MC09g0760 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5CDSpolypeptideutr3 Hold the cursor over a type above to highlight its positions in the sequence below.TTTTGCTTTGATTAAAATTTGAAAATATTTGTAAAAGATTAATGACAATGGATCTTAATTTTAAAAAATATTCAAAAATAGAAACCAAAAAACAAGTGTTCTTCTCAAAATTTCACCATCTAATTCCATGGAATAATAACTGTGAAGAAGATCGTTACATTTTAGTTAAACCTCAAATATAATATAAAATGATGAAGAAGAAGCAAACAAAAACCAAATATTCTTCAAAAAAAAAAAAAAAACAACAAAAACCAAATAATTAAATGCAGTACCAAGTCCATTATTAAGCTGTAAACGAAAAACTTGACTGCATCATCTTCTCCAAGTCATCTCCAAATTCTCATCAATGGCGATTCCACTTTCCAACTTCCTCTTCCCAATCGCAAAACCACACCATCATTTTTCAACCTCGAATCGTCAGTTGAAAGGTTTCAAATCAAGAGCAAGGAAAATTGATCCATCGCCATGCCGAGTAATTTCAAGAACCAGAGACTCATCCTCCTCCTCCTCCTCCATGAGTACAGAGCTTGCAAAACAAAGAAACAGATGCAAACTTACCGAGGACGAAGACGCGACGGAAATCGCCGACATCTGGCGAGAAATCCACGGCGGCGGCGATTGGGCTGGCCTACTCGATCCGATGAGCGATCTTCTTCGATCCGAGTTGATTAGGTACGGCGAAATGGCTCAATCCTGCTACGACGCCTTCGATTACGATCCGTTCTCGAAATACTGCGGCAGTTGCCGATTCACTCGCCGGAAATTCTTCGACAACCTCGGAATGGGAGACGGAGGCTACGAGGTGACGCGGTACCTCTACGCGACCTCGAACATCAACATGCCTAATTTCTTCAAGAAATCGCGGTGGCCCAAGGTGTGGAGCAAGAACGCGAACTGGATCGGATACGTCGCCGTATCGAACGACGCGCAATCGGAGCGTCTCGGCCGCCGCGACATCGTCGTCGCGTGGAGAGGCACCGTGACGCGGCTCGAATGGATCGTCGATTTGATGGATTTTCTCAAACCTGTCGCCGCCGGCAAAATCCCCTGCCCTAATTCCTCAGTGAAGGTCGAGTCAGGGTTTCTGGATCTGTACACCGATAAGGATGAAGGCTGCGGCTACTGTAGATTATCGGCGAGAGAGCAGATTCTGACGGAGATGAAGCGGTTGCTGGAGAAGTACGGCGGCGAGGAGGTGAGTATCACGATCACCGGCCATAGTTTGGGGAGCGCTTTAGCGGTGTTGAGCGCTTATGATATCGCGGAAACGGGTCTGACCCGAATGGGAGATGGGCGGGTCGTACCCGTTTGCGTTTTCTCGTTTTCGGGGCCCCGAGTTGGGAATGTTTCGTTCAAGGAACGACTTGAAGGACTAGGAGTGAAGGTAATCAAGCTAATAAAAGAAAAGTAAAATTAAAAATAGGTTTCAACATTTTCAATTTAACTAAAATAAGATAGGTTTTTAATTGAAAAATATACCTCTAAAATTGGATTAAAATTTTGATTGATGTTTTTGTTTTTTATTTTTTAAAATTATATTTGTTTATTTATACATTTGAATTATTATCTAAAATTTTAAAAACAAAAATAAGTTTTTAAAAAACTATCTCTTTTGGTTTTCGAATTTTGACTTAGGTTTTAAAAACGCCTTTAAAATGTAGATAGTAAAATGAAAAATACATGGATAAAATTAGTATTTATAAACTTAATCTTCCAGAGTCAAAAATCAAATTATAAGAGATTATTAGGTTAAATTATAAATTTAGTCTCCAAATAAATATTTAAACCTGATCTAATTTAAGGAATGAAATTATGAATTATGATAAAAATGAACAGGTATTGAGGGTGGTAAATGTTCATGACGTGGTACCAAAATCACCAGGATTTATATTCAACGAAGGCATACCAAGGATGGTGATGAAGATCGCAGAGGAATTACCGTGGAGTTATTCACACGTGGGCGTAGAGTTGAAACTCGATCACAAAATTTCACCCTTCCTAAAGCAAACAAACGACCCCGTTTGTGCCCATAATTTGGAAGCTCATTTACATTTACTTGACGGGTAACTTTCCTATCTCTTTTCTTTTCATTTATTTACGTTTAAATATTATTTTGATTTTTATATATTTTAGCTCGATTTATTTGAGTTAATATTATGTTTTTGTTTGTTTTAGTTCACGTACTTTTTAAATTTTTTAACAATAACTGTTTTTTATTATAGATCATTTTCTGAAATGTAGTTATAAATTTATACTAAAATATTTTTATTTTATATAAAAATTTGTGCTATATCTTTTAGATAAAAACGGTCATTTTTTGAAAATACAGGAATTAAAATGAACAAAAGTTAAAAGTATATATGACCCTAGAATGTTTGAAAAGTAGAGAAGAAGAAAAAGAAAAAAAAGAACAAAGACAAAACTACACTCAAAATAGTATTTAAACTATTTCTTTTTTACCTCTTACTTTATTTTGATTTTAAGTTCTCTCTTATTTGATCTTAAAATGCATAGATAGGTAAAAAAAAAAAAAAGGTTTTCATTACATACATTGCTTTTTAAGTGTAACTTATTTATTTATTAATATATATTTTTTTACTTTGGAATGTATCTTTGATGCATAATCTTTGCATAAAAGTTTAAAGAATGGTTGATCAATTATAAATTTAATTTCTAAGTATTGATATAGTTATGTTTATGGAATCCTTTTGATTAGATTAGCAGGAGATTGATTTAACACGACACGACACAACAAAGTAGAATGACAAATAAAATAAGAGTCGGAGATAATTTTATATTAAATTTAACAAAATACTCTTAAATTTAGAAATATGAATGGTATGCGAGTGTATACTTCAAAGAATTAAGTCATAATTTATGAACCAAAACAAAGTATAAAAATTAAAGTTGAATAAATCCAAAAATTAATAAATAATGAATTTAATAAAAATATAATAAAATTAAGATATCATCACAGACAACTATGCATGACAATGACATAATATAATAATAGGGAAGTAGGTTGGATAGCGTATTAAGTGAAATAAAAATATGAAAATCTTTGCTTCTTATCAGCGATCATGAAATTTTTTCCTTACCACTGTTGAAATATTAAAAAATTATTAATTTAAAAAAAAATATTTATTTTTACATTTCTCTATTGTTAAACATTAGTGGTGAAAATAGATGAGGAGGTAAGTATTTTCCTATTGCAATAACTCATGCAAAACATAATTTGAGGAGAGATTTATTTTAATATTAAAAGGTATAAAGAATATTATCTTTTAGAGAAATCTAGTCTTGCTCGCATTTCGAGATTGTTAGATTGGACAAAGAATATAATATTAACAAAAATAAAAAAATTGGGTATTTATCTTTTCGGTCGCGGTCATTGAAAACTATTATCAGGTTTGAGCATACTTGTGACTTGATAATAGTTATCCATATCCACGACTAAGAAAAGTGAAAAAGGGGTTGGACCCCTGACTCAGTTGTGTTGGATAATTTGTTATTTGGCCTTTATATTTGATCGAAAATGTGGAGTTCTATACCTTTGAAATATTATTTATTTATAATAATAATTTTTATATAATCATATATAATAAATAATATTATTAAACTCAATAGGCTTAATCCAAACAAAAAAGTATTTTCTTTTAGGGAAAAAAAAATAAAAACAAAACAAAGGCTAACTTTTCAAATTAAAGAAGATGGATGGAGAGACTAAGGTAGAGTTTCTTGTAATTTATTTTATGATGTATTTTTATTATGATTTTGTGGCGGTGAGCATGATTAGAAAAAATATATAATATTATGTTAGGTTCTTTTTTTTTTTAATTGTATGCATTTTCCCTGTTAAAAAATTATTGGAATGAAAATGATTGCTTCATTAAAATATTTTAATTATTTTTAAATAATTTTAAAATATTTATTAAAATATTAAGATTGATTATTCAAATAATATATTATATTATGTTTAAAAAAAAATTCACCGCGGTAGCTGCTCCCTCTCATCTCGATTACGTCCTCTTTGACTTGAGTATCCTGGAGCAAAATCAGATATACTTTTTCTTGGATTTAATGAAGTCCGAGACAGCCCTTTGGGAAGCTCGTCCATTCAAAGCAAACCTGTTGTCCATTATACTTAGTTTTAAAAGTCAAATTATCATATCATTAAAAATGATGGATATATCATATGCGTGGGAACGTTTTTTTTGGTATCTAATAGATTTATAATATATAAAATATTTTTATTTCTTAATTTTTTTAAGATTCAAGATTTATTAGATACAAAATTCAACTTTTATCTAAATAGGTTATTTGACTTTCTAATTTTGTGTCTAATAAGTTTTAAATTTTAAAAAATGTATAATACCTTTGGTACTTTTCAATTTTGTGTCTAATAAGTCTTTAAATTTTGAAAAATGTATAATATGTCTTAAATTGAAAATTTAGGGACCTATTAGACACTACATTTAAAGTTTAGGGATCAATTGCACAAACTTTGAGAGTTTAAGGACTAAATTTGTAACTTTACCGGATATAAATTTTATTTTAGTCTACATGAACTTTCAGAAACTACTTTATTTTTTGTTTAATAGGTCCTTAAATTTTGAAAAATGTCTAATAAGTTCTTAAGGTGAAAGTTTAGGGACCTATTACACAAACTTTGAAAGTTTAAGGACTAAATTTGTAACAAAACGAGGTATAAATTTTTTTTTGTCTATGAACTTTGAAAACCTACTTTATTTGTGTCTAATAGGTCCTTACATTTTGAAAATTTTCTAATAAGTTCTTATTTGAAAGAATTTATTAGAAATAACATTCAAAGTTTAGGGACTTGTTACACAAACTCTAAAGGTTCAATGACTAAACTTGTAATTTAACAATGTATAAATTTTATTTTAGTCTATTGAACGTTCAAAAAGTACTTTCCTATTTGTTAATGCAGAAATTTGGCTTCTTGGGATCCGGCAAAATTCGCACCAACAAATACGAAAGTACTTTTTGAAAGTTCATAGACTAAAATAAAATTTATACATCAAAATAACCCTAAGACCGGTGTGGCTCCTACCATACGGGCTCAGATGCTTAAGTTAGTATCAAAGTAGTCGAAAGTAGAGAGTAGGGTATTTAGGCATACCTTTAGGGTTTGGTTCACCATCTTATTTATAGAAGTCAAATCCTAGTCCTTTTAGGAATTATGGAAGTCGAATCTCAATCCCTTTAAGATTTACATAAATCCAACCCTAGTGTGCTTAGGAGATTTGGACTCCTAGACCCATGCGTTTCGTCGCGGGCCTAATGAATCGGGGGTCGAAATAAGATAGGTTCGGGTTGGGCAACACAAAGATCGAGAGAGAAACAAAGGAGGTTCTCGGCCAATGGTCGAGGTCACCTCGACGCCGACCACTGGCCAGTTGTGGTCAGCCCGGGTGGACTCGATCGACAGGCTTCGGTGCTTGCCCGGTTCGTGTGCCTGAATCTCCCTCAAGTCGTTTGGTCTGTTCTTCTTTTATCTTCCCAAAATAGTAGCTCCAGTCTCAAAATAATAGAAGGCAAAAGCATGTTAAGGCTTATATATTGAGAATACATGTTGCTTGGTGTGGATGACTATTTTGTGGAATAGTCCTCTTTTCGATTGCTATTAGTTGGGCTGGCTTTAGTAGTCCCCATTCTCTTTGTTGTAGTTAGCTACAATCAAGTTTCCTGGTTTTGCTATATGATTAGTTTTAACCGTCAGATTTTGGTCTTGGGATCTAACTTTTGGTAGGCCAATGATACTTCTTTTGGGTTTTTGATCTATTTGGCTTTTGTTCATGATTTTATACCCCAGAGTTTACTCTCGGGTTTCAAACTTATTTGGCTTTCGCCAATGGTTTTATACCCTGAATTTAGTTGGGACCCTTGAGTTTCTAACATATTTGGTGTCTGTCGGTTTTTTACTCTGAGTTTAATCAATACTCTTGGTTTCTAACTTATTTTGGCTTTTGCCAAATAGTTTTATACCCTGAGTTTCGTTGATTGGTTTGACATGCCTGCTTTTGTTTTAACCTTGCCGGGCCTGTACGCATGTCTCTCAGCAACTTTGAATTTCTTCCTCAGTTTCACTGGCTTTTTAGCTTATCGGCCTGCTTCTAGGTTTGCCCCAATTCGAACTCTTTGACCAGCTGTTGATTAGCTTACCATGCCCCAACTTGAGGAGTTTTCATTTAGGATAAAAGATGAATGCTCAAGTAATTAATTAAACTTCACATGCTATGATTAGCCAAAAGCAAGTAAATATTCTCTGAAACATAGGATCAAATATAATTTGAAACGAAGTAAACGATAGCAATTATAAAAAGTTATACCTAAACTTATTAAATTATTAACCAGGTAAAAACGAGAGAAATTAGATATTGTCCTGTAATGTATGTTTGCCAGGCATCTCCGCGATATTCGTTGCTCTCTTCTAATTCTTGCTCGAACGAGACTGTTGTTGGAGGATATTTCTTCAGAGGGCCTCGTTGATCTGATTGGTATTGAGTTTTGTCAATATCTCGTTTTGAATGGAGTAGCTTTTCTTTGCTCGTATATTTTTTAGCTTAACTTAATGCTTTTGAGAAAGTTGATGGGCTATTTTTCCAAGGGAGAACAATAGTTCTTCATCCTTTACCCCAGATATGAAAGCGAGTAGCGATGTTTCGCCAATAAGATATTTGACTAGTAGTTTTTCTTCGTCGAAGTGAGCCACATATTCTCCAAGGCTCCCCGTTGATTTCTGTTTCACAATAAGGAGGTAGGTCACAAGTTGACTCCTATTCAGCCTTTCGATGAATTGTATGATAAATGCCATGGCCAGTTCTCTGAAGGAAAAGATTGACTTTCTTCTCAATTGTTGAAACCATATGTGGGTTATGCCGGTTAACGTGAAAGAGAATACCGTGCACCTGATTGCTTCTGTTATTCTGTAGAGGTACATCCATTCCTTATATGTGCACAAGTGGTCGATAGGATCTGTTGAGCCGTCATATTGCTTTATAGTAGGGAGTTTGAACTTTGGAGGGATTTTTCCTTTCATTATCTCGTCCGCGAATGGCAAATATGCCTGATCTACGGTGTCTTCGAGATTGTACCCCCTATTTTTTCGTTTTCCATACATCTCTACGATTCCTCTGCATGCTCATGCTGTCTTAGTGATTTTTCTTTGTTGGTCGAGGTGTTCTCGAGGCTTGGTTGGGTTTTTCGTCCATTGCTGCGTGTCGCTAACTTCTACGGTTTCGTCATTACCAGATCCTGTACGTTAAGAGTATCGTTCTGTTGTTTGTTGTTGCCTCAAATTATTCGTTTACTTTGTGCTAAAGGATTCTTTGTTGATTTTTCTACATCTTCAATAGCAAGAGCTTTGCCTTTCCGCGGATCCCGGATGAGTGTAGGTAGCCTCTCTTCTTGTTGCTCAAGTCTTTTGAGAAGGAGAGATATGCTTTGATGCATTCCTGCGACCTTCTCTTCTAAAGCGGCTCATCTGCTCTTGTGCTATTTGAGATTTTCAATTAGTCGCTCTTCCTGTCTTATGATATGTCGTCTTGCGTCACCCAAGACCTGCTTAGGATGCTGTCGACTTGTTTCACCCTCGACTGTCTTGAGTAAAGGCAGCCCCTGAGTCGTGTGACTTTCGTCGTCAGCATGTTGTGGTCTACTTCCAGAATTCATGTCGATTTGTTTCTCCCAAAAAAGCTAGTTTGAAGATCTCCTCGGATCCGAGCAATTCTCTGTCAATTCGTAGTCAATTGTTTTGACGTTTAGATCTTAATCGTCCCCACAGACGGCGCCAATTGTTGATGCAGAAATTTGACCTCATGGGATTCCACCAAACTCGAACCAATCTTATAGAATAAAAGGGATCTTCATGACTTGCAAAACCAAAATAACCCTAGAGTCACACCAACATCGATGCTTAAGTTAGTATCGAAGTAGTCTAGGGTAGAGATTAGGGTATTTAGGCGTACCTTTAGGGTTTGGTTCCCCTCTTATTTATAGAAGTCAAATCCTAGTCCTTTAGAAATTATGGAAGTCGAATCCCAATCCCTTTAACATTTACATAAGTCGAACCTTAGTGTGCTTAGGAGATCTGGATTCCTGGGCCCATATGTTTCGCCGCGAGCCTAATGTCGAATCAGGGGTCGAAATAAGATAGATTCGGGTTGGGTGGCACAAAGGTCGAGAGAGAATTAAAGGAGGTTCTCGGCCAATGGCCGAGAACACCTTGACGCCGAGAAAGTCTCGGCGCTGAGGCCTGGTCGGTGCCAACCACTGGCCAGCTGTGGTCAATAGGCTTTGGTGCTTGCCCAGTTCGTGCGCCCGAATCTCCCTCCTGTCATTTGATCCGTTCTTCTTTTATCTTCCCTAACAGTATTCAAGTTTTCAGAAAAGTTCATTTTATATAAAGTTTTAGGTGGATTCTATTTTGGTGGTTGAACTTTAAAAATGTCTATTTTAGTATCTAAACTTAAAAATATATAAAAGTATATTTATTATGGTGCTTATATTTATTTAGCTTTTGGCAAGTATTGAGTGAACATATGTTAGGTGGCAAAATATTAGTAATAATATATAATTGATAAATATATTATTAACTTTGAAAAAAAAAAGTAGTAATGACAAAATTGATTTTTTTAATATAAAATTTAGAAATTAAAATAATTTTGTATTTTTTTAAGAAAAATATTAAAATAAATGTATTTTTCAAAGTATAAGGACAAAAATGAAAATTGTTTGAAAGTTTAAACACAAATAATAATAATATTATTATTTATTATTATTACTACTACAATTTTAAGAACCAAAATAAAAGAATTTTAAAAGTTGAGAGACTCTAATAATATTTCTTTTTACACGTTTATAAATTAAAATAGATATTTTAAAAAGCATAAGGATGGAAAATAAAAGCATCTTCCATTAAAATGAGGTCTAAAACTTACTATCAAACATATAAAATGCAATTATGAGGGCATTTAACCTAAATTATATAGTAGATGTAGGATGATTGAGTTTGGTATAAACTTGGGAAAAATTGTTCTTAACTTAAAAAAAAAAAATTGTATGGTGTTTGAAATATTTAAAAAAATTGTATATAAAAGTAATTGGGTGGAACAGATACCATGGGAAGGGCGGTAGGTTCGTGCTGGCGAGCGGGAGGGATCCGGCGCTGGTGAACAAGGCTTGTGATTTTCTTAAGGATCATTACTTGGTCCCACCAAATTGGAGGCAAGATGAAAATAAAGGTATGATAAGGAACAAGGATGGCCGTTGGATCCAGCCTGATCGATCCAAATTTGACGATGATCATCCTCAAGCATTTACCCTCACATTTTGACTCTTAAATCCTAAAATTCTTTCCAATTTTTTAAATTGACTTTGTTTTGTGGGTTTTAAATTGAGTGTTTGTGGAATTAAAATATAATTTTTTTTTTCTTTGGCATCTTTTTAGGGAGTAAATATCATGAACCTGAGTTTTTTAGCATTC