Lsi01G018170.1 (mRNA) Bottle gourd (USVL1VR-Ls)
The following sequences are available for this feature:
Legend: five_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TGAGAAATGAGAAAGCCCAGGAGCAAGAGAACTTAGATTAGCATTTTACAGCGATTAGGGAAGGGCGCAGGGACTCATTGCCGTCCGCCATGGCTGCTCGCAAGAGAGCTTCTGCAAACCCATCAGTCAAAGAACCTTCTCCCAAAGAAATTGACAAAACCCACCAAAGCAAATCCCCAATAACGGATGATCCGCCCATTGCGCCACCGAAATCAGGTTTTATCTTCAAGCTCATTCTCTTTTTCTCTGTCCCATACCTTTACCTCATCTTCTACCACTACAAGATCGACTTAGAGCTCAGAAGATCAATCATTATCAATGCCGGACTCAGTCTCGCTGGGTTCTTTGTGACTCTGCGGATGATACCTGTTGCCTCCAGATACGTTATTAGACGTAATTTATTTGGCTATGATATCAACAAGCGGGGTACCCCTCAAGGCGCTGTCAAAGTGTAGGTGATTTCAATTGGAAACGATAACTCTGATTAGATTTAGTCATTTTGTGAACATGATTTCGTTTTCGCTTACCAGAAATTTTCTTTAGTTTGATTTAACTTTCTGGGTGACTTCGCGTTTTGAATCTTAATCAATTCTGTGAATCCGGCGTAAACTTTTAGTTTAAATTAGGTTTCGGTATTGTATATGTAGTTTTATTTGGTCTAACCATGGATTTTTGGTGGTGCGTTTTGGATTAGATAGGTTTTCATTGTCTATAGGGTGGATGGACCTTTTTAAGTTCTTTGTGAGGAAGATAGTTAAAGGCTATATTGTAAAAGAATACCTTGAAGCTTGAATTTCGCCTTTTGTTTCAAAGTTACCCCTATTTTTTTTAAAGTTGCAACATTACCCTTGACCTTTCATAAATGTTTCAAAACTACATTACCCTTGACCTTTCATAAATGTTTCAAAACTACATTACCCTTGAGCTTTCATAAATGTTTCAAAACTACAATATCCTTGACCTTTCATAAATGTTTCAAAATTATATTTGGAGTCTAAATTCTTTAGAATGTTGGACAAGAAATTGATGCCGTGACTAAGACGCTTGCCTAGATTACGTCTTAAAAGAGCGACATTAAACATGTGACTTTTCATCAAACAAGTTTCGAAGTGCTTACGATAAGTCAATGGTAATATTGTAACTTTTGGAAAACTAGGGATAATTTTTAAACAAAGGGCAAAGTTCAGTTTTTTTGTTTTTTTTATAAAAATTAGCCTTAAGGAAAACAATAGTGAAATGGTTTAAAAGAAGAAAGATTATAATGCTTCCTCTTTTGATGTGGAACAGCTAGATTAAGTAGAGGTGAAAGTTTTAGTTATTCCCTTGTTACTGAGAACAAGGAGTTTTTATGAGTGAGTGGAGTGTTGAGAGAAGTTGTGCCCCCTTATGACTTGTATGCCTCTTTCTAGTTATTAAACCCTTCATTGATGCCTTGGATTTGCATATAATAGGACAGCTTTTAAACCCCCATGTAAGGGGTAAGGTGTCTGGCCTTGATGATCTTACATTGGCTATCTTTTAGTAGTCTTAAGATCTCATCGAGGGGGATTTTTCAAGGTTCTTGATGAATTTCATGTGAGGGCTTTAACTGATACAGCCATGAATAAGATCTACATTTAGAGTCTCAGACCATTTTTAGGAATCATCGAAGCCGGCAGGGAGATAAATTCTTTTGGAGGTTCTTTTGGCTAACATACTATCAAAAAACTACAAGGATCATAAGATAGTAGGTGTTTTCTTTATGATTGATTTTTAGAAGGCTTCCTGCTCCCATTCACAAATATAACTATAAGGATTTGTATGGTAAAGCCTTGTTGAAGAATGGCTTTGATTTTAAATGGAGAATTTGTGTTTAAGATAATAATCCCTTGCCTTTGTTCCTTCTTCTAGGGTTGGTGGTCATTCATAGTAGAGATGGATCGAGGCCTAGTTAAGGCTTGTGTAGGGGAAGACATACGACTTGTCTTACTGGCATTTTATTGATGATACCATGTTTTCGCTCTGCCCTGTCCCCTGTATGTGTTGGAAGGAAAGATTCTTTTTTTTAACGAAATAAAAATTTTCAGGTTTTTTGAGTTCATTTTTTCTCTAGAAAAAGCAAAAGCAGTAGTGTTCTGTCGTTGCTGTTAATTGCTTGCTACTATGCCAAGCTTGATATGTTGGCTTATTTAGTGATGTGTGGGGTTTCTTCATTGCCTCTTACCTACTTAGGTCTCTTATGGACATGATTCCAGATTTACAACTTTTTGGAATTCATCTAGATGTGGAATTTTAGCTTGAGAAGAAATCTCATAATTGACAAAATAGAGGAGTAGATGTTCTTGATGACTAAACTGAACCTTTATTATCCTTGTTTGGAAGATAGAGTCGAGAGAGGTTAGAAGTTCAAGGTTCAAAGCTTGAAAGGTTTGACGTCTTTAAATAATTGTAAACTAAGGTCAAAGAATTGAGAGTTTCCAGAAAAGCAAGGATGGTGGTTAATCATTCTCATTTGATGTTATAATTGTAATTGGGGATTTTTTTTTTTTTTTGTTAGGGCCCATCTCTTTTCCAGTTTGTGGATGCCAGGTACAAGAGTTGGATCTTTTGTTTCTTTCTTGATATCCAGTGTATCAGGGGCCACAAGAGTTGGATCTTTTGAAAACATTGAAGAATGTATGGCGAGCTTGCATCGTAGTAGCTAGCTAAAATCTAAATACAAACTTATGGAAAAATTGAAGAATTAAAGAAAAAACTTGAAATAATGGAGTAGAATTTAGAAACAAGGAAATTTTATGTGGCAAGCTTGCTTCTTTATTGTTGTTTGGAGGATTTGGCTTGAGAGAAATAATAGAGTTTTTAAAGATGAGCATTTTGTGTAGGAGTTGTAGAGAGTCATTGGGTTTAATACCTCGGTTTTGGTCTTGGTGGTTAAACAAGAAGGAAAGTTTATATGGCAAGCTTGCTTCTTTGTTGTTGTTCGGAGGATTTGGCTTGAGAGAAATAATAGAGTTTTTAAAGGAATGAGCATTTTGTGTAGGAGTTGTAGAGAATCATTGGGTTTAATACCTCGGTTTGGGTCTTGGTGGTTAAGGTATATTGTAATTATCAATTAGGTCTTGTTATTTTGGATTGAAGTCCTTTTTTGTAGTTCTTTGAGTTCCATTTGTTGGGCTGTTTTTTTGTGTGTCCTGGTATATTAAAGTGTAGTTTCTTATAAAAAGAAAAGAAAGAAAAAAAGAAGGAATGTTTGATATAAGGAAGTTAGATTTTAGAAAGTAGAATTTCTTGATCGGGTGGAGGAAGGGAGATCCTTACCAAAGTATTATTGAAGCAGAAACTTTTAGCATTATGGTGACGTGAAGGAAGAATTACTTGCAAATGGGTGAGTTATCTTGTCTTAAGGGATGGCAATGCAGGGTTTTTGTCCCCATTAATTATTTGACATTGAGAAGGAAAAAGAAAGATCTCATTTTGGTATTATTATTGGATGGTGGGGAAAGTATAGTGAAAGATGAAGAGTTGGAAGAGGAAATAGTTGGCTTCTTGAGGAGGTTGTATTCTAAAGTTGAGGGGTAAGGTCAATTCTTGATGGGAAAAATTGGCCACCGATTTCTGGAGAGGACAGATCTGTACTGAAAACACCAGTCATATTTGATCTCGAGTATATTGTAATTTTCTCTTGTATGACATTCTGATCTCAATTGCTTGTTTTTTCCTCTCCCTAATCTCACCTTTTCCACCCCAAATTTTAGGAGGTTAACATCTGTGAGGTTCATTTTTTTTATTGGTTGGTTGCACATGAGGAACTAACACCATGAATATTTTCTGGAGGTTTTGGTCTATGGTCTTGGGCATAAAATAGTTTATTCTTCATAAATAAGTATCTGGGCTGGGATATGGATCACATATTTTTCCAAGAAGATTTAAGACGAAATTTGGATATTTTTGCACTTAGCTTGGTTTTGAACAGGTATCGTGATGGAGAATAAGTTCTTAGGCAATCCTAAGGGAACAGGGGTCAGGAGGGTTTTAAAGGGATAGGATAGAAGGGTGTTGCAAGGAGGTTTGGCGCACTAAAGTACCAGACCACATTCTTTTGTAACTATCCTTTGTCTTTTATTTTAAATTCTTGTAGGGATCTTCTGTTTTGGGTTTGCAGACAATATTTTTGTAATTCTCAAAATTCGTTATTCATTAAAAGGAATATTATGAATAATATTTGAGGAATATATACACAGGCAATTATTGAATTCATGTGATCAATAATAACATTAGATAGTTTATAGTTGAATTGTGGTGGCATATATAAATGAGGTGGCAGATAAAAAAGCCGACTTTCTTTTTTTGTTTTTGGATGTTTACTTCTGTGAAGAATTTGTTTTTAACTCATGATGTGTTCTTAACCTTTTGTTGTCATATATCTATATTTGCTAGTTTTCAACCACATATACCTTTTGATGCACTTTCTGATAATTCGACGTGTTTTGCAGGCCTGAGTCGTTGGGAATTGTTGTGGGAATTTCCTTCTTGGTCTTGGCAATTGTGTTTCAGTATTTTAACTTCACATCAGACTCAAATGTGAGCACCAAGCTTATAAAGAATTTTGCCATTTGAATTTGGATTAGCAGATTAAAAAATGATTATACCATGTCATTGGTGCTGGGCAGTTCACTTCTTTTGTTACACGGCAGTGGATTTACTCCTTCCTATTGAGTAGATTGCAGTTATTCTTTATATTTTTTATTTTCTATTTTATTGATTTATTTGCTCTAATGATTCTTTAATTATTCTTTGTATTTTGGTGGGAATGGGGAGATGTTAATCATAGAAGCCTAAGTTAATCTTATGCTCAACTTTATCAGACAAGCCTTTGCTTAAGTTTTGTCAAGCTTTATCTGTAACTTTTTCAAAAATTTAATTGTTAAAAAATATGCAGTGGCTTGTTGAGTACAATGCGGCCTTGGCATCTATTTGCTTCATGACATTGCTTGGATTCGTAGATGATGTTCTCGATGTCCCCTGGAGAGTGTGAGTATTTTCTACTCAGTTTACACACTCAATTGTTTGTTCCATTTCTAAGAATGATCCTCTAGCATGGTGCTTTAGTAATGTAAGACTTTAGCTTATTCTGACACGCTGTCTCTTATTTGTTGTAAAGATCAGGAAACTGCTACTGCCATCGTTTGCTGCTCTTCCTTTGTTGATGGCTTATGCTGGACATACTACTATTATAATCCCGAAGCCTTTGATTCCATACCTTGGAATGGATGTTTTAGATCTTGGTAAAATTTCCGACAATATTTTTATGTTGGAGACGGAATGCATGAGCACATGAGTATGCGCATGTGCCTTGTAGTGATTGTCACATGAAAACTCCAGATATGCCCCTTAAGGGGTATTGTTCAATGTTGAACCAATGTCACAAGTCTTGGAGTATCCTAAAATTCAGTTATGCTTGTTTGATTCTCTTGTGCTCTTTAGTCTTTCCCTTGAGTTTTGCCCATTTCTCCCATGGGTCAAATATAAATAGGATGTCTTTCATCCCTGAGCAATGAAGCCTTTCAAGATAAAGAGGAGGTTTCTAATTGAGATTTGGTTAACCTTGGAGTCTTGGACAAAGAGAGTGCTACTGATAAAGTATTGATATAATTAAATTTACCGTAGGCAATTAGTTTAAGCTTTTGGGATTAGTAGTTATTGGGATTAGTAGTTATTTAAATTGGTACCGGAGCAGGAGTTTGTGTTCGAACTCTTGTAATATTTTTTCCTCTCATTAATATTTATTTCTATTTGTTGGAGTTTCTACAAATTTTCAATCCAGAAGCGAGAGAGTATTAAAGTTTGGATATAATTAAATTTACTGAGTTTAAGCTCTTGGGTTTAGTGATGATTCAACAATTTCTTATGTGATTGGTGGGTGGTGGGATTGCCTTGAACTTGGCTTCTTAAACCTTCCTTAGCTCAAACCGTTTTCACCAGGATAAGACTATTAAAAGTGTTTGATGCTCAAGATGTTTGTTTCCCTTGTTTTAGGTATGATTTGGCCATGTGAAGGATGTCTATCTCAATCTAGAGATTGGAATGAGAACAACCCAGCCTTTTTGTATTTTTTCACCATTCTCAATTCTCATAGACCCACTATAGATGTAAACTACCAAGAGAAAAAGTATAATTGTCATATTTGGTTTGTATGTTGATGTGAATGTCCTAGATACACGTGTCATAAGTTTTGTCCTTTATTTTAATTTTACACTATTGTTATAGGGTTCTCATGTGTATACCTGAAATATATATGGCTCTAGAGAATGAAATAAAATTCTGCATTTTCTCTCAATAGTCTGATAGTTTACAAGGATGTGTTTGTTTGAGAACAACTGCTTATAGCATTGCCGGAGCTGAGCCATTTCCCCAAACTATTGTGGTACATTTCTGGAAACAGTCCTCTAAAAGTGTTGTACTCTACGTGGTGCCAGGAACTTTATTAAGGATGAGAACCAGTGCTTGATTGCATGTAGCTTGGCCCTTTTAAACCAATATGTAGCATGAAGCTTGGTGTAGTAAAAAAGTAACTATTAAATAAAGCGTCAGTTTTAAGCTTGGTGACCACATAAGTTTCTGCTTCCTAGGCAGTCAGTTAACTCATTGGTAACTTTAGTTATTATTTCTTTTGGTGTAAAGCTGCCAATGGTGATGTACATGGTTTGCATTTTGAATCAGTTATTGTTATAGTCCTAACTTGGATATCTCTCCAACAAGTTTGTGATGGACATACTAATTTCTACTAATCTATAATACACAGGATGGATATATAAGCTTTATATGGGACTATTGGCAGTGTTCTGTACAAACTCCATTAACATCCATGCTGGTTTAAACGGTTTAGAAGTTGGGCAAACAGTTGTCATTGCATTTGCGGTAAGTACTGAACCTGCTGTAGTAAAGGGGTCAGTTTTTTTTTCTTGAGCATGACACGTCTTAGTAATTTGCAGATCTTGGTTCACAACGTCATGCAAATTGGGGCATCGACGGATCCCGAGTACAAGCAGGCCCATGCATTTTCTATTTATCTTGTTCAACCCCTATTAGCCACATCCTTAGGCTTGCTCGCTTACAATTGGTAATTTATCATGTTTTACAATAATTCATGGTTTTTACCTGTTTTTTCCTTGATGTTAAGGCAACTCTTCTCAACATTTTCTGCTGGCTTGCTTGATTTAGGTACCCTTCATCGGTCTTTGTTGGAGATACCTATACGTACTTTGCTGGGATGACTATGGCTGTGGTTGGAATTTTAGGTCATTTTAGGTGTGTACTTCGTTCTAAGTATCATTTTATGAGTTAAGGCCCAAATTTATGAAATTACTTGGAATATTTTACTCCATTTTCTTCGAGTATCCAGTACAATTTATATCTCAATTCTCTGGCTTCAATCATATCCACGTGGATTAAAGTCTCCTGAACAGAACCCAAAAATGATTCACAATCAAATGACATTTGTTTGAAGATATTGTTTCAAGACTTGTCAACTATGGAAAGACATCTGCTAGTTCTTTGCCATGTCATGTTATATGTTATGATTTTTGTTCCTTTTTTTCTCCCATTGATTGATTGAGGAATTTCTTTTTACTCTATTTCCTGCTGCAGTGAAACTCTTCTGATCTTCTTTTTCCCTCAAGTTCTGAACTTCCTTCTGTCACTCCCCCAGGTTTGATCCTCTAATCTCTGTGTGCGAGACTTATCTGTACGTGTTCATTGTTTAACCTGTTGATATGTGTTTGCAGTTATTTGGATTTGTTGCATGTCCACGTCATCGGCTGCCTAGGTATCATTATCCTTCTTTTATTTGGAAAAATAAAAATGAAGAGAAAAAAATCTTGCGGCATAGTGTAGTCTTCTTATATCTTCTTGTCCTCAGATTTGATCCTCAGACTGGACTACTGACTGGAACAAACGATGGAACACTTGTGAACTTTTTCTTACGAATATTTGGTAGAAAAACAGAGAAATCACTTTGCACCTACCTTCTTGTTTTCCAGGTGATTTTCTCGCTTCTTCTGTTTTTCTTCTATAAACAAGGGTAGAGCGAATAAGAAAAGAAGGAACAATTGCTCCCCCTTAGTTCATCTTATATTGAAAAAGCATATAAAAGATGTTCAACACTTCCCTGTTTGGTAACCATTTGGTATTTGATTTTTGGTTTTTAAAAATTAAGCTTATTTCCTCTCCATTCTTATAATGTTTTTCATCTTTCTTAAGTAAAAGAGTTGAATTTTTAGCTAGATTCTTAAAACAAAAACAAGTTTTTAAAAACCACTTTTTTAGTTTACAAAATTTGGCTTAATTTTTTAAAACATTGATAAAAAGTAGTAACAAAGCAAGGAATTTAGAGGTAAAATGGGTGTTTGTAGGCTTAGTTTTCAAAATCTAAAAATAAAAAACCAAATGATTATCACTTAATTTTTTTGAATCAAAATAATATAGAGAAAGTTCAAGTTAGAATATAAAAGTTTGTCCTATTCACTGCTTTTACTTGCATTGGTTTTTTTTTCTTTATTCAAATCATATAAACCCCTTTGCTTTGGAAAAATCCCTTTTTCTTTTTCTAGCAAGTTTTGCTTAACTTTTCCGGTAAGATAATGATTTCTTTGATCCTTCATATTTTAAATCAAATGCTGTTGTTTAATAGTTAAATCACTAGCTAAAAAATTGTCTGATTACTGATCTCACTGGGAAGTCAAATGCATCTTTTATGTTTTGTTCTATATAATCTTCTAATCATTCATCTCGGTGAGCAGGGCGTTTTCTGCTGCTTTTGTTTCTTGCTGAGGTATTTGCTTGCTGGATGGTATAAATGATGCAACGACAACACAATCTTCACTTTGAAGGTTCTTAGAATCATGATGTCATTCTTCTTATTGTAATACTTTATACGACGTTCTATCGAAAGCGTAGTTGCGGTTTACTCTGCTGGAATTGAGTCTAGCCTCTGTGCAATGGAAGAGTTTCAACGATTTTTCGAGAAGTTTGAAATGTATTCAGGAAAAGCATTAGTGATTGAAATTATTTTCAAGAACCGGTTTTTTCCCTTATAGAAAACTAGAAAATGAGATGCTGTTCTGGAATGTCTTCTGACTAACATATTGTATTTTGACATCAGAGAAGGAAAAGAAATTTGTTTGGTTTTAACCTAGAAAGTTGGAATTCTATTTATACTTGACTGTGTTTGAAATAATATTTGCTCTTTATATTGTTGATTATCTCCAATATATATATGGAGATTACATGAAAGTTT TGAGAAATGAGAAAGCCCAGGAGCAAGAGAACTTAGATTAGCATTTTACAGCGATTAGGGAAGGGCGCAGGGACTCATTGCCGTCCGCCATGGCTGCTCGCAAGAGAGCTTCTGCAAACCCATCAGTCAAAGAACCTTCTCCCAAAGAAATTGACAAAACCCACCAAAGCAAATCCCCAATAACGGATGATCCGCCCATTGCGCCACCGAAATCAGGTTTTATCTTCAAGCTCATTCTCTTTTTCTCTGTCCCATACCTTTACCTCATCTTCTACCACTACAAGATCGACTTAGAGCTCAGAAGATCAATCATTATCAATGCCGGACTCAGTCTCGCTGGGTTCTTTGTGACTCTGCGGATGATACCTGTTGCCTCCAGATACGTTATTAGACGTAATTTATTTGGCTATGATATCAACAAGCGGGGTACCCCTCAAGGCGCTGTCAAAGTGCCTGAGTCGTTGGGAATTGTTGTGGGAATTTCCTTCTTGGTCTTGGCAATTGTGTTTCAGTATTTTAACTTCACATCAGACTCAAATTGGCTTGTTGAGTACAATGCGGCCTTGGCATCTATTTGCTTCATGACATTGCTTGGATTCGTAGATGATGTTCTCGATGTCCCCTGGAGAGTGAAACTGCTACTGCCATCGTTTGCTGCTCTTCCTTTGTTGATGGCTTATGCTGGACATACTACTATTATAATCCCGAAGCCTTTGATTCCATACCTTGGAATGGATGTTTTAGATCTTGGTAAAATTTCCGACAATATTTTTATTGATTGTCACATGAAAACTCCAGATATGCCCCTTAAGGGGCAGTCAGTTAACTCATTGGTAACTTTAGTTATTATTTCTTTTGGTGTAAAGCTGCCAATGGTGATGTACATGATCTTGGTTCACAACGTCATGCAAATTGGGGCATCGACGGATCCCGAGTACAAGCAGGCCCATGCATTTTCTATTTATCTTGTTCAACCCCTATTAGCCACATCCTTAGGCTTGCTCGCTTACAATTGGTACCCTTCATCGGTCTTTGTTGGAGATACCTATACGTACTTTGCTGGGATGACTATGGCTGTGGTTGGAATTTTAGGTCATTTTAGTGAAACTCTTCTGATCTTCTTTTTCCCTCAAGTTCTGAACTTCCTTCTGTCACTCCCCCAGTTATTTGGATTTGTTGCATGTCCACGTCATCGGCTGCCTAGATTTGATCCTCAGACTGGACTACTGACTGGAACAAACGATGGAACACTTGGCGTTTTCTGCTGCTTTTGTTTCTTGCTGAGGTATTTGCTTGCTGGATGGTATAAATGATGCAACGACAACACAATCTTCACTTTGAAGGTTCTTAGAATCATGATGTCATTCTTCTTATTGTAATACTTTATACGACGTTCTATCGAAAGCGTAGTTGCGGTTTACTCTGCTGGAATTGAGTCTAGCCTCTGTGCAATGGAAGAGTTTCAACGATTTTTCGAGAAGTTTGAAATGTATTCAGGAAAAGCATTAGTGATTGAAATTATTTTCAAGAACCGGTTTTTTCCCTTATAGAAAACTAGAAAATGAGATGCTGTTCTGGAATGTCTTCTGACTAACATATTGTATTTTGACATCAGAGAAGGAAAAGAAATTTGTTTGGTTTTAACCTAGAAAGTTGGAATTCTATTTATACTTGACTGTGTTTGAAATAATATTTGCTCTTTATATTGTTGATTATCTCCAATATATATATGGAGATTACATGAAAGTTT