Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|1360
Gene name
Locationscaffold_145:32609..37778
Strand-
Gene length (bp)5169
Transcript length (bp)4623
Coding sequence length (bp)4620
Protein length (aa) 1540

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00704 Glyco_hydro_18 Glycosyl hydrolases family 18 6.1E-42 542 885
PF01476 LysM LysM domain 3.5E-02 319 348
PF01476 LysM LysM domain 2.5E-04 387 413

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P09805|KTXA_KLULA Killer toxin subunits alpha/beta OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) PE=1 SV=1 164 886 6.0E-92
sp|Q5AKZ3|CHI5_CANAL Probable chitinase OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=CaO19.12451 PE=3 SV=1 602 896 2.0E-44
sp|Q6RY07|CHIA_RAT Acidic mammalian chitinase OS=Rattus norvegicus GN=Chia PE=2 SV=1 569 891 9.0E-23
sp|Q91XA9|CHIA_MOUSE Acidic mammalian chitinase OS=Mus musculus GN=Chia PE=1 SV=2 569 891 3.0E-22
sp|P36362|CHIT_MANSE Endochitinase OS=Manduca sexta PE=2 SV=1 569 890 2.0E-21
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Swissprot ID Swissprot Description Start End E-value
sp|P09805|KTXA_KLULA Killer toxin subunits alpha/beta OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) PE=1 SV=1 164 886 6.0E-92
sp|Q5AKZ3|CHI5_CANAL Probable chitinase OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=CaO19.12451 PE=3 SV=1 602 896 2.0E-44
sp|Q6RY07|CHIA_RAT Acidic mammalian chitinase OS=Rattus norvegicus GN=Chia PE=2 SV=1 569 891 9.0E-23
sp|Q91XA9|CHIA_MOUSE Acidic mammalian chitinase OS=Mus musculus GN=Chia PE=1 SV=2 569 891 3.0E-22
sp|P36362|CHIT_MANSE Endochitinase OS=Manduca sexta PE=2 SV=1 569 890 2.0E-21
sp|Q9W5U2|CHIT3_DROME Probable chitinase 3 OS=Drosophila melanogaster GN=Cht3 PE=2 SV=2 539 890 2.0E-21
sp|Q95M17|CHIA_BOVIN Acidic mammalian chitinase OS=Bos taurus GN=CHIA PE=1 SV=1 526 891 2.0E-21
sp|Q13231|CHIT1_HUMAN Chitotriosidase-1 OS=Homo sapiens GN=CHIT1 PE=1 SV=1 569 890 9.0E-20
sp|Q9WTV1|CH3L1_RAT Chitinase-3-like protein 1 OS=Rattus norvegicus GN=Chi3l1 PE=2 SV=3 538 890 1.0E-19
sp|Q8SPQ0|CH3L1_CAPHI Chitinase-3-like protein 1 OS=Capra hircus GN=CHI3L1 PE=1 SV=1 538 890 2.0E-19
sp|Q29411|CH3L1_PIG Chitinase-3-like protein 1 OS=Sus scrofa GN=CHI3L1 PE=1 SV=2 538 890 3.0E-19
sp|Q6TMG6|CH3L1_SHEEP Chitinase-3-like protein 1 OS=Ovis aries GN=CHI3L1 PE=1 SV=1 539 890 6.0E-19
sp|Q9BZP6|CHIA_HUMAN Acidic mammalian chitinase OS=Homo sapiens GN=CHIA PE=1 SV=1 569 891 1.0E-18
sp|P30922|CH3L1_BOVIN Chitinase-3-like protein 1 OS=Bos taurus GN=CHI3L1 PE=1 SV=3 538 890 5.0E-18
sp|Q7YS85|CH3L1_BUBBU Chitinase-3-like protein 1 OS=Bubalus bubalis GN=CHI3L1 PE=1 SV=3 538 890 1.0E-17
sp|P29030|CHIT_BRUMA Endochitinase OS=Brugia malayi PE=1 SV=1 544 891 2.0E-17
sp|Q61362|CH3L1_MOUSE Chitinase-3-like protein 1 OS=Mus musculus GN=Chi3l1 PE=1 SV=3 538 890 7.0E-17
sp|P36222|CH3L1_HUMAN Chitinase-3-like protein 1 OS=Homo sapiens GN=CHI3L1 PE=1 SV=2 538 890 8.0E-17
sp|Q60557|OVGP1_MESAU Oviduct-specific glycoprotein OS=Mesocricetus auratus GN=OVGP1 PE=1 SV=1 587 889 1.0E-16
sp|Q28542|OVGP1_SHEEP Oviduct-specific glycoprotein OS=Ovis aries GN=OVGP1 PE=1 SV=1 569 890 1.0E-16
sp|Q9W5U2|CHIT3_DROME Probable chitinase 3 OS=Drosophila melanogaster GN=Cht3 PE=2 SV=2 538 890 2.0E-16
sp|P32470|CHI1_APHAL Chitinase 1 OS=Aphanocladium album GN=CHI1 PE=1 SV=2 602 918 2.0E-16
sp|Q5RBP6|CH3L1_PONAB Chitinase-3-like protein 1 OS=Pongo abelii GN=CHI3L1 PE=2 SV=1 538 890 2.0E-16
sp|Q9W5U2|CHIT3_DROME Probable chitinase 3 OS=Drosophila melanogaster GN=Cht3 PE=2 SV=2 571 890 3.0E-16
sp|Q28042|OVGP1_BOVIN Oviduct-specific glycoprotein (Fragment) OS=Bos taurus GN=OVGP1 PE=1 SV=1 569 890 3.0E-16
sp|Q9W092|CHIT2_DROME Probable chitinase 2 OS=Drosophila melanogaster GN=Cht2 PE=1 SV=1 569 907 4.0E-16
