Lcy02g017060 (gene) Sponge gourd (P93075) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGGGAAAGAAAAAAAAAAAAAAGCTTGGGGTCCATTTCCATGGCGGACGGCGAGGGAAAATCCGCCAACAATGGCGGAAAAGTTCATATTCTGGTAGTATCATATCCAGCTCAAGGCCACATAAATCCCCTTTTACAATTCTCCAAACGCCTCCTTCACAAAGGCGCCGCCGTCACCTTCGTCGTCACCAAATTCCTTTTCGACAACAAGCCCTCCACCGACCACCCTCCGCCGTTCCCCGTCGAGACCATCTCCGACGACCACGACGACGGCGGCTTTCTCTCCGCCGTCTCCGTCTCCGACTACCACGACCGACTCGAGCAAGTCGGGTCGCAGACTCTCCGGGATCTGATCCGGCGGATGAACGCCGCCGGCCGCCGCGTCGACGCCGCCGTGTACGACGGGTTCATGCCGTGGGTTTTGGACGTGGCGAAGGAGTTCCGGGTGAAGACGGCGGTGTATTTTACGCAGTCGTGCGCCGTCGACAACATTTATTACCATGTTCACAGTGGGGAAATTAAGCTGCCGTTGGCGGCAGAGGAGTTTCGGGTGGCCGGACTGCCGGCGCTGACGGCGGCGGACATGCCGTCGTTCTTGCAAGATGTGAAATCTTATCCGGGGTTTTTAGATGTGGTGATTGATCAGTTTCGGAACATTGAGGAAGCTGATTGGGTGCTCTGCAACAGTTTCTCCGAGCTAGAACAACAGGTTTGTGCTCCAAAACTTCAACCTTTTAAGTATTTTCTTAGCAAATGGCAAAATTTAACTTTATTAGGATCTAACTATTTAGATTCGTTCGATAACTATTTGGTTTTTCTTTTGATTAAATTACAAGTTCAGTCTCTAAGGCCACGTTTGATAATCATTTTAGTTTTTGGTTTTTGGTTTTTCTGTTTTTGGTTTTTGGTTTTTGGTTTTCTGTTTTTTAAAAACAAAAACCATATATGTTTGATAACTGTTTTTTGTTTTCTGTTTTTTAAAAACAGAATACCAAACTTGTTTGATAACTGTTTTTGGTTTTCAGTTTTTAAAAAATTAGAGAGATGAAAAGATGTTTTTAGAGAGAGAAAAATGTGTAGAGACATTGAAACAAAAATTTAGAGATACAAATATAATATTTTCGAGAGAAAAGTTAAACATAGAAAAGTTAGAGACGTGAAAAAAAATGTTTAGAGAGAGAATATTAGTTAGACTCCATAAAAGATATTAGTTATAGAAAAAAAGAAAAAAGTTGGGGCAGAAGAGATAAATTTTAGAGAGATAGCAAGGTTAAGAGTAAAAGATATGTTAGAAAAAATAACGATAAATTAGAAAAATAAAGGAAAGGTGTAGCGAGAGAAAATTTTGGGAGATTTTTTTTTCAAAAGAAAATGTAGAATATGTTTATTAAGAATAGAAAAGTTATATATGGATAATTTTTTAGAAATAGATGAGTTATAGCGGAAAAAAAGTTTTGAGAGAAAATAATTTAGAGAGAGAAAAAGAAATTTTGTTGAGAGATAAATGTTTTAGAGAGAGAAAAAATATAAAAAAGAATTTGTCAGAAAGGAATAGGTAAAAGAGGAAAAAATAATAAACATTAGAAGAAAAATGAGTTTTTGAAAAACAGAAATCAGTTTTTAAAAACTACTTTTTTTGGTTTTTGAAATTTACTTATAATTTCAAAAACGTTTTTAAAAAATAGAAAACCAAAAACAGAAATAGTTATCAAACAATCCTGTTTTTAAAAAATGAAAAACAAAAACAGAAAACAGAAAATGAAATGGTTATCAAACGGCCCCTGGGGCCGTTTGATAACCATTTCAGTTTTTGGTTTTTGGTTTTTCTGTTTTTGGTTTTTGGTTTTTGGTTTCCTGTTTTTTAAAAACAAAAACCACATATGTTTGATAACTGTTTTTTGTTTTCTGTTTTTAAAAAACAGAAAACCAACCTTGTTTGATAACTGTTTTTGGTTTTCAGTTTTTTAAAAATTAGAAAGATGAAAAGATATTTTAGAGAGAGAAATATGTGTAAAGACGTTGAAACAAAAATTTAGAAACACAAATATAAATGTTTTCAAGAGATTTTTTTTTTTTTTGAAAAGATGAGAGAAAAGTTAAACATAGAAAATCTAGAGGGATGAAAGAAAATGTTTAGAGAAAGAATATTAGTTAGACTCAAGAAAAGATATTAGTTAGAGAAAAAATAGAAAACAAGTTAGAGTAAAAGCACTAAATTTTATATTAAAAAAATTAAATAAAAAAAGAAAATTTAGAGAGATAGTAAAGTTAAGAGTAAAAGATATGCTAAAGAACTAACGATAAATTAGAAAAATAAAGAAAAGTTGTAGCGATAGAAAATTTTGGTGACTTTTTTTTTTCAAAAGAAAAATTAGAACATGTTTATTGATGAGAGAAAAGGAGGTATTGACAAGTTTAGAGAAAAAAAAAGTTTTGAGAGAGAAAATTTTAGAGAGAGAAAAAAAATAGAGAAAAAATTTGTTGGAGAGAGAGGTAAAAGAGGAGAAAAGTAAGAGCATTACAAGAAAAATGAGTTTTTGAAAAACAGAAATCTGTTTTTAAAAACTACTTTTTTTTGTTTTTGAAATTTACTTATAATTTCAAAAACGTTTTTTAAAAACAGAAAACGGAAAACAGAAATGGTTATCAAACACCCCTGTTTTTTAAAAATGAAAAACAAAAACAGAAAACAGAAAACGAAATGGTTATCAAACGGGCCCTTAGTTTTTTGTTTTTGGTTTTTGAAAATTAAGCTTATACACACCCACCTCTATTTATGAGTTTCTTTATTTTAGTATCAATCTTCTTCCTTGTTTTAAAAAACCAAGTCCAATTTTGAAAACAAATAAAAAAAAGAGTAGTTTTCAAAAACTTGTTTTTTGTTTTTAGAAGTTGGCTAGGAATTCGAATGGATCCTTAACAAAGATGAAAGTCATGATAGAGAATTTAGAAAAAAACAAACATAATTTTCAAAAACCAAATGGTTATCGAAACGGGACCTAAACTTTTAGGGTTGTGTCAATTTGGTCCTCAACTTTAAAATATCAATTTTGTCTAATAAGTAGCATATTTGAGATTTTTAAAAATTATAAAATTGAATTTTATGTTTATTGGGATTTTAAACTTCCAATTTAGTATCTAGTAGGTTTGTGAGGTTTAAAAAATGTAGGTTGAGGACTTAATAGATACAAAATTGAAATTTGAAGACCTATTTGAAAGATTAAGGACTTATTGGATATTTTTTAAATTTTAGAGACGACACAAAATTGGAAGTTTGAAGACATATTTGAAACTTTTTAAAGTTGGACCAAATTGATATAATTTTGAAAGTTTAGGGACTAAAATTGTAATTGAACCTTTTTGTTTTTATCTTTAGAAATTAAGGGTATGTTTGGGTTAACGTGTTTAATTTTGTAAAAAGATCATTTTTGACAAAAATTTTAGTGTTTGACAACCACCGAAAATAACTTATTAGAAAATAAGATTAAGAAATAAATCATTTTGAAAGAAACACTTGAATGTAAATTTTTTAAAAAGAGTTTTTAAGTATATAACAACTTATATTAAAAAACACTTACGAGGAAATGTAACTAAACATACTAGTGTTTAAATTATAAACAATTTTTATACAAAATGTTACAAAAATGCATTTTTGAAAAACATTTCAACTAAAAGGTATTTCAAACGAGCCCTAAACTTATATACAAGTTTATTTGTTTTGTTAATTATTTTTTTCCACTTCAAAAGTTGGCTAAAGGGTGTGTAGAAAATAGAAAGATAGAAAATGATTTTTTTTTCTCTCATCGACATTTTAATGGTGGTGTGGGAAATACTTGACACCAAATATGTAGCTAAGCATTGTCTTTATGAAAATCAAAGTTAAACTTTGAAAACTAAAAAAATAGTCTTAAAACCTATTTTTGTTTGGTTAAATATTAATTTATTCCATGTACTTTGAGTTTTGTTTCATTTTAATTCCTGTACTTTCAATAAAGTTTAAAATTGGTGTAAGTTTAAAGTTAATTTTGATCAAAATTGGTTAAAGAATAATAATAATTTTAATAAAAGAAAAGACACCATGTGAACATATTTCTAAAATTTATAAAAGGGGTGTTAATATATCCTTTTTTAAAAAGAAAAATTAACCATAGAGACGAAAAATTGGACATATGAAAGTACATATATATTAAAATGTCTAAATTATAAAAAATGCCCCTGAACTATGGGGTTTCTTTAAAAAATGTCCCTGAACTTTAAAAAGTTTTAAAAATATCCCTGAACTTTAAATTTTTTTTCAAAAATACCCTTAATCGTTAATTTTTGGATGGAAACCAGTAAAAATTTCACTTTCATTAATACTCCTCAACTTTCAAAAGATTTTAAAAAATAACCTTATTAGAAAATACTTCTTTTTTTTCCTTATCCCACCGTAAATTCTTCTTCCATGAAAATTAATGAAAAGCTTTACCTATTTTTCATGTATTCATACACTAGGAGCTTTTCTTCTCTTTCAACACATCATCCCAAGAGCTTGACTAGATTTTCGACAATGGTTTTTTAAAATATTTTTAACGGTTCCCATCCAAAAATTAACTACAAGGGTATTTTTGAAACGTTTTGTAAAGTTCATGGGTATTTTTGAAACTTTTTAAAGTTCAGAGGCATTTTTGAAACAAACCCTATAGTTCGGTGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAATTTAGCCTATTAAAATGGAACAAGAGACCCAAAGTCTAGGGACGAAAATAGTATTTTAAACCTTTTGTTTTAATTTAGTTGTAAATTCAAATATTTCTTTAAATGAGGTGAAAACATAGTAAAAAAATTATGAAGAAACCAACATAGTTTTTAAACTAGGTAGTTTTTAAACTATGAAACTCATTAACGAATAAGGCTTCAATGGTTTGATTTGATTAGTTTGAAAATCTTTAGATCATATAAAACAAGATTTCATAGTCTTAACAACTTTAATCTAGAAACTAAAAAAAAAAAAAAGAAAAAGAAAAAAAAAATTTAATCTACTTATTATGGGGTAATTCTTTTTTGTTTTTTTTTTCTTTGGAGTTCAACAACATTTGGATGTAAGGGGATTTGAACCTCTTGGTTGAAGTACACATGTCAATTACTATCGAACTATGCTCACTTTAACATATGATATTTTTCTATTTGGTTGATTTGTGTTAGTTGCCAACATTAAGGATTAAGTTAAGTAAAAAAATAGAGAAAAGAACTCATGAGTTTTGGAAGTAAAAAACAATTTATGGGCCATTTTCCTTCCTCCATAGGATCAAATTAAAAATGTTAAAGGGATAATGGAAAAAAAAAATGAACATATTTAAAAGCACATTTAAAAAATGGCAAACCTAAATAAATGGTCAAATCGACTTTATGAATTAATAAATATGAAATACCGTTACAAAAATACTCACTACTAGAAAAATATCTGAATATCTTGAATTACAGTTAAATTAGATATATGGTTTAGAATAAATTTAAATTAGTTTGATTTGTAAATCCCTAAGGAATGATTATCTAACAAAAACTTGAACAAAAAATCTTTCTAACTAAGAAAATCAAAAGCAAATTAAAAATCATCAAAATTAAAAATCAAAAGTAATTGTAGAAGAATTAAAAATCTTCCATCTAGTAAGTTTCAAATATCCCCAGAAGAATTCAACCATGGAAGATTTACCATTACCTAGGAGTACATGGTCTACTTGTTTGGGTTTAATGAACTTTGATACCATATTATATAACATGGGGTTCCATCTCAAAACCAATTGGCAATGATTGGAGTAACCCTTGTAGCTTATTAATTGTGAGGTCTCCCCTAATCTTTTCCATGTGAGATCCTCAACAAAGTAGAATAAAAAACTCAAGGTTCAACAATGGTATTTAGATATTATGTTTGGAGAGAGGATGTCGTTTAGATACAATTTCATTGTAAAAAAATTAAGTATATATATGCAGCTGATTGGTATTTTAATTTTGTCATTTAAAAGAATTTCACAATTTTAAAACACAAGGTCTAAATTGTAATTAAACTCAAATCATAATGATCATATCAGATTGAAAAATTTAAAATCCGACCGACTAAGCTAAAACCAAGCCAAAACTATAATAAGGAACAAAAATATCGTATATATTTCTTTTATCTGCCTTTTAAGATGAATCAAGAGCGCAATTGTCTCTTTCCTTCCTTCCAATTCAATCAGTCTTTTTGACGAGTTTTTAGGTATTGGAGTGGATGGAGAAGAAATGGAGGATGAAGACGATCGGACCAAACATACCGTCGAGGTACACGGACAGGCGAATAGAGGACGATAATGACTATGGATTCAACCTCATCAAACCAAACAGCGACGTTTGCAAAAAATGGCTCGACGATCGTCGCAAAGCGTCGGTGGTTTTCGTGGCGTTTGGGAGCTATGCAGCTTTGAGTGTTGAGCAGATGGAGGAATTGGCTTGGGGTTTGGCACAAACGAACTCCTATTTCTTGTGGGTGGTAAGTATTTTTACACTAACCATATTCAAATTCATTCACAGTCTTATAAAGGAAATAAGTTAAATTACAAGTTTAGTCCTAAATTTTTTAAGTTTATGTTTTATAGGTCCCAAAACTTTAAAATTGTATAGAAAGTTTCAAAATTTTAATTTTGTGTTTAATTTATTTTTTAACTTTGCAATAAGTCCATAAATTTTTAATTAGATATCCAACCCATTTGATATTTTTTGGGTCTGAATTTCGTGTGTAATTCTAAAATCCCACCCCTTATGATTTTATCTAATAAGTTTATGAAATCGAAAGGTATAAGATTCAAAATTCAAGTACCTATTAAATGATTTTAAAGTATAATTACCTATTAGACATAAAAATAAAATTTTAGAGTTCTTTTATACACATTTTAGACACCATTTTAAAAGTTTAGACCATATTGTTTTTGGTTTTTGATTAAGCCTATAAACACTATTTCAGCTATAAGTTTCTTTGTTTTGTTATATCTAAAAAAAGCAGGATCGGTTTAATAACCATTTGGTTTTTTTTTTTTTTTTTAATTTATTTATTTCCTTTTTATGGTTTTCATCTTTGTTAAGAGCCATTGAGTTCTTAGCCAAATTTCCACAAAAAAAAAAAAAGTTTTTGAAAACTATTTTTTTCAAAATTTTACTTGGATTTTGAAAACATGGGAAAGAGGTAGATAACAAATAGATGGGGGAGTGTTTATAAGCTTATTTTTCAAAAATCAAAAACAAAAAATGAAAGTCCCGATAACCATTTGGTTTTTGAAAATTATGTTTGTTTTCTCTCTATTTTCTTATCATGATTTTCATTTTTGTTTAGTAGACACTTGAATTCTTAGCCAAATTCCAAATTTCAAAAACAAGTTTTTGAAAACTATTTTTTTTTTCAAAATTTGACTTGGTTTTTGAAAACATGGAAATGTTGTAGATAACAAAACAAAAAAAGTTGTGGGGGAAATTAGTGTTTATAAGCTTAATTTTCAAAAACCAAAAACCAAATGGTTATCAAACGGGGCTGAAATGGTCAGTTTTCAAAAACTTGTTTTTGTTTTTGAGATTTAACTAAAAATTCAAATGTGTCCTTACGAAAACCATGGTAAGAAAATTGGGAGAAAATAAGTAGAATTTTCAAAAATAAAGAAACAGGCTGTTAATAATTAAACTTTTCATTTGAAAAAAAGAATAATAAATGCTATTTCTTTTTGTTCCTATACTTTATTACTTTCTTTTTACTAACATGTGGGGTGGGGGATTTTAACCTGTGATTTTTTTGTTGAGAGTATAACTTGATGTCAGTTGAATTATGTTGTTGTTGGCTCTTATATTTGTGAAGTTTTGAAGATAGTGGAACAATGACACAAATGACAAAATATAGGACATTATTGTAAATGACTAATTTTAGCCCATATTGGCTTTCGGCTTGCACCCCAGGGATTGAAGTATATATTAAAAAATGTCAAAAAAAAAAAAAAAAAAAGAAGTATATATTAAAAAAACATTTTATATTTTGGAAAAAACTGAACCGACTACACAATAATTTGGTTCTTTTCCCCCAATTTTGACTTTATCCCATTTAGATTCGAAGTATTTTCAATCCACATTCTAAGAATTTATACATTAGAATCAATTTTGTCTCGTATTTGTAATTTAATATATTAGTGATCTTTTAATTGTCTTTTTTTTTTTTTTTCCTTTTTTTGAAAAAGAAAATCTTTAATTTACTGACCAGAGCATAACTCAACCGATATACAACTTGTACCTTCGATCGAGAAGTTAGAAGTTCAAATCCTCCACTCCACATGTTGTCAAAAAAAAAAAAAAAAAAAAAAAAATCTTGAATGTCTCTCCCTATCATTTATGTTTGTAATTTAATATATTAGGCTATGTTTGTCATTTGGTTTTTGGGTTTTAAAAAGTAAGCTTGTTTTCTTCCAATTTCCTTACAATGTTTTTCATCTCAACAATATATTTTTGAATTTCAAGTCAAATTCCAAAAATAAAACACAAGTTTTTGAAAACTACGACCTCATTTGATAACTATTTGGTTTTTGAAAATTATGCTTATTTTCTCTAAATTTCCTTAAAATGGTTTTCATCTTTATCAAGAAAGACATTTGAGTTTTTAGCCAAATTTTAAAAACGAAAACAAAATTTTGAAAACTCTATATATATTTTTTTGTTTTCAAAATTTGACTTGGTTTTTGAAAACATGGGAAAGATCTAGACAACAAAACAAAGAAACTTGTTGGTGAAAGTAGTATTTATAAGTTTAATTTTCAAAAACAAAAAACCAAAAAGGGGATGGTTATCAAACGAGACCTACTTTTTTTAGTTTTCAAAACTTGACTTAGTTTTTGAAAGCATGGAAAAAAGGTAAATAACATATAACAAAGAAACTTATAGATGGAAATAGTGTTTGTAAGTTTAATTTTCAAAAACCAAAAACTAAGGGCCCGTTTGATAACCATTTCGTTTTCTGTTTTCTGTTTTTGTTTTTCATTTTAAAAAAACAGGGGTATTTGATAACCATTTCTGTTTTCTATTTTCTGTTTTTTAAAAAACGTTTTTGAAATTATAAGTAAATTTCAAAAACCAAAAAAAGTAGTTTTTAAAAACAGATTTCTGTTTTTCAAAAACTCATTTTTCTTCTAGTGCTTACTTTTCTCCTCTTTTACCTGTCTTTCCAACAAATTTATTTCTCTATTTTTTTCTCTCTCTAAAATTTTCTCTCTCAAAACTTTTTTTTTCTCTATAACTTGTCTATTTCTAAAAACTTGTCAATACATTTTCTCTCCTCAATAAACATGTTCTAATTTTTCTTTTGAAAAAAAAGTCACCAAAATTTTCTATCACTACAACTTTTCTTTATTTTTCTAATTTATCGTTAGTTCTTTAGCATATCTTTTACTCTTAACTTTACTATCTCTCTAAATTTTATTTTTTATTTAATTTTTTTAATCTAAAATTTATCGCTTTTACTCTAACTTGTTTTCTATTTTTTCTCTAACTAATATCTTTTCTTGAGTCTAACTAATATTCTTTCTCTAAACATTTTCTTTCATCTCTCTAAATTTTCTATGTTTAACTTTTCTCTCGTCTTGTAAAAAAAAAAAAAAAAAAAATCTCTTGAAAACATTTATATTTGTGTCTCTAAATTTTTGTTTCAATGTCTTTACACATTTTTCTCTTTCTAAAATATCTTTTCATCTTTCTAATTTTTAAAAAACTGAAAACCAAAAACAGTTATCAAACAAGGTTGGTTTTCTGTTTTTTAAAAACAGAAAACAAAAATCAGTTATCAAACATATGTGGTTTTTGTTTTTAAAAAACAGGAAACCAAAAACCAAAAACCAAAAACAGAAAAACCAAAAACCAAAAATTGAAATGGTTATCAAACGGACCCTAAATAGATATCAAATGGGATGATCTTAATTTTCTTTTCTTTTTCCTTTTTGGAAAAGAAAATCATGAATGTCTCTATCATTTATGGGTGTCAAGACAAATTATAATTTTGGTTTCATAACTTTATTGAATTTAATAGGTACCTAAACATTAGTACTTCGATTTTGTGCCTAATAAATTCATGATATATTTGAAATTTTCAAAATTTAACAAATCTATTAAATATAAAATTGAATTTCCTATCTACTAAGACCTAAACTTTCAATTTGGTATATAAAAGAGTACAGAATTAAAAATTTAAAAATTTATCTTACACCAAATTCAAAGTTCATGACTTTATTAGACACAAAATTGAAATTTCGATACATAATGGTTTCTTTTTAAAGTTTAGAAACATATTAGAAATAAATTCCAAACTAAACTTATAATTTAAAGAAAAAGTTAATGTGAATAATTAAATATCGAGAAACAAATTCAGGGCTGAAGTATTCTCAAAAAAAAAAAATTCAGGGCTGAAGTTAACGTACCTGATTGAGACAGGTAAGGGCAGCGGAGGCGGCGAAGATTCCGGCGAAATTTGCAGAGGAGACGGCGGAGAAAGGGCTACTGGTCCCATGGTGCCCTCAATTGGAAGTTTTATCGCACGAATCCATCGGTTGCTTTGTGACGCACTGCGGCTGGAACTCGACGCTCGAGGCTCTGACCATCGGCGTTCCGATGGTGGCGATGCCGCAGTGGACGGACCAGACCACCAACGCCAAGTGCGTAATGGACATTTGGAAGACTGGAATTAGGGCTCCGGTCGACGGCGCCGGAATCGTGCGGCGGACGACGGTGGCAGATTGTGTGTTGAAGATCATTGACGGCGATGGAGGAGAGGAGGTTCGGAGAAACGCCGCTAAATGGGGAGTGTTGGCCAAACGGGCGGTGGATCGCGACGGAAGTTCTGATCGGAATGTTGATGAGATTCTTGCCCAATTGAAGTCCGGTTTGAATCTTTAAGAGATAGTGAGGAAAAATTATGAGATTATATTGTTAAATATTTCATGGTTTTAACCTTTTAAGGAAAACATTCAATTTTTATTTTGAAGGAACTCTTGATTTCATTAAGTATGTGTGGGTCGGCCAAGTGGATCTTTGGACTATCCCGGAAGGAGTCGTAGAATTTTTAGGTGTTTCTGGTGTAATGAGGTCAGTAGTTTTGCACCATGGGATGTAAGAGAAATGACAAAAGTACTTCGATTTTGTATCCAACGGTTATCAAGGGACAAAT AGGGAAAGAAAAAAAAAAAAAAGCTTGGGGTCCATTTCCATGGCGGACGGCGAGGGAAAATCCGCCAACAATGGCGGAAAAGTTCATATTCTGGTAGTATCATATCCAGCTCAAGGCCACATAAATCCCCTTTTACAATTCTCCAAACGCCTCCTTCACAAAGGCGCCGCCGTCACCTTCGTCGTCACCAAATTCCTTTTCGACAACAAGCCCTCCACCGACCACCCTCCGCCGTTCCCCGTCGAGACCATCTCCGACGACCACGACGACGGCGGCTTTCTCTCCGCCGTCTCCGTCTCCGACTACCACGACCGACTCGAGCAAGTCGGGTCGCAGACTCTCCGGGATCTGATCCGGCGGATGAACGCCGCCGGCCGCCGCGTCGACGCCGCCGTGTACGACGGGTTCATGCCGTGGGTTTTGGACGTGGCGAAGGAGTTCCGGGTGAAGACGGCGGTGTATTTTACGCAGTCGTGCGCCGTCGACAACATTTATTACCATGTTCACAGTGGGGAAATTAAGCTGCCGTTGGCGGCAGAGGAGTTTCGGGTGGCCGGACTGCCGGCGCTGACGGCGGCGGACATGCCGTCGTTCTTGCAAGATGTGAAATCTTATCCGGGGTTTTTAGATGTGGTGATTGATCAGTTTCGGAACATTGAGGAAGCTGATTGGGTGCTCTGCAACAGTTTCTCCGAGCTAGAACAACAGGTATTGGAGTGGATGGAGAAGAAATGGAGGATGAAGACGATCGGACCAAACATACCGTCGAGGTACACGGACAGGCGAATAGAGGACGATAATGACTATGGATTCAACCTCATCAAACCAAACAGCGACGTTTGCAAAAAATGGCTCGACGATCGTCGCAAAGCGTCGGTGGTTTTCGTGGCGTTTGGGAGCTATGCAGCTTTGAGTGTTGAGCAGATGGAGGAATTGGCTTGGGGTTTGGCACAAACGAACTCCTATTTCTTGTGGGTGGTAAGGGCAGCGGAGGCGGCGAAGATTCCGGCGAAATTTGCAGAGGAGACGGCGGAGAAAGGGCTACTGGTCCCATGGTGCCCTCAATTGGAAGTTTTATCGCACGAATCCATCGGTTGCTTTGTGACGCACTGCGGCTGGAACTCGACGCTCGAGGCTCTGACCATCGGCGTTCCGATGGTGGCGATGCCGCAGTGGACGGACCAGACCACCAACGCCAAGTGCGTAATGGACATTTGGAAGACTGGAATTAGGGCTCCGGTCGACGGCGCCGGAATCGTGCGGCGGACGACGGTGGCAGATTGTGTGTTGAAGATCATTGACGGCGATGGAGGAGAGGAGGTTCGGAGAAACGCCGCTAAATGGGGAGTGTTGGCCAAACGGGCGGTGGATCGCGACGGAAGTTCTGATCGGAATGTTGATGAGATTCTTGCCCAATTGAAGTCCGGTTTGAATCTTTAAGAGATAGTGAGGAAAAATTATGAGATTATATTGTTAAATATTTCATGGTTTTAACCTTTTAAGGAAAACATTCAATTTTTATTTTGAAGGAACTCTTGATTTCATTAAGTATGTGTGGGTCGGCCAAGTGGATCTTTGGACTATCCCGGAAGGAGTCGTAGAATTTTTAGGTGTTTCTGGTGTAATGAGGTCAGTAGTTTTGCACCATGGGATGTAAGAGAAATGACAAAAGTACTTCGATTTTGTATCCAACGGTTATCAAGGGACAAAT ATGGCGGACGGCGAGGGAAAATCCGCCAACAATGGCGGAAAAGTTCATATTCTGGTAGTATCATATCCAGCTCAAGGCCACATAAATCCCCTTTTACAATTCTCCAAACGCCTCCTTCACAAAGGCGCCGCCGTCACCTTCGTCGTCACCAAATTCCTTTTCGACAACAAGCCCTCCACCGACCACCCTCCGCCGTTCCCCGTCGAGACCATCTCCGACGACCACGACGACGGCGGCTTTCTCTCCGCCGTCTCCGTCTCCGACTACCACGACCGACTCGAGCAAGTCGGGTCGCAGACTCTCCGGGATCTGATCCGGCGGATGAACGCCGCCGGCCGCCGCGTCGACGCCGCCGTGTACGACGGGTTCATGCCGTGGGTTTTGGACGTGGCGAAGGAGTTCCGGGTGAAGACGGCGGTGTATTTTACGCAGTCGTGCGCCGTCGACAACATTTATTACCATGTTCACAGTGGGGAAATTAAGCTGCCGTTGGCGGCAGAGGAGTTTCGGGTGGCCGGACTGCCGGCGCTGACGGCGGCGGACATGCCGTCGTTCTTGCAAGATGTGAAATCTTATCCGGGGTTTTTAGATGTGGTGATTGATCAGTTTCGGAACATTGAGGAAGCTGATTGGGTGCTCTGCAACAGTTTCTCCGAGCTAGAACAACAGGTATTGGAGTGGATGGAGAAGAAATGGAGGATGAAGACGATCGGACCAAACATACCGTCGAGGTACACGGACAGGCGAATAGAGGACGATAATGACTATGGATTCAACCTCATCAAACCAAACAGCGACGTTTGCAAAAAATGGCTCGACGATCGTCGCAAAGCGTCGGTGGTTTTCGTGGCGTTTGGGAGCTATGCAGCTTTGAGTGTTGAGCAGATGGAGGAATTGGCTTGGGGTTTGGCACAAACGAACTCCTATTTCTTGTGGGTGGTAAGGGCAGCGGAGGCGGCGAAGATTCCGGCGAAATTTGCAGAGGAGACGGCGGAGAAAGGGCTACTGGTCCCATGGTGCCCTCAATTGGAAGTTTTATCGCACGAATCCATCGGTTGCTTTGTGACGCACTGCGGCTGGAACTCGACGCTCGAGGCTCTGACCATCGGCGTTCCGATGGTGGCGATGCCGCAGTGGACGGACCAGACCACCAACGCCAAGTGCGTAATGGACATTTGGAAGACTGGAATTAGGGCTCCGGTCGACGGCGCCGGAATCGTGCGGCGGACGACGGTGGCAGATTGTGTGTTGAAGATCATTGACGGCGATGGAGGAGAGGAGGTTCGGAGAAACGCCGCTAAATGGGGAGTGTTGGCCAAACGGGCGGTGGATCGCGACGGAAGTTCTGATCGGAATGTTGATGAGATTCTTGCCCAATTGAAGTCCGGTTTGAATCTTTAA MADGEGKSANNGGKVHILVVSYPAQGHINPLLQFSKRLLHKGAAVTFVVTKFLFDNKPSTDHPPPFPVETISDDHDDGGFLSAVSVSDYHDRLEQVGSQTLRDLIRRMNAAGRRVDAAVYDGFMPWVLDVAKEFRVKTAVYFTQSCAVDNIYYHVHSGEIKLPLAAEEFRVAGLPALTAADMPSFLQDVKSYPGFLDVVIDQFRNIEEADWVLCNSFSELEQQVLEWMEKKWRMKTIGPNIPSRYTDRRIEDDNDYGFNLIKPNSDVCKKWLDDRRKASVVFVAFGSYAALSVEQMEELAWGLAQTNSYFLWVVRAAEAAKIPAKFAEETAEKGLLVPWCPQLEVLSHESIGCFVTHCGWNSTLEALTIGVPMVAMPQWTDQTTNAKCVMDIWKTGIRAPVDGAGIVRRTTVADCVLKIIDGDGGEEVRRNAAKWGVLAKRAVDRDGSSDRNVDEILAQLKSGLNL Homology
BLAST of Lcy02g017060 vs. ExPASy Swiss-Prot