ATGGCTGCTCGCAAGAGAGCTTCTGCAAACCCATCAGTCAAAGAACCTTCTCCCAAAGAAATTGACAAAACCCACCAAAGCAAATCCCCAATAACGGATGATCCGCCCATTGCGCCACCGAAATCAGGTTTTATCTTCAAGCTCATTCTCTTTTTCTCTGTCCCATACCTTTACCTCATCTTCTACCACTACAAGATCGACTTAGAGCTCAGAAGATCAATCATTATCAATGCCGGACTCAGTCTCGCTGGGTTCTTTGTGACTCTGCGGATGATACCTGTTGCCTCCAGATACGTTATTAGACGTAATTTATTTGGCTATGATATCAACAAGCGGGGTACCCCTCAAGGCGCTGTCAAAGTGCCTGAGTCGTTGGGAATTGTTGTGGGAATTTCCTTCTTGGTCTTGGCAATTGTGTTTCAGTATTTTAACTTCACATCAGACTCAAATTGGCTTGTTGAGTACAATGCGGCCTTGGCATCTATTTGCTTCATGACATTGCTTGGATTCGTAGATGATGTTCTCGATGTCCCCTGGAGAGTGAAACTGCTACTGCCATCGTTTGCTGCTCTTCCTTTGTTGATGGCTTATGCTGGACATACTACTATTATAATCCCGAAGCCTTTGATTCCATACCTTGGAATGGATGTTTTAGATCTTGGTAAAATTTCCGACAATATTTTTATTGATTGTCACATGAAAACTCCAGATATGCCCCTTAAGGGGCAGTCAGTTAACTCATTGGTAACTTTAGTTATTATTTCTTTTGGTGTAAAGCTGCCAATGGTGATGTACATGATCTTGGTTCACAACGTCATGCAAATTGGGGCATCGACGGATCCCGAGTACAAGCAGGCCCATGCATTTTCTATTTATCTTGTTCAACCCCTATTAGCCACATCCTTAGGCTTGCTCGCTTACAATTGGTACCCTTCATCGGTCTTTGTTGGAGATACCTATACGTACTTTGCTGGGATGACTATGGCTGTGGTTGGAATTTTAGGTCATTTTAGTGAAACTCTTCTGATCTTCTTTTTCCCTCAAGTTCTGAACTTCCTTCTGTCACTCCCCCAGTTATTTGGATTTGTTGCATGTCCACGTCATCGGCTGCCTAGATTTGATCCTCAGACTGGACTACTGACTGGAACAAACGATGGAACACTTGGCGTTTTCTGCTGCTTTTGTTTCTTGCTGAGGTATTTGCTTGCTGGATGGTATAAATGA MAARKRASANPSVKEPSPKEIDKTHQSKSPITDDPPIAPPKSGFIFKLILFFSVPYLYLIFYHYKIDLELRRSIIINAGLSLAGFFVTLRMIPVASRYVIRRNLFGYDINKRGTPQGAVKVPESLGIVVGISFLVLAIVFQYFNFTSDSNWLVEYNAALASICFMTLLGFVDDVLDVPWRVKLLLPSFAALPLLMAYAGHTTIIIPKPLIPYLGMDVLDLGKISDNIFIDCHMKTPDMPLKGQSVNSLVTLVIISFGVKLPMVMYMILVHNVMQIGASTDPEYKQAHAFSIYLVQPLLATSLGLLAYNWYPSSVFVGDTYTYFAGMTMAVVGILGHFSETLLIFFFPQVLNFLLSLPQLFGFVACPRHRLPRFDPQTGLLTGTNDGTLGVFCCFCFLLRYLLAGWYK
BLAST of Lsi01G018170.1 vs. Swiss-Prot
Match: GPT_DICDI (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Dictyostelium discoideum GN=alg7 PE=3 SV=1) HSP 1 Score: 251.9 bits (642), Expect = 1.2e-65 Identity = 155/345 (44.93%), Postives = 217/345 (62.90%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. Swiss-Prot
