Fungal Genomics

at Utrecht University

General Properties

Protein IDPro_DTO070G2_2|g5916.t1
Gene name
Locationscaffold_08:154315..155498
Strand+
Gene length (bp)1183
Transcript length (bp)888
Coding sequence length (bp)888
Protein length (aa) 296

Overview

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF01728 FtsJ FtsJ-like methyltransferase 1.6E-57 53 292

GO

GO Term Description Terminal node
GO:0032259 methylation Yes
GO:0008168 methyltransferase activity Yes
GO:0008152 metabolic process No
GO:0016741 transferase activity, transferring one-carbon groups No
GO:0016740 transferase activity No
GO:0003824 catalytic activity No
GO:0003674 molecular_function No
GO:0008150 biological_process No

Deeploc

Deeploc data not available for this genome

SignalP

(None)

Transmembrane Domains

(None)

Transcription Factor Class

(None)

CAZymes

(None)

Secondary Metabolism

(None)

Expression data

No expression data available for this genome

Orthologs

Orthofinder run ID2
Orthogroup4142
Change Orthofinder run
Species Protein ID
Penicillium roqueforti DTO002I6 Pro_DTO002I6_2|g4713.t1
Penicillium roqueforti DTO003C3 Pro_DTO003C3_2|g6563.t1
Penicillium roqueforti DTO003H1 (CBS 147308) Pro_DTO003H1_2|g4172.t1
Penicillium roqueforti DTO006G1 Pro_DTO006G1_2|g1499.t1
Penicillium roqueforti DTO006G7 Pro_DTO006G7_3|g1439.t1
Penicillium roqueforti DTO012A1 Pro_DTO012A1_2|g7351.t1
Penicillium roqueforti DTO012A2 (CBS 147309) Pro_DTO012A2_2|g3010.t1
Penicillium roqueforti DTO012A6 (CBS 147310) Pro_DTO012A6_2|g7737.t1
Penicillium roqueforti DTO012A7 Pro_DTO012A7_2|g1201.t1
Penicillium roqueforti DTO012A8 Pro_DTO012A8_2|g2825.t1
Penicillium roqueforti DTO012A9 Pro_DTO012A9_2|g1306.t1
Penicillium roqueforti DTO013E5 Pro_DTO013E5_2|g5911.t1
Penicillium roqueforti DTO013F2 Pro_DTO013F2_2|g3645.t1
Penicillium roqueforti DTO013F5 (CBS 147311) Pro_DTO013F5_2|g2195.t1
Penicillium roqueforti DTO027I6 Pro_DTO027I6_2|g6557.t1
Penicillium roqueforti DTO032C6 Pro_DTO032C6_2|g2745.t1
Penicillium roqueforti DTO039G3 Pro_DTO039G3_2|g2850.t1
Penicillium roqueforti DTO046C5 Pro_DTO046C5_2|g5485.t1
Penicillium roqueforti DTO070G2 (CBS 147317) Pro_DTO070G2_2|g5916.t1 (this protein)
Penicillium roqueforti DTO081F9 (CBS 147318) Pro_DTO081F9_2|g2578.t1
Penicillium roqueforti DTO101D6 (CBS 147325) Pro_DTO101D6_2|g2753.t1
Penicillium roqueforti DTO102I9 (CBS 147326) Pro_DTO102I9_2|g4468.t1
Penicillium roqueforti DTO126G2 (CBS 147330) Pro_DTO126G2_2|g2510.t1
Penicillium roqueforti DTO127F7 (CBS 147331) Pro_DTO127F7_2|g1823.t1
Penicillium roqueforti DTO127F9 (CBS 147332) Pro_DTO127F9_2|g643.t1
Penicillium roqueforti DTO130C1 (CBS 147333) Pro_DTO130C1_2|g440.t1
Penicillium roqueforti DTO163C3 (CBS 147337) Pro_DTO163C3_2|g3091.t1
Penicillium roqueforti DTO163F5 (CBS 147338) Pro_DTO163F5_2|g2807.t1
Penicillium roqueforti DTO163G4 (CBS 147339) Pro_DTO163G4_2|g7853.t1
Penicillium roqueforti DTO265D5 (CBS 147372) Pro_DTO265D5_2|g4585.t1
Penicillium roqueforti DTO369A1 (CBS 147354) Pro_DTO369A1_2|g6596.t1
Penicillium roqueforti DTO375B1 (CBS 147355) Pro_DTO375B1_2|g2104.t1
Penicillium roqueforti DTO377G2 (LCP 96.3914a) Pro_DTO377G2_2|g7761.t1
Penicillium roqueforti LCP96 04111 Pro_DTO377G3_2|g7314.t1

Sequences

Type of sequenceSequence
Locus Download genbank file of locus Download genbank file of locus (reverse complement)
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 >Pro_DTO070G2_2|g5916.t1
MFALHSTRFWRNACHQQEIGQAIGQARHASSKRWQARQQKDQFTREAAVQGLKSRAAFKLLQIDEKYRIFKGGQT
VVDLGYAPGSWSQVAASRTQPHGRVLGVDIIPAQPPKGVSTIQGNFLSPEIQTYIRDFLRSPDRGRPRQPSFLDD
SSISPLEPNADTERTTEAEKTDKMGEKILERTVDVVLSDMSAPWHQTSGFWKRSLSAPYNRMMNTSGVSFRDHAG
SMDLCHAALRFSSDVLKAGGHFVCKFYQGAEDKELEQQLKELFKKVHRLKPESSRSESKEAFFVGLERKA*
Coding >Pro_DTO070G2_2|g5916.t1
ATGTTTGCTTTACATTCAACTCGATTTTGGCGGAACGCCTGCCATCAGCAGGAAATTGGTCAAGCAATTGGCCAA
GCAAGACATGCATCATCCAAACGCTGGCAAGCCCGGCAGCAAAAGGATCAGTTCACCAGAGAGGCAGCTGTCCAA
GGGCTGAAAAGCCGTGCTGCTTTCAAATTGCTGCAGATTGATGAGAAATATCGAATCTTCAAGGGTGGGCAGACA
GTTGTTGACTTGGGTTATGCTCCGGGATCGTGGTCACAGGTTGCTGCAAGCCGCACCCAACCGCATGGCCGAGTC
CTCGGTGTCGATATCATCCCAGCCCAACCACCGAAAGGAGTATCTACGATTCAAGGCAACTTCCTCTCACCCGAA
ATTCAAACATATATCCGAGACTTTCTCCGCAGTCCAGACAGAGGCAGGCCGCGCCAACCCAGCTTCCTGGACGAT
TCCAGTATCAGCCCATTGGAGCCGAATGCAGATACGGAACGCACTACCGAGGCCGAGAAGACGGATAAGATGGGC
GAGAAAATACTTGAAAGAACGGTAGATGTGGTTCTTAGCGATATGTCCGCGCCCTGGCATCAGACCTCCGGTTTC
TGGAAACGAAGTCTAAGTGCTCCTTATAATAGGATGATGAACACCAGCGGCGTCAGTTTCAGAGATCATGCTGGA
AGTATGGATCTCTGCCACGCGGCTTTGCGCTTCAGTTCGGATGTTTTGAAGGCAGGAGGTCATTTCGTCTGCAAA
TTCTACCAAGGCGCCGAAGACAAAGAACTGGAGCAGCAGCTGAAGGAATTATTCAAAAAAGTTCACCGCCTTAAA
CCCGAATCATCTCGCAGTGAATCCAAGGAGGCCTTTTTCGTTGGCCTGGAGCGAAAAGCGTGA
Transcript >Pro_DTO070G2_2|g5916.t1
ATGTTTGCTTTACATTCAACTCGATTTTGGCGGAACGCCTGCCATCAGCAGGAAATTGGTCAAGCAATTGGCCAA
GCAAGACATGCATCATCCAAACGCTGGCAAGCCCGGCAGCAAAAGGATCAGTTCACCAGAGAGGCAGCTGTCCAA
GGGCTGAAAAGCCGTGCTGCTTTCAAATTGCTGCAGATTGATGAGAAATATCGAATCTTCAAGGGTGGGCAGACA
GTTGTTGACTTGGGTTATGCTCCGGGATCGTGGTCACAGGTTGCTGCAAGCCGCACCCAACCGCATGGCCGAGTC
CTCGGTGTCGATATCATCCCAGCCCAACCACCGAAAGGAGTATCTACGATTCAAGGCAACTTCCTCTCACCCGAA
