Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|1773
Gene name
Locationscaffold_167:23097..25933
Strand-
Gene length (bp)2836
Transcript length (bp)2781
Coding sequence length (bp)2778
Protein length (aa) 926

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00350 Dynamin_N Dynamin family 5.7E-18 35 224
PF01031 Dynamin_M Dynamin central region 5.5E-15 240 512

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|Q91196|MX2_ONCMY Interferon-induced GTP-binding protein Mx2 OS=Oncorhynchus mykiss GN=mx2 PE=2 SV=1 15 666 7.0E-30
sp|Q91197|MX3_ONCMY Interferon-induced GTP-binding protein Mx3 OS=Oncorhynchus mykiss GN=mx3 PE=2 SV=1 12 666 5.0E-28
sp|Q6PW23|MX_EPICO Interferon-induced GTP-binding protein Mx OS=Epinephelus coioides GN=mx PE=2 SV=1 12 528 6.0E-28
sp|Q2KTC2|MX_DICLA Interferon-induced GTP-binding protein Mx OS=Dicentrarchus labrax GN=mx PE=2 SV=2 12 671 7.0E-28
sp|Q91192|MX1_ONCMY Interferon-induced GTP-binding protein Mx1 OS=Oncorhynchus mykiss GN=mx1 PE=2 SV=1 12 666 7.0E-28
[Show all]
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Swissprot ID Swissprot Description Start End E-value
sp|Q91196|MX2_ONCMY Interferon-induced GTP-binding protein Mx2 OS=Oncorhynchus mykiss GN=mx2 PE=2 SV=1 15 666 7.0E-30
sp|Q91197|MX3_ONCMY Interferon-induced GTP-binding protein Mx3 OS=Oncorhynchus mykiss GN=mx3 PE=2 SV=1 12 666 5.0E-28
sp|Q6PW23|MX_EPICO Interferon-induced GTP-binding protein Mx OS=Epinephelus coioides GN=mx PE=2 SV=1 12 528 6.0E-28
sp|Q2KTC2|MX_DICLA Interferon-induced GTP-binding protein Mx OS=Dicentrarchus labrax GN=mx PE=2 SV=2 12 671 7.0E-28
sp|Q91192|MX1_ONCMY Interferon-induced GTP-binding protein Mx1 OS=Oncorhynchus mykiss GN=mx1 PE=2 SV=1 12 666 7.0E-28
sp|Q7T2P0|MX1_ICTPU Interferon-induced GTP-binding protein Mx1 OS=Ictalurus punctatus GN=mx1 PE=2 SV=1 12 326 3.0E-26
sp|Q000A9|MX_LARCR Interferon-induced GTP-binding protein Mx OS=Larimichthys crocea GN=mx PE=2 SV=1 12 666 3.0E-26
sp|P20593|MX_PERFL Interferon-induced GTP-binding protein Mx (Fragment) OS=Perca fluviatilis GN=mx PE=2 SV=1 12 303 4.0E-26
sp|Q9BDI7|MX2_BOVIN Interferon-induced GTP-binding protein Mx2 OS=Bos taurus GN=MX2 PE=2 SV=1 12 325 8.0E-26
sp|Q5I2P5|MX2_SHEEP Interferon-induced GTP-binding protein Mx2 OS=Ovis aries GN=MX2 PE=2 SV=1 12 325 9.0E-26
sp|Q6TN15|MX_SINCH Interferon-induced GTP-binding protein Mx OS=Siniperca chuatsi GN=mx PE=2 SV=1 12 361 1.0E-25
sp|Q9N0Y2|MX2_CANLF Interferon-induced GTP-binding protein Mx2 OS=Canis lupus familiaris GN=MX2 PE=2 SV=1 12 355 3.0E-25
