
MC11g1339 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.AACTCCGCCGTCTCATACGTCAGCCGCCGCTCCAATATAACTGTCAACCGTTGCCTCATGAGCCTCTTCGACCCCAAAATCCCTCCTTCTTCGAAACCCCGCGGCGGCGTTTCCACCCACGATGTCGTTTTCGACCCCACTCGCAGCCTCTGGTTCCGCCTTTTCCTCCCGGCCACCGCTGCCGACGCTACTCTGCCCGTCGTTGTTTACTTTCACGGCGGCGGCTTCGCGTTCTTCTCCCCCAGTTCGTTGCCGTACGATGGCTTCTGCCGGCGGCTCGCACGTGACCTCCGTGCCGTCGTTGTGTCCGTCAACTATCGCCTCTCTCCGGAGCACCGATTCCCGTCTCCCTACGAAGACGGATTTGACGCCTTGAAATTCCTCGACGGCGGCGTGGGTGATGATTTTCTGGCCGAAGCTGATCTCTGCCGCTGTTTTCTCGCCGGAGATAGTGTGGGCTGCCCTCACCACTTAAATAAGGTGATATTAATTGTTAAAAGACGCTATTAACGAAAGATTAGGGCTAATAATAACCGTTGAAAAGAGTAATATATCAAAACAAAAAAAATGCCAAGAAAAAATTTAAAATGTTGATATCGGTAGAAATACAGATGCATAAATTTTATTAATTTTTGAAAATATTGATGTCAATAAAATGCGATATGTCTCACTTTTATAATTTGATAAAAATGTTGACGTTAGACGGAAAAGAGATGTTGATACATATTTAAGCTAAACGTCATATTGGTATTTACCGTACTTAATTCCATCTATTATTAAAGACTAGAAAGGAAAGATTTAGTCTAATGATAACAATTAAAAAAAGTAATGCGATTTAAAAGAGTATATATTGTCAAAATCGTGTCAATATGACCTTTTTTTCTTTATTAATTACTTTTGATAATAATTTGTTGGATGCATAATTTCCAAGTCTATAAGTAATTATTATAATCATAGTCATCGTAAATATAGAGACTATAAATAATTAAATAATCATAAATAGAACAGCGTTGAGCAAAATTTTACATTGTAATGTGTTTGGGGGTAAAAATACCTTAGACATGTGGAGGACAATCATTGGAGTTCAAGGAGTGAAATAACCCAGGTCCACCTCGAACCTGTCGAGGAGACTGGGTTCGCCCATTGAGAAAGACTAAGTGTAACATGCCGAGGTTCGACCTGATTGGGGTTCGATCTGCTTGGAACCCGACAGGTCCGACATGAGAAAAAACATATAATCGCCGGTCGTGAGTACTATCGGATCTACCACCTATAAATAGAGGGCCTCATTTCACGCTCAGGTATCGAATCTCACCTCGAATTAAATATTGAGTCCGACCTATACTAACTTGAGCGTCGGAGTGCTTACCCTCCTGTGCAGGTTCGCTCTTGAGTTTAGGTCGAGTCGGGGATTGAGTTCGAGCTTGGTTCGTTAAACAGTGTGGTGCAATTCTTTGCATAAACATTTGGCGCCGTCTGTGGGGAAGGACAATCTAAGTCATCCCGATCTAAGAAACGTGGAAAAAGATGGTTCAACCAGCAAACTCAACTAACACGACCGACCGAAGAGCTCTAGCTGCCAATGATGGCCACCGGAGGGAGGTTGGGGCAAAAGTGGTAGAGGGACAGATTCATGAAGGCCTTGGGACCGAGCCTCTCCGCAGGTCGGCGCGCATTACCACGCCCGTCCTGCCACCGGCACATCCAAAGCCGTCTAAGGCCAATCGCGGCAGAAGTGGAGCCTCGAGGAGAACCACTCGTGGACGAGCCCCATCTTCTACTAGGGAGAATTTCGATGCACTCCAGAAAGAAATGGAGGCAATGCGCACTCAGATTCGCACTATGGAAGAGATGTACAACGAGATGGTGCAAGCCGCAGGTGCTGGGTCTCGATCTGAAGACCGGGTGGCACGCGACGAGGTGCGCGAGCAAAGAAGTCTACACCTCGGACCAGTTGAGGAAGAGCGCCATGGAGGAGATGAGGATGAAGAGTACACTCATCAGAGAGGTGATCTCCGCGAGCATCTCAACAGAAAGAGAAACTCGTCCCTCCAAAATGGACGATCTTCGTCCTGCTCGCACAAGAACTCCAACCAGCAGGCCGAGTCCTCCTACAACCCGATAACTCCCGAGGGAGTGATCACAGGGGAGGAGTTCGACCAGCTAAAGAGCAAGTTCGATGCTCAGGTTGAAGCCTTGAAGGCTAGGTGCGAGAAAAAAGAGAGCCCGTTAGATGATGGCGACCTGGGAGAATCGCCATTCACCTCGGACATCTTGAAGGCTCAAATCCCTCCGAAGTTCAAAACTCCCACCATGAAGCCCTATAATGGGTCTAAAGACCCAAAAGACTATGTTGAGGTCTTCGAAGGCCTCATGGATTTTCAGGCGGCAACGGATGCAATCAAGTGTCGCGCCTTCCAGATTGCGCTTACCGGCAGCGCGCGCCTGTAGTATCAAAGACTGCCGGCCAGGTCGATCTCGACCTACTCCCAGCTGAGGAAAGAGTTTATCAGCCAATTCTCTTTTCGACACTACGACAGAAAGACAGCAACTCACCTCGCCACCATCAGGCAGAAAGAAGGTGAGACGTTGAGAGAGTATGTCACAAGGTTCCAGGAGGAGCAGTTGAAGGTCGCGCATTGCTCCGATGACTCGGCCATGTGCTATTTCCTCACGGGTCTGGCCGATGAGACCTTGACTGTGAAGCTTGGAGAAGAAGCCCCGACCACTTTTGCCGAGGTCTTGCAAAAGGCGAAGAAGGTTATTGATGGGCAAGAGCTCCTACAAACCAAGACTGGCCGACCAGAAAAGAAGATCGACCAAAGGAGGACTGACAAGGACAAAGGAAAGGCTGATTCCAAACCCAAAAACAAGGTACCATCCTCCTCTAGCAGCCGAGCTGATTATCGAAGGTCGGATAGCAGTCAAAACCGAAGCCGACCTTATGAGCGGTACACTCCCACCACCATCCCAATCTTTGAAATACTTGCAAATATTGAGGAGACTGGGATGGAAAAGCTCCTCAAGCGACCTGAGAAGCTCCGAGGGGACCCAGAAAAGCGCAATAAAGATAAATATTGTCGTTTTCATCGCGATCACGGCCATAATACGTCAAGTTGCTGGGAACTGAAGCGCTAAATTGAAGACCTTATTCAAGATGGCTACTTCAAAAAATTCGTTGGCAAACCGAGGTCCAACTCAGTAGAAAAGAAAGAAGAGAGGAAGCGTTCAAGGACGCCGCCTCGCTGAGATGACCGACCTGCGGTCATCAATACTATTTTCGGAGGCCCAAGTGGGGGCCAATCTGGAAATAAAAGAAAAGAGCTAGCTCGTGAAGCCAGACGCGAGGTGTCCGTTATCAGCGAGTAGAGACCGACCTGTTCCATTACTTTCGGCGATACCGACCTGGAGGGGGTCCACTTGCCCCATAATGATGCACTTGTGATCGCCCCTCTTATCGATCACGTCCTGGTCAGAAGAGTATTGGTAGATGGAGGCGTATCTGCCAACATCTTGTCCCTTTCAACATATCTTGCCTTGGGATGGACCAGGTCACAGTTGAAGAAGAGTCCAACACCCTTGGTTGGATTCTCTGGAGAATCGGTCTCCCCAAAAGGGTGTATTGACTTACCGGTCACGATTGGGCAAAATGATACACAAGTAACTCAGATGGTCGAGTTCGTTGTGATCGACGGTAGGTCGGCCTACAACGCCATCTTCGGGAGACCCATCATCCATTTGTTCCGGGCCGTTCCCTCAACACTTCATCAAGTCTTGAAGTATTCAACTCCTAATGGAGTGAACACGGTCCGAGGAGAGCAAAAAACTTCAAGGGAGTGCTATGCCTCTACGCTCAAAGGGTCATCAATATGCGCCCTAGAAGAACAAGCCAATTAGGACGAATTGCCAAAGCCCGAGGCCGATCCAGCGAAAGTAGGAAAAATGGAGTTCTCAGTACCAACAGAGGAGCTCGAGCTTATTCCTTTGCTTAGCCTTGAAAGACAAGTAAGCATAGGAACCAAGTTGGGGGCCACTGATAGGGAGGAGCTGATCAATTTCATCAGGTCTAACTCGGACGTTTTCGCGTGTTCCCATGTGGACATGCCTGGGATCGACCCGAAGATCATGGTGCATCGCCTCAACATAGACCCATCATTCCGACCTGTAAAGCAAAAGAGAAGACCTGTTAATAGGGAGAGGAGTGATGTAATTGTTGAGAAAGTAAACAAACTTTTAAAAGCTGAATATATAAGAGAAATTTTGTATCCTGAGTGGCTCTCTAATGTTGTATTAGTTAAAAAAGCGAACGGGAAGTGGAGGATGTGCGTAGATTTTACAAATTAAACAAGGCATGCCCAAAAGACTGCTTCCCCCTACCGAGGATCGACCAGTTTGTGGACGCAACGGCCGGTCACGAGCTGCTCACTTTCATGGATGCCTACTCCGGATACAACCAAATCAAAATGCACGTGTCAGACCAAGACCATACCGCGTTCATAACAGACCAAGGTATGTACTGCTACAAGGTGATGCCCTTTGGTCTAAAAAATGCGGGTGCGACCTACCAAAGGATGGTGAACAAAATGTTCGCCAAGCAGATTGGTCGGAACATGGAAGTATATGTGGACGACATGCTTGTCAAGAGCAAGCAGTCAAAGTCGCATCTTTTCGATCTGACCGAAGCCTTTGGAGTTTTGTGGAAGTATAAAATGAAGCTCAATCCAGCCAAATGTGCCTTTGGAGTCTCCTCGGGGAAGTTCCTTGGTTTTATGGTAAACAACCGTAGGATCGAAGCCAACCCAGAGAAGATAAAGGCCGTGCTCGAGATGGAAGCACCCAAAACTCTGAAACAGCTTCAATGCCTCAATGAGAGGATTGCAGCTCTGAACATGTTTGTCTCAAGGTCAACCGATAAGTGCCTTCCATTTTTCAAAGTCCTGAGAAAGAAAGGGCCTTTCGAATGGACAACAGAGTGCGAGCAAGCGCTAGAACAGTTAAAGAACTACCTCTGCTTGGCACTTCTGCTCGTCAAGCCATTGCCAGGAGATCAACTCCACTTGTACCTGGCGGTGTCCGACAGCGTTGTCAGCTCGGCCCTAATCAAGCAGGAGGGAGTACGCCAAAGCCCTATTTATTACACGAGTAAAGCCATGACCGAGGCCGAGACCAGATATCCCCAAATGGAGAAGCTGGCCCTTGCCTTAGTCACCTAAGCCAGAAGACTTAGACCGTACTTCCAAGCGCACACCGTTGTGGTACTTACCAACTTACCCCTGAAGAACATCTTCCATAAGCCAGAAACATCAGGGTGCTTGATGAAGTGGGCAATAGAGTTGAGCGAGTACGACATCCAGTTCGAACCCAGAACTGCGTTGAAGGGGCAAGCAGTGGCAGATTTTATCGCGGAGCTCACCCCACCCTCTCAGTTGGCCGAGTCCGACCTCCCGTGGACGTTCTACGTTGACGGATCCTGCAATGAGAGGGGGTGCGGAGCAGGAATCCTCTTGCTCGCACCAGATGGCATGTGATTCGAGTATGCCCTACGGTTCAACTTTCGGACTTCAAATAATGAGGCAGAATACGAAGCACTTCTGGCAGGTCTATGCGTCGCCAAAGGGCTAGGGGCCATCTACATAAAGGTCTTTAGTGACTCCCAGTTGGTCGTAAATCAGATTAAGGAGGAGTATCAAACGAAAGACCCCCGAATGGAAAAATATTTAAGCAAAGTCAGATCGCACCTCGCCCAGTTCGAGACTTACGAGGTGAATCAAGTTCCAAGATCAGAAAATTCTAATGCAGATGCCTTAGCCAAATTGGCATCAGCATATGAGACCGACCTGGCCAGATCAGTCCCGATTGAGATCTTGGACAACCCTTCAATTTTGGAGCCAGATTTGATGGAGGTTGACACTCCGGAGCACTCGTGGACGGATGCAATCGTGGAGTTCATCAGAGGAAATCCACCGCAAGATTCAAAGGAGCATAAGAAGATGGCGCGAAAAGCAGCTCGGTTTATACTCCGAGATGGAGCATTGTATCGACGAGGATTTTCCCTGCCTCTCCTTAAGTCTGTAACTCCTGAAGATGAGAATTACATCCTCAGAGAAGTTCACGAAGGAGTATGCGGCAACCATTCAAGAGCCAGGTCGCTTTCGGCCAAGGTGGTCCGACAAGGGTATTACTGGCCCACTGTCGAGCGAGATGCGAAGCAGTTTGTGAAAACCTACGACAACTGCCAACGCTTTGCAAATATCATCCATCAGCCTCCTGAGCTGCTCACCCCCATCTCGGCCCCGTGGCCATTCGCACAATGGGGAGTAGATATCATAAGTCCTTTTCCTTTGGGCAAAGGGCAAACCAAGTTCGTCGTTGTCGTCGTGGACTACTTCACCAAGTGGGTCGAGGCCGAGACGCTCACCCATATAACGGAGTTCAGAGTCACATCTTTCGTATTGACAAACATTGTATACCGTTTCGGTATACCAAACGCTATTGTGACAGACAACGGAAAGCAATTCGACAATGTAAAGTTCAATGACTTCTGCAGAAAGTTGGGCAAAAGCCATCTCAGTTCGTCCCCTGCACATCCAAAAGCAAATGGGCAGGTTGAAGCGATAAATAAAATTATAAAACGAGGACTCAAGCTTAGACTGGATTCCAGAAAGGGAAGATGGGCCGAGGAGCTACCCGAAGTGTTGTGGTCATATCGGACCACCCCAAGAGAGTCGACTGGCGAAACTCCGTTCCCACTGGCTTTTGGCTCTGAAGCTGTTGTTCCAGTTGAGATCGGCATGCTAACAGACAGGGTAGAGCAGTACGAGCCAACAAGGAACGAGGAAGAGCTACTCTTTAACCTTGATTTATTAGAAGAAAAAAAGGGAAATGGCTCAGCTACGCTTAGCAGAGTATCAGAACAGAATGACCAGATATTACAACCACTCACCAGAGGCAAAGAACCATTTCCCCACCCATCCTTCTTTGCCAAAAAAGAAGGGACGACCTGATTCGTTCTTTGCCAGCCACTCACCAGAGGCAAAGAACCATTTCCCCACCCATCCTTTGATGGAGGTCGGCCCTTTGACTATGCCACCCGCACCCTTCCTTGAGCACATGTAGTACCGACCTAGCTTCTTAGCTATCCTTTTAGCTTCAAAGCACCCTAGAAGCTGCTCAACATCTAGCAGATCGACCTCGTCCACTTCCCGAGCTCGTAACCAAAACAAGATGGCCAAAGCAAAAATGACACCTCATTCGTTGGGGGCAACCTGAGCAGGAGCCAGTCCAGTTCGGTTCAGGAACTCCTGGGCAAAGGGGTGAAGGGGAATTCTGAGGCCGTACTCAAACATTTTTAAGTAAAGAGTGACCCATCCCTCTGGAGGATTGTCAGCTCTTTCCCCTTCTTCAGGAATCCTAAGGATGATATCATCTGGAATATTAAACCCCCTACGGAGGGGTCTGAGGTAATGCTCAGGCATTTTCGAAGGGTATTCTAACCCGTGGCTCGAGGTGGAAGTGTCACTATCTTCCCCATCGTTGGAAAATCTAAAGTTTTCTATCTCTTCCACTTCGGACTCTAACCTAAGAGCCAAGTCCTCCCCAGAGTTACTTGGTTTGGGGGGCGAACTACTTATAGTCCGACCTGCGCTACCTAAACTATCACTACTGGAGGGAGAAGACATGAAAACTACCATATTTGAAAGCAAGAGTAAAACAAAAGTGACTGACCTACAGAGGGTTCGAGCTGGTTTCAGATCAAACTCCAGAAATTCAGGGAACCTAAGGTTTGACCTATATTCTCGAAACTATTTATAGCTAATCGGAAAAACTTCTACGCCGTACACGTGTAATGAACGAGCGGTTAGGATCATCTAGAGATTCGTAACAACGGAATACTCAAGTGCTCCGACAGCCTGGCAGATCGAAACATCTTCCACAATGGTCATATTCTCTCTAAGAATTAGAAGTCACCACGTGTCCAAAATTGAGTCAGGTTAACTTTGCCAGATCGAGATCGAAGCTGACAGAGAGGGGGCCAATGTTTGGGGGTAAAAATACCTTAGACACGTGGAGGACAATCATTGGAGTTCAAGCAGTGAAATAACCCAGGTCCACCTCGAACTTGTCGAGGAGACTGCGTTCGCCCATTGACAAAGACTAAGTGTAACATGCCGAGGTTCGACCTGATTGGGGTTCGATCTGCTTGTAACCCGACATATCCGACATGAGAAAAAATATATAACCGCCGGTCGTGAGTACTATCGGATCCACCACCTATAAATAGAGGGCCTCATTTCACGCTCAAGTATTGAATCTCACATCAAACTAAATATTGAGTCCGACCTATACTAACTTAAGCGTCAGAGTGCTTACCCTCCTGTGCAGGTTCGCTCTTGAGTTTAGGTCGAGTTGGGAACCGGGTTTGAGCTTGGTTCGTTAAACAGTGTGGTGCAATTCTTTGCATAAACATAATGTTAGTTTATATATAATCTTTTAACATACCAATATATATATATACATACTAATATATATATATATATACATACTAATATATATATATATAATCTTCTTAACTTCCAAAAGATATTTTACTTGGCTTATTGTTAGCCTCTTATTTTACTTGGCTTATTGTTAGCCTCCATCTTTATGCTGCACCCACAAATTAAAAGAATAAAACTCATGTATCTTTCTTCTTTATCACGCTTCAAAAATTGACAACTATTTAAACTATTTTCTCTACCTTCCTTCATCCATTCATCTCTATTAGATACTTTAACTATCGGAAGGTAAGTTTTATCCTAATCAAAATTTTACAGTTTTGAAAAACATAAAAAGATCTATCTTTTCTGTATTTCTCTTCTCTACTTGTCAAAAATTTAATGAAGATCAATAAAATAAATATTGGCACAGGGTAAGCACTTAAATACTGTATTCTAAAATTTAGAAAAAGTATGAACTTTTAACTTCTTTATATATATATTTTAAAATTTAACATATGTGAACTTACCTTCTCTTCTTTGCTCCTCTTTCCCTTTTCTCTTTATTTCCATCTTGTCTGCAATGTTATTTTTTCCCCATTAATATTATTAATCATTCCTTGTGCCTGGTATCACGTAAGTTTTTACATTCAATAGTAATTCAACAACTGAAGATCAAAGGTTTAATTACAATACAACCATTTTTTGGCGGGGAGGAACGAACAGAGTCAGAAATTAAATTTAACGCAGGGCCGATATTAAACTTAGAGCGGTCAGATTGGTATTGGAAAGCATTCCTACCAAATGGATCAGACCGAAACCACTCGGCAGCGCATGTTTTCGGACCCGGTGCCAAAGACATTGGCGCGATGAAGTTTCCGGCGACGCTTTTGATTATAGGAGGACTAGACCAAGTGCGAGATTGGAATATAAAGTACTATGAGTGGCTGAAAGTAGAAGGAAAAGAAGTGGATTTGGTAGAATATCAAAATGCCATCCATGGTTTTTAT AACTCCGCCGTCTCATACGTCAGCCGCCGCTCCAATATAACTGTCAACCGTTGCCTCATGAGCCTCTTCGACCCCAAAATCCCTCCTTCTTCGAAACCCCGCGGCGGCGTTTCCACCCACGATGTCGTTTTCGACCCCACTCGCAGCCTCTGGTTCCGCCTTTTCCTCCCGGCCACCGCTGCCGACGCTACTCTGCCCGTCGTTGTTTACTTTCACGGCGGCGGCTTCGCGTTCTTCTCCCCCAGTTCGTTGCCGTACGATGGCTTCTGCCGGCGGCTCGCACGTGACCTCCGTGCCGTCGTTGTGTCCGTCAACTATCGCCTCTCTCCGGAGCACCGATTCCCGTCTCCCTACGAAGACGGATTTGACGCCTTGAAATTCCTCGACGGCGGCGTGGGTGATGATTTTCTGGCCGAAGCTGATCTCTGCCGCTGTTTTCTCGCCGGAGATAGTGTGGGCTGCCCTCACCACTTAAATAAGTTTTTACATTCAATAGTAATTCAACAACTGAAGATCAAAGGTTTAATTACAATACAACCATTTTTTGGCGGGGAGGAACGAACAGAGTCAGAAATTAAATTTAACGCAGGGCCGATATTAAACTTAGAGCGGTCAGATTGGTATTGGAAAGCATTCCTACCAAATGGATCAGACCGAAACCACTCGGCAGCGCATGTTTTCGGACCCGGTGCCAAAGACATTGGCGCGATGAAGTTTCCGGCGACGCTTTTGATTATAGGAGGACTAGACCAAGTGCGAGATTGGAATATAAAGTACTATGAGTGGCTGAAAGTAGAAGGAAAAGAAGTGGATTTGGTAGAATATCAAAATGCCATCCATGGTTTTTAT