Protein ID | Ophun1|1095 |
Gene name | |
Location | Contig_141:5257..7781 |
Strand | + |
Gene length (bp) | 2524 |
Transcript length (bp) | 2457 |
Coding sequence length (bp) | 2457 |
Protein length (aa) | 819 |
PFAM Domain ID | Short name | Long name | E-value | Start | End |
---|---|---|---|---|---|
PF00515 | TPR_1 | Tetratricopeptide repeat | 2.1E-07 | 593 | 625 |
PF07719 | TPR_2 | Tetratricopeptide repeat | 7.3E-06 | 592 | 624 |
PF12895 | ANAPC3 | Anaphase-promoting complex, cyclosome, subunit 3 | 1.4E-17 | 24 | 101 |
PF13181 | TPR_8 | Tetratricopeptide repeat | 7.8E-02 | 127 | 158 |
PF13181 | TPR_8 | Tetratricopeptide repeat | 4.7E-02 | 593 | 624 |
PF13432 | TPR_16 | Tetratricopeptide repeat | 2.1E-08 | 631 | 693 |
PF13432 | TPR_16 | Tetratricopeptide repeat | 1.9E-02 | 701 | 747 |
PF13176 | TPR_7 | Tetratricopeptide repeat | 7.1E-03 | 594 | 623 |
Swissprot ID | Swissprot Description | Start | End | E-value |
---|---|---|---|---|
sp|P17885|BIMA_EMENI | Protein bimA OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=bimA PE=2 SV=1 | 1 | 806 | 0.0E+00 |
sp|P10505|APC3_SCHPO | Anaphase-promoting complex subunit 3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=nuc2 PE=1 SV=3 | 488 | 814 | 3.0E-99 |
sp|Q4V8A2|CDC27_RAT | Cell division cycle protein 27 homolog OS=Rattus norvegicus GN=Cdc27 PE=2 SV=1 | 477 | 818 | 6.0E-75 |
sp|A2A6Q5|CDC27_MOUSE | Cell division cycle protein 27 homolog OS=Mus musculus GN=Cdc27 PE=1 SV=1 | 488 | 818 | 2.0E-74 |
sp|A7Z061|CDC27_BOVIN | Cell division cycle protein 27 homolog OS=Bos taurus GN=CDC27 PE=2 SV=1 | 488 | 818 | 2.0E-74 |
Swissprot ID | Swissprot Description | Start | End | E-value |
---|---|---|---|---|
sp|P17885|BIMA_EMENI | Protein bimA OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=bimA PE=2 SV=1 | 1 | 806 | 0.0E+00 |
sp|P10505|APC3_SCHPO | Anaphase-promoting complex subunit 3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=nuc2 PE=1 SV=3 | 488 | 814 | 3.0E-99 |
sp|Q4V8A2|CDC27_RAT | Cell division cycle protein 27 homolog OS=Rattus norvegicus GN=Cdc27 PE=2 SV=1 | 477 | 818 | 6.0E-75 |
sp|A2A6Q5|CDC27_MOUSE | Cell division cycle protein 27 homolog OS=Mus musculus GN=Cdc27 PE=1 SV=1 | 488 | 818 | 2.0E-74 |
