MC11g0575 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSutr3 Hold the cursor over a type above to highlight its positions in the sequence below.ATTTTGGGAAGATTTAATCGAGCTCGTGCTGCTCAACTCACTCTCCCCCACTTCATATGTCAAACACCTCTGTTTATGCCAGTGGGAACCCAAGGTATATTTTCGAAGCCAATCCAGCATGCATATGCATCCCTCGTGGAAGATATATAAATTGTAGTTCGTATCACTTGTCCAATTGCATGCAGTAGTGTTTGAAATTGAGTTTACCTGATTATAGGGACAATTAAAGGGTTAACTAATCAGCAACTTGAGGAGATTGGTTGCCAAATTATACTTGGAAATACATATCATTTAGCGCTTCGTCCTACTTCCGAGCTAATTGATGAGCTAGGAGGTCTCCACAAGTTTATGAACTGGCCCAGAGCAATGCTTACTGATTCTGGCGGGTTTCAGATGGTCGTTTATCTACTTTTGATTCCTCTTCACCATTTCTGATTCGTATATTTGCAGGCAGACATACATACATACATACATATATATATATATATACATATTTGTCATTCTTGCTTCTTTATGGTAGTTCAGAAGGATTGAGAACTTCAGTCCCTTGCAAACTCATTCACATAATATATGTTACTTAGACAGTGTTGTATTAGTATAATTACTCATCTCACGTGCTGATGAATCAATAACTTGTATTACACCTGGTGAGGGCAATTAGATAAAAAAATTGATTTGACACACAGATCTATAGTTCATTGTAGATGAAGATAACATGGAAAGGAAAAACCTGTGGTCTTTAAGTCTTTAGATATTTTCTGCAACAGATAAAGAAGATGAGGCTGGATCATCTCCTCTTGGAATCTTTTGGGGATATTTGGATAAAAGGAGAAGCAAATATTTTGTGGAATTGTGCTGTGTCCCTACGGCTGATTTGGAGGGAGATACACAATAGGATTTTTGAAAACAAGAGTGTTCCGATGAATTATTTTTTGTAATAGTGTACAACATGGTGCTCTAACTATAAGAATTAATGATTTTTTTTTTGTTGGTAATTACAACCATGTGATAATCATTAATGACTGGAAGATTCTTATTTCTTATTTTTCGGGAGGGGGTTCTCTCTACCCTTTGCCCCTAGGTTGTTTTCCCGTTTTTTTTGTCTATAATACCACTGTTCCGTTTCTTATAAAAAAAGGAAGTTAAGGGAGAGGTAGGCAACTTGCTGCAACAGATAAGTTTCGAGATGCTGGATACTTGACCTTAGAGCCTGTAGCTGATGTTGAAGTAGGCTGTCTGAAATTTAGTGCTCCGACTGAAATAAGGAACCTTTAAGTTCTTAAAGTACAGGGTCTGACTGATATGGGGACTAGTACAGGCTACATTCATCTGAATATCTATTTATAAAATACCAACTCAAATTTCATTTACTTCACTCTTCTCTTTGAACTTCCTATTGTCATTATAATTCCTTCATATCATTTCTATTAGTTTTCTTGATATTATCAACGTAATGAAGGTTATATTCCATTTAATATTCGCTAGGTATCATTGTTGCACTTAGCTGATATCACCGAAAAAGGTGTAACATTTCAGGTACTTTCTCAATGTTTATTTCAGAAGTTAACTATTGTTTAGGCATATGAAGACTTTTAGCTGACAGTAGTATTTAGCATTATCTTCTGGTGAAGAATTTTGTTGATTTGTACAGACGAATACCTTAATTCTCTAAATCTTCTAAAACAAAAAGTAACTAATGCAAATTTTCTTTCTTCAGTCTCCGGTTGACGGGAAACCAATGCTTTTGACTCCTGAGGAATCAATTCAAATTCAAGTAGGTTAATATATGCTTGCTTGATATTAACACTGTCAATATTGTTATTTTTACTTTCAGAAGTTGTTTCTATCTGTACTGGTTGGTTTTCTTCTTCAATCCTCTATAGTCTCTATGCCCAAATGATATTGTAAATTGTCAATAGAATACAGATATAGGTTCAAATCTTGGTGACCGTCCACCAAGTATATAAAATAATAAAATATCCAATCAATGCTTCATTTTTTTCCCTTGGGTTACTGCATTTTAATGCTTCATTTACCCCCCTAAATTTCTCACAGAACAGAATAGGAGCAGATATTATAATGGCTCTTGATGACGTAGTGAGAACAACCATTACAGGTCCAAGAATTGAGGAGGCCATGTACCGTACGCTTCGATGGATAGACAGATGTATAGCAGGTAAAATTTTCAAGCACTTGCATAAATATGGATTATAAAAAATAACTCATATGAATAGAGACCACAAAGATTTATTCATCTGAGTTAAACTACTTTTATATTCTAAGTTGATGTGATTTGTTAGGTTTTGATTAAAAACGGAGCATTCTTCACTCACCATGTTCAAATGTTGCTTTTTCCCGTCCTAGCTCCCATCTTTATAATTTAAGATTCTCATTATTTCTTTGTTCACTCACAACATTTCATGCTGTATGGTCCATGTTCTATAAATAAATTTAGACCAACCGAGTATGTCACCTTAATTCAATTTACTTCAATATATGTATATATATTTTTTGATATCCGTGAGTGTCCGGGCCAGCTTGCGCGCACCTCGACTAATCTCACGAGACAACCGCCTGACCCTACTACATTTGGTTGCCAAGGAAACACATAGGAAATTAATTCCTAGGTAGGTGGCCATCATGGGTTTGAACTAATTCCCTTTAAATCCTTTTTGATTTACCTTGGTTCTGTCCCTACTACATTTGGTTGCCAAGGAAACACATAGGAAATTAATTCCTAGGTAGGTGGCCATCATGGGTTTGAACTAATTCCCTTTAAATCCTTTTTGATTTACCTTGGTTCCTTTGGACCAATGAGACAACCCATGATGGTTCCATTTACTTCAATATTTAAGGATTTATTTTCTGAGATACTTCTTGTATTCAGCACATAAGAGACCTGACGAGCAGAATTTATTTGGCATTGTGCAAGGCGGTTTAGATCCAGTCCTAAGGTATAACTTCAAACAGTTTTCATCATTTCACTGTCCCTCAGTGAGTTGAAGGATCTGGTCCTTCTTTCTCCATTCCCACAACTGTCGCTTATATTATCTGATTGTTTATTCTAATGCCAGGGACATATGCGTCCGAGGCTTGGTTGACCGGAATTTACCAGGGCAAGTTTACACTACTTCAAGTGGATGATATTATTTAATCTTATTTTGGACATTATAGGATGCATAAAACCTAAGTAGCTATTGAAGGTGGTATTAACTGTGGGCTTTTAATTTTCTTGAGATTTTTTAGTAGGAAACAGAACTTTATTTGAAGATAACAAAATGCAATGGGATAGGTGGAGGGCATCTCAAATGAGAACAAAAAAGAATCTCCCGTACTATACAAATAGAAACTTCCTTAGGAAGCATGACACTGGTTATAATTGGCCGATGGGGTTTTGATCTTCCCCTTTCATCTTTCTTTGCTTCTTTGTTTAATTACTGGGAAAACCTCTTCTGTTTCATTCACGTGCAAAGAAATGTATTCTTGTGAGGTACACTTAAATTCTCCTCATTGATCATTAGTGTTTAAGATCATTAGCTGATGCTCTCATGAACGTTGTTAGTCTGTTTTCTTTAATGGCGTTGAATGGTTGAGGTACTGAAACTGCCTGTTTGTTTCAACAGCTATGCAATTGGTGGTCTGGCAGGTGGAGAAGATAAAGATTCATTTTGGCGTGTTGTTGCCCAGTGCACTGCTTCACTGCCTGAGGACAAACCTAGATATGTTATGGTATAGTTTTTATACTTCTATAATTCTTCATGTTACCACAACTTTATTTGACTTATTTTAATCTTGTCAGGGTGTTGGTTATCCACTGGACATTGTAGTATGTAGTGCTTTAGGTGCCGACATGTATGACTGTGTTTATCCAACCCGTACTGCTCGCTTTGGCACAGCGCTTGTTCCTGAGGTGAGTGCATCACTGAGCTTTTGAACGAGTAATATTTTCCTTTTTTGGGTGGGGTCGCTTACCTTCTTCTTCTTTATATTTTAATTTATTTTTTCCATTTTTCCTTTTTTTAATCATTAATGTGTCCCCAACGTGTCCATGTCCTACATTTTTAGAAACTGGTGTCCTCGCCGTATCTGTGTCCATACTGCTTAGTGTGCTGGTTACTAATACCTCCAGTATTATAAATTATAGAACTATTATCATATTGAAGGAGGACCGTATCTTTGATTCTATGCATGCTGTTAGGTATGATTTTGTGCATATTTAGGTGTATTTTTGTACTCTTTCATTGTCTTTAACATTATTTATTATTTGACTTGCAAGCTGCCGAGATTGGGGAAATGTAGGATAGTCTATGTATATATATATATATATATATATATATTATTCTTTCAGTTACAGTTTTGCCTAATTAGTCACCCTTTGAAACATAATCTGTTTGTGATATTCACTGCAGGGAGTTTTAAAACTAAAACACAAAGCGATGGCTGATGATACCCGTCCTGTTGATCCTACATGTGATTGCATGGTATACTTTTCTTAGTAGTTAGTTATTTTCAGTTTAAGGAGACAGTATGCATCTGCTTCATCATTTACTATCTCAGGTCTGCAGGAACTATACTAGGGCCTACATCCACTGTCTTGTTACAAAAGATGCTATGGGTTCTCAGCTACTCTCATATCACAATTTGTATTACATGATGAAGGTCCGGGGCACTATCTTGCCTACATATTTCCTATTTTTTGTTTCTTTTATAGAACTAACTGTAGAAGTGCTGAAAATTCACAGCTTAGCAGAGATCTCCATTCTTCAATAGTTCAGGGGCAATTTCCAGAGTAAGTTCTCCATTTTGTACTATCAAGGCCTAAGTGTATTTTACCTTCCAAACTATGCTCTACAAGTTTGTAAATTTCAATGTCCCAGTTATTATTTATTTCTCCACATATCGATTCAAATTATATTTGTTATCCTTCAGCTAGAAAATGTAAATTCATTTCAAAGATTACACCAGTGAAAAGTGTGACACTATTATTCAATTTTACCTTTTTAAACCACAAAATTTTCACAAAGGTTTTTTAATAAACCACAAAAAAGTCATCACACGGGATGCGATTTGTAGTTGCTTCTAATAGTGGCCTGTTAGCCTAACATGCTTTTAAACTTTTTGCAGGTTCGTTCGCAAGTTTTTGCAGAGAATGGTATTGGTTCTTGGGAAGACTCATCTCTCTCTCTCTCTCTCTCTCTCACAAATCTTACATAAGTGCCTAGCTCAGAACCTGCTTCAGTAGCTTGATAATTTCAAAGATAAGACCTCAGAGATTTCTGTGGGTCAAATAGGCGGCAATGATCACCCCCCTATACACACACCAAAAAGAAAAGAAAAGAAAAAGAAAAGGAGAGAGAGAGAGAAAGAAAAGAAAGACAGTAGCTGTTCTTTCAATTGACTGAATTTACGTCAATATGGAACCTAATATAATAGCCTCTTTATTTTCTTATAGTTCCCTCATGGTGATGTGCCACAATGGGTCTGCAATGCCATGGAGGTTGCCGGTATCGACATCTCCTCCTGCTGCGCTCCTTCATCGTCATCATTGGATTAAAACCGAACCATCAACGAGGAAACTAGTCAGGTTGGCTTTTATCAGGTTTTTACTTCAAAGAGGTTACCACTAAATCATAGAATCAAATCTTTTTGCACAAGATCACCAAAATGCAGCATAAATTTTGTAGCCTGCATATGCTGCTTCATTAGCAAATACCACATTTTGATGATGCCTTCTATTTTTGTTTCACACACGAATTACTGTAAACTTTTGCCATACAGATACAGTGGCAGGCCTGTAGTTATCAATCCACATTTACTTAATTTAACTTGTCTAATCTCTCTATCATTAATGCTTGATCTGTTAATTTATCTTTGATGGGATTTGGTCATGACTTTCATTTAGTTGTGGGATTTATTAGTCACAGTCACAGATAATTGCGGCTTACTTGCTATTAGCATATGTGTCAAGACTGTGTATTGATCCAATCCCTCAACTTTATGATAAGACTAATCCCTAAACTCACGCGCATCCATATGAATCAAGTCTCTAAAAGAAGGATTCTTGAAAAGAAAGTGGATTTTGTAGAATTCCTGTGCAGCCTTTGATCTTTCATTCTCGATGGCACTTGAAAAAAAAAATTCAATTGCTCCCTCTTATATACTATTTTAGCTAGCTGTTTGCTCTTGCTTCTTCTTCCATTTTTTTTAATAAAAAATTTATGTGGCGTGTTGTTTTGACTCAACAATTTTAGTTGATCAGCTTTTGTAGGAGTTTTAATTGACTTGTGTGTAGGTAAGTATAATACTGTCATTTTTTTAATTACTACTAGATAATTACATTTTTTAAAATATAGCATCATATATGTAATGCTTGTTGGACAAGTTTGACTGTAGTCAGATTGAATGCACGCTCATTTTAACATAGAGACAGTATCTTTGGGGAAAAAAAATCTTCTATGAATTTTTGTTAAGAACTTTAATGGGTTGACTTCATTTTTTGTTTTTGTGAGTACAACAACACGTTAGAGTGAAGGATTAAGAATATATGCTTTAACTAATTGAGTTATTTTAGGATAAGATATATGTTATCGTCTCAGAGGTAGATCGTAAATATTTTCATCAAATTGATCGTGATTATATGTGTAATAACTTCAGAATTCAGAATTAGTTGATCCGGCAACAATATGAATTTTACTTTACTAAATTCAAAGAAGAAATAGGTTGGAACATTACTTTACTATAAATAAACAGGGTACAGGTTACAAAAACGAAAGATTCAATTCCAGAAACTGCAGTTGTGTCAAACTAAAAGATAATTAGAAAACAATTGTGTTGGCAGAGTATAAAAGGGAAAAGGGGAAAGCAGTGTAGAACCCAAGTCGCAAAACCAGCAAGCCAAAAACTGGTCCTTCATCAGAACCCTCCCCAAAAAAGTGAGTTATAAAGCAGGGGCCGATGCTTTTTTAGTCCTTTTTAAGAGAATAAGTCTGATTATATAAAACAACAAAAACCAAAAAGCCTTCCAATACCATTTCAATAAATAAATAAAACAATTTATTATTATTATTATTTTCACATTGATCCATTATGATTAGACAATAATTAAAGATATTTTCATGTCACTTCAAAAAGGAAAAAAAAAAAAAAAAACTCCACCATAGTTTCTTGTCAGCCAAATGCTTGGCTCTGTCTCATGAAATTCAAGAAATGAAAACTGAGAAAGACAGAAGCAGCATCATTTTGGTTGCAGGAGCGAGGAAAAAATTAGAGAGAGAACTTTAAAATTATAAGTTTTTTTGGTTCTCTTTTAAATACACTTTTTTGAAATCTTTGCCCCAATAAAAATCCCACCATTTTGCTCTGTTTGGCCATCTTATTCCTTTGCAGTTGTGATGAAGAGATTTGGCCATTCAGAATCTCTGGATTCTTTCATCTCCATTTTCTCTCCAAAGGGTAAGTAATCCTCAAAACCAAACACCCAAAAGAAAAAGGAAAAAAAAAACTCTCTTTTTTCTGTTTTTTTTTTGTTTTTGTTTTCTGAGTCTCTGTTTTTGGTTTTGTTTTCAGAGCAACCGAGCTCCACCACCGCCGGAGGCTACAGCAAGGAGTTTCAGGCAATGTTAGACAGTTTGGAGGAAGAAGAGAACAGCGAGGACGGCGGCGGCGGCGGTCCGGCGCCGGAGAGAAAACGGCGGCTGAGGCTGGATCAAGTGAAGGCCTTGGAGAGGCATTTCGAAGTGGAAAACAAGCTGGAACCTGACAGAAAACTGAAGATTGCAGCAGAATTAGAGCTGGAGCCACGGCAAGTGACAATTTGGTTCCAAAATCGGCGAGCCCGTTGGAAAACCAAGCAATTAGAGAGAGATTATGGAGTTCTTAAAGTCAATTACGATGCCCTTAAACTCGATTACGATGTTCTTGAGAAACAGAACACTTCTCTTGCTTCGAAGGTACTCAAAATCGGCTCCATTTTTTGATTTCCCGAATTGGGTTTGCATTTTTATGCTCCAATTTTAAATTATAATGTTGGAATTTGTTGGCAGCTGAGAGAGTTGCGGGAAAAAGTAAGCAGAGAGAGCGAAGAGATGAAAATTCAAAGAGAATTCACCGCCATTGATAACTGTTCTGCAACTTCGATGATGAATTGCTTTGAAATTTCAAATCAGAGAGAGTTTATGAAGGCGACGAATGAGGAGCAGAGTTTGTTTAATGCAGAGGAGACTTGCAATTTCTGTTCTGTGGATCAAGCTCCATCTCTCCACTGGTAAACCCATTTGATTCGATGCCTCCTCCATCTTTAACAATTATCCTTCATCTTCTTTTTTCTTCTTCTTTGTTGTTTAAAAAAGATTTCTTGGGATGCCAATATAATTCATGTTGGTTAAGAATAGGGGAACAGTGGAGGAGCAAAGAAGAAGGAGCCTCGAAATAACGATTTAGTCCCGGGCCAAATCGGTGAAATTTGAGACACGCTAAAGTTTGGAGACTAAATTATTATTCAAATTTAGAAACTAAATTATTACTTTTAGAACCGGTTAAGATGTTAATTTTTTTTTTCTAAGTTAAAAATATATTTGATCCATAAAATAAATTTTTTTAGTCCTTTATGCTTTTAAATCTTTTCGCGATTTTAGTATATGTAGTTTAAAGGTTGTCTCCTTAAAATTTCATGACCACCCATTTCAGGAATTAGTAATTCTTATGTGTTTACTGACACCAAATATTGTAAGATTGGTGATTATCCGTGAAATTAGTCGAGGTACACATAAGCTCCTCTGGATAATCACGGATATCAAGAAAAAAAGTTGTCTCCTTAAGTTTATTATAACCAACTTGAGGCTAAATATGTTTTCAAATTAGATTAGATTGAATTGTTATAACCTAAAGATCAATACTTG