Lsi08G015890.1 (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.AAAAAGACATGCGCAGTCCTAGAACCTTCTACTTCGACGCCATTAAAATTCAGTTTCTTCCCTCCATTTATCATTCAATCAAACTCTAAAAACTCCTTTCTTCTTCAACTAATCAGTCATTAACCTCCCAATCTCGGATTAACTTCTTCCGATCAAAGTAGTAATGGATGAACTGAAAGTGAAACCGGAGGAGTCAGCAGTAGCCACCGGCAGGGCGGCGTCTGCTTCTTCTGTTTCTTCATCGTCTTCATCCGTCACTCCCCAGCCGATCGAAGGCCTACACGATGTCGGTCCGCCTCCATTTCTGACGAAGACCTTTGAAATGGTGGAAGATCCATTGACGGACTCCATTGTTTCCTGGAGTAAAGCTCGCAATAGTTTCATCGTTTGGGATTATCATAAATTCTCTAGTACTTTGCTGCCTCGTTACTTCAAACATTCCAATTTCTCTAGTTTCATTCGTCAACTCAATACTTATGTAAGTTTTCACTAAAATTGATTTTCGTTGTCTTTCGTTCTTCTTGTTGTTGCTGAAGTGTCTTTGAAATTTTGGTAACCTAATCTCATTTATGTTTAAATTCTTCAATGTAGGGTTTTCGAAAAGTCGATCCTGATCGTTGGGAGTTTGCGAATGAGGGGTTTCTGGGAGGACAGAGGAATCTGTTGAGAACCATAAAGAGGAGGAGACATTCACACCAAAGCATCCAGCACCAAGGAGGAACATGTGTGGAATTAGGGCAATTTGGACTGGAAGCCGAACTTGAGAGGTTGAGAAGGGACAGAAGCTCGTTAATGGCGGAATTAGTGAGATTGAGGCAGCAACACCAGAGCTCAAGAGAGCAAATAATGGCCATGGAGGATAGGTTAGAGAAAGCAGAGAGTAAACAGAAGCAGATCATGACATTTCTCAGCAAAGCCCTCAAGAATCCTTCCTTCATTCAGAAATTTATTCATAGTAATCAGGGAAGGGAATTGAGAGGCGTTGAAATTGGAAGAAAGCGGAGACTAACTGCCAGCCCAAGTGTAGAGAATCTCCAGGATGAGAATGTGCCGGTGGCTGTTAAACAAGAAGAGCTAGAAACTTCTGAACCAGATATAGAGACGCTGTTAACGGTTAACTTTGAAGACGAGTCAAGCATTGAGATCACGGACCCTGTTTCTGATATGGGTCACTTTGCTCATGGGGAATTGGGGATCTTCAGTCAACTTTGGGCTGAAGATCTTATAGCTGGACATCCAGAAGAAGCCATAATCGTCGGTGATCAATCAGACGTTGATGTGGAAGTGGAGGATCTGATTGCTGAACCCCTGGATTGGACTGAGGACCTGCAGGAACTCGTCGATCAAATGGGGTTTCTCCGATCGAAGTCGTAGACATAACAGTGTAGTCAATTTGTTTGGCATTTTGCTTCTCTTCGTGTGGAATAGGTTTCAGCTGGCTCGTGTAGGAAGGAATCGTGGATGTTGCAGGGGAGCTACAGATTGTTCCCGTTTCCTTATATCCTTTGAAACTCATTGGTTTTTCAATATTATGTACTAAATATTTTTGGTTGTGTTAAATTGGTTTATAGTTATTTTTTTCTTCCGTGGTTTTATTTGCAGGCATGTGCAGAAAAAAGGAGAACTGCGAGAAGATTCAGTCATTTGCTGATTTCTTTACCATTAAGTGAAAGTCGGAGTAATTATCTCATTCATTAATTGAGAACCAATAACTGCTATTCATTTGAAGTGTACGAGTCTGCTGAAAACTAGAACCAAATTTTTTCCCTCTAGTGAGGTGTTCGCTATTTTTTGTGGAAGATATCAAAAAGTAGCTATTTTCCGTTGTCATAACTTAGGAAATATAGTTTTGATTAAATGTATTTTGAATCTTGATAGGCTTTTGGTCCACGATTGCTGGTTCGTGTTTGAGCTTAATAATGTTAAGCTCAGCTATGTAAGATGGAATAAACAAATTCAGAGTTCTAGGCTTCATTAACTTAATAGAAATTCTTTGATAATCTTCTATGCTGTCATGTATAATTCAATTGGTTGATAGATATCCTTTTCTGACAGAATTATAAAGAATCGCATGCTTGTCTTCTCTAGAGGAAGAAATGAAATGTACCTAGAGGTAGTAGATGCTCTCTCTTTCTTTCTCTCTGGAATGCACCTTCTTAAAGGATGAGAACTTTTGGTCAATGTCAATGGATTGGTTTTCCATATTCATGGCTTGACTGTAACTTTCCTCCATGGCATTATAAAGCATCTCACGTTTTTCTTTTTACATTTGAGATCTCTTGCATTTATAGCTTTGCTGGGATAGAAACACACATCAAGATATCATGGGCCCTAAACTGTTAAGTTGATTTCCTTTTCCCTCACGTTCGGGGGATTGGAAAATAAAATATCTGTTCTTTATTCCAGGAAGTCAATGATCCAGTGAAACAAGACATGTACTTTTCAAATAGTTACAGGTAGAAAGAACAAAGATGAGTTCCATTTACACGAATATGCGATCCAAATCAGAGGTTTTGTTAGGGGCTCCGTTAGATGGGCGCTATCACAGGCACCCTGGGGCTGGGGATCCCCATATATGAGAGCCTAGGAGACATCCTGATCTTTGGGCTTGGCCGAGGTGAAGGTATCGGAAGCGAGCTTCCGAAGAAACCCGGTGAGGGTCTTGGTGACAAGTTCACTTGCTCCAGTGCCCGTGCTTGCAACTCTGCTGGATACTCCTTCACACACCCAATTCTGGGGCCAACTCCACTGCTCCATCTGCACAGCAAACGCTTTGGTATGTCTATCAATGGTGCCTCTCTGCGGCTACCTGGATTCTCTTGCTGCTCATTAGTTGTAACCAACTTGACAGGTACTGCCAAATCGACTTCGTCTGCAACCATGTCTTCTGAAGATGTCGTCGATGTCTCTTCGCTCGAGTCTTTATATGAGTAGTTGTCGTCATCTACTGAACATCTCTGAGTAATTATGAAGAAAACCCCATTGGCGAAATTCAGGAAAACAAGTTGTGCAATCTGAAAAGAAGTAGATACAAAAAAACTGCATCCATGTAGATATGTCCAGATAATTACCTTGACGTTGGTCAAGTCCACTGTATGTTCTTCAAGGAAACTAATGAACTCCTTAAAATTGTTCTCTGTTGGAAGATAATGACCACTGTATGGCCATATAGCCTAAAGAAAATCCAAATGAAAACATCACCTCTATGGATTACTCTACAGAATGATTATCCAAAACAACACCCATATTCTCAAGCATTCAATTATGCACCTTAAGAATTCCATCAATAGCAACCAATCTTCCTGCAGCTGTTATAGCCCCTCCAGACAGGAAGCTGGAGTGTTGAAAGAGACCTTTCTTCTTCTGCCCCACATACAGATCTCTTGATGTGCTGAGTACAAAAATCCACTTGGAATCTTCAACTGTGTTAATGGGAATTCTGCTTTGCTTGTAAACAAGCTTCCTATTCTCCACAATCACCTGGTACTCCTCCCTTTCTTTCTGCAACAGAAATGAAGAAAAAACACTTGCTTACTGCTTGCAATGGAGTAGAAACTACAATACAATGAGGTCACCGAGAGTGGGGCTTACTGGTCCAAGGTACTTGATGCATTGCTTATACAGGACTGATCTACGGCACTTCTCAAGGTTTACCCTCTTCCCATCACCAATATCCAACCTTTTAAAAGAAAGCTTGAAGGATAAGAATGAAAGCTTTCAATAGTGCACATGGGGGAGGATTTACTTATGTAATGATACCAGCAGTTGGAGATGGAAATTTACCAGTAGAAGAAAGGTTGAGTGCTCTTGCTGTCAAACCAAACATCATAGTAAAAATGCAAGTTATGTCCATAGCGGTGGCGAGGATCAATCTGCTCAAAAGTCCAACAAAGGTTTGTTACTGAACATTGAATTTGTATCTTAGTATGTGAAAGGGAAAAAAAAATCGAATCCCTGTACATTGAAATTATTTCGAACTGCTCATCTGAAATGTTAGGCATCAAGTAAGATTGTTTGTCTTGCAGGTAACTCAAATACAACTTTTTCAGTTGCAGATGACAATGTAGAGGATACAACAAAAGACTGAATCATATGAACTTACTGCTTCAAGCCAGTGTTGTAGAGCTAGTTTTTGAGCATTCTCATCCTTTGATAAACCTTTCCCGACCTAAACAAGTGAGAAGACATCATCGGTGTCCTAATTCCCACAAACATGAAGCATACTGAACCGATAATTTACCTTTGCAGCTCTTGTCCTTGCTCGGGACCAGCGGGACGTAGCAGTTTCTGTCTTTCCGACGTCGAAGAATGAAACAGAGCTTACCTTGAGAGCTGCAAAGTCTAAAGCTTTCCACCTTCAAAGTTCATTGAGCAGAATGAGAAACAAAGCACTCAACTTCCTTAAACCAAAAAATGAAAAAGAGAAATAGAATTCTTTCACAGACCATAGCTCCTCAACCACAACTGCACAATCTGCCAGGTTCCTTCTGGTTCTATAGCTTTTGTAGACCTTTTGTAGCTTAGTTGCTGCAGAATCCAATTCACTGACTGGCTTAGTAGAAGACATAACGACCGGCTTAGGAAGTGAAATGCTGGGTCTTCTTAGATTTTCAGGTTGTCGAATTTTTCTATCTGAGGAAGATAAACTTTTTTGGTCAACCCCCATATTGTTGAAAGAATCAGAGACTTGTTTTAGTTGCAAACTCTGTAATCTTGGTGCGTCTTTTGCTCTGATTCTTTTACCACCTCCTTCCTCTTCCAAGCTAGATTTCTGGACATTCATCTCTCTGCTCTGCAAATCTGAAGGCAAAAGGGGGTTAAATTCATTCATGG