sp|A7Z061|CDC27_BOVIN | Cell division cycle protein 27 homolog OS=Bos taurus GN=CDC27 PE=2 SV=1 | 488 | 818 | 2.0E-74 |
sp|P30260|CDC27_HUMAN | Cell division cycle protein 27 homolog OS=Homo sapiens GN=CDC27 PE=1 SV=2 | 488 | 818 | 2.0E-74 |
sp|P38042|CDC27_YEAST | Anaphase-promoting complex subunit CDC27 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC27 PE=1 SV=2 | 502 | 804 | 2.0E-69 |
sp|Q8LGU6|CD27B_ARATH | Cell division cycle protein 27 homolog B OS=Arabidopsis thaliana GN=CDC27B PE=1 SV=1 | 488 | 815 | 7.0E-66 |
sp|Q06AN9|CD27A_ARATH | Cell division cycle protein 27 homolog A OS=Arabidopsis thaliana GN=CDC27A PE=1 SV=2 | 432 | 806 | 6.0E-62 |
sp|Q54J83|APC3_DICDI | Anaphase-promoting complex subunit 3 OS=Dictyostelium discoideum GN=anapc3 PE=3 SV=1 | 488 | 814 | 9.0E-61 |
sp|Q9N593|CDC27_CAEEL | Cell division cycle protein 27 homolog OS=Caenorhabditis elegans GN=mat-1 PE=1 SV=1 | 336 | 809 | 1.0E-45 |
sp|A1A4R8|CDC23_BOVIN | Cell division cycle protein 23 homolog OS=Bos taurus GN=CDC23 PE=2 SV=1 | 507 | 774 | 1.0E-25 |
sp|Q9UJX2|CDC23_HUMAN | Cell division cycle protein 23 homolog OS=Homo sapiens GN=CDC23 PE=1 SV=3 | 507 | 774 | 2.0E-25 |
sp|Q8BGZ4|CDC23_MOUSE | Cell division cycle protein 23 homolog OS=Mus musculus GN=Cdc23 PE=1 SV=2 | 507 | 774 | 2.0E-25 |
sp|Q9STS3|CDC23_ARATH | Anaphase-promoting complex subunit 8 OS=Arabidopsis thaliana GN=APC8 PE=1 SV=1 | 494 | 722 | 2.0E-22 |
sp|P10505|APC3_SCHPO | Anaphase-promoting complex subunit 3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=nuc2 PE=1 SV=3 | 12 | 206 | 2.0E-21 |
sp|Q86B11|CDC23_DICDI | Anaphase-promoting complex subunit 8 OS=Dictyostelium discoideum GN=anapc8 PE=3 SV=1 | 497 | 779 | 2.0E-21 |
sp|O94556|APC8_SCHPO | Anaphase-promoting complex subunit 8 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=cut23 PE=1 SV=2 | 535 | 720 | 2.0E-19 |
sp|P16522|CDC23_YEAST | Anaphase-promoting complex subunit CDC23 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC23 PE=1 SV=1 | 505 | 802 | 2.0E-15 |
sp|Q19294|CDC23_CAEEL | Cell division cycle protein 23 homolog OS=Caenorhabditis elegans GN=mat-3 PE=1 SV=2 | 547 | 720 | 1.0E-13 |
sp|O18158|OGT1_CAEEL | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase OS=Caenorhabditis elegans GN=ogt-1 PE=1 SV=2 | 594 | 796 | 1.0E-10 |
