MC08g2371 (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.TGTGGAATCTGTTTTCTTCCTCCATGGACGGAGCTTGTGTGTGCAGACATTAACGTTTTGCTTGTCTGCTTCTGAAAATGGCAATCTTTTGGACACTGTCCTGACCTCTCAATTCTTTCGACACTTCAACAACAAAAATTTTAAAAAAGAAGAAAAAAAAAAGTTTGTCACTTTCCATTCGAATAATTACCCTACAAAGTCCCCAAATCATATTTCTAAATTCTAATTCCATTTTCCCCTCCAGATTCCCGAGAAAGTGAGAGAAAATTCAAACCCAAAAGAAAAAGAATTCCAGAACCAGACCCACATCTTCCTTTTCCCCAACTCAATACTTACCATTTGGCGTAACAGAAAAATTCTCCCCCTTCATTTTTCTGCTGTCCGCCATTGTTGATCTTCTCGAAGCTTGGGTTTTCCAGATTGCTGCTGCCGGTCGGCGGAGGAGATGGATTTGAGCCGGAGGAGGGCGGCGGCGAGGGGCAGCGTGGTGGCGGGCTCTGTGTGGGAGAGCAGGATCAGATTCGATGAAGTCAGAGGTGGCATTAGGGTTTTTAACGGAGACGATGGAAATGGCGAATGTGGGGTTCCGGCCGCCGTTCCCGGCGGAGTCGGTGGCGGCGCGAGGAGGAAGACGTGGAAATCGGAGGAGGGTTTTAATTCGATCCTCATCGCTGAGGAAAAACCCGATGAGTCGCCGAGTAGCGGCGATGAACAGAATCGGAAAAGCCCGATTCTGGCGAGGAAATTGAGATCCAACGGCAGCCCCCCAATCAAACCGATTCAAGTCTCCGGCGAGAGAACAGAGAAGAACTCAGCGAGGAAGAAGACCGATCAAACTCGCAAATCTGCCGGTGGTACGAGACCGGCAAACGGAATCGGGAAAAACTCGCCGGAGAAAAACTTCGAGGAGTTTAATGAATGCAAAGAGAAGCTCATTTCTTCAGCTCCCCAACTTTTCTTCGACGCCCATGAAAAAGAAGAAGAAGCAGAGATTGAGAAAAAAAGCTTCGATGTTAAGGAAATAAATTTACCAGAGCGCAAGAAAATCGCGGCAGAAACTTTCCCGGGAAACAAACAGAAACTGCAGACATTAAGTGAGAGAGCAAATTCTGATTTTCATTTCATTTTCATTTTGATTTTCCCCTAATTCAATTCCTTAATATCTTTGGCGTTTTGCAGTGGATTTAATAATGTGGAGAGATTTCTCAAGATCCGCGCTGGTTTTTGGGGCGGGGAATTTCATTATAATCCTCTCGTTTTTCATCAAGGACATCAATATCAGGTAAAGAAGAAATGGAAAAAATCCCCAAATCCGCCATTATTGAGCTTCAGATGGGCTTTTGAGTTTGATTCTGTTTTCTCTGCAGCTTTATCAGTGTGATTTCCCATCTGGGTCTTCTTTTTCTCGCTGCCATCTTCCTCCACAGGTCGATTTTTGGCAGGTGATTGATGAGTTTCTTTCTTCATAGCTTTTGAGAATTGAAAAGAAGCCATTAGAGGCAATTCTCTGAGTTTTTTTTTTCCTTTTCTATTTGATTTTCCCGGGAAAATTACAGGAGAAAAGAAATTGGTGGGGTTGATGAAAATTACGTGGTTGGAGAAGAAGAAATGATTCGATTTGCCAAACGATTAGTTCCTTGCGTGAATGAGTTGCTACAAAATCTTAAGGCTCTGTTCCGTGGAGATCCTTCTGCAACCATGAAGGTAACTTTTTCTTTTTTTTGTTATATTTTAAAAATAAGTTTCAGTGTATATTTATATAATTATGTTGAATAATTAATGAAAAATGACTAATTAGGGATAAATTGTAAAAAAAATTGAATCCCATTCTTACTTGTTGTGGCATTTATAAAAATATTATCTTTCGATAGATTTGGGTGGAGTTTTTCTTTTTCTTTTTATATTTATAGTAGTGTCGGTTAGAATTGTTTTATTGGGTGGCGTGAAGATAATATTTAACAATAAAAATATTTATTTTTTTGAATTGTTAAATTACCATTTTAATGGTATTACTAAATTTAATATGTAATAGGTTGAAATGTTATTTTGCTCTCTTTTTACTTCCCGTTTTGATTCATTAAATTACTTTAATTTTAATTAGTAATTTTTAAAATGCCTATGGTGTATGATTAGAAAGTGGCTCAGCCATTGTTTACGGAATCTTAACACACATTCTCTAACTAACAAAAATATTATAATATAAAATTATGATTATATATAGAAGCAATGTATGGAGTGTAGTGTCGTATTATAATACATGAAATAGGTAAGATAAAAAATAAAATAAATGGATAAAAATGACAATTTCTTTTAATGGTGGGATCATTAAAGTTCGAAGTATAGAGATCACAATGAATGAATAGAGCGGCGGAAAGCATATAGATTAAAATACTATTTAATGTATCTAGTACTTTAATGATAAAATTAAGCTTTTGAAGTATTATAATACATTCATTCCTTTTTTTTAGTTTATTATATTTTTATTTTGAAGAATTAATTTTGATTCAGAAATTATATAGAACATTTTATTTGATGTAATATATAATATTGTGTATGGTGCAGTTGGCGGTATTGCTGTTTGTGTTAGCGAAGTGGGGCAAATTCATCACTCTTTGGAATGTTGTCAAATGCGGTAACCATTCTATCATGTCCTTTTTACTCATTTACCCTCCAGAATATATATATATATATATTTCACTCCTAAAATTTCACTATCGAATTTTGATTTGATTTTAGTTAAATTACGAGTTTGGATCCTAAATTTTTAAAGTTGTGTGTAACATGCCATATTTCTTTAGCACTTTGAATTTTATATTGATCTAAAAAATCTAAGTACCTTTCAAGGCACTTCTAAAAGTCATTGAAAGTTAAAAGATTATGGTAGTTAGGGAGCAAAATGTACTTTTGGTCATTGGAGTTTGCGGTTGCTACTACTTATTTGGTCCTTGGGATTTGAAGATGGACACTCCAGTTCTTGAGATTTGAGAAAATGTTCTTACTGGTTCGATAATTGACTAACAATATTTCTTCAATGACTAAACTTTTTTTCTCCTCTTCCGGACCTCATTTGCCTTTCCCTAGTCTCTATAAAAATATTATGGAATTAATATATTTTGTCAAATTAGTAAGTAATTCAAAGCGAACAAACGAGTTCAAGAACCCTTTAAAATATTTGTTAAATCTCATAGCCCAAAAATGTCGCTTTTGAAACTTCATGAACTAAATAAGTATCCAGAATAAAAATTGTATTTTGCCAAAGTTAGTTAGCGTGATGTACTTTGCTAAAGTTATTTACTCTTATGTTATTTGGGACACATTCGATTTCTCAAGGTAAGGTGCAAGTTAATTTAACTAAATTATAAATTTTAAAGAATTTAGAGGATAAGAATTTAAGGTACTAATCGACTTAAAATTTAATATTTTATGATTTTTTTGATAGTCAAATATAATAAAGTGGAGTCATTGTCAAGGTTGAGAAAGAAAAAAAAAAAAGTTAACTAAATTATAAAAAGATTAAATTGGAACTTCTAAAATTTAGAAAAGGGAATTAATTAGTAATTAATAATATTTTAGCTTATTCTTCATTTGCTTTGTTTTGTATTTTCTTTGGGTACTGACTGACAAATGGTTGTACTGATTTTACTGGCACAGGATTCTTCGCGCTTTTCACACTGCCTAAATTAATTACCCACGGTAAATATATATCGCCACTAACTTTACTTTTATTTTTTAATTAAAATATTATTTTGATTTTGTATTCTCAAGTTTGGTTTATTTTCATCTCTATATTTTTAAATTATAAAATATTTCTTTTAGTCATTGTATGTTCAACTTTGATTCATTTTAGTTTATATATTTTCAAAATTTTCGTTCGGGTCCGTGAATTTTTTAAAATGGACCATTTAGTTTTTATTTATAAAATTTTAAAATAAATTCTGCATATAACTAAAATTCTTTAATATAAAATCATATTTACATAAATATTTCAAAAGCAGTGTCATACTAAAAGTTTGATAGAAAAAATTAAAATAAATAAAATGTATATTTTAAAAGTTCAAGACCGAACAAAAAAATAGAGGGACAAAAATAGCGTTTTAACATTTTTTCTGGCTCCTTATCGGTGTTAGAATTGCATACGGCCGAGTACAACAAACTACCGTACGCCTCTGTGTTCTGGTACGTCGATTTGTTTGACCCTCTCCTGGTCCCACATTCTGCCTCTCTTTTGTCTCTTCAAATAACGGCTACGTTTCCGATCATTTCTTTTGGAAGAAAAATAAAATTAATTTCAGACTCAATTTTTCCGTCACGTTGGGTGGGGCCCACTTAAACCTTCACGAGGTAAAATAAAAAAAGGGATTATTTATTTATTCTTTGTCGGTGATTTCTTTTCTTTTCATACGTTTGGGTGTCAGATCTGTCGGATGGTGTGATATGAGGTTACATCATGGCCGTTCGTTTATTTACTTTCTTCAATTTTTCTACAGGATTTTGTCTCCTAATTTTTTGTTCTTTTTTTTTTTTATTTAAAGAATCGATAGTGAAAGTTTTATTTTGATCCTCGAAAATTTAAAACTCTATTGGGTTCGTGACCTAATTTTGTTTTGGTTTCGGTCTATTTTCGAGTTTTAATTTATAATACGTTGATTTTTTCCAGACCTTTTTGTGTCATTTTGGTATATTTTTGTTAATTTGAATTTCTAAAAAATAATAAATTTTGTCCCCCCTATATTTCTATCTAATATCTTTTTGTCTAACATTTTCTCACCGACCTTAATACTAATCTCAATATGTTAATCATTTGTCCAACCAAAAAAAAAAAATTAGATTTTTAAAATTTAGGGACCATAAGAGAAAATTTGAAAATCTAAGAATACTAAATGTAAAAAAATTTAGAGACCGAAACAGGATTACAACAATTTGTTTTTTGTATTTTCATATACAATGTTTGGAATATTTATTTTAGAAATAATGGGTTAAAATTTAGTTTTAGTCCATAAATCTTTAATTCTTTTTTTTTCGAGCAACGATTACCTGCTTTATTGGCTTCAATATATGCCTACGTCAAAACTCTTCAAAATCCCTTGGCCCCTTTAGCTCTTTGTTCTTGTGATCATGCTTTTCTTTTACTCGTCGTTATCAAATCAGTCGAGAATATTTTCACTAATGATTTCGGGCGTGTTTGAGGATACTTTGTAATGTCTTTTTTTGAGTGTTTAATGATGTTTGGGTTTTCTCTTTTGGAAATTAGGTGATCATTGGATGAAATTTCTTTGGAGTTCTTGGAAGATATGTTCCCACAAGAAGGGAATGGCCATTGCCATCTTCTTTATAACATGGAATTTCTCTTCAATTCTATATCGAATTTGGGCAGGTAACCATTTCAAACCCAAATATAATCTCGATATTACAGATAAAACTCGTTTCTAGATTGTCAATTGGTTTTCGGAAACATAGTTCATACATACCCAAAACACATTGAGTACCCTTCCTACTAAAGACAAATAGATGAGAGCATCACCAAACAGGCACGATATATATTGACATTTGAGGTATGATTTTGCAGCTTTCATAGTGTTTGTGAGCTTTCGGTACTACCAAGAGTCTTCAGAAAGAGATGGTTGGGTTAAAAATGTGGAAGCAGCTCGAAGTAACGACACCATTTCGGTAAGTTCAAAGCTCAAGAGACAATATTGATCAATTTTGAGGCTCTTTTTCTCTGTTCTTTATAGCTAGGTCGAAATTTCCATGTAAATGAATGTGTTATGTTAGAAAGCCATCATGTATCTTACGAAGGAGAAAAAAAAATGGAGAAATGGTTATTTTCTAAAAAATCAACTAATAATTCTTCGAAATGTAAAAGCGAGAAAATAGTAATTAGAGAGAGACAACCCACATAATACCTCTAACAAATTAAGGTTTGAATCTCGGCTCGAGATGAATTTGTATTTTGGGCTCTCAAAAATTGTTTGGATTCGAGGCCTAACAATTAAAATTATGATTATGGAGTTGGAAATATTAGGGGATATTCATCAAATACAAAGTGTG