Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTCTTATTCAAATAGTTACATTTCCCCATAGTCTAAAAACTCAGTAAATAATTTGCTGCAGTTCGAGGTTGAACTTTGAAGTACCGCCGCCTTCAACAACGGAGCTGCAACGCTTAACAGAAATTCAATATCTATGGTATGCAGTTACGTACCATCGCAGCTAATTGTCGCAGCACCCAAACTTTGATTTCCAGGTTATATACCAGTTTTTTTTCTAATTAATACCCTATGTTTTTCTTTCATTTTGCTAGCATTATACTTTTGTGGCATTTTTCTGGTAAATTTTTGGTTGATTATTCATTTTATGTTGTTTGATTTTCTGGGTATTTTGGGATATGATCAAATATATGCTGTAAATTAATTTCTGAAGGCTTGTTCTGATTGTATAGTTAGTTTGGTAGGTTGATTTTGTCTGGGTTCGGATTGTACAGATATTATGTGTTTTAGTGACAAGATGGTGATTTATTTTGTGGGTAATTGTTCGCTTTTAGCTGTTTATGTTGAAATTTGTAGGTAAGCGTAAACCCCATTTTGAGTAGGTGGATATCTGTGTTTCCTAAAGCACAAATGTTTTAAAGTTGGGATTGTTTGATTGGAAAGGAACAAAATATTGCGAAAATCTCAGCATGTAGTTCTGAGTCTTTAGACTATGTGTTGGATTATGATTTGGTTCATATTGATATGATTAGGACAGTACTTAGTTTGATACTACCTCATCAGATGAGGGGCCGCAATTGATTTCACTGTCGAAGATTTACTTACTCCGGCTATTAATTTCTCCAAGCACGTACCGAGTCCAGAAATTGCTAAATTTAGGGGTTTAGAGAAGTCTCGGAGGCAATTCGAAGCTTTTGAACTTATTGTTAGGTTGTAATTTTGTAAAACACTATGCCTGCGGCTAGAGGAGAGAGGGAAATAGTGGGAGCTTTCTTAGGACGGAGGAGTGTACAATGCACAAAGCATGCAACCTTTTTTTTCTGGTAAGCAAGTAATTTTATATCATTAAGACCAAAACATTGTACATCCTAAAGCATTAAGAGAGGTTCTCAACACCTAGCCACATAAAGTGTCAGAAAAACCTCAACACTAATACAATGGAAAAGATTATCTGTCACCATTAGGGATCTTCTTCCCAATAATGCCTCCAATCCTTTGCTTCACAATGCACTGAATCTCCTTCACAGCTGCCTGTAGTAGCTACCTTTTGTTCCCACCAAGCCTTATTCCGAACACTCCAAATCTTGTAAAGGGTTGCTGCCACAGCAGCCAGAGCCACATTATTCCAGAATTTAGATCTTTTTTTTTCTTTTAGTAGCCCATTTCATCAAAATATAGAAATTAGTAGTATCTTCCATAATTCCCAACTTCCTCATAATTTCCTTAATACACTGAGTACTATACTCGCAACGAAAAAATAAGTGTTTGTGAGTCTCTGTCTCGTTGTCACATATTATGCATCTCTCTGAATCACATATGAGTATTGAATGCAGCCTTTGCCTAGTCTGGAGCCTCTCATGAAAACCGGCTAAGTAATGAATCTGTGTTTGGCGATGTCAACCTGTTCCATACAAACCTGCACCATTTCACTCTCTTCCACGTACCTAGCTAAGTTTTGTAGACTTTAGCAATCTTGTAAGAGTTATAACCAGGGTCAGTCAGCCACTTATCATCTTGCAAAGCCAACCACACTTTTATCTTTACAAACACATTTCCAAGCCCAACTAGCACTATTAGGGGTCTGGTACAATGTCCAATCCTTCTCCTTATTCCTTAATATAAACAGAATGGATCACCTTACCCGTAAGTTGTCTGCCTTCCTAGAAATATCCCAAACATGCTTCCGATGGCTGCTTATTTCTAATCTCTAAGCCTCCACATTAATGCTCTTAACGACCTTATTTACCAACTGCAACTTGCCTGCAAAAATAAGTGTCTACTACACCAAACTCTGATTTTGACAGTCATTTTTCCAATCATCTTCTCGCAGTCTGCAGCATTGAGTTTCTTAGGACTCACTGGAACACCTAAGTATCTTAATGGAAGAGAACCAATCCTGAAACCAGTACTGTCTGCAATCCCTGCAACAATATCATGATCCATCCCACAAGTGAAGGTAGCTGACTTCCTGTTATTTGCCACCAGACAACTTTTAGCATTGTAGCAGAGAATAATTTCAAACCTTGAAGCAGCATAATTATGGAAGTATCCTCACCTTTGCAAAGCATAATTAAATCATATGCAAACACAAATGATTTTACTTGAGAGACTTGCATCTAGAATGAAATTTAAAGTCCCTTTGAGCACTAAATTTAGATCATGATCCTATGAGGTACTCCATACATAGAACAAAAAGCAGGGGTGACAAAGGACCCCCTTGCCTTAGTCCTCTTTGTGCTTGAAGAAACCCCGAAGGAATTCCATTTAGCATCAAAGTAAAGATGGGACCTTGGACACAATTCATGATAAGACCAGAAAAAAAGGCGGGAAACCCAAGACTTGAGAGCATCTCTTGAAGGAAACCCCACTCAACTGTATCTTAGGCCTTTTGTACATCAAGTTTGAACATATGTACTTCTTTGGCTTCTCTTATATAACTCACAAGATCTTGACAGATCAGAACATTGTGAAGTATACTCCTTCCTGAAATAAAGGCTCCCTGGGTGTTTGAGTCTTTGAGATCAAACTTGACAAGACCAATCTCAGCTTTTCACACAAAAGTTTGGTGATACACTTGTAAATCACAGGCTCACAACACAACAAGAAATGGGTCTGTAGTCCCGTACTGTACTAGGGCAATATACTTTAGGAACCAAAGTGACAGGTGACATTCAATTCCTTTAGTAATTTCCCAGACTTAAAAAGTCCAAAAGAGCTCTGAGATTTCATCACCTACCACATCCCATGAAGACTTGAAGAAGAAACTATTATAGAATTATACTCATCAAGGCCCGGGAACTTATCATTTGGTATAGAAAACATAACCCTTTTCACATCATCTCGAGTGAGTCAATCAACAAGAGAAGTGAGAATGGCTTCCAATTTGGGCCCCTTGGTCCACAATAATGTCTTTCACACTACTTCTATCTTCCTTACAATTATCCAGCAAGTTTTGGTAGTATTCGATTCGTTAACCCAAACACCATCTCCTCTCTGGATAGCATGAACCCTATTTTTGTACCTTCTGCTTTTAATACTCTGGTAAAATTTATTAGTATTTTCTTCACCATTTTCCAACCATTGAAGCTTTGCTTTCCGTCTCAAAAAAGACGGGAAAACCTCATGCGCTTGCTTATAATCGTTAGCTGCCTTTTTCTCCATATTAGCTAACTCAGAAACCTGTGGTCATTGATGCATCTCTCCTTGCACCTCAAGGAGCTATTGGAATGCCAAGGTGTCAGCTGCTTGAACATCACTAATTGGCGGAGACCGGGGGGGCTGGTAGTAGACCTGGTTATTGGACAGGATAGTCCAATGGATATAGGGTTAGGGTCAAGTTAATAGGGCTTTTATTGGACAGTGCTCTTATTGGACAGGGCCTTTATTGGACAGGGTCATTATAGGGTCAAACTTATACTACAATTATTTTGAAAATTAAAATAGTAATGATACAAAAAATTACGTGTATAACTTCGTATTTACTTGTACTTGCACATGGCTCTTTTGTTTTTCATTTTTCATTGCTCGTTTATTGACCCGCCCACTAATGACCCGCTATTGACCCGCGACCCGCTTTTGACCCGCCCATTATCGACCCGCTAAAAATGACCCTTTCAATACCCGACCCTATTTTGACCCGCACCGACCCTGACCCNNNNNNNNNNNNNNNNNNNNNNNNNNNNACAAATCCTGGCTCCGCCACTGTTGACACTAAAGCCTTCCTGGTTCAACCTTTCTAAGTCACCTTTCAAGCCCCTTAACTTCTTTGGAACATGGAACATAGCACACCCTTGAACCCCTTGCAGCCATGCCCTTTTCACCAAGCCTAAAAACTTTGGAGCAGAATCCCACGTATTAAAAAGCCTAAATGGTTTTTTCCTATCGGAGCTTCAGGGTCATGCCACACTGTTGATGGGTTTAGGTTTGTTGGAAATACTTGGGAATGAGATTCAGGAGTCCTAGTCAAATTTCTTTGAGAAATCACTGTAGGTTTGCCTCGCAGGACATAAGTTCAAATCTTTTCAGTGTTTTTTTTCTTCTGATTTCTAGATACCTAGCGAAATCTATTTTGAGGCTAATTTTAATTCAATGTTCCTGTCATAAAAAATACTACGTAAAAGAACTGAATTCAATTTTTCAAATACTACGAGTCTATGATTATGAGTTATGTTTCTGGATGTCTTAATTTGTTACTTCCTTATATCCCATTTGTGTATTTTTTTTCCAAGAAAATTTTGTTGAACAAGTGCATGTGTTTCAGCTGCCACAAAAAAAAAAAAAAATTAAGAAAGAAAGAAAGAAAGAAAAAGCTTATGTTTCTGGACACTGTTATTTGACTTATTTCCTATTGTCATGTGACGTGTATATTCTATAATTCTAATTAGCTATATAATCTCTGTACTAAAATTGTATTTTTCACTTAGCAGGCGCCTACAACAGCTCCAGAGCGGCTACTCCACACAAAATTCAGAATCCTATCCTCTGATGGATTCTTCAGAGCGTTATTGCTATAACCCAACTCTTCATTGGAATCCCCAGGTTGAAGAATACTTCATAAAGGCATATGGTGCTGACCATTTCAGTAGGATCTCTAACGCCCTTACTCGCCCTTCTAGCTATTCTTGCCTACGTGTTAATATTCTGAAAACAACAACTGATGCTGTCATTGAGAAGCTGTTGTCAATCCAACATGGAACAGATGGCAAAGGCATAAACAATAATCTCATACACAAGTGCCCGATTCCTGGGTTAGATTATGTTGTCTTTGTTCGAGGCACAGGGCCTCATGAAATTGATTATGCTTATGCACCTGAACAGCCTGTAAAGGAGGTCATTGTAAGCCGCAAATGTGCTGAGGCTGTTCTTCGGGGTGCTCAAGTGTATGTCCCTGGTGTTTTGGCATGTAGTGCTCATGTTGAAGAAGGAGACTCAGTTGCTGTTTCTGTTGCCATTGAGCAACATGTACCTGGCGGTAAATGGGGTACTGGAATAACACGTGGGATTGTACTTCAGGGCTTAGAGACAGATCCCCAATATTTTCAGCGAAAAGGCCTATATATTGGCCAAGGAACTACAATGATGTCCAGGGCTGGGATTTTCCGAGTGTTACAAGGTGTGGCCATTTCTATGAGTAACAGGGTATTTAATCTTCCTTCTTTCAACAACGTGCTTGAAGGTGATATTTTTCTCCAGAACCTTCCGAGCATTATTGTTGCTCATGCGTTAGATCCTCAGAAGGGTGAAAGGATATTGGACATGTGTGCAGCTCCAGGGGGTAAAACAACTGCCATCGCGATGCTTATGAGAGATGAAGGAGAGGTAGTTGCTGCAGATCGATCACACAACAAGGTAATTGATGTTCAAAATTTGGCTGCCGAAATGGGCTTGAAGTCTATAGTTACATGCAAGTTAGATGCTGTGAAGTCTGTTGCTACAGAAAAAGTATCTGACATTGACGTGACTGAAGATACTTCAAGTTCAAAGTCTTGTTCTATTGTTAAAGAAAAGTTAAATGGAAATATGTTACACAAGGAAAATGTTGTGTCTAACCGCAGGAAGGATAAAGATAGCATAAAAAATGGGATTGGAAAGAATCACGTAAGTGGTGGTAGAGTTGAAAAATCAAAAGGTTTTGCTCGTAATAGTTTCGATAGAGTTCTCCTTGATGCACCTTGTTCTGCTCTTGGTTTGAGACCACGATTGTTAGCTGGTGAGGAAACCTTGGAATCTTTGAAGAGTCATAAGTTATACCAGAGGAAGATGTTTGATCAAGCGGTTCAACTGGTTCGCCCTGGAGGGGTACTTGTATACTCAACCTGTACAATAAATCCTGGTGAAAATGAAGCACTGGTGCGTTATGCTCTTGATACATATAAATTTCTGTCACTGGCACCCCAACATCCAAGAGTTGGTGGGCCGGGCCTGGTTGGTCGTTGTGAGTTATCTGACGGGTACATTGAAGAATGGTTAAGGCCCGGGGAAGAGGAACTTGTGCAGAGGTTTGATCCTTCTACATCTGACACAATCGGGTTTTTTATAGCCAAGTTTAATGTAGGCTGCAAAGACACATGAGTCTTGTTCAACATAGACAGGTAGATACTGGATTCTTTTGTCATCACCGTTTACCAGATCTCTTTGCCAAACCTTTAACATTCAAAAGATAACGTTTGAAGTTTGAATCAACAACATTCCATAGTGGTGTTAGCTTCTGATGATGATTTTCTTTTTTATTTGAAGAACTTGGAAAACATTCATGTTATGTAATCATATTCATTCATTGATATAGTGTCTGTAAACTGGAAGTGATTTCATCAATGCATGTTACTATCTGATTCCAAAGAAAAGAACTTAACTCATTAATGTTCTTATGATAAAATTTCAAAGATTGTTATGTTTCTCCTTGAGAATGACATACAGAACAAAATGTTCAAGTCATGGTGAAGCTCGCAACAGCATAAGGGTTCTCCTGCAGCTTGTATTAGACTCGGCCTACACAAAGAAAGTTGTCGTGAACCGCAATCTCACAGAGTCAGAGTATAGCACTTGATGACGAACCCTATAGACCAAACCCCTTCTGTTGACGATCACCATCCATCTAAGTTTTAACAGTATGTTTGGTTCGCATTTACAATTACAGGGAAAAAATGTGAAGGAAACGAAGGCTCGTGCTTCTATGACTCAAGGCTAAAAAAG TTCTTATTCAAATAGTTACATTTCCCCATAGTCTAAAAACTCAGTAAATAATTTGCTGCAGTTCGAGGTTGAACTTTGAAGTACCGCCGCCTTCAACAACGGAGCTGCAACGCTTAACAGAAATTCAATATCTATGGTATGCAGTTACGTACCATCGCAGCTAATTGTCGCAGCACCCAAACTTTGATTTCCAGGCGCCTACAACAGCTCCAGAGCGGCTACTCCACACAAAATTCAGAATCCTATCCTCTGATGGATTCTTCAGAGCGTTATTGCTATAACCCAACTCTTCATTGGAATCCCCAGGTTGAAGAATACTTCATAAAGGCATATGGTGCTGACCATTTCAGTAGGATCTCTAACGCCCTTACTCGCCCTTCTAGCTATTCTTGCCTACGTGTTAATATTCTGAAAACAACAACTGATGCTGTCATTGAGAAGCTGTTGTCAATCCAACATGGAACAGATGGCAAAGGCATAAACAATAATCTCATACACAAGTGCCCGATTCCTGGGTTAGATTATGTTGTCTTTGTTCGAGGCACAGGGCCTCATGAAATTGATTATGCTTATGCACCTGAACAGCCTGTAAAGGAGGTCATTGTAAGCCGCAAATGTGCTGAGGCTGTTCTTCGGGGTGCTCAAGTGTATGTCCCTGGTGTTTTGGCATGTAGTGCTCATGTTGAAGAAGGAGACTCAGTTGCTGTTTCTGTTGCCATTGAGCAACATGTACCTGGCGGTAAATGGGGTACTGGAATAACACGTGGGATTGTACTTCAGGGCTTAGAGACAGATCCCCAATATTTTCAGCGAAAAGGCCTATATATTGGCCAAGGAACTACAATGATGTCCAGGGCTGGGATTTTCCGAGTGTTACAAGGTGTGGCCATTTCTATGAGTAACAGGGTATTTAATCTTCCTTCTTTCAACAACGTGCTTGAAGGTGATATTTTTCTCCAGAACCTTCCGAGCATTATTGTTGCTCATGCGTTAGATCCTCAGAAGGGTGAAAGGATATTGGACATGTGTGCAGCTCCAGGGGGTAAAACAACTGCCATCGCGATGCTTATGAGAGATGAAGGAGAGGTAGTTGCTGCAGATCGATCACACAACAAGGTAATTGATGTTCAAAATTTGGCTGCCGAAATGGGCTTGAAGTCTATAGTTACATGCAAGTTAGATGCTGTGAAGTCTGTTGCTACAGAAAAAGTATCTGACATTGACGTGACTGAAGATACTTCAAGTTCAAAGTCTTGTTCTATTGTTAAAGAAAAGTTAAATGGAAATATGTTACACAAGGAAAATGTTGTGTCTAACCGCAGGAAGGATAAAGATAGCATAAAAAATGGGATTGGAAAGAATCACGTAAGTGGTGGTAGAGTTGAAAAATCAAAAGGTTTTGCTCGTAATAGTTTCGATAGAGTTCTCCTTGATGCACCTTGTTCTGCTCTTGGTTTGAGACCACGATTGTTAGCTGGTGAGGAAACCTTGGAATCTTTGAAGAGTCATAAGTTATACCAGAGGAAGATGTTTGATCAAGCGGTTCAACTGGTTCGCCCTGGAGGGGTACTTGTATACTCAACCTGTACAATAAATCCTGGTGAAAATGAAGCACTGGTGCGTTATGCTCTTGATACATATAAATTTCTGTCACTGGCACCCCAACATCCAAGAGTTGGTGGGCCGGGCCTGGTTGGTCGTTGTGAGTTATCTGACGGGTACATTGAAGAATGGTTAAGGCCCGGGGAAGAGGAACTTGTGCAGAGGTTTGATCCTTCTACATCTGACACAATCGGGTTTTTTATAGCCAAGTTTAATGTAGGCTGCAAAGACACATGAGTCTTGTTCAACATAGACAGGTAGATACTGGATTCTTTTGTCATCACCGTTTACCAGATCTCTTTGCCAAACCTTTAACATTCAAAAGATAACGTTTGAAGTTTGAATCAACAACATTCCATAGTGGTGTTAGCTTCTGATGATGATTTTCTTTTTTATTTGAAGAACTTGGAAAACATTCATGTTATGTAATCATATTCATTCATTGATATAGTGTCTGTAAACTGGAAGTGATTTCATCAATGCATGTTACTATCTGATTCCAAAGAAAAGAACTTAACTCATTAATGTTCTTATGATAAAATTTCAAAGATTGTTATGTTTCTCCTTGAGAATGACATACAGAACAAAATGTTCAAGTCATGGTGAAGCTCGCAACAGCATAAGGGTTCTCCTGCAGCTTGTATTAGACTCGGCCTACACAAAGAAAGTTGTCGTGAACCGCAATCTCACAGAGTCAGAGTATAGCACTTGATGACGAACCCTATAGACCAAACCCCTTCTGTTGACGATCACCATCCATCTAAGTTTTAACAGTATGTTTGGTTCGCATTTACAATTACAGGGAAAAAATGTGAAGGAAACGAAGGCTCGTGCTTCTATGACTCAAGGCTAAAAAAG ATGCAGTTACGTACCATCGCAGCTAATTGTCGCAGCACCCAAACTTTGATTTCCAGGCGCCTACAACAGCTCCAGAGCGGCTACTCCACACAAAATTCAGAATCCTATCCTCTGATGGATTCTTCAGAGCGTTATTGCTATAACCCAACTCTTCATTGGAATCCCCAGGTTGAAGAATACTTCATAAAGGCATATGGTGCTGACCATTTCAGTAGGATCTCTAACGCCCTTACTCGCCCTTCTAGCTATTCTTGCCTACGTGTTAATATTCTGAAAACAACAACTGATGCTGTCATTGAGAAGCTGTTGTCAATCCAACATGGAACAGATGGCAAAGGCATAAACAATAATCTCATACACAAGTGCCCGATTCCTGGGTTAGATTATGTTGTCTTTGTTCGAGGCACAGGGCCTCATGAAATTGATTATGCTTATGCACCTGAACAGCCTGTAAAGGAGGTCATTGTAAGCCGCAAATGTGCTGAGGCTGTTCTTCGGGGTGCTCAAGTGTATGTCCCTGGTGTTTTGGCATGTAGTGCTCATGTTGAAGAAGGAGACTCAGTTGCTGTTTCTGTTGCCATTGAGCAACATGTACCTGGCGGTAAATGGGGTACTGGAATAACACGTGGGATTGTACTTCAGGGCTTAGAGACAGATCCCCAATATTTTCAGCGAAAAGGCCTATATATTGGCCAAGGAACTACAATGATGTCCAGGGCTGGGATTTTCCGAGTGTTACAAGGTGTGGCCATTTCTATGAGTAACAGGGTATTTAATCTTCCTTCTTTCAACAACGTGCTTGAAGGTGATATTTTTCTCCAGAACCTTCCGAGCATTATTGTTGCTCATGCGTTAGATCCTCAGAAGGGTGAAAGGATATTGGACATGTGTGCAGCTCCAGGGGGTAAAACAACTGCCATCGCGATGCTTATGAGAGATGAAGGAGAGGTAGTTGCTGCAGATCGATCACACAACAAGGTAATTGATGTTCAAAATTTGGCTGCCGAAATGGGCTTGAAGTCTATAGTTACATGCAAGTTAGATGCTGTGAAGTCTGTTGCTACAGAAAAAGTATCTGACATTGACGTGACTGAAGATACTTCAAGTTCAAAGTCTTGTTCTATTGTTAAAGAAAAGTTAAATGGAAATATGTTACACAAGGAAAATGTTGTGTCTAACCGCAGGAAGGATAAAGATAGCATAAAAAATGGGATTGGAAAGAATCACGTAAGTGGTGGTAGAGTTGAAAAATCAAAAGGTTTTGCTCGTAATAGTTTCGATAGAGTTCTCCTTGATGCACCTTGTTCTGCTCTTGGTTTGAGACCACGATTGTTAGCTGGTGAGGAAACCTTGGAATCTTTGAAGAGTCATAAGTTATACCAGAGGAAGATGTTTGATCAAGCGGTTCAACTGGTTCGCCCTGGAGGGGTACTTGTATACTCAACCTGTACAATAAATCCTGGTGAAAATGAAGCACTGGTGCGTTATGCTCTTGATACATATAAATTTCTGTCACTGGCACCCCAACATCCAAGAGTTGGTGGGCCGGGCCTGGTTGGTCGTTGTGAGTTATCTGACGGGTACATTGAAGAATGGTTAAGGCCCGGGGAAGAGGAACTTGTGCAGAGGTTTGATCCTTCTACATCTGACACAATCGGGTTTTTTATAGCCAAGTTTAATGTAGGCTGCAAAGACACATGA