sp|Q28379|MX1_HORSE Interferon-induced GTP-binding protein Mx1 OS=Equus caballus GN=MX1 PE=2 SV=1 12 367 4.0E-25
sp|Q9N0Y3|MX1_CANLF Interferon-induced GTP-binding protein Mx1 OS=Canis lupus familiaris GN=MX1 PE=2 SV=1 12 326 3.0E-24
sp|P20592|MX2_HUMAN Interferon-induced GTP-binding protein Mx2 OS=Homo sapiens GN=MX2 PE=1 SV=1 12 355 4.0E-24
sp|Q8JH68|MXA_DANRE Interferon-induced GTP-binding protein MxA OS=Danio rerio GN=mxa PE=2 SV=1 12 326 7.0E-24
sp|P79135|MX1_BOVIN Interferon-induced GTP-binding protein Mx1 OS=Bos taurus GN=MX1 PE=2 SV=4 12 454 9.0E-24
sp|Q4U4N4|MX2_ICTPU Interferon-induced GTP-binding protein Mx2 OS=Ictalurus punctatus GN=mx2 PE=2 SV=1 12 339 1.0E-23
sp|Q90597|MX_CHICK Interferon-induced GTP-binding protein Mx OS=Gallus gallus GN=MX PE=2 SV=1 15 402 1.0E-23
sp|Q4ADG7|MX1_OTABY Interferon-induced GTP-binding protein Mx1 OS=Otaria byronia GN=MX1 PE=2 SV=1 2 594 2.0E-23
sp|Q4ADG6|MX1_PHOVI Interferon-induced GTP-binding protein Mx1 OS=Phoca vitulina GN=MX1 PE=2 SV=1 2 530 3.0E-23
sp|P33237|MX1_SHEEP Interferon-induced GTP-binding protein Mx1 OS=Ovis aries GN=MX1 PE=1 SV=1 12 453 3.0E-23
sp|P20591|MX1_HUMAN Interferon-induced GTP-binding protein Mx1 OS=Homo sapiens GN=MX1 PE=1 SV=4 12 325 6.0E-23
sp|P27594|MX1_PIG Interferon-induced GTP-binding protein Mx1 OS=Sus scrofa GN=MX1 PE=2 SV=1 12 326 8.0E-23
sp|A1E2I5|MX2_MACMU Interferon-induced GTP-binding protein Mx2 OS=Macaca mulatta GN=MX2 PE=2 SV=1 12 355 9.0E-23
sp|P18590|MX3_RAT Interferon-induced GTP-binding protein Mx3 OS=Rattus norvegicus GN=Mx3 PE=2 SV=1 12 355 1.0E-22
sp|A0MWD1|MX2_BUBBU Interferon-induced GTP-binding protein Mx2 OS=Bubalus bubalis GN=MX2 PE=2 SV=1 12 325 1.0E-22
sp|A7VK00|MX2_PIG Interferon-induced GTP-binding protein Mx2 OS=Sus scrofa GN=MX2 PE=2 SV=1 2 326 1.0E-22
sp|Q5U752|MX_SOLSE Interferon-induced GTP-binding protein Mx OS=Solea senegalensis GN=mx PE=2 SV=1 12 339 2.0E-22
sp|Q4ADG8|MX1_EUMJU Interferon-induced GTP-binding protein Mx1 OS=Eumetopias jubatus GN=MX1 PE=2 SV=1 2 546 2.0E-22
sp|Q800G8|MXB_DANRE Interferon-induced GTP-binding protein MxB OS=Danio rerio GN=mxb PE=2 SV=2 12 325 2.0E-22
sp|Q5R5G3|MX1_PONAB Interferon-induced GTP-binding protein Mx1 OS=Pongo abelii GN=MX1 PE=2 SV=1 12 325 2.0E-22
sp|P18589|MX2_RAT Interferon-induced GTP-binding protein Mx2 OS=Rattus norvegicus GN=Mx2 PE=2 SV=1 12 355 5.0E-22
sp|A1E2I4|MX1_MACMU Interferon-induced GTP-binding protein Mx1 OS=Macaca mulatta GN=MX1 PE=2 SV=1 12 383 1.0E-21
sp|P33238|MX_ANAPL Interferon-induced GTP-binding protein Mx OS=Anas platyrhynchos GN=MX PE=2 SV=1 12 361 3.0E-21