TGTGGAATCTGTTTTCTTCCTCCATGGACGGAGCTTGTGTGTGCAGACATTAACGTTTTGCTTGTCTGCTTCTGAAAATGGCAATCTTTTGGACACTGTCCTGACCTCTCAATTCTTTCGACACTTCAACAACAAAAATTTTAAAAAAGAAGAAAAAAAAAAGTTTGTCACTTTCCATTCGAATAATTACCCTACAAAGTCCCCAAATCATATTTCTAAATTCTAATTCCATTTTCCCCTCCAGATTCCCGAGAAAGTGAGAGAAAATTCAAACCCAAAAGAAAAAGAATTCCAGAACCAGACCCACATCTTCCTTTTCCCCAACTCAATACTTACCATTTGGCGTAACAGAAAAATTCTCCCCCTTCATTTTTCTGCTGTCCGCCATTGTTGATCTTCTCGAAGCTTGGGTTTTCCAGATTGCTGCTGCCGGTCGGCGGAGGAGATGGATTTGAGCCGGAGGAGGGCGGCGGCGAGGGGCAGCGTGGTGGCGGGCTCTGTGTGGGAGAGCAGGATCAGATTCGATGAAGTCAGAGGTGGCATTAGGGTTTTTAACGGAGACGATGGAAATGGCGAATGTGGGGTTCCGGCCGCCGTTCCCGGCGGAGTCGGTGGCGGCGCGAGGAGGAAGACGTGGAAATCGGAGGAGGGTTTTAATTCGATCCTCATCGCTGAGGAAAAACCCGATGAGTCGCCGAGTAGCGGCGATGAACAGAATCGGAAAAGCCCGATTCTGGCGAGGAAATTGAGATCCAACGGCAGCCCCCCAATCAAACCGATTCAAGTCTCCGGCGAGAGAACAGAGAAGAACTCAGCGAGGAAGAAGACCGATCAAACTCGCAAATCTGCCGGTGGTACGAGACCGGCAAACGGAATCGGGAAAAACTCGCCGGAGAAAAACTTCGAGGAGTTTAATGAATGCAAAGAGAAGCTCATTTCTTCAGCTCCCCAACTTTTCTTCGACGCCCATGAAAAAGAAGAAGAAGCAGAGATTGAGAAAAAAAGCTTCGATGTTAAGGAAATAAATTTACCAGAGCGCAAGAAAATCGCGGCAGAAACTTTCCCGGGAAACAAACAGAAACTGCAGACATTAATGGATTTAATAATGTGGAGAGATTTCTCAAGATCCGCGCTGGTTTTTGGGGCGGGGAATTTCATTATAATCCTCTCGTTTTTCATCAAGGACATCAATATCAGCTTTATCAGTGTGATTTCCCATCTGGGTCTTCTTTTTCTCGCTGCCATCTTCCTCCACAGGTCGATTTTTGGCAGGAGAAAAGAAATTGGTGGGGTTGATGAAAATTACGTGGTTGGAGAAGAAGAAATGATTCGATTTGCCAAACGATTAGTTCCTTGCGTGAATGAGTTGCTACAAAATCTTAAGGCTCTGTTCCGTGGAGATCCTTCTGCAACCATGAAGTTGGCGGTATTGCTGTTTGTGTTAGCGAAGTGGGGCAAATTCATCACTCTTTGGAATGTTGTCAAATGCGGATTCTTCGCGCTTTTCACACTGCCTAAATTAATTACCCACGGTGATCATTGGATGAAATTTCTTTGGAGTTCTTGGAAGATATGTTCCCACAAGAAGGGAATGGCCATTGCCATCTTCTTTATAACATGGAATTTCTCTTCAATTCTATATCGAATTTGGGCAGCTTTCATAGTGTTTGTGAGCTTTCGGTACTACCAAGAGTCTTCAGAAAGAGATGGTTGGGTTAAAAATGTGGAAGCAGCTCGAAGTAACGACACCATTTCGGTAAGTTCAAAGCTCAAGAGACAATATTGATCAATTTTGAGGCTCTTTTTCTCTGTTCTTTATAGCTAGGTCGAAATTTCCATGTAAATGAATGTGTTATGTTAGAAAGCCATCATGTATCTTACGAAGGAGAAAAAAAAATGGAGAAATGGTTATTTTCTAAAAAATCAACTAATAATTCTTCGAAATGTAAAAGCGAGAAAATAGTAATTAGAGAGAGACAACCCACATAATACCTCTAACAAATTAAGGTTTGAATCTCGGCTCGAGATGAATTTGTATTTTGGGCTCTCAAAAATTGTTTGGATTCGAGGCCTAACAATTAAAATTATGATTATGGAGTTGGAAATATTAGGGGATATTCATCAAATACAAAGTGTG