Moc02g16390 (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.ATGGTTGATGCTCGTGGAGAGAGGGCAGCAGTAGTTTCCGCCTCTTTGTCGGCAAGTGAAGAATCTCCTCCTAACGGAGCATTCTTTCTTCCTGCCATTGAGAAAAGCCCAAGGATGCTGGACGCTCTGATACCAAAATTGGTGTAACCGAATTTGAGAGAAAACTAAATTGTATTAGATGCTGCCAAAAGGTACAAATGACTCCTTATTTATAGAGGAAGCCACGGAACAGAAGGGAACAACCTAACTTACAAATACAACTAACTAACAACTAACTTAACACAAAGTTAACTATTTGTTAACTACATCAATTAATCCCAAAAATATAATCATTACAAAAAGAATTATGTATTTCTTTCTTTCTTTTCCCTTTCATTCTTGTTCATACTTGTAGTTAATCACAGCGAATTATGAACTGTATTATGGTCTTTCATTTTTCCTTTGTGATCGCTTCTCAAGGTATTCTAGCAAAATGTTGTACTTCTGTTTCTTACATGGCAGTGTGTGAAAATGAGAATTAATTTGGCTAGCTATGACATATGCCTTTCTTTTGTTTCTGGCCCTGCCCCCTCTAATGTTCCTTATAGCCATTTGATACCCAAATGATTTAGCAGTGGAAAATTGGCACTGGCAGGGTGGTTCTCCATTGTGGATTTACATGGATGCATTTGTGGTAAATAGTCATCCGTTAACATTTTTCATGGAATTGATTCCTTTATCTACTTGTTGTTCTGTGCTTAATAGCTCTACCTTTAGTGTTGCCTCTGGAGACTTCAGATTTTCTATTAGAATGAAACCACCATCTACCTGAAATACAATTACAACTTTAGTGGTGGGGAGGAAGTGTCATATGAAATAACAGATCAGAGATTGAGTGCAGCAAAAGGAGAAGTATTTAACCGTTCTTCCCCAATAATTATTACTTTATTTCTGTTAAATATTGCACTTATTCTGTTCTTCATATTCAGCATTTACCCAGATTCTTTCATCCTTTTTGTCTCCAGTGGTGTTGTCATTTTTCCCCGGTAAGTATATGTGATATTGATTATATGGAATTAAAGTTGAAATCAATTTTTATCCTTAATTTTGGTTGTTGGCTCTCTTGTAGGTAATAATTAGACATGAAGCATTTTAGAAAGAAACCACGTTCTATCTGAAATACAACTAAAACTTCAGTGGAGGGAAAAAGAGTGTTAGATTGCAAGATCAAAGATTGAGTGCAGCAAAAATAAAAGCAGTTAACAGGTTTTCTTTTCACAGTAATTACTTTGTTCTATCAGTTTAATATTGCACTTCTTCTGTTCTTCATGTTCATCATTTATCTGGGATTCTAGATTCATCCTTTTTGTATCGAGTATATTATTTCTCCTCTGTAGATATACGATAATGTGTATGACTAAGGGTATGTTTGGGAGTGATTTTAGCATGACCAAAATCATTTTTGCCTTTTTCAAAATCACTCCCCTTTCCATTGATCATTTTTGGCAAATTAGAAAATTGATTTTAGGAAAGCTTAACATCACTTTTAATTGATTCTTAAGGTGTCACTTTGATCATGATTTTGAAAAATCAATTATATTCACATCTCTTTTTTTTTTCAAAATCCACTACAAGAATTTATTGCTTTCCCAATGAAATTTTTCTCATCATTAAAAAGTCGTCAGAGGTCGTTTTCTCCCAACGAAAATAAAATAAAATTGTAGGGACAATTATAAGTTTTGTCGACGTTTCTATAAAAATGTTACGAAAAAGTCTATATTTGCCTACGTTTTGTACAGAATGTCGCCAAAAATTTGATTTCTTCCGACGTTAAAACGTTGGGAATATGGGCATATAAATTCAAACACATAAATGTTACACACTAAATATTTCGACGTTTTAATAAAAACGTGGAAGAAGGGATCTTTGCCCCCACATATTTACAAAAACTTTGGGAGAAGATCACTCATCCGTTTTATTATCCTGATATATATATGTTATTTCTTATGACGTTTTGCAACAAATGTTGGGATATGAGTTTATAAGTTCAAACATACCAAAATTATGCACTAAATATTCCGACGTTTTAATAAAAGCGTAGGGCAAAGATCCCTTATTGGGTGAAGGTCACTTATCCCCACATTTTACTAAAAACGTTGATAGAATTAATCTTGTCCCGATCTTTTTGTAAAAACGCTGGGATAACATAAAACATCCAAACGTTTTATTAAAAATGTTGTGATAAGTAATTTTATCCGAACGTTTTTTATAAAAACATTGGGGGTATTACTTTTAAAATAAATTTGAAATTTAAAGTATTTTAAAAATTAATTTTAAAAATAGTAATATTTTAAAAAACAAAACTTTGAAAATAGCTGTCACACTCGTCAAATTTGTGAATACTTATTATAACAAGACTTACCCATGGTTTGATTGGTAATCTATTAGCATTTTTTAATTACATTTTTAATTGTTTTAAGATTTATTTTTTTAATGTACCAATTTATTAATTAATTTTTTTTTATAAATAGAAAATATTAGGTTGTGTGAACTATAAAAATATATAAAAATATTGTTTTATTATTAATAATTTGTTTGATAATTATTTTATTTTTTATTTACACTTTCTTAAAATTAATCTTATAACTATTATGGTTAACAAATTTTCAAAAACATTTTTTTAAACCAAAGCTAAATTAAAAAAAATGAAAAAAGTAATTTTTAAAAACTTATTTTTATTTCTAAAATTTGACTAAAAATTCAAATGTATTAAAAAGAAAAGTGAAAAACATAATAAAAAATTTTTTAGAAAACCAGCCAAATTTTAAAAAAATATATAATAGAAAAATAAAATAGTTTTCAAACTGGTTAAATAATTTGTTTTAGAATTCCAAAAATATAAAACTAATCAGGTGATCTCTCTTTTTCAATTTTTATATCTTCCACACTTTATTATTTATTTAATAATAATAATAATAATTATTATTATTACAATTGAAACACGGTGGTTTTCAGCACAATCTTATTATGTTTAAACAAATTTCAATCCGCGCCTCCACCCGTCGATTTTTCCCTCGCTTCCTTCATCCCACTGTGGTCGCTCCCTACCGCCGTCGCCGCCGCCGCCGCATCCCGCTGAAACCACTGCCGCCGCCGCCGCATCGTTTCTGGAGGTCTCAGAGTCTCTGCAACGTTGCTCACCGTCCTCAGCCTCTTCGAACTTCTTTTCCTTCTTCCAAGGTATGCCGAACACTCTGCTCTTTCCAATCTCTTATAATTTTCTTATAATTCTTCAAAATGTTTGCTTCACTGGTGGCTCAATTTTCATGTTGAAGTTAGAAATTATTTGTAAATGTCGATTTTGGTGGTGAAAGATGTGAGTTTTGGGATTCGGCATTGAAACTTTTCTTCTGTATTTCTTCTGCTTGGCTATTCTATTGTGCATTTATGAATTGGAAGTGGTGTTAACCCTAGGACACCAGTTTACTTTTTTTTTTATGCATCGAAATGGTAAATTGTATTCGGATTTAAATCATAGATAGATGGTGCTTATTGAAATTTCTACTGGAAATTGGTGTTTGAATTCCCCAATTGAAATTCTCAAAATTGAAATTAGTGAATTGGAATTCATTATTGTACGAATTCCTGAATTTGGATTCCGTTAGTTAGTGATCATTATTTGAAATTGGGAGTTGGGAATTCATGTTAGTCAGTGGTTGGTTTTGTTAAGAGATCACATTAGGAGGTTACTGTCATTCTGATATTTTGTCTTTACTGATGTAAGTGAAATGTATTTGCCTGCAATGCAAGACAAACACTATGAAATAAAGCCATGATGGAAGCAGACAAGACTTCTGTTGAACATATCCCAATAAGGATTATATGAAATTAATTGATTCTAAAGTTAATGCTATATGAATGACGCTCAAGATCAAAAACTAATTTAATATTTAGACATTAATTAAGAATTATATTTTCACTAAACAATTTCCCAAAAAAGCATAACTAAAAGCAAAAGGGCCCTTCATGTCCTGAGATTTTAAAAATTTTAGAATGACTTTCCTTTATAGGAAACTGATATATATTAGAAAAAAAAGAAATAGTTTTCAAGGGTACTATCACCATAGACTCTATTGCCAGACATAAATTCTGAATTAAAGAAATAGAAAAATGACTTCCAAATTAATCCAAAGAGATAATTTGTATTCGTTTATTTTGTCCAATAGGGTTATAATAGATAATAATGAACTCTTTGCTTGATTCACTTGTTACAATGCACATACTTGGAGGCTTGGTACACGCACCTATAAACTGTACAACATTCTCGTGCCTGACTTTTCTACAAGTCAACAATAAATGTTCATCAAAAGATTATTAACATGGAACTCAACATAAAGCAGAGTAGCTCAACCTCTCTACACATCACTAGAAAATCTTGGTAAAGGAACAAATTCACTTGATGTCACTCGTAGCTTATGGATAAAAATGTTTAACAGTATTAATTATAACAAGCATCAAATATTCTGCCAATTATTACTGTCCTCCAATTCATCGTCCGTATATAAAGTTATAAAATATCCTTTATATTTCATTGCTTCAGTTCCTCTCCGATCAACAACAACCCCAATCCCCCTTATGGTCATAGACACTACCGCCAGATAAAGCTTCTGGGGAAGACCGATATGATAAAAGAGATAAATAGAGACAGAAGTGCTGGAGAGAAAGAGAGAGATAACATAGATTGAAGGATGTTTTAGGAAAATTATAAGAGTTGTAGTTTGAGAGAGATGGTTGTTGAGTAATGGGGTGTTAGAAGAAAAAATTATTTGAAAGTTCTCTATCAGTTCATTTGTCACTATCATTGTGTGTAGAAAAAATTGAAGGCAACAACAAAGAGGTGGCATTCATGATATTATCGAAAAATAGAATGAAAATGAATGATTCTTATTCTCTTAGTACCATCAATTATAGAATCTTACATGAGTTTGAGAATGACATTTTCCTATGCAATTTTATGGTTTGTGTACTTATGATTTCTATTTTTGGTTTTGTGTTATGTTTTGGTTTCTTTTATATGGTCTTATATATCTTTTCTAAAGCTTGTGATTGTTTGGTGTGAACACTCTACAAAGCTATTGTAGCTTCCGCAAGCTACAAGCATTGAGGCGAGGGGGTTTGTGTACTTATTGTAGCTTCTATTAAGCATTGTAATTATTGTGTCTTTTAAGGGGAGGATCTTTATGGGGTTAATTATTTTTAATTTAATTTAATTTTGTTGGTGGTTGTGGTGAGAAATGTAATTTTTGTTAGCTATGTTTTATGTTTTATGTTGGTGGGTGCGGAATTTCTCTCTCTTAGCTATGTTTTATGTTTTCATCAAGCTTTTATTTTCACAGATATATAAAGTGGTGATCATTTTGGCTAAGTACTCTGTACTTACATAAACTATATTTTTCAGGTTCTTCGGATTTGGCTACTATGAAGTTTTGTCATGTAGAGCTTTTGAAATGCATGAAACTTCTACTTAGGTTTATGTAGCTTTTGAAACGTATTGAACGTGTAAATCCAAGAACTTTTGAAATATGTAAACTTGAATGATATTTTGGTATTTAATATATTTTGGTATTTGATATTTTGGTATTTGATATATTTTGGTATTCGATATTTTGATATTTAATATTTTGGTATTTGACCTTCAAATCAGGTATCCCAAGAATGTCGGGATTGAAATTAGCGCATTTTATTTTAGAAAAAAATTAAATATATATTGCCAACATTTTTTATAAAAACGTCGTCAAAACTATAAATATACCGACGTTTGCAAAACGTTGGCAGAATAGTAGATCTGCAGATGTTTTTCAAAACGTTGGCAAAATAGTAGATGTGTCAACATTTTGGATAACATTGACAGATGGAAACTTCTGCCTACGTTTTCATAACTTCGGCAACTTTGCTAACGTTTCGCAAAACTGGCAGAAGTTTCCATCTGCCAACGTTTCTTTAAAATGTTGGTAGATATGCCAACGTTAGAAAAAGTTGGCAGAAAGTCAGCCCTACCAACGTTTTTTTTAAGGTCGACAAAAGTATGGTTGTAAACATTTTTTAAAAAACGTTGGCAATGTGCTTTCCCAACGCACTTTTGCAGACTTTTTTGCTGACGAATATTTAACGTCGGGAGAAACTACTCCCAACGTTTTTTTGCTCTTTTGTGTTGGGAAAAATTCTAATTCTTGTAGCGATCACAACACACGCTAAGTATAGTTGCATGATGATTTTAGAAAATCAGTTATACTTAAATCTCTTTTTTCAAAATCACTCATTCTACCATCCTTCCAAAACACTCCCTTAATAAACATGGCCTAAATGAGGAACTACTTTCTATCTCTTTTCAGGATCCCAGTGAATGTGAGTGAAGGATCCGAAAAGATAATGAGGGGCTTTCTTTGGGAAGGTGTGGAGGAGGGGGGTGGGTCAGATCTTGTAAACTGGAAAGAGGTGTCTAAGCCTTTGGAAGCGAGTGGTTTGGGCAATGGGAATTTGTGACTAAGGAACGAGGCTTTCTTGGCTAAATGGTTATGGCGATTCCACGAACCTAACGCCTTGTGGCGAAAGATTATTGTGAGCAAGTATGGGCTGCATCCGTTTGATTGGGTTCCGGCATGTGGGTCTAAGGTGAGTAACTATAATCCTTGGAAGGCTATTGCGTTGTGTCTTCCCGTCTTCTCTCAATCTTTACGCGTCGTTGTGGGGGAGGGTCTAAATACTTACTTATGGGAGGATACTTGGTTAGGAGATAAAAATACTTACTTATGGGAGGATACTTGGTTAGGAGATAAACCTTTGTGCCTTGCTTTCCCTCGGATTTATTTTCTTTCTGAAAAGAAGCTTTGTTCAGTGGCTGAGATTTTGAGTCCCAGGGGAGAGGGTTCGTCCATTTCTTTGGGGCTTACCCGTTCTTTGACCGATCGGGAATCGTTAGAGGTTTCCGCGTTACTTGATCTGCTGTCTGGAGCTTCCTTCTCCTATGGGAGGGAGGATGTTAGGGTGTGGACCCCCAACCCTTCGAAAGGTTTTTCTTGTAGCTCTTTCTTCCATGTTCTGAACTCCCAGTCTCCTTATTCTTATTCTTCTTCTTCCTCCTCTTCCCTGGTGGTCCCTTGGTTTACCTCATTTTGGAAGATTAAAATTCCAAAGAAGATTAAGTTCTTTGGGTGGCAAGTCTTACTTGGAAAAGTCAATACCATGGATCATATTCAGAGGATGTTTTTTTTTTTTCCTGGGCCCGCAATGGTGTGTTCTTTGTAGGAGCTCGTCGGAACATCTCGATCACTTGTTGTGGACTTGTTAGTTCACGCAGGATTTATGACTTCGGTTCTTTAGATGTTTTGGGATTGGCTAGGTCCGTTGCAGAGATTGTAGGGCGATCATGGAGGAAATGCCGTTATCCCCCCCTTTCCGTGATAGGGGTCGTTTTCTTTGGCAGGCGTGTTTTCTGGCTACTTTATGGGGTCTCTGGCTGGAAAGGAACAATAGGCTGTTTAGGGAGTGGAGAAAACTCTGGACTATGTTTGGGATCTTGTTAGGTTTAATACTTCGTTATGGGGTTCGGTCGCTAAGGCCTTTTGTAATTATCAATTAGGTCTCATTATTTCGGATTGGAGTCCTTTTATTTAGGGGTTCCCTATTGCAGGGCTGTTTTTTTTATGCCCTCCTTGTTTTTGTATCTTTTTTCATTTCTCTCAATGAAAGTGCAGTTTTTTATATAAAAAAAATAAATAAATAAACATGGCCTAAATAAATAAAAATTTAAACCTAAGCAGAAATTTCCAGTACCATTTGTTTATGATTTTACTCTAGAAAATTTTGATAAAAACAGAGCAGTTCTTCTTCTACTATTGAAATCCAACAAATTTCCCGGGTGATTTCAGTTTTCAAGGTGCATTAATTAGGAAGAAATTGATAATTTCTTCTTCTCCACCATTTTCTGCAGCAGCATGCTTTTGAAGAGTTCCTCTTTTAATCTAGTTCCGGCATCGCCACCTCTTCTTTCTCCTCTCTTCTCCAACCCACCCTCCAGGTTCCATCTCTAACTTAATTTACTCTCTCAATCTATTTCAATGCTATTTGATTTCTAGTTCTTGTAGTCCGTCAATTTTTGGGTTTGCTGTTTGTTTTTCAATGGTCGCAATTCAAATTTCTCGAATGGTTTATGACCGTAGAGTTCTTGTGTGTTTGCAGGGCAAATCTTACTGAAAATATAGCCATCGAGGGATCCAATCTCAGTTTCTCAATCACAACGAGGCAGGGGAAAATTGTGCCTATTCTGAGGGATTGCTCACTCCGGATCCCTTCAGGGCAGTTTTGGATGCTTCTTGGACCTAATGGTTGCGGAAAATCAACCCTCTTGAAGGTACACTGAGATTCACCCACATTTCCTATTTTGTTTTAAATTATTCGAATACATTTATTAAAAGCTGTTTTGAAAGCAAAACTAGAAAATTGTTCTGGAAGCAGTTTGCTCAGAATCTTCCAGTGAAGTCACTTGAGGAAGAACTATATGTTTACATTAGCTTGATTGCATGATACTTCTGTAGGGTGGTCACTCTAAACGTTACATTATTTGTTCTTCAATGGGAAGCAGAAATAGATATTGTTTAATTTTGATGCTAGCCGAATGGGCCACCCCCAATAATCTCCGGGATGCTTTACCTACTTTTAATTCCAATTTCGAGAGACAACAAGAATTTTAGGTTGTTATGTTTTGTAACTCAAGAGCTTGAACCTAGGAATTTAGAGGGTATTTCAATTTCCTAACCTTTGAAGTCTTCATAGGGCAGCTCTCAAGCCATTATGATTTATGACTAATATTTCTTAATATATAAAAAACGAGGACAAAATTTAACACGACTATCAAATGGGCCCTAATATGTCACTGTACTTTTCTTGCTCGATGTAACAAGAAGATGAAGTTATAGGTTCACGTTCTCTTATGCAGGTCTTGGCTGGTCTGTTGAATACAACAACTGGTGCAGTATACGTCAAGAAGCCAAAGTGTTTTGTCTTCCAAAATCCGGACCATCAGGTTATGTCCCTTCATCATTTTGACCTTCAGTTGACAAATGATAACATTTCAATTACCCCTTGAAACGAGATTCTACTGTCATGACGAAGTTCCTTTTTCTGAGTAAATATGCATTGTTTTCAGTTGAATTTTACACCTAGGAAAAATAATTCTACTGTTTTGGCGAAGCTTCTCATTCTGTGCCTTTGCAGTTGAAGTTTTGCATCATTGGTTTATTTTGATATAGTTCATTTTGCATTGGTCTTTATAGAAGCTATTGTTAGTTACTAGCTATACTAAGCTGCTCATCCATCCTTTAGAGGATTTTTGTATTGCATTTCAGGAATCATCTTTGAAACTGGTTTGAAGAATGGACTTAGTCGAAAAACACTATGAATGCAAGAAATACTTGACTCTAATGACTCTTTTCTTTCATTTTGCTCAATGAGAGCTCGGTTTCTCATCACGAAAAATCAAGTAAAATGATGACTTTAATATCATTAAGTTTGCCTTTGATCTAAAAGCAAAGGAATGTTGATTTGTAGGATTACAATTAAACTAGTTAATCTGCTGATAAATTTACGTTAAAATTTAAATTTAGTCCCAAAATTTGATGGTGGTGCCGATTTGGTATCCAAACTTTAAAAAGTTTTAATTACATCTTTGAAATTTCAATTTTGATTCTAACTAATTTTCCTACTGCTAACATTGTCAGATGTGGCATGTTGATTCAACGAACAAGCATGACATGTAAACAAGTCGCACAAGGGAGTATGCTTGATCCTAATGGATAAAATAAGGATGAGCGTGGCAAAAAATCACTTGTCCAATCAAGTTTCTAGGCCTGTCTATTCTTATTTTATCCAATAGACCTACTTTCTTGTGCCAAATTGTACAAAGTCATCACTTATTACTCCAATCACATGTCACGTCAATATCTAAATAACGGTATTAATGGTATGGACTTATTCAAATCAAAATCAAAAGTTCATAGATGTAATTAAAACTTTTGAAAGTTGAGTGACTAAGCACTACCTAAATTTTTAATTTGACCTAAAGTTTATTTTTACTTGGAAGATAATAAAGATGCAGAAAGAGTAAAGTTGCCTGTTTGAGAAAATCTATTGAATTTCAAGCATGCTTGCCATTCTAGAAACTAAAAAGGTCTTTTTGACTCTTCAATTCTCTTTTTGTTCATATTGTTGTTGTAATTGATGGAAATAATTATTTTTTTTACCAGGTTGTGATGCCTACTGTGGAAGCCGATGTTGCGTTTGGCCTTGGTAAGTTAAATCTGACCAATGATGAAGTCAGATCAAGGGTTTTGGAAGCTCTGAGTGCAGTTGGCATGTCTAGCTACCTTCAGGCAAGCCACATAGATTTATAGTTTTTGAAAATTCTAACACGTAACAACTGCAGAATCACAGATTATAATTTTGAAATTTTCTCGTTGTTGTTCTTCAGAGATCCGTCCAAACGCTGAGCGGCGGTCAGAAGCAAAGAGTTGCCATTGCTGGTGCCTTGGCTGAAGCATGTAAAGTTCTTCTATTAGATGAACTGACCACATTTCTGGATGAGAAAGATCAGGTATGTTATTTCATCATATATACAAGCAGATATTGTGAAGCTTCCATCACATAATTCCAGTGGTATAATTTGACATACTGATTTGATTATCACAAACAAATCCGATCTTCTCGTGCATAATTAGACGATCGAGGGGTGACCCTAGTGAAAAGGGGAATGGAATATTGAGAAAGTTCGAGCTTCAATTTTGTTGTCTCTCGAAGCTGAATTTGGTTTGGGCGGAGCCTTTCTTGGATTAATTAAGCAGGTCATGAGTATAATGTAAGAAGTGGAGCCCGTCGATACTCCAGTTACAGAAAAGAATGGAGAATAGAACTTGGGAAAAATGTTATTTTGTCCTAGAAATGAATAGGCTTCTTTATAATTCAAAAGTTAGAATTTATTTTGTCCTTCAATTGGTTGGCTTCTACAAAATTATTGGATCCAATAGGCTCAGGAACTGCTAATGTATGAATTCTGTCCTCAACCCATGTTATATTTAAAGAGAAGGTTCCTGCTACTGGAGAGCAAGCTTCAAATGTTTTAACTCTTTATTTGGGTTTATAATACATGTACAAATCATTCCTTCAACTTTCATGTTTATTGTTCCTATATTTTGGAAACTTGATAATAGGCAAATCTTTTCTTCATTTACCTCGTCGATATTCTTCATTTACCTCATCAAATAGATAGATGCATGCATGGCAAGTATTTAGAATCACGTGTAATATCATGTTTTAAACTAACCTCTAAAATAGTCTTTTTGCGCGAAATTTTGAAGCTAAAATGGAACATGTGAAAGTTACCGAACTAAAATAGAGCATTTTAAATTTTAAGAACCAAAACAAAGACGTTCGAGTAGCAAGATGAGATTTAAACCAATCATTTATCTATACTCACTGGAGCTGTTGTGAAATTGCATATATGTGCTCATTTCTGACTCCTTGTTCAACATTTTCTTTTCTGAACCAGATGGGGGTGATCAAGGCAGTTAGAAATTCTTTGCATAATTCTGAAGATGTTACAGCATTATGGGTGACCCATCGCTTAGAAGAACTCGAGTATGCGGATGGCGCTATCTACATGGAAGACGGGAAAGTCGTAATGCACGGTGATGTGACAAGTGTTCAAAATTTCATCAAAACGAAACAGTCGGATTATATGAAGCGTATTTCCTATCCATGA ATGGTTGATGCTCGTGGAGAGAGGGCAGCAGTAGTTTCCGCCTCTTTGTCGGCAAGTGAAGAATCTCCTCCTAACGGAGCATTCTTTCTTCCTGCCATTGAGAAAAGCCCAAGGATGCTGGACGCTCTGATACCAAAATTGGTCATTTACCCAGATTCTTTCATCCTTTTTGTCTCCAGTGGTGTTGTCATTTTTCCCCGAGTCTCTGCAACGTTGCTCACCGTCCTCAGCCTCTTCGAACTTCTTTTCCTTCTTCCAAGCAGCATGCTTTTGAAGAGTTCCTCTTTTAATCTAGTTCCGGCATCGCCACCTCTTCTTTCTCCTCTCTTCTCCAACCCACCCTCCAGGGCAAATCTTACTGAAAATATAGCCATCGAGGGATCCAATCTCAGTTTCTCAATCACAACGAGGCAGGGGAAAATTGTGCCTATTCTGAGGGATTGCTCACTCCGGATCCCTTCAGGGCAGTTTTGGATGCTTCTTGGACCTAATGGTTGCGGAAAATCAACCCTCTTGAAGGTCTTGGCTGGTCTGTTGAATACAACAACTGGTGCAGTATACGTCAAGAAGCCAAAGTGTTTTGTCTTCCAAAATCCGGACCATCAGGTTGTGATGCCTACTGTGGAAGCCGATGTTGCGTTTGGCCTTGGTAAGTTAAATCTGACCAATGATGAAGTCAGATCAAGGGTTTTGGAAGCTCTGAGTGCAGTTGGCATGTCTAGCTACCTTCAGAGATCCGTCCAAACGCTGAGCGGCGGTCAGAAGCAAAGAGTTGCCATTGCTGGTGCCTTGGCTGAAGCATGTAAAGTTCTTCTATTAGATGAACTGACCACATTTCTGGATGAGAAAGATCAGATGGGGGTGATCAAGGCAGTTAGAAATTCTTTGCATAATTCTGAAGATGTTACAGCATTATGGGTGACCCATCGCTTAGAAGAACTCGAGTATGCGGATGGCGCTATCTACATGGAAGACGGGAAAGTCGTAATGCACGGTGATGTGACAAGTGTTCAAAATTTCATCAAAACGAAACAGTCGGATTATATGAAGCGTATTTCCTATCCATGA