[HTML][HTML] Potential breeding strategies for improving salt tolerance in crop plants

M Afzal, SES Hindawi, SS Alghamdi… - Journal of Plant Growth …, 2023 - Springer
Salinity is one of the significant abiotic stresses that negatively affect plant production
processes, growth, and development, which ultimately reduce yield. Plants adapt specific …

[HTML][HTML] Structure, Function, and Regulation of the Plasma Membrane Na+/H+ Antiporter Salt Overly Sensitive 1 in Plants

Q Xie, Y Zhou, X Jiang - Frontiers in Plant Science, 2022 - frontiersin.org
Physiological studies have confirmed that export of Na+ to improve salt tolerance in plants is
regulated by the combined activities of a complex transport system. In the Na+ transport …

[HTML][HTML] Insight into the Root Transcriptome of a Boron-Tolerant Triticum zhukovskyi Genotype Grown under Boron Toxicity

A Pandey, MK Khan, M Hamurcu, M Brestic, A Topal… - Agronomy, 2022 - mdpi.com
Boron (B) toxicity is an important abiotic stress that drastically damages agricultural
production worldwide, mostly in arid regions. Several studies have reported large losses in …

[HTML][HTML] Insight into the Boron Toxicity Stress-Responsive Genes in Boron-Tolerant Triticum dicoccum Shoots Using RNA Sequencing

MK Khan, A Pandey, M Hamurcu, VR Rajpal… - Agronomy, 2023 - mdpi.com
Wheat production losses due to boron (B) toxicity can be reduced by breeding and growing
modern wheat cultivars with a greater tolerance to high B. However, breeding of tolerant …

[HTML][HTML] Photosynthetic machinery under salinity stress: Trepidations and adaptive mechanisms

TV Vineeth, GK Krishna, PH Pandesha, L Sathee… - …, 2023 - ps.ueb.cas.cz
TV VINEETH 1, 2, 3, GK KRISHNA 3, PH PANDESHA 4, L. SATHEE 4, S. THOMAS 5, D.
JAMES 6, KT RAVIKIRAN 2, 7, S. TARIA 4, 8, C. JOHN 9, NM VINAYKUMAR 10, BM …

[HTML][HTML] Plant growth stimulators improve two wheat cultivars salt-tolerance: Insights into their physiological and nutritional responses

NB Talaat, AMA Hanafy - Plants, 2022 - mdpi.com
Spermine (SPM) and salicylic acid (SA), plant growth stimulators, are involved in various
biological processes and responses to environmental cues in plants. However, the function …

[HTML][HTML] Comparative transcriptomic profiling reveals differentially expressed genes and important related metabolic pathways in shoots and roots of a Saudi wheat …

N Alyahya, T Taybi - Frontiers in Plant Science, 2023 - frontiersin.org
High salinity of soil is a threatening constraint for agricultural output worldwide. The adverse
effects of salt stress on plants can be revealed in different manners, from phenotypic to …

[HTML][HTML] RNA-Seq-Based WGCNA and Association Analysis Reveal the Key Regulatory Module and Genes Responding to Salt Stress in Wheat Roots

J Chen, L Zhang, Y Liu, X Shen, Y Guo, X Ma, X Zhang… - Plants, 2024 - mdpi.com
Soil salinization is the main abiotic stressor faced by crops. An improved understanding of
the transcriptional response to salt stress in roots, the organ directly exposed to a high …

[HTML][HTML] Weighted gene co-expression network analysis revealed the key pathways and hub genes of potassium regulating cotton root adaptation to salt stress

F Ju, L Sun, C Xiong, Z Wang, H Yu, J Pang… - Frontiers in Plant …, 2023 - frontiersin.org
Soil salinization is one of the main abiotic stresses affecting cotton yield and planting area.
Potassium application has been proven to be an important strategy to reduce salt damage in …

[HTML][HTML] Spermine-Salicylic Acid Interplay Restrains Salt Toxicity in Wheat (Triticum aestivum L.)

NB Talaat, AMA Hanafy - Plants, 2023 - mdpi.com
Spermine (SPM) and salicylic acid (SA) are plant growth regulators, eliciting specific
responses against salt toxicity. In this study, the potential role of 30 mgL− 1 SPM and/or 100 …