 |
Plant Transcription
Factor Database
|
Transcription Factor Information
Basic
Information? help
Back to Top |
TF ID |
Potri.017G099500.1 |
Common Name | POPTR_0017s13370g |
Organism |
|
Taxonomic ID |
|
Taxonomic Lineage |
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; eudicotyledons; Gunneridae; Pentapetalae; rosids; fabids; Malpighiales; Salicaceae; Saliceae; Populus
|
Family |
MYB |
Protein Properties |
Length: 172aa MW: 20102.8 Da PI: 10.3994 |
Description |
MYB family protein |
Gene Model |
Gene Model ID |
Type |
Source |
Coding Sequence |
Potri.017G099500.1 | genome | JGI | View CDS |
|
Signature Domain? help Back to Top |
 |
No. |
Domain |
Score |
E-value |
Start |
End |
HMM Start |
HMM End |
1 | Myb_DNA-binding | 65.3 | 1.1e-20 | 16 | 63 | 1 | 48 |
TSSS-HHHHHHHHHHHHHTTTT-HHHHHHHHTTTS-HHHHHHHHHHHT CS
Myb_DNA-binding 1 rgrWTteEdellvdavkqlGggtWktIartmgkgRtlkqcksrwqkyl 48
+g+WT+eEd+ll+++v ++G g+W++++r+ g++R++k+c++rw +yl
Potri.017G099500.1 16 KGPWTPEEDKLLIEYVSLHGEGRWSSVSRCPGLNRSGKSCRLRWVNYL 63
79********************************************97 PP
|
2 | Myb_DNA-binding | 53.3 | 6.3e-17 | 69 | 113 | 1 | 47 |
TSSS-HHHHHHHHHHHHHTTTT-HHHHHHHHTTTS-HHHHHHHHHHH CS
Myb_DNA-binding 1 rgrWTteEdellvdavkqlGggtWktIartmgkgRtlkqcksrwqky 47
rg T++E+ ++++++++lG++ W+tIar+++ gRt++++k++w+++
Potri.017G099500.1 69 RGQITPQEEGIIIELHALLGNK-WSTIARYLP-GRTDNEIKNYWRTH 113
7888******************.*********.***********986 PP
|
Sequence ? help Back to Top |
Protein Sequence Length: 172 aa
Download sequence Send
to blast |
MVARMGWGIP EKGWRKGPWT PEEDKLLIEY VSLHGEGRWS SVSRCPGLNR SGKSCRLRWV 60 NYLRPGLKRG QITPQEEGII IELHALLGNK WSTIARYLPG RTDNEIKNYW RTHSKKKEKS 120 SQKQLEKRKA QILKQEEEHQ QHLQQQQQQQ QQQLEAGDMN MVNTIAHENQ R*
|
Expression --
Description ? help
Back to Top |
Source |
Description |
Uniprot | DEVELOPMENTAL STAGE: During seed development, gradually down-regulated towards the onset of ripening (veraison). During berry skin development, dramatic decrease to full repression at veraison, followed by a slight increase towards ripening. In flowers, barely detectable in stamens, at the interface of filaments and anthers. {ECO:0000269|PubMed:22018045}. |
Uniprot | TISSUE SPECIFICITY: Mainly expressed in leaves and seedlings, and to a lower extent, in roots, stems and inflorescences. Isoform MYB48-1, isoform MYB48-3 and isoform MYB48-4 are present in all of these organs, but isoform MYB48-2 is confined to leaves. {ECO:0000269|PubMed:16531467}. |
Uniprot | TISSUE SPECIFICITY: Mainly expressed in leaves and seedlings, and to a lower extent, in roots, stems and inflorescences. Isoform MYB59-1 and isoform MYB59-2 are present in roots, leaves, and seedlings, while the expression of isoform MYB59-3 and isoform MYB59-4 is confined to seedlings. {ECO:0000269|PubMed:16531467}. |
Uniprot | TISSUE SPECIFICITY: Restricted to stomatal guard cells. Mostly expressed in leaves, cotyledons, hypocotyls, seeds and ripened berry skins. {ECO:0000269|PubMed:22018045}. |
Functional Description ? help
Back to Top |
Source |
Description |
UniProt | Transcription factor. {ECO:0000305}. |
UniProt | Transcription factor. {ECO:0000305}. |
UniProt | Transcription factor involved in the regulation of gene (e.g. drought-regulated and flavonoid biosynthetic genes) expression and stomatal movements leading to negative regulation of responses to drought and responses to other physiological stimuli (e.g. light). {ECO:0000269|PubMed:22018045}. |
Regulation -- Description ? help
Back to Top |
Source |
Description |
UniProt | INDUCTION: By salicylic acid (SA). {ECO:0000269|PubMed:16463103}. |
UniProt | INDUCTION: Isoform MYB59-1 is induced by jasmonate (JA), salicylic acid (SA), gibberellic acid (GA), and ethylene. Also induced by cadmium (Cd). {ECO:0000269|PubMed:16463103, ECO:0000269|PubMed:16531467}. |
UniProt | INDUCTION: Repressed by abscisic acid (ABA) and osmotic stress (salt stress). {ECO:0000269|PubMed:22018045}. |
Publications
? help Back to Top |
- Duarte JM, et al.
Expression pattern shifts following duplication indicative of subfunctionalization and neofunctionalization in regulatory genes of Arabidopsis. Mol. Biol. Evol., 2006. 23(2): p. 469-78 [PMID:16280546] - Jaillon O, et al.
The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla. Nature, 2007. 449(7161): p. 463-7 [PMID:17721507] - Ding Y, et al.
Four distinct types of dehydration stress memory genes in Arabidopsis thaliana. BMC Plant Biol., 2013. 13: p. 229 [PMID:24377444] - Nishida S,Kakei Y,Shimada Y,Fujiwara T
Genome-wide analysis of specific alterations in transcript structure and accumulation caused by nutrient deficiencies in Arabidopsis thaliana. Plant J., 2017. 91(4): p. 741-753 [PMID:28586097] - Hickman R, et al.
Architecture and Dynamics of the Jasmonic Acid Gene Regulatory Network. Plant Cell, 2017. 29(9): p. 2086-2105 [PMID:28827376] - Imran QM, et al.
Transcriptome profile of NO-induced Arabidopsis transcription factor genes suggests their putative regulatory role in multiple biological processes. Sci Rep, 2018. 8(1): p. 771 [PMID:29335449]
|