sp|P18588|MX1_RAT Interferon-induced GTP-binding protein Mx1 OS=Rattus norvegicus GN=Mx1 PE=1 SV=1 12 326 4.0E-21
sp|Q6DKF0|MXC_DANRE Interferon-induced GTP-binding protein MxC OS=Danio rerio GN=mxc PE=2 SV=1 12 325 4.0E-21
sp|Q9WVP9|MX2_MOUSE Interferon-induced GTP-binding protein Mx2 OS=Mus musculus GN=Mx2 PE=2 SV=2 12 325 6.0E-21
sp|Q9URZ5|VPS1_SCHPO Vacuolar protein sorting-associated protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=vps1 PE=3 SV=2 17 355 8.0E-21
sp|P09922|MX1_MOUSE Interferon-induced GTP-binding protein Mx1 OS=Mus musculus GN=Mx1 PE=1 SV=1 12 326 3.0E-20
sp|Q8S944|DRP3A_ARATH Dynamin-related protein 3A OS=Arabidopsis thaliana GN=DRP3A PE=1 SV=2 17 355 7.0E-20
sp|Q6TKS7|MX_CTEID Interferon-induced GTP-binding protein Mx OS=Ctenopharyngodon idella GN=mx PE=2 SV=1 12 326 8.0E-20
sp|Q800G5|MXE_DANRE Interferon-induced GTP-binding protein MxE OS=Danio rerio GN=mxe PE=2 SV=1 12 325 9.0E-20
sp|Q9ZP55|DRP4C_ARATH Dynamin-related protein 4C OS=Arabidopsis thaliana GN=DRP4C PE=2 SV=1 3 324 9.0E-20
sp|Q94464|DYNA_DICDI Dynamin-A OS=Dictyostelium discoideum GN=dymA PE=1 SV=2 17 417 5.0E-19
sp|Q8LFT2|DRP3B_ARATH Dynamin-related protein 3B OS=Arabidopsis thaliana GN=DRP3B PE=1 SV=2 17 355 5.0E-19
sp|Q9ZP56|DRP4A_ARATH Putative dynamin-related protein 4A OS=Arabidopsis thaliana GN=DRP4A PE=5 SV=1 3 277 3.0E-17
sp|Q8LF21|DRP1C_ARATH Dynamin-related protein 1C OS=Arabidopsis thaliana GN=DRP1C PE=1 SV=2 24 363 8.0E-17
sp|Q39828|SDL5A_SOYBN Dynamin-related protein 5A OS=Glycine max PE=2 SV=1 31 363 2.0E-16
sp|Q84XF3|DRP1B_ARATH Dynamin-related protein 1B OS=Arabidopsis thaliana GN=DRP1B PE=1 SV=1 31 355 5.0E-16
sp|Q39821|SDLCA_SOYBN Dynamin-related protein 12A OS=Glycine max PE=1 SV=1 31 363 5.0E-16
sp|Q8S3C9|DRP1D_ARATH Dynamin-related protein 1D OS=Arabidopsis thaliana GN=DRP1D PE=2 SV=2 31 358 6.0E-16
sp|Q9FNX5|DRP1E_ARATH Dynamin-related protein 1E OS=Arabidopsis thaliana GN=DRP1E PE=1 SV=1 31 363 6.0E-16
sp|P21576|VPS1_YEAST Vacuolar protein sorting-associated protein 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=VPS1 PE=1 SV=2 30 325 9.0E-16
sp|P27619|DYN_DROME Dynamin OS=Drosophila melanogaster GN=shi PE=1 SV=2 17 323 3.0E-15
sp|P42697|DRP1A_ARATH Dynamin-related protein 1A OS=Arabidopsis thaliana GN=DRP1A PE=1 SV=3 31 356 2.0E-14
sp|Q7SXN5|DNM1L_DANRE Dynamin-1-like protein OS=Danio rerio GN=dnm1l PE=2 SV=1 17 345 5.0E-14
sp|P50570|DYN2_HUMAN Dynamin-2 OS=Homo sapiens GN=DNM2 PE=1 SV=2 17 345 6.0E-14
