Fungal Genomics

at Utrecht University

General Properties

Protein IDAgabiH97|004220
Gene name
Locationscaffold_1:1038652..1040488
Strand-
Gene length (bp)1836
Transcript length (bp)1368
Coding sequence length (bp)1368
Protein length (aa) 456

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF02475 Met_10 Met-10+ like-protein 7.5E-67 135 371

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|A8N339|TRM5_COPC7 tRNA (guanine(37)-N1)-methyltransferase OS=Coprinopsis cinerea (strain Okayama-7 / 130 / ATCC MYA-4618 / FGSC 9003) GN=TRM5 PE=3 SV=2 1 426 0.0E+00
sp|Q5KBP2|TRM5_CRYNJ tRNA (guanine(37)-N1)-methyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=TRM5 PE=3 SV=1 11 425 1.0E-111
sp|Q8TFG7|TRM5_SCHPO tRNA (guanine(37)-N1)-methyltransferase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trm5 PE=3 SV=2 21 425 5.0E-98
sp|F4NUJ6|TRM5_BATDJ tRNA (guanine(37)-N1)-methyltransferase OS=Batrachochytrium dendrobatidis (strain JAM81 / FGSC 10211) GN=TRM5 PE=3 SV=1 10 422 3.0E-93
sp|P38793|TRM5_YEAST tRNA (guanine(37)-N1)-methyltransferase OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRM5 PE=1 SV=1 14 395 1.0E-91
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|A8N339|TRM5_COPC7 tRNA (guanine(37)-N1)-methyltransferase OS=Coprinopsis cinerea (strain Okayama-7 / 130 / ATCC MYA-4618 / FGSC 9003) GN=TRM5 PE=3 SV=2 1 426 0.0E+00
sp|Q5KBP2|TRM5_CRYNJ tRNA (guanine(37)-N1)-methyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=TRM5 PE=3 SV=1 11 425 1.0E-111
sp|Q8TFG7|TRM5_SCHPO tRNA (guanine(37)-N1)-methyltransferase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trm5 PE=3 SV=2 21 425 5.0E-98
sp|F4NUJ6|TRM5_BATDJ tRNA (guanine(37)-N1)-methyltransferase OS=Batrachochytrium dendrobatidis (strain JAM81 / FGSC 10211) GN=TRM5 PE=3 SV=1 10 422 3.0E-93
sp|P38793|TRM5_YEAST tRNA (guanine(37)-N1)-methyltransferase OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRM5 PE=1 SV=1 14 395 1.0E-91
sp|E3KWE1|TRM5_PUCGT tRNA (guanine(37)-N1)-methyltransferase OS=Puccinia graminis f. sp. tritici (strain CRL 75-36-700-3 / race SCCL) GN=TRM5 PE=3 SV=2 23 412 7.0E-91
sp|D0NLC2|TRM5_PHYIT tRNA (guanine(37)-N1)-methyltransferase OS=Phytophthora infestans (strain T30-4) GN=PITG_12867 PE=3 SV=1 21 426 8.0E-89
sp|F5HAU9|TRM5_NEUCR tRNA (guanine(37)-N1)-methyltransferase OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=trm5 PE=3 SV=1 10 419 3.0E-88