AAAAAGACATGCGCAGTCCTAGAACCTTCTACTTCGACGCCATTAAAATTCAGTTTCTTCCCTCCATTTATCATTCAATCAAACTCTAAAAACTCCTTTCTTCTTCAACTAATCAGTCATTAACCTCCCAATCTCGGATTAACTTCTTCCGATCAAAGTAGTAATGGATGAACTGAAAGTGAAACCGGAGGAGTCAGCAGTAGCCACCGGCAGGGCGGCGTCTGCTTCTTCTGTTTCTTCATCGTCTTCATCCGTCACTCCCCAGCCGATCGAAGGCCTACACGATGTCGGTCCGCCTCCATTTCTGACGAAGACCTTTGAAATGGTGGAAGATCCATTGACGGACTCCATTGTTTCCTGGAGTAAAGCTCGCAATAGTTTCATCGTTTGGGATTATCATAAATTCTCTAGTACTTTGCTGCCTCGTTACTTCAAACATTCCAATTTCTCTAGTTTCATTCGTCAACTCAATACTTATGGTTTTCGAAAAGTCGATCCTGATCGTTGGGAGTTTGCGAATGAGGGGTTTCTGGGAGGACAGAGGAATCTGTTGAGAACCATAAAGAGGAGGAGACATTCACACCAAAGCATCCAGCACCAAGGAGGAACATGTGTGGAATTAGGGCAATTTGGACTGGAAGCCGAACTTGAGAGGTTGAGAAGGGACAGAAGCTCGTTAATGGCGGAATTAGTGAGATTGAGGCAGCAACACCAGAGCTCAAGAGAGCAAATAATGGCCATGGAGGATAGGTTAGAGAAAGCAGAGAGTAAACAGAAGCAGATCATGACATTTCTCAGCAAAGCCCTCAAGAATCCTTCCTTCATTCAGAAATTTATTCATAGTAATCAGGGAAGGGAATTGAGAGGCGTTGAAATTGGAAGAAAGCGGAGACTAACTGCCAGCCCAAGTGTAGAGAATCTCCAGGATGAGAATGTGCCGGTGGCTGTTAAACAAGAAGAGCTAGAAACTTCTGAACCAGATATAGAGACGCTGTTAACGGTTAACTTTGAAGACGAGTCAAGCATTGAGATCACGGACCCTGTTTCTGATATGGGTCACTTTGCTCATGGGGAATTGGGGATCTTCAGTCAACTTTGGGCTGAAGATCTTATAGCTGGACATCCAGAAGAAGCCATAATCGTCGGTGATCAATCAGACGTTGATGTGGAAGTGGAGGATCTGATTGCTGAACCCCTGGATTGGACTGAGGACCTGCAGGAACTCGTCGATCAAATGGGGTTTCTCCGATCGAAGTCGTAGACATAACAGTGTAGTCAATTTGTTTGGCATTTTGCTTCTCTTCGTGTGGAATAGGTTTCAGCTGGCTCGTGTAGGAAGGAATCGTGGATGTTGCAGGGGAGCTACAGATTGTTCCCGTTTCCTTATATCCTTTGAAACTCATTGGTTTTTCAATATTATGTACTAAATATTTTTGGTTGTGTTAAATTGGTTTATAGTTATTTTTTTCTTCCGTGGTTTTATTTGCAGGCATGTGCAGAAAAAAGGAGAACTGCGAGAAGATTCAGTCATTTGCTGATTTCTTTACCATTAAGTGAAAGTCGGAGTAATTATCTCATTCATTAATTGAGAACCAATAACTGCTATTCATTTGAAGTGTACGAGTCTGCTGAAAACTAGAACCAAATTTTTTCCCTCTAGTGAGGTGTTCGCTATTTTTTGTGGAAGATATCAAAAAGTAGCTATTTTCCGTTGTCATAACTTAGGAAATATAGTTTTGATTAAATGTATTTTGAATCTTGATAGGCTTTTGGTCCACGATTGCTGGTTCGTGTTTGAGCTTAATAATGTTAAGCTCAGCTATGTAAGATGGAATAAACAAATTCAGAGTTCTAGGCTTCATTAACTTAATAGAAATTCTTTGATAATCTTCTATGCTGTCATGTATAATTCAATTGGTTGATAGATATCCTTTTCTGACAGAATTATAAAGAATCGCATGCTTGTCTTCTCTAGAGGAAGAAATGAAATGTACCTAGAGGTAGTAGATGCTCTCTCTTTCTTTCTCTCTGGAATGCACCTTCTTAAAGGATGAGAACTTTTGGTCAATGTCAATGGATTGGTTTTCCATATTCATGGCTTGACTGTAACTTTCCTCCATGGCATTATAAAGCATCTCACGTTTTTCTTTTTACATTTGAGATCTCTTGCATTTATAGCTTTGCTGGGATAGAAACACACATCAAGATATCATGGGCCCTAAACTGTTAAGTTGATTTCCTTTTCCCTCACGTTCGGGGGATTGGAAAATAAAATATCTGTTCTTTATTCCAGGAAGTCAATGATCCAGTGAAACAAGACATGTACTTTTCAAATAGTTACAGGTAGAAAGAACAAAGATGAGTTCCATTTACACGAATATGCGATCCAAATCAGAGGTTTTGTTAGGGGCTCCGTTAGATGGGCGCTATCACAGGCACCCTGGGGCTGGGGATCCCCATATATGAGAGCCTAGGAGACATCCTGATCTTTGGGCTTGGCCGAGGTGAAGGTATCGGAAGCGAGCTTCCGAAGAAACCCGGTGAGGGTCTTGGTGACAAGTTCACTTGCTCCAGTGCCCGTGCTTGCAACTCTGCTGGATACTCCTTCACACACCCAATTCTGGGGCCAACTCCACTGCTCCATCTGCACAGCAAACGCTTTGGTACTGCCAAATCGACTTCGTCTGCAACCATGTCTTCTGAAGATGTCGTCGATGTCTCTTCGCTCGAGTCTTTATATGAGTAGTTGTCGTCATCTACTGAACATCTCTGAGTAATTATGAAGAAAACCCCATTGGCGAAATTCAGGAAAACAAGTTGTGCAATCTGAAAAGAAGTAGATACAAAAAAACTGCATCCATGTAGATATGTCCAGATAATTACCTTGACGTTGGTCAAGTCCACTGTATGTTCTTCAAGGAAACTAATGAACTCCTTAAAATTGTTCTCTGTTGGAAGATAATGACCACTGTATGGCCATATAGCCTAAAGAAAATCCAAATGAAAACATCACCTCTATGGATTACTCTACAGAATGATTATCCAAAACAACACCCATATTCTCAAGCATTCAATTATGCACCTTAAGAATTCCATCAATAGCAACCAATCTTCCTGCAGCTGTTATAGCCCCTCCAGACAGGAAGCTGGAGTGTTGAAAGAGACCTTTCTTCTTCTGCCCCACATACAGATCTCTTGATGTGCTGAGTACAAAAATCCACTTGGAATCTTCAACTGTGTTAATGGGAATTCTGCTTTGCTTGTAAACAAGCTTCCTATTCTCCACAATCACCTGGTACTCCTCCCTTTCTTTCTGCAACAGAAATGAAGAAAAAACACTTGCTTACTGCTTGCAATGGAGTAGAAACTACAATACAATGAGGTCACCGAGAGTGGGGCTTACTGGTCCAAGGTACTTGATGCATTGCTTATACAGGACTGATCTACGGCACTTCTCAAGGTTTACCCTCTTCCCATCACCAATATCCAACCTTTTAAAAGAAAGCTTGAAGGATAAGAATGAAAGCTTTCAATAGTGCACATGGGGGAGGATTTACTTATGTAATGATACCAGCAGTTGGAGATGGAAATTTACCAGTAGAAGAAAGGTTGAGTGCTCTTGCTGTCAAACCAAACATCATAGTAAAAATGCAAGTTATGTCCATAGCGGTGGCGAGGATCAATCTGCTCAAAAGTCCAACAAAGGTAACTCAAATACAACTTTTTCAGTTGCAGATGACAATGTAGAGGATACAACAAAAGACTGAATCATATGAACTTACTGCTTCAAGCCAGTGTTGTAGAGCTAGTTTTTGAGCATTCTCATCCTTTGATAAACCTTTCCCGACCTAAACAACTCTTGTCCTTGCTCGGGACCAGCGGGACGTAGCAGTTTCTGTCTTTCCGACGTCGAAGAATGAAACAGAGCTTACCTTGAGAGCTGCAAAGTCTAAAGCTTTCCACCTTCAAAGTTCATTGAGCAGAATGAGAAACAAAGCACTCAACTTCCTTAAACCAAAAAATGAAAAAGAGAAATAGAATTCTTTCACAGACCATAGCTCCTCAACCACAACTGCACAATCTGCCAGGTTCCTTCTGGTTCTATAGCTTTTGTAGACCTTTTGTAGCTTAGTTGCTGCAGAATCCAATTCACTGACTGGCTTAGTAGAAGACATAACGACCGGCTTAGGAAGTGAAATGCTGGGTCTTCTTAGATTTTCAGGTTGTCGAATTTTTCTATCTGAGGAAGATAAACTTTTTTGGTCAACCCCCATATTGTTGAAAGAATCAGAGACTTGTTTTAGTTGCAAACTCTGTAATCTTGGTGCGTCTTTTGCTCTGATTCTTTTACCACCTCCTTCCTCTTCCAAGCTAGATTTCTGGACATTCATCTCTCTGCTCTGCAAATCTGAAGGCAAAAGGGGGTTAAATTCATTCATGG