TTTTGCTTTGATTAAAATTTGAAAATATTTGTAAAAGATTAATGACAATGGATCTTAATTTTAAAAAATATTCAAAAATAGAAACCAAAAAACAAGTGTTCTTCTCAAAATTTCACCATCTAATTCCATGGAATAATAACTGTGAAGAAGATCGTTACATTTTAGTTAAACCTCAAATATAATATAAAATGATGAAGAAGAAGCAAACAAAAACCAAATATTCTTCAAAAAAAAAAAAAAAACAACAAAAACCAAATAATTAAATGCAGTACCAAGTCCATTATTAAGCTGTAAACGAAAAACTTGACTGCATCATCTTCTCCAAGTCATCTCCAAATTCTCATCAATGGCGATTCCACTTTCCAACTTCCTCTTCCCAATCGCAAAACCACACCATCATTTTTCAACCTCGAATCGTCAGTTGAAAGGTTTCAAATCAAGAGCAAGGAAAATTGATCCATCGCCATGCCGAGTAATTTCAAGAACCAGAGACTCATCCTCCTCCTCCTCCTCCATGAGTACAGAGCTTGCAAAACAAAGAAACAGATGCAAACTTACCGAGGACGAAGACGCGACGGAAATCGCCGACATCTGGCGAGAAATCCACGGCGGCGGCGATTGGGCTGGCCTACTCGATCCGATGAGCGATCTTCTTCGATCCGAGTTGATTAGGTACGGCGAAATGGCTCAATCCTGCTACGACGCCTTCGATTACGATCCGTTCTCGAAATACTGCGGCAGTTGCCGATTCACTCGCCGGAAATTCTTCGACAACCTCGGAATGGGAGACGGAGGCTACGAGGTGACGCGGTACCTCTACGCGACCTCGAACATCAACATGCCTAATTTCTTCAAGAAATCGCGGTGGCCCAAGGTGTGGAGCAAGAACGCGAACTGGATCGGATACGTCGCCGTATCGAACGACGCGCAATCGGAGCGTCTCGGCCGCCGCGACATCGTCGTCGCGTGGAGAGGCACCGTGACGCGGCTCGAATGGATCGTCGATTTGATGGATTTTCTCAAACCTGTCGCCGCCGGCAAAATCCCCTGCCCTAATTCCTCAGTGAAGGTCGAGTCAGGGTTTCTGGATCTGTACACCGATAAGGATGAAGGCTGCGGCTACTGTAGATTATCGGCGAGAGAGCAGATTCTGACGGAGATGAAGCGGTTGCTGGAGAAGTACGGCGGCGAGGAGGTGAGTATCACGATCACCGGCCATAGTTTGGGGAGCGCTTTAGCGGTGTTGAGCGCTTATGATATCGCGGAAACGGGTCTGACCCGAATGGGAGATGGGCGGGTCGTACCCGTTTGCGTTTTCTCGTTTTCGGGGCCCCGAGTTGGGAATGTTTCGTTCAAGGAACGACTTGAAGGACTAGGAGTGAAGGTATTGAGGGTGGTAAATGTTCATGACGTGGTACCAAAATCACCAGGATTTATATTCAACGAAGGCATACCAAGGATGGTGATGAAGATCGCAGAGGAATTACCGTGGAGTTATTCACACGTGGGCGTAGAGTTGAAACTCGATCACAAAATTTCACCCTTCCTAAAGCAAACAAACGACCCCGTTTGTGCCCATAATTTGGAAGCTCATTTACATTTACTTGACGGATACCATGGGAAGGGCGGTAGGTTCGTGCTGGCGAGCGGGAGGGATCCGGCGCTGGTGAACAAGGCTTGTGATTTTCTTAAGGATCATTACTTGGTCCCACCAAATTGGAGGCAAGATGAAAATAAAGGTATGATAAGGAACAAGGATGGCCGTTGGATCCAGCCTGATCGATCCAAATTTGACGATGATCATCCTCAAGCATTTACCCTCACATTTTGACTCTTAAATCCTAAAATTCTTTCCAATTTTTTAAATTGACTTTGTTTTGTGGGTTTTAAATTGAGTGTTTGTGGAATTAAAATATAATTTTTTTTTTCTTTGGCATCTTTTTAGGGAGTAAATATCATGAACCTGAGTTTTTTAGCATTC