sp|P56558|OGT1_RAT | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Rattus norvegicus GN=Ogt PE=1 SV=1 | 530 | 796 | 1.0E-09 |
sp|P81436|OGT1_RABIT | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Oryctolagus cuniculus GN=OGT PE=1 SV=2 | 530 | 796 | 1.0E-09 |
sp|Q5T4D3|TMTC4_HUMAN | Transmembrane and TPR repeat-containing protein 4 OS=Homo sapiens GN=TMTC4 PE=2 SV=2 | 598 | 796 | 1.0E-09 |
sp|Q8CGY8|OGT1_MOUSE | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Mus musculus GN=Ogt PE=1 SV=2 | 530 | 796 | 1.0E-09 |
sp|Q27HV0|OGT1_PIG | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Sus scrofa GN=OGT PE=2 SV=1 | 530 | 796 | 1.0E-09 |
sp|O15294|OGT1_HUMAN | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Homo sapiens GN=OGT PE=1 SV=3 | 530 | 796 | 1.0E-09 |
sp|P38042|CDC27_YEAST | Anaphase-promoting complex subunit CDC27 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC27 PE=1 SV=2 | 12 | 180 | 2.0E-09 |
sp|P30260|CDC27_HUMAN | Cell division cycle protein 27 homolog OS=Homo sapiens GN=CDC27 PE=1 SV=2 | 12 | 171 | 3.0E-09 |
sp|A2A6Q5|CDC27_MOUSE | Cell division cycle protein 27 homolog OS=Mus musculus GN=Cdc27 PE=1 SV=1 | 12 | 182 | 3.0E-09 |
sp|Q4V8A2|CDC27_RAT | Cell division cycle protein 27 homolog OS=Rattus norvegicus GN=Cdc27 PE=2 SV=1 | 12 | 182 | 3.0E-09 |
sp|O18158|OGT1_CAEEL | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase OS=Caenorhabditis elegans GN=ogt-1 PE=1 SV=2 | 591 | 817 | 3.0E-09 |
sp|P56558|OGT1_RAT | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Rattus norvegicus GN=Ogt PE=1 SV=1 | 594 | 796 | 4.0E-09 |
sp|Q8CGY8|OGT1_MOUSE | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Mus musculus GN=Ogt PE=1 SV=2 | 594 | 796 | 4.0E-09 |
sp|O15294|OGT1_HUMAN | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Homo sapiens GN=OGT PE=1 SV=3 | 594 | 796 | 4.0E-09 |
sp|A7Z061|CDC27_BOVIN | Cell division cycle protein 27 homolog OS=Bos taurus GN=CDC27 PE=2 SV=1 | 12 | 182 | 4.0E-09 |
sp|P81436|OGT1_RABIT | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Oryctolagus cuniculus GN=OGT PE=1 SV=2 | 594 | 796 | 4.0E-09 |
sp|Q27HV0|OGT1_PIG | UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase 110 kDa subunit OS=Sus scrofa GN=OGT PE=2 SV=1 | 594 | 796 | 4.0E-09 |