sp|P39055|DYN1_CAEEL Dynamin OS=Caenorhabditis elegans GN=dyn-1 PE=1 SV=3 19 306 6.0E-14
sp|A6H7I5|DYN2_BOVIN Dynamin-2 OS=Bos taurus GN=DNM2 PE=2 SV=1 17 345 1.0E-13
sp|P39052|DYN2_RAT Dynamin-2 OS=Rattus norvegicus GN=Dnm2 PE=1 SV=1 17 345 2.0E-13
sp|Q8BZ98|DYN3_MOUSE Dynamin-3 OS=Mus musculus GN=Dnm3 PE=1 SV=1 17 345 3.0E-13
sp|Q08877|DYN3_RAT Dynamin-3 OS=Rattus norvegicus GN=Dnm3 PE=1 SV=2 17 345 3.0E-13
sp|P39054|DYN2_MOUSE Dynamin-2 OS=Mus musculus GN=Dnm2 PE=1 SV=2 17 345 3.0E-13
sp|O00429|DNM1L_HUMAN Dynamin-1-like protein OS=Homo sapiens GN=DNM1L PE=1 SV=2 17 366 8.0E-13
sp|Q8K1M6|DNM1L_MOUSE Dynamin-1-like protein OS=Mus musculus GN=Dnm1l PE=1 SV=2 17 366 9.0E-13
sp|Q9UQ16|DYN3_HUMAN Dynamin-3 OS=Homo sapiens GN=DNM3 PE=1 SV=4 17 345 2.0E-12
sp|Q2KIA5|DNM1L_BOVIN Dynamin-1-like protein OS=Bos taurus GN=DNM1L PE=2 SV=1 17 366 7.0E-12
sp|O35303|DNM1L_RAT Dynamin-1-like protein OS=Rattus norvegicus GN=Dnm1l PE=1 SV=1 17 366 8.0E-12
sp|Q09748|DNM1_SCHPO Dynamin-related protein dnm1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=dnm1 PE=3 SV=1 29 355 9.0E-12
sp|P54861|DNM1_YEAST Dynamin-related protein DNM1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=DNM1 PE=1 SV=1 17 366 1.0E-11
sp|Q08DF4|DYN1_BOVIN Dynamin-1 OS=Bos taurus GN=DNM1 PE=2 SV=1 11 548 4.0E-11
sp|P21575|DYN1_RAT Dynamin-1 OS=Rattus norvegicus GN=Dnm1 PE=1 SV=2 11 548 5.0E-11
sp|Q05193|DYN1_HUMAN Dynamin-1 OS=Homo sapiens GN=DNM1 PE=1 SV=2 11 345 5.0E-11
sp|P39053|DYN1_MOUSE Dynamin-1 OS=Mus musculus GN=Dnm1 PE=1 SV=2 11 345 8.0E-11
sp|P32266|MGM1_YEAST Dynamin-like GTPase MGM1, mitochondrial OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=MGM1 PE=1 SV=3 12 224 2.0E-10
sp|P87320|MSP1_SCHPO Protein msp1, mitochondrial OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=msp1 PE=3 SV=2 30 310 5.0E-10
sp|Q5F499|OPA1_CHICK Dynamin-like 120 kDa protein, mitochondrial OS=Gallus gallus GN=OPA1 PE=2 SV=1 14 224 1.0E-06
sp|P58281|OPA1_MOUSE Dynamin-like 120 kDa protein, mitochondrial OS=Mus musculus GN=Opa1 PE=1 SV=1 14 224 2.0E-06
sp|Q2TA68|OPA1_RAT Dynamin-like 120 kDa protein, mitochondrial OS=Rattus norvegicus GN=Opa1 PE=1 SV=1 14 224 2.0E-06
sp|Q5U3A7|OPA1_DANRE Dynamin-like 120 kDa protein, mitochondrial OS=Danio rerio GN=opa1 PE=2 SV=1 32 272 2.0E-06
sp|Q5RAM3|OPA1_PONAB Dynamin-like 120 kDa protein, mitochondrial OS=Pongo abelii GN=OPA1 PE=2 SV=1 32 224 3.0E-06
sp|O60313|OPA1_HUMAN Dynamin-like 120 kDa protein, mitochondrial OS=Homo sapiens GN=OPA1 PE=1 SV=3 32 224 3.0E-06