ATGGATTTGAGCCGGAGGAGGGCGGCGGCGAGGGGCAGCGTGGTGGCGGGCTCTGTGTGGGAGAGCAGGATCAGATTCGATGAAGTCAGAGGTGGCATTAGGGTTTTTAACGGAGACGATGGAAATGGCGAATGTGGGGTTCCGGCCGCCGTTCCCGGCGGAGTCGGTGGCGGCGCGAGGAGGAAGACGTGGAAATCGGAGGAGGGTTTTAATTCGATCCTCATCGCTGAGGAAAAACCCGATGAGTCGCCGAGTAGCGGCGATGAACAGAATCGGAAAAGCCCGATTCTGGCGAGGAAATTGAGATCCAACGGCAGCCCCCCAATCAAACCGATTCAAGTCTCCGGCGAGAGAACAGAGAAGAACTCAGCGAGGAAGAAGACCGATCAAACTCGCAAATCTGCCGGTGGTACGAGACCGGCAAACGGAATCGGGAAAAACTCGCCGGAGAAAAACTTCGAGGAGTTTAATGAATGCAAAGAGAAGCTCATTTCTTCAGCTCCCCAACTTTTCTTCGACGCCCATGAAAAAGAAGAAGAAGCAGAGATTGAGAAAAAAAGCTTCGATGTTAAGGAAATAAATTTACCAGAGCGCAAGAAAATCGCGGCAGAAACTTTCCCGGGAAACAAACAGAAACTGCAGACATTAATGGATTTAATAATGTGGAGAGATTTCTCAAGATCCGCGCTGGTTTTTGGGGCGGGGAATTTCATTATAATCCTCTCGTTTTTCATCAAGGACATCAATATCAGCTTTATCAGTGTGATTTCCCATCTGGGTCTTCTTTTTCTCGCTGCCATCTTCCTCCACAGGTCGATTTTTGGCAGGAGAAAAGAAATTGGTGGGGTTGATGAAAATTACGTGGTTGGAGAAGAAGAAATGATTCGATTTGCCAAACGATTAGTTCCTTGCGTGAATGAGTTGCTACAAAATCTTAAGGCTCTGTTCCGTGGAGATCCTTCTGCAACCATGAAGTTGGCGGTATTGCTGTTTGTGTTAGCGAAGTGGGGCAAATTCATCACTCTTTGGAATGTTGTCAAATGCGGATTCTTCGCGCTTTTCACACTGCCTAAATTAATTACCCACGGTGATCATTGGATGAAATTTCTTTGGAGTTCTTGGAAGATATGTTCCCACAAGAAGGGAATGGCCATTGCCATCTTCTTTATAACATGGAATTTCTCTTCAATTCTATATCGAATTTGGGCAGCTTTCATAGTGTTTGTGAGCTTTCGGTACTACCAAGAGTCTTCAGAAAGAGATGGTTGGGTTAAAAATGTGGAAGCAGCTCGAAGTAACGACACCATTTCGGTAAGTTCAAAGCTCAAGAGACAATATTGA MDLSRRRAAARGSVVAGSVWESRIRFDEVRGGIRVFNGDDGNGECGVPAAVPGGVGGGARRKTWKSEEGFNSILIAEEKPDESPSSGDEQNRKSPILARKLRSNGSPPIKPIQVSGERTEKNSARKKTDQTRKSAGGTRPANGIGKNSPEKNFEEFNECKEKLISSAPQLFFDAHEKEEEAEIEKKSFDVKEINLPERKKIAAETFPGNKQKLQTLMDLIMWRDFSRSALVFGAGNFIIILSFFIKDINISFISVISHLGLLFLAAIFLHRSIFGRRKEIGGVDENYVVGEEEMIRFAKRLVPCVNELLQNLKALFRGDPSATMKLAVLLFVLAKWGKFITLWNVVKCGFFALFTLPKLITHGDHWMKFLWSSWKICSHKKGMAIAIFFITWNFSSILYRIWAAFIVFVSFRYYQESSERDGWVKNVEAARSNDTISVSSKLKRQY Homology
BLAST of MC08g2371 vs. ExPASy Swiss-Prot
Match: Q56X72 (Reticulon-like protein B21 OS=Arabidopsis thaliana OX=3702 GN=RTNLB21 PE=2 SV=2) HSP 1 Score: 204.1 bits (518), Expect = 3.2e-51 Identity = 118/304 (38.82%), Postives = 175/304 (57.57%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy Swiss-Prot