sp|Q3MHN8|TRM5_BOVIN tRNA (guanine(37)-N1)-methyltransferase OS=Bos taurus GN=TRMT5 PE=2 SV=1 10 426 7.0E-86
sp|Q4WX30|TRM5_ASPFU tRNA (guanine(37)-N1)-methyltransferase OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=trm5 PE=3 SV=1 11 415 2.0E-84
sp|C8VJ35|TRM5_EMENI tRNA (guanine(37)-N1)-methyltransferase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=trm5 PE=3 SV=1 11 418 5.0E-84
sp|B8A5G9|TRM5_DANRE tRNA (guanine(37)-N1)-methyltransferase OS=Danio rerio GN=trmt5 PE=3 SV=1 11 426 9.0E-82
sp|Q6CA67|TRM5_YARLI tRNA (guanine(37)-N1)-methyltransferase OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=TRM5 PE=3 SV=1 21 427 1.0E-81
sp|Q9D0C4|TRM5_MOUSE tRNA (guanine(37)-N1)-methyltransferase OS=Mus musculus GN=Trmt5 PE=1 SV=1 10 426 2.0E-81
sp|A9T6G5|TRM5_PHYPA tRNA (guanine(37)-N1)-methyltransferase OS=Physcomitrella patens subsp. patens GN=PHYPADRAFT_141055 PE=3 SV=1 21 453 2.0E-81
sp|C4YH95|TRM5_CANAW tRNA (guanine(37)-N1)-methyltransferase OS=Candida albicans (strain WO-1) GN=TRM5 PE=3 SV=1 21 425 3.0E-81
sp|Q59TN1|TRM5_CANAL tRNA (guanine(37)-N1)-methyltransferase OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=TRM5 PE=3 SV=1 21 425 7.0E-80
sp|C7YK87|TRM5_NECH7 tRNA (guanine(37)-N1)-methyltransferase OS=Nectria haematococca (strain 77-13-4 / ATCC MYA-4622 / FGSC 9596 / MPVI) GN=TRM5 PE=3 SV=1 21 419 3.0E-79
sp|Q4PHW2|TRM5_USTMA tRNA (guanine(37)-N1)-methyltransferase OS=Ustilago maydis (strain 521 / FGSC 9021) GN=TRM5 PE=3 SV=2 13 417 2.0E-78
sp|Q32P41|TRM5_HUMAN tRNA (guanine(37)-N1)-methyltransferase OS=Homo sapiens GN=TRMT5 PE=1 SV=2 10 426 3.0E-78
sp|F7GSQ4|TRM5_MACMU tRNA (guanine(37)-N1)-methyltransferase OS=Macaca mulatta GN=TRMT5 PE=3 SV=1 10 426 3.0E-77
sp|Q95KJ2|TRM5_MACFA tRNA (guanine(37)-N1)-methyltransferase OS=Macaca fascicularis GN=TRMT5 PE=2 SV=1 10 426 5.0E-77
sp|F6VSS6|TRM5_XENTR tRNA (guanine(37)-N1)-methyltransferase OS=Xenopus tropicalis GN=trmt5 PE=3 SV=1 21 426 1.0E-74
sp|Q8IRE4|TRM5_DROME tRNA (guanine(37)-N1)-methyltransferase OS=Drosophila melanogaster GN=CG32281 PE=2 SV=2 8 422 5.0E-72
sp|B5DPF1|TRM5_DROPS tRNA (guanine(37)-N1)-methyltransferase OS=Drosophila pseudoobscura pseudoobscura GN=GA23546 PE=3 SV=1 11 420 7.0E-71
sp|Q7Q5Z3|TRM5_ANOGA tRNA (guanine(37)-N1)-methyltransferase OS=Anopheles gambiae GN=AGAP006124 PE=3 SV=4 8 416 5.0E-69