Match: Q6VAA6 (UDP-glycosyltransferase 74G1 OS=Stevia rebaudiana OX=55670 GN=UGT74G1 PE=1 SV=1) HSP 1 Score: 417.5 bits (1072), Expect = 1.9e-115 Identity = 207/449 (46.10%), Postives = 288/449 (64.14%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy Swiss-Prot
Match: K7NBW3 (Mogroside IE synthase OS=Siraitia grosvenorii OX=190515 GN=UGT74AC1 PE=1 SV=1) HSP 1 Score: 417.2 bits (1071), Expect = 2.5e-115 Identity = 198/451 (43.90%), Postives = 289/451 (64.08%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy Swiss-Prot
Match: Q9SYK9 (UDP-glycosyltransferase 74E2 OS=Arabidopsis thaliana OX=3702 GN=UGT74E2 PE=1 SV=1) HSP 1 Score: 412.1 bits (1058), Expect = 8.1e-114 Identity = 202/454 (44.49%), Postives = 282/454 (62.11%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy Swiss-Prot
Match: P0C7P7 (UDP-glycosyltransferase 74E1 OS=Arabidopsis thaliana OX=3702 GN=UGT74E1 PE=3 SV=1) HSP 1 Score: 405.2 bits (1040), Expect = 9.9e-112 Identity = 204/453 (45.03%), Postives = 278/453 (61.37%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy Swiss-Prot
Match: O22822 (UDP-glycosyltransferase 74F2 OS=Arabidopsis thaliana OX=3702 GN=UGT74F2 PE=1 SV=1) HSP 1 Score: 401.7 bits (1031), Expect = 1.1e-110 Identity = 206/452 (45.58%), Postives = 290/452 (64.16%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy TrEMBL
Match: A0A6J1HKE5 (Glycosyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111463825 PE=3 SV=1) HSP 1 Score: 756.9 bits (1953), Expect = 4.9e-215 Identity = 365/465 (78.49%), Postives = 406/465 (87.31%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy TrEMBL
Match: A0A6J1HQB3 (Glycosyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111466835 PE=3 SV=1) HSP 1 Score: 749.6 bits (1934), Expect = 7.9e-213 Identity = 361/464 (77.80%), Postives = 402/464 (86.64%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy TrEMBL
Match: A0A6J1DX00 (Glycosyltransferase OS=Momordica charantia OX=3673 GN=LOC111024275 PE=3 SV=1) HSP 1 Score: 738.8 bits (1906), Expect = 1.4e-209 Identity = 354/467 (75.80%), Postives = 399/467 (85.44%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy TrEMBL
Match: A0A0A0LCG4 (Glycosyltransferase OS=Cucumis sativus OX=3659 GN=Csa_3G635870 PE=3 SV=1) HSP 1 Score: 738.0 bits (1904), Expect = 2.4e-209 Identity = 344/468 (73.50%), Postives = 404/468 (86.32%), Query Frame = 0
BLAST of Lcy02g017060 vs. ExPASy TrEMBL
Match: A0A5D3DQW9 (Glycosyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1185G00360 PE=3 SV=1) HSP 1 Score: 731.5 bits (1887), Expect = 2.2e-207 Identity = 340/468 (72.65%), Postives = 402/468 (85.90%), Query Frame = 0