AACTCCGCCGTCTCATACGTCAGCCGCCGCTCCAATATAACTGTCAACCGTTGCCTCATGAGCCTCTTCGACCCCAAAATCCCTCCTTCTTCGAAACCCCGCGGCGGCGTTTCCACCCACGATGTCGTTTTCGACCCCACTCGCAGCCTCTGGTTCCGCCTTTTCCTCCCGGCCACCGCTGCCGACGCTACTCTGCCCGTCGTTGTTTACTTTCACGGCGGCGGCTTCGCGTTCTTCTCCCCCAGTTCGTTGCCGTACGATGGCTTCTGCCGGCGGCTCGCACGTGACCTCCGTGCCGTCGTTGTGTCCGTCAACTATCGCCTCTCTCCGGAGCACCGATTCCCGTCTCCCTACGAAGACGGATTTGACGCCTTGAAATTCCTCGACGGCGGCGTGGGTGATGATTTTCTGGCCGAAGCTGATCTCTGCCGCTGTTTTCTCGCCGGAGATAGTGTGGGCTGCCCTCACCACTTAAATAAGTTTTTACATTCAATAGTAATTCAACAACTGAAGATCAAAGGTTTAATTACAATACAACCATTTTTTGGCGGGGAGGAACGAACAGAGTCAGAAATTAAATTTAACGCAGGGCCGATATTAAACTTAGAGCGGTCAGATTGGTATTGGAAAGCATTCCTACCAAATGGATCAGACCGAAACCACTCGGCAGCGCATGTTTTCGGACCCGGTGCCAAAGACATTGGCGCGATGAAGTTTCCGGCGACGCTTTTGATTATAGGAGGACTAGACCAAGTGCGAGATTGGAATATAAAGTACTATGAGTGGCTGAAAGTAGAAGGAAAAGAAGTGGATTTGGTAGAATATCAAAATGCCATCCATGGTTTTTAT NSAVSYVSRRSNITVNRCLMSLFDPKIPPSSKPRGGVSTHDVVFDPTRSLWFRLFLPATAADATLPVVVYFHGGGFAFFSPSSLPYDGFCRRLARDLRAVVVSVNYRLSPEHRFPSPYEDGFDALKFLDGGVGDDFLAEADLCRCFLAGDSVGCPHHLNKFLHSIVIQQLKIKGLITIQPFFGGEERTESEIKFNAGPILNLERSDWYWKAFLPNGSDRNHSAAHVFGPGAKDIGAMKFPATLLIIGGLDQVRDWNIKYYEWLKVEGKEVDLVEYQNAIHGFY Homology
BLAST of MC11g1339 vs. ExPASy Swiss-Prot
Match: Q9LT10 (Probable carboxylesterase 18 OS=Arabidopsis thaliana OX=3702 GN=CXE18 PE=1 SV=1) HSP 1 Score: 292.7 bits (748), Expect = 4.3e-78 Identity = 139/286 (48.60%), Postives = 188/286 (65.73%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy Swiss-Prot
Match: Q940G6 (Gibberellin receptor GID1C OS=Arabidopsis thaliana OX=3702 GN=GID1C PE=1 SV=1) HSP 1 Score: 218.0 bits (554), Expect = 1.4e-55 Identity = 114/292 (39.04%), Postives = 166/292 (56.85%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy Swiss-Prot
Match: Q9LYC1 (Gibberellin receptor GID1B OS=Arabidopsis thaliana OX=3702 GN=GID1B PE=1 SV=1) HSP 1 Score: 206.1 bits (523), Expect = 5.4e-52 Identity = 111/297 (37.37%), Postives = 167/297 (56.23%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy Swiss-Prot