sp|F7A355|TRM5_CIOIN tRNA (guanine(37)-N1)-methyltransferase OS=Ciona intestinalis PE=3 SV=1 11 425 9.0E-68
sp|Q54WD6|TRM5_DICDI tRNA (guanine(37)-N1)-methyltransferase OS=Dictyostelium discoideum GN=trmt5 PE=3 SV=1 21 421 2.0E-67
sp|Q16VC0|TRM5_AEDAE tRNA (guanine(37)-N1)-methyltransferase OS=Aedes aegypti GN=AAEL009603 PE=3 SV=1 11 422 9.0E-67
sp|Q93YU6|TRM51_ARATH tRNA (guanine(37)-N1)-methyltransferase 1 OS=Arabidopsis thaliana GN=At3g56120 PE=2 SV=1 21 395 2.0E-65
sp|E3WPP8|TRM5_ANODA tRNA (guanine(37)-N1)-methyltransferase OS=Anopheles darlingi GN=AND_03887 PE=3 SV=1 8 424 3.0E-63
sp|C0NUP2|TRM5_AJECG tRNA (guanine(37)-N1)-methyltransferase OS=Ajellomyces capsulatus (strain G186AR / H82 / ATCC MYA-2454 / RMSCC 2432) GN=TRM5 PE=3 SV=1 14 415 6.0E-63
sp|F6H2F8|TRM51_VITVI tRNA (guanine(37)-N1)-methyltransferase 1 OS=Vitis vinifera GN=VIT_19s0014g03930 PE=3 SV=1 73 448 3.0E-62
sp|E0VLV0|TRM5_PEDHC tRNA (guanine(37)-N1)-methyltransferase OS=Pediculus humanus subsp. corporis GN=PHUM294360 PE=3 SV=1 21 396 2.0E-60
sp|D5GN29|TRM5_TUBMM tRNA (guanine(37)-N1)-methyltransferase OS=Tuber melanosporum (strain Mel28) GN=TRM5 PE=3 SV=1 3 420 4.0E-60
sp|F6HH45|TRM52_VITVI tRNA (guanine(37)-N1)-methyltransferase 2 OS=Vitis vinifera GN=VIT_11s0016g04350 PE=3 SV=1 21 319 4.0E-57
sp|C5XX79|TRM5_SORBI tRNA (guanine(37)-N1)-methyltransferase OS=Sorghum bicolor GN=Sb04g025390 PE=3 SV=1 19 395 6.0E-57
sp|D3BT31|TRM5_POLPA tRNA (guanine(37)-N1)-methyltransferase OS=Polysphondylium pallidum GN=trmt5 PE=3 SV=1 21 425 2.0E-56
sp|Q6NQ64|TRM52_ARATH tRNA (guanine(37)-N1)-methyltransferase 2 OS=Arabidopsis thaliana GN=At4g27340 PE=2 SV=1 102 400 4.0E-55
sp|Q0UVC3|TRM5_PHANO tRNA (guanine(37)-N1)-methyltransferase OS=Phaeosphaeria nodorum (strain SN15 / ATCC MYA-4574 / FGSC 10173) GN=TRM5 PE=3 SV=1 10 425 4.0E-54
sp|B7FTW3|TRM51_PHATC tRNA (guanine(37)-N1)-methyltransferase 1 OS=Phaeodactylum tricornutum (strain CCAP 1055/1) GN=PHATRDRAFT_44373 PE=3 SV=1 22 419 4.0E-53
sp|B8BQY5|TRM5_THAPS tRNA (guanine(37)-N1)-methyltransferase OS=Thalassiosira pseudonana GN=THAPSDRAFT_268027 PE=3 SV=1 130 416 8.0E-53
sp|A2E5K9|TRM5_TRIVA tRNA (guanine(37)-N1)-methyltransferase OS=Trichomonas vaginalis GN=TVAG_038970 PE=3 SV=1 34 420 4.0E-50
sp|A0CC46|TRM5_PARTE tRNA (guanine(37)-N1)-methyltransferase OS=Paramecium tetraurelia GN=GSPATT00037147001 PE=3 SV=1 23 426 7.0E-45