sp|Q15782|CH3L2_HUMAN Chitinase-3-like protein 2 OS=Homo sapiens GN=CHI3L2 PE=1 SV=1 538 891 1.0E-15
sp|Q91Z98|CHIL4_MOUSE Chitinase-like protein 4 OS=Mus musculus GN=Chil4 PE=1 SV=2 525 891 1.0E-15
sp|Q28990|OVGP1_PIG Oviduct-specific glycoprotein OS=Sus scrofa GN=OVGP1 PE=2 SV=1 569 889 6.0E-15
sp|C5P230|CHI1_COCP7 Endochitinase 1 OS=Coccidioides posadasii (strain C735) GN=CTS1 PE=3 SV=1 520 787 7.0E-15
sp|Q1E3R8|CHI1_COCIM Endochitinase 1 OS=Coccidioides immitis (strain RS) GN=CTS1 PE=3 SV=1 520 787 7.0E-15
sp|O14456|CHI1_METAN Endochitinase 1 OS=Metarhizium anisopliae GN=chit1 PE=1 SV=1 598 796 8.0E-15
sp|E9ERT9|CHI1_METRA Endochitinase 1 OS=Metarhizium robertsii (strain ARSEF 23 / ATCC MYA-3075) GN=chit1 PE=3 SV=1 598 796 1.0E-14
sp|Q9D7Q1|CHIT1_MOUSE Chitotriosidase-1 OS=Mus musculus GN=Chit1 PE=1 SV=2 569 890 2.0E-14
sp|Q12889|OVGP1_HUMAN Oviduct-specific glycoprotein OS=Homo sapiens GN=OVGP1 PE=2 SV=1 569 889 3.0E-14
sp|P0CB51|CHI1_COCPS Endochitinase 1 OS=Coccidioides posadasii (strain RMSCC 757 / Silveira) GN=CTS1 PE=1 SV=1 520 787 4.0E-14
sp|H2A0L4|CHI1_PINMG Putative chitinase 1 OS=Pinctada margaritifera PE=1 SV=1 539 891 4.0E-14
sp|Q62010|OVGP1_MOUSE Oviduct-specific glycoprotein OS=Mus musculus GN=Ovgp1 PE=2 SV=1 587 889 5.0E-14
sp|O35744|CHIL3_MOUSE Chitinase-like protein 3 OS=Mus musculus GN=Chil3 PE=1 SV=2 525 891 1.0E-13
sp|P36718|OVGP1_PAPAN Oviduct-specific glycoprotein OS=Papio anubis GN=OVGP1 PE=2 SV=2 569 889 2.0E-13
sp|P20533|CHIA1_BACCI Chitinase A1 OS=Bacillus circulans GN=chiA1 PE=1 SV=1 602 796 2.0E-13
sp|P48827|CHI42_TRIHA Endochitinase 42 OS=Trichoderma harzianum GN=chit42 PE=1 SV=1 590 788 4.0E-13
sp|A6N6J0|CHI46_TRIHA Endochitinase 46 OS=Trichoderma harzianum GN=chit46 PE=1 SV=1 590 788 4.0E-13
sp|Q11174|CHIT_CAEEL Probable endochitinase OS=Caenorhabditis elegans GN=cht-1 PE=1 SV=1 533 892 5.0E-13
sp|Q06350|CHI2_YEAST Sporulation-specific chitinase 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CTS2 PE=1 SV=1 604 792 9.0E-13
sp|Q9W5U2|CHIT3_DROME Probable chitinase 3 OS=Drosophila melanogaster GN=Cht3 PE=2 SV=2 472 890 2.0E-12
sp|P11797|CHIB_SERMA Chitinase B OS=Serratia marcescens GN=chiB PE=1 SV=1 569 814 4.0E-12
sp|Q92222|CHIB_EMEND Endochitinase B OS=Emericella nidulans GN=chiB PE=1 SV=3 569 788 7.0E-12
sp|G5EAZ3|CHIB1_EMENI Endochitinase B OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=chiB PE=1 SV=1 569 788 7.0E-12
sp|H2A0L5|CHI2_PINMG Putative chitinase 2 OS=Pinctada margaritifera PE=1 SV=1 539 889 1.0E-11
sp|Q5AM60|CHI4_CANAL Chitinase 4 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=CHT4 PE=3 SV=1 537 788 3.0E-10
sp|E9QRF2|CHIB1_ASPFU Endochitinase B1 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=chiB1 PE=3 SV=1 602 787 6.0E-10
sp|Q873X9|CHIB1_ASPFM Endochitinase B1 OS=Neosartorya fumigata GN=chiB1 PE=1 SV=1 602 787 6.0E-10
sp|P86955|CHI_PINMA Putative chitinase OS=Pinctada maxima PE=1 SV=1 539 889 2.0E-09
sp|P07254|CHIA_SERMA Chitinase A OS=Serratia marcescens GN=chiA PE=1 SV=3 598 835 6.0E-09
sp|O10363|CHIT_NPVOP Probable endochitinase OS=Orgyia pseudotsugata multicapsid polyhedrosis virus GN=ORF124 PE=3 SV=1 602 837 1.0E-07
sp|P32823|CHIA_PSEO7 Chitinase A OS=Pseudoalteromonas piscicida GN=chiA PE=1 SV=1 602 788 1.0E-07
sp|P96156|CHID_VIBFU Chitodextrinase OS=Vibrio furnissii GN=endo I PE=1 SV=1 542 734 1.0E-05
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GO

GO Term Description Terminal node
GO:0005975 carbohydrate metabolic process Yes
GO:0071704 organic substance metabolic process No
GO:0044238 primary metabolic process No
GO:0008152 metabolic process No
GO:0008150 biological_process No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
Yes 1 - 23 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

Analysis 1: Expression analysis during behavioral modification. Published in De Bekker et al., 2017.

