Lsi11G007330 (gene) 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.CCATGGAAGAAGAGCAGAAGAAGCAAAGTCTGAAATCTCCACTCATTCCGCCGCCATCGCCGCCGAGAGATGGCGGATTCTTCACGAGGGATGAGATTTGGGGAGAGGTGAAAAGGCAGCTCCGATTAGCCGGGCCGCTGGTGACGGTGAATCTGTTGATAAACTGTTTGCAAATGATATCAATCATGTTCGTTGGACATCTCGGGCAGCTCCCTCTCGCCGGTGCTTCCATGGCTACTTCCTTTGCCGCTGTCACTGGCTTTAGTCTACTCGTACGTACCCATTTTTTTCCTCTCCTTTTCTACTTATTCAACATTAAAAATACTATAAATATTTTATTCGTTTATACTTTTAATTTAATTTTTATAAGGCGGGAGGGTTTCGAGTATATATATTAATATGTTAATACGAGCACGATTTCAAGTCATATAAATTAATGTTCAACATGAATATAGCTTTAACTTTAATTGAAAACAAACTTAAATTTTAAAAATAGAAAATTAATAATAAAAACGTCGTCCAAAAAGTTATTAAAGATTATATTTAAAAAAAATGTATAAATTGAAATAGAACAAAGTTAAAATTAAAAAAACTAAAATGAGATTATTTTTTTTCCTTGAGTTCGTATGAAAATCAATTATCGAGCTATATGCCCACTCAGACACTCAAATGAGATGCATTTCTTTAAAAGAAAAAGAAAAAAAAAAAGAAAAAGAAATGAGATGCATTTTATTTTTTAAAAGGAAAAAAAAAGGAAATGAGATGCATTTTATTTTTACCAAAGTGAGAAGAAAATTAATCTCAACCTAAATTTGTATAAGGACAAAAATTGAATACGTCCAGAAATGTAGAACTAAAATTCTATTCTATTCTAACCGCACCTTCTTTTTCTCGTCTTCTGCTCTTTTATTTATTTATTTATTTATTTCTTTTTGAAATTTTTTTTTAATTATTATTTTGAAACATTCTATACTTTCATTCCAGGATGTATCTAAATATTTTTTTTCCTAATAAAATATGATTTTTTTAATTTATTGCCGGTCGTTTTCTTGTTTTTGAAAAAAAATACTTTATTTTTTGTAGTGGAAAAATAAGGGTAAATTTTTGGATTTGATGTTTTTTATTGGTATGATTTAAAATCAACATTCTAATCCATAAAATTTGAGAAATGATTTGCATGGTCCATAATTTACTTAATATAATAATTGATAGAAAAAAAAAATTAACAAGTAACATTCTCATGGCAATTATGTCAATTTGAAACAAACGAGGTTAAAGATCATTTTCACCAACAATCTTTCTGTTGTAAAAATTACAAATAATAGAAGAAATTTAAGTAAATATTGAAATTTTTTTTATCAAATATTAAAAAAAAATGTAACAACACCTTCCTCCACTCCGACGGTTGAAAAATTAGTTAACTCTTCATTTTTAGATCTAGAAAAGAAGGGAAATTACACTCTATTAAAAAAAATAATATTTAAAAGACTAAATAGAAAATAAGAAATCCAAATCTCATAAACCAAAAGTATATTTTGTTAGAAGAAATGAAATAACTATGTCATAATAAATAATTATTAAATACAAGCCAATTTTATAAATTAAATTATGTATAGATTTGAAATTATCAAACTTCTAGTGTAAATGTTAAATTACAAGTTTAATTTCTAGATTTTAATGTTTGTATTTATTTAGTTTCTAAACTTTTAAAAGTATTTAATAGATCTATAAACTTTTAATTTTATATCTAATAGGTCTCAAAATTTTTAAAATGTTTAATATATCCCTTAACTTTTTATTTTGTATCTAATAGATCTTCTACATATATTAAACGAAATTCAATTATTTGGTTTATTAGATAAAAATTTTAAATTTATATTAAATAAAACTTTAAGCTTTTAATTTTGTATATAATAGATATGTAAATTCTATAAAATATCAAATGTCTATAAAGAAAATGAAAATTTAAGGATTAGACAATTTTAAAGTTCAAAGATTAAACTTATAATTTAAGTTTAGATCAAATTGAAAAGTTAATAATTATATTAGATAAAATATAATTCTATATAGAGATCATGCATTTTATAAATCTTACGAGGTCGATTAATTTTTATGAATGTGTAATCCTTAGTCCGTGATGAAGATGTGGACAATGATGTGATAGACTGGGGAGTGTTACAGAATCCACTGCACTTTTTAATTAAAAATTCAATTGAAAAAAATGTCTCTCTCTCTCTCTCTCTATATTATTCATATAAACGGTAAAATATTTTTAATTAGTTAGCAAAAATATTAATTTGAATCTCAATTATGATCAATTAAATTATGAACACGTTTTTTTTTTTGTTATATATTTTGTATCTTTATTAATGGACGAGATAATATAATTTTAATATGTTTATTAATTTTTTTATATTTCAAATTTCAATTCTAAAGATTGACACTTTCATTTTTTTTGTTTTATATTTATTTTCATCTTTTATATTTTATTTATTAATTTTACTATTTATAAAAATAATTTTGTTATATTTATATTTTATTTTAATTTTGAATTTTAAAATTCTCCAATAATTAGATTTATATATTATTTTAATTTTCAATTTGTATATTGATTTATCTTTATATTTCAACTTTTGAGTATTAAAATTTACAATATGCATGTTTATAGATTATTTTAATTCTAATATTTTTAGTATATATGAAATCTAATAGAATTTTATATTATATAAATTTGCTAACTAAGACATTCATTTAACTTTACTTTAATATTTTACAATCACGAAATTTACATAATAATATAAATAAATTGGATTTGGCTCAACATCACTTCTGACAAATAACTTGAATTAGATATTACAACGCCTATAAAATTTGGACAACATATATCAAGGATAGGATACAACTTTGTTATTATATTTAGTTGTCATCGAGACTTGTATTAGATGACATAAACTTTTGGTAATATCTTTTTCGATATTTAATGTATGACATATCTTTTTTTTTTTTATATTGTATAGTTACAAAAAAAAAACAATATATTGTATAGTTACAAAAAAAAAAAAAAAATAGTTATCAAACAAGTTTATGTTTTTGTTAATTTTTTTTCAAGAAACAGGAATAGTTATCAAACTTGTTCCTGTTTCTTGTTCTCAAAGAAGAAGAAACAGGAAACAAAAAACATGGAACGAGAAACAAGAAACAGGAAATAGGAACGTTATAAAACGGACCCTAAAGTTTCCTAAGTTTATTAGCTTGTACTATTTATTGCATTTCGTTTGGATAATATTGTGTAAAATTTATAATTTTAACAACTAAATCCTTACACTTTCATAAACAAATTAATTTGGATTCTCAATTAAGAATTTATTAATAAGACATTTGAAGAAATCTACCCAGGTAAGAATTTTGATTTTCAAAGGTAATAACATTAATAAAGGTTTTAAATTGATTTATCTATAAAAGTTAAATATTTAATTGAAAAATGGGGAATTTTTAAAAATAGAAAAATAAGAAAAACTATTTAGCAAAATTTTTAGATAGTTGTGATAGACCCTGATAGAAGTCTGTCACTATCTATCAGTGATAGAAATGATAGAAGTCTATCACTGATAGATAGTAATAGAAGTCTATCAACGTCCATCAGCGTTTTCTTTCTTTTTTTTTGCTATTTTCTGTAAATAGTTTGACATTTTTTCTATCGGTAAATTTTTTTCTAAATAATTATAAATTTCATACAATATTTTTCGAACAAAAATTTTAATGGATACAATCATATAAATTGATATTTTTTTAGATAAAAATATAGGAAAATTTTCACAAATAGAAAAAATGTCAAACTATTTACGGAAAATAATAAAAAAAAAAATATTGATGGATATTGATAGACTTCTATCAGCATCTATTTGTAATAGACTTCTATCATTTCTATTCACCTTGATAGACTTCTATCAGCGCCTACCACAACTATCTAAAAATTTTACTATTTTCTGTAATTAGTTTCTCTTATTTTTCTATATTTAAAAATTCTCCAAAAATATAACATATTTATTATTGTATATAATAGAATGGAATGGGCAGTGCATTGGAGACCTTTTGTGGGCAATCCTATGGAGCAAAACAATACCATATGTTAGGAATTCACTTGCAAAGAGCCATGCTTGTTCTTCTTCTCGTCAGCTTCCCACTCGCCGCCGTCTGGTTCAACGCCGGCGACATTCTCCGCCTGCTCGGCCAAGATTCTGAGATTGCCGCGGAGGCTGGCCGCTACGCCCGTTGTATGGTTCCCAGCATTTTCGCCTACGCCATTCTTCAGTGCCACGTTCGTTTCTTACAGACCCAGAACAATGTTCTTCCCGCCGCTGCCGCCGCCGCCACCACGGCGGTGCTCCACTGCTTTGTGTGTTGGGCTCTGGTTTTCCGGTCGGGGTTGGGAAACCGAGGGGCGGCCTTGGCCAATGCTGTGTCTTACTGGATAAATGCGGCGGCGATGGTGGTTTATGTTAGAGTTTCGCCGTCGTGCCGGAAGACGTGGACTGGATTTTCCGGTGAGACGTTTCGTGGGATTTTGAGCTTCGTTAAACTCTCTATTCCTTCTGCCATCATGCACAGGTTCCAAACTCTAATTTTTTTTTTTTTTTAATTTAATTGTCAATTTAATCACATTAAAAAAAATTCAAGTGTTTATTTTAATTTAAAAATAAATCATTTTAAAAAAAATTAAATTGTTTGGCCACACTCAACACAAAAAATTATGGTAGGAGAACAAAAATGTTCAAATGAATAAATTTTTTTCTAAGTCAATCCAAACGAGCCTTTAGTCTTTAAATTTTGAGTTTGGTTTCAATTTAATCTTTTGATTTCAAAATGTCACAATTTTACTCTTAAATTTTGAATTTTATTTCAATTTGGTTCATAGGTTTTGAGATTTACGCTTTTATACTTGATTTTTTTACTAAATGCTCACTTTCTAGGGATCAAATAGAAACTAAACCAAGAAAAATATATTTTTTCCATTTTTTTTTTTTGAAAAATCAATTCATTAACTCTATGAATTTTGAATAAATTATAGATGTCCATAAAAATTTGGTTTAAAAGTTTTAATTTAGTCTATGGGCTTAGCTTCCATTTTATATGTTCATATAGTTTGAAAAGTTTAATATTGATATCAATCTCGTCTCTTTAAGCTGCGTTTTTCTTACTAAAAAATCAGAATATTTTCTCTTATTTTCTTATTTAATCCTAAATATACTAATACAATAAACTAACACATACTTAAACTAGAGATAGAAAATTGTTGATTGTAGTATACAACCATTGTCAAAATGAAAACTGCAGAGAATTTGTGAAACTTTGTCTAAACAAAACTGAAACTTTTGAAATCCCATGAAATTGAAACAAAATTCCAATGATAGGGATCACTAATAATTGAAATTAACTAAGCACAATCATATGGACTAAAAAAAATCAAAAATTTAAAATTATAGACATCAACCATTGATATTAAGTTAAAATTATTATTATTAAATTATTAATATCATTGATTAAATTATTATTATATTAGATAAATGTTGACATACTAACTATTTTTTTATTCTAAATTCAATCATTGTAGAGATGAAGGATCAATCTAATGATTCAACTTTTAAGATATGGTAATTAGTATCTTTATTTACTGAGCTATGCTCGGATCTATAAATGTTGACAAATTAGTAGAGATGTCTTAACTAAATTTATATTATAATTTTCTTAATATGTCTTCTTAGTAATGAAGCATATGGTAATTTTAATTTAATTTACACAAAATAGTAACAATTTATGTCCAACAAATTTTGAAATATATATAATTAAGTTTTCATATCTTTTTATTACAATAAAAAGTGAGAGATTCAAAATACAAACCTTTTTATCGCCCACCTATGTCATATATGTCATTGAAAATTGACTTTATTTATTTATGGAAACATTACAGTTTGGAGATATGGTCATTTGAGATGGTGGTTTTGTTATCAGGGCTTCTTCCCAATCCAAAGCTTGAAACTTCAGTTCTATCAATCAGGTCAATGGACTAATTCAATTATATATATATATATATATATGGTGTTAATTAAATTTAATTAATAATAACTATGATTAAATAATGCTGGCTCTAATCCTAATTAGCATTAATCAATCTCTTTTTCAGCCTCAATACGTGCTCAATGATTTACATGATACCCCTCGGAATCAGTGGTGCAGTGAGGTTAGTTACACTTACTAATTTTTATTTTTATTTTTTATATTTTTCTTCCTTCCTATATGTTATTTTTTTTTTGTTGAATTACCAAATACAGAAAAAAATTGAATGGTGGAATTTTGGGTGGGTACGAAAAAAAATTAGCTTTAGGATAATTTCTGAGAAGCTCTAATCAAAACGTGTTAGATGGTATTATATTAAATTTATCTTCATCTATAAATTTAAGTTTTTGGGTCAATCGACGATTTAAGATGGTATTAGAGTAAGTGGTCTAGAGAGATTTTGTGTTCAAACTCTTACAATGTTATTTTCTACTCAATTAATACTAATTAGGTTTTAAATCAACTAAACAAAATTACTTCTTTCAAAATCCTAACAAAGTAGCAGAAAAAAGAAAATAAAAAAAGACAGAGATGATGAAAATATATCACTCATATATATATACTAGCCATTTGATTATAGTATTTTATCTATAATATCACATTAATCTATGTGCTTAAAAAGTCATATATACACGTGTAAAAATTACGTATTAACAATTTTCAAATAAATTAATTTAATAGATGGTCTAAATCAATTCATCTATAAAAATTTAGACTTTTAATTCATACTATTATTAATTGAGATTTTTGATACAACTCATACTATTATTAATTGAGATTTTTGATACAACTCCAAAATTTTAAAAGGTATAAATGACTTTTTTCACCATATTTTATAATATATATCTTGGTCTTATTGAACTTTGATTATTTATCCATCTATATTTGATGGGACAGCACAAGAGTTTCGAATGAACTTGGGGCAAGGAGGCCAAAGGCGACCATCCTAGCAGGACGTGTTGCAATGGGGATGGTGGCTACAGAGGGCACAATGGCAGCCATTATCATCATCATTGGCAGAAGATTATGGGGTTACTGTTACAGTAATGATGAGCCTGTGGTTGGATATTTAGCTCAAATCTTATTTTTGCTTGCAATTGTGCACATCTTTGATGGAGTTCAATCTATTTGCTCAGGTTTGTTCTTTCTTTTAAACTACATAATGTTTTCAATATTTACAATCTTTTTAACTTTTTATTCAAATATATCATTTCATCTTACAATTATATTTCTTTTTCTTTTGTTAAAATTAAAACTAAAACACGAAGAGTCGAAAAATGGATCAATGGCGAATTTGTAGAGTGATGAATTGGACTCAGCCTACAAAAAGAATTGCGTGTGTCGGTATGGTGTTAGGCTCACATATATACTTAAGTGCTCAAGTTGGTATTGAGTTTGTCAATAGCTTATAAGATAGTAGAAAAGAGCGCTGTATATTTGATCGTAAATTATTCTCTCTCGAATGTATGTAGCCTTTTCTCTGTTTATAAAGAGTATCTATTTCTTAATGAAATATGGGACTTCCAAACATGCTCCCTAAGGTTCTTGTCAAGATTATTGATCATTATGGAACAAATGAATCGATCACATAATAGACATGTGTAAGACATCCAATCATCGGACTCCAAAGGAATAAATATTTGTTGAGTAAACCTTAAAGTTGGAAAGTTGACCCTTCCTTAGGGGTTGGCCTCAAGTCTGCTTCAACCCTAGGGGTCGACCTTAAGGGCCAAATCAAACCCTAGGGAGCTCCTTTGAAGGGTTGACCATTTTGTTCTTGAGTCACATCTCTCAAGTCACATCTCTTAACCATTTTGTTGTGGTTGACCATTTTGTTCTTGACCTAAGACTTGGACCAACTCCCTTTTCTCTTGGGCTTGGCCGATGCTTTCACCTACAACAATTGCTCCCACTTTCGTTGGTTGGTTTTGTATATTTTTTGGTCTAGCCACTTGCTCGTTCCCAACTTGAGAGTTCAATTCGTACTGAAACTTAATTAAGCAGCTTGGTTGGAACTTATTCATGGTGACCTTATTGCGCTTCGACATCTAATTTTGACGTTAAGGCATTTGTTCTAGGTTTAATCATGTTTTCTTAGGCCTAGATACAAACCTTGGTGTTTGCTAGATATTATTTCAATCCAGACATTTGTCCAAGCCTCGATATTCTCTAAGACCTACCTGTCATTTATACACGTAAGCCTAGGCACCTATAATTAACTATTAAACCCTCTTTGGAAGGTCCAAACTCTTTGCTTCCTACCCAGGAGTCCTCTTAGTTTCCTTCCAGTGTGGTTGGCTTATTGGCTTCCTCCAAGAGTTATGTCTATATAATCTCTGTTTAGACGTGTAGTGTTCAACTAACGAAGTCAACAACAAAAATCTCTAGATATGAATTGAAAGTTCAAAATCTCATTTAAAAAAAACGTTTTAAAATATGATAACTAAATTCAGATACAACTTTGAAGTAAAAGATTACAAGAAACATTCTAAAATAATTTGACTAAATAATCACATCCGAAACAATTCAAGAATTAAACTTGAAATATAAGACTTCTTTGTATTTCAAAATTATCTCCAAATGTCTAATCATTAATCAAATTTCTATGAAAACAATCAAAATGGTAATGGTTTCTTCCAAACTTTGTTGCACCATTCTATGTGTGTTGGTAGGTATCACAAGAGGATGTGGAAGGCAGAAGGAGGGTGCTTTTATTAACTTGGGAGCTTATTACATTGTGGGCATTCCTATGGCTATCTTTTTAGCCTTCTATCAAGGCATTGGAGGAAAGGTGCTTTAATTTTACAATTTCATCATTTTTTTTTTCTCTTTTTAATTTTTTTTTTCTAATTCATATTAATTCAATTGAAAATCTTTGTGTAGGGACTATGGATGGGAATCATGGTGGCAGTGTTTTTACAATCTTTATTTCTTGGGATCTTGATTCTATGCACCAATTGGGATAAAGAAGTGAGTTTCTCCATCTTCTTTAATACCTTTTCAACTAATTTAATTTTATAATTTCAATGAATCAATTGTGTAAATGGTGGAATTAATAATTATTATTATTTTTTTTTTTTGGCAATTTGAAAATAACTCACAAAATAAGACAAATTACTATTTTAATAGTTTGGTTTTTCACTTGAACTAAAAAAAAGAGTTTGGGCATGCTTGTGAGTGAGTAAGATTGTTATTTATGGGTGATCGATTTTGTGACAATATAAACCATTTAATTTGACAAGTTCTCTTTTATATCATTATTAAAAGGATTTATAAGATTGTCCTGAGATATTTATAAAATATGTAATCATGTTTTCGTTATTGTTCAGGTCAAGAAAGCGGCAGATAGAATTACCAGCTCAATGCCTGAAAATCTTTTGGAATGATACAATCAAATACTAATTCATTAGTCTTCAAATTTTAGCATAATTGTAGTGGTGAGACACAG CCATGGAAGAAGAGCAGAAGAAGCAAAGTCTGAAATCTCCACTCATTCCGCCGCCATCGCCGCCGAGAGATGGCGGATTCTTCACGAGGGATGAGATTTGGGGAGAGGTGAAAAGGCAGCTCCGATTAGCCGGGCCGCTGGTGACGGTGAATCTGTTGATAAACTGTTTGCAAATGATATCAATCATGTTCGTTGGACATCTCGGGCAGCTCCCTCTCGCCGGTGCTTCCATGGCTACTTCCTTTGCCGCTGTCACTGGCTTTAGTCTACTCTGGAAAAATAAGGGAATTCACTTGCAAAGAGCCATGCTTGTTCTTCTTCTCGTCAGCTTCCCACTCGCCGCCGTCTGGTTCAACGCCGGCGACATTCTCCGCCTGCTCGGCCAAGATTCTGAGATTGCCGCGGAGGCTGGCCGCTACGCCCGTTGTATGGTTCCCAGCATTTTCGCCTACGCCATTCTTCAGTGCCACGTTCGTTTCTTACAGACCCAGAACAATGTTCTTCCCGCCGCTGCCGCCGCCGCCACCACGGCGGTGCTCCACTGCTTTGTGTGTTGGGCTCTGGTTTTCCGGTCGGGGTTGGGAAACCGAGGGGCGGCCTTGGCCAATGCTGTGTCTTACTGGATAAATGCGGCGGCGATGGTGGTTTATGTTAGAGTTTCGCCGTCGTGCCGGAAGACGTGGACTGGATTTTCCGGTGAGACGTTTCGTGGGATTTTGAGCTTCGTTAAACTCTCTATTCCTTCTGCCATCATGCACAGTTTGGAGATATGGTCATTTGAGATGGTGGTTTTGTTATCAGGGCTTCTTCCCAATCCAAAGCTTGAAACTTCAGTTCTATCAATCAGCCTCAATACGTGCTCAATGATTTACATGATACCCCTCGGAATCAGTGGTGCAGTGAGCACAAGAGTTTCGAATGAACTTGGGGCAAGGAGGCCAAAGGCGACCATCCTAGCAGGACGTGTTGCAATGGGGATGGTGGCTACAGAGGGCACAATGGCAGCCATTATCATCATCATTGGCAGAAGATTATGGGGTTACTGTTACAGTAATGATGAGCCTGTGGTTGGATATTTAGCTCAAATCTTATTTTTGCTTGCAATTGTGCACATCTTTGATGGAGTTCAATCTATTTGCTCAGGTATCACAAGAGGATGTGGAAGGCAGAAGGAGGGTGCTTTTATTAACTTGGGAGCTTATTACATTGTGGGCATTCCTATGGCTATCTTTTTAGCCTTCTATCAAGGCATTGGAGGAAAGGGACTATGGATGGGAATCATGGTGGCAGTGTTTTTACAATCTTTATTTCTTGGGATCTTGATTCTATGCACCAATTGGGATAAAGAAGTCAAGAAAGCGGCAGATAGAATTACCAGCTCAATGCCTGAAAATCTTTTGGAATGATACAATCAAATACTAATTCATTAGTCTTCAAATTTTAGCATAATTGTAGTGGTGAGACACAG