MC06g1826 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5polypeptideCDSutr3 Hold the cursor over a type above to highlight its positions in the sequence below.CTGATACATCTGCTGTTGCTGCGGACTCCGCTTGATCTTGACGGCTACGGGTAGGTGGGGTAGCAGAGACCCGAGTCCAATTTTTTTGAATATACATTCCCTTTTCCCGTGAGCGAGCGATTCAAAGACACTCAAAATTCGCGAAAACCCAACACATTTCACCATTTCGATTTCCCCCAGAAACCCAAGGAAAAATCACTCTCCAATTTCTCCTAATATTGGGCAATCACAATCCGCTTGCTTTTTCAGGACACTGATTTTGTAGATTCTCTCTCTCTCTCTCTCTCTCTCTCTGTTCTTCTCTGATGGCTTCACTTCGCTTCTTCTTTCTGACCCTTTCTTCAAGATAATAGCCTGTAAGCGCTTCCTTGAGCTTAGAAGCTTCTGGGCTCTAATGGGTCTAGGCAGACCTCACAAGGCCTCCAATGGTTTCTCTCCCAGATGGGTTTTTCTATTCTGCATTGCCAGCTTCTTTCTGGGTATTTTCGTTGTCGACAGGTACTTTCTTTCTCTTTTGTGACTGAGATCTTGTTCACAATCGAATCGTCTGGTTAATTGTTTGGGGTATTGCCATTTTCTGTATAGCTTAGTGGGTTGTGTTCTTGAGCAGTTCTTTTTGAGAAATTTGACTGATCAGATGCAGAACTTCTAGAAGGAAATTGTATTTAGTCTGCATGGGGTTTTTTGATTTGTGGAGGCATTGTGTGTTTCTTTTGACCTTTGGGTCTTCCTGTAACTGGATCTTTTGGTATAATGTGCTGCAAATTCTTGGCCAATTGATGAAGATTCCTGTTGCAGATTTCTTGTTTAAGCTATAGATGAAGTTGCTTCTTATGATATGATTCACTGCCATTTTTGTGGCTGGATAGTTAGAAAATTGTGAGAACTATTTCCGATTGCTGCATTGGCTAGAGAAGTTGATCTTGTGAACTTTCCGTATCTTCGGCAAGATTGAGGTGCTGTTATGAGATCTAGTACATGAAAAACATATCATTTTGGATAGTTAAATTGTTAGTATCAAGTTCGAACTTTATTTACTGAGCCCAGAAAGAAAGTACGAAGATAAGAAGGGATCGACTTGGATTAGAGCCTTCATTGGCTCTTGAGTTGCTTAGGAAACAATTCGTGGAAGAAATACTAAAAACTTGGGAATGGTTGAAAGGAAAATTGTACCATGGGATTCATGTTGCTGTTGTTTTGATGAAGTGCTCAAAATCTTCTATGGTTTCTTCGTGAATTCCATGCTTCTTCTTCCCATCTTTCTCTCATTTTTGGGAGAGCTATGGAAATGGGGAAAGGGTTAGATGTGGAGATGGACTTTAGTCAGTATGTCCTTCGACGAACTTTACAAGGATTATTTTCCTGTAAGCGGTGAAACTTGCATATTCTTCTATCTGATACTGGTTGTCTACCAGGAAGAAATGTGTGAACCTTGATAACTTTCATTCTGTTTCACAGACTTAAAGCCTTTAAAACTGGGTCCAAACGAACAGGATTGTAATGTGGGTTCTTTTTCGTTCTGTTTTTTTTTTTTTGGGGACAGTCTTAGGTAATGCCCATGTTTTACATGCGAGTAAAGATTGTCTTGGCAAGTTTTAATCAATGGCGTGAGTTCCTTCTGCTCAGACAGTTCCCTAGATTTGTTGTAAAGAATTCTGAATGAACCCTTACCTGCTGTTCCTTCTAACCCTGTAGGTTTTTTTATTTTTATTTTTTATATTTTTTTATATTGACATTATATGTAAGATTATTGTGCACACTCTTAATTACTATAAAAAAAAATCTGATATCTTCTCCATGCTATGCAAAATTTATCCATTTAGATATGTTAGTTGATTATTATTATTATTATTATTATTATTATTATTTCTTTTTAAATTTCTCCTGTAGATTCTGGGCTATTCCTGATCCAGTCAAAACAGATGAGGAGTCATCTTTGGATAAAGTCCAATCAAAAACTTCACAGCCCATTGTTAATTGTGAGAAGAAGGCAAGTTGGAGTATATAAATGTTATAATTTTTCCTTAACAACAATATCTTGATGATTTCGTTCATATTACAGGAAGTTTCCCTGCAGGCAGACATTCTTTCTCAAGTATCACAGACCCATGATGTCATCATGTAAATTTTAGTCTCTTCCCTAATGTAATATAAGAAGAAATGTTGCTTTTACCTTGTAGTTATATCTCAGATTTTGTAATTCAGAATTAGTTGTTGATGTAACATCATATAGTCCATCATAATTCCTAAGTTTGAAGTATATCATTATTTTTTCAGGACATTAGACAAAACAATCTCATCATTGGAGGTACAGCTAGCTGCAGCTAGAGCTTCTAAAGCAGATAATGATGAAGGGTCTCCTATGGTTACAAAGCCCGCGACCCAGACTTTGAAGGAGCGGCCAAAGGTTTTCTTTGTTATGGGAATTATTACAGCCTTCAGCAGCAGAAAGCGAAGAGACTCTATTAGAGAAACATGGATGCCTCAAGGTTCAACCATAACATAGTCATTCTGTCACAAGTACAACCATTTTTCTGCTTTTGAAACAAACTCATTCCTTACGGCGCATTGTTATTTAATGTAGGTGAAGATTTAAGGAAGCTGGAGGTGGAGAAGGGAATTATTATACGCTTTGTCATCGGACACAGGTATAATTTTCATAAACTCATGTAATGTGCTTAATTGAAAAATCTCATGTTTCCTAATCTAATAGATAACATGCTATGGTTCTTAGTGCAACTCCTGGTGGCGTATTGGATCGTGCAGTTGATGCAGAGGATGCACAACACAAAGATTTCCTAAGACTGGTATGTAACTGTAATATTGTCATACACAAATAGGCCATACGTGAGGAGAGGGAAGAGAGAGTTAGTTACCATGGACAACTCGAGGTACTTGTTGGTGTTAGGAGGTTGGTTTAGTTAATCTGTATTCTGTTAATTAGCTACGGTTAGTGGCTGATATTAATAAAGGAAATGAGCTAGGGGATGGCAAGTGAGAATTGAGAGAAGAGGAAAGTCTAATCCTCTCTAATGCTCGGGAAGATTTGTAATTTTTACAACTTACTAATTCTAGATCTATTCTTGAGTTCTATCAACTTTGGTATCCGAGCAAATCATTTCTAGGAATGCTAAAAGAAAGAATATGGAAGGGCAAATTGGTGGTGTGGAGGAACTGTTTCAAATTGTATTGAATGAAATGAGGAAGTTATTTAGTACTATGCAAGGGATCTGCGGAAGATCCCTAGTGAGAAGAACGTCATCATGCTGCTTGAGCATGTTGAGTAGATCCTTGAAAGGAATTACAGCATTAGGGGAGAGGACACATAACTGTGCAAAAGCCCTCATATTAATGGAATAGCTTTTCTACATCTATAGGTGAGTATGGACAGTTGGGTCGTTAATGGGCTGAAGCCAGTATCATGATGTTCGGGATATTGTGACCAAGTGGTCCGAGTCAAATCATGGAAAGCATGCAAATGGTGGAGGTCAAGACTTGCTCTTGGGACAAGGGAGAGGAATTGAATATGCAATATCAATTGTGAATCAAAGGTAAGATTGAATTGACTATGACTATTAATCCAAATTTAGTTAGCAAGAGTGCACAGTCCAGCCTCCCGCTTCTCAATCATATGGGAAAGAAAAAGTTGTTAAATCAAAAAGTTGTTGTTAACCCCCAATCTCTGAAACGTTTAATAAGAAGATGCAAAGCTGCAGCGCAAGAGGGATCTGGCTTATGCTTTCACTATGATGAGAGATTTTCAATTGGTCATATAGACGTAAGAACAAGGAACTGCAGGAATTGGTTCAATAAGAGGAGGGCCAAACGCCGGAAGAGGAAATCATATTCACCCAAACTGATATTAAATAGCTGATGACTTCTTACCCTTGGAACTAAGGGTTGTGATGCAATGGCTAGAAACCATGTGAAGTATGCAGGTTTAGGCCGGGCATAATGCAGCAGCGTTTTGTGGGGAACTAGGACTTATATATCCCCAAATTTCACTGGGAACCATGTTGAAGGTCATCTGCAAAACTGAACAAAGGGATATTCTTAAGAGTTTGGTTTTGCATTCATGCAAGTTACACAACAAAAGTGAGATACAACCAATTCTAGCAAGTTTGGCGATGTATATTCTCAAATGAGGCATCTCCTTCCACAATGTGAGACCATATAGGTATGCTGAGGTGCAGGAAGATGAGACCAAGCACTTGTTTGGGCAGATGTTGGTTATAGACATCATCAAACCAAGTCAGAGTCCGTTGAGGCTTGAACCAAAGATGTTGGAGGGTATGTCAAAATAATATCCTAAGCCCATACCACTAGGGCATCCTTCGGGATTGCAGGCCAGTACAAGTTTTTTTTTTCTTTTGTTATGCCATTGAATTTAACCAGAATACCTTCTACTCTATTTGGAAAAGAGTAAGAATGAGTGAGATCTTGAGGATCTAATTATTAGGTAATATCTGTAACTTGCATAGCACTTGATTGTGCCATGAGCCATCCATGTTACATTCTGTTTCTGGGGACCATGGGAATATTCCCAATAGAATTTAATCACATTTTCATCATTACTTCTCAAGTTGAGGAAAGCCTTGCCAGAGAATAAATGTATGAATATGAGAGAGAGAGAGAGAGAGAGAGAGAGAAAACGAAATTTCTGGTTGATGTTTGGAAGGTACAAAAAAGGAAGGGTAAATGCCCCAAGGTGAAAGGATTTTGAGGGTCTGCGCCCTAGAGCTCAAAATTTAAATTTTTACAATCTTGAGATTTGTCATTTAATGTTATCCAATTCCTCTTAATCAGAGCTTTCAAAAAACATTGACCACCACATTTACACCATAATGTGACAGCTGGTCTTATACTTCATTTAAACACATTTTTAATTGTTGTTTGAAGATGTTGCTGTATTCAAAGCTAAAGTAGTTAATTTGTACTTTGCTTTCTTCCATCTGGTCTTAATTAGCTTTTTCAAAAAACGTTAACCACCAAATTTACACTAAATGTGACAGCTGGTCTTATACTTGATTTAAACACATTATTAATTGTTGTTTGAAGATGTTGCTGTATTCAAAGCTAAAGTAGTTAATTTGTACTTTGCTTTCTTCCATCTGGTCTTAGTTAGCTTTTTCTATTTTTTTTTATGAGAAACTGCTATCTCATCGAGAGAAATGAAGAAATATACAAGGGCATACCGAAAAACAGCCCAACCAAAGGACGCCACCTAGAGAAAGGGGTTTCAATCCTAAAGAATTAAGCCTAACTAACAATTACAAAAGACCTTATAAACATTCTCTATCCAAAAGAATTAACTCTAACTTATAATTACAAAAGACCTTAGAAACTGATTCTCACAATACCTTATATCTGGTCTTTAATTAGCTTATCAACTTGCATATTTAAGTGCCTGCATTTTAACCTATAAATCAACCTGTTGCTTATCCCCAGTGTACTTGTTCAAAATAATAACATCACTAGTTGAATAAACTTCTAAATTTTGATTTTTTTCTTACAGAACCACATAGAAGGATATCATGAACTGTCCTCAAAAACCCAAATATACTTTTCAACAGCAGTTGCTAAGTGGGATGCAGATTTCTTTATCAAAGTTGATGATGATGTTCACATAAATCTTGGTTAGCATTCTCACATTCTAGTATAATTGGCTCATCCTTTGAGTGGGGGTGTGTTTTTGTTGGAGATGCCCACTCTGCTTGCATGCCATAACACAATTTATTGAGAAATTGCAGGTATGGTCGGTTCTACCTTGGCCCGACATAGATCAAAACCGCGCGTTTATATTGGTTGCATGAAGTCGGGGCCCGTCCTTGCTCAAAAGTAAGCAATTAAACACTCTATATTCATGAATGTTACATCAAATACTTAACTCCATAAAATCTATGTAGAGGGGTCAAGTACCATGAGCCTGAATACTGGAAATTTGGTGAGGAAGGCAACAAATATTTTAGGCATGCAACTGGGCAAATTTATGCAATCTCCAAAGATTTGGCTACCTACATTTCAGTTAATAGGTAAGTCCTTTTTGACACTGTATTTTTGTTCTCTTAGTATTATTGTAATTTTCTGTTCACTTACAAAAGGAATTGCTTTTCTAGGCCCATACTTCATAGATATGCAAATGAAGATGTTTCTCTGGGTTCATGGTTCATTGGTCTTGATGTGGAACACATTGATGATAGGAGCCTCTGCTGTGGCACTCCACTTGGTACGCAATCACTATTCCCTTTGTTTCCAAAATTGGTTAATTACAAGTCTAGTCTATGAACTTTTAAATTGTTTCTATTAGACCCTTGAATTTTAAAAAGTGTCAAAACAGATTATTAATTTTCAATTATATGTCTAGGGTAAGTGTCAAGCTGTCCTTATACTTTAAAATATTAGATTTTTTTTTTTTTTTTTTTTTTTTTTAAATTCACAGATCTATTACACACAAATTGAAATGCTAAAATCCTATTAGACACAACATTCAATTTTGTGTTAAATTTGCCAACGAATTTTAGAAAATGTCTAATAGATGCAAAAAATATCTAATAGGTCATGGATCTATTAGACACAAAATTGAAAATCCAAAAACCTATTAGATACAAAATTGAAAGTTTAGATATCTATTAAACACTTTAGTTCATTGATTTGTCAGACATAATTTTGAAAGTTCAAGGACTAAACTTGTGCATTAACCTTCAAAATTCCACCTCATCATGTCGAAACATGCTTCACCAGTCAAAAAACCAAATCGTGAGAACAGTGATATGAATTAGAATTAATATCATGTTCCATTTCATCAAAACCGGTCAATACCAAAAGTTCTCTCGAATGGATTCTGCAAAGTTATCAAATGCCCATCATGTTTCTAGATAAAAATGTGTTCTGAACAAAAAGATGAATTCCATGGAATGAATGGAATTTGTTCAAACTGTTGCAGACTGTGAGTGGAAGGCTGAAGCTGGGAATCCTTGTGCTGCATCATTTGATTGGAGTTGCAGTGGCATTTGCAAATCAGTGGAGAGAATGGAGGAGGTTCACCAGAAGTGTGGGGAAGGTGAGGAAGCTATATGGCACACCAGTTTCTAGAAACCCTTTCAATTCCTTTTCTTATTTTTCTTTTTTTCTTTTTGGTCTCTGTATATTTGTAGAATATTTGTTTGTAATTTATCAACAAACACTAAGGCTCACAAACCCCATCTGCCCATTTTTTTGCTTATTCATTATTATTACAAGGCAGAGTGGCTGATGATCATCAATTTAATGGAAAAAAGGAGACTTTTTTTTTTTTCCGTTTTCATTTTTACAGAATGATATCTCCATCAAAGGAGTAGGGTGGATACTGGATGTCACTTGTTTCAGTGTATAAAAAGTTTAGAAGTCGTGGTTTTGGAGATGCCCAAATCCC CTGATACATCTGCTGTTGCTGCGGACTCCGCTTGATCTTGACGGCTACGGGTAGGTGGGGTAGCAGAGACCCGAGTCCAATTTTTTTGAATATACATTCCCTTTTCCCGTGAGCGAGCGATTCAAAGACACTCAAAATTCGCGAAAACCCAACACATTTCACCATTTCGATTTCCCCCAGAAACCCAAGGAAAAATCACTCTCCAATTTCTCCTAATATTGGGCAATCACAATCCGCTTGCTTTTTCAGGACACTGATTTTGTAGATTCTCTCTCTCTCTCTCTCTCTCTCTCTGTTCTTCTCTGATGGCTTCACTTCGCTTCTTCTTTCTGACCCTTTCTTCAAGATAATAGCCTGTAAGCGCTTCCTTGAGCTTAGAAGCTTCTGGGCTCTAATGGGTCTAGGCAGACCTCACAAGGCCTCCAATGGTTTCTCTCCCAGATGGGTTTTTCTATTCTGCATTGCCAGCTTCTTTCTGGGTATTTTCGTTGTCGACAGATTCTGGGCTATTCCTGATCCAGTCAAAACAGATGAGGAGTCATCTTTGGATAAAGTCCAATCAAAAACTTCACAGCCCATTGTTAATTGTGAGAAGAAGGCAATTTCCCTGCAGGCAGACATTCTTTCTCAAGTATCACAGACCCATGATGTCATCATGACATTAGACAAAACAATCTCATCATTGGAGGTACAGCTAGCTGCAGCTAGAGCTTCTAAAGCAGATAATGATGAAGGGTCTCCTATGGTTACAAAGCCCGCGACCCAGACTTTGAAGGAGCGGCCAAAGGTTTTCTTTGTTATGGGAATTATTACAGCCTTCAGCAGCAGAAAGCGAAGAGACTCTATTAGAGAAACATGGATGCCTCAAGGTGAAGATTTAAGGAAGCTGGAGGTGGAGAAGGGAATTATTATACGCTTTGTCATCGGACACAGTGCAACTCCTGGTGGCGTATTGGATCGTGCAGTTGATGCAGAGGATGCACAACACAAAGATTTCCTAAGACTGAACCACATAGAAGGATATCATGAACTGTCCTCAAAAACCCAAATATACTTTTCAACAGCAGTTGCTAAGTGGGATGCAGATTTCTTTATCAAAGTTGATGATGATGTTCACATAAATCTTGGTATGGTCGGTTCTACCTTGGCCCGACATAGATCAAAACCGCGCGTTTATATTGGTTGCATGAAGTCGGGGCCCGTCCTTGCTCAAAAAGGGGTCAAGTACCATGAGCCTGAATACTGGAAATTTGGTGAGGAAGGCAACAAATATTTTAGGCATGCAACTGGGCAAATTTATGCAATCTCCAAAGATTTGGCTACCTACATTTCAGTTAATAGGCCCATACTTCATAGATATGCAAATGAAGATGTTTCTCTGGGTTCATGGTTCATTGGTCTTGATGTGGAACACATTGATGATAGGAGCCTCTGCTGTGGCACTCCACTTGACTGTGAGTGGAAGGCTGAAGCTGGGAATCCTTGTGCTGCATCATTTGATTGGAGTTGCAGTGGCATTTGCAAATCAGTGGAGAGAATGGAGGAGGTTCACCAGAAGTGTGGGGAAGGTGAGGAAGCTATATGGCACACCAGTTTCTAGAAACCCTTTCAATTCCTTTTCTTATTTTTCTTTTTTTCTTTTTGGTCTCTGTATATTTGTAGAATATTTGTTTGTAATTTATCAACAAACACTAAGGCTCACAAACCCCATCTGCCCATTTTTTTGCTTATTCATTATTATTACAAGGCAGAGTGGCTGATGATCATCAATTTAATGGAAAAAAGGAGACTTTTTTTTTTTTCCGTTTTCATTTTTACAGAATGATATCTCCATCAAAGGAGTAGGGTGGATACTGGATGTCACTTGTTTCAGTGTATAAAAAGTTTAGAAGTCGTGGTTTTGGAGATGCCCAAATCCC