Expression values

Label Description Expression (RPKM) Confidence interval (low) Confidence interval (high)
SC16a Pure fungal culture 1.05 0.26 1.83
CcL In ants, during behavior modification 8.60 2.54 14.66
CcD In ants, recently dead 5.16 2.01 8.32

Differential expression

Label1 Label2 Q-value Significant difference
SC16a CcL 0.000286 yes
SC16a CcD 0.000286 yes
CcL CcD 0.096066 no

Sequences

Type of sequenceSequence
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 >Ophio5|1360
MWPSRLYATATLFWGAAFVCSALNLDDIKAVKPLTHNNISPIVDPDVYLPDQHDCPIRCVDYANIQTWTSYTVVH
RLRRCQKPMLLHLTITQLVDDPASTILIRACTVGHGESEDVESRRKAAPEKNPKRTGFRPVLDISPTCQASGIET
SESMTLAISSDGGKTDGEEVALLLLNMRDYLLARDNCNEKFAFAFYNDIVASVYIGEKLHKLTANAALEALAGRV
QTFDQMPSRAVAQVCHEGLSPERVFGVSVNTIGDLAAVQRKAHDWWKGACVDNDDGLEPAEDLAHVKFWPIVANG
TLLGSNKLLGKRGVCRYVKVVSGDSCASLASRCGISHAQFYRFNRKRNLCSSLIPDDYICCSAGDRYTEPKRQAP
RPSSDGTCATHNIQSGDSCYNLAQQYGVTIEELERWNRGKTWGWSECRDMLAGYNMCVSDGFAPLPLSQEGTECG
PLVKGSQVQWERMKSRSGGGRPPSLADLNPCPLKACCSNWGYCGVFPDHCDVHAPEGGGPGSKKRGSQNTCVSNC
GMEIQQNSGPPPSFQRIGYYESWNLQRECLWLKANKANTDGSYTHIHWGFVEIDPSSWRPVVKDADRQWDDFKAL
SNVKRIISFGGWAYSTEAATYNILRSAILNNRERFAANIAQFLDEQGLDGVDIDWEYPGAPDILVNGQAIGQKGD
GIEYLKFLSVLRRRVASGKSVSIAAPASYWYLKEFPIERIGRVVDYIVYMTYDLHGQWDYGNVNAFDACPSGKCI
RSHVNLTETRNSLAIITKAGVPNNKIFVGEASYGRSFRMANDGCWQPLCDFTGSRTQSNANPGRCTKTGGYISNA
EISEIMKRGDGAQSFHDGDSNTDVVLYKGDYIGYMTPTTKDTRRADWKNLNFAGTVDWAVDLQDFTSDDFEAIPD
SKTRSGEGCISGTDLVLDSGDLCEFTCRYGFCPESLCSCNARGRPKDVPPAEKQVKFVAMDAFDVDLNRLCKFAC
QYGHCPDDICVPQETDEAERSSDEQAQRGPKPVVVVGEDPTYMDYAAARRENARRCFIFQDTRHREVGMRQCLNF
CQSILHEAQQEGRTTNYGCVGNFPLDQEIPWRPDISGNGELAVLGTCHCDHWLVNELADTVLEAMPIIAQIGCYI
LLSSFKLVLDVGTSYFGRVGKIADVGIDMLATGAQVASYVYPQDEDPAGAFSSWIDGACGGSDLVPDDIKSVFDI
LNQVPTDKSSFKRPRRIRKGSGKKGDSGNPRAPVRPQKTPNGGPSGSGIRKRQCHVPVHKSTSRVGRGRNTLRLL
SCDRHKRTTKTEEMIITSLVYARHARPTLVTKTCSSRWKQACQHYSSANRENRRWATLTCPQEAATTSSRRIEAS
GVAKWRAEHRGHGWRDAAHREHANCQVDEWPPVYFLGRNDPLRLHSGLDQRGQRVRFLPQSHNAGAASLWRGVCF
VPAVAAMSDAEFRKQAEADAKSFKTTNAKKRKQIYATATVNLRPEFVISSWGHSADPARDDGLWDNPCWPRAIAA
NDPGFALLSLDEWYDKNPRAQGRRTQWDYDRDYQKGQNGD
Coding >Ophio5|1360
ATGTGGCCGAGCCGGTTGTATGCCACCGCGACCCTCTTCTGGGGAGCAGCTTTTGTATGCTCTGCTCTCAACCTC
GACGACATCAAGGCCGTTAAGCCCTTGACCCATAACAACATCTCCCCTATCGTCGACCCCGACGTCTATCTTCCC
GACCAACATGACTGTCCCATCCGGTGCGTCGACTATGCGAATATCCAGACCTGGACATCATACACCGTAGTCCAT
CGTCTCCGCCGCTGCCAGAAGCCCATGCTCCTGCACCTCACCATTACCCAACTCGTCGACGACCCGGCCTCCACC
ATCTTGATACGCGCCTGCACCGTGGGACACGGCGAATCCGAAGACGTGGAGAGCAGGCGGAAAGCAGCGCCGGAA
AAGAATCCCAAGAGGACCGGCTTCCGGCCGGTCTTGGACATCTCCCCAACATGTCAGGCGTCGGGCATAGAGACG
TCGGAGTCGATGACTCTGGCTATAAGCAGCGACGGCGGCAAGACAGACGGCGAAGAGGTCGCCCTTCTGCTACTG
AACATGCGAGATTACCTCCTCGCCCGAGATAACTGCAACGAGAAGTTTGCGTTTGCGTTTTATAACGACATAGTA
GCGAGCGTCTATATCGGCGAGAAGCTTCACAAGCTCACCGCCAACGCGGCGCTCGAGGCCTTGGCCGGACGCGTC
CAGACCTTTGACCAGATGCCGAGCCGAGCCGTCGCTCAGGTCTGCCACGAGGGGCTCTCTCCGGAACGCGTCTTC