sp|O77033|CYC8_DICDI | General transcriptional corepressor trfA OS=Dictyostelium discoideum GN=trfA PE=2 SV=1 | 505 | 740 | 5.0E-09 |
sp|Q9M8Y0|SEC_ARATH | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SEC OS=Arabidopsis thaliana GN=SEC PE=2 SV=1 | 527 | 816 | 2.0E-08 |
sp|Q8BG19|TMTC4_MOUSE | Transmembrane and TPR repeat-containing protein 4 OS=Mus musculus GN=Tmtc4 PE=2 SV=1 | 598 | 796 | 2.0E-08 |
sp|Q9M8Y0|SEC_ARATH | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SEC OS=Arabidopsis thaliana GN=SEC PE=2 SV=1 | 592 | 793 | 2.0E-08 |
sp|Q8RVB2|SPY_SOLLC | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Solanum lycopersicum GN=SPY PE=2 SV=1 | 593 | 795 | 4.0E-08 |
sp|O82039|SPY_PETHY | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Petunia hybrida GN=SPY PE=2 SV=1 | 593 | 795 | 4.0E-08 |
sp|P14922|CYC8_YEAST | General transcriptional corepressor CYC8 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CYC8 PE=1 SV=2 | 530 | 723 | 9.0E-08 |
sp|O60184|CYC8_SCHPO | General transcriptional corepressor ssn6 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=ssn6 PE=1 SV=1 | 530 | 725 | 1.0E-07 |
sp|O82422|SPY_HORVU | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Hordeum vulgare GN=SPY PE=2 SV=1 | 593 | 795 | 6.0E-07 |
sp|Q96301|SPY_ARATH | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Arabidopsis thaliana GN=SPY PE=1 SV=1 | 584 | 796 | 1.0E-06 |
sp|Q9Z3Q0|CYA3_RHIME | Putative adenylate cyclase 3 OS=Rhizobium meliloti (strain 1021) GN=cya3 PE=3 SV=2 | 610 | 793 | 2.0E-06 |
sp|Q58350|Y940_METJA | TPR repeat-containing protein MJ0940 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0940 PE=3 SV=1 | 585 | 793 | 4.0E-06 |
sp|P09798|CDC16_YEAST | Anaphase-promoting complex subunit CDC16 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC16 PE=1 SV=1 | 564 | 804 | 4.0E-06 |
sp|Q8DIQ6|YCF3_THEEB | Photosystem I assembly protein Ycf3 OS=Thermosynechococcus elongatus (strain BP-1) GN=ycf3 PE=3 SV=1 | 612 | 729 | 5.0E-06 |
sp|Q6YZI0|SPY_ORYSJ | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Oryza sativa subsp. japonica GN=SPY PE=3 SV=1 | 494 | 793 | 5.0E-06 |