ATGGCGATTCCACTTTCCAACTTCCTCTTCCCAATCGCAAAACCACACCATCATTTTTCAACCTCGAATCGTCAGTTGAAAGGTTTCAAATCAAGAGCAAGGAAAATTGATCCATCGCCATGCCGAGTAATTTCAAGAACCAGAGACTCATCCTCCTCCTCCTCCTCCATGAGTACAGAGCTTGCAAAACAAAGAAACAGATGCAAACTTACCGAGGACGAAGACGCGACGGAAATCGCCGACATCTGGCGAGAAATCCACGGCGGCGGCGATTGGGCTGGCCTACTCGATCCGATGAGCGATCTTCTTCGATCCGAGTTGATTAGGTACGGCGAAATGGCTCAATCCTGCTACGACGCCTTCGATTACGATCCGTTCTCGAAATACTGCGGCAGTTGCCGATTCACTCGCCGGAAATTCTTCGACAACCTCGGAATGGGAGACGGAGGCTACGAGGTGACGCGGTACCTCTACGCGACCTCGAACATCAACATGCCTAATTTCTTCAAGAAATCGCGGTGGCCCAAGGTGTGGAGCAAGAACGCGAACTGGATCGGATACGTCGCCGTATCGAACGACGCGCAATCGGAGCGTCTCGGCCGCCGCGACATCGTCGTCGCGTGGAGAGGCACCGTGACGCGGCTCGAATGGATCGTCGATTTGATGGATTTTCTCAAACCTGTCGCCGCCGGCAAAATCCCCTGCCCTAATTCCTCAGTGAAGGTCGAGTCAGGGTTTCTGGATCTGTACACCGATAAGGATGAAGGCTGCGGCTACTGTAGATTATCGGCGAGAGAGCAGATTCTGACGGAGATGAAGCGGTTGCTGGAGAAGTACGGCGGCGAGGAGGTGAGTATCACGATCACCGGCCATAGTTTGGGGAGCGCTTTAGCGGTGTTGAGCGCTTATGATATCGCGGAAACGGGTCTGACCCGAATGGGAGATGGGCGGGTCGTACCCGTTTGCGTTTTCTCGTTTTCGGGGCCCCGAGTTGGGAATGTTTCGTTCAAGGAACGACTTGAAGGACTAGGAGTGAAGGTATTGAGGGTGGTAAATGTTCATGACGTGGTACCAAAATCACCAGGATTTATATTCAACGAAGGCATACCAAGGATGGTGATGAAGATCGCAGAGGAATTACCGTGGAGTTATTCACACGTGGGCGTAGAGTTGAAACTCGATCACAAAATTTCACCCTTCCTAAAGCAAACAAACGACCCCGTTTGTGCCCATAATTTGGAAGCTCATTTACATTTACTTGACGGATACCATGGGAAGGGCGGTAGGTTCGTGCTGGCGAGCGGGAGGGATCCGGCGCTGGTGAACAAGGCTTGTGATTTTCTTAAGGATCATTACTTGGTCCCACCAAATTGGAGGCAAGATGAAAATAAAGGTATGATAAGGAACAAGGATGGCCGTTGGATCCAGCCTGATCGATCCAAATTTGACGATGATCATCCTCAAGCATTTACCCTCACATTTTGA MAIPLSNFLFPIAKPHHHFSTSNRQLKGFKSRARKIDPSPCRVISRTRDSSSSSSSMSTELAKQRNRCKLTEDEDATEIADIWREIHGGGDWAGLLDPMSDLLRSELIRYGEMAQSCYDAFDYDPFSKYCGSCRFTRRKFFDNLGMGDGGYEVTRYLYATSNINMPNFFKKSRWPKVWSKNANWIGYVAVSNDAQSERLGRRDIVVAWRGTVTRLEWIVDLMDFLKPVAAGKIPCPNSSVKVESGFLDLYTDKDEGCGYCRLSAREQILTEMKRLLEKYGGEEVSITITGHSLGSALAVLSAYDIAETGLTRMGDGRVVPVCVFSFSGPRVGNVSFKERLEGLGVKVLRVVNVHDVVPKSPGFIFNEGIPRMVMKIAEELPWSYSHVGVELKLDHKISPFLKQTNDPVCAHNLEAHLHLLDGYHGKGGRFVLASGRDPALVNKACDFLKDHYLVPPNWRQDENKGMIRNKDGRWIQPDRSKFDDDHPQAFTLTF Homology
BLAST of MC09g0760 vs. ExPASy Swiss-Prot
Match: Q941F1 (Phospholipase A1-Igamma1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DALL4 PE=1 SV=2) HSP 1 Score: 640.2 bits (1650), Expect = 1.9e-182 Identity = 312/478 (65.27%), Postives = 367/478 (76.78%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy Swiss-Prot
Match: Q3EBR6 (Phospholipase A1-Igamma2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DALL3 PE=1 SV=2) HSP 1 Score: 622.5 bits (1604), Expect = 4.2e-177 Identity = 296/426 (69.48%), Postives = 342/426 (80.28%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy Swiss-Prot
Match: Q9C8J6 (Phospholipase A1-Igamma3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DALL2 PE=1 SV=1) HSP 1 Score: 508.4 bits (1308), Expect = 8.8e-143 Identity = 265/505 (52.48%), Postives = 332/505 (65.74%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy Swiss-Prot
Match: Q6F358 (Phospholipase A1-II 6 OS=Oryza sativa subsp. japonica OX=39947 GN=Os05g0574000 PE=2 SV=1) HSP 1 Score: 320.1 bits (819), Expect = 4.4e-86 Identity = 179/413 (43.34%), Postives = 236/413 (57.14%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy Swiss-Prot
Match: B9EYD3 (Phospholipase A1-II 4 OS=Oryza sativa subsp. japonica OX=39947 GN=Os01g0652300 PE=2 SV=2) HSP 1 Score: 315.1 bits (806), Expect = 1.4e-84 Identity = 175/403 (43.42%), Postives = 236/403 (58.56%), Query Frame = 0
BLAST of MC09g0760 vs. NCBI nr
Match: KAG6593087.1 (Phospholipase A1-Igamma1, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 793 bits (2049), Expect = 4.69e-286 Identity = 391/503 (77.73%), Postives = 427/503 (84.89%), Query Frame = 0
BLAST of MC09g0760 vs. NCBI nr
Match: KAG7025495.1 (Phospholipase A1-Igamma1, chloroplastic, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 793 bits (2047), Expect = 9.45e-286 Identity = 392/503 (77.93%), Postives = 427/503 (84.89%), Query Frame = 0
BLAST of MC09g0760 vs. NCBI nr
Match: XP_038897277.1 (phospholipase A1-Igamma1, chloroplastic-like [Benincasa hispida]) HSP 1 Score: 792 bits (2045), Expect = 1.52e-285 Identity = 391/500 (78.20%), Postives = 425/500 (85.00%), Query Frame = 0
BLAST of MC09g0760 vs. NCBI nr
Match: XP_023004255.1 (phospholipase A1-Igamma1, chloroplastic [Cucurbita maxima]) HSP 1 Score: 791 bits (2044), Expect = 2.71e-285 Identity = 391/503 (77.73%), Postives = 426/503 (84.69%), Query Frame = 0
BLAST of MC09g0760 vs. NCBI nr
Match: XP_022959614.1 (phospholipase A1-Igamma1, chloroplastic [Cucurbita moschata]) HSP 1 Score: 791 bits (2043), Expect = 3.84e-285 Identity = 390/503 (77.53%), Postives = 426/503 (84.69%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy TrEMBL
Match: A0A6J1KU27 (phospholipase A1-Igamma1, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111497641 PE=4 SV=1) HSP 1 Score: 791 bits (2044), Expect = 1.31e-285 Identity = 391/503 (77.73%), Postives = 426/503 (84.69%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy TrEMBL
