MC11g1409 (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.CAGGTGGGAAAAAAGGAAGTTCAATTGTCGGGGAGACAGAAACAAAGAATAGCAATTGCACGAGCAATCATCAAGCGACTATGGATCCTCCTCCTCGACAAGGTCACGAGTGCATTGGATTCAGAATCAGAGTGGATCATCCAAGAAGCCCTCGATAAAGCAATCGTCCGTCGGACCACCATCATCATCGCCCACCGCCTCTCAACATTTCACAACGTCGACATCATCGTCGTCTTCTGAAACTGCCACATCATGGAAATGGGTGTTGGGAATGACAAAGTTTATTGACAAAAGGTAAAATAAATATCTTTTTTATGGTTTTGAAAAAAGTTTTATTTTCTTTTAATTATTTGAACGTTACTAAATTAATTATTTGATGTTTTAATCAATTATTTAGTTTCATTTTGTAATGTTTTAATTAATAAAGTTAAACGTTTTTTTTCCTTTTTAAACTAAATCAAATTTCCTTATTCACGGTGAAGAAAATAAGCTTCTAACAAAATTTCTGAGCGTGTTCTTCGATTTCATCCAGCTCCGACGAGTGCACGCTTGAGTTCAGAGTTGTGTTAACCTTCGGGAGCAACTGACATACATACAATTTAGCACCGTGGTCGTACAAAAATTACATTCAAGCAGTGGTTCAACCACGACACAACAATCGTTTTCATCTAATTTCTCAATCAGTTCGTACAATTTGGAGTGATTAGATGAACAGAAATCTTAGTATTATTACACAAAAATCCCAAATTTGCTATTGTTCCTACATATCTATGTCTCGGGTTTGTATCTATTCTGATATGTTCATGTTCATGGCGGAGAAATTTGTGCTGGTGCCAAATTTGTTTGTGGATATGCCCATCGAAGCCAGCTGTAGATCTGGATGAATCTCACCGAACGGAGAGCAGAACGCTGTAGAGCTGGTTCGGCTTCTTGTGTTTGCAGATCTGGTGGCCCTACTGATACTTCGAGGTTGCTTATGCTGGATCGATTCATCAGAACTCCGAATCAGAGAGAAAAAAAACCAGTACTAGTCGGAGGGCCACATACTTGGTGGTTTACACTGAATCGATGCAGAACGTCGGATATGAGATCAAGGGACAGAACACCGAATCTAAGATCTGAGATCTGCTTGTGTTCAGCTGCCGCCACGCCACACGTGGTTCACAGCCGTCAATCGCACCATCCACCATGAGCTGCTACGTGGGTCACCGTCCACCGTGAGCTGTTGTACGTGCGTCGTCGTCCACCGCCGACCACATTGTCAGAGCAGATCTGCTCGCGTGGGTCACATGCACCGCATACGGGGCTCGTCGAAGATTAGTGGTCTATGGTCGCTAGAGTAGATCCTGCTTGTGTCGCGTGTCGTTTCGTCGTGGTCATTGAAGAAACTCTTTTGGCAGTTATAGTTGGAGATGGATTGTGCACAAAAGACTACAATTGTCGGTGGAGGCTACCAAAAATAATTTTAAAGATGGAAGAAAGACATATGGAAGCTAAATAGGTGAATTTCGTATTATCTATTATACAAGATTTTGCAATATTATTTGGGGTGCAATATTATCTTAATAGGTTGAGTTTCCTATAAGCATAAAAGTTTTTAAATCTTTTAAGTACCTTACCGAGATTTAAAAGTTGTTAATATTAATTGGAAATTATTTGTGAAAGTTGTTTTAAGCTGATTAGATTGAAATTGTGAAAAAAAAAGGTAATGGACTATGTCAATTTAAATAGTTTAAGTTTGATTTCATATCTTAAATTATCGTGGTTATTGAGATTTTTAATTACTCATGAATTTTTCATTAGAATGAAAATTATTTTATTGATATAATTTGAAATATAATTTCCTTATTCTAGTTGAAAATAGAAAATGTGGAAAATGTCAAATATGTGTGATGCTCGTAAGAAAAAAAAAATAAAAAATATAGGATCATGGATTAAAATCTTTTTATTGGTGATTTAAGATCTTAATGGAATAAAGTTGAATATAGTCATATTGAAGATATAAAATTATTAGTTATAAATAATTTATTATGAGCATGTCTACGAAAAAAGAATAAATTGTACTATTAAATAGTGCATAACTTATTTCCTTTTGATGTTATTTGTTATTATATGAGATTCATAATCTTGAGTATCATTAAATGTGAAAATCATGAACTTAGATGATTGACTAATTATTCATGTGTATCTGGTATTATTTAAATTATTTAGCAAAGTATGAAAAATATAACTTCTTGATGAAGTTTATTGACATGACTTTGAGAAATTAAAGTAATTATTGGTAGAATAATTAATTTGAGACGTCACGAGGATGATCATGTGAAATTATTATTTCTTAATCAATTTTTGGTTGAAAATTCAAATAAGAGATATGTTCAATCTGAATGCATATATCTTATAGATGAGATAGATTTAATATAGTTACCTAAAAGGAGTAAACATATTAGGTATAAATCAATTGTTAAATAATTATACCAGTTGGTTTAATAAAAATTCATAGGAGTTGTGTGATATACACAAAATATAATATTCATAGATGTTTTCCTGTAACTAAAATAGTTGCTATTAGATCTTAGATCTCGTTTGCAGGTATTTGGCATATTTATACATCGATTGCATGTAAAAAATTGCATTTATTAAATTGTGATTTGATATTTTTATCTCAACTTGAAAGTTTTGTGGTCAGTGTTATGAGAATAAGATAAAGCTTTAAAATTTTCTTTATGGTACCAAGCAACACTACAAGAATGTCAGGTTTCGGTGATGAATTTTTTCGTCATCGAAAGCAGCATTTTCGTTGTCAAAGATCTTCGGCGACGAAAATCGTTCGTTGCCCAAGTCGTCGTGGTAGGGCCATCACCAGATGTATTTGACGACGAAAGCCAATTTTTGTCGTCAAAACTATCTTCGACAACACCGTGGTCATGACTAAAATTTCGTCACCGAAGGTATAATCAGCGAAATTTGTATTTCGTCGCTGAAACCCTCATTGGCGGCGACGAAACCTGTATTTCATCACCGAAACCCTCTTTCAGCGACGAAACTTTGTTTCATCACTGATTACCTTCGACGACGAAATTTGTTCGTTGCCAAAGGTACAATCCTGCATTTTTTCTTCCCTTTTTTTCCTGTATAAATCCGAAATTTCCATAACACCTTGACCAAGAACCGAATTTCATTGAAAAAGTCATAATATTAAAAGTTTTACAACAGTACGGATGTAACGACAACTCTAAAATGTCCCAAACTTAAACAATTGAAACATATACTAAACAATTACATCTTATAAAGTTTGCTCATTCATAAAATTTGATCAAGTTTCCAAAAATCTTTCCATAGAAGGATCGAACAAACCTGAAAAAACAAATAACAAATAAATTTATATTAACAAAATAATTTATCTATTTCTTAAAACTAATTTAAAAGTCATAAAAATATCTAACTCAGTCCACATGAATGATTTAACTCAAACTAGACATTAAAAGTTAACTTACCACATCTATTAAAAGTTAACAAACTTTTATTCTAACTCACTTTACATGTCATATGAACTCAAACGATGAAGCATTTAAACTTCTCTATGTCATGAACTCAAAATAAGCATTTCACAAACTAAAATAGAGCGTCCCCACCAACACTATCTTTCAACTAAAGGAAAAAAATATAAGAGCATCCCTTCCCAACACTTTCCTTCGAAGTATGGAGCATCCATCCCCCAACACTTTCATTCAAAGTATGTATAACCCCCCCCCCCCTCCCTCCCTCTTCCCTCTCCCCTCTCCCCAACATTTCATTAGAAGTATGTATAACACTTTCCCCCTTCTCAACACTTCAAATTTCCAAAAATTGCTCTTACAACGTAAAACATACACACTCACCAATAAACTTTATAAATTTAATAGAATTATCTAACAACACTTAAACATAACCATATAACTGATCCATTCGTGATATACGTTTTAAATGGCTGCCATAACTGCAGGATAGCTACATTTACAACTATTCAATTCTAACAAGTAGTAAACGTACCTATTTTGATGAGCTGGCTCCACCAGAACGACCCATAAATTCTAGCATCATGGATTTCAAATCTGACATTTCACCGCGCAGACCCGTAATCTCAGACTCTTTGTGTGCGAGAGACTCTTTAACTCTTCAAATTCTTTGTCTTTGTGTGTAAGGCGCTCCTCAAACTCGTTGTTCTTTCGTGTGAGACGGTTCTCAAATTCTTCTTTTAGTGTACTTATTTCTTGAGACAGCTCTTGTTCCCGTTGTGAAGAATGTACACTTGAAGCAGAACCTCTACGAGATTTAGGTTTCAGACCCCAACCAACATTTTTAATGTATCTTGATCGATACCCGAGAACTGATTCCAGTACTTCTGGGTCTGGCATGGATTTGTCGCCGTCTGCATAGATTCTTCTCTAACGCGCATCATATCTAGCTACATATACATATTTAAAAAACATCAAAGTGTTTACACATAAAAATTTAAGCGTAATTTGAAGTTAATTGTTATAAAAGTAGTAAACTTACATAAGCTGTCTCCGCGCCTTCAACCCAACCTTTAGATTCGGAGTATCTCGTCTCTTTGAACAGATCGATTTCACTGAAGTTATCACCTTCATCTTCCTCGCTCTGCACTTGATAACACATACTTGTTGATAATCGATCATTAGTAATATAAGTATATGAAATAAAAATTTTATTGAATTATACCTTCTCCTTGGCAATTATAGCAAACGCCTTCGCCCCATACGATGGTTGAATGACATCTTCGCCCTGTTGCATTTGTTGGTCTCAGGTTTTTACTAACAAAACAAACTTACATCAGAATTTTGAATATAAATTATATAAAACAAGTATAAGTTATATTTGTAAACTACCTTCTACTCATCTAACTCCCATCTATCGCATAACATATTCCAATCATTTGGTTTTGCCAACAACCGCTCGTGCAGAGTGTTGCGAACAATCTCAGGCGTGGGTTGACTTAGGTAGTATTTATGCAATTTTGACCTATACGTCTTATGTGTCTGTTTCATTTCATACTAGATAAAAGACATTATAATTGGGTCTGACTCGTCGAAATCGAAATGACCCTACGAAAAAAAACACCGAACGAAGTGGATTGTTATTGTTGCTACATCATAAAAAATGCTAAAACATATAAGTAATTAATCTCAAACCTTGAGATGGGTTAGAATTGCCATTTTCTCACTTTGTTCGACCTCGTTCCATTTACTACGTTTTAGGCTAACACATTCATGCGTATGTACCTCGATCAAGTTAGAAAACGTGGTGGCCATAGAACAAGTTGGTTTATTCACTGTGGGGTCACATCTGATCCTTACTTTTGTGTTACTTGAACGGACTTTATTTTCTAGATCTATCAATCGGGTGTATCTTCGTACGTCTGTTCTAACTGTATCTTGTCAAACATTAAACCAATTAGTTAAATATAACTTATTTATTTTCCATATATTTAAATTGACTTACCTGGAGGAAGAACTGGAACATGCGGGTTCGCTGGTGGATGATCACCACCCTGTACGTGTTCTTGTGATTGACCTACTTGGTATGAATTCATTTTTCTACAAACTTAGGCAGACAACCAATGAGTATTACATATTGACAAAACAAATACTGAACATAAATCAATTTCATGCCTAATTTATCTAACATATAATTAAATTGACGTACTTGGAGGATTATTTATTTGCTACTGTATTCATCATCAACATCATCAATACTATTGTCAGTTGACGCGTCATGTACATCGTCTGATTTGTCATTTATAAAATCATCCACATTGCACATATGTATGCTTCTATTTGATTGTTCTTGACCCTTAACAACAACAGAATCAACACCATCTCGACGCAATGAACTATCTTGAGTGAATTCATCTACTTCGATCATGGGTCCTACTTCTAACAATGGAATATGATCATCATTTCCAGCGTCTTCTTGTTCTGGAATATCCCATAACGTTTATTTAGAGTATTTTGAACAACTTTTCAATTATTACCAAGTTTGGGGTCATCAAAATAAAAAACTTGTTGTGCTTGACCAGTGAGAATTAATGGGTCGTCTGCATACCAATAATTAGAAGTATTAATCGACTTAAAACCTAAGTCAACTCGAATTTTATTTTTCTTAGAGTCTGCATTAAACCACTTGCACTTAAAAAGTATGACACATCTCCTATTAACATAATCTAACTCCCAAACATCATCCAAGACATTGTGAAAATTCATGTCATCCCCTTCTCCTCCACACACCATGACCTCACTATTTTGTGTTGTTCGATGACTATCTCGTTCTGTATTATGAAAATGTAATCCATTTACAATACAACCGCTATATGAGCGTGCAGTTAATGAGAGCCCTAACGCAAGTGAATAAAGATCGTCATCTAATTCGCCTTGTTCCCGTAATGTCAAAACCTGTAATAGATAATAACAAAATACTTAATGATTTCGTTTTGCGTTCATCTAAATTCTAATCCTAAAATGCAATATTACCTGTGCTTTGCACCAATCAGGAAATTGAGTACTGTGTCGTTCATATAAGGCAGAAACACTATTCCTCTAAGTTGAATTACTCTTAAATGTTGACTATCATGCCGAAGAAGGAGAAAAACAAATTTAGTGTTATGTACTCGCTAGTGTGCACTTAAAATGTACTTAGTATAAGTCAAACTTACTCTCGATACGACTCTATCTCTGCACAGTTGTTCAGTACATACCAATGTGCAACTTTTCTTTCAATGGCAGATAATGTCTTTGAAGTTGATGCCCCTAAAGGTCGCGCACTTAGCCTGAACACGTCAAAATGTCCACAATTTTTATCACCAGCAATAGTATCATCATTGCATTCGTCTCTATTGAATCTCGTTTCAATTCCAGTCAGATACAATGAGCAGAAAGTTAAAGATTCATTCATGATGAATGATTCGGCTATTGAACCCTTAGGACGAGCTCTATTCTTCTTTTGTGCATATTGTTTTAATGTTTGGAGACTTTGCTCAATAGAGTACATCCAACTGTAACTAACCGGCTCCACTATTTTTGCTTCGTATGGCAAGTGAATTGTAAGATGTACCATTACATCAAAAAATGCTAGTGAGAATATTCTCTCCAGTTTACAAAGTATGACTATAATGTCCGATTGCAATCGATCTAAATCACAAATGCGTATTGTCTTTGCACATATATCACGAAAGAAGCTACGTAGCTCAATGATGGCCGTACCCACAAACTTCGGTACATACGCTCGAATGGCAACGAGTACGAGTCGTTGTAGCAAAACATGACAATCGTGAGTTTTCAACCCCCATTGTAGACACCGTATTTGGTTCGGCTCGCTTTTTTTAAAAAAATTTATTACTGATTTATTTATTATTTTATTCTGTTTATTGATTTAGTTTAAAATAACATAATTTACTTTATTATAAAATTTAATGTAAAGTTTTAACTAAATCAAATTAAGTTTTAAAATTGATTTTATTTGAAAATATTTGGTTTTTGATTTTAAGATTTAAAAAAACAGTTTTTTCTCTCATTTGATTTTTTCCTTCGTACGTGTGTCCCCTTCTCTTCTTCTCCTGCCTCTTTTTCTTTTTTATCGTTATTTTTAGGTGTATTTAAGGAGGGCTGCAGTGGGGAGGAGAAGGCAGACAGAACACTCATATAGAGAAGACAAAGAAAAATTCACTTCCTTCTTTCTCTCTACCATCACCTTCTCTTCTTCTTCACCCAGACCGGCGACCCCGATGATACACAGACTGCACACGTCTCCCGGTGATCACAAGTTCAGACAACCTGCCAGTAGTCCGGCGCAAAGCTCTATAATCCCGACGGACAACAATAATATAACGAACAACTTCTACAACCGATGCACGAATCACCGACAACTTGATTCCGACCTCGAGTGCTCCTTCACGGTTTCAGACCCGCGGGCACACCAAAGATTTCCTCACTGCAGTACGTGATATAGCAAAAAATGTTTTAGAAATGATTTGATTTTTTTTGATAAATTTGTTTTAAATAAGTTTGTTTTAAATTTGATATATATATACATATATTTTTAAAATAAATTTGTTTAAATATGACTTGATTATTTTTAAAAATAAGTTTGTTTTAAATATGATTTGATTTTTTTTTTAAAAAAACAAGTTTGTTTTAAATATGATATATTTTTTTTAAAACAAGTTTGTTTTAAATGTTTTTTTTTTAGTTTTAAGGAAGTTTGTTAGAGACATTTCAAATCTAAAACAAAATAAATTATTATTATTATTATTATTATTATTATTATTATTTCAGTTTTAGTTTTTTTTAACAATTTTTTTAAAATAAAGATTTGTATGATAAGAATTAAAGTTAAGTTGTATCATGTGGTGTTGGCATAGTGGTAGGTTACTTAGGAGTAAGTTACATGTCTCAGGTTTGAGTATTTGTTTGCCAAAATTAATGTTTTTTTTTCATTATTTTTACAAAACAGCTATTTTAGATAAAATGTTTTATTTAATAAAAAAAACTTTCGTTTTTATAGGATTTCAAATCTTAAAACATTTATATAAAATATTAAGTAATATCTTATGATGTTAGCACATTTGTAAGAAGTTTGTATATTAACTCTTATGTCACAAGTTCAAGTCTTAATGGGCCCTACACTAAAATTATTTTTTATTTACTAATTTTTCTTTTCTACTAAATAATTATTTCGAAAACCCGAATGACAGAAATTGAATCTTTCCAATATTCTCGAGGTGATAATTTGTTTTTCTAATGGTCTTTGCGCCACTCATGCTTGTTGGTTCATATTTTATCGTAAACCAATAAATTTGCGACATTTAAAATCAAACACAAAAGTATTTTTCTTTTTGGACCAAGTATAATATGATAATTTTCGATAAAATATGGTATCGTTTTCGAACGGGTGTCGTAGGGTGCTAACACCTTCCCTATGCTAAACCGACTCCCGAACCAAAATTCTGTTTTGGTAGACCAAGTTTTTTTTAAATAGGTGACCAATCACACCTCGTAGATGATTGGTAGCGACTCCAAACCCTAATCTCGAAAGAGACCCGTCAAGGGATGACGTCGATCGCTCCACGTCGCGATAACGTTGCGACACCCATATTCTTCCATCCTCTGCGCTCACACATCTCGATATGTTTGACACAAATCCATCTGGAAACTTAGCTGATTTCAAAAATCTGCAAAACTTTACCGTCTCAGCCGCATTAATGTATACATAACATGTGGTTTTACAACTTTATTCCAATCCTTTTGTATGTGTAAATCTTTCCGAATCTTCAAATCTTCTAAATCCAAACGTGCATTGATCGTGTCTTTTGATTTCCCATCAATATTTAACAAAGTTCCTACTAGATTGTCACATACATTCTTCTCGATGTGCATCACGTCTAACTTATGTCGTAACATAAGTTTCGACCAATAGGGAAGTTCGAAAAATATACTTTTCTTCGTCCAGTTTAGAGCTCGCTTTCTTTTATTTTTTGTTTGGTTGGATTCTTACCAAAATCTGGAAAATTCAGCGTACTTGTTGAAGAATTGCATCTCCATCCATTAACACTGGTGGGGGTCGTCGTTCTAGCTTTCCATCATACCGTCTACTCCCACTCCAACTATGATTTTGAGGAAGATAATGTCGATGTCCCATGAAACAAATTTTGTTTCTTATTCGAAACGATGAATTATCCTCTTTACAAATGAGACATGCTTGGTATCCTTTCGTACTTCATCCCGACAAGTCACTATATGCTGGAAAATCCTTAATAGTCCACAAAAGAGCTGCATGTAGTTGAAAGTACTCACCACTTGCACAATCGTAGGTACGAACCCCAGTATCCCATAACTCTTTCAGCTCTTCGATTAATGGTTGTAAGTAAACGTCGATTTCTCTTCCAGGTGACTTCGGCCCAGGAATAAGCAATGACATTAATTAATTAGATTCCTTCATACACTTCCAAGGAGGAAATTGTACGAAATAAGTACCACTGGCCACATGCTGTATGAATTGTTCATATTCCCAAATGGATTAAATCCATCTGAGCTAGTCCCAAACGAACATTTCGTGGGTCTAAAGCAAATTGAGGAAAGGTGTTGTCTCGATGCTTCCACCCCAATGCGTCAGCTGGATGTCGTAACACACCCTTGGTCTCAACTCGTTTTTCTTTATGCCACCTCATTTCAGAAGCAAAATGAGTGGAAGAAAAGAACAGTTTCAATCTTGGTATCAACGGAAAATGTCGTAAAACTTTTTGTGGGACTTGTGAGGCTTTTCCATTAATTTTTTTATAACGAGACTCACAACATATTGGACAAATTTGACATTCAGAATATTCTTTCCTGAATAATATGCAGTCATACTTGCAGGCATGGATGGATTCATATGAAAGTCCTAAATCACGCAGTCTCCTTTTAGCCTCGTAAGATGTACTAGGTATGGATGCACCGGTTGGAAAAGCTTCTTTTAACAATTCGAGTAACATATTGAACGATTTATTACTCCAATTGTTAATGACCTTGAGATGTATCAACTTTACTAAAAAATTCAATGATGAAAATTTTGTACAACCTGAGTACAACTGACCACGTGCTTCGTTGAACAACTGCTGGAAAGTGTTAAACGTGTCTCTTCCACGTTCGTTTAGGGGTGTATCAAAACAAAATTGTTCCCCATCAACATTTTCTTCTACAATGGAGGCTTGTATATCATTGAGCATACCATACATTTCACCATCCTCATTATTCGTAACATTAGATTCTCTACTTAAATCATTATGCAAAGGAGTTTCGTGTCTTGTATGACTACTTGAAGGAGCTAGTTGTTCTCCATGATAAAATTAGGCGGTAAAAATCTCGCCATTTCTCATAACTTTTGACAACGAAATCTTGATTTCGTAGCCAAAAGTATCTTATGGCGATGAATTCACGGTTTCGTCGCCAAAAGTTATGAATAAAAAATCTTAATTTAATCGAAACTTATGGCAACGATCCCAAATTTTGTCATCAAAAGTTACCAAAACAAATTGGGCGGTAAGATTCCTGCAATTTCTCAAGAGTCTGTCTAATTTAAAAATTTTTAGGCAAAACTTTGGTGACGAATTGCAATTTTGTCGCCATAGGTTACTTTTTGTCGACGAAAGTTGCAATTCGTCACCAAAAGTTTTGCCTAAAAATTTTTAAATTAGACAAACTTTTGGCGACGAAAATACCCTATGGCGACGAAATTGAATTCGTCGTCAAAAGTGTCGTCGCCAAAAATAAAATTTCTTGTGGTGAGTCATGAGGAGATTAAGGAGAAGACAAGAATTTTGTGCGACGTATTTTTGTTGGGCTTGCAGTATTTTCTCTATGGAGTATCTGAGCAAGATGGTCAAGGAGATGATGTTGTCCAAGATCCTTACTTTCGAAATTGGGTGGTTTGATCAAGATGAACACTCCAATGGTGCAACTCGTTTGAGATTATCCACACATGCCAATGTGGTAAGCATTTTAATGAATAAATTCAATTGTCTTTTGCCAGTTTTTTCTTTCGCTTTTCTATTTCTTATTATCACACAAAAAGAACAAAGCAGATGCACTTGGTTCCACTTCCACTTAATTTTTTTTTTATTTTTTATTTAAAACTTACTTCGTTGTAAAAATTTTGTAGCTCTACGTCTTCATGATAAATTTTTGTTGGGGTAGGTGCAGTCGTTTGTGGGTGATAGAATGACACTTGTTCTGCAAACCATCTCAGCAATAATCATAGCTTTCACAATGCGGCTTATGATATCATGGAAGCTAGCCCTAGTCATGATCGCAGTCCAACCTCTGATGATCATCTGCTTCTACGCCAGACGAGTTCTTCTAAAGAACATGTTTGATAAAGCCATTAAAGCCAAAGAACAGAGCAGCAAGCTGGCTGTCGAGGTCGTCTCCAACGTCCGCACAAACACCTCAATCTCTTCACAAGAAAGGATCATGAAGATGCTCAAGAAGGCCCAAGAAGGCCCACAAAGAGAAAATATCAAGCAGTCGTGGTACACCGGAATTGGGCTAGGTTGCGCCAGGAGTGTCACCGCC CAGGTGGGAAAAAAGGAAGTTCAATTGTCGGGGAGACAGAAACAAAGAATAGCAATTGCACGAGCAATCATCAAGCGACTATGGATCCTCCTCCTCGACAAGGTCACGAGTGCATTGGATTCAGAATCAGAGTGGATCATCCAAGAAGCCCTCGATAAAGCAATCGTCCGTCGGACCACCATCATCATCGCCCACCGCCTCTCAACATTTCACAACGTCGACATCATCGATAGCTACATTTACAACTATTCAATTCTAACAAGTAGTAAACGTACCTATTTTGATGAGCTGGCTCCACCAGAACGACCCATAAATTCTAGCATCATGGATTTCAAATCTGACATTTCACCGCGCAGACCCGTAATCTCAGACTCTTTGTGTGCGAGAGACTCTTTAACTCTTCAAATTCTTTGTCTTTGTGTTACATACCAATGTGCAACTTTTCTTTCAATGGCAGATAATGTCTTTGAAGTTGATGCCCCTAAAGGTCGCGCACTTAGCCTGAACACGTCAAAATGTCCACAATTTTTATCACCAGCAATAGTATCATCATTGCATTCGTCTCTATTGAATCTCGTTTCAATTCCAGTCAGATACAATGAGCAGAAAGTTAAAGATTCATTCATGATGAATGATTCGGCTATTGAACCCTTAGGACGAGCTCTATTCTTCTTTTGTGCATATTGTTTTAATGTTTGGAGACTTTGCTCAATAGATATTTTCTCTATGGAGTATCTGAGCAAGATGGTCAAGGAGATGATGTTGTCCAAGATCCTTACTTTCGAAATTGGGTGGTTTGATCAAGATGAACACTCCAATGGTGCAACTCGTTTGAGATTATCCACACATGCCAATGTGGTGCAGTCGTTTGTGGGTGATAGAATGACACTTGTTCTGCAAACCATCTCAGCAATAATCATAGCTTTCACAATGCGGCTTATGATATCATGGAAGCTAGCCCTAGTCATGATCGCAGTCCAACCTCTGATGATCATCTGCTTCTACGCCAGACGAGTTCTTCTAAAGAACATGTTTGATAAAGCCATTAAAGCCAAAGAACAGAGCAGCAAGCTGGCTGTCGAGGTCGTCTCCAACGTCCGCACAAACACCTCAATCTCTTCACAAGAAAGGATCATGAAGATGCTCAAGAAGGCCCAAGAAGGCCCACAAAGAGAAAATATCAAGCAGTCGTGGTACACCGGAATTGGGCTAGGTTGCGCCAGGAGTGTCACCGCC CAGGTGGGAAAAAAGGAAGTTCAATTGTCGGGGAGACAGAAACAAAGAATAGCAATTGCACGAGCAATCATCAAGCGACTATGGATCCTCCTCCTCGACAAGGTCACGAGTGCATTGGATTCAGAATCAGAGTGGATCATCCAAGAAGCCCTCGATAAAGCAATCGTCCGTCGGACCACCATCATCATCGCCCACCGCCTCTCAACATTTCACAACGTCGACATCATCGATAGCTACATTTACAACTATTCAATTCTAACAAGTAGTAAACGTACCTATTTTGATGAGCTGGCTCCACCAGAACGACCCATAAATTCTAGCATCATGGATTTCAAATCTGACATTTCACCGCGCAGACCCGTAATCTCAGACTCTTTGTGTGCGAGAGACTCTTTAACTCTTCAAATTCTTTGTCTTTGTGTTACATACCAATGTGCAACTTTTCTTTCAATGGCAGATAATGTCTTTGAAGTTGATGCCCCTAAAGGTCGCGCACTTAGCCTGAACACGTCAAAATGTCCACAATTTTTATCACCAGCAATAGTATCATCATTGCATTCGTCTCTATTGAATCTCGTTTCAATTCCAGTCAGATACAATGAGCAGAAAGTTAAAGATTCATTCATGATGAATGATTCGGCTATTGAACCCTTAGGACGAGCTCTATTCTTCTTTTGTGCATATTGTTTTAATGTTTGGAGACTTTGCTCAATAGATATTTTCTCTATGGAGTATCTGAGCAAGATGGTCAAGGAGATGATGTTGTCCAAGATCCTTACTTTCGAAATTGGGTGGTTTGATCAAGATGAACACTCCAATGGTGCAACTCGTTTGAGATTATCCACACATGCCAATGTGGTGCAGTCGTTTGTGGGTGATAGAATGACACTTGTTCTGCAAACCATCTCAGCAATAATCATAGCTTTCACAATGCGGCTTATGATATCATGGAAGCTAGCCCTAGTCATGATCGCAGTCCAACCTCTGATGATCATCTGCTTCTACGCCAGACGAGTTCTTCTAAAGAACATGTTTGATAAAGCCATTAAAGCCAAAGAACAGAGCAGCAAGCTGGCTGTCGAGGTCGTCTCCAACGTCCGCACAAACACCTCAATCTCTTCACAAGAAAGGATCATGAAGATGCTCAAGAAGGCCCAAGAAGGCCCACAAAGAGAAAATATCAAGCAGTCGTGGTACACCGGAATTGGGCTAGGTTGCGCCAGGAGTGTCACCGCC QVGKKEVQLSGRQKQRIAIARAIIKRLWILLLDKVTSALDSESEWIIQEALDKAIVRRTTIIIAHRLSTFHNVDIIDSYIYNYSILTSSKRTYFDELAPPERPINSSIMDFKSDISPRRPVISDSLCARDSLTLQILCLCVTYQCATFLSMADNVFEVDAPKGRALSLNTSKCPQFLSPAIVSSLHSSLLNLVSIPVRYNEQKVKDSFMMNDSAIEPLGRALFFFCAYCFNVWRLCSIDIFSMEYLSKMVKEMMLSKILTFEIGWFDQDEHSNGATRLRLSTHANVVQSFVGDRMTLVLQTISAIIIAFTMRLMISWKLALVMIAVQPLMIICFYARRVLLKNMFDKAIKAKEQSSKLAVEVVSNVRTNTSISSQERIMKMLKKAQEGPQRENIKQSWYTGIGLGCARSVTA Homology
BLAST of MC11g1409 vs. ExPASy Swiss-Prot