MQLRTIAANCRSTQTLISRRLQQLQSGYSTQNSESYPLMDSSERYCYNPTLHWNPQVEEYFIKAYGADHFSRISNALTRPSSYSCLRVNILKTTTDAVIEKLLSIQHGTDGKGINNNLIHKCPIPGLDYVVFVRGTGPHEIDYAYAPEQPVKEVIVSRKCAEAVLRGAQVYVPGVLACSAHVEEGDSVAVSVAIEQHVPGGKWGTGITRGIVLQGLETDPQYFQRKGLYIGQGTTMMSRAGIFRVLQGVAISMSNRVFNLPSFNNVLEGDIFLQNLPSIIVAHALDPQKGERILDMCAAPGGKTTAIAMLMRDEGEVVAADRSHNKVIDVQNLAAEMGLKSIVTCKLDAVKSVATEKVSDIDVTEDTSSSKSCSIVKEKLNGNMLHKENVVSNRRKDKDSIKNGIGKNHVSGGRVEKSKGFARNSFDRVLLDAPCSALGLRPRLLAGEETLESLKSHKLYQRKMFDQAVQLVRPGGVLVYSTCTINPGENEALVRYALDTYKFLSLAPQHPRVGGPGLVGRCELSDGYIEEWLRPGEEELVQRFDPSTSDTIGFFIAKFNVGCKDT Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo02039.1 vs. NCBI nr
Match: gi|902181537|gb|KNA09763.1| (hypothetical protein SOVF_150590 [Spinacia oleracea]) HSP 1 Score: 1060.4 bits (2741), Expect = 1.100e-306 Identity = 528/528 (100.00%), Postives = 528/528 (100.00%), Query Frame = 1
BLAST of Spo02039.1 vs. NCBI nr
Match: gi|731316559|ref|XP_010696022.1| (PREDICTED: putative methyltransferase NSUN6 isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 924.5 bits (2388), Expect = 9.100e-266 Identity = 469/578 (81.14%), Postives = 510/578 (88.24%), Query Frame = 1
BLAST of Spo02039.1 vs. NCBI nr
Match: gi|731316561|ref|XP_010696029.1| (PREDICTED: putative methyltransferase NSUN6 isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 894.0 bits (2309), Expect = 1.300e-256 Identity = 448/540 (82.96%), Postives = 486/540 (90.00%), Query Frame = 1
BLAST of Spo02039.1 vs. NCBI nr
Match: gi|802540594|ref|XP_012077363.1| (PREDICTED: putative methyltransferase NSUN6 isoform X1 [Jatropha curcas]) HSP 1 Score: 745.3 bits (1923), Expect = 7.600e-212 Identity = 380/551 (68.97%), Postives = 435/551 (78.95%), Query Frame = 1
BLAST of Spo02039.1 vs. NCBI nr
Match: gi|567889226|ref|XP_006437135.1| (hypothetical protein CICLE_v10031016mg [Citrus clementina]) HSP 1 Score: 741.9 bits (1914), Expect = 8.400e-211 Identity = 385/568 (67.78%), Postives = 437/568 (76.94%), Query Frame = 1
