HSP 1 Score: 918.7 bits (2373), Expect = 2.6e-263 Identity = 477/599 (79.63%), Postives = 508/599 (84.81%), Query Frame = 0
BLAST of MS011262 vs. NCBI nr
Match: KAG7034462.1 (Ribulose-1,5 bisphosphate carboxylase/oxygenase large subunit N-methyltransferase, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 916.0 bits (2366), Expect = 1.7e-262 Identity = 467/596 (78.36%), Postives = 509/596 (85.40%), Query Frame = 0
BLAST of MS011262 vs. ExPASy Swiss-Prot
Match: Q43088 (Ribulose-1,5 bisphosphate carboxylase/oxygenase large subunit N-methyltransferase, chloroplastic OS=Pisum sativum OX=3888 GN=RBCMT PE=1 SV=1) HSP 1 Score: 67.4 bits (163), Expect = 6.2e-10 Identity = 44/142 (30.99%), Postives = 74/142 (52.11%), Query Frame = 0
BLAST of MS011262 vs. ExPASy Swiss-Prot
Match: Q08961 (Ribosomal lysine N-methyltransferase 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=RKM1 PE=1 SV=1) HSP 1 Score: 65.5 bits (158), Expect = 2.4e-09 Identity = 73/292 (25.00%), Postives = 122/292 (41.78%), Query Frame = 0
BLAST of MS011262 vs. ExPASy Swiss-Prot
Match: P94026 (Ribulose-1,5 bisphosphate carboxylase/oxygenase large subunit N-methyltransferase, chloroplastic OS=Nicotiana tabacum OX=4097 GN=RBCMT PE=2 SV=1) HSP 1 Score: 63.5 bits (153), Expect = 9.0e-09 Identity = 49/179 (27.37%), Postives = 82/179 (45.81%), Query Frame = 0
BLAST of MS011262 vs. ExPASy Swiss-Prot
Match: Q9XI84 ([Fructose-bisphosphate aldolase]-lysine N-methyltransferase, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=LSMT-L PE=1 SV=1) HSP 1 Score: 62.0 bits (149), Expect = 2.6e-08 Identity = 48/162 (29.63%), Postives = 80/162 (49.38%), Query Frame = 0
BLAST of MS011262 vs. ExPASy Swiss-Prot
Match: P38732 (Protein-lysine N-methyltransferase EFM1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=EFM1 PE=1 SV=1) HSP 1 Score: 55.1 bits (131), Expect = 3.2e-06 Identity = 88/367 (23.98%), Postives = 133/367 (36.24%), Query Frame = 0
BLAST of MS011262 vs. ExPASy TrEMBL
Match: A0A6J1BVK2 (uncharacterized protein LOC111005749 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111005749 PE=4 SV=1) HSP 1 Score: 1063.1 bits (2748), Expect = 4.1e-307 Identity = 548/602 (91.03%), Postives = 554/602 (92.03%), Query Frame = 0
BLAST of MS011262 vs. ExPASy TrEMBL
Match: A0A6J1BUW6 (uncharacterized protein LOC111005749 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111005749 PE=4 SV=1) HSP 1 Score: 942.6 bits (2435), Expect = 8.1e-271 Identity = 487/541 (90.02%), Postives = 493/541 (91.13%), Query Frame = 0
BLAST of MS011262 vs. ExPASy TrEMBL
Match: A0A5A7SJ36 (SET domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold541G00480 PE=4 SV=1) HSP 1 Score: 915.2 bits (2364), Expect = 1.4e-262 Identity = 470/596 (78.86%), Postives = 506/596 (84.90%), Query Frame = 0
BLAST of MS011262 vs. ExPASy TrEMBL
Match: A0A1S3CHD9 (uncharacterized protein LOC103500952 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103500952 PE=4 SV=1) HSP 1 Score: 906.0 bits (2340), Expect = 8.4e-260 Identity = 465/596 (78.02%), Postives = 506/596 (84.90%), Query Frame = 0
BLAST of MS011262 vs. ExPASy TrEMBL
Match: A0A5D3C897 (SET domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold202G001950 PE=4 SV=1) HSP 1 Score: 902.1 bits (2330), Expect = 1.2e-258 Identity = 463/596 (77.68%), Postives = 506/596 (84.90%), Query Frame = 0
BLAST of MS011262 vs. TAIR 10
Match: AT1G01920.2 (SET domain-containing protein ) HSP 1 Score: 638.6 bits (1646), Expect = 4.8e-183 Identity = 341/595 (57.31%), Postives = 426/595 (71.60%), Query Frame = 0
BLAST of MS011262 vs. TAIR 10
Match: AT1G01920.1 (SET domain-containing protein ) HSP 1 Score: 627.1 bits (1616), Expect = 1.4e-179 Identity = 342/617 (55.43%), Postives = 426/617 (69.04%), Query Frame = 0
BLAST of MS011262 vs. TAIR 10
Match: AT1G14030.1 (Rubisco methyltransferase family protein ) HSP 1 Score: 62.0 bits (149), Expect = 1.9e-09 Identity = 48/162 (29.63%), Postives = 80/162 (49.38%), Query Frame = 0
BLAST of MS011262 vs. TAIR 10
Match: AT3G56570.1 (SET domain-containing protein ) HSP 1 Score: 46.2 bits (108), Expect = 1.1e-04 Identity = 44/185 (23.78%), Postives = 73/185 (39.46%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (TR) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
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