
Moc05g11620 (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.ATGGATTGTTCTAAGCCACATACGGCCAATCTGTCTGAATGTTTGGGGGATGCATCAGATAGCAACATTTGTTTGTGCTATGATCATTTGGGAAATAGTGTGATTCTACGAATTTCATGTTGTCATAACAGTGTTAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACCAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCATGGTACGATAATCTCTGCCGCCCTGTCACCGACCTGCTTCCCCTTATTTCCAAAGGTGTTCGGGGTGTGACGAGCAACCCAGCAGTAAGTATTTGGATCTTATTGTTTTATCTCTGTTGGTAAATCTCATTAAGATAATTTTCATGAGAACATATAAATATGATAATGTAATTTGGTTATCAGAAATCCAGAATTCTTGTGGTTGAATTGACACAAATCTTTAACTCTTAGCTTTTATCCTCTTACAGATTTTCCAGAAAGCAATTTCGTCTTCAAATGCTTATAACGATCAATTCAGGTATTTTTGTTATAAAAAGCAATTTAAATCCATCTCTTACTTGATTACGCTGTGACCTTTTCTACATTTCATGGATGGTAATCATATGAATGGAATTTTCAGAGAACTCGTTCAGTCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCGTGCAAGCTTTTTGAGCCTATCTATGATCAAACGGATGGCGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGATGACACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTGTACATAAAGATCCCTGCTACTGCTGCTTGCATCCCTTCAATTAGGGATACAATTGCAAATGGCATAAGTGTCAATGTAACTGTAAGTTCTTTCACTGGATTTTATCTGAGCTGGATTAACCATTGGAACTAGAGTTAGAAATTTGGTCTCATCCTGATTTCTCGTGCAGCTCATATTCTCCATTGCTCGATATGAGGCAGTCATTGATGCTTACTTGGATGGACTCGAGGCCTCAGGTTTAAACGACCTCTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATCGGAACGCCGGAGGCCCTTGATCTGCGGGGGAAGGTGACGACCGCATCATCATTTCAAAAATTTAATTTTTGACATTTGGAAACTTACTGTAAAGTTTGCTAATTTACGGAATGATCAATATTTTAGGCTGCAGTTGCTCAAGCCGCACTTGCTTACCAGCTCTACCAGAAGAAGTTCTCTGGCCCAAGATGGGAAGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGCTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACCCCGACACCTTATACGTCGCCCCACTCATTGGACCCGACACTGTAAGAAATCTAATATCCCACATCTCTCCTCTCGACGAATCGATCAAACAGGCATCCTCTTCTCTTATCTAAATAGTACCATTTCCTCTTCCCCTCCTCAGGTTTCAACCATGCCCGACCAAGCTCTTGAAGCATTCGTTGACCACGGAGCTGTCTCGAGGACCATCGACTCAAACGTATCGGAGGCGGAAGGGATATACAGTGCACTTGAGAAGCTGGGAATCGACTGGAACGAAGTCGGGAATCAGCTCGAAGTGGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGGTCAGCCATTAAACTTCCCAGTTGGATATCAAGCTGTGATGGGGTGGGGACTGGGGTATGAGAGTTAATAAAAGATGGTGGGTTCTTTTTCCTGCTGTAAAATGTGTTATTCAGTGTCTTTAAAGACCTTAATCTTGAATGTATTATATGTTGGTTAGTGCAAGTTTTTAATTTTAGGGTTGTGAAATTTTGGACAAAAAACTTAGTTTGCTCTAATGGTTTCTTATTTCTTGTTTTTCTATTTTCGTTATCTGAATATAAATGAAATAAATATGTGAAGATAAATTGTTAATTAATAGGTTAAGGTGATTTAATGGCTACTAGTAGAAATTTCAATTTCCACATATTGGTTAAAAAATACTAATCAAGTATTTTTTAGGGAATTAAAAATATTTTTTTTTTGTTAATATAAGTTGCTAAGTAATAGATTATAATTTTTAATCTTAATTTATGTTCTTTTTTCTCCTATGCATTGAAAATGAGGAGGTAAAAATTATTACCAATTCTCTTTTATGCAAATGATAATGTGTTTTTTTTTTCTTAGTTTAAAAATGGTAAAAAAAGGGTTGGGATTCTTTGTGATTTTGGGTAAAAATATTCTTGAACAAACCTTTTTTTTTTCCTTTTGATAAAACTTGAAACTTATGGAATTTAAAACAGTATCTAACTAAATTTCTCCAGTGTTAAGCTAGATATTATCTTCAAATTTAATCTCCTATTTAAATATTAAATATTGAAAATTGATTAAGGTTATGTATTTTGCATATCTTTTTTACTCAACCAAATGTCTATGTTGGCTGAATTTCACGTGCCTTCTAATTTAAACATTTTTTTAAAATATATATTTTTAGTTAAACCACTTCTATAAAAATGATTTTCATTAAACTACTCGTGTTTGGTTATATTTTCTAAAAAGTTATTTTGATCACAACTTTGCTGGATAGTTTTTTTTTTATATATAAAAATGTATTCTATAAATATCAAATTACCATGATCGTTGAACAGTCACTTTTTAGAGAATCAACTTTCAAAAAATAATTTATGTTTGTGCAACAAAGTGTAACGTCTCGGTCGGCCAAGTTGAGGTTAACTGAATGAGCGAGTTGGAATGAACCGGAGTGAGCAGAGAGATCTCTCTTTGCAAGGAGGAATTTACACAAAGGAGCAAACAGTAATCTGACACTCAAGTCATTAAGGAGATCGACTTTGATATCAAGACCTAAATAGAATGAGATACGTGATTTTGGAGTGAGTCCTCTTACTTATAGGTTTTGGTGTTTGATAGTGCTTCTGACCGGTAGTTGAGCATGTTGGGTTGCAGCTATTCCAATTGGAGATGCTCGTGTAGAGTTTGATACCTCCGCACCCAAAATCTGGCTAAGTATAACTGGTCATTCCTAATAGAAAGGAATACCTGAAACCAACCCGATGGTCGGTCGCCCGTTATTTTGGTTCACTCATAGCAAATCACTGAGAGATTGTTCGTATTTATCCCCACATGGTAGTGTCATTTCATGCCCCAACCATTTAAAATTCAAACAATGACCAAATAAAAAGCACATTGGAAAATGAAAGGACATTTATCAATTGTTTGATTCTCCCAAAGAGGAATGGTTTTTTTTTTCCTTCTTGGTAGGGATGAAATAGAGAGAGAGAAGAATAACTCATCAATGACAGTTTCCGATCTCATTAAATTTTCTGTGTTTATATTATTTGGTTTGGCTGGTCCCAATTTAGTGGAGCTATACATGGATACATAAAGATCATGTCTAATTAATACGTGGAAAATTTTGTCCGTTTGTAAAATTTGATCGATTATGATCGAAGATATATTTGGATATATTTAATAGGACAAACTTGAACCTAAACTCAACTAATAAAGACATATATCTCGAATCAAAAAATCATGTGTTCGAACTCTTATCCCACGTGTTATTGTATTCAAGGTTCGAAATGTCAACGTGGATGGAAATGTCGAGGTCTCGATTGGATATTGTTTATGCAAAGATGTGAACAACAGTGTGCTCCTGGTTGTAGCTCGAACCCGGCCTCCGGACCGACCTGACCACTTGGGCGGACCTGCACAAAAAGGTGAGCACTCCGATGATCAAGTCAGTATAGGTCGGATTCCAAGTCTAGTTCGAAGCCAGAAATCATCGTACCTGATCGGGGAGTGAGGTCCCCTACTTATGGGTGGTGGTCTCGCTAATCTAGCGACTGTTACATTCGGTAATCTCGGGACCGTCGGTTACATCCGGTAATCTTGGGACCGACGGTTACGCCCGATAATCACGCCGCAGACAGCTGCGCATCTCGGCCCATACCGAGCTCCCCGGTGGGTCGGACCTGGGCCAGGCTCACCTCGGCCCTCACACTTGGCATTTGTCGGCGTTGGTGGCGGCCATCTCGGCCTTCCGAGCTAGGCATGATTCATGAGTCATCTTGGAGTACCGATAGGGGTCTTCCACGTGTCCAGAGTATTCCCTTCCCCAAACATTGGCCCCCTCTCTGTCTGGTCCGATCTCGACCTGGCAGAGAAGTTAATTCGACTTGCTTTGGACACGTGGCGACTTCCTATTCGTGGGAAAATACAACCGTCGCGGAAGATTTATCGTCGGAATATTCAAATATTCCGACGCTTCGGATCTCAGAGAGAATCCCAGCCGCTCGTTGATTACACGTGTACGGTGGGGAAATCCTCCCGACGGGCTATAAATGCCCCCAATCCTTCAGATCATACCTTACGTTCCTTGAATTCTTGGAGTTCGATCTGAAGGCAGCTCGAACCCTTGGTAGGTCGGTCTCTTCCCTCTCTCTTTCGAACATAATTGTCATGTCGTCCTCTATTAGCAGCAACCTAGGATCCGATTTAGCTCGTAGGTTAGAGTCCGAGCTCGAGGAGATAGAAAACTTTAGAATCTCCGATGACGGGGAAGATAGCGACGCCTCCACTTCAGGTCAGGGTTTAGAATACCCTTCTAGGATACCTGAGCACTACCTCGGATCCCTTCGTAGGGGGTTCGCTATCCCTGAGAACATCCTCCTCAGGCTTCCGGAGGAGGGGGAGAGAGCTGACCATCCTCCAGAGGGATGGGTCACTCTCTACTTCAAAATGTTTGAGTACGGCCTCAGACTTCCCCTTCACCCTTTTGTCCAAGAATTTCTCTTCCGGACTGGGTTGGCTCCGGCTCAAGTGGCCCCCAATGGGTGGGGTGTCATTTTCGCTTTGGCCATCCTCTTTTGGCTTCGAACTCGGGATAGTGAGGAGGCCGAGCTGTTGGACGTAAACCAGCTCCTCGCGTGCTTCGAGGCGAAAAGGATAGCTAAGAAGCCTGGTCGGTTCTATATGTGTCAGGCGGTATAATTAAGGGGCCGACCTCCATCAAGGGATGAGTGAGGAAGTGGTTCTACGCTTCGGGGGAATGGCTCGCAAAGGACGAGTCAGGTCGTTCCTTCTTTGACGTCCCCACTAGGTTTGGGAACCTAGGTACGGAGTAGTTCTTACTTTTCGTAATTTTCTTCTGTCATTCAGGTCTAACTCGGATTTTGTCTTCGTGCAGTTTCAATCCGACCAGTCCCCGAGCTTACGCAGGCCTCCTTCGATACTCTGAAATACTATAAGGAGCGCTTTCCGAGGGGTAGGAAGGTCGGAATCCTGGTGACTGACGAACTGCTGCTTGAGTCCGGGCTGCTAGATTACAATCCTGCAGTTCGTCCCATCGAATCCTCAAGGCCGAACTCTGAACTTGGTATGCCGAACTTGCCTTCCCCCTTTTTCCTCTAACCTTGTGTTGACCCTTGTTTCTATCTTGTAGCCATGGTTTGCGGATTTGCAAGCGGCGTGAAGCGCAAGTCTAAGGGCCGAGCCCATGCTCTTGAGGCTGCCCAGAGTTCGAAACCTCCCACCCCTGCCATGGTAGGGCCTGCCTCGGAAGATCCAGCCCCGGTGATCGAGCTGGAGTCTTCTGGGGGTCCCTCGAGGGAGAAGCGCCCCAGGGGTCAGACCGAGGCGGTGGACGCCCAGACCGAGGCGGCGGACGCCCAGCCTTTGGGAGAGGAGGCGAGGGAGGAAGCCCCTCTAAAGTGA ATGGATTGTTCTAAGCCACATACGGCCAATCTGTCTGAATGTTTGGGGGATGCATCAGATAGCAACATTTGTTTGTGCTATGATCATTTGGGAAATAGTGTGATTCTACGAATTTCATGTTGTCATAACAGTGTTAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACCAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCATGGTACGATAATCTCTGCCGCCCTGTCACCGACCTGCTTCCCCTTATTTCCAAAGGTGTTCGGGGTGTGACGAGCAACCCAGCAATTTTCCAGAAAGCAATTTCGTCTTCAAATGCTTATAACGATCAATTCAGAGAACTCGTTCAGTCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCGTGCAAGCTTTTTGAGCCTATCTATGATCAAACGGATGGCGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGATGACACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTGTACATAAAGATCCCTGCTACTGCTGCTTGCATCCCTTCAATTAGGGATACAATTGCAAATGGCATAAGTGTCAATGTAACTCTCATATTCTCCATTGCTCGATATGAGGCAGTCATTGATGCTTACTTGGATGGACTCGAGGCCTCAGGTTTAAACGACCTCTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATCGGAACGCCGGAGGCCCTTGATCTGCGGGGGAAGGCTGCAGTTGCTCAAGCCGCACTTGCTTACCAGCTCTACCAGAAGAAGTTCTCTGGCCCAAGATGGGAAGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGCTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACCCCGACACCTTATACGTCGCCCCACTCATTGGACCCGACACTGTTTCAACCATGCCCGACCAAGCTCTTGAAGCATTCGTTGACCACGGAGCTGTCTCGAGGACCATCGACTCAAACGTATCGGAGGCGGAAGGGATATACAGTGCACTTGAGAAGCTGGGAATCGACTGGAACGAAGTCGGGAATCAGCTCGAAGTGGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGGTTCGAAATGTCAACGTGGATGGAAATGTCGAGGTCTCGATTGGATATTGTTTATGCAAAGATGTGAACAACAGTGTGCTCCTGGTTGTAGCTCGAACCCGGCCTCCGGACCGACCTGACCACTTGGGCGGACCTGCACAAAAAGGTGAGCACTCCGATGATCAAGTCAGTATAGGGGTCTTCCACGTGTCCAGAGTATTCCCTTCCCCAAACATTGGCCCCCTCTCTGTCTGGTCCGATCTCGACCTGGCAGAGAAGTTAATTCGACTTGCTTTGGACACGTGGCGACTTCCTATTCGTGGGAAAATACAACCGTCGCGGAAGATTTATCGTCGGAATATTCAAATATTCCGACGCTTCGGATCTCAGAGAGAATCCCAGCCGCTCGTTGATTACACGTCTCGAACCCTTGGTAGGTCGGTCTCTTCCCTCTCTCTTTCGAACATAATTGTCATGTCGTCCTCTATTAGCAGCAACCTAGGATCCGATTTAGCTCGTAGGTTAGAGTCCGAGCTCGAGGAGATAGAAAACTTTAGAATCTCCGATGACGGGGAAGATAGCGACGCCTCCACTTCAGGTCAGGGTTTAGAATACCCTTCTAGGATACCTGAGCACTACCTCGGATCCCTTCGTAGGGGGTTCGCTATCCCTGAGAACATCCTCCTCAGGCTTCCGGAGGAGGGGGAGAGAGCTGACCATCCTCCAGAGGGATGGGTCACTCTCTACTTCAAAATGTTTGAGTACGGCCTCAGACTTCCCCTTCACCCTTTTGTCCAAGAATTTCTCTTCCGGACTGGGTTGGCTCCGGCTCAAGTGGCCCCCAATGGGTGGGGTGTCATTTTCGCTTTGGCCATCCTCTTTTGGCTTCGAACTCGGGATAGTGAGGAGGCCGAGCTGTTGGACGTAAACCAGCTCCTCGCGTGCTTCGAGGCGAAAAGGATAGCTAAGAAGCCTGGTCGGTTCTATATGTGTCAGGCGGACGAGTCAGGTCGTTCCTTCTTTGACGTCCCCACTAGGTTTGGGAACCTAGTTTCAATCCGACCAGTCCCCGAGCTTACGCAGGCCTCCTTCGATACTCTGAAATACTATAAGGAGCGCTTTCCGAGGGGTAGGAAGGTCGGAATCCTGGTGACTGACGAACTGCTGCTTGAGTCCGGGCTGCTAGATTACAATCCTGCAGTTCGTCCCATCGAATCCTCAAGGCCGAACTCTGAACTTGCCATGGTTTGCGGATTTGCAAGCGGCGTGAAGCGCAAGTCTAAGGGCCGAGCCCATGCTCTTGAGGCTGCCCAGAGTTCGAAACCTCCCACCCCTGCCATGGTAGGGCCTGCCTCGGAAGATCCAGCCCCGGTGATCGAGCTGGAGTCTTCTGGGGGTCCCTCGAGGGAGAAGCGCCCCAGGGGTCAGACCGAGGCGGTGGACGCCCAGACCGAGGCGGCGGACGCCCAGCCTTTGGGAGAGGAGGCGAGGGAGGAAGCCCCTCTAAAGTGA ATGGATTGTTCTAAGCCACATACGGCCAATCTGTCTGAATGTTTGGGGGATGCATCAGATAGCAACATTTGTTTGTGCTATGATCATTTGGGAAATAGTGTGATTCTACGAATTTCATGTTGTCATAACAGTGTTAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACCAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCATGGTACGATAATCTCTGCCGCCCTGTCACCGACCTGCTTCCCCTTATTTCCAAAGGTGTTCGGGGTGTGACGAGCAACCCAGCAATTTTCCAGAAAGCAATTTCGTCTTCAAATGCTTATAACGATCAATTCAGAGAACTCGTTCAGTCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCGTGCAAGCTTTTTGAGCCTATCTATGATCAAACGGATGGCGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGATGACACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTGTACATAAAGATCCCTGCTACTGCTGCTTGCATCCCTTCAATTAGGGATACAATTGCAAATGGCATAAGTGTCAATGTAACTCTCATATTCTCCATTGCTCGATATGAGGCAGTCATTGATGCTTACTTGGATGGACTCGAGGCCTCAGGTTTAAACGACCTCTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATCGGAACGCCGGAGGCCCTTGATCTGCGGGGGAAGGCTGCAGTTGCTCAAGCCGCACTTGCTTACCAGCTCTACCAGAAGAAGTTCTCTGGCCCAAGATGGGAAGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGCTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACCCCGACACCTTATACGTCGCCCCACTCATTGGACCCGACACTGTTTCAACCATGCCCGACCAAGCTCTTGAAGCATTCGTTGACCACGGAGCTGTCTCGAGGACCATCGACTCAAACGTATCGGAGGCGGAAGGGATATACAGTGCACTTGAGAAGCTGGGAATCGACTGGAACGAAGTCGGGAATCAGCTCGAAGTGGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGGTTCGAAATGTCAACGTGGATGGAAATGTCGAGGTCTCGATTGGATATTGTTTATGCAAAGATGTGAACAACAGTGTGCTCCTGGTTGTAGCTCGAACCCGGCCTCCGGACCGACCTGACCACTTGGGCGGACCTGCACAAAAAGGTGAGCACTCCGATGATCAAGTCAGTATAGGGGTCTTCCACGTGTCCAGAGTATTCCCTTCCCCAAACATTGGCCCCCTCTCTGTCTGGTCCGATCTCGACCTGGCAGAGAAGTTAATTCGACTTGCTTTGGACACGTGGCGACTTCCTATTCGTGGGAAAATACAACCGTCGCGGAAGATTTATCGTCGGAATATTCAAATATTCCGACGCTTCGGATCTCAGAGAGAATCCCAGCCGCTCGTTGATTACACGTCTCGAACCCTTGGTAGGTCGGTCTCTTCCCTCTCTCTTTCGAACATAATTGTCATGTCGTCCTCTATTAGCAGCAACCTAGGATCCGATTTAGCTCGTAGGTTAGAGTCCGAGCTCGAGGAGATAGAAAACTTTAGAATCTCCGATGACGGGGAAGATAGCGACGCCTCCACTTCAGGTCAGGGTTTAGAATACCCTTCTAGGATACCTGAGCACTACCTCGGATCCCTTCGTAGGGGGTTCGCTATCCCTGAGAACATCCTCCTCAGGCTTCCGGAGGAGGGGGAGAGAGCTGACCATCCTCCAGAGGGATGGGTCACTCTCTACTTCAAAATGTTTGAGTACGGCCTCAGACTTCCCCTTCACCCTTTTGTCCAAGAATTTCTCTTCCGGACTGGGTTGGCTCCGGCTCAAGTGGCCCCCAATGGGTGGGGTGTCATTTTCGCTTTGGCCATCCTCTTTTGGCTTCGAACTCGGGATAGTGAGGAGGCCGAGCTGTTGGACGTAAACCAGCTCCTCGCGTGCTTCGAGGCGAAAAGGATAGCTAAGAAGCCTGGTCGGTTCTATATGTGTCAGGCGGACGAGTCAGGTCGTTCCTTCTTTGACGTCCCCACTAGGTTTGGGAACCTAGTTTCAATCCGACCAGTCCCCGAGCTTACGCAGGCCTCCTTCGATACTCTGAAATACTATAAGGAGCGCTTTCCGAGGGGTAGGAAGGTCGGAATCCTGGTGACTGACGAACTGCTGCTTGAGTCCGGGCTGCTAGATTACAATCCTGCAGTTCGTCCCATCGAATCCTCAAGGCCGAACTCTGAACTTGCCATGGTTTGCGGATTTGCAAGCGGCGTGAAGCGCAAGTCTAAGGGCCGAGCCCATGCTCTTGAGGCTGCCCAGAGTTCGAAACCTCCCACCCCTGCCATGGTAGGGCCTGCCTCGGAAGATCCAGCCCCGGTGATCGAGCTGGAGTCTTCTGGGGGTCCCTCGAGGGAGAAGCGCCCCAGGGGTCAGACCGAGGCGGTGGACGCCCAGACCGAGGCGGCGGACGCCCAGCCTTTGGGAGAGGAGGCGAGGGAGGAAGCCCCTCTAAAGTGA