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Plant Transcription
Factor Database
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Transcription Factor Information
Basic
Information? help
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TF ID |
Tp5g29600 |
Organism |
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Taxonomic ID |
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Taxonomic Lineage |
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; eudicotyledons; Gunneridae; Pentapetalae; rosids; malvids; Brassicales; Brassicaceae; Brassicaceae incertae sedis; Schrenkiella
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Family |
MYB_related |
Protein Properties |
Length: 233aa MW: 26393.6 Da PI: 5.0306 |
Description |
MYB_related family protein |
Gene Model |
Gene Model ID |
Type |
Source |
Coding Sequence |
Tp5g29600 | genome | thellungiella | View CDS |
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Signature Domain? help Back to Top |
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No. |
Domain |
Score |
E-value |
Start |
End |
HMM Start |
HMM End |
1 | Myb_DNA-binding | 53.2 | 6.7e-17 | 26 | 70 | 1 | 47 |
TSSS-HHHHHHHHHHHHHTTTT-HHHHHHHHTTTS-HHHHHHHHHHH CS
Myb_DNA-binding 1 rgrWTteEdellvdavkqlGggtWktIartmgkgRtlkqcksrwqky 47
rg++T++E+e +++ + +lG++ W++Ia+ m +Rt++++k++w++
Tp5g29600 26 RGKFTPQEEEDIIKFHSLLGNR-WAAIAKQML-NRTDNDIKNHWNSC 70
89********************.********9.***********975 PP
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Sequence ? help Back to Top |
Protein Sequence Length: 233 aa
Download sequence Send
to blast |
MQKGLQRCGK SCRLRWLNYL RPGIKRGKFT PQEEEDIIKF HSLLGNRWAA IAKQMLNRTD 60 NDIKNHWNSC LKKRLFRSGI DPMTHEPIVP VVTSSSTTSS PTPTPSSSSS SSSFSSTGSA 120 RLLNKLAAEI SSRKHGLDRI KTVILSEPRQ AIEEEKITTI SKEEEEEEDE DVIACFMEID 180 ENLISTTSFD ELPCDSTTTI GFTAAFDDYS SIQPYDLYKS DFYQNTYDDP FLL
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Functional Description ? help
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Source |
Description |
UniProt | Transcription factor involved in tryptophan gene activation and in indole-3-acetic acid (IAA) and indolic glucosinolates (IG) biosynthesis. Acts as a direct transcriptional activator of both Trp synthesis genes and Trp secondary metabolism genes. {ECO:0000269|PubMed:15579661, ECO:0000269|PubMed:23580754, ECO:0000269|PubMed:23943862, ECO:0000269|PubMed:9576939}. |
Regulation -- Description ? help
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Source |
Description |
UniProt | INDUCTION: Up-regulated by herbivory. {ECO:0000269|PubMed:23943862}. |
Annotation --
Nucleotide ? help
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Source |
Hit ID |
E-value |
Description |
GenBank | KF738285 | 1e-137 | KF738285.1 Brassica napus MYB transcription factor 95 (MYB95.1) mRNA, complete cds. |
Publications
? help Back to Top |
- Grubb CD,Abel S
Glucosinolate metabolism and its control. Trends Plant Sci., 2006. 11(2): p. 89-100 [PMID:16406306] - De Schutter K, et al.
Arabidopsis WEE1 kinase controls cell cycle arrest in response to activation of the DNA integrity checkpoint. Plant Cell, 2007. 19(1): p. 211-25 [PMID:17209125] - Kim K,Jiang K,Teng SL,Feldman LJ,Huang H
Using biologically interrelated experiments to identify pathway genes in Arabidopsis. Bioinformatics, 2012. 28(6): p. 815-22 [PMID:22271267] - Guo R, et al.
Jasmonic acid and glucose synergistically modulate the accumulation of glucosinolates in Arabidopsis thaliana. J. Exp. Bot., 2013. 64(18): p. 5707-19 [PMID:24151308] - Benstein RM, et al.
Arabidopsis phosphoglycerate dehydrogenase1 of the phosphoserine pathway is essential for development and required for ammonium assimilation and tryptophan biosynthesis. Plant Cell, 2013. 25(12): p. 5011-29 [PMID:24368794] - Ding Y, et al.
Four distinct types of dehydration stress memory genes in Arabidopsis thaliana. BMC Plant Biol., 2013. 13: p. 229 [PMID:24377444] - Frerigmann H,Gigolashvili T
MYB34, MYB51, and MYB122 distinctly regulate indolic glucosinolate biosynthesis in Arabidopsis thaliana. Mol Plant, 2014. 7(5): p. 814-28 [PMID:24431192] - Frerigmann H,Gigolashvili T
Update on the role of R2R3-MYBs in the regulation of glucosinolates upon sulfur deficiency. Front Plant Sci, 2014. 5: p. 626 [PMID:25426131] - Frerigmann H,Glawischnig E,Gigolashvili T
The role of MYB34, MYB51 and MYB122 in the regulation of camalexin biosynthesis in Arabidopsis thaliana. Front Plant Sci, 2015. 6: p. 654 [PMID:26379682] - Frerigmann H, et al.
Regulation of Pathogen-Triggered Tryptophan Metabolism in Arabidopsis thaliana by MYB Transcription Factors and Indole Glucosinolate Conversion Products. Mol Plant, 2016. 9(5): p. 682-695 [PMID:26802248] - Stahl E, et al.
Regulatory and Functional Aspects of Indolic Metabolism in Plant Systemic Acquired Resistance. Mol Plant, 2016. 9(5): p. 662-681 [PMID:26802249] - Bulgakov VP,Veremeichik GN,Grigorchuk VP,Rybin VG,Shkryl YN
The rolB gene activates secondary metabolism in Arabidopsis calli via selective activation of genes encoding MYB and bHLH transcription factors. Plant Physiol. Biochem., 2016. 102: p. 70-9 [PMID:26913794] - Miao H, et al.
Glucose enhances indolic glucosinolate biosynthesis without reducing primary sulfur assimilation. Sci Rep, 2016. 6: p. 31854 [PMID:27549907]
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