BLAST of Lcy02g017060 vs. NCBI nr
Match: XP_038887939.1 (UDP-glycosyltransferase 74G1-like [Benincasa hispida]) HSP 1 Score: 761.5 bits (1965), Expect = 4.1e-216 Identity = 359/467 (76.87%), Postives = 413/467 (88.44%), Query Frame = 0
BLAST of Lcy02g017060 vs. NCBI nr
Match: KAG6571602.1 (UDP-glycosyltransferase 74F2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 760.0 bits (1961), Expect = 1.2e-215 Identity = 365/465 (78.49%), Postives = 407/465 (87.53%), Query Frame = 0
BLAST of Lcy02g017060 vs. NCBI nr
Match: XP_023554034.1 (UDP-glycosyltransferase 74G1-like isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 758.1 bits (1956), Expect = 4.6e-215 Identity = 362/463 (78.19%), Postives = 406/463 (87.69%), Query Frame = 0
BLAST of Lcy02g017060 vs. NCBI nr
Match: XP_022963519.1 (UDP-glycosyltransferase 74G1-like [Cucurbita moschata]) HSP 1 Score: 756.9 bits (1953), Expect = 1.0e-214 Identity = 365/465 (78.49%), Postives = 406/465 (87.31%), Query Frame = 0
BLAST of Lcy02g017060 vs. NCBI nr
Match: XP_022967252.1 (UDP-glycosyltransferase 74G1-like [Cucurbita maxima]) HSP 1 Score: 749.6 bits (1934), Expect = 1.6e-212 Identity = 361/464 (77.80%), Postives = 402/464 (86.64%), Query Frame = 0
BLAST of Lcy02g017060 vs. TAIR 10
Match: AT1G05680.1 (Uridine diphosphate glycosyltransferase 74E2 ) HSP 1 Score: 412.1 bits (1058), Expect = 5.8e-115 Identity = 202/454 (44.49%), Postives = 282/454 (62.11%), Query Frame = 0
BLAST of Lcy02g017060 vs. TAIR 10
Match: AT1G05675.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 405.2 bits (1040), Expect = 7.0e-113 Identity = 204/453 (45.03%), Postives = 278/453 (61.37%), Query Frame = 0
BLAST of Lcy02g017060 vs. TAIR 10
Match: AT2G43820.1 (UDP-glucosyltransferase 74F2 ) HSP 1 Score: 401.7 bits (1031), Expect = 7.8e-112 Identity = 206/452 (45.58%), Postives = 290/452 (64.16%), Query Frame = 0
BLAST of Lcy02g017060 vs. TAIR 10
Match: AT2G43840.2 (UDP-glycosyltransferase 74 F1 ) HSP 1 Score: 396.0 bits (1016), Expect = 4.3e-110 Identity = 197/451 (43.68%), Postives = 292/451 (64.75%), Query Frame = 0
BLAST of Lcy02g017060 vs. TAIR 10
Match: AT2G43840.1 (UDP-glycosyltransferase 74 F1 ) HSP 1 Score: 393.3 bits (1009), Expect = 2.8e-109 Identity = 196/451 (43.46%), Postives = 291/451 (64.52%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (P93075) v1
Date Performed: 2021-12-06
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.
|