ATTTTGGGAAGATTTAATCGAGCTCGTGCTGCTCAACTCACTCTCCCCCACTTCATATGTCAAACACCTCTGTTTATGCCAGTGGGAACCCAAGGGACAATTAAAGGGTTAACTAATCAGCAACTTGAGGAGATTGGTTGCCAAATTATACTTGGAAATACATATCATTTAGCGCTTCGTCCTACTTCCGAGCTAATTGATGAGCTAGGAGGTCTCCACAAGTTTATGAACTGGCCCAGAGCAATGCTTACTGATTCTGGCGGGTTTCAGATGGTCGTATCATTGTTGCACTTAGCTGATATCACCGAAAAAGGTGTAACATTTCAGTCTCCGGTTGACGGGAAACCAATGCTTTTGACTCCTGAGGAATCAATTCAAATTCAAAACAGAATAGGAGCAGATATTATAATGGCTCTTGATGACGTAGTGAGAACAACCATTACAGGTCCAAGAATTGAGGAGGCCATGTACCGTACGCTTCGATGGATAGACAGATGTATAGCAGCACATAAGAGACCTGACGAGCAGAATTTATTTGGCATTGTGCAAGGCGGTTTAGATCCAGTCCTAAGGGACATATGCGTCCGAGGCTTGGTTGACCGGAATTTACCAGGGCACTATGCAATTGGTGGTCTGGCAGGTGGAGAAGATAAAGATTCATTTTGGCGTGTTGTTGCCCAGTGCACTGCTTCACTGCCTGAGGACAAACCTAGATATGTTATGGGTGTTGGTTATCCACTGGACATTGTAGTATGTAGTGCTTTAGGTGCCGACATGTATGACTGTGTTTATCCAACCCGTACTGCTCGCTTTGGCACAGCGCTTGTTCCTGAGGGAGTTTTAAAACTAAAACACAAAGCGATGGCTGATGATACCCGTCCTGTTGATCCTACATGTGATTGCATGGTCTGCAGGAACTATACTAGGGCCTACATCCACTGTCTTGTTACAAAAGATGCTATGGGTTCTCAGCTACTCTCATATCACAATTTGTATTACATGATGAAGCTTAGCAGAGATCTCCATTCTTCAATAGTTCAGGGGCAATTTCCAGAGTTCGTTCGCAAGTTTTTGCAGAGAATGTTCCCTCATGGTGATGTGCCACAATGGGTCTGCAATGCCATGGAGGTTGCCGGTATCGACATCTCCTCCTGCTGCGCTCCTTCATCGTCATCATTGGATTAAAACCGAACCATCAACGAGGAAACTAGTCAGTTGTGATGAAGAGATTTGGCCATTCAGAATCTCTGGATTCTTTCATCTCCATTTTCTCTCCAAAGGAGCAACCGAGCTCCACCACCGCCGGAGGCTACAGCAAGGAGTTTCAGGCAATGTTAGACAGTTTGGAGGAAGAAGAGAACAGCGAGGACGGCGGCGGCGGCGGTCCGGCGCCGGAGAGAAAACGGCGGCTGAGGCTGGATCAAGTGAAGGCCTTGGAGAGGCATTTCGAAGTGGAAAACAAGCTGGAACCTGACAGAAAACTGAAGATTGCAGCAGAATTAGAGCTGGAGCCACGGCAAGTGACAATTTGGTTCCAAAATCGGCGAGCCCGTTGGAAAACCAAGCAATTAGAGAGAGATTATGGAGTTCTTAAAGTCAATTACGATGCCCTTAAACTCGATTACGATGTTCTTGAGAAACAGAACACTTCTCTTGCTTCGAAGCTGAGAGAGTTGCGGGAAAAAGTAAGCAGAGAGAGCGAAGAGATGAAAATTCAAAGAGAATTCACCGCCATTGATAACTGTTCTGCAACTTCGATGATGAATTGCTTTGAAATTTCAAATCAGAGAGAGTTTATGAAGGCGACGAATGAGGAGCAGAGTTTGTTTAATGCAGAGGAGACTTGCAATTTCTGTTCTGTGGATCAAGCTCCATCTCTCCACTGGGGAACAGTGGAGGAGCAAAGAAGAAGGAGCCTCGAAATAACGATTTAGTCCCGGGCCAAATCGGTGAAATTTGAGACACGCTAAAGTTTGGAGACTAAATTATTATTCAAATTTAGAAACTAAATTATTACTTTTAGAACCGGTTAAGATGTTAATTTTTTTTTTCTAAGTTAAAAATATATTTGATCCATAAAATAAATTTTTTTAGTCCTTTATGCTTTTAAATCTTTTCGCGATTTTAGTATATGTAGTTTAAAGGTTGTCTCCTTAAAATTTCATGACCACCCATTTCAGGAATTAGTAATTCTTATGTGTTTACTGACACCAAATATTGTAAGATTGGTGATTATCCGTGAAATTAGTCGAGGTACACATAAGCTCCTCTGGATAATCACGGATATCAAGAAAAAAAGTTGTCTCCTTAAGTTTATTATAACCAACTTGAGGCTAAATATGTTTTCAAATTAGATTAGATTGAATTGTTATAACCTAAAGATCAATACTTG ATTTTGGGAAGATTTAATCGAGCTCGTGCTGCTCAACTCACTCTCCCCCACTTCATATGTCAAACACCTCTGTTTATGCCAGTGGGAACCCAAGGGACAATTAAAGGGTTAACTAATCAGCAACTTGAGGAGATTGGTTGCCAAATTATACTTGGAAATACATATCATTTAGCGCTTCGTCCTACTTCCGAGCTAATTGATGAGCTAGGAGGTCTCCACAAGTTTATGAACTGGCCCAGAGCAATGCTTACTGATTCTGGCGGGTTTCAGATGGTCGTATCATTGTTGCACTTAGCTGATATCACCGAAAAAGGTGTAACATTTCAGTCTCCGGTTGACGGGAAACCAATGCTTTTGACTCCTGAGGAATCAATTCAAATTCAAAACAGAATAGGAGCAGATATTATAATGGCTCTTGATGACGTAGTGAGAACAACCATTACAGGTCCAAGAATTGAGGAGGCCATGTACCGTACGCTTCGATGGATAGACAGATGTATAGCAGCACATAAGAGACCTGACGAGCAGAATTTATTTGGCATTGTGCAAGGCGGTTTAGATCCAGTCCTAAGGGACATATGCGTCCGAGGCTTGGTTGACCGGAATTTACCAGGGCACTATGCAATTGGTGGTCTGGCAGGTGGAGAAGATAAAGATTCATTTTGGCGTGTTGTTGCCCAGTGCACTGCTTCACTGCCTGAGGACAAACCTAGATATGTTATGGGTGTTGGTTATCCACTGGACATTGTAGTATGTAGTGCTTTAGGTGCCGACATGTATGACTGTGTTTATCCAACCCGTACTGCTCGCTTTGGCACAGCGCTTGTTCCTGAGGGAGTTTTAAAACTAAAACACAAAGCGATGGCTGATGATACCCGTCCTGTTGATCCTACATGTGATTGCATGGTCTGCAGGAACTATACTAGGGCCTACATCCACTGTCTTGTTACAAAAGATGCTATGGGTTCTCAGCTACTCTCATATCACAATTTGTATTACATGATGAAGCTTAGCAGAGATCTCCATTCTTCAATAGTTCAGGGGCAATTTCCAGAGTTCGTTCGCAAGTTTTTGCAGAGAATGTTCCCTCATGGTGATGTGCCACAATGGGTCTGCAATGCCATGGAGGTTGCCGGTATCGACATCTCCTCCTGCTGCGCTCCTTCATCGTCATCATTGGATTAA ILGRFNRARAAQLTLPHFICQTPLFMPVGTQGTIKGLTNQQLEEIGCQIILGNTYHLALRPTSELIDELGGLHKFMNWPRAMLTDSGGFQMVVSLLHLADITEKGVTFQSPVDGKPMLLTPEESIQIQNRIGADIIMALDDVVRTTITGPRIEEAMYRTLRWIDRCIAAHKRPDEQNLFGIVQGGLDPVLRDICVRGLVDRNLPGHYAIGGLAGGEDKDSFWRVVAQCTASLPEDKPRYVMGVGYPLDIVVCSALGADMYDCVYPTRTARFGTALVPEGVLKLKHKAMADDTRPVDPTCDCMVCRNYTRAYIHCLVTKDAMGSQLLSYHNLYYMMKLSRDLHSSIVQGQFPEFVRKFLQRMFPHGDVPQWVCNAMEVAGIDISSCCAPSSSSLD Homology
BLAST of MC11g0575 vs. ExPASy Swiss-Prot
Match: Q7SYK1 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Danio rerio OX=7955 GN=qtrt1 PE=2 SV=1) HSP 1 Score: 474.9 bits (1221), Expect = 8.6e-133 Identity = 216/379 (56.99%), Postives = 284/379 (74.93%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy Swiss-Prot