Match: Q9MAA7 (Gibberellin receptor GID1A OS=Arabidopsis thaliana OX=3702 GN=GID1A PE=1 SV=1) HSP 1 Score: 201.4 bits (511), Expect = 1.3e-50 Identity = 112/303 (36.96%), Postives = 162/303 (53.47%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy Swiss-Prot
Match: Q6L545 (Gibberellin receptor GID1 OS=Oryza sativa subsp. japonica OX=39947 GN=GID1 PE=1 SV=1) HSP 1 Score: 199.1 bits (505), Expect = 6.5e-50 Identity = 110/312 (35.26%), Postives = 165/312 (52.88%), Query Frame = 0
BLAST of MC11g1339 vs. NCBI nr
Match: XP_022157226.1 (probable carboxylesterase 18 [Momordica charantia]) HSP 1 Score: 416 bits (1070), Expect = 1.80e-143 Identity = 204/289 (70.59%), Postives = 232/289 (80.28%), Query Frame = 0
BLAST of MC11g1339 vs. NCBI nr
Match: XP_038890672.1 (probable carboxylesterase 18 [Benincasa hispida]) HSP 1 Score: 409 bits (1050), Expect = 1.50e-140 Identity = 200/287 (69.69%), Postives = 225/287 (78.40%), Query Frame = 0
BLAST of MC11g1339 vs. NCBI nr
Match: XP_022974072.1 (probable carboxylesterase 18 [Cucurbita maxima]) HSP 1 Score: 402 bits (1034), Expect = 4.36e-138 Identity = 194/288 (67.36%), Postives = 226/288 (78.47%), Query Frame = 0
BLAST of MC11g1339 vs. NCBI nr
Match: XP_008459512.1 (PREDICTED: probable carboxylesterase 18 [Cucumis melo]) HSP 1 Score: 396 bits (1018), Expect = 1.36e-135 Identity = 200/293 (68.26%), Postives = 227/293 (77.47%), Query Frame = 0
BLAST of MC11g1339 vs. NCBI nr
Match: KAG7025129.1 (putative carboxylesterase 18, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 394 bits (1012), Expect = 5.34e-135 Identity = 192/288 (66.67%), Postives = 224/288 (77.78%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy TrEMBL
Match: A0A6J1DXC5 (probable carboxylesterase 18 OS=Momordica charantia OX=3673 GN=LOC111023986 PE=4 SV=1) HSP 1 Score: 416 bits (1070), Expect = 8.74e-144 Identity = 204/289 (70.59%), Postives = 232/289 (80.28%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy TrEMBL