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GO

(None)

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 26 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 17.01 8.84 25.19
CcL In ants, during behavior modification 19.33 9.90 28.76
CcD In ants, recently dead 12.31 6.02 18.59

Differential expression

Label1 Label2 Q-value Significant difference
SC16a CcL 0.628690 no
SC16a CcD 0.192314 no
CcL CcD 0.054615 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|1773
MSIISPPSPDHRGLLDMMDEFRAQGIDRYVALPEIIVAGDGCAGKGAVLEAMTGLAGLAENELCTRHITELMLRP
SPHTRIKASILPDRDGGQEGQEQLRLFDRTVDEPDRNLGDVIDAARRAMGLDESGNAVRKDVLRVELTGPELPSL
TLVDLPCLSPACDAVQEEKEADAVTDMVLGYMNRKRSIILAVVSAQTDFSLPRVMRLAREADPDGIRTLGLITEP
GKPGKGSEGEASYVQLAQNRNVRLRLGWHVLDTRQHSEAEDDFFRQNPWTNIDPLHLGMTSLKPRLVRVLKYQIL
HQLPSLAGDVSDSIDASKERLEKLGSPRGSIRDQRRYLLQISQSFFQLTRAAIDGIYGDEFFGSSRTDDGCRRRL
RAVVQNTLTDFASRMHAQGRSRSIVDFDEREDQPLASNEVLRSAYVEEVRQILHRNRGCELAGTFNPLTVGELFA
EQCQPWRALTMALKDEIVAAVRKTSQAVPYHVAAEETAEKLSEVVNSGIDQLSKGLDAAVDEVLATYLGIHPITY
NSDLVDAVRKAQAERRRRELDARVRQEFGQSVLEPGNVLSVSGGKLLELLAGQSGSDTALSASSLAVDYAEAYYT
ISIKRFIDAVSTRAIECQLVQKLPSVLDPEKMLLLSNDEVSRLAADSEAIISERAYHREKLAALQKTLLELKRLD
GVRPGGGRLGSAVTDGETGESSANWPGGDSDPTQPGSSVSSPQDGAEEQGDEPEPREDTRPDATDEQHPVVEVAA
EPQAEAEAEAEAEAEADAGQMSAQNDEANRVTSEEPPVAENAPAAEEQRVEASAASEEQPHQPSVAAEEEQRPRD
EAHTGGTETGGEASSERTAPGRDERYYDTSTCTGFTPRVAPDEAGRSEGTSSPMIWSINVFENDGRAADGRHDEG
EASRARKKKPHRRHGHIEGVRQREFT
Coding >Ophio5|1773
ATGTCTATCATCAGCCCCCCATCGCCAGACCATCGAGGTCTTCTCGATATGATGGATGAGTTTCGTGCTCAAGGA
ATCGATCGCTATGTCGCCCTCCCCGAGATTATCGTCGCGGGGGATGGATGTGCCGGCAAGGGAGCGGTCCTGGAG
GCTATGACCGGCTTGGCCGGATTGGCTGAGAATGAGCTGTGCACTCGCCATATTACAGAACTGATGTTGCGCCCT
TCGCCTCACACCAGGATCAAGGCATCCATTCTCCCTGACAGAGACGGCGGCCAGGAGGGACAGGAGCAGCTCCGA
CTATTCGACAGAACTGTCGACGAACCGGACCGAAACCTCGGCGACGTCATCGACGCAGCAAGAAGAGCAATGGGT
CTGGACGAGTCTGGAAATGCCGTCAGAAAGGACGTGCTTCGCGTCGAGTTGACGGGCCCAGAACTACCAAGCCTG
ACCTTGGTCGACCTCCCGTGCCTTTCTCCGGCTTGCGACGCTGTGCAGGAGGAAAAGGAGGCGGACGCCGTCACC
GACATGGTGCTCGGCTACATGAATAGGAAGAGAAGCATCATACTGGCTGTTGTCTCTGCCCAGACTGACTTTTCT
CTGCCGAGAGTGATGCGTCTCGCTCGAGAGGCGGATCCGGATGGAATTCGCACCCTCGGGCTCATCACCGAGCCT
GGAAAGCCGGGAAAGGGGTCCGAAGGTGAAGCTTCTTACGTGCAACTGGCTCAGAACCGCAATGTCAGGCTCCGA
CTGGGCTGGCACGTCCTCGACACCCGACAGCATAGCGAAGCCGAGGATGACTTCTTCCGCCAGAATCCTTGGACC
AACATCGACCCCTTACATCTGGGCATGACGTCGCTCAAGCCTCGACTCGTCCGCGTGCTCAAGTACCAGATTCTG
CACCAACTGCCGAGCCTGGCAGGAGACGTCTCCGACAGTATCGACGCCAGCAAGGAGAGACTCGAGAAGCTGGGC
TCGCCCCGCGGCTCCATCCGCGATCAGCGCCGTTATCTGCTGCAAATCAGCCAGAGCTTCTTCCAGCTGACGCGG
GCAGCCATCGACGGCATATACGGCGACGAATTCTTCGGCAGCTCCAGGACGGACGACGGTTGCCGGCGACGGCTG
