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Plant Transcription
Factor Database
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Transcription Factor Information
Basic
Information? help
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TF ID |
evm_27.model.AmTr_v1.0_scaffold00032.87 |
Common Name | AMTR_s00032p00126420, LOC18443112 |
Organism |
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Taxonomic ID |
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Taxonomic Lineage |
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; basal Magnoliophyta; Amborellales; Amborellaceae; Amborella
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Family |
NAC |
Protein Properties |
Length: 298aa MW: 33889.2 Da PI: 7.0323 |
Description |
NAC family protein |
Gene Model |
Gene Model ID |
Type |
Source |
Coding Sequence |
evm_27.model.AmTr_v1.0_scaffold00032.87 | genome | TAGP | 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 | NAM | 161.2 | 4.1e-50 | 19 | 150 | 2 | 128 |
NAM 2 ppGfrFhPtdeelvveyLkkkvegkkleleevikevdiykvePwdLpkkvkaeekewyfFskrdkkyatg 71
pGfrFhPtdeelv +yL++k+++k++++ evike+d+yk++PwdLp+ + +++ewyfF+ r +ky+++
evm_27.model.AmTr_v1.0_scaffold00032.87 19 LPGFRFHPTDEELVGFYLRRKIDKKPISI-EVIKEIDVYKYDPWDLPRLSTVGDREWYFFCVRGRKYRNS 87
69***************************.99***************7777799**************** PP
NAM 72 krknratksgyWkatgkdkevlsk......kgelvglkktLvfykgrapkgektdWvmheyrl 128
r+nr+t sg+Wkatg d++++s+ ++ +glkk+Lv+y+g+a kg+ktdW+mhe+rl
evm_27.model.AmTr_v1.0_scaffold00032.87 88 IRPNRVTGSGFWKATGIDRPIYSTssggpgHECIIGLKKSLVYYRGSAGKGTKTDWMMHEFRL 150
***********************87766655556***************************98 PP
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Gene Ontology ? help Back to Top |
GO Term |
GO Category |
GO Description |
GO:0005992 | Biological Process | trehalose biosynthetic process |
GO:0006355 | Biological Process | regulation of transcription, DNA-templated |
GO:0006561 | Biological Process | proline biosynthetic process |
GO:0009718 | Biological Process | anthocyanin-containing compound biosynthetic process |
GO:0010120 | Biological Process | camalexin biosynthetic process |
GO:0042538 | Biological Process | hyperosmotic salinity response |
GO:1900056 | Biological Process | negative regulation of leaf senescence |
GO:0005634 | Cellular Component | nucleus |
GO:0003677 | Molecular Function | DNA binding |
Sequence ? help Back to Top |
Protein Sequence Length: 298 aa
Download sequence Send
to blast |
MDMQEKMGSE PNGEEDLILP GFRFHPTDEE LVGFYLRRKI DKKPISIEVI KEIDVYKYDP 60 WDLPRLSTVG DREWYFFCVR GRKYRNSIRP NRVTGSGFWK ATGIDRPIYS TSSGGPGHEC 120 IIGLKKSLVY YRGSAGKGTK TDWMMHEFRL PSSTASLPKP ALLSSSSNKN FNEPETWTIC 180 RIFKRIVSQR KYVPEWKQAT SKETVTTDSS SSLESETINQ YSGFGVSHFD HFEQKPLINQ 240 YEEKTIVFPG QISDQSPVSN MYQGFQSGFS GNLLGEFPWD DACLVVNNFG MEANGFL*
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Functional Description ? help
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Source |
Description |
UniProt | Transcription factor that binds to the 5'- RRYGCCGT-3' consensus core sequence. Central longevity regulator. Negative regulator of leaf senescence. Modulates cellular H(2)O(2) levels and enhances tolerance to various abiotic stresses through the regulation of DREB2A. {ECO:0000269|PubMed:22345491}. |
Regulation -- Description ? help
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Source |
Description |
UniProt | INDUCTION: Up-regulated by H(2)O(2), paraquat, ozone, 3-aminotriazole and salt stress. {ECO:0000269|PubMed:22345491}. |
Orthologous Group
? help Back to Top |
Lineage | Orthologous Group ID | Taxa Number | Gene Number |
Representative plant | OGRP17 | 15 | 800 |
Publications
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- Amborella Genome Project
The Amborella genome and the evolution of flowering plants. Science, 2013. 342(6165): p. 1241089 [PMID:24357323] - Shahnejat-Bushehri S,Nobmann B,Devi Allu A,Balazadeh S
JUB1 suppresses Pseudomonas syringae-induced defense responses through accumulation of DELLA proteins. Plant Signal Behav, 2016. 11(6): p. e1181245 [PMID:27159137] - Shahnejat-Bushehri S,Tarkowska D,Sakuraba Y,Balazadeh S
Arabidopsis NAC transcription factor JUB1 regulates GA/BR metabolism and signalling. Nat Plants, 2016. 2: p. 16013 [PMID:27249348] - Shahnejat-Bushehri S, et al.
Arabidopsis NAC Transcription Factor JUNGBRUNNEN1 Exerts Conserved Control Over Gibberellin and Brassinosteroid Metabolism and Signaling Genes in Tomato. Front Plant Sci, 2017. 8: p. 214 [PMID:28326087] - Sakuraba Y,Bülbül S,Piao W,Choi G,Paek NC
Arabidopsis EARLY FLOWERING3 increases salt tolerance by suppressing salt stress response pathways. Plant J., 2017. 92(6): p. 1106-1120 [PMID:29032592] - Ebrahimian-Motlagh S, et al.
JUNGBRUNNEN1 Confers Drought Tolerance Downstream of the HD-Zip I Transcription Factor AtHB13. Front Plant Sci, 2017. 8: p. 2118 [PMID:29326734]
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