Match: Q9LHD1 (ABC transporter B family member 15 OS=Arabidopsis thaliana OX=3702 GN=ABCB15 PE=3 SV=1) HSP 1 Score: 300.4 bits (768), Expect = 3.0e-80 Identity = 197/427 (46.14%), Postives = 271/427 (63.47%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy Swiss-Prot
Match: Q6YUU5 (Putative multidrug resistance protein OS=Oryza sativa subsp. japonica OX=39947 GN=Os02g0190300 PE=3 SV=1) HSP 1 Score: 270.8 bits (691), Expect = 2.6e-71 Identity = 188/433 (43.42%), Postives = 270/433 (62.36%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy Swiss-Prot
Match: Q9LSJ6 (ABC transporter B family member 17 OS=Arabidopsis thaliana OX=3702 GN=ABCB17 PE=3 SV=1) HSP 1 Score: 267.7 bits (683), Expect = 2.2e-70 Identity = 183/431 (42.46%), Postives = 268/431 (62.18%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy Swiss-Prot
Match: Q9LSJ8 (ABC transporter B family member 16 OS=Arabidopsis thaliana OX=3702 GN=ABCB16 PE=2 SV=1) HSP 1 Score: 258.5 bits (659), Expect = 1.3e-67 Identity = 177/430 (41.16%), Postives = 265/430 (61.63%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy Swiss-Prot
Match: Q9LSJ2 (ABC transporter B family member 22 OS=Arabidopsis thaliana OX=3702 GN=ABCB22 PE=3 SV=2) HSP 1 Score: 258.5 bits (659), Expect = 1.3e-67 Identity = 176/424 (41.51%), Postives = 264/424 (62.26%), Query Frame = 0
BLAST of MC11g1409 vs. NCBI nr
Match: XP_038890487.1 (LOW QUALITY PROTEIN: ABC transporter B family member 15-like [Benincasa hispida]) HSP 1 Score: 330 bits (845), Expect = 1.86e-98 Identity = 228/439 (51.94%), Postives = 286/439 (65.15%), Query Frame = 0
BLAST of MC11g1409 vs. NCBI nr
Match: XP_022133729.1 (ABC transporter B family member 15-like, partial [Momordica charantia]) HSP 1 Score: 326 bits (835), Expect = 1.11e-97 Identity = 227/436 (52.06%), Postives = 284/436 (65.14%), Query Frame = 0
BLAST of MC11g1409 vs. NCBI nr
Match: XP_022133620.1 (LOW QUALITY PROTEIN: ABC transporter B family member 15-like [Momordica charantia]) HSP 1 Score: 319 bits (817), Expect = 2.83e-96 Identity = 214/426 (50.23%), Postives = 280/426 (65.73%), Query Frame = 0
BLAST of MC11g1409 vs. NCBI nr
Match: XP_004142341.1 (ABC transporter B family member 15 [Cucumis sativus] >KGN52419.1 hypothetical protein Csa_008385 [Cucumis sativus]) HSP 1 Score: 323 bits (828), Expect = 4.82e-96 Identity = 222/438 (50.68%), Postives = 279/438 (63.70%), Query Frame = 0
BLAST of MC11g1409 vs. NCBI nr
Match: TYK00221.1 (ABC transporter B family member 15-like [Cucumis melo var. makuwa]) HSP 1 Score: 311 bits (797), Expect = 4.14e-95 Identity = 212/427 (49.65%), Postives = 266/427 (62.30%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy TrEMBL
