46 research outputs found
A genome-wide expression profile analysis reveals active genes and pathways coping with phosphate starvation in soybean
Ostreococcus tauri is a new model green alga for studying iron metabolism in eukaryotic phytoplankton
Nootropic Effect of Berberine in Colchicines Induced Experimental Alzheimer's Disease Model: Effect on Cholinergic Neurotransmission
Determining the GmRIN4 Requirements of the Soybean Disease Resistance Proteins Rpg1b and Rpg1r Using a Nicotiana glutinosa-Based Agroinfiltration System
Evaluation of seedling survivability and growth response as selection criteria for breeding drought tolerance in wheat
A comprehensive study on dehydration-induced antioxidative responses during germination of Indian bread wheat (Triticum aestivum L. em Thell) cultivars collected from different agroclimatic zones
Dissection of iron signaling and iron accumulation by overexpression of subgroup Ib bHLH039 protein
Abstract Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts they need in their environment. Plants can increase iron uptake in response to a regulatory transcription factor cascade. Arabidopsis thaliana serves as model plant to identify and characterize iron regulation genes. Here, we show that overexpression of subgroup Ib bHLH transcription factor bHLH039 (39Ox) caused constitutive iron acquisition responses, which resulted in enhanced iron contents in leaves and seeds. Transcriptome analysis demonstrated that 39Ox plants displayed simultaneously gene expression patterns characteristic of iron deficiency and iron stress signaling. Thereby, we could dissect iron deficiency response regulation. The transcription factor FIT, which is required to regulate iron uptake, was essential for the 39Ox phenotype. We provide evidence that subgroup Ib transcription factors are involved in FIT transcriptional regulation. Our findings pose interesting questions to the feedback control of iron homeostasis