Match: A0A6J1I994 (probable carboxylesterase 18 OS=Cucurbita maxima OX=3661 GN=LOC111472693 PE=4 SV=1) HSP 1 Score: 402 bits (1034), Expect = 2.11e-138 Identity = 194/288 (67.36%), Postives = 226/288 (78.47%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy TrEMBL
Match: A0A1S3CAV2 (probable carboxylesterase 18 OS=Cucumis melo OX=3656 GN=LOC103498628 PE=4 SV=1) HSP 1 Score: 396 bits (1018), Expect = 6.57e-136 Identity = 200/293 (68.26%), Postives = 227/293 (77.47%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy TrEMBL
Match: A0A6J1EW52 (probable carboxylesterase 18 OS=Cucurbita moschata OX=3662 GN=LOC111436652 PE=4 SV=1) HSP 1 Score: 392 bits (1008), Expect = 1.89e-134 Identity = 191/288 (66.32%), Postives = 223/288 (77.43%), Query Frame = 0
BLAST of MC11g1339 vs. ExPASy TrEMBL
Match: A0A0A0KUP0 (Abhydrolase_3 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_5G647320 PE=4 SV=1) HSP 1 Score: 388 bits (997), Expect = 1.21e-132 Identity = 193/294 (65.65%), Postives = 223/294 (75.85%), Query Frame = 0
BLAST of MC11g1339 vs. TAIR 10
Match: AT5G23530.1 (carboxyesterase 18 ) HSP 1 Score: 292.7 bits (748), Expect = 3.1e-79 Identity = 139/286 (48.60%), Postives = 188/286 (65.73%), Query Frame = 0
BLAST of MC11g1339 vs. TAIR 10
Match: AT5G27320.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 218.0 bits (554), Expect = 9.7e-57 Identity = 114/292 (39.04%), Postives = 166/292 (56.85%), Query Frame = 0
BLAST of MC11g1339 vs. TAIR 10
Match: AT3G63010.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 206.1 bits (523), Expect = 3.8e-53 Identity = 111/297 (37.37%), Postives = 167/297 (56.23%), Query Frame = 0
BLAST of MC11g1339 vs. TAIR 10
Match: AT3G05120.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 201.4 bits (511), Expect = 9.4e-52 Identity = 112/303 (36.96%), Postives = 162/303 (53.47%), Query Frame = 0
BLAST of MC11g1339 vs. TAIR 10
Match: AT5G06570.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 174.1 bits (440), Expect = 1.6e-43 Identity = 104/259 (40.15%), Postives = 152/259 (58.69%), 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 Position : 0 Zoom : x 1
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.
|