Match: GPT_BOVIN (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Bos taurus GN=DPAGT1 PE=2 SV=1) HSP 1 Score: 228.8 bits (582), Expect = 1.1e-58 Identity = 142/325 (43.69%), Postives = 192/325 (59.08%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. Swiss-Prot
Match: GPT_CRILO (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Cricetulus longicaudatus GN=DPAGT1 PE=2 SV=1) HSP 1 Score: 228.4 bits (581), Expect = 1.4e-58 Identity = 141/325 (43.38%), Postives = 192/325 (59.08%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. Swiss-Prot
Match: GPT_CRIGR (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Cricetulus griseus GN=DPAGT1 PE=2 SV=1) HSP 1 Score: 224.9 bits (572), Expect = 1.5e-57 Identity = 140/325 (43.08%), Postives = 191/325 (58.77%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. Swiss-Prot
Match: GPT_HUMAN (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Homo sapiens GN=DPAGT1 PE=1 SV=2) HSP 1 Score: 224.2 bits (570), Expect = 2.6e-57 Identity = 140/325 (43.08%), Postives = 191/325 (58.77%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TrEMBL
Match: W9RIT7_9ROSA (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Morus notabilis GN=L484_015500 PE=4 SV=1) HSP 1 Score: 575.1 bits (1481), Expect = 6.8e-161 Identity = 308/435 (70.80%), Postives = 341/435 (78.39%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TrEMBL
Match: V4RJZ0_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10005020mg PE=4 SV=1) HSP 1 Score: 570.5 bits (1469), Expect = 1.7e-159 Identity = 302/435 (69.43%), Postives = 341/435 (78.39%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TrEMBL
Match: A0A067DTH7_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g014480mg PE=4 SV=1) HSP 1 Score: 566.6 bits (1459), Expect = 2.4e-158 Identity = 299/432 (69.21%), Postives = 339/432 (78.47%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TrEMBL
Match: D7TII7_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_08s0007g05920 PE=4 SV=1) HSP 1 Score: 560.8 bits (1444), Expect = 1.3e-156 Identity = 303/439 (69.02%), Postives = 338/439 (76.99%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TrEMBL
Match: A0A0B2PCJ5_GLYSO (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase OS=Glycine soja GN=glysoja_046211 PE=4 SV=1) HSP 1 Score: 558.9 bits (1439), Expect = 5.0e-156 Identity = 298/436 (68.35%), Postives = 335/436 (76.83%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TAIR10