Match: A0A6J1BWU3 (ABC transporter B family member 15-like OS=Momordica charantia OX=3673 GN=LOC111006245 PE=4 SV=1) HSP 1 Score: 326 bits (835), Expect = 5.36e-98 Identity = 227/436 (52.06%), Postives = 284/436 (65.14%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy TrEMBL
Match: A0A6J1BVS2 (LOW QUALITY PROTEIN: ABC transporter B family member 15-like OS=Momordica charantia OX=3673 GN=LOC111006157 PE=4 SV=1) HSP 1 Score: 319 bits (817), Expect = 1.37e-96 Identity = 214/426 (50.23%), Postives = 280/426 (65.73%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy TrEMBL
Match: A0A0A0KU14 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G633170 PE=4 SV=1) HSP 1 Score: 323 bits (828), Expect = 2.33e-96 Identity = 222/438 (50.68%), Postives = 279/438 (63.70%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy TrEMBL
Match: A0A5D3BK78 (ABC transporter B family member 15-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1582G00130 PE=4 SV=1) HSP 1 Score: 311 bits (797), Expect = 2.00e-95 Identity = 212/427 (49.65%), Postives = 266/427 (62.30%), Query Frame = 0
BLAST of MC11g1409 vs. ExPASy TrEMBL
Match: A0A5A7T3R5 (ABC transporter B family member 15-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold277G00110 PE=4 SV=1) HSP 1 Score: 320 bits (819), Expect = 4.14e-95 Identity = 217/435 (49.89%), Postives = 273/435 (62.76%), Query Frame = 0
BLAST of MC11g1409 vs. TAIR 10
Match: AT3G28345.1 (ABC transporter family protein ) HSP 1 Score: 300.4 bits (768), Expect = 2.2e-81 Identity = 197/427 (46.14%), Postives = 271/427 (63.47%), Query Frame = 0
BLAST of MC11g1409 vs. TAIR 10
Match: AT3G28380.1 (P-glycoprotein 17 ) HSP 1 Score: 267.7 bits (683), Expect = 1.5e-71 Identity = 183/431 (42.46%), Postives = 268/431 (62.18%), Query Frame = 0
BLAST of MC11g1409 vs. TAIR 10
Match: AT3G28360.1 (P-glycoprotein 16 ) HSP 1 Score: 258.5 bits (659), Expect = 9.4e-69 Identity = 177/430 (41.16%), Postives = 265/430 (61.63%), Query Frame = 0
BLAST of MC11g1409 vs. TAIR 10
Match: AT3G28415.1 (ABC transporter family protein ) HSP 1 Score: 258.5 bits (659), Expect = 9.4e-69 Identity = 176/424 (41.51%), Postives = 264/424 (62.26%), Query Frame = 0
BLAST of MC11g1409 vs. TAIR 10
Match: AT3G28390.1 (P-glycoprotein 18 ) HSP 1 Score: 253.4 bits (646), Expect = 3.0e-67 Identity = 173/424 (40.80%), Postives = 256/424 (60.38%), 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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