Match: Q6DR04 (Reticulon-like protein B17 OS=Arabidopsis thaliana OX=3702 GN=RTNLB17 PE=2 SV=1) HSP 1 Score: 134.0 bits (336), Expect = 4.1e-30 Identity = 76/212 (35.85%), Postives = 119/212 (56.13%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy Swiss-Prot
Match: Q8LDS3 (Reticulon-like protein B18 OS=Arabidopsis thaliana OX=3702 GN=RTNLB18 PE=2 SV=2) HSP 1 Score: 109.0 bits (271), Expect = 1.4e-22 Identity = 102/370 (27.57%), Postives = 171/370 (46.22%), Query Frame = 0
BLAST of MC08g2371 vs. NCBI nr
Match: XP_022143229.1 (reticulon-like protein B21 isoform X1 [Momordica charantia]) HSP 1 Score: 870 bits (2249), Expect = 0.0 Identity = 446/446 (100.00%), Postives = 446/446 (100.00%), Query Frame = 0
BLAST of MC08g2371 vs. NCBI nr
Match: XP_022143230.1 (reticulon-like protein B21 isoform X2 [Momordica charantia]) HSP 1 Score: 701 bits (1808), Expect = 2.37e-252 Identity = 363/365 (99.45%), Postives = 363/365 (99.45%), Query Frame = 0
BLAST of MC08g2371 vs. NCBI nr
Match: XP_038890790.1 (reticulon-like protein B21 [Benincasa hispida] >XP_038890791.1 reticulon-like protein B21 [Benincasa hispida]) HSP 1 Score: 660 bits (1704), Expect = 1.94e-235 Identity = 345/451 (76.50%), Postives = 385/451 (85.37%), Query Frame = 0
BLAST of MC08g2371 vs. NCBI nr
Match: XP_008456496.1 (PREDICTED: reticulon-like protein B21 isoform X1 [Cucumis melo]) HSP 1 Score: 642 bits (1656), Expect = 4.04e-228 Identity = 341/452 (75.44%), Postives = 380/452 (84.07%), Query Frame = 0
BLAST of MC08g2371 vs. NCBI nr
Match: KAA0063564.1 (reticulon-like protein B21 isoform X1 [Cucumis melo var. makuwa] >TYJ97890.1 reticulon-like protein B21 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 642 bits (1656), Expect = 4.04e-228 Identity = 341/452 (75.44%), Postives = 380/452 (84.07%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy TrEMBL