sp|O82422|SPY_HORVU | Probable UDP-N-acetylglucosamine--peptide N-acetylglucosaminyltransferase SPINDLY OS=Hordeum vulgare GN=SPY PE=2 SV=1 | 494 | 793 | 6.0E-06 |
GO Term | Description | Terminal node |
---|---|---|
GO:0005515 | protein binding | Yes |
GO:0003674 | molecular_function | No |
GO:0005488 | binding | No |
SignalP signal predicted | Location (based on Ymax) |
D score (significance: > 0.45) |
---|---|---|
No | 1 - 12 | 0.45 |
Type of sequence | Sequence |
---|---|
Locus | Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded. |
Protein | >Ophun1|1095 MAPNSMAVGGLLRQVIYYHLDSASYENALFFSERLVAQDSKSTDAVYLCALSHLRLGDARSAYDVSKTNAFRGIH LGCSWVFAQACLVLERYKDGIAAIDKSRCSWTQKCSVGKHSAMTRAPSPDVATVLCLLGKLHRGYGDRNKAVNCF EDSLKRNPFMWDAFTALCDMGINVRVPNIFRLNDALAQSFELGPNPDNGSTNPPDPPPKRPLGGRGVAADLAINP FHGGFSNAGMSTPIMERAVETGGDDFMSKIQTAKLRLAASANNHTVMDGVETTTVTPLAEPSRPAYSTQEPPQAP ARRTRNAQALDHGAEAPPRMNYRLGATKRTMRAQDRGQEQLPDLMSDSSNGPAVGLRSGSLTAADRKRTLSGHPV ARSANLEEPTTRRSARLNMFKPSTKANAGAATIGASAVRELKKTRPTVSRIMRPGSSGGSIVGRVVSGNRKPLED AVEGDQQADVLSRSKEVVPPVPTMPDAARMEEALRWTLDLTKRLGNAYYLLSQFQSQEALQALSALPAVHQGSPW VLALMGRAYFEQASYAESDKVFRRMRALAPSRLQDLELYSTALWHLKRETDLSFLAHELIDSAWHSPQAWCALGN AWSLARDPEQALKCFKRATQLDPKFAYAFTLQGHEHMVNEEYDKALTAFRQAIAVDRRHYNAYYGIGRVQERFGA YDKAYEHFHAAQVINPNNAILICCMGTALEKQKQMVQALSAYTRAADLAPRAAQTRYKKARALLTVGQMEAAKRE LMVLKDLAPEEATVHFLLATLYKKTNERQLSVRHYTIALSLDPKAAPKIKEAIESLEDDVPMDDSVMA* |
Coding | >Ophun1|1095 ATGGCTCCCAACTCCATGGCCGTTGGAGGTCTCCTTCGCCAGGTCATCTACTACCATCTCGACTCCGCCTCGTAC GAAAACGCTCTTTTCTTCTCCGAGCGGCTCGTCGCCCAGGACTCAAAGTCCACCGATGCCGTCTATCTCTGCGCC CTCAGCCACCTGCGGCTCGGTGATGCCCGCTCCGCCTACGACGTCAGCAAGACCAACGCTTTTCGCGGAATTCAC TTGGGCTGTTCATGGGTCTTCGCGCAGGCATGCCTGGTGCTGGAACGGTACAAAGACGGCATCGCCGCCATCGAT AAATCGAGGTGTTCTTGGACGCAAAAGTGTAGCGTCGGCAAACACTCGGCCATGACGCGAGCGCCGAGTCCCGAC GTCGCCACCGTCCTTTGTCTGCTCGGCAAGCTCCATCGTGGCTACGGCGATAGGAACAAAGCCGTCAACTGCTTC GAAGACTCGCTCAAGAGAAATCCCTTTATGTGGGACGCCTTCACCGCGCTCTGCGACATGGGCATCAACGTCCGC GTTCCAAACATCTTCCGGCTCAACGATGCCTTGGCACAGAGCTTCGAGCTCGGGCCCAACCCCGACAACGGGTCG ACGAACCCTCCCGATCCGCCTCCGAAACGGCCCCTCGGCGGACGGGGTGTCGCCGCCGACTTGGCCATCAACCCT TTCCATGGAGGCTTCTCGAACGCCGGCATGTCGACCCCGATAATGGAGAGGGCGGTCGAGACCGGCGGCGACGAC TTCATGTCCAAGATACAAACGGCCAAGCTCCGTCTCGCCGCCTCGGCAAACAATCACACCGTCATGGACGGCGTG GAGACGACGACGGTGACGCCACTGGCCGAGCCATCCCGCCCGGCGTACTCGACTCAAGAGCCGCCTCAGGCTCCG