ATGGAAGAAGAGCAGAAGAAGCAAAGTCTGAAATCTCCACTCATTCCGCCGCCATCGCCGCCGAGAGATGGCGGATTCTTCACGAGGGATGAGATTTGGGGAGAGGTGAAAAGGCAGCTCCGATTAGCCGGGCCGCTGGTGACGGTGAATCTGTTGATAAACTGTTTGCAAATGATATCAATCATGTTCGTTGGACATCTCGGGCAGCTCCCTCTCGCCGGTGCTTCCATGGCTACTTCCTTTGCCGCTGTCACTGGCTTTAGTCTACTCTGGAAAAATAAGGGAATTCACTTGCAAAGAGCCATGCTTGTTCTTCTTCTCGTCAGCTTCCCACTCGCCGCCGTCTGGTTCAACGCCGGCGACATTCTCCGCCTGCTCGGCCAAGATTCTGAGATTGCCGCGGAGGCTGGCCGCTACGCCCGTTGTATGGTTCCCAGCATTTTCGCCTACGCCATTCTTCAGTGCCACGTTCGTTTCTTACAGACCCAGAACAATGTTCTTCCCGCCGCTGCCGCCGCCGCCACCACGGCGGTGCTCCACTGCTTTGTGTGTTGGGCTCTGGTTTTCCGGTCGGGGTTGGGAAACCGAGGGGCGGCCTTGGCCAATGCTGTGTCTTACTGGATAAATGCGGCGGCGATGGTGGTTTATGTTAGAGTTTCGCCGTCGTGCCGGAAGACGTGGACTGGATTTTCCGGTGAGACGTTTCGTGGGATTTTGAGCTTCGTTAAACTCTCTATTCCTTCTGCCATCATGCACAGTTTGGAGATATGGTCATTTGAGATGGTGGTTTTGTTATCAGGGCTTCTTCCCAATCCAAAGCTTGAAACTTCAGTTCTATCAATCAGCCTCAATACGTGCTCAATGATTTACATGATACCCCTCGGAATCAGTGGTGCAGTGAGCACAAGAGTTTCGAATGAACTTGGGGCAAGGAGGCCAAAGGCGACCATCCTAGCAGGACGTGTTGCAATGGGGATGGTGGCTACAGAGGGCACAATGGCAGCCATTATCATCATCATTGGCAGAAGATTATGGGGTTACTGTTACAGTAATGATGAGCCTGTGGTTGGATATTTAGCTCAAATCTTATTTTTGCTTGCAATTGTGCACATCTTTGATGGAGTTCAATCTATTTGCTCAGGTATCACAAGAGGATGTGGAAGGCAGAAGGAGGGTGCTTTTATTAACTTGGGAGCTTATTACATTGTGGGCATTCCTATGGCTATCTTTTTAGCCTTCTATCAAGGCATTGGAGGAAAGGGACTATGGATGGGAATCATGGTGGCAGTGTTTTTACAATCTTTATTTCTTGGGATCTTGATTCTATGCACCAATTGGGATAAAGAAGTCAAGAAAGCGGCAGATAGAATTACCAGCTCAATGCCTGAAAATCTTTTGGAATGA MEEEQKKQSLKSPLIPPPSPPRDGGFFTRDEIWGEVKRQLRLAGPLVTVNLLINCLQMISIMFVGHLGQLPLAGASMATSFAAVTGFSLLWKNKGIHLQRAMLVLLLVSFPLAAVWFNAGDILRLLGQDSEIAAEAGRYARCMVPSIFAYAILQCHVRFLQTQNNVLPAAAAAATTAVLHCFVCWALVFRSGLGNRGAALANAVSYWINAAAMVVYVRVSPSCRKTWTGFSGETFRGILSFVKLSIPSAIMHSLEIWSFEMVVLLSGLLPNPKLETSVLSISLNTCSMIYMIPLGISGAVSTRVSNELGARRPKATILAGRVAMGMVATEGTMAAIIIIIGRRLWGYCYSNDEPVVGYLAQILFLLAIVHIFDGVQSICSGITRGCGRQKEGAFINLGAYYIVGIPMAIFLAFYQGIGGKGLWMGIMVAVFLQSLFLGILILCTNWDKEVKKAADRITSSMPENLLE
BLAST of Lsi11G007330 vs. Swiss-Prot
Match: DTX16_ARATH (Protein DETOXIFICATION 16 OS=Arabidopsis thaliana GN=DTX16 PE=2 SV=1) HSP 1 Score: 459.5 bits (1181), Expect = 4.3e-128 Identity = 235/445 (52.81%), Postives = 307/445 (68.99%), Query Frame = 1
BLAST of Lsi11G007330 vs. Swiss-Prot
Match: DTX15_ARATH (Protein DETOXIFICATION 15 OS=Arabidopsis thaliana GN=DTX15 PE=3 SV=1) HSP 1 Score: 438.7 bits (1127), Expect = 7.8e-122 Identity = 230/446 (51.57%), Postives = 298/446 (66.82%), Query Frame = 1