Match: A0A6J1H8K8 (phospholipase A1-Igamma1, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111460640 PE=4 SV=1) HSP 1 Score: 791 bits (2043), Expect = 1.86e-285 Identity = 390/503 (77.53%), Postives = 426/503 (84.69%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy TrEMBL
Match: A0A1S3BQI0 (phospholipase A1-Igamma1, chloroplastic-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103492623 PE=4 SV=1) HSP 1 Score: 769 bits (1986), Expect = 8.81e-277 Identity = 380/503 (75.55%), Postives = 420/503 (83.50%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy TrEMBL
Match: A0A0A0K5I4 (Lipase_3 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_7G378470 PE=4 SV=1) HSP 1 Score: 764 bits (1974), Expect = 4.39e-275 Identity = 378/496 (76.21%), Postives = 419/496 (84.48%), Query Frame = 0
BLAST of MC09g0760 vs. ExPASy TrEMBL
Match: A0A5B7C1N5 (Lipase_3 domain-containing protein OS=Davidia involucrata OX=16924 GN=Din_044268 PE=4 SV=1) HSP 1 Score: 728 bits (1878), Expect = 3.32e-260 Identity = 358/507 (70.61%), Postives = 402/507 (79.29%), Query Frame = 0
BLAST of MC09g0760 vs. TAIR 10
Match: AT1G06800.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 640.2 bits (1650), Expect = 1.4e-183 Identity = 312/478 (65.27%), Postives = 367/478 (76.78%), Query Frame = 0
BLAST of MC09g0760 vs. TAIR 10
Match: AT2G30550.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 622.5 bits (1604), Expect = 3.0e-178 Identity = 296/426 (69.48%), Postives = 342/426 (80.28%), Query Frame = 0
BLAST of MC09g0760 vs. TAIR 10
Match: AT1G06800.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 524.6 bits (1350), Expect = 8.4e-149 Identity = 261/414 (63.04%), Postives = 311/414 (75.12%), Query Frame = 0
BLAST of MC09g0760 vs. TAIR 10
Match: AT2G30550.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 523.5 bits (1347), Expect = 1.9e-148 Identity = 252/363 (69.42%), Postives = 290/363 (79.89%), Query Frame = 0
BLAST of MC09g0760 vs. TAIR 10
Match: AT1G51440.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 508.4 bits (1308), Expect = 6.3e-144 Identity = 265/505 (52.48%), Postives = 332/505 (65.74%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (Dali-11) 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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