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QSV1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_150590 PE=4 SV=1) HSP 1 Score: 1060.4 bits (2741), Expect = 7.400e-307 Identity = 528/528 (100.00%), Postives = 528/528 (100.00%), Query Frame = 1
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Match: A0A0J8FT81_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g030160 PE=4 SV=1) HSP 1 Score: 894.0 bits (2309), Expect = 9.200e-257 Identity = 448/540 (82.96%), Postives = 486/540 (90.00%), Query Frame = 1
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Match: A0A067LEG9_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_17240 PE=4 SV=1) HSP 1 Score: 745.3 bits (1923), Expect = 5.300e-212 Identity = 380/551 (68.97%), Postives = 435/551 (78.95%), Query Frame = 1
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Match: V4TFJ2_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10031016mg PE=4 SV=1) HSP 1 Score: 741.9 bits (1914), Expect = 5.800e-211 Identity = 385/568 (67.78%), Postives = 437/568 (76.94%), Query Frame = 1
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Match: B9SPX7_RICCO (RNA binding protein, putative OS=Ricinus communis GN=RCOM_1102310 PE=4 SV=1) HSP 1 Score: 738.4 bits (1905), Expect = 6.400e-210 Identity = 380/568 (66.90%), Postives = 442/568 (77.82%), Query Frame = 1
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Match: NSUN6_MOUSE (Putative methyltransferase NSUN6 OS=Mus musculus GN=Nsun6 PE=2 SV=2) HSP 1 Score: 158.7 bits (400), Expect = 1.900e-37 Identity = 114/326 (34.97%), Postives = 163/326 (50.00%), Query Frame = 1
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Match: NSUN6_HUMAN (Putative methyltransferase NSUN6 OS=Homo sapiens GN=NSUN6 PE=1 SV=1) HSP 1 Score: 154.5 bits (389), Expect = 3.600e-36 Identity = 112/330 (33.94%), Postives = 162/330 (49.09%), Query Frame = 1
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Match: TRCM_PYRAB (tRNA (cytosine(49)-C(5))-methyltransferase OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=PYRAB06230 PE=1 SV=1) HSP 1 Score: 75.1 bits (183), Expect = 2.800e-12 Identity = 52/144 (36.11%), Postives = 78/144 (54.17%), Query Frame = 1