ATTCAAACATATATCCGAGACTTTCTCCGCAGTCCAGACAGAGGCAGGCCGCGCCAACCCAGCTTCCTGGACGAT
TCCAGTATCAGCCCATTGGAGCCGAATGCAGATACGGAACGCACTACCGAGGCCGAGAAGACGGATAAGATGGGC
GAGAAAATACTTGAAAGAACGGTAGATGTGGTTCTTAGCGATATGTCCGCGCCCTGGCATCAGACCTCCGGTTTC
TGGAAACGAAGTCTAAGTGCTCCTTATAATAGGATGATGAACACCAGCGGCGTCAGTTTCAGAGATCATGCTGGA
AGTATGGATCTCTGCCACGCGGCTTTGCGCTTCAGTTCGGATGTTTTGAAGGCAGGAGGTCATTTCGTCTGCAAA
TTCTACCAAGGCGCCGAAGACAAAGAACTGGAGCAGCAGCTGAAGGAATTATTCAAAAAAGTTCACCGCCTTAAA
CCCGAATCATCTCGCAGTGAATCCAAGGAGGCCTTTTTCGTTGGCCTGGAGCGAAAAGCGTGA
Gene >Pro_DTO070G2_2|g5916.t1
ATGTTTGCTTTACATTCAACTCGATTTTGGCGGAACGCCTGCCATCAGCAGGAAATTGGTCAAGCAATTGGCCAA
GCAAGACATGCATCATCCAAACGCTGGCAAGCCCGGCAGCAAAAGGATCAGTTCACCAGAGAGGCAGCTGTCCAA
GGGCTGAAAAGCCGTGCTGCTTTCAAATTGCTGCAGGTGATTCAGAATCGACATTACTCTATCTCTCTGGATTAG
TCTGACACACTGTTACCTGCGGTTAGATTGATGAGAAATATCGAATCTTCAAGGGTGGGCAGACAGTTGTTGACT
TGGTATGCTAGTCGTTCAACCTAAACTCGGATCATTGTTTAATTCCGTCGCTTTAGGGTTATGCTCCGGGATCGT
GGTCACAGGTGTGTCGGCTATTCCTTATTTGTCTATTGCTGTCAAATGGGCCGTGATTAACTGCCAGAAAAGGTT
GCTGCAAGCCGCACCCAACCGCATGGCCGAGTCCTCGGTGTCGATATCATCCCAGCCCAACCACCGAAAGGAGTA
TCTACGATTCAAGGCAACTTCCTCTCACCCGAAATTCAAACATATATCCGAGACTTTCTCCGCAGTCCAGACAGA
GGCAGGCCGCGCCAACCCAGCTTCCTGGACGATTCCAGTATCAGCCCATTGGAGCCGAATGCAGATACGGAACGC
ACTACCGAGGCCGAGAAGACGGATAAGATGGGCGAGAAAATACTTGAAAGAACGGTAGATGTGGTTCTTAGCGAT
ATGTCCGCGCCCTGGCATCAGACCTCCGGTTTCTGGAAACGAAGTCTAAGTGCTCCTTATAATAGGATGATGAAC
ACCAGCGGCGTCAGTTTCAGAGATCATGCTGGAAGTATGGTATGTATGCCTATTACTATTGAGTCGATATATGTG
AAACCCTTCTGACTTTACGCAGGATCTCTGCCACGCGGCTTTGCGCTTCAGTTCGGATGTTTTGAAGGCAGGAGG
TCATTTCGTCTGCAAATTCTACCAAGGCGCCGAAGACAAAGAACTGGAGCAGCAGCTGAAGGAATTATTCAAAAA
AGTTCACCGCCTTAAACCCGAATCATCTCGCAGTGTATGATTGACCTTATCCAATTTCTACACCCCCACCGACTA
AAGCAATTGTCAGGAATCCAAGGAGGCCTTTTTCGTTGGCCTGGAGCGAAAAGCGTGA

© 2023 - Robin Ohm - Utrecht University - The Netherlands

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