BLAST of Lsi11G007330 vs. Swiss-Prot
Match: DTX17_ARATH (Protein DETOXIFICATION 17 OS=Arabidopsis thaliana GN=DTX17 PE=2 SV=1) HSP 1 Score: 427.9 bits (1099), Expect = 1.4e-118 Identity = 220/445 (49.44%), Postives = 300/445 (67.42%), Query Frame = 1
BLAST of Lsi11G007330 vs. Swiss-Prot
Match: DTX14_ARATH (Protein DETOXIFICATION 14 OS=Arabidopsis thaliana GN=DTX14 PE=3 SV=1) HSP 1 Score: 362.8 bits (930), Expect = 5.5e-99 Identity = 192/448 (42.86%), Postives = 280/448 (62.50%), Query Frame = 1
BLAST of Lsi11G007330 vs. Swiss-Prot
Match: DTX12_ARATH (Protein DETOXIFICATION 12 OS=Arabidopsis thaliana GN=DTX12 PE=2 SV=1) HSP 1 Score: 352.4 bits (903), Expect = 7.4e-96 Identity = 193/455 (42.42%), Postives = 277/455 (60.88%), Query Frame = 1
BLAST of Lsi11G007330 vs. TrEMBL
Match: A0A0A0LJ72_CUCSA (Protein DETOXIFICATION OS=Cucumis sativus GN=Csa_2G049930 PE=3 SV=1) HSP 1 Score: 740.7 bits (1911), Expect = 1.1e-210 Identity = 389/487 (79.88%), Postives = 416/487 (85.42%), Query Frame = 1
BLAST of Lsi11G007330 vs. TrEMBL
Match: A0A059CRQ4_EUCGR (Protein DETOXIFICATION OS=Eucalyptus grandis GN=EUGRSUZ_C02419 PE=3 SV=1) HSP 1 Score: 574.3 bits (1479), Expect = 1.3e-160 Identity = 292/482 (60.58%), Postives = 363/482 (75.31%), Query Frame = 1
BLAST of Lsi11G007330 vs. TrEMBL
Match: A0A059CSW9_EUCGR (Protein DETOXIFICATION OS=Eucalyptus grandis GN=EUGRSUZ_C02411 PE=3 SV=1) HSP 1 Score: 573.2 bits (1476), Expect = 3.0e-160 Identity = 292/482 (60.58%), Postives = 365/482 (75.73%), Query Frame = 1
BLAST of Lsi11G007330 vs. TrEMBL
Match: A0A059CRN6_EUCGR (Protein DETOXIFICATION OS=Eucalyptus grandis GN=EUGRSUZ_C02396 PE=3 SV=1) HSP 1 Score: 570.9 bits (1470), Expect = 1.5e-159 Identity = 291/483 (60.25%), Postives = 364/483 (75.36%), Query Frame = 1
BLAST of Lsi11G007330 vs. TrEMBL
Match: K4CBE4_SOLLC (Protein DETOXIFICATION OS=Solanum lycopersicum PE=3 SV=1) HSP 1 Score: 564.7 bits (1454), Expect = 1.1e-157 Identity = 289/452 (63.94%), Postives = 349/452 (77.21%), Query Frame = 1
BLAST of Lsi11G007330 vs. TAIR10
Match: AT5G52450.1 (AT5G52450.1 MATE efflux family protein) HSP 1 Score: 459.5 bits (1181), Expect = 2.4e-129 Identity = 235/445 (52.81%), Postives = 307/445 (68.99%), Query Frame = 1
