Entry information : TaPrx26-1D(TraesCS2D03G0228000.1 / TAPERO)
Entry ID 76
Creation 2006-09-05 (Christophe Dunand)
Last sequence changes 2014-06-18 (Christophe Dunand)
Sequence status complete
Reviewer Not yet reviewed
Last annotation changes 2023-02-14 (Christophe Dunand)
Peroxidase information: TaPrx26-1D(TraesCS2D03G0228000.1 / TAPERO)
Name TaPrx26-1D(TraesCS2D03G0228000.1 / TAPERO)
Class Class III peroxidase    [Orthogroup: Prx057]
Taxonomy Eukaryota Viridiplantae Streptophyta Monocotyledons Poaceae Triticum
Organism Triticum aestivum (bread wheat)    [TaxId: 4565 ]
Cellular localisation N/D
Tissue type Leaves
Inducers Pathogen interaction
Powdery mildew attack
Repressor N/D
Best BLASTp hits
Perox score E-value TaPrx26-1D
start..stop
S start..stop
TaPrx26-1A 616 0 1..313 1..313
HvPrx17 598 0 1..313 1..313
TmPrx02 542 0 1..313 1..316
AvePrx113-1B 538 0 1..313 1..316
Literature and cross-references TaPrx26-1D(TraesCS2D03G0228000.1 / TAPERO)
Literature REFERENCE 1 Rebmann,G. et al Cloning and sequencing of cDNAs encoding a pathogen-induced putative peroxidase of wheat (Triticum aestivum L.). Plant Mol. Biol. 16 (2), 329-331 (1991).

REFERENCE 2 Altpeter, F., Varshney, A., Abderhalden, O., Douchkov, D., Sautter, C., Kumlehn, J., Dudler, R. and Schweizer, P. Stable expression of a defence-related gene in wheat epidermis under transcriptional control of a novel promoter confers pathogen resistance. Plant Mol. Biol. 57, 271-283.(2005).

REFERENCE 3 Schweizer, P. Tissue-specific expression of a defence-related peroxidase in transgenic wheat potentiates cell death in pathogenattacked leaf epidermis. Mol. Plant Pathol. 9, 45-57. (2008)
Protein ref. UniProtKB:   Q43212
DNA ref. GenBank:   X56011.1
Cluster/Prediction ref. UniGene:   Ta.82
Protein sequence: TaPrx26-1D(TraesCS2D03G0228000.1 / TAPERO)
Sequence Properties
first value : protein
second value (mature protein)
Length (aa):   %s   313 (291)
PWM (Da):   %s   31790.78 (29789.7) Transmb domain:   %s   i7-29o
PI (pH):   %s   7.28 (7.31) Peptide Signal:   %s   cut: 23 range:23-313
Sequence
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*.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
MAASASCISL VVLVALATAA SAQLSPTFYS VSCPGALAAI KSAVTAAVSS DPRMGASLLR LHFHDCFVQG CDASVLLSGN EQNAGPNAGS LRGFGVIDGI KAQVEAVCKQ TVSCADILAV  AARDSVVALG GPSWTVPLGR RDSTGANAGL ANSDLPGPGS SRAQLEAAFL KKGLDTVDMV ALSGAHTIGQ AQCSSFRSRI YGGDTNINAA YAASLRANCP QSGGNGNLAP LDTTTPNVFD 
NAYYTDLLSQ KGLMHSDQVL FNGDTTDNTV RNFASNPAAF SNAFTTAMIK MGNIAPLTGA QGQIRLSCSK VNS 