MDCSKPHTANLSECLGDASDSNICLCYDHLGNSVILRISCCHNSVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPATAACIPSIRDTIANGISVNVTLIFSIARYEAVIDAYLDGLEASGLNDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYPDTLYVAPLIGPDTVSTMPDQALEAFVDHGAVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANSLKLVRNVNVDGNVEVSIGYCLCKDVNNSVLLVVARTRPPDRPDHLGGPAQKGEHSDDQVSIGVFHVSRVFPSPNIGPLSVWSDLDLAEKLIRLALDTWRLPIRGKIQPSRKIYRRNIQIFRRFGSQRESQPLVDYTSRTLGRSVSSLSLSNIIVMSSSISSNLGSDLARRLESELEEIENFRISDDGEDSDASTSGQGLEYPSRIPEHYLGSLRRGFAIPENILLRLPEEGERADHPPEGWVTLYFKMFEYGLRLPLHPFVQEFLFRTGLAPAQVAPNGWGVIFALAILFWLRTRDSEEAELLDVNQLLACFEAKRIAKKPGRFYMCQADESGRSFFDVPTRFGNLVSIRPVPELTQASFDTLKYYKERFPRGRKVGILVTDELLLESGLLDYNPAVRPIESSRPNSELAMVCGFASGVKRKSKGRAHALEAAQSSKPPTPAMVGPASEDPAPVIELESSGGPSREKRPRGQTEAVDAQTEAADAQPLGEEAREEAPLK Homology
BLAST of Moc05g11620 vs. NCBI nr
Match: XP_022158675.1 (uncharacterized protein LOC111025138 [Momordica charantia]) HSP 1 Score: 745.7 bits (1924), Expect = 4.6e-211 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 0
BLAST of Moc05g11620 vs. NCBI nr
Match: XP_008454148.1 (PREDICTED: transaldolase [Cucumis melo] >TYK29628.1 transaldolase [Cucumis melo var. makuwa]) HSP 1 Score: 736.9 bits (1901), Expect = 2.2e-208 Identity = 372/377 (98.67%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. NCBI nr
Match: KAG6581976.1 (hypothetical protein SDJN03_21978, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 736.1 bits (1899), Expect = 3.7e-208 Identity = 372/377 (98.67%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. NCBI nr
Match: XP_023528027.1 (uncharacterized protein LOC111791070 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 735.7 bits (1898), Expect = 4.8e-208 Identity = 371/377 (98.41%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. NCBI nr
Match: XP_004152161.1 (uncharacterized protein LOC101205302 [Cucumis sativus] >KGN52962.1 hypothetical protein Csa_015281 [Cucumis sativus]) HSP 1 Score: 735.7 bits (1898), Expect = 4.8e-208 Identity = 371/377 (98.41%), Postives = 373/377 (98.94%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy Swiss-Prot
Match: A8KYS5 (Transaldolase OS=Frankia sp. (strain EAN1pec) OX=298653 GN=tal PE=3 SV=1) HSP 1 Score: 329.3 bits (843), Expect = 1.4e-88 Identity = 185/356 (51.97%), Postives = 238/356 (66.85%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy Swiss-Prot
Match: A9WT40 (Transaldolase OS=Renibacterium salmoninarum (strain ATCC 33209 / DSM 20767 / JCM 11484 / NBRC 15589 / NCIMB 2235) OX=288705 GN=tal PE=3 SV=1) HSP 1 Score: 323.9 bits (829), Expect = 5.7e-87 Identity = 182/355 (51.27%), Postives = 235/355 (66.20%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy Swiss-Prot