sp|Q4DPN8|TRM52_TRYCC tRNA (guanine(37)-N1)-methyltransferase 2 OS=Trypanosoma cruzi (strain CL Brener) GN=Tc00.1047053506743.170 PE=3 SV=1 11 398 6.0E-44
sp|Q4CNL4|TRM51_TRYCC tRNA (guanine(37)-N1)-methyltransferase 1 OS=Trypanosoma cruzi (strain CL Brener) GN=Tc00.1047053503473.20 PE=3 SV=1 11 398 8.0E-44
sp|A8WHT1|TRM5_CAEEL tRNA (guanine(37)-N1)-methyltransferase OS=Caenorhabditis elegans GN=C53A5.17 PE=3 SV=1 109 395 4.0E-43
sp|A4H8F7|TRM5_LEIBR tRNA (guanine(37)-N1)-methyltransferase OS=Leishmania braziliensis GN=LBRM_16_0320 PE=3 SV=1 93 367 2.0E-42
sp|B7G5J1|TRM52_PHATC tRNA (guanine(37)-N1)-methyltransferase 2 OS=Phaeodactylum tricornutum (strain CCAP 1055/1) GN=PHATRDRAFT_47967 PE=3 SV=1 75 406 1.0E-41
sp|A4HWT0|TRM5_LEIIN tRNA (guanine(37)-N1)-methyltransferase OS=Leishmania infantum GN=LINJ_16_0320 PE=3 SV=1 93 367 3.0E-41
sp|C4M572|TRM5_ENTHI tRNA (guanine(37)-N1)-methyltransferase OS=Entamoeba histolytica GN=EHI_111740 PE=3 SV=1 21 414 4.0E-41
sp|Q4QEY9|TRM5_LEIMA tRNA (guanine(37)-N1)-methyltransferase OS=Leishmania major GN=LMJF_16_0310 PE=3 SV=1 93 367 5.0E-41
sp|B3L2G0|TRM5_PLAKH tRNA (guanine(37)-N1)-methyltransferase OS=Plasmodium knowlesi (strain H) GN=PKH_071150 PE=3 SV=1 88 356 3.0E-38
sp|Q8SVV3|TRM5_ENCCU tRNA (guanine(37)-N1)-methyltransferase OS=Encephalitozoon cuniculi (strain GB-M1) GN=TRM5 PE=3 SV=1 103 395 2.0E-36
sp|C0H537|TRM5_PLAF7 tRNA (guanine(37)-N1)-methyltransferase OS=Plasmodium falciparum (isolate 3D7) GN=PFI0700c PE=3 SV=1 106 299 2.0E-35
sp|A5K6L0|TRM5_PLAVS tRNA (guanine(37)-N1)-methyltransferase OS=Plasmodium vivax (strain Salvador I) GN=PVX_099140 PE=3 SV=1 106 296 6.0E-34
sp|Q4MYY2|TRM5_THEPA tRNA (guanine(37)-N1)-methyltransferase OS=Theileria parva GN=TP03_0709 PE=3 SV=1 87 429 1.0E-33
sp|A8B4Q0|TRM5_GIAIC tRNA (guanine(37)-N1)-methyltransferase OS=Giardia intestinalis (strain ATCC 50803 / WB clone C6) GN=GL50803_4164 PE=3 SV=1 4 414 2.0E-33
sp|Q4UB74|TRM5_THEAN tRNA (guanine(37)-N1)-methyltransferase OS=Theileria annulata GN=TA17855 PE=3 SV=1 131 429 2.0E-30
sp|Q9V0Q0|TRM5B_PYRAB tRNA (guanine(37)-N1)-methyltransferase Trm5b OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=trm5b PE=1 SV=1 124 294 9.0E-22
sp|Q58293|TRM5B_METJA tRNA (guanine(37)-N1)-methyltransferase Trm5b OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=trm5b PE=1 SV=1 170 294 1.0E-14