ATGGTTGATGCTCGTGGAGAGAGGGCAGCAGTAGTTTCCGCCTCTTTGTCGGCAAGTGAAGAATCTCCTCCTAACGGAGCATTCTTTCTTCCTGCCATTGAGAAAAGCCCAAGGATGCTGGACGCTCTGATACCAAAATTGGTCATTTACCCAGATTCTTTCATCCTTTTTGTCTCCAGTGGTGTTGTCATTTTTCCCCGAGTCTCTGCAACGTTGCTCACCGTCCTCAGCCTCTTCGAACTTCTTTTCCTTCTTCCAAGCAGCATGCTTTTGAAGAGTTCCTCTTTTAATCTAGTTCCGGCATCGCCACCTCTTCTTTCTCCTCTCTTCTCCAACCCACCCTCCAGGGCAAATCTTACTGAAAATATAGCCATCGAGGGATCCAATCTCAGTTTCTCAATCACAACGAGGCAGGGGAAAATTGTGCCTATTCTGAGGGATTGCTCACTCCGGATCCCTTCAGGGCAGTTTTGGATGCTTCTTGGACCTAATGGTTGCGGAAAATCAACCCTCTTGAAGGTCTTGGCTGGTCTGTTGAATACAACAACTGGTGCAGTATACGTCAAGAAGCCAAAGTGTTTTGTCTTCCAAAATCCGGACCATCAGGTTGTGATGCCTACTGTGGAAGCCGATGTTGCGTTTGGCCTTGGTAAGTTAAATCTGACCAATGATGAAGTCAGATCAAGGGTTTTGGAAGCTCTGAGTGCAGTTGGCATGTCTAGCTACCTTCAGAGATCCGTCCAAACGCTGAGCGGCGGTCAGAAGCAAAGAGTTGCCATTGCTGGTGCCTTGGCTGAAGCATGTAAAGTTCTTCTATTAGATGAACTGACCACATTTCTGGATGAGAAAGATCAGATGGGGGTGATCAAGGCAGTTAGAAATTCTTTGCATAATTCTGAAGATGTTACAGCATTATGGGTGACCCATCGCTTAGAAGAACTCGAGTATGCGGATGGCGCTATCTACATGGAAGACGGGAAAGTCGTAATGCACGGTGATGTGACAAGTGTTCAAAATTTCATCAAAACGAAACAGTCGGATTATATGAAGCGTATTTCCTATCCATGA MVDARGERAAVVSASLSASEESPPNGAFFLPAIEKSPRMLDALIPKLVIYPDSFILFVSSGVVIFPRVSATLLTVLSLFELLFLLPSSMLLKSSSFNLVPASPPLLSPLFSNPPSRANLTENIAIEGSNLSFSITTRQGKIVPILRDCSLRIPSGQFWMLLGPNGCGKSTLLKVLAGLLNTTTGAVYVKKPKCFVFQNPDHQVVMPTVEADVAFGLGKLNLTNDEVRSRVLEALSAVGMSSYLQRSVQTLSGGQKQRVAIAGALAEACKVLLLDELTTFLDEKDQMGVIKAVRNSLHNSEDVTALWVTHRLEELEYADGAIYMEDGKVVMHGDVTSVQNFIKTKQSDYMKRISYP Homology
BLAST of Moc02g16390 vs. NCBI nr
Match: XP_022156682.1 (ABC transporter I family member 10, chloroplastic isoform X1 [Momordica charantia]) HSP 1 Score: 526.9 bits (1356), Expect = 1.3e-145 Identity = 269/269 (100.00%), Postives = 269/269 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. NCBI nr
Match: XP_022156683.1 (ABC transporter I family member 10, chloroplastic isoform X2 [Momordica charantia]) HSP 1 Score: 525.4 bits (1352), Expect = 3.8e-145 Identity = 268/268 (100.00%), Postives = 268/268 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. NCBI nr