GCCCGGAGGACGCGTAACGCGCAGGCCCTCGACCACGGCGCCGAAGCTCCGCCGCGGATGAACTACAGACTGGGG GCGACGAAGCGAACGATGCGGGCGCAGGACAGGGGCCAGGAGCAGCTTCCAGACCTCATGTCGGACTCGTCCAAC GGTCCGGCCGTCGGCCTACGCTCCGGGTCGCTGACGGCCGCCGATAGGAAGCGGACCCTGTCTGGGCACCCGGTG GCGCGCTCGGCGAATCTCGAGGAGCCGACGACTCGGCGGAGCGCGAGGCTTAACATGTTCAAGCCCTCGACCAAA GCCAACGCGGGAGCGGCCACTATCGGGGCCTCGGCCGTGCGCGAACTGAAGAAGACCAGACCGACAGTCTCTCGC ATCATGCGGCCTGGCTCCAGCGGCGGCTCCATCGTCGGCCGGGTCGTTAGCGGCAACCGGAAGCCGCTGGAGGAC GCCGTCGAGGGCGACCAGCAGGCGGATGTGCTATCGAGGTCCAAGGAGGTGGTGCCCCCGGTGCCGACGATGCCG GATGCGGCCAGGATGGAAGAGGCACTCCGCTGGACACTCGACCTCACCAAGAGGCTGGGCAACGCCTACTATCTG CTGAGCCAGTTCCAGAGCCAGGAGGCGCTGCAGGCACTGAGCGCGCTGCCGGCGGTCCACCAGGGCTCGCCGTGG GTGCTGGCGCTGATGGGCCGGGCCTACTTCGAGCAGGCTTCGTACGCCGAGTCGGACAAGGTGTTTCGGAGGATG AGGGCCCTGGCTCCCTCGCGGCTGCAGGACCTGGAGCTCTACTCGACGGCGCTGTGGCACCTCAAGCGCGAGACG GACCTTTCGTTTCTTGCGCACGAGCTCATCGACTCGGCCTGGCACTCGCCGCAGGCTTGGTGCGCGCTGGGCAAC GCCTGGTCGCTGGCGCGGGACCCGGAGCAGGCGCTCAAGTGCTTTAAGCGGGCGACTCAGCTGGATCCCAAGTTT GCCTACGCCTTTACGCTGCAGGGGCACGAGCACATGGTCAACGAGGAGTACGACAAGGCTCTCACGGCGTTCCGA CAGGCCATCGCGGTGGACCGGCGGCATTACAACGCCTACTACGGCATCGGGCGGGTTCAGGAGCGGTTCGGGGCG TACGACAAGGCCTACGAGCACTTCCACGCGGCGCAGGTCATCAATCCCAACAACGCCATCCTCATCTGCTGCATG GGGACGGCGCTGGAGAAGCAGAAGCAGATGGTCCAGGCACTGAGCGCCTACACACGGGCGGCGGACCTGGCGCCG AGGGCGGCTCAGACGCGGTACAAGAAGGCCCGCGCGCTGCTGACGGTCGGGCAGATGGAGGCGGCCAAGAGGGAG CTTATGGTGCTCAAGGACCTGGCGCCCGAGGAGGCGACGGTGCACTTTCTACTCGCCACGCTGTACAAGAAGACG AACGAGAGGCAGCTGTCGGTGCGGCACTACACGATTGCCTTGTCGTTGGACCCCAAGGCGGCACCCAAAATCAAG GAGGCTATCGAGAGCTTGGAAGACGACGTGCCGATGGACGACTCGGTCATGGCATGA |
Transcript | >Ophun1|1095 ATGGCTCCCAACTCCATGGCCGTTGGAGGTCTCCTTCGCCAGGTCATCTACTACCATCTCGACTCCGCCTCGTAC GAAAACGCTCTTTTCTTCTCCGAGCGGCTCGTCGCCCAGGACTCAAAGTCCACCGATGCCGTCTATCTCTGCGCC CTCAGCCACCTGCGGCTCGGTGATGCCCGCTCCGCCTACGACGTCAGCAAGACCAACGCTTTTCGCGGAATTCAC TTGGGCTGTTCATGGGTCTTCGCGCAGGCATGCCTGGTGCTGGAACGGTACAAAGACGGCATCGCCGCCATCGAT AAATCGAGGTGTTCTTGGACGCAAAAGTGTAGCGTCGGCAAACACTCGGCCATGACGCGAGCGCCGAGTCCCGAC GTCGCCACCGTCCTTTGTCTGCTCGGCAAGCTCCATCGTGGCTACGGCGATAGGAACAAAGCCGTCAACTGCTTC GAAGACTCGCTCAAGAGAAATCCCTTTATGTGGGACGCCTTCACCGCGCTCTGCGACATGGGCATCAACGTCCGC GTTCCAAACATCTTCCGGCTCAACGATGCCTTGGCACAGAGCTTCGAGCTCGGGCCCAACCCCGACAACGGGTCG