Retrieve as FASTA  
Remarks complete sequence from genomic and ESTs.
CDS
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ATGGCCGCCT CTGCCTCTTG CCTTTCTCTT GTGGTGCTCG TGGCTCTGGC CACGGCGGCG TCGGCGCAGC TGTCACCGAC CTTCTACGAC ACGTCCTGCC CCAGGGCCCT GGCCATCATC  AAGAGTGGCG TCATGGCCGC CGTGAGCAGC GACCCTCGGA TGGGCGCGTC GCTGCTCCGG CTGCACTTCC ACGACTGCTT CGTCCAAGGC TGCGACGCGT CTGTTTTGCT GTCTGGCATG  GAACAAAATG CTATCCCGAA CGCGGGGTCG CTGAGGGGCT TCGGCGTCAT CGACAGCATC AAGACGCAGA TCGAGGCCAT CTGCAATCAG ACCGTCTCCT GCGCCGACAT CCTCACCGTC  GCCGCCCGTG ACTCCGTTGT AGCCCTCGGA GGGCCGTCAT GGACAGTCCC TCTGGGGAGA AGAGATTCCA CAGATGCAAA CGAGGCGGCG GCAAACAGCG ACCTGCCAGG CTTTACATCT  AGCCGGTCAG ATCTTGAGCT GGCATTCAGA AACAAGGGCC TCCTTACGAT CGACATGGTG GCCCTCTCGG GCGCGCACAC CATCGGCCAG GCGCAGTGTG GGACCTTTAA GGACAGGATC  TACAATGAGA CTAACATCGA CACGGCCTTC GCCACATCTC TCCGGGCCAA CTGCCCCAGG TCAAACGGCG ACGGGAGCCT GGCGAACCTG GACACGACGA CGGCCAACAC GTTCGATAAC  GCCTACTACA CCAACCTCAT GTCACAGAAG GGGCTCCTGC ACTCGGACCA GGTGCTGTTC AACAACGACA CCACCGACAA CACTGTCCGG AACTTTGCGT CGAACCCAGC GGCGTTCAGC 
AGCGCCTTCA CGACCGCCAT GATCAAGATG GGCAACATCG CGCCGAAGAC AGGCACGCAG GGGCAGATCA GGCTCAGCTG CTCCAGGGTG AACTCGTGA 

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cDNA
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.........1 .........2 .........3 .........4 .........5 .........6 .........7 .........8 .........9 .........0 .........1 .........2
ACCACCACAC CACTCCACCA GTAAGAAGTG CAGCAGGTAG CTAGTAAGCC GGCGTAGCTT TGCTCTTGCA GCTAGCTAGC TAACCATGGC CGCCTCTGCC TCTTGCCTTT CTCTTGTGGT  GCTCGTGGCT CTGGCCACGG CGGCGTCGGC GCAGCTGTCA CCGACCTTCT ACGACACGTC CTGCCCCAGG GCCCTGGCCA TCATCAAGAG TGGCGTCATG GCCGCCGTGA GCAGCGACCC  TCGGATGGGC GCGTCGCTGC TCCGGCTGCA CTTCCACGAC TGCTTCGTCC AAGGCTGCGA CGCGTCTGTT TTGCTGTCTG GCATGGAACA AAATGCTATC CCGAACGCGG GGTCGCTGAG  GGGCTTCGGC GTCATCGACA GCATCAAGAC GCAGATCGAG GCCATCTGCA ATCAGACCGT CTCCTGCGCC GACATCCTCA CCGTCGCCGC CCGTGACTCC GTTGTAGCCC TCGGAGGGCC  GTCATGGACA GTCCCTCTGG GGAGAAGAGA TTCCACAGAT GCAAACGAGG CGGCGGCAAA CAGCGACCTG CCAGGCTTTA CATCTAGCCG GTCAGATCTT GAGCTGGCAT TCAGAAACAA  GGGCCTCCTT ACGATCGACA TGGTGGCCCT CTCGGGCGCG CACACCATCG GCCAGGCGCA GTGTGGGACC TTTAAGGACA GGATCTACAA TGAGACTAAC ATCGACACGG CCTTCGCCAC  ATCTCTCCGG GCCAACTGCC CCAGGTCAAA CGGCGACGGG AGCCTGGCGA ACCTGGACAC GACGACGGCC AACACGTTCG ATAACGCCTA CTACACCAAC CTCATGTCAC AGAAGGGGCT  CCTGCACTCG GACCAGGTGC TGTTCAACAA CGACACCACC GACAACACTG TCCGGAACTT TGCGTCGAAC CCAGCGGCGT TCAGCAGCGC CTTCACGACC GCCATGATCA AGATGGGCAA  CATCGCGCCG AAGACAGGCA CGCAGGGGCA GATCAGGCTC AGCTGCTCCA GGGTGAACTC GTGATTGATA GACGAGTTAC TGCATACTAG CCAGCACGAC ACGTACGTGA ATGAATAAGG  CCACAGAACC AGTGGCCAAT ATAAATACCA GCTCTTGAAA CCGTGTATTT TATGTACGAG TAGCAGCAAA TCATGCATGC ATCTACACAT ATATATGTAA CGATCGAATT CCCACTTTCT 
CATGCAAAGG CATGGAGAAT TACTATCAAT CTTAGTTATA CGTGTAT 

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