Understanding Fe2+ toxicity and P deficiency tolerance in rice for enhancing productivity under acidic soils
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Summary
This review focuses on the progress made in understanding these key environmental stresses of P deficiency and Fe toxicity in rice and an opinion on the key genes which can be targeted for this stress is provided.
- Type
- review
- Published
- 2017-01-02
- Cited by
- 16
- References
- 111
- Access
- Open access
- OpenAlex
- https://openalex.org/W2754421835
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9543182
Keywords
Crop productivity, Abiotic component, Toxicity, Productivity, Phosphorus deficiency
References
- Characterization of tissue tolerance to iron by molecular markers in different lines of rice
- Getting a sense for signals: regulation of the plant iron deficiency response
- Environmental, developmental, and genetic factors controlling root system architecture
- Detection and analysis of QTLs for ferrous iron toxicity tolerance in rice, Oryza sativa L.
- Effect of iron plaque outside roots on nutrient uptake by rice (Oryza sativa L.): Phosphorus uptake
- Haplotype analysis for locus in rice genotypes of North Eastern and Eastern India to identify suitable donors tolerant to low phosphorus.
- Loci, genes, and mechanisms associated with tolerance to ferrous iron toxicity in rice (Oryza sativa L.)
- Screening for internal phosphorus utilisation efficiency: comparison of genotypes at equal shoot P content is critical
- Further characterization of two QTLs that increase phosphorus uptake of rice ( Oryza sativa L.) under phosphorus deficiency
- Route and Regulation of Zinc, Cadmium, and Iron Transport in Rice Plants (Oryza sativa L.) during Vegetative Growth and Grain Filling: Metal Transporters, Metal Speciation, Grain Cd Reduction and Zn and Fe Biofortification
- Molecular mechanisms underlying phosphate sensing, signaling, and adaptation in plants.
- Integration of P acquisition efficiency, P utilization efficiency and low grain P concentrations into P-efficient rice genotypes for specific target environments
- Roots of the Second Green Revolution
- Integrative Comparison of the Role of the PHOSPHATE RESPONSE1 Subfamily in Phosphate Signaling and Homeostasis in Rice1
- Spatio-Temporal Transcript Profiling of Rice Roots and Shoots in Response to Phosphate Starvation and Recovery[W][OPEN]
- QTL mapping for biomass and physiological parameters linked to resistance mechanisms to ferrous iron toxicity in rice
- Hydroponic experiment for identification of tolerance traits developed by rice Nagina 22 mutants to low-phosphorus in field condition
- Phosphorus deficiency-induced root elongation and its QTL in rice (Oryza sativa L.)
- Rice phosphate transporters include an evolutionarily divergent gene specifically activated in arbuscular mycorrhizal symbiosis
- Maintaining elevated Fe2+ concentration in solution culture for the development of a rapid and repeatable screening technique for iron toxicity tolerance in rice (Oryza sativa L.)
Cited by
- Combining phosphorus placement and water saving technologies enhances rice production in phosphorus-deficient lowlands
- Dissection of Root Transcriptional Responses to Low pH, Aluminum Toxicity and Iron Excess Under Pi-Limiting Conditions in Arabidopsis Wild-Type and stop1 Seedlings
- A 1.84-Mb region on rice chromosome 2 carrying SPL4, SPL5 and MLO8 genes is associated with higher yield under phosphorus-deficient acidic soil
- Differential Expression of Iron Deficiency Responsive Rice Genes under Low Phosphorus and Iron Toxicity Conditions and Association of OsIRO3 with Yield in Acidic Soils
- Phosphorus Starvation Tolerance in Rice Through a Combined Physiological, Biochemical and Proteome Analysis
- Iron (Fe) toxicity, uptake, translocation, and physio-morphological responses in Catharanthus roseus
- Effect of Iron (Fe) heavy metal content at different pH on the germination of seven soybean varieties in Indonesia
- Integrated transcriptome and proteome analysis of near-isogenic line provides insights on regulatory function of Pup1 QTL in rice under phosphorus-starvation stress
- Exploring Stable Low Soil Phosphorous Stress Tolerance in Rice Using Novel Allele Recombination From Oryza rufipogon
- Carotenoid biosynthesis drives root plasticity through aerenchyma and iron plaque formation in rice
- Quantitative Gene Expression Analysis Across Contrasting Linseed Genotypes Identifies New Candidates for Aluminum Toxicity and Low‐Phosphorus Tolerance
- Harnessing Tolerance to Low Phosphorus in Rice: Recent Progress and Future Perspectives
- Effects of Climate Change on Growth and Development of Chillia
- Application of saturation sludge improves chemical properties of pseudogley soil and crop yield
- Organic acids counteract the determinate root development induced by phosphate deprivation in Arabidopsis thaliana
- Soil acidification effects on nutrient dynamics in paddy rice systems including causes impacts and sustainable management strategies
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