ReviewInternational journal of molecular sciences2024
Enhancing Crop Resilience: The Role of Plant Genetics, Transcription Factors, and Next-Generation Sequencing in Addressing Salt Stress.
Review in International journal of molecular sciences, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed.
- Phytohormones as key regulators of plant resilience under salinity and extreme temperatures.Planta · 2026Review
- Decoding the Genetic Basis of Salinity Tolerance at Germination and Seedling Traits in HEB-25 Barley NAM Population.Plants (Basel, Switzerland) · 2026Article
- Molecular Mechanisms of Plant Stress Tolerance: From Stress Perception to Phytohormonal Crosstalk and Transcriptional Regulation.Current issues in molecular biology · 2026Review
- Metagenomic and functional insights into root endophytic bacteria associated with drought stress in cowpea.Scientific reports · 2026Article
- Introgression of wild barley alleles improves seedlings salinity tolerance in the nested association mapping HEB-400 population.The plant genome · 2026Article
- SlNAC63-SlbHLH71 module enhances tomato saline-alkali tolerance via regulating JA biosynthesis and ROS scavenging.TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik · 2026Article
- Harnessing cuproptosis: a new avenue for targeted cancer therapies.Apoptosis : an international journal on programmed cell death · 2025Review
- Microbial Resilience in Arid Soils: Ecological Responses to Drought and Salinity Stress.Current microbiology · 2025Review
- ONAC005 enhances salt stress tolerance by promoting suberin deposition in root endodermis.The Plant journal : for cell and molecular biology · 2025Article
- Functional Characterization of GrapevinePlants (Basel, Switzerland) · 2025Article
- Enhancing wheat resilience to salinity: the role of endophytic Penicillium chrysogenum as a biological agent for improved crop performance.BMC plant biology · 2025Article
- Dynamic molecular regulation of salt stress responses in maize (Frontiers in plant science · 2025Article
Corrections and comments
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Authors and funding
10 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Salt stress is a major abiotic stressor that limits plant growth, development, and agricultural productivity, especially in regions with high soil salinity. With the increasing salinization of soils due to climate change, developing salt-tolerant crops has become essential for ensuring food security. This review consolidates recent advances in plant genetics, transcription factors (TFs), and next-generation sequencing (NGS) technologies that are pivotal for enhancing salt stress tolerance in crops. It highlights critical genes involved in ion homeostasis, osmotic adjustment, and stress signaling pathways, which contribute to plant resilience under saline conditions. Additionally, specific TF families, such as DREB, NAC (NAM, ATAF, and CUC), and WRKY, are explored for their roles in activating salt-responsive gene networks. By leveraging NGS technologies-including genome-wide association studies (GWASs) and RNA sequencing (RNA-seq)-this review provides insights into the complex genetic basis of salt tolerance, identifying novel genes and regulatory networks that underpin adaptive responses. Emphasizing the integration of genetic tools, TF research, and NGS, this review presents a comprehensive framework for accelerating the development of salt-tolerant crops, contributing to sustainable agriculture in saline-prone areas.
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