Aug 2026· Vegetos- An International Journal of Plant Research· Vol 39, pp. 1201 - 1210· 0 citations· 110 references
TL;DR
Recent advances in the use of phytohormones and hormone-related regulators, neurotransmitter-like signaling compounds, gaseous signaling molecules, and other emerging bioregulators to improve drought tolerance are summarized.
Biotic and abiotic stressors, including climate crises, are affecting plants’ metabolic and developmental processes, which negatively influence crop performance and the overall resilience of agroecosystems. In response to these stressors, plants have evolved multifaceted defense mechanisms at morphological, physiolog...
Shibani Mohapatra, Bhaskar Sarma, Y. K. Mohanta et al.· Discover Sustainability· 0 citations
Abiotic stresses, such as drought, salinity, temperature extremes, heavy metals, and pesticide toxicity, severely impact plant growth and productivity, primarily through the accumulation of reactive oxygen species (ROS) and metabolic imbalances. In the era of climate change and declining agricultural sustainability, th...
Amandeep Singh, S. Kaushik, Manu Sharma et al.· Discover Plants· 0 citations
Global food security is increasingly threatened by climate change, as rising temperatures compromise the yields of major staple crops, including wheat, rice, and maize. Enhancing plant thermotolerance has therefore become a critical priority for sustaining agricultural productivity. However, plant heat-stress responses...
Yu-Chen Qu, Wataru Yamori· Plant, Cell and Environment· 0 citations
Current insights into PGPR-mediated stress mitigation are synthesized, technological innovations that support their application are highlighted, and pathways for integrating PGPR into climate-resilient, sustainable agricultural systems to safeguard crop productivity amid escalating environmental stress are outlined.
Sabia Khan, Md. Abdullah Al Sabbir, Nabela Akter et al.· Applied Biosciences· 0 citations
Climate change is increasing the frequency, intensity, and co-occurrence of drought, salinity, heat, cold, flooding, and other abiotic constraints that destabilize crop productivity. Because crop failure emerges from physiological dysfunction before it becomes visible as yield loss, understanding plant physiological re...
Y. Sari, Achmad Agung· Journal of Global Education...· 0 citations
This review synthesizes current insights into the molecular and physiological roles of phyto‐oxylipins, emphasizing their potential in integrating plant defense mechanisms to enhance crop productivity amid abiotic and biotic challenges.
S. Mansoor, Nabila Bettache, M. Altaf et al.· Physiologia Plantarum : An I...· 0 citations
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