ATGGATGAACTGAAAGTGAAACCGGAGGAGTCAGCAGTAGCCACCGGCAGGGCGGCGTCTGCTTCTTCTGTTTCTTCATCGTCTTCATCCGTCACTCCCCAGCCGATCGAAGGCCTACACGATGTCGGTCCGCCTCCATTTCTGACGAAGACCTTTGAAATGGTGGAAGATCCATTGACGGACTCCATTGTTTCCTGGAGTAAAGCTCGCAATAGTTTCATCGTTTGGGATTATCATAAATTCTCTAGTACTTTGCTGCCTCGTTACTTCAAACATTCCAATTTCTCTAGTTTCATTCGTCAACTCAATACTTATGGTTTTCGAAAAGTCGATCCTGATCGTTGGGAGTTTGCGAATGAGGGGTTTCTGGGAGGACAGAGGAATCTGTTGAGAACCATAAAGAGGAGGAGACATTCACACCAAAGCATCCAGCACCAAGGAGGAACATGTGTGGAATTAGGGCAATTTGGACTGGAAGCCGAACTTGAGAGGTTGAGAAGGGACAGAAGCTCGTTAATGGCGGAATTAGTGAGATTGAGGCAGCAACACCAGAGCTCAAGAGAGCAAATAATGGCCATGGAGGATAGGTTAGAGAAAGCAGAGAGTAAACAGAAGCAGATCATGACATTTCTCAGCAAAGCCCTCAAGAATCCTTCCTTCATTCAGAAATTTATTCATAGTAATCAGGGAAGGGAATTGAGAGGCGTTGAAATTGGAAGAAAGCGGAGACTAACTGCCAGCCCAAGTGTAGAGAATCTCCAGGATGAGAATGTGCCGGTGGCTGTTAAACAAGAAGAGCTAGAAACTTCTGAACCAGATATAGAGACGCTGTTAACGGTTAACTTTGAAGACGAGTCAAGCATTGAGATCACGGACCCTGTTTCTGATATGGGTCACTTTGCTCATGGGGAATTGGGGATCTTCAGTCAACTTTGGGCTGAAGATCTTATAGCTGGACATCCAGAAGAAGCCATAATCGTCGGTGATCAATCAGACGTTGATGTGGAAGTGGAGGATCTGATTGCTGAACCCCTGGATTGGACTGAGGACCTGCAGGAACTCGTCGATCAAATGGGGTTTCTCCGATCGAAGTCGTAG MDELKVKPEESAVATGRAASASSVSSSSSSVTPQPIEGLHDVGPPPFLTKTFEMVEDPLTDSIVSWSKARNSFIVWDYHKFSSTLLPRYFKHSNFSSFIRQLNTYGFRKVDPDRWEFANEGFLGGQRNLLRTIKRRRHSHQSIQHQGGTCVELGQFGLEAELERLRRDRSSLMAELVRLRQQHQSSREQIMAMEDRLEKAESKQKQIMTFLSKALKNPSFIQKFIHSNQGRELRGVEIGRKRRLTASPSVENLQDENVPVAVKQEELETSEPDIETLLTVNFEDESSIEITDPVSDMGHFAHGELGIFSQLWAEDLIAGHPEEAIIVGDQSDVDVEVEDLIAEPLDWTEDLQELVDQMGFLRSKS
BLAST of Lsi08G015890.1 vs. Swiss-Prot
Match: HSF30_SOLPE (Heat shock factor protein HSF30 OS=Solanum peruvianum GN=HSF30 PE=2 SV=1) HSP 1 Score: 342.4 bits (877), Expect = 6.0e-93 Identity = 191/369 (51.76%), Postives = 256/369 (69.38%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. Swiss-Prot
Match: HSFA2_ARATH (Heat stress transcription factor A-2 OS=Arabidopsis thaliana GN=HSFA2 PE=1 SV=1) HSP 1 Score: 340.9 bits (873), Expect = 1.7e-92 Identity = 193/370 (52.16%), Postives = 263/370 (71.08%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. Swiss-Prot
Match: HFA2C_ORYSJ (Heat stress transcription factor A-2c OS=Oryza sativa subsp. japonica GN=HSFA2C PE=1 SV=2) HSP 1 Score: 266.9 bits (681), Expect = 3.2e-70 Identity = 154/350 (44.00%), Postives = 224/350 (64.00%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. Swiss-Prot