Match: XP_022156685.1 (ABC transporter I family member 10, chloroplastic isoform X3 [Momordica charantia] >XP_022156686.1 ABC transporter I family member 10, chloroplastic isoform X3 [Momordica charantia] >XP_022156687.1 ABC transporter I family member 10, chloroplastic isoform X3 [Momordica charantia]) HSP 1 Score: 523.9 bits (1348), Expect = 1.1e-144 Identity = 267/267 (100.00%), Postives = 267/267 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. NCBI nr
Match: XP_022932024.1 (ABC transporter I family member 10 [Cucurbita moschata] >XP_023512386.1 ABC transporter I family member 10 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 486.1 bits (1250), Expect = 2.6e-133 Identity = 247/266 (92.86%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of Moc02g16390 vs. NCBI nr
Match: KAG6571336.1 (ABC transporter I family member 10, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 484.2 bits (1245), Expect = 9.7e-133 Identity = 246/266 (92.48%), Postives = 255/266 (95.86%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy Swiss-Prot
Match: Q8H1R4 (ABC transporter I family member 10 OS=Arabidopsis thaliana OX=3702 GN=ABCI10 PE=1 SV=1) HSP 1 Score: 352.1 bits (902), Expect = 7.6e-96 Identity = 179/264 (67.80%), Postives = 216/264 (81.82%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy Swiss-Prot
Match: Q8R7Y4 (Energy-coupling factor transporter ATP-binding protein EcfA1 OS=Caldanaerobacter subterraneus subsp. tengcongensis (strain DSM 15242 / JCM 11007 / NBRC 100824 / MB4) OX=273068 GN=ecfA1 PE=3 SV=2) HSP 1 Score: 157.1 bits (396), Expect = 3.6e-37 Identity = 99/242 (40.91%), Postives = 133/242 (54.96%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy Swiss-Prot
Match: Q1WSB8 (Energy-coupling factor transporter ATP-binding protein EcfA1 OS=Lactobacillus salivarius (strain UCC118) OX=362948 GN=ecfA1 PE=3 SV=1) HSP 1 Score: 153.7 bits (387), Expect = 4.0e-36 Identity = 96/241 (39.83%), Postives = 139/241 (57.68%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy Swiss-Prot
Match: Q03PY5 (Energy-coupling factor transporter ATP-binding protein EcfA1 OS=Lactobacillus brevis (strain ATCC 367 / BCRC 12310 / CIP 105137 / JCM 1170 / LMG 11437 / NCIMB 947 / NCTC 947) OX=387344 GN=ecfA1 PE=1 SV=1) HSP 1 Score: 150.2 bits (378), Expect = 4.4e-35 Identity = 91/224 (40.62%), Postives = 135/224 (60.27%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy Swiss-Prot
Match: Q6KHL1 (Energy-coupling factor transporter ATP-binding protein EcfA1 OS=Mycoplasma mobile (strain ATCC 43663 / 163K / NCTC 11711) OX=267748 GN=ecfA1 PE=3 SV=1) HSP 1 Score: 145.2 bits (365), Expect = 1.4e-33 Identity = 86/230 (37.39%), Postives = 128/230 (55.65%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy TrEMBL