sp|O58523|TYW2_PYRHO tRNA(Phe) (4-demethylwyosine(37)-C(7)) aminocarboxypropyltransferase OS=Pyrococcus horikoshii (strain ATCC 700860 / DSM 12428 / JCM 9974 / NBRC 100139 / OT-3) GN=taw2 PE=1 SV=1 118 295 6.0E-14
sp|Q8H4D4|TYW23_ORYSJ tRNA wybutosine-synthesizing protein 2/3/4 OS=Oryza sativa subsp. japonica GN=Os07g0515000 PE=2 SV=1 188 293 3.0E-09
sp|Q58952|TYW2_METJA tRNA(Phe) (4-demethylwyosine(37)-C(7)) aminocarboxypropyltransferase OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=taw2 PE=1 SV=1 165 279 2.0E-08
sp|Q4V8B8|TYW2_RAT tRNA wybutosine-synthesizing protein 2 homolog OS=Rattus norvegicus GN=Trmt12 PE=2 SV=2 184 295 4.0E-07
sp|Q8BG71|TYW2_MOUSE tRNA wybutosine-synthesizing protein 2 homolog OS=Mus musculus GN=Trmt12 PE=2 SV=1 184 295 9.0E-07
sp|Q53H54|TYW2_HUMAN tRNA wybutosine-synthesizing protein 2 homolog OS=Homo sapiens GN=TRMT12 PE=1 SV=1 184 295 1.0E-06
sp|Q9V2G1|TRM5A_PYRAB tRNA (guanine(37)-N1)-methyltransferase Trm5a OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=trm5a PE=1 SV=1 138 279 2.0E-06
sp|Q58D65|TYW2_BOVIN tRNA wybutosine-synthesizing protein 2 homolog OS=Bos taurus GN=TRMT12 PE=2 SV=1 184 295 6.0E-06
sp|F6HH45|TRM52_VITVI tRNA (guanine(37)-N1)-methyltransferase 2 OS=Vitis vinifera GN=VIT_11s0016g04350 PE=3 SV=1 311 412 8.0E-06
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GO

(None)

SignalP

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SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 24 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

Analysis 1: Developmental stages of Agaricus bisporus (strain A15). Published in Pelkmans et al, Applied Microbiology and Biotechnology, 2016

Click here for more information

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 >AgabiH97|004220
MSSRVFLDASPPSYQGPKDRLDKSAFHKTLTVLSARVPPNKTGQLLKARELKGALMDLPKIRSVVSDPENPNGSR
LVLLRTVKYSELPPVAQEYLGKETQGLVNHEIKLDYDYWSTDDILQTILPGQLREGAPSGFAMTGHIAHVNLLEE
YLPYKYLIGQLILDKNKKVRTVVNKLDSIHAQFRVFEMELIAGDPDYIVEHHESDCRFTFDFSQVYWNSRLHTEH
ERLVRMFEPDDVVADVFAGVGPFAIPSARKGCAVLANDLNPASHKYLEKNVADNGVADRVRTFCEDGREFIQTIA
KQLHDDPLPPFNGPALSRTRREKERRRARLQHIADAAPNPVAKSRKRICHFIMNLPDTAILFLNAFRGMLKPDED
DNLLDTYEVMPMIHCHCFTREMDPEKAEVDIRKRVEEQLGAPLEEDVTFHLWGLVDSIFTTRSIQWRCTGIYLRH
AKLGN*
Coding >AgabiH97|004220
ATGTCTTCTCGCGTCTTTCTAGATGCATCACCTCCATCTTACCAAGGGCCTAAAGACAGACTGGACAAGTCTGCT