GGCGTCTCCGTCAACACCATCGGCGACCTGGCGGCAGTTCAGAGGAAGGCTCACGACTGGTGGAAGGGCGCTTGC
GTCGACAACGATGACGGCCTCGAGCCGGCAGAGGACCTAGCCCATGTCAAGTTCTGGCCGATCGTGGCCAACGGC
ACTCTCCTCGGAAGCAACAAGCTCCTGGGCAAACGCGGCGTCTGCCGCTACGTCAAGGTCGTTTCGGGCGATAGC
TGCGCCTCGCTCGCCTCCCGGTGCGGCATCTCCCACGCACAGTTCTACCGGTTCAACCGCAAGCGAAACTTATGC
TCTAGCCTAATTCCGGACGACTATATCTGCTGCTCGGCCGGTGACCGCTATACGGAACCGAAGCGCCAGGCGCCG
AGGCCGAGCTCGGACGGCACCTGCGCGACGCATAACATCCAGAGCGGGGACTCGTGCTACAACCTAGCTCAGCAA
TACGGCGTCACTATCGAGGAGCTAGAGCGGTGGAATAGGGGCAAGACCTGGGGCTGGAGCGAGTGCAGAGACATG
CTAGCCGGCTATAACATGTGCGTGAGCGACGGCTTCGCCCCCCTGCCCCTTTCCCAGGAGGGAACCGAGTGCGGC
CCGCTGGTCAAGGGCTCCCAAGTGCAGTGGGAGAGGATGAAGAGCCGGAGTGGAGGAGGCCGGCCGCCCTCTCTG
GCCGACCTGAACCCCTGCCCCCTCAAGGCCTGCTGTAGCAATTGGGGCTACTGCGGCGTCTTCCCCGATCACTGC
GACGTTCACGCCCCCGAGGGAGGCGGCCCGGGCAGCAAGAAGAGGGGGTCTCAGAATACGTGCGTCTCGAACTGC
GGCATGGAAATCCAGCAGAACTCAGGCCCGCCCCCGAGCTTCCAGCGGATCGGATACTACGAGTCGTGGAATCTC
CAGCGCGAATGCCTCTGGTTGAAAGCCAACAAGGCAAACACGGACGGCAGCTATACCCATATCCACTGGGGCTTC
GTCGAGATCGACCCTTCCAGCTGGAGGCCGGTAGTCAAAGACGCTGACCGGCAGTGGGACGATTTCAAGGCGCTA
TCCAACGTCAAACGCATCATCTCCTTTGGCGGCTGGGCCTACTCGACCGAGGCGGCGACGTATAATATTCTACGC
TCCGCTATCCTCAACAACCGGGAGAGATTCGCGGCTAATATCGCGCAGTTTCTCGACGAACAAGGCCTAGACGGG
GTGGATATCGATTGGGAGTATCCGGGGGCTCCGGATATTCTCGTCAACGGCCAGGCCATCGGCCAGAAGGGCGAT
GGCATCGAATACCTCAAGTTCCTCTCGGTGCTACGAAGGAGAGTCGCCTCGGGCAAATCGGTGTCCATCGCCGCG
CCTGCATCGTACTGGTACCTGAAGGAGTTCCCTATCGAGAGGATCGGCAGAGTTGTCGACTATATCGTCTATATG
ACGTACGACCTTCACGGGCAGTGGGACTATGGAAACGTCAACGCCTTTGACGCGTGCCCATCGGGGAAATGCATT
CGGAGTCATGTCAACCTTACGGAAACGCGCAATAGTCTTGCGATAATCACAAAGGCCGGAGTGCCAAACAACAAG
ATCTTCGTTGGCGAGGCCAGCTACGGGCGGTCTTTCCGCATGGCCAACGACGGTTGCTGGCAGCCCCTCTGCGAC
TTCACCGGCTCGAGGACGCAGTCGAATGCGAATCCAGGTAGATGCACCAAGACGGGAGGCTACATCTCGAACGCG
GAAATCTCGGAAATCATGAAGCGCGGCGACGGCGCTCAGTCGTTCCACGATGGCGACTCTAATACGGACGTAGTT
CTCTATAAAGGGGACTATATCGGATATATGACGCCAACCACCAAAGACACGCGCCGCGCCGACTGGAAGAACCTG
AACTTTGCCGGAACCGTCGACTGGGCCGTCGACCTGCAGGATTTCACGTCGGACGACTTTGAAGCCATCCCGGAT
AGCAAGACAAGATCAGGAGAGGGTTGCATTTCCGGAACGGACCTCGTCCTCGACAGCGGAGACCTCTGCGAATTT
ACTTGCCGCTACGGCTTCTGTCCCGAATCCCTCTGCAGCTGTAACGCGAGGGGCCGGCCGAAAGACGTCCCGCCG
GCCGAGAAGCAGGTCAAGTTCGTGGCTATGGACGCCTTCGACGTGGACCTCAACCGGCTCTGCAAGTTCGCCTGT
CAATACGGTCACTGCCCGGACGACATCTGCGTGCCGCAAGAGACGGACGAGGCGGAAAGGTCGTCGGACGAGCAA
GCACAAAGGGGGCCCAAGCCCGTCGTCGTCGTCGGCGAGGATCCGACCTACATGGACTACGCAGCCGCGCGGCGA
GAAAACGCGCGCCGATGCTTCATCTTCCAAGACACCCGCCACAGGGAGGTGGGCATGCGTCAGTGCCTAAACTTC
TGCCAATCCATCCTCCATGAGGCCCAGCAGGAGGGCAGGACGACCAACTACGGCTGTGTCGGCAACTTCCCGCTC
GACCAGGAGATACCCTGGCGGCCGGACATTAGCGGAAACGGGGAGCTGGCGGTGCTAGGGACCTGCCATTGCGAC
CACTGGCTGGTGAACGAACTGGCGGATACGGTTCTCGAGGCGATGCCCATTATTGCTCAGATCGGCTGCTACATC
CTCCTCTCGTCCTTTAAGCTCGTCCTCGACGTGGGAACGAGCTACTTTGGACGAGTAGGCAAGATTGCCGACGTC
GGTATAGACATGCTCGCAACCGGCGCACAGGTAGCATCATACGTCTACCCTCAGGATGAGGATCCGGCGGGCGCC