Match: A0A6J1CNQ3 (Reticulon-like protein OS=Momordica charantia OX=3673 GN=LOC111013145 PE=4 SV=1) HSP 1 Score: 870 bits (2249), Expect = 0.0 Identity = 446/446 (100.00%), Postives = 446/446 (100.00%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy TrEMBL
Match: A0A6J1CN89 (Reticulon-like protein OS=Momordica charantia OX=3673 GN=LOC111013145 PE=4 SV=1) HSP 1 Score: 701 bits (1808), Expect = 1.15e-252 Identity = 363/365 (99.45%), Postives = 363/365 (99.45%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy TrEMBL
Match: A0A5A7V8P0 (Reticulon-like protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold285G001050 PE=4 SV=1) HSP 1 Score: 642 bits (1656), Expect = 1.96e-228 Identity = 341/452 (75.44%), Postives = 380/452 (84.07%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy TrEMBL
Match: A0A1S3C3D4 (Reticulon-like protein OS=Cucumis melo OX=3656 GN=LOC103496431 PE=4 SV=1) HSP 1 Score: 642 bits (1656), Expect = 1.96e-228 Identity = 341/452 (75.44%), Postives = 380/452 (84.07%), Query Frame = 0
BLAST of MC08g2371 vs. ExPASy TrEMBL
Match: A0A0A0LG57 (Reticulon-like protein OS=Cucumis sativus OX=3659 GN=Csa_2G009500 PE=4 SV=1) HSP 1 Score: 628 bits (1619), Expect = 7.45e-223 Identity = 335/451 (74.28%), Postives = 375/451 (83.15%), Query Frame = 0
BLAST of MC08g2371 vs. TAIR 10
Match: AT5G58000.1 (Reticulon family protein ) HSP 1 Score: 204.1 bits (518), Expect = 2.3e-52 Identity = 118/304 (38.82%), Postives = 175/304 (57.57%), Query Frame = 0
BLAST of MC08g2371 vs. TAIR 10
Match: AT2G20590.1 (Reticulon family protein ) HSP 1 Score: 134.0 bits (336), Expect = 2.9e-31 Identity = 76/212 (35.85%), Postives = 119/212 (56.13%), Query Frame = 0
BLAST of MC08g2371 vs. TAIR 10
Match: AT4G28430.1 (Reticulon family protein ) HSP 1 Score: 109.0 bits (271), Expect = 1.0e-23 Identity = 102/370 (27.57%), Postives = 171/370 (46.22%), Query Frame = 0
BLAST of MC08g2371 vs. TAIR 10
Match: AT2G20590.2 (Reticulon family protein ) HSP 1 Score: 105.9 bits (263), Expect = 8.4e-23 Identity = 56/152 (36.84%), Postives = 87/152 (57.24%), 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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