TTCCACAAAACGTTGACCGTCTTATCAGCACGCGTGCCACCGAACAAAACCGGCCAGCTCCTAAAAGCGCGCGAG
CTCAAGGGAGCCCTTATGGACTTACCCAAGATACGGAGCGTCGTTTCCGATCCGGAGAATCCCAACGGGTCTCGC
TTGGTGCTACTACGGACGGTGAAATATTCTGAACTACCTCCTGTGGCACAAGAATATCTTGGGAAGGAAACTCAG
GGCCTCGTCAATCATGAGATCAAGTTGGACTATGACTACTGGTCCACTGATGATATTTTGCAAACTATCCTGCCC
GGCCAACTTCGAGAAGGTGCCCCTAGTGGTTTCGCCATGACTGGTCATATAGCGCACGTCAATCTCTTGGAGGAA
TATTTGCCATACAAGTATCTGATTGGCCAACTAATTCTTGATAAAAACAAAAAAGTCAGAACGGTTGTCAATAAA
TTGGATTCTATACACGCTCAATTTCGTGTATTCGAAATGGAACTTATTGCTGGGGATCCTGATTATATCGTGGAA
CATCACGAATCTGATTGTCGGTTCACATTCGATTTCTCTCAAGTGTATTGGAATTCAAGGCTCCATACGGAGCAT
GAGCGACTGGTTCGAATGTTTGAACCTGATGATGTAGTAGCCGATGTATTTGCAGGCGTCGGTCCCTTTGCGATA
CCCTCTGCACGAAAAGGATGTGCTGTCCTTGCCAATGACCTGAATCCCGCAAGTCATAAATACCTTGAGAAAAAC
GTTGCTGATAACGGAGTAGCTGACAGAGTGCGCACTTTCTGTGAGGATGGGCGGGAATTCATACAAACCATCGCA
AAACAGCTTCATGATGACCCACTCCCTCCGTTTAATGGACCAGCATTGAGTAGAACTCGACGAGAGAAAGAGAGA
CGTAGAGCTCGACTCCAGCACATAGCCGATGCAGCACCTAATCCCGTTGCCAAGAGCCGCAAACGCATCTGCCAC
TTCATAATGAATTTACCAGATACCGCAATTTTATTCCTGAATGCATTTCGTGGCATGCTGAAACCTGACGAGGAC
GACAACCTGCTGGATACCTACGAGGTTATGCCTATGATTCATTGCCACTGTTTTACCAGGGAAATGGATCCGGAG
AAGGCAGAGGTTGACATCCGGAAGCGAGTAGAAGAGCAATTGGGTGCTCCGCTGGAGGAGGATGTAACCTTTCAC
CTGTGGGGATTGGTAGATAGTATTTTTACGACTCGATCCATCCAGTGGCGGTGTACGGGCATCTATCTTCGGCAT
GCCAAATTAGGCAATTAA
Transcript >AgabiH97|004220
ATGTCTTCTCGCGTCTTTCTAGATGCATCACCTCCATCTTACCAAGGGCCTAAAGACAGACTGGACAAGTCTGCT
TTCCACAAAACGTTGACCGTCTTATCAGCACGCGTGCCACCGAACAAAACCGGCCAGCTCCTAAAAGCGCGCGAG
CTCAAGGGAGCCCTTATGGACTTACCCAAGATACGGAGCGTCGTTTCCGATCCGGAGAATCCCAACGGGTCTCGC
TTGGTGCTACTACGGACGGTGAAATATTCTGAACTACCTCCTGTGGCACAAGAATATCTTGGGAAGGAAACTCAG
GGCCTCGTCAATCATGAGATCAAGTTGGACTATGACTACTGGTCCACTGATGATATTTTGCAAACTATCCTGCCC
GGCCAACTTCGAGAAGGTGCCCCTAGTGGTTTCGCCATGACTGGTCATATAGCGCACGTCAATCTCTTGGAGGAA
TATTTGCCATACAAGTATCTGATTGGCCAACTAATTCTTGATAAAAACAAAAAAGTCAGAACGGTTGTCAATAAA
TTGGATTCTATACACGCTCAATTTCGTGTATTCGAAATGGAACTTATTGCTGGGGATCCTGATTATATCGTGGAA
CATCACGAATCTGATTGTCGGTTCACATTCGATTTCTCTCAAGTGTATTGGAATTCAAGGCTCCATACGGAGCAT
GAGCGACTGGTTCGAATGTTTGAACCTGATGATGTAGTAGCCGATGTATTTGCAGGCGTCGGTCCCTTTGCGATA
CCCTCTGCACGAAAAGGATGTGCTGTCCTTGCCAATGACCTGAATCCCGCAAGTCATAAATACCTTGAGAAAAAC
GTTGCTGATAACGGAGTAGCTGACAGAGTGCGCACTTTCTGTGAGGATGGGCGGGAATTCATACAAACCATCGCA
AAACAGCTTCATGATGACCCACTCCCTCCGTTTAATGGACCAGCATTGAGTAGAACTCGACGAGAGAAAGAGAGA