Match: Q2JCG8 (Transaldolase OS=Frankia casuarinae (strain DSM 45818 / CECT 9043 / CcI3) OX=106370 GN=tal PE=3 SV=1) HSP 1 Score: 320.1 bits (819), Expect = 8.2e-86 Identity = 177/350 (50.57%), Postives = 240/350 (68.57%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy Swiss-Prot
Match: A0LTY8 (Transaldolase OS=Acidothermus cellulolyticus (strain ATCC 43068 / 11B) OX=351607 GN=tal PE=3 SV=1) HSP 1 Score: 319.3 bits (817), Expect = 1.4e-85 Identity = 178/345 (51.59%), Postives = 231/345 (66.96%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy Swiss-Prot
Match: Q0RH18 (Transaldolase OS=Frankia alni (strain ACN14a) OX=326424 GN=tal PE=3 SV=1) HSP 1 Score: 318.9 bits (816), Expect = 1.8e-85 Identity = 171/349 (49.00%), Postives = 238/349 (68.19%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy TrEMBL
Match: A0A6J1DWH7 (Transaldolase OS=Momordica charantia OX=3673 GN=LOC111025138 PE=3 SV=1) HSP 1 Score: 745.7 bits (1924), Expect = 2.2e-211 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy TrEMBL
Match: A0A5D3E1I6 (Transaldolase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold655G002400 PE=3 SV=1) HSP 1 Score: 736.9 bits (1901), Expect = 1.0e-208 Identity = 372/377 (98.67%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy TrEMBL
Match: A0A1S3BYP7 (Transaldolase OS=Cucumis melo OX=3656 GN=LOC103494637 PE=3 SV=1) HSP 1 Score: 736.9 bits (1901), Expect = 1.0e-208 Identity = 372/377 (98.67%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy TrEMBL
Match: A0A0A0KX30 (Transaldolase OS=Cucumis sativus OX=3659 GN=Csa_4G007670 PE=3 SV=1) HSP 1 Score: 735.7 bits (1898), Expect = 2.3e-208 Identity = 371/377 (98.41%), Postives = 373/377 (98.94%), Query Frame = 0
BLAST of Moc05g11620 vs. ExPASy TrEMBL
Match: A0A6J1IXT7 (Transaldolase OS=Cucurbita maxima OX=3661 GN=LOC111480133 PE=3 SV=1) HSP 1 Score: 734.9 bits (1896), Expect = 4.0e-208 Identity = 371/377 (98.41%), Postives = 374/377 (99.20%), Query Frame = 0
BLAST of Moc05g11620 vs. TAIR 10
Match: AT5G13420.1 (Aldolase-type TIM barrel family protein ) HSP 1 Score: 668.3 bits (1723), Expect = 8.8e-192 Identity = 337/377 (89.39%), Postives = 356/377 (94.43%), 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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