Match: HFA6B_ARATH (Heat stress transcription factor A-6b OS=Arabidopsis thaliana GN=HSFA6b PE=2 SV=1) HSP 1 Score: 256.5 bits (654), Expect = 4.3e-67 Identity = 129/258 (50.00%), Postives = 185/258 (71.71%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. Swiss-Prot
Match: HFA2D_ORYSJ (Heat stress transcription factor A-2d OS=Oryza sativa subsp. japonica GN=HSFA2D PE=2 SV=2) HSP 1 Score: 255.4 bits (651), Expect = 9.6e-67 Identity = 125/225 (55.56%), Postives = 172/225 (76.44%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TrEMBL
Match: A0A0A0LKS1_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G351640 PE=3 SV=1) HSP 1 Score: 640.6 bits (1651), Expect = 1.2e-180 Identity = 332/364 (91.21%), Postives = 345/364 (94.78%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TrEMBL
Match: A0A0D2VH47_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_013G220400 PE=3 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 3.5e-124 Identity = 254/381 (66.67%), Postives = 296/381 (77.69%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TrEMBL
Match: A0A0D2SI86_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_013G220400 PE=3 SV=1) HSP 1 Score: 453.0 bits (1164), Expect = 3.5e-124 Identity = 254/381 (66.67%), Postives = 296/381 (77.69%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TrEMBL
Match: A0A0M4GMH3_GOSHI (HSF39 OS=Gossypium hirsutum PE=2 SV=1) HSP 1 Score: 450.7 bits (1158), Expect = 1.7e-123 Identity = 255/386 (66.06%), Postives = 299/386 (77.46%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TrEMBL
Match: A0A061GJ61_THECC (Heat shock transcription factor A2 isoform 1 OS=Theobroma cacao GN=TCM_037308 PE=3 SV=1) HSP 1 Score: 444.1 bits (1141), Expect = 1.6e-121 Identity = 243/371 (65.50%), Postives = 295/371 (79.51%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TAIR10
Match: AT2G26150.1 (AT2G26150.1 heat shock transcription factor A2) HSP 1 Score: 340.9 bits (873), Expect = 9.8e-94 Identity = 193/370 (52.16%), Postives = 263/370 (71.08%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TAIR10