TTCTCGTCGTGGATAGATGGCGCCTGCGGAGGCTCGGATCTGGTTCCCGACGATATCAAGTCCGTCTTCGACATC
CTCAACCAGGTCCCCACCGACAAGTCGAGCTTTAAACGGCCCCGACGGATCCGGAAGGGCAGCGGGAAAAAGGGC
GACTCCGGTAACCCCCGGGCCCCGGTCCGGCCGCAAAAGACGCCCAACGGAGGTCCATCCGGATCCGGGATACGG
AAGAGGCAGTGCCACGTTCCCGTCCACAAGTCCACCAGCCGCGTCGGCCGCGGCAGGAACACGCTGCGGCTCCTC
TCCTGCGACCGGCACAAGCGGACGACGAAGACGGAGGAGATGATCATCACCTCGCTCGTCTACGCCCGCCACGCC
CGGCCGACGCTCGTCACCAAGACGTGCTCCAGCCGGTGGAAGCAGGCGTGCCAGCACTATAGCTCCGCCAACCGC
GAGAACAGGCGGTGGGCGACGCTCACCTGCCCGCAGGAGGCGGCCACGACGTCGAGCCGGCGGATCGAGGCCTCG
GGCGTGGCCAAGTGGCGAGCCGAGCACAGGGGCCACGGCTGGCGGGACGCCGCCCACCGAGAGCACGCCAACTGT
CAGGTCGACGAGTGGCCGCCCGTCTACTTCCTCGGCCGCAACGACCCGCTCCGGCTTCACTCGGGCCTCGATCAA
CGCGGCCAGCGGGTGCGCTTCCTCCCTCAGAGCCACAACGCCGGGGCCGCTAGCCTATGGCGCGGCGTCTGCTTC
GTGCCCGCCGTGGCCGCCATGTCCGACGCCGAGTTCCGGAAGCAGGCCGAGGCCGACGCCAAGTCCTTCAAGACG
ACCAACGCCAAGAAGCGCAAGCAGATATACGCCACCGCCACCGTCAACCTGCGTCCCGAGTTCGTCATCTCCTCC
TGGGGTCACTCCGCCGACCCGGCCCGCGACGACGGCCTCTGGGACAACCCCTGCTGGCCCAGGGCCATCGCCGCC
AACGACCCCGGATTCGCCCTCTTGTCCCTCGACGAGTGGTACGACAAGAATCCGAGGGCTCAGGGCCGGAGGACC
CAGTGGGACTACGACCGGGACTATCAAAAGGGGCAGAACGGGGAC
Transcript >Ophio5|1360
ATGTGGCCGAGCCGGTTGTATGCCACCGCGACCCTCTTCTGGGGAGCAGCTTTTGTATGCTCTGCTCTCAACCTC
GACGACATCAAGGCCGTTAAGCCCTTGACCCATAACAACATCTCCCCTATCGTCGACCCCGACGTCTATCTTCCC
GACCAACATGACTGTCCCATCCGGTGCGTCGACTATGCGAATATCCAGACCTGGACATCATACACCGTAGTCCAT
CGTCTCCGCCGCTGCCAGAAGCCCATGCTCCTGCACCTCACCATTACCCAACTCGTCGACGACCCGGCCTCCACC
ATCTTGATACGCGCCTGCACCGTGGGACACGGCGAATCCGAAGACGTGGAGAGCAGGCGGAAAGCAGCGCCGGAA
AAGAATCCCAAGAGGACCGGCTTCCGGCCGGTCTTGGACATCTCCCCAACATGTCAGGCGTCGGGCATAGAGACG
TCGGAGTCGATGACTCTGGCTATAAGCAGCGACGGCGGCAAGACAGACGGCGAAGAGGTCGCCCTTCTGCTACTG
AACATGCGAGATTACCTCCTCGCCCGAGATAACTGCAACGAGAAGTTTGCGTTTGCGTTTTATAACGACATAGTA
GCGAGCGTCTATATCGGCGAGAAGCTTCACAAGCTCACCGCCAACGCGGCGCTCGAGGCCTTGGCCGGACGCGTC
CAGACCTTTGACCAGATGCCGAGCCGAGCCGTCGCTCAGGTCTGCCACGAGGGGCTCTCTCCGGAACGCGTCTTC
GGCGTCTCCGTCAACACCATCGGCGACCTGGCGGCAGTTCAGAGGAAGGCTCACGACTGGTGGAAGGGCGCTTGC
GTCGACAACGATGACGGCCTCGAGCCGGCAGAGGACCTAGCCCATGTCAAGTTCTGGCCGATCGTGGCCAACGGC
ACTCTCCTCGGAAGCAACAAGCTCCTGGGCAAACGCGGCGTCTGCCGCTACGTCAAGGTCGTTTCGGGCGATAGC
TGCGCCTCGCTCGCCTCCCGGTGCGGCATCTCCCACGCACAGTTCTACCGGTTCAACCGCAAGCGAAACTTATGC
TCTAGCCTAATTCCGGACGACTATATCTGCTGCTCGGCCGGTGACCGCTATACGGAACCGAAGCGCCAGGCGCCG
AGGCCGAGCTCGGACGGCACCTGCGCGACGCATAACATCCAGAGCGGGGACTCGTGCTACAACCTAGCTCAGCAA
TACGGCGTCACTATCGAGGAGCTAGAGCGGTGGAATAGGGGCAAGACCTGGGGCTGGAGCGAGTGCAGAGACATG
CTAGCCGGCTATAACATGTGCGTGAGCGACGGCTTCGCCCCCCTGCCCCTTTCCCAGGAGGGAACCGAGTGCGGC
CCGCTGGTCAAGGGCTCCCAAGTGCAGTGGGAGAGGATGAAGAGCCGGAGTGGAGGAGGCCGGCCGCCCTCTCTG
GCCGACCTGAACCCCTGCCCCCTCAAGGCCTGCTGTAGCAATTGGGGCTACTGCGGCGTCTTCCCCGATCACTGC
GACGTTCACGCCCCCGAGGGAGGCGGCCCGGGCAGCAAGAAGAGGGGGTCTCAGAATACGTGCGTCTCGAACTGC
GGCATGGAAATCCAGCAGAACTCAGGCCCGCCCCCGAGCTTCCAGCGGATCGGATACTACGAGTCGTGGAATCTC
CAGCGCGAATGCCTCTGGTTGAAAGCCAACAAGGCAAACACGGACGGCAGCTATACCCATATCCACTGGGGCTTC
GTCGAGATCGACCCTTCCAGCTGGAGGCCGGTAGTCAAAGACGCTGACCGGCAGTGGGACGATTTCAAGGCGCTA
TCCAACGTCAAACGCATCATCTCCTTTGGCGGCTGGGCCTACTCGACCGAGGCGGCGACGTATAATATTCTACGC
TCCGCTATCCTCAACAACCGGGAGAGATTCGCGGCTAATATCGCGCAGTTTCTCGACGAACAAGGCCTAGACGGG
GTGGATATCGATTGGGAGTATCCGGGGGCTCCGGATATTCTCGTCAACGGCCAGGCCATCGGCCAGAAGGGCGAT
GGCATCGAATACCTCAAGTTCCTCTCGGTGCTACGAAGGAGAGTCGCCTCGGGCAAATCGGTGTCCATCGCCGCG
CCTGCATCGTACTGGTACCTGAAGGAGTTCCCTATCGAGAGGATCGGCAGAGTTGTCGACTATATCGTCTATATG
ACGTACGACCTTCACGGGCAGTGGGACTATGGAAACGTCAACGCCTTTGACGCGTGCCCATCGGGGAAATGCATT
CGGAGTCATGTCAACCTTACGGAAACGCGCAATAGTCTTGCGATAATCACAAAGGCCGGAGTGCCAAACAACAAG
ATCTTCGTTGGCGAGGCCAGCTACGGGCGGTCTTTCCGCATGGCCAACGACGGTTGCTGGCAGCCCCTCTGCGAC
TTCACCGGCTCGAGGACGCAGTCGAATGCGAATCCAGGTAGATGCACCAAGACGGGAGGCTACATCTCGAACGCG
GAAATCTCGGAAATCATGAAGCGCGGCGACGGCGCTCAGTCGTTCCACGATGGCGACTCTAATACGGACGTAGTT
CTCTATAAAGGGGACTATATCGGATATATGACGCCAACCACCAAAGACACGCGCCGCGCCGACTGGAAGAACCTG
AACTTTGCCGGAACCGTCGACTGGGCCGTCGACCTGCAGGATTTCACGTCGGACGACTTTGAAGCCATCCCGGAT
AGCAAGACAAGATCAGGAGAGGGTTGCATTTCCGGAACGGACCTCGTCCTCGACAGCGGAGACCTCTGCGAATTT
ACTTGCCGCTACGGCTTCTGTCCCGAATCCCTCTGCAGCTGTAACGCGAGGGGCCGGCCGAAAGACGTCCCGCCG
GCCGAGAAGCAGGTCAAGTTCGTGGCTATGGACGCCTTCGACGTGGACCTCAACCGGCTCTGCAAGTTCGCCTGT
CAATACGGTCACTGCCCGGACGACATCTGCGTGCCGCAAGAGACGGACGAGGCGGAAAGGTCGTCGGACGAGCAA
GCACAAAGGGGGCCCAAGCCCGTCGTCGTCGTCGGCGAGGATCCGACCTACATGGACTACGCAGCCGCGCGGCGA
GAAAACGCGCGCCGATGCTTCATCTTCCAAGACACCCGCCACAGGGAGGTGGGCATGCGTCAGTGCCTAAACTTC
TGCCAATCCATCCTCCATGAGGCCCAGCAGGAGGGCAGGACGACCAACTACGGCTGTGTCGGCAACTTCCCGCTC
GACCAGGAGATACCCTGGCGGCCGGACATTAGCGGAAACGGGGAGCTGGCGGTGCTAGGGACCTGCCATTGCGAC
CACTGGCTGGTGAACGAACTGGCGGATACGGTTCTCGAGGCGATGCCCATTATTGCTCAGATCGGCTGCTACATC
CTCCTCTCGTCCTTTAAGCTCGTCCTCGACGTGGGAACGAGCTACTTTGGACGAGTAGGCAAGATTGCCGACGTC
GGTATAGACATGCTCGCAACCGGCGCACAGGTAGCATCATACGTCTACCCTCAGGATGAGGATCCGGCGGGCGCC
TTCTCGTCGTGGATAGATGGCGCCTGCGGAGGCTCGGATCTGGTTCCCGACGATATCAAGTCCGTCTTCGACATC
CTCAACCAGGTCCCCACCGACAAGTCGAGCTTTAAACGGCCCCGACGGATCCGGAAGGGCAGCGGGAAAAAGGGC
GACTCCGGTAACCCCCGGGCCCCGGTCCGGCCGCAAAAGACGCCCAACGGAGGTCCATCCGGATCCGGGATACGG
AAGAGGCAGTGCCACGTTCCCGTCCACAAGTCCACCAGCCGCGTCGGCCGCGGCAGGAACACGCTGCGGCTCCTC
TCCTGCGACCGGCACAAGCGGACGACGAAGACGGAGGAGATGATCATCACCTCGCTCGTCTACGCCCGCCACGCC
CGGCCGACGCTCGTCACCAAGACGTGCTCCAGCCGGTGGAAGCAGGCGTGCCAGCACTATAGCTCCGCCAACCGC
GAGAACAGGCGGTGGGCGACGCTCACCTGCCCGCAGGAGGCGGCCACGACGTCGAGCCGGCGGATCGAGGCCTCG
GGCGTGGCCAAGTGGCGAGCCGAGCACAGGGGCCACGGCTGGCGGGACGCCGCCCACCGAGAGCACGCCAACTGT
CAGGTCGACGAGTGGCCGCCCGTCTACTTCCTCGGCCGCAACGACCCGCTCCGGCTTCACTCGGGCCTCGATCAA
CGCGGCCAGCGGGTGCGCTTCCTCCCTCAGAGCCACAACGCCGGGGCCGCTAGCCTATGGCGCGGCGTCTGCTTC
GTGCCCGCCGTGGCCGCCATGTCCGACGCCGAGTTCCGGAAGCAGGCCGAGGCCGACGCCAAGTCCTTCAAGACG