Match: Q28HC6 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Xenopus tropicalis OX=8364 GN=qtrt1 PE=2 SV=2) HSP 1 Score: 472.2 bits (1214), Expect = 5.6e-132 Identity = 217/377 (57.56%), Postives = 285/377 (75.60%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy Swiss-Prot
Match: Q4QQY7 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Xenopus laevis OX=8355 GN=qtrt1 PE=2 SV=1) HSP 1 Score: 466.5 bits (1199), Expect = 3.1e-130 Identity = 214/377 (56.76%), Postives = 284/377 (75.33%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy Swiss-Prot
Match: Q9VPY8 (Queuine tRNA-ribosyltransferase catalytic subunit OS=Drosophila melanogaster OX=7227 GN=Tgt PE=2 SV=1) HSP 1 Score: 461.5 bits (1186), Expect = 9.8e-129 Identity = 216/377 (57.29%), Postives = 270/377 (71.62%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy Swiss-Prot
Match: Q9BXR0 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Homo sapiens OX=9606 GN=QTRT1 PE=1 SV=3) HSP 1 Score: 461.1 bits (1185), Expect = 1.3e-128 Identity = 216/381 (56.69%), Postives = 285/381 (74.80%), Query Frame = 0
BLAST of MC11g0575 vs. NCBI nr
Match: XP_022156379.1 (queuine tRNA-ribosyltransferase catalytic subunit 1-like [Momordica charantia] >XP_022156456.1 queuine tRNA-ribosyltransferase catalytic subunit 1-like [Momordica charantia] >XP_022156523.1 queuine tRNA-ribosyltransferase catalytic subunit 1-like [Momordica charantia]) HSP 1 Score: 801 bits (2069), Expect = 1.03e-292 Identity = 392/394 (99.49%), Postives = 392/394 (99.49%), Query Frame = 0
BLAST of MC11g0575 vs. NCBI nr
Match: XP_038896272.1 (queuine tRNA-ribosyltransferase catalytic subunit 1-like [Benincasa hispida] >XP_038896273.1 queuine tRNA-ribosyltransferase catalytic subunit 1-like [Benincasa hispida]) HSP 1 Score: 782 bits (2019), Expect = 4.31e-285 Identity = 380/394 (96.45%), Postives = 388/394 (98.48%), Query Frame = 0
BLAST of MC11g0575 vs. NCBI nr
Match: KGN60233.1 (hypothetical protein Csa_001845 [Cucumis sativus]) HSP 1 Score: 777 bits (2007), Expect = 5.13e-283 Identity = 378/393 (96.18%), Postives = 385/393 (97.96%), Query Frame = 0