ACGAACCCTCCCGATCCGCCTCCGAAACGGCCCCTCGGCGGACGGGGTGTCGCCGCCGACTTGGCCATCAACCCT TTCCATGGAGGCTTCTCGAACGCCGGCATGTCGACCCCGATAATGGAGAGGGCGGTCGAGACCGGCGGCGACGAC TTCATGTCCAAGATACAAACGGCCAAGCTCCGTCTCGCCGCCTCGGCAAACAATCACACCGTCATGGACGGCGTG GAGACGACGACGGTGACGCCACTGGCCGAGCCATCCCGCCCGGCGTACTCGACTCAAGAGCCGCCTCAGGCTCCG GCCCGGAGGACGCGTAACGCGCAGGCCCTCGACCACGGCGCCGAAGCTCCGCCGCGGATGAACTACAGACTGGGG GCGACGAAGCGAACGATGCGGGCGCAGGACAGGGGCCAGGAGCAGCTTCCAGACCTCATGTCGGACTCGTCCAAC GGTCCGGCCGTCGGCCTACGCTCCGGGTCGCTGACGGCCGCCGATAGGAAGCGGACCCTGTCTGGGCACCCGGTG GCGCGCTCGGCGAATCTCGAGGAGCCGACGACTCGGCGGAGCGCGAGGCTTAACATGTTCAAGCCCTCGACCAAA GCCAACGCGGGAGCGGCCACTATCGGGGCCTCGGCCGTGCGCGAACTGAAGAAGACCAGACCGACAGTCTCTCGC ATCATGCGGCCTGGCTCCAGCGGCGGCTCCATCGTCGGCCGGGTCGTTAGCGGCAACCGGAAGCCGCTGGAGGAC GCCGTCGAGGGCGACCAGCAGGCGGATGTGCTATCGAGGTCCAAGGAGGTGGTGCCCCCGGTGCCGACGATGCCG GATGCGGCCAGGATGGAAGAGGCACTCCGCTGGACACTCGACCTCACCAAGAGGCTGGGCAACGCCTACTATCTG CTGAGCCAGTTCCAGAGCCAGGAGGCGCTGCAGGCACTGAGCGCGCTGCCGGCGGTCCACCAGGGCTCGCCGTGG GTGCTGGCGCTGATGGGCCGGGCCTACTTCGAGCAGGCTTCGTACGCCGAGTCGGACAAGGTGTTTCGGAGGATG AGGGCCCTGGCTCCCTCGCGGCTGCAGGACCTGGAGCTCTACTCGACGGCGCTGTGGCACCTCAAGCGCGAGACG GACCTTTCGTTTCTTGCGCACGAGCTCATCGACTCGGCCTGGCACTCGCCGCAGGCTTGGTGCGCGCTGGGCAAC GCCTGGTCGCTGGCGCGGGACCCGGAGCAGGCGCTCAAGTGCTTTAAGCGGGCGACTCAGCTGGATCCCAAGTTT GCCTACGCCTTTACGCTGCAGGGGCACGAGCACATGGTCAACGAGGAGTACGACAAGGCTCTCACGGCGTTCCGA CAGGCCATCGCGGTGGACCGGCGGCATTACAACGCCTACTACGGCATCGGGCGGGTTCAGGAGCGGTTCGGGGCG TACGACAAGGCCTACGAGCACTTCCACGCGGCGCAGGTCATCAATCCCAACAACGCCATCCTCATCTGCTGCATG GGGACGGCGCTGGAGAAGCAGAAGCAGATGGTCCAGGCACTGAGCGCCTACACACGGGCGGCGGACCTGGCGCCG AGGGCGGCTCAGACGCGGTACAAGAAGGCCCGCGCGCTGCTGACGGTCGGGCAGATGGAGGCGGCCAAGAGGGAG CTTATGGTGCTCAAGGACCTGGCGCCCGAGGAGGCGACGGTGCACTTTCTACTCGCCACGCTGTACAAGAAGACG AACGAGAGGCAGCTGTCGGTGCGGCACTACACGATTGCCTTGTCGTTGGACCCCAAGGCGGCACCCAAAATCAAG GAGGCTATCGAGAGCTTGGAAGACGACGTGCCGATGGACGACTCGGTCATGGCATGA |
Gene | >Ophun1|1095 ATGGCTCCCAACTCCATGGCCGTTGGAGGTCTCCTTCGCCAGGTCATCTACTACCATCTCGACTCCGCCTCGTAC GAAAACGCTCTTTTCTTCTCCGAGCGGCTCGTCGCCCAGGACTCAAAGTCCACCGATGCCGTCTATCTCTGCGCC CTCAGCCACCTGCGGCTCGGTGATGCCCGCTCCGCCTACGACGTCAGCAAGACCAACGCTTTTCGCGGAATTCAC TTGGGCTGTTCATGGGTCTTCGCGCAGGCATGCCTGGTGCTGGAACGGTACAAAGACGGCATCGCCGCCATCGAT