BLAST of Lsi11G007330 vs. TAIR10
Match: AT2G34360.1 (AT2G34360.1 MATE efflux family protein) HSP 1 Score: 438.7 bits (1127), Expect = 4.4e-123 Identity = 230/446 (51.57%), Postives = 298/446 (66.82%), Query Frame = 1
BLAST of Lsi11G007330 vs. TAIR10
Match: AT1G73700.1 (AT1G73700.1 MATE efflux family protein) HSP 1 Score: 427.9 bits (1099), Expect = 7.8e-120 Identity = 220/445 (49.44%), Postives = 300/445 (67.42%), Query Frame = 1
BLAST of Lsi11G007330 vs. TAIR10
Match: AT1G71140.1 (AT1G71140.1 MATE efflux family protein) HSP 1 Score: 362.8 bits (930), Expect = 3.1e-100 Identity = 192/448 (42.86%), Postives = 280/448 (62.50%), Query Frame = 1
BLAST of Lsi11G007330 vs. TAIR10
Match: AT1G15170.1 (AT1G15170.1 MATE efflux family protein) HSP 1 Score: 352.4 bits (903), Expect = 4.2e-97 Identity = 193/455 (42.42%), Postives = 277/455 (60.88%), Query Frame = 1
BLAST of Lsi11G007330 vs. NCBI nr
Match: gi|659069856|ref|XP_008452139.1| (PREDICTED: MATE efflux family protein 6-like isoform X2 [Cucumis melo]) HSP 1 Score: 762.7 bits (1968), Expect = 3.8e-217 Identity = 401/486 (82.51%), Postives = 423/486 (87.04%), Query Frame = 1
BLAST of Lsi11G007330 vs. NCBI nr
Match: gi|778667392|ref|XP_011648917.1| (PREDICTED: MATE efflux family protein 6-like [Cucumis sativus]) HSP 1 Score: 740.7 bits (1911), Expect = 1.5e-210 Identity = 389/487 (79.88%), Postives = 416/487 (85.42%), Query Frame = 1
BLAST of Lsi11G007330 vs. NCBI nr
Match: gi|659069854|ref|XP_008452131.1| (PREDICTED: MATE efflux family protein 6-like isoform X1 [Cucumis melo]) HSP 1 Score: 736.9 bits (1901), Expect = 2.2e-209 Identity = 388/487 (79.67%), Postives = 415/487 (85.22%), Query Frame = 1
BLAST of Lsi11G007330 vs. NCBI nr
Match: gi|702311761|ref|XP_010051005.1| (PREDICTED: MATE efflux family protein 6-like [Eucalyptus grandis]) HSP 1 Score: 574.3 bits (1479), Expect = 1.9e-160 Identity = 292/482 (60.58%), Postives = 363/482 (75.31%), Query Frame = 1
BLAST of Lsi11G007330 vs. NCBI nr
Match: gi|702299457|ref|XP_010048677.1| (PREDICTED: MATE efflux family protein 8-like isoform X1 [Eucalyptus grandis]) HSP 1 Score: 573.5 bits (1477), Expect = 3.3e-160 Identity = 292/483 (60.46%), Postives = 366/483 (75.78%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene: |