Match: AT3G22830.1 (AT3G22830.1 heat shock transcription factor A6B) HSP 1 Score: 256.5 bits (654), Expect = 2.4e-68 Identity = 129/258 (50.00%), Postives = 185/258 (71.71%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TAIR10
Match: AT4G17750.1 (AT4G17750.1 heat shock factor 1) HSP 1 Score: 232.6 bits (592), Expect = 3.8e-61 Identity = 119/218 (54.59%), Postives = 157/218 (72.02%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TAIR10
Match: AT1G32330.1 (AT1G32330.1 heat shock transcription factor A1D) HSP 1 Score: 230.7 bits (587), Expect = 1.4e-60 Identity = 127/238 (53.36%), Postives = 164/238 (68.91%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. TAIR10
Match: AT5G16820.1 (AT5G16820.1 heat shock factor 3) HSP 1 Score: 225.7 bits (574), Expect = 4.6e-59 Identity = 119/244 (48.77%), Postives = 168/244 (68.85%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. NCBI nr
Match: gi|659087445|ref|XP_008444455.1| (PREDICTED: heat stress transcription factor A-2 [Cucumis melo]) HSP 1 Score: 641.0 bits (1652), Expect = 1.3e-180 Identity = 334/366 (91.26%), Postives = 344/366 (93.99%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. NCBI nr
Match: gi|778670757|ref|XP_011649528.1| (PREDICTED: heat stress transcription factor A-2 [Cucumis sativus]) HSP 1 Score: 640.6 bits (1651), Expect = 1.7e-180 Identity = 332/364 (91.21%), Postives = 345/364 (94.78%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. NCBI nr
Match: gi|823258891|ref|XP_012462145.1| (PREDICTED: heat shock factor protein HSF30 isoform X2 [Gossypium raimondii]) HSP 1 Score: 453.0 bits (1164), Expect = 5.0e-124 Identity = 254/381 (66.67%), Postives = 296/381 (77.69%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. NCBI nr
Match: gi|823258885|ref|XP_012462142.1| (PREDICTED: heat shock factor protein HSF30 isoform X1 [Gossypium raimondii]) HSP 1 Score: 453.0 bits (1164), Expect = 5.0e-124 Identity = 254/381 (66.67%), Postives = 296/381 (77.69%), Query Frame = 1
BLAST of Lsi08G015890.1 vs. NCBI nr
Match: gi|763816069|gb|KJB82921.1| (hypothetical protein B456_013G220400 [Gossypium raimondii]) HSP 1 Score: 453.0 bits (1164), Expect = 5.0e-124 Identity = 254/381 (66.67%), Postives = 296/381 (77.69%), 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 polypeptide feature(s) derives from this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
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