Match: A0A6J1DSL5 (ABC transporter I family member 10, chloroplastic isoform X1 OS=Momordica charantia OX=3673 GN=LOC111023532 PE=4 SV=1) HSP 1 Score: 526.9 bits (1356), Expect = 6.3e-146 Identity = 269/269 (100.00%), Postives = 269/269 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy TrEMBL
Match: A0A6J1DRA1 (ABC transporter I family member 10, chloroplastic isoform X2 OS=Momordica charantia OX=3673 GN=LOC111023532 PE=4 SV=1) HSP 1 Score: 525.4 bits (1352), Expect = 1.8e-145 Identity = 268/268 (100.00%), Postives = 268/268 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy TrEMBL
Match: A0A6J1DVP5 (ABC transporter I family member 10, chloroplastic isoform X3 OS=Momordica charantia OX=3673 GN=LOC111023532 PE=4 SV=1) HSP 1 Score: 523.9 bits (1348), Expect = 5.4e-145 Identity = 267/267 (100.00%), Postives = 267/267 (100.00%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy TrEMBL
Match: A0A6J1EVW3 (ABC transporter I family member 10 OS=Cucurbita moschata OX=3662 GN=LOC111438351 PE=4 SV=1) HSP 1 Score: 486.1 bits (1250), Expect = 1.2e-133 Identity = 247/266 (92.86%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of Moc02g16390 vs. ExPASy TrEMBL
Match: A0A1S4E2Z9 (ABC transporter I family member 10, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103499613 PE=4 SV=1) HSP 1 Score: 484.2 bits (1245), Expect = 4.7e-133 Identity = 244/263 (92.78%), Postives = 255/263 (96.96%), Query Frame = 0
BLAST of Moc02g16390 vs. TAIR 10
Match: AT4G33460.1 (ABC transporter family protein ) HSP 1 Score: 352.1 bits (902), Expect = 5.4e-97 Identity = 179/264 (67.80%), Postives = 216/264 (81.82%), Query Frame = 0
BLAST of Moc02g16390 vs. TAIR 10
Match: AT4G01820.1 (P-glycoprotein 3 ) HSP 1 Score: 86.3 bits (212), Expect = 5.5e-17 Identity = 72/229 (31.44%), Postives = 114/229 (49.78%), Query Frame = 0
BLAST of Moc02g16390 vs. TAIR 10
Match: AT2G36910.1 (ATP binding cassette subfamily B1 ) HSP 1 Score: 85.5 bits (210), Expect = 9.4e-17 Identity = 68/227 (29.96%), Postives = 115/227 (50.66%), Query Frame = 0
BLAST of Moc02g16390 vs. TAIR 10
Match: AT4G01830.1 (P-glycoprotein 5 ) HSP 1 Score: 85.1 bits (209), Expect = 1.2e-16 Identity = 71/229 (31.00%), Postives = 113/229 (49.34%), Query Frame = 0
BLAST of Moc02g16390 vs. TAIR 10
Match: AT3G28390.1 (P-glycoprotein 18 ) HSP 1 Score: 80.9 bits (198), Expect = 2.3e-15 Identity = 66/233 (28.33%), Postives = 113/233 (48.50%), 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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