ACCAACGCCAAGAAGCGCAAGCAGATATACGCCACCGCCACCGTCAACCTGCGTCCCGAGTTCGTCATCTCCTCC
TGGGGTCACTCCGCCGACCCGGCCCGCGACGACGGCCTCTGGGACAACCCCTGCTGGCCCAGGGCCATCGCCGCC
AACGACCCCGGATTCGCCCTCTTGTCCCTCGACGAGTGGTACGACAAGAATCCGAGGGCTCAGGGCCGGAGGACC
CAGTGGGACTACGACCGGGACTATCAAAAGGGGCAGAACGGGGACTGA
Gene >Ophio5|1360
ATGTGGCCGAGCCGGTTGTATGCCACCGCGACCCTCTTCTGGGGAGCAGCTTTTGTATGCTCTGCTCTCAACCTC
GACGACATCAAGGCCGTTAAGCCCTTGACCCATAACAACATCTCCCCTATCGTCGACCCCGACGTCTATCTTCCC
GACCAACATGACTGTCCCATCCGGTGCGTCGACTATGCGAATATCCAGACCTGGACATCATACACCGTAGTCCAT
CGTCTCCGCCGCTGCCAGAAGCCCATGCTCCTGCACCTCACCATTACCCAACTCGTCGACGACCCGGCCTCCACC
ATCTTGATACGCGCCTGCACCGTGGGACACGGCGAATCCGAAGACGTGGAGAGCAGGCGGAAAGCAGCGCCGGAA
AAGAATCCCAAGAGGACCGGCTTCCGGCCGGTCTTGGACATCTCCCCAACATGTCAGGCGTCGGGCATAGAGACG
TCGGAGTCGATGACTCTGGCTATAAGCAGCGACGGCGGCAAGACAGACGGCGAAGAGGTCGCCCTTCTGCTACTG
AACATGCGAGATTACCTCCTCGCCCGAGATAACTGCAACGAGAAGTTTGCGTTTGCGTTTTATAACGACATAGTA
GCGAGCGTCTATATCGGCGAGAAGCTTCACAAGCTCACCGCCAACGCGGCGCTCGAGGCCTTGGCCGGACGCGTC
CAGACCTTTGACCAGATGCCGAGCCGAGCCGTCGCTCAGGTCTGCCACGAGGGGCTCTCTCCGGAACGCGTCTTC
GGCGTCTCCGTCAACACCATCGGCGACCTGGCGGCAGTTCAGAGGAAGGCTCACGACTGGTGGAAGGGCGCTTGC
GTCGACAACGATGACGGCCTCGAGCCGGCAGAGGACCTAGCCCATGTCAAGTTCTGGCCGATCGTGGCCAACGGC
ACTCTCCTCGGAAGCAACAAGCTCCTGGGCAAACGCGGCGTCTGCCGCTACGTCAAGGTCGTTTCGGGCGATAGC
TGCGCCTCGCTCGCCTCCCGGTGCGGCATCTCCCACGCACAGTTCTACCGGTTCAACCGCAAGCGAAACTTATGC
TCTAGCCTAATTCCGGACGACTATATCTGCTGCTCGGCCGGTGACCGCTATACGGAACCGAAGCGCCAGGCGCCG
AGGCCGAGCTCGGACGGCACCTGCGCGACGCATAACATCCAGAGCGGGGACTCGTGCTACAACCTAGCTCAGCAA
TACGGCGTCACTATCGAGGAGCTAGAGCGGTGGAATAGGGGCAAGACCTGGGGCTGGAGCGAGTGCAGAGACATG
CTAGCCGGCTATAACATGTGCGTGAGCGACGGCTTCGCCCCCCTGCCCCTTTCCCAGGAGGGAACCGAGTGCGGC
CCGCTGGTCAAGGGCTCCCAAGTGCAGTGGGAGAGGATGAAGAGCCGGAGTGGAGGAGGCCGGCCGCCCTCTCTG
GCCGACCTGAACCCCTGCCCCCTCAAGGCCTGCTGTAGCAATTGGGGCTACTGCGGCGTCTTCCCCGATCACTGC
GACGTTCACGCCCCCGAGGGAGGCGGCCCGGGCAGCAAGAAGAGGGGGTCTCAGAATACGTGCGTCTCGAACTGC
GGCATGGAAATCCAGCAGAACTCAGGCCCGCCCCCGAGCTTCCAGCGGATCGGATACTACGAGTCGTGGAATCTC
CAGCGCGAATGCCTCTGGTTGAAAGCCAACAAGGCAAACACGGACGGCAGCTATACCCATATCCACTGGGGCTTC
GTCGAGATCGACCCTTCCAGCTGGAGGCCGGTAGTCAAAGACGCTGACCGGCAGTGGGACGATTTCAAGGCGCTA
TCCAACGTCAAACGCATCATCTCCTTTGGCGGCTGGGCCTACTCGACCGAGGCGGCGACGTATAATATTCTACGC
TCCGCTATCCTCAACAACCGGGAGAGATTCGCGGCTAATATCGCGCAGTTTCTCGACGAACAAGGCCTAGACGGG
GTGGATATCGATTGGGAGTATCCGGGGGTAAGCAAACGGCTGGTAGTGGTCTGGTTGCCTCTTCCAGGAAAGACT
AAGAAAATCTCTCGACGAAAACTAGGCTCCGGATATTCTCGTCAACGGCCAGGCCATCGGCCAGAAGGGCGATGG
CATCGAATACCTCAAGTTCCTCTCGGTGCTACGAAGGAGAGTCGCCTCGGGCAAATCGGTGTCCATCGCCGCGCC
TGCATCGTACTGGTACCTGAAGGAGTTCCCTATCGAGAGGATCGGCAGAGTTGTCGACTATATCGTCTATATGAC
GTACGACCTTCACGGGCAGTGGGACTATGGAAACGTCAACGCCTTTGACGCGTGCCCATCGGGGAAATGCATTCG
GAGTCATGGTTCGTTGTACTTGGTTAGAAAGCGAAGGATTCAACCACTGAAGCTGTAAGAAAAACAGTCAACCTT
ACGGAAACGCGCAATAGTCTTGCGATAAGTGCGCCCGACTTATAAGTCCTGTCAACCCAGCCAGGCACTAACTTC