CGTGCCGTCGTCCAAAACACACTGACCGACTTCGCCAGCAGGATGCATGCCCAGGGGCGTTCTCGATCCATAGTC
GACTTTGACGAGAGAGAAGACCAGCCCTTGGCCTCGAACGAGGTGCTGCGTTCGGCCTACGTGGAGGAGGTGAGG
CAGATATTGCACCGGAACCGCGGTTGTGAACTGGCGGGCACCTTCAACCCGCTCACTGTCGGAGAGCTCTTTGCC
GAGCAATGCCAACCATGGCGCGCCCTGACCATGGCTCTCAAGGACGAGATAGTGGCGGCGGTCCGCAAGACGAGC
CAGGCTGTGCCTTATCACGTTGCCGCCGAGGAGACGGCCGAGAAGTTATCAGAGGTTGTCAACTCGGGAATCGAC
CAGCTGAGCAAGGGACTGGACGCCGCCGTCGATGAGGTCCTGGCAACCTACCTCGGCATCCATCCCATCACTTAC
AACAGCGACCTTGTCGACGCCGTCCGCAAGGCCCAGGCCGAGAGACGCCGACGGGAGCTCGACGCTCGTGTCCGA
CAGGAGTTTGGGCAGTCTGTCTTGGAGCCTGGAAATGTCTTGTCGGTGAGTGGAGGCAAGCTGCTGGAACTGCTC
GCTGGGCAGAGCGGAAGCGACACGGCGCTTTCAGCGAGCTCCCTGGCTGTCGACTACGCCGAGGCGTACTACACG
ATATCCATCAAGCGATTCATCGACGCCGTCAGCACCCGCGCCATCGAGTGCCAACTCGTGCAAAAGCTGCCGTCC
GTCCTCGACCCGGAGAAGATGCTGCTGCTCAGCAACGACGAGGTGTCGCGTCTGGCGGCCGATAGCGAGGCCATC
ATCTCCGAGCGTGCCTACCACAGGGAGAAGCTTGCGGCGCTGCAGAAGACGCTCCTGGAGCTCAAGCGGCTGGAC
GGCGTTCGGCCTGGCGGCGGTCGACTAGGCTCGGCTGTCACGGACGGAGAGACGGGGGAATCATCTGCCAACTGG
CCGGGAGGAGACTCTGACCCGACTCAACCTGGTTCGTCCGTGTCGTCGCCCCAGGATGGGGCCGAAGAACAAGGA
GATGAGCCAGAGCCGCGGGAGGATACTCGGCCGGATGCGACGGACGAGCAGCATCCTGTTGTCGAGGTCGCGGCG
GAGCCTCAGGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGATGCGGGCCAGATGTCGGCGCAGAAT
GACGAGGCAAACAGAGTTACAAGCGAGGAGCCTCCCGTCGCAGAGAATGCTCCTGCCGCAGAGGAGCAGCGTGTC
GAGGCTTCTGCTGCCTCGGAAGAGCAGCCTCACCAGCCATCTGTCGCGGCAGAGGAGGAACAGCGTCCCCGAGAC
GAGGCTCACACAGGGGGGACCGAAACCGGCGGAGAGGCCTCCAGCGAGAGGACGGCGCCCGGACGGGACGAGCGT
TACTACGATACCTCTACCTGCACCGGCTTCACGCCTCGCGTCGCGCCCGACGAGGCTGGGCGGAGCGAGGGGACG
AGCAGCCCGATGATCTGGTCAATCAACGTCTTTGAGAACGATGGGAGGGCGGCAGATGGTCGACACGATGAGGGC
GAGGCGTCGAGGGCGAGGAAGAAGAAGCCGCATCGTCGACACGGGCATATCGAGGGAGTCAGGCAGAGAGAGTTT
ACA
Transcript >Ophio5|1773
ATGTCTATCATCAGCCCCCCATCGCCAGACCATCGAGGTCTTCTCGATATGATGGATGAGTTTCGTGCTCAAGGA
ATCGATCGCTATGTCGCCCTCCCCGAGATTATCGTCGCGGGGGATGGATGTGCCGGCAAGGGAGCGGTCCTGGAG
GCTATGACCGGCTTGGCCGGATTGGCTGAGAATGAGCTGTGCACTCGCCATATTACAGAACTGATGTTGCGCCCT
TCGCCTCACACCAGGATCAAGGCATCCATTCTCCCTGACAGAGACGGCGGCCAGGAGGGACAGGAGCAGCTCCGA
CTATTCGACAGAACTGTCGACGAACCGGACCGAAACCTCGGCGACGTCATCGACGCAGCAAGAAGAGCAATGGGT
CTGGACGAGTCTGGAAATGCCGTCAGAAAGGACGTGCTTCGCGTCGAGTTGACGGGCCCAGAACTACCAAGCCTG
ACCTTGGTCGACCTCCCGTGCCTTTCTCCGGCTTGCGACGCTGTGCAGGAGGAAAAGGAGGCGGACGCCGTCACC
GACATGGTGCTCGGCTACATGAATAGGAAGAGAAGCATCATACTGGCTGTTGTCTCTGCCCAGACTGACTTTTCT
CTGCCGAGAGTGATGCGTCTCGCTCGAGAGGCGGATCCGGATGGAATTCGCACCCTCGGGCTCATCACCGAGCCT
GGAAAGCCGGGAAAGGGGTCCGAAGGTGAAGCTTCTTACGTGCAACTGGCTCAGAACCGCAATGTCAGGCTCCGA