ATGGGTCTAGGCAGACCTCACAAGGCCTCCAATGGTTTCTCTCCCAGATGGGTTTTTCTATTCTGCATTGCCAGCTTCTTTCTGGGTATTTTCGTTGTCGACAGATTCTGGGCTATTCCTGATCCAGTCAAAACAGATGAGGAGTCATCTTTGGATAAAGTCCAATCAAAAACTTCACAGCCCATTGTTAATTGTGAGAAGAAGGCAATTTCCCTGCAGGCAGACATTCTTTCTCAAGTATCACAGACCCATGATGTCATCATGACATTAGACAAAACAATCTCATCATTGGAGGTACAGCTAGCTGCAGCTAGAGCTTCTAAAGCAGATAATGATGAAGGGTCTCCTATGGTTACAAAGCCCGCGACCCAGACTTTGAAGGAGCGGCCAAAGGTTTTCTTTGTTATGGGAATTATTACAGCCTTCAGCAGCAGAAAGCGAAGAGACTCTATTAGAGAAACATGGATGCCTCAAGGTGAAGATTTAAGGAAGCTGGAGGTGGAGAAGGGAATTATTATACGCTTTGTCATCGGACACAGTGCAACTCCTGGTGGCGTATTGGATCGTGCAGTTGATGCAGAGGATGCACAACACAAAGATTTCCTAAGACTGAACCACATAGAAGGATATCATGAACTGTCCTCAAAAACCCAAATATACTTTTCAACAGCAGTTGCTAAGTGGGATGCAGATTTCTTTATCAAAGTTGATGATGATGTTCACATAAATCTTGGTATGGTCGGTTCTACCTTGGCCCGACATAGATCAAAACCGCGCGTTTATATTGGTTGCATGAAGTCGGGGCCCGTCCTTGCTCAAAAAGGGGTCAAGTACCATGAGCCTGAATACTGGAAATTTGGTGAGGAAGGCAACAAATATTTTAGGCATGCAACTGGGCAAATTTATGCAATCTCCAAAGATTTGGCTACCTACATTTCAGTTAATAGGCCCATACTTCATAGATATGCAAATGAAGATGTTTCTCTGGGTTCATGGTTCATTGGTCTTGATGTGGAACACATTGATGATAGGAGCCTCTGCTGTGGCACTCCACTTGACTGTGAGTGGAAGGCTGAAGCTGGGAATCCTTGTGCTGCATCATTTGATTGGAGTTGCAGTGGCATTTGCAAATCAGTGGAGAGAATGGAGGAGGTTCACCAGAAGTGTGGGGAAGGTGAGGAAGCTATATGGCACACCAGTTTCTAG MGLGRPHKASNGFSPRWVFLFCIASFFLGIFVVDRFWAIPDPVKTDEESSLDKVQSKTSQPIVNCEKKAISLQADILSQVSQTHDVIMTLDKTISSLEVQLAAARASKADNDEGSPMVTKPATQTLKERPKVFFVMGIITAFSSRKRRDSIRETWMPQGEDLRKLEVEKGIIIRFVIGHSATPGGVLDRAVDAEDAQHKDFLRLNHIEGYHELSSKTQIYFSTAVAKWDADFFIKVDDDVHINLGMVGSTLARHRSKPRVYIGCMKSGPVLAQKGVKYHEPEYWKFGEEGNKYFRHATGQIYAISKDLATYISVNRPILHRYANEDVSLGSWFIGLDVEHIDDRSLCCGTPLDCEWKAEAGNPCAASFDWSCSGICKSVERMEEVHQKCGEGEEAIWHTSF Homology
BLAST of MC06g1826 vs. ExPASy Swiss-Prot
Match: Q9MAP8 (Beta-1,6-galactosyltransferase GALT31A OS=Arabidopsis thaliana OX=3702 GN=GALT31A PE=1 SV=1) HSP 1 Score: 632.9 bits (1631), Expect = 2.5e-180 Identity = 303/403 (75.19%), Postives = 351/403 (87.10%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy Swiss-Prot
Match: A8MRC7 (Probable beta-1,3-galactosyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=B3GALT2 PE=2 SV=1) HSP 1 Score: 517.3 bits (1331), Expect = 1.5e-145 Identity = 242/394 (61.42%), Postives = 305/394 (77.41%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy Swiss-Prot
Match: Q9ZV71 (Probable beta-1,3-galactosyltransferase 3 OS=Arabidopsis thaliana OX=3702 GN=B3GALT3 PE=2 SV=1) HSP 1 Score: 512.7 bits (1319), Expect = 3.8e-144 Identity = 242/394 (61.42%), Postives = 301/394 (76.40%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy Swiss-Prot
Match: Q6NQB7 (Beta-1,3-galactosyltransferase 7 OS=Arabidopsis thaliana OX=3702 GN=B3GALT7 PE=2 SV=1) HSP 1 Score: 501.1 bits (1289), Expect = 1.1e-140 Identity = 252/408 (61.76%), Postives = 302/408 (74.02%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy Swiss-Prot
Match: Q9C809 (Probable beta-1,3-galactosyltransferase 8 OS=Arabidopsis thaliana OX=3702 GN=B3GALT8 PE=2 SV=1) HSP 1 Score: 501.1 bits (1289), Expect = 1.1e-140 Identity = 240/398 (60.30%), Postives = 312/398 (78.39%), Query Frame = 0
BLAST of MC06g1826 vs. NCBI nr
Match: XP_022159563.1 (beta-1,6-galactosyltransferase GALT31A [Momordica charantia]) HSP 1 Score: 823 bits (2126), Expect = 3.13e-301 Identity = 399/401 (99.50%), Postives = 400/401 (99.75%), Query Frame = 0
BLAST of MC06g1826 vs. NCBI nr
Match: KAA0042636.1 (beta-1,6-galactosyltransferase GALT31A isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 790 bits (2041), Expect = 2.84e-288 Identity = 378/401 (94.26%), Postives = 392/401 (97.76%), Query Frame = 0
BLAST of MC06g1826 vs. NCBI nr
Match: KAE8647825.1 (hypothetical protein Csa_000667 [Cucumis sativus]) HSP 1 Score: 789 bits (2038), Expect = 8.14e-288 Identity = 376/401 (93.77%), Postives = 392/401 (97.76%), Query Frame = 0
BLAST of MC06g1826 vs. NCBI nr
Match: XP_008437460.1 (PREDICTED: beta-1,6-galactosyltransferase GALT31A isoform X2 [Cucumis melo]) HSP 1 Score: 788 bits (2034), Expect = 3.32e-287 Identity = 377/401 (94.01%), Postives = 391/401 (97.51%), Query Frame = 0
BLAST of MC06g1826 vs. NCBI nr
Match: XP_011654673.1 (beta-1,6-galactosyltransferase GALT31A [Cucumis sativus]) HSP 1 Score: 787 bits (2033), Expect = 4.71e-287 Identity = 375/401 (93.52%), Postives = 391/401 (97.51%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy TrEMBL
