ArticlePlants (Basel, Switzerland)2024
Physiological Mechanism through Which Al Toxicity Inhibits Peanut Root Growth.
Article in Plants (Basel, Switzerland), 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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9 citing papers in PubMed.
- Genome-wide identification and gene expression analysis of Formin homology 2 (FH2) genes in peanut.BMC plant biology · 2026Article
- The molecular mechanism of the α-linolenic acid metabolism pathway in rice in response to Cd stress.BMC plant biology · 2026Article
- Molecular mechanisms of peanut root responses to Cd stress regulated by ABC transporter and plant hormone signal transduction pathways.BMC plant biology · 2026Article
- Comparative transcriptome analysis reveals the complex response mechanisms of soybean leaves and roots to salt stress.BMC plant biology · 2025Article
- Reaction Mechanism of Aluminum Toxicity on Leaf Growth of Shatian Pomelo Seedlings.Plants (Basel, Switzerland) · 2025Article
- Mechanisms of Aluminum Toxicity Impacting Root Growth in Shatian Pomelo.International journal of molecular sciences · 2024Article
- Effects of copper, and aluminium in ionic, and nanoparticulate form on growth rate and gene expression of Setaria italica seedlings.Scientific reports · 2024Article
- The Physiological Response Mechanism of Peanut Leaves under Al Stress.Plants (Basel, Switzerland) · 2024Article
- High Concentrations of Se Inhibited the Growth of Rice Seedlings.Plants (Basel, Switzerland) · 2024Article
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7 authors.
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Abstract
Al (Aluminum) poisoning is a significant limitation to crop yield in acid soil. However, the physiological process involved in the peanut root response to Al poisoning has not been clarified yet and requires further research. In order to investigate the influence of Al toxicity stress on peanut roots, this study employed various methods, including root phenotype analysis, scanning of the root, measuring the physical response indices of the root, measurement of the hormone level in the root, and quantitative PCR (qPCR). This research aimed to explore the physiological mechanism underlying the reaction of peanut roots to Al toxicity. The findings revealed that Al poisoning inhibits the development of peanut roots, resulting in reduced biomass, length, surface area, and volume. Al also significantly affects antioxidant oxidase activity and proline and malondialdehyde contents in peanut roots. Furthermore, Al toxicity led to increased accumulations of Al and Fe in peanut roots, while the contents of zinc (Zn), cuprum (Cu), manganese (Mn), kalium (K), magnesium (Mg), and calcium (Ca) decreased. The hormone content and related gene expression in peanut roots also exhibited significant changes. High concentrations of Al trigger cellular defense mechanisms, resulting in differentially expressed antioxidase genes and enhanced activity of antioxidases to eliminate excessive ROS (reactive oxygen species). Additionally, the differential expression of hormone-related genes in a high-Al environment affects plant hormones, ultimately leading to various negative effects, for example, decreased biomass of roots and hindered root development. The purpose of this study was to explore the physiological response mechanism of peanut roots subjected to aluminum toxicity stress, and the findings of this research will provide a basis for cultivating Al-resistant peanut varieties.
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