Match: AT2G41490.1 (AT2G41490.1 UDP-glcnac-adolichol phosphate glcnac-1-p-transferase) HSP 1 Score: 521.2 bits (1341), Expect = 5.9e-148 Identity = 280/442 (63.35%), Postives = 326/442 (73.76%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. TAIR10
Match: AT3G57220.1 (AT3G57220.1 Glycosyl transferase family 4 protein) HSP 1 Score: 501.9 bits (1291), Expect = 3.7e-142 Identity = 273/433 (63.05%), Postives = 318/433 (73.44%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. NCBI nr
Match: gi|659096636|ref|XP_008449205.1| (PREDICTED: UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase-like [Cucumis melo]) HSP 1 Score: 679.5 bits (1752), Expect = 3.7e-192 Identity = 361/435 (82.99%), Postives = 372/435 (85.52%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. NCBI nr
Match: gi|778694168|ref|XP_011653758.1| (PREDICTED: UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase [Cucumis sativus]) HSP 1 Score: 676.4 bits (1744), Expect = 3.1e-191 Identity = 360/435 (82.76%), Postives = 371/435 (85.29%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. NCBI nr
Match: gi|703122998|ref|XP_010102703.1| (UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase [Morus notabilis]) HSP 1 Score: 575.1 bits (1481), Expect = 9.7e-161 Identity = 308/435 (70.80%), Postives = 341/435 (78.39%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. NCBI nr
Match: gi|567857030|ref|XP_006421198.1| (hypothetical protein CICLE_v10005020mg [Citrus clementina]) HSP 1 Score: 570.5 bits (1469), Expect = 2.4e-159 Identity = 302/435 (69.43%), Postives = 341/435 (78.39%), Query Frame = 1
BLAST of Lsi01G018170.1 vs. NCBI nr
Match: gi|657999820|ref|XP_008392344.1| (PREDICTED: UDP-N-acetylglucosamine--dolichyl-phosphate N-acetylglucosaminephosphotransferase-like [Malus domestica]) HSP 1 Score: 567.4 bits (1461), Expect = 2.0e-158 Identity = 299/435 (68.74%), Postives = 335/435 (77.01%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following three_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
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