Match: A0A6J1DZ55 (Hexosyltransferase OS=Momordica charantia OX=3673 GN=LOC111025945 PE=3 SV=1) HSP 1 Score: 823 bits (2126), Expect = 1.52e-301 Identity = 399/401 (99.50%), Postives = 400/401 (99.75%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy TrEMBL
Match: A0A5A7TKZ7 (Hexosyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold44G001340 PE=3 SV=1) HSP 1 Score: 790 bits (2041), Expect = 1.38e-288 Identity = 378/401 (94.26%), Postives = 392/401 (97.76%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy TrEMBL
Match: A0A1S3ATR0 (Hexosyltransferase OS=Cucumis melo OX=3656 GN=LOC103482875 PE=3 SV=1) HSP 1 Score: 788 bits (2034), Expect = 1.61e-287 Identity = 377/401 (94.01%), Postives = 391/401 (97.51%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy TrEMBL
Match: A0A0A0KNL4 (Hexosyltransferase OS=Cucumis sativus OX=3659 GN=Csa_5G146900 PE=3 SV=1) HSP 1 Score: 787 bits (2033), Expect = 2.28e-287 Identity = 375/401 (93.52%), Postives = 391/401 (97.51%), Query Frame = 0
BLAST of MC06g1826 vs. ExPASy TrEMBL
Match: A0A6J1K6I6 (Hexosyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111491118 PE=3 SV=1) HSP 1 Score: 775 bits (2002), Expect = 1.31e-282 Identity = 372/403 (92.31%), Postives = 391/403 (97.02%), Query Frame = 0
BLAST of MC06g1826 vs. TAIR 10
Match: AT1G32930.1 (Galactosyltransferase family protein ) HSP 1 Score: 632.9 bits (1631), Expect = 1.8e-181 Identity = 303/403 (75.19%), Postives = 351/403 (87.10%), Query Frame = 0
BLAST of MC06g1826 vs. TAIR 10
Match: AT1G05170.1 (Galactosyltransferase family protein ) HSP 1 Score: 519.2 bits (1336), Expect = 2.9e-147 Identity = 241/391 (61.64%), Postives = 303/391 (77.49%), Query Frame = 0
BLAST of MC06g1826 vs. TAIR 10
Match: AT1G05170.2 (Galactosyltransferase family protein ) HSP 1 Score: 517.3 bits (1331), Expect = 1.1e-146 Identity = 242/394 (61.42%), Postives = 305/394 (77.41%), Query Frame = 0
BLAST of MC06g1826 vs. TAIR 10
Match: AT1G77810.2 (Galactosyltransferase family protein ) HSP 1 Score: 514.2 bits (1323), Expect = 9.3e-146 Identity = 253/399 (63.41%), Postives = 302/399 (75.69%), Query Frame = 0
BLAST of MC06g1826 vs. TAIR 10
Match: AT2G32430.1 (Galactosyltransferase family protein ) HSP 1 Score: 512.7 bits (1319), Expect = 2.7e-145 Identity = 242/394 (61.42%), Postives = 301/394 (76.40%), 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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