AAATCGAGGTGTTCTTGGACGCAAAAGTGTAGCGTCGGCAAACACTCGGCCATGACGCGAGCGCCGAGTCCCGAC GTCGCCACCGTCCTTTGTCTGCTCGGCAAGCTCCATCGTGGCTACGGCGATAGGAACAAAGCCGTCAACTGCTTC GAAGACTCGCTCAAGAGAAATCCCTTTATGTGGGACGCCTTCACCGCGCTCTGCGACATGGGCATCAACGTCCGC GTTCCAAACATCTTCCGGCTCAACGATGCCTTGGCACAGAGCTTCGAGCTCGGGCCCAACCCCGACAACGGGTCG ACGAACCCTCCCGATCCGCCTCCGAAACGGCCCCTCGGCGGACGGGGTGTCGCCGCCGACTTGGCCATCAACCCT TTCCATGGAGGCTTCTCGAACGCCGGCATGTCGACCCCGATAATGGAGAGGGCGGTCGAGACCGGCGGCGACGAC TTCATGTCCAAGATACAAACGGCCAAGCTCCGTCTCGCCGCCTCGGCAAACAATCACACCGTCATGGACGGCGTG GAGACGACGACGGTGACGCCACTGGCCGAGCCATCCCGCCCGGCGTACTCGACTCAAGAGCCGCCTCAGGCTCCG GCCCGGAGGACGCGTAACGCGCAGGCCCTCGACCACGGCGCCGAAGCTCCGCCGCGGATGAACTACAGACTGGGG GCGACGAAGCGAACGATGCGGGCGCAGGACAGGGGCCAGGAGCAGCTTCCAGACCTCATGTCGGACTCGTCCAAC GGTCCGGCCGTCGGCCTACGCTCCGGGTCGCTGACGGCCGCCGATAGGAAGCGGACCCTGTCTGGGCACCCGGTG GCGCGCTCGGCGAATCTCGAGGAGCCGACGACTCGGCGGAGCGCGAGGCTTAACATGTTCAAGCCCTCGACCAAA GCCAACGCGGGAGCGGCCACTATCGGGGCCTCGGCCGTGCGCGAACTGAAGAAGACCAGACCGACAGTCTCTCGC ATCATGCGGCCTGGCTCCAGCGGCGGCTCCATCGTCGGCCGGGTCGTTAGCGGCAACCGGAAGCCGCTGGAGGAC GCCGTCGAGGGCGACCAGCAGGCGGATGTGCTATCGAGGTCCAAGGAGGTGGTGCCCCCGGTGCCGACGATGCCG GATGCGGCCAGGATGGAAGAGGCACTCCGCTGGACACTCGACCTCACCAAGAGGCTGGGCAACGCCTACTATCTG CTGAGCCAGTTCCAGAGCCAGGAGGCGCTGCAGGCACTGAGCGCGCTGCCGGCGGTCCACCAGGGCTCGCCGTGG GTGCTGGCGCTGATGGGCCGGGCCTACTTCGAGCAGGCTTCGTACGCCGAGTCGGACAAGGTGTTTCGGAGGATG AGGGCCCTGGCTCCCTCGCGGCTGCAGGACCTGGAGCTCTACTCGACGGCGCTGTGGCACCTCAAGCGCGAGACG GACCTTTCGTTTCTTGCGCACGAGCTCATCGACTCGGCCTGGCACTCGCCGCAGGCTTGGTGCGCGCTGGGCAAC GCCTGGTCGCTGGCGCGGGACCCGGAGCAGGCGCTCAAGTGCTTTAAGCGGGCGACTCAGCTGGATCCCAAGTTT GCCTACGCCTTTACGCTGCAGGGGCACGAGCACATGGTCAACGAGGAGTACGACAAGGCTCTCACGGCGTTCCGA CAGGCCATCGCGGTGGACCGGCGGCATTACAACGCCTACTACGGCATCGGGCGGGTTCAGGAGCGGTTCGGGGCG TACGACAAGGCCTACGAGCACTTCCACGCGGCGCAGGTCATCAATCCCAACAACGCCATCCTCATCTGCTGCATG GGGACGGCGCTGGAGAAGCAGAAGCAGATGGTCCAGGCACTGAGCGCCTACACACGGGCGGCGGACCTGGCGCCG AGGGCGGCTCAGACGCGGTACAAGAAGGCCCGCGCGCTGCTGACGGTCGGGCAGATGGAGGCGGCCAAGAGGGAG CTTATGGTGCTCAAGGACCTGGCGCCCGAGGAGGCGACGGTGCACTTTCTACTCGCCACGCTGTACAAGAAGACG AACGAGAGGCAGCTGTCGGTGCGGCACTACACGATTGCCTTGTCGTTGGACCCCAAGGTGAGCTCACCACCGTCT GCTATGTTGTCCCCCCTTCACGAGCACTGATGTGAGGATCATCTAACAGGCGGCACCCAAAATCAAGGAGGCTAT CGAGAGCTTGGAAGACGACGTGCCGATGGACGACTCGGTCATGGCATGA |