scholarly article | Q13442814 |
P2093 | author name string | Diqiu Yu | |
Gang Liang | |||
Huimin Zhang | |||
Xiaoli Li | |||
Qin Ai | |||
P2860 | cites work | Control of iron homeostasis by an iron-regulated ubiquitin ligase | Q24317234 |
An E3 ligase possessing an iron-responsive hemerythrin domain is a regulator of iron homeostasis | Q24317309 | ||
Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana | Q27860555 | ||
Structure and differential expression of the four members of the Arabidopsis thaliana ferritin gene family | Q28362391 | ||
The ferritins: molecular properties, iron storage function and cellular regulation | Q28609366 | ||
The basic helix-loop-helix transcription factor family in plants: a genome-wide study of protein structure and functional diversity. | Q30332702 | ||
Getting a sense for signals: Regulation of the plant iron deficiency response | Q33558892 | ||
The bHLH transcription factor POPEYE regulates response to iron deficiency in Arabidopsis roots | Q33646505 | ||
The tomato fer gene encoding a bHLH protein controls iron-uptake responses in roots | Q34162364 | ||
A bHLH transcription factor regulates iron intake under Fe deficiency in chrysanthemum | Q34397090 | ||
Time to pump iron: iron-deficiency-signaling mechanisms of higher plants | Q34812422 | ||
Metal movement within the plant: contribution of nicotianamine and yellow stripe 1-like transporters | Q34870428 | ||
MYB10 and MYB72 are required for growth under iron-limiting conditions | Q35053083 | ||
Iron uptake, trafficking and homeostasis in plants. | Q35060484 | ||
Transporters of ligands for essential metal ions in plants. | Q36797247 | ||
Chromatin immunoprecipitation (ChIP) coupled to detection by quantitative real-time PCR to study transcription factor binding to DNA in Caenorhabditis elegans. | Q37189473 | ||
Overexpression of MdbHLH104 gene enhances the tolerance to iron deficiency in apple | Q37343977 | ||
Homing in on iron homeostasis in plants. | Q37449552 | ||
Iron Uptake, Translocation, and Regulation in Higher Plants | Q37992127 | ||
The essential basic helix-loop-helix protein FIT1 is required for the iron deficiency response | Q38334398 | ||
Two bHLH Transcription Factors, bHLH34 and bHLH104, Regulate Iron Homeostasis in Arabidopsis thaliana | Q39177194 | ||
The bHLH transcription factor bHLH104 interacts with IAA-LEUCINE RESISTANT3 and modulates iron homeostasis in Arabidopsis | Q41186558 | ||
IRT1, an Arabidopsis transporter essential for iron uptake from the soil and for plant growth | Q44041956 | ||
FRD3, a member of the multidrug and toxin efflux family, controls iron deficiency responses in Arabidopsis | Q44097463 | ||
Iron-binding E3 ligase mediates iron response in plants by targeting basic helix-loop-helix transcription factors | Q44876499 | ||
Requirement and functional redundancy of Ib subgroup bHLH proteins for iron deficiency responses and uptake in Arabidopsis thaliana | Q45081460 | ||
The Arabidopsis basic/helix-loop-helix transcription factor family. | Q45933175 | ||
Dissecting iron deficiency-induced proton extrusion in Arabidopsis roots. | Q45956846 | ||
FIT interacts with AtbHLH38 and AtbHLH39 in regulating iron uptake gene expression for iron homeostasis in Arabidopsis | Q46758626 | ||
A ferric-chelate reductase for iron uptake from soils | Q47982721 | ||
Expression of the IRT1 metal transporter is controlled by metals at the levels of transcript and protein accumulation | Q48296215 | ||
AtbHLH29 of Arabidopsis thaliana is a functional ortholog of tomato FER involved in controlling iron acquisition in strategy I plants | Q51367539 | ||
An efficient chromatin immunoprecipitation (ChIP) protocol for studying histone modifications in Arabidopsis plants | Q51572923 | ||
Knock-out of Arabidopsis metal transporter gene IRT1 results in iron deficiency accompanied by cell differentiation defects | Q52113919 | ||
The metal ion transporter IRT1 is necessary for iron homeostasis and efficient photosynthesis in Arabidopsis thaliana | Q54143743 | ||
Iron deficiency-mediated stress regulation of four subgroup Ib BHLH genes in Arabidopsis thaliana | Q58480661 | ||
Genetic evidence that induction of root Fe(III) chelate reductase activity is necessary for iron uptake under iron deficiency | Q71855490 | ||
Iron: Nutritious, Noxious, and Not Readily Available | Q74789505 | ||
P433 | issue | 7 | |
P921 | main subject | Arabidopsis thaliana | Q158695 |
P304 | page(s) | 1743-1755 | |
P577 | publication date | 2017-03-28 | |
P1433 | published in | Journal of Experimental Botany | Q6295179 |
P1476 | title | bHLH transcription factor bHLH115 regulates iron homeostasis in Arabidopsis thaliana | |
P478 | volume | 68 |
Q58750303 | A Shoot Fe Signaling Pathway Requiring the OPT3 Transporter Controls GSNO Reductase and Ethylene in Roots |
Q90070607 | Construction of gene causal regulatory networks using microarray data with the coefficient of intrinsic dependence |
Q92548334 | FIT, a regulatory hub for iron deficiency and stress signaling in roots, and FIT-dependent and -independent gene signatures |
Q91811580 | FIT-Binding Proteins and Their Functions in the Regulation of Fe Homeostasis |
Q39572537 | Fe-deficiency-induced expression of bHLH104 enhances Fe-deficiency tolerance of Arabidopsis thaliana |
Q38429840 | Genome-wide analysis of basic helix-loop-helix (bHLH) transcription factors in Brachypodium distachyon |
Q64107467 | Induced Systemic Resistance (ISR) and Fe Deficiency Responses in Dicot Plants |
Q90269890 | OsbHLH058 and OsbHLH059 transcription factors positively regulate iron deficiency responses in rice |
Q39625518 | POSITIVE REGULATOR OF IRON HOMEOSTASIS1, OsPRI1, Facilitates Iron Homeostasis. |
Q61805169 | Small-Molecules Selectively Modulate Iron-Deficiency Signaling Networks in Arabidopsis |
Q90324522 | Systematic analysis of the basic/helix-loop-helix (bHLH) transcription factor family in pummelo (Citrus grandis) and identification of the key members involved in the response to iron deficiency |
Q92640857 | The Nutrient Response Transcriptional Regulome of Arabidopsis |
Q61813325 | The Transcriptional Control of Iron Homeostasis in Plants: A Tale of bHLH Transcription Factors? |
Q89036719 | The bHLH transcription factor ILR3 modulates multiple stress responses in Arabidopsis |
Search more.