CGTAGAGCTCGACTCCAGCACATAGCCGATGCAGCACCTAATCCCGTTGCCAAGAGCCGCAAACGCATCTGCCAC
TTCATAATGAATTTACCAGATACCGCAATTTTATTCCTGAATGCATTTCGTGGCATGCTGAAACCTGACGAGGAC
GACAACCTGCTGGATACCTACGAGGTTATGCCTATGATTCATTGCCACTGTTTTACCAGGGAAATGGATCCGGAG
AAGGCAGAGGTTGACATCCGGAAGCGAGTAGAAGAGCAATTGGGTGCTCCGCTGGAGGAGGATGTAACCTTTCAC
CTGTGGGGATTGGTAGATAGTATTTTTACGACTCGATCCATCCAGTGGCGGTGTACGGGCATCTATCTTCGGCAT
GCCAAATTAGGCAATTAA
Gene >AgabiH97|004220
ATGTCTTCTCGCGTCTTTCTAGATGCATCACCTCCATCTTACCAAGGGCCTAAAGACAGACTGGACAAGTCTGCT
TTCCACAAAACGTTGACCGTCTTATCAGCACGCGTGCCACCGAACAAAACCGGCCAGCTCCTAAAAGCGCGCGAG
CTCAAGGGGTGTGTACTGAGCACAGGTATTATGTTGCACCTCCTCATTTATTTGCAGAGCCCTTATGGACTTACC
CAAGATACGGAGCGTCGTTTCCGATCCGGAGAATCCCAACGGGTCTCGCTTGGTGCTACTACGGACGGTGAAATA
TTGTGGGCCTCAAAATTCTAATGCAACCTACTTACAGTACTGATCCTTTGTAAGCAAGCTGAACTACCTCCTGTG
GCACAAGAATATCTTGGGAAGGAAACTCAGGGCCTCGTCAATCATGAGATCAAGTTGGACTATGACTACTGGTCC
ACTGGTCCGTCGATCAACATTTCTTTTCAGCCAGATAATTAATGACTGATCTCAGATGATATTTTGCAAACTATC
CTGCCCGGCCAACTTCGAGAAGGTGCCCCTAGTGGTTTCGCCATGACTGGTCATATAGGTGAATTATGCCTCATG
CCTGGCGAGCAGTCGTAACCAATGTCGTTAGCGCACGTCAATCTCTTGGAGGAATATTTGCCATACAAGTATCTG
ATTGGCCAACTAATTCTTGATGTATGTGTTATTTCTTTCTTTTGACTCCAAATTGAACTGGGCGATAGAAAAACA
AAAAAGTCAGAACGGTTGTCAATAAATTGGATTCTATACACGCTCAATTTCGTGTATTCGAAATGGAACTTATTG
CTGGGGATCCTGATTATATCGTGGAACATGTGAGTTATTACTCCTTCAATTGCTTGTGGCTCTCGCCGATGATCT
CCTAGCACGAATCTGATTGTCGGTTCACATTCGATTTCTCTCAAGTGTATTGGAATTCAAGGCTCCATACGGAGC
ATGAGCGACTGGTTCGAATGTTTGAACCTGATGATGTAGTAGCCGATGTATTTGCAGGCGTCGGTCCCTTTGCGA
TACCCTCTGCACGAAAAGGATGTGCTGTCCTTGCCAATGACCTGAATCCCGCAAGTCATAAATACCTTGAGAAAA
ACGTTGCTGATAACGGAGTTTGTCCCCACTCTAGTTTCTTCATCATAATCTACCCCTAACTCCATTTGCAGGTAG
CTGACAGAGTGCGCACTTTCTGTGAGGATGGGCGGGAATTCATACAAACCATCGCAAAACAGCTTCATGATGACC
CACTCCCTCCGTTTAATGGACCAGCATTGAGTAGAACTCGACGAGAGAAAGAGAGACGTAGAGCTCGACTCCAGC
ACATAGCCGATGCAGCACCTAATCCCGTTGCCAAGAGCCGCAAACGCATCTGCCACTTCATAATGAATTTACCAG
ATACCGCAATTTTATTCCTGAATGCATTTCGTGGCATGCTGAAACCTGACGAGGACGACAACCTGCTGGATACCT
ACGAGGTTATGCCTATGATTCATTGCCACTGTTTTACCAGGGAAATGGATCCGGAGAAGGCAGAGGTTGACATCC
GGAAGGTACGGCTGTCATTCGCTCCTTCTTTCAAAGTCTGACGGCATTGTCCACAGCGAGTAGAAGAGCAATTGG
GTGCTCCGCTGGAGGAGGATGTAACCTTTCACCTGGTACGCTCGGTGGCGCCGAATAAGGAGATGTATTGTATTA
GCTTCCGACTACCGCGTGCAGTGGGGATTGGTAGATAGTATTTTTACGACTCGATCCATCCAGTGGCGGTGTACG
GGCATCTATCTTCGGCATGCCAAATTAGGCAATTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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