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Match: TRM4B_SCHPO (Multisite-specific tRNA:(cytosine-C(5))-methyltransferase trm4b OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trm4b PE=3 SV=2) HSP 1 Score: 71.2 bits (173), Expect = 4.000e-11 Identity = 88/321 (27.41%), Postives = 132/321 (41.12%), Query Frame = 1
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Match: RSMF_ECOL6 (Ribosomal RNA small subunit methyltransferase F OS=Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC) GN=rsmF PE=3 SV=2) HSP 1 Score: 70.5 bits (171), Expect = 6.800e-11 Identity = 48/140 (34.29%), Postives = 65/140 (46.43%), Query Frame = 1
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Match: AT1G06560.1 (NOL1/NOP2/sun family protein) HSP 1 Score: 702.2 bits (1811), Expect = 2.600e-202 Identity = 370/590 (62.71%), Postives = 438/590 (74.24%), Query Frame = 1
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Match: AT4G26600.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 73.9 bits (180), Expect = 3.500e-13 Identity = 49/149 (32.89%), Postives = 76/149 (51.01%), Query Frame = 1
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Match: AT5G55920.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 68.2 bits (165), Expect = 1.900e-11 Identity = 47/151 (31.13%), Postives = 75/151 (49.67%), Query Frame = 1
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Match: AT5G66180.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 67.0 bits (162), Expect = 4.200e-11 Identity = 74/304 (24.34%), Postives = 124/304 (40.79%), Query Frame = 1
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Match: AT3G13180.1 (NOL1/NOP2/sun family protein / antitermination NusB domain-containing protein) HSP 1 Score: 66.2 bits (160), Expect = 7.200e-11 Identity = 36/85 (42.35%), Postives = 50/85 (58.82%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo02039.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo02039.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo02039.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo02039.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
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