Comparative Transcriptome Reveals ART1‐Dependent Regulatory Pathways for Fe Toxicity Response in Rice Roots
Yoshiaki Ueda, Naoki Yamaji, Matthias Wissuwa

TL;DR
This study identifies ART1 as a key regulator in rice roots responding to iron toxicity, revealing shared pathways with aluminum stress.
Contribution
The study discovers ART1-dependent regulatory pathways involved in rice root response to Fe toxicity.
Findings
Genes upregulated by Fe toxicity overlap significantly with ART1 target genes and Al-inducible genes.
The ART1 transcription factor is crucial for upregulating STAR2 and FRDL4 under Fe toxicity.
Fe toxicity responses share regulatory mechanisms with oxidative stress and Al toxicity.
Abstract
Iron (Fe) is an essential element for plants, but an excess supply can have detrimental effects. Fe toxicity induces complex physiological and genetic responses, and due to this complexity, the knowledge of transcriptional regulatory mechanisms under Fe toxicity is very limited. Previous studies suggested that plant responses to excess Fe involve oxidative stress caused by reactive oxygen species (ROS), which itself causes transcriptional changes. We hypothesized that dissecting these complex responses could lead to the identification of a novel factor and conducted a comparative transcriptome analysis using roots of rice plants exposed to nutrient solutions containing 1 or 5 mM of hydrogen peroxide (a major form of ROS) or 300 mg L−1 of Fe (as FeSO4). Genes induced by hydrogen peroxide overlapped with 62%, 49%, and 30% of Fe toxicity‐upregulated genes at 3 h, 1 day, and 3 days…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsPlant Micronutrient Interactions and Effects · Aluminum toxicity and tolerance in plants and animals · Plant Stress Responses and Tolerance