CTGGGCTGGCACGTCCTCGACACCCGACAGCATAGCGAAGCCGAGGATGACTTCTTCCGCCAGAATCCTTGGACC
AACATCGACCCCTTACATCTGGGCATGACGTCGCTCAAGCCTCGACTCGTCCGCGTGCTCAAGTACCAGATTCTG
CACCAACTGCCGAGCCTGGCAGGAGACGTCTCCGACAGTATCGACGCCAGCAAGGAGAGACTCGAGAAGCTGGGC
TCGCCCCGCGGCTCCATCCGCGATCAGCGCCGTTATCTGCTGCAAATCAGCCAGAGCTTCTTCCAGCTGACGCGG
GCAGCCATCGACGGCATATACGGCGACGAATTCTTCGGCAGCTCCAGGACGGACGACGGTTGCCGGCGACGGCTG
CGTGCCGTCGTCCAAAACACACTGACCGACTTCGCCAGCAGGATGCATGCCCAGGGGCGTTCTCGATCCATAGTC
GACTTTGACGAGAGAGAAGACCAGCCCTTGGCCTCGAACGAGGTGCTGCGTTCGGCCTACGTGGAGGAGGTGAGG
CAGATATTGCACCGGAACCGCGGTTGTGAACTGGCGGGCACCTTCAACCCGCTCACTGTCGGAGAGCTCTTTGCC
GAGCAATGCCAACCATGGCGCGCCCTGACCATGGCTCTCAAGGACGAGATAGTGGCGGCGGTCCGCAAGACGAGC
CAGGCTGTGCCTTATCACGTTGCCGCCGAGGAGACGGCCGAGAAGTTATCAGAGGTTGTCAACTCGGGAATCGAC
CAGCTGAGCAAGGGACTGGACGCCGCCGTCGATGAGGTCCTGGCAACCTACCTCGGCATCCATCCCATCACTTAC
AACAGCGACCTTGTCGACGCCGTCCGCAAGGCCCAGGCCGAGAGACGCCGACGGGAGCTCGACGCTCGTGTCCGA
CAGGAGTTTGGGCAGTCTGTCTTGGAGCCTGGAAATGTCTTGTCGGTGAGTGGAGGCAAGCTGCTGGAACTGCTC
GCTGGGCAGAGCGGAAGCGACACGGCGCTTTCAGCGAGCTCCCTGGCTGTCGACTACGCCGAGGCGTACTACACG
ATATCCATCAAGCGATTCATCGACGCCGTCAGCACCCGCGCCATCGAGTGCCAACTCGTGCAAAAGCTGCCGTCC
GTCCTCGACCCGGAGAAGATGCTGCTGCTCAGCAACGACGAGGTGTCGCGTCTGGCGGCCGATAGCGAGGCCATC
ATCTCCGAGCGTGCCTACCACAGGGAGAAGCTTGCGGCGCTGCAGAAGACGCTCCTGGAGCTCAAGCGGCTGGAC
GGCGTTCGGCCTGGCGGCGGTCGACTAGGCTCGGCTGTCACGGACGGAGAGACGGGGGAATCATCTGCCAACTGG
CCGGGAGGAGACTCTGACCCGACTCAACCTGGTTCGTCCGTGTCGTCGCCCCAGGATGGGGCCGAAGAACAAGGA
GATGAGCCAGAGCCGCGGGAGGATACTCGGCCGGATGCGACGGACGAGCAGCATCCTGTTGTCGAGGTCGCGGCG
GAGCCTCAGGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGATGCGGGCCAGATGTCGGCGCAGAAT
GACGAGGCAAACAGAGTTACAAGCGAGGAGCCTCCCGTCGCAGAGAATGCTCCTGCCGCAGAGGAGCAGCGTGTC
GAGGCTTCTGCTGCCTCGGAAGAGCAGCCTCACCAGCCATCTGTCGCGGCAGAGGAGGAACAGCGTCCCCGAGAC
GAGGCTCACACAGGGGGGACCGAAACCGGCGGAGAGGCCTCCAGCGAGAGGACGGCGCCCGGACGGGACGAGCGT
TACTACGATACCTCTACCTGCACCGGCTTCACGCCTCGCGTCGCGCCCGACGAGGCTGGGCGGAGCGAGGGGACG
AGCAGCCCGATGATCTGGTCAATCAACGTCTTTGAGAACGATGGGAGGGCGGCAGATGGTCGACACGATGAGGGC
GAGGCGTCGAGGGCGAGGAAGAAGAAGCCGCATCGTCGACACGGGCATATCGAGGGAGTCAGGCAGAGAGAGTTT
ACATGA
Gene >Ophio5|1773
ATGTCTATCATCAGCCCCCCATCGCCAGACCATCGAGGTCTTCTCGATATGATGGATGAGTTTCGTGCTCAAGGA
ATCGATCGCTATGTCGCCCTCCCCGAGATTATCGTCGCGGGGGATGGATGTGCCGGCAAGGGAGCGGTCCTGGAG
GCTATGACCGGCTTGGCCGGATTGGCTGAGAATGAGCTGTGCACTCGCCATATTACAGAACTGATGTTGCGCCCT
TCGCCTCACACCAGGATCAAGGCATCCATTCTCCCTGACAGAGACGGCGGCCAGGAGGGACAGGAGCAGCTCCGA
CTATTCGACAGAACTGTCGACGAACCGGACCGAAACCTCGGCGACGTCATCGACGCAGCAAGAAGAGCAATGGGT
CTGGACGAGTCTGGAAATGCCGTCAGAAAGGACGTGCTTCGCGTCGAGTTGACGGGCCCAGAACTACCAAGCCTG