AAGGACTGGGTAGTCACAAAGGCCGGAGTGCCAAACAACAAGATCTTCGTTGGCGAGGCCAGCTACGGGCGGTCT
TTCCGCATGGCCAACGACGGTTGCTGGCAGCCCCTCTGCGACTTCACCGGCTCGAGGACGCAGTCGAATGCGAAT
CCAGGTAGATGCACCAAGACGGGAGGCTACATCTCGAACGCGGAAATCTCGGAAATCATGAAGCGCGGCGACGGC
GCTCAGTCGTTCCACGATGGCGACTCTAATACGGACGTAGTTCTCTATAAAGGTTGATCTCGACTCTTCTCTAGT
TGACAAGTTCTCAACTCTTCTCTAGTTGACAAGTCCTCAACTCTTCTCTAGTTGACAAGTCCTCAACTCTTCTCT
AGTTGACAAGTCCTCAACTTTTCTCTAGTTTACAAAAAAAAAAAAGACACCACACGGGGCAGTTGAAGTTGAAGC
TGATAAGTCGTTTCACAAGGGGACTATATCGGATATATGACGCCAACCACCAAAGACACGCGCCGCGCCGACTGG
AAGAACCTGAACTTTGCCGGAACCGTCGACTGGGCCGTCGACCTGCAGGATTTCACGTCGGACGACTTTGAAGCC
ATCCCGGATAGCAAGACAAGATCAGGAGAGGGTTGCATTTCCGGAACGGACCTCGTCCTCGACAGCGGAGACCTC
TGCGAATTTACTTGCCGCTACGGCTTCTGTCCCGAATCCCTCTGCAGCTGTAACGCGAGGGGCCGGCCGAAAGAC
GTCCCGCCGGCCGAGAAGCAGGTCAAGTTCGTGGCTATGGACGCCTTCGACGTGGACCTCAACCGGCTCTGCAAG
TTCGCCTGTCAATACGGTCACTGCCCGGACGACATCTGCGTGCCGCAAGAGACGGACGAGGCGGAAAGGTCGTCG
GACGAGCAAGCACAAAGGGGGCCCAAGCCCGTCGTCGTCGTCGGCGAGGATCCGACCTACATGGACTACGCAGCC
GCGCGGCGAGAAAACGCGCGCCGATGCTTCATCTTCCAAGACACCCGCCACAGGGAGGTGGGCATGCGTCAGTGC
CTAAACTTCTGCCAATCCATCCTCCATGAGGCCCAGCAGGAGGGCAGGACGACCAACTACGGCTGTGTCGGCAAC
TTCCCGCTCGACCAGGAGATACCCTGGCGGCCGGACATTAGCGGAAACGGGGAGCTGGCGGTGCTAGGGACCTGC
CATTGCGACCACTGGCTGGTGAACGAACTGGCGGATACGGTTCTCGAGGCGATGCCCATTATTGCTCAGGTATGT
CGTCGAACTTGTCTCCATGACGGCGAAAGAGAGGAAATGTCATGTCTTGCCCATTCCTATCTAACTAGTCTCAAC
TCAAGATCGGCTGCTACATCCTCCTCTCGTCCTTTAAGCTCGTCCTCGACGTGGGAACGAGCTACTTTGGACGAG
TAGGCAAGATTGCCGACGTCGGTATAGGTGTGTTTCCTTGTCCTTGTCCTTGTCCTTTGTCTCTTTTCAACCCCC
CATGACTGATAGGGAGACATGATCAAAGACATGCTCGCAACCGGCGCACAGGTAGCATCATACGTCTACCCTCAG
GATGAGGATCCGGCGGGCGCCTTCTCGTCGTGGATAGATGGCGCCTGCGGAGGCTCGGATCTGGTTCCCGACGAT
ATCAAGTCCGTCTTCGACATCCTCAACCAGGTCCCCACCGACAAGTCGAGCTTTAAACGGCCCCGACGGATCCGG
AAGGGCAGCGGGAAAAAGGGCGACTCCGGTAACCCCCGGGCCCCGGTCCGGCCGCAAAAGACGCCCAACGGAGGT
CCATCCGGATCCGGGATACGGAAGAGGCAGTGCCACGTTCCCGTCCACAAGTCCACCAGCCGCGTCGGCCGCGGC
AGGAACACGCTGCGGCTCCTCTCCTGCGACCGGCACAAGCGGACGACGAAGACGGAGGAGATGATCATCACCTCG
CTCGTCTACGCCCGCCACGCCCGGCCGACGCTCGTCACCAAGACGTGCTCCAGCCGGTGGAAGCAGGCGTGCCAG
CACTATAGCTCCGCCAACCGCGAGAACAGGCGGTGGGCGACGCTCACCTGCCCGCAGGAGGCGGCCACGACGTCG
AGCCGGCGGATCGAGGCCTCGGGCGTGGCCAAGTGGCGAGCCGAGCACAGGGGCCACGGCTGGCGGGACGCCGCC
CACCGAGAGCACGCCAACTGTCAGGTCGACGAGTGGCCGCCCGTCTACTTCCTCGGCCGCAACGACCCGCTCCGG
CTTCACTCGGGCCTCGATCAACGCGGCCAGCGGGTGCGCTTCCTCCCTCAGAGCCACAACGCCGGGGCCGCTAGC
CTATGGCGCGGCGTCTGCTTCGTGCCCGCCGTGGCCGCCATGTCCGACGCCGAGTTCCGGAAGCAGGCCGAGGCC
GACGCCAAGTCCTTCAAGACGACCAACGCCAAGAAGCGCAAGCAGATATACGCCACCGCCACCGTCAACCTGCGT
CCCGAGTTCGTCATCTCCTCCTGGGGTCACTCCGCCGACCCGGCCCGCGACGACGGCCTCTGGGACAACCCCTGC
TGGCCCAGGGCCATCGCCGCCAACGACCCCGGATTCGCCCTCTTGTCCCTCGACGAGTGGTACGACAAGAATCCG
AGGGCTCAGGGCCGGAGGACCCAGTGGGACTACGACCGGGACTATCAAAAGGGGCAGAACGGGGACTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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