ReviewPlants (Basel, Switzerland)2024
Impact of Abiotic Stress on Rice and the Role of DNA Methylation in Stress Response Mechanisms.
Review 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 13 papers.
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Who cites it
13 citing papers in PubMed.
- Plant defence priming and memory mechanisms under climate change.Essays in biochemistry · 2026Review
- Transcriptomic and DNA methylation insights into polyploidy-enhanced heat tolerance in rice (Oryza sativa L.).Plant physiology · 2026Article
- Epigenetic regulation under light and temperature fluctuations: chromatin remodeling and transcriptional memory in plants.Plant cell reports · 2026Review
- Eco-Physiological and Molecular Roles of Zinc Oxide Nanoparticles (ZnO-NPs) in Mitigating Abiotic Stress: A Comprehensive Review.Plants (Basel, Switzerland) · 2026Review
- Epigenetic modifications in plant abiotic stress adaptation: towards climate-resilient and sustainable crop improvement.Frontiers in plant science · 2026Review
- Epigenetic Regulation of Salt Stress Responses in Rice: Mechanisms and Prospects for Enhancing Tolerance.Epigenomes · 2025Review
- Epigenetic horizons in aquaculture: unlocking sustainable fish production.Fish physiology and biochemistry · 2025Review
- Gaining insights into epigenetic memories through artificial intelligence and omics science in plants.Journal of integrative plant biology · 2025Review
- Dynamics of rice microbiome: insights into functional diversity, environmental influences, response to stress, and applications.World journal of microbiology & biotechnology · 2025Review
- Molecular mechanisms and biological functions of active DNA demethylation in plants.Epigenetics & chromatin · 2025Review
- Epitranscriptomic Control of Drought Tolerance in Rice: The Role of RNA Methylation.Plants (Basel, Switzerland) · 2025Review
- Rice Responses to Abiotic Stress: Key Proteins and Molecular Mechanisms.International journal of molecular sciences · 2025Review
- DNA methylation in wheat: current understanding and future potential for enhancing biotic and abiotic stress tolerance.Physiology and molecular biology of plants : an international journal of functional plant biology · 2024Review
Corrections and comments
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Authors and funding
15 authors.
Funding
Abstract
With the intensification of global climate change and the increasing complexity of agricultural environments, the improvement of rice stress tolerance is an important focus of current breeding research. This review summarizes the current knowledge on the impact of various abiotic stresses on rice and the associated epigenetic responses (DNA methylation). Abiotic stress factors, including high temperature, drought, cold, heavy metal pollution, and high salinity, have a negative impact on crop productivity. Epigenetic changes are key regulatory factors in plant stress responses, and DNA methylation is one of the earliest discovered and thoroughly studied mechanisms in these epigenetic regulatory mechanisms. The normal growth of rice is highly dependent on the environment, and changes in the environment can lead to rice sterility and severe yield loss. Changes in the regulation of the DNA methylation pathway are involved in rice's response to stress. Various DNA methylation-regulating protein complexes that function during rice development have been identified. Significant changes in DNA methylation occur in numerous stress-responsive genes, particularly those in the abscisic acid signaling pathway. These findings underscore the complex mechanisms of the abiotic stress response in rice. We propose the effective improvement of tolerance traits by regulating the epigenetic status of rice and emphasize the role of DNA methylation in abiotic stress tolerance, thereby addressing global climate change and ensuring food security.
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Registered trials
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