ACCTTGGTCGACCTCCCGTGCCTTTCTCCGGCTTGCGACGCTGTGCAGGAGGAAAAGGAGGCGGACGCCGTCACC
GACATGGTGCTCGGCTACATGAATAGGAAGAGAAGCATCATACTGGCTGTTGTCTCTGCCCAGACTGACTTTTCT
CTGCCGAGAGTGATGCGTCTCGCTCGAGAGGCGGATCCGGATGGAATTCGCACCCTCGGGCTCATCACCGAGCCT
GGAAAGCCGGGAAAGGGGTCCGAAGGTGAAGCTTCTTACGTGCAACTGGCTCAGAACCGCAATGTCAGGCTCCGA
CTGGGCTGGCACGTCCTCGACACCCGACAGCATAGCGAAGCCGAGGATGACTTCTTCCGCCAGAATCCTTGGACC
AACATCGACCCCTTACATCTGGGCATGACGTCGCTCAAGCCTCGACTCGTCCGCGTGCTCAAGTACCAGATTCTG
CACCAACTGCCGAGCCTGGCAGGAGACGTCTCCGACAGTATCGACGCCAGCAAGGAGAGACTCGAGAAGCTGGGC
TCGCCCCGCGGCTCCATCCGCGATCAGCGCCGTTATCTGCTGCAAATCAGCCAGAGCTTCTTCCAGCTGACGCGG
GCAGCCATCGACGGCATATACGGCGACGAATTCTTCGGCAGCTCCAGGACGGACGACGGTTGCCGGCGACGGCTG
CGTGCCGTCGTCCAAAACACACTGACCGACTTCGCCAGCAGGATGCATGCCCAGGGGCGTTCTCGATCCATAGTC
GACTTTGACGAGAGAGAAGACCAGCCCTTGGCCTCGAACGAGGTGCTGCGTTCGGCCTACGTGGAGGAGGTGAGG
CAGATATTGCACCGGAACCGCGGTTGTGAACTGGCGGGCACCTTCAACCCGCTCACTGTCGGAGAGCTCTTTGCC
GAGCAATGCCAACCATGGCGCGCCCTGACCATGGCTCTCAAGGACGAGATAGTGGCGGCGGTCCGCAAGACGAGC
CAGGCTGTGCCTTATCACGTTGCCGCCGAGGAGACGGCCGAGAAGTTATCAGAGGTTGTCAACTCGGGAATCGAC
CAGCTGAGCAAGGGACTGGACGCCGCCGTCGATGAGGTCCTGGCAACCTACCTCGGCATCCATCCCATCACTTAC
AACAGCGACCTTGTCGACGCCGTCCGCAAGGCCCAGGCCGAGAGACGCCGACGGGAGCTCGACGCTCGTGTCCGA
CAGGAGTTTGGGCAGTCTGTCTTGGAGCCTGGAAATGTCTTGTCGGTGAGTGGAGGCAAGCTGCTGGAACTGCTC
GCTGGGCAGAGCGGAAGCGACACGGCGCTTTCAGCGAGCTCCCTGGCTGTCGACTACGCCGAGGCGTACTACACG
GTCCGTCAAGCTTATGACGTGGGCAAGCTCGCTACTCAGAACTGACGGATGCCAGATATCCATCAAGCGATTCAT
CGACGCCGTCAGCACCCGCGCCATCGAGTGCCAACTCGTGCAAAAGCTGCCGTCCGTCCTCGACCCGGAGAAGAT
GCTGCTGCTCAGCAACGACGAGGTGTCGCGTCTGGCGGCCGATAGCGAGGCCATCATCTCCGAGCGTGCCTACCA
CAGGGAGAAGCTTGCGGCGCTGCAGAAGACGCTCCTGGAGCTCAAGCGGCTGGACGGCGTTCGGCCTGGCGGCGG
TCGACTAGGCTCGGCTGTCACGGACGGAGAGACGGGGGAATCATCTGCCAACTGGCCGGGAGGAGACTCTGACCC
GACTCAACCTGGTTCGTCCGTGTCGTCGCCCCAGGATGGGGCCGAAGAACAAGGAGATGAGCCAGAGCCGCGGGA
GGATACTCGGCCGGATGCGACGGACGAGCAGCATCCTGTTGTCGAGGTCGCGGCGGAGCCTCAGGCCGAAGCCGA
AGCCGAAGCCGAAGCCGAAGCCGAAGCCGATGCGGGCCAGATGTCGGCGCAGAATGACGAGGCAAACAGAGTTAC
AAGCGAGGAGCCTCCCGTCGCAGAGAATGCTCCTGCCGCAGAGGAGCAGCGTGTCGAGGCTTCTGCTGCCTCGGA
AGAGCAGCCTCACCAGCCATCTGTCGCGGCAGAGGAGGAACAGCGTCCCCGAGACGAGGCTCACACAGGGGGGAC
CGAAACCGGCGGAGAGGCCTCCAGCGAGAGGACGGCGCCCGGACGGGACGAGCGTTACTACGATACCTCTACCTG
CACCGGCTTCACGCCTCGCGTCGCGCCCGACGAGGCTGGGCGGAGCGAGGGGACGAGCAGCCCGATGATCTGGTC
AATCAACGTCTTTGAGAACGATGGGAGGGCGGCAGATGGTCGACACGATGAGGGCGAGGCGTCGAGGGCGAGGAA
GAAGAAGCCGCATCGTCGACACGGGCATATCGAGGGAGTCAGGCAGAGAGAGTTTACATGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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