BLAST of MC11g0575 vs. NCBI nr
Match: XP_031739061.1 (queuine tRNA-ribosyltransferase catalytic subunit 1 [Cucumis sativus]) HSP 1 Score: 777 bits (2007), Expect = 1.37e-282 Identity = 378/393 (96.18%), Postives = 385/393 (97.96%), Query Frame = 0
BLAST of MC11g0575 vs. NCBI nr
Match: XP_016903487.1 (PREDICTED: queuine tRNA-ribosyltransferase-like isoform X1 [Cucumis melo] >XP_016903488.1 PREDICTED: queuine tRNA-ribosyltransferase-like isoform X1 [Cucumis melo] >XP_016903489.1 PREDICTED: queuine tRNA-ribosyltransferase-like isoform X1 [Cucumis melo]) HSP 1 Score: 775 bits (2001), Expect = 2.39e-282 Identity = 376/394 (95.43%), Postives = 386/394 (97.97%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy TrEMBL
Match: A0A6J1DQV0 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Momordica charantia OX=3673 GN=LOC111023258 PE=3 SV=1) HSP 1 Score: 801 bits (2069), Expect = 4.99e-293 Identity = 392/394 (99.49%), Postives = 392/394 (99.49%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy TrEMBL
Match: A0A0A0LEM5 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Cucumis sativus OX=3659 GN=Csa_3G889890 PE=3 SV=1) HSP 1 Score: 777 bits (2007), Expect = 2.48e-283 Identity = 378/393 (96.18%), Postives = 385/393 (97.96%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy TrEMBL
Match: A0A1S4E5I8 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Cucumis melo OX=3656 GN=LOC103503686 PE=3 SV=1) HSP 1 Score: 775 bits (2001), Expect = 1.16e-282 Identity = 376/394 (95.43%), Postives = 386/394 (97.97%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy TrEMBL
Match: A0A6J1IMR6 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Cucurbita maxima OX=3661 GN=LOC111476974 PE=3 SV=1) HSP 1 Score: 775 bits (2000), Expect = 3.63e-282 Identity = 376/388 (96.91%), Postives = 380/388 (97.94%), Query Frame = 0
BLAST of MC11g0575 vs. ExPASy TrEMBL
Match: A0A6J1F7B3 (Queuine tRNA-ribosyltransferase catalytic subunit 1 OS=Cucurbita moschata OX=3662 GN=LOC111443016 PE=3 SV=1) HSP 1 Score: 775 bits (2000), Expect = 3.63e-282 Identity = 376/388 (96.91%), Postives = 380/388 (97.94%), 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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