Plants’ Response to Abiotic Stress: Mechanisms and Strategies

Ответ растений на абиотический стресс: механизмы и стратегии
Yan Zhang, Jing Xu, Ruofan Li, Ruofan Li, Yanrui Ge, Yufei Li, Ruili Li
2023-06-30

abiotic stressagricultural sustainabilityplant stress sensingsignal transductionstress-resistant crops
Abiotic stress is the adverse effect of any abiotic factor on a plant in a given environment, impacting plants' growth and development. These stress factors, such as drought, salinity, and extreme temperatures, are often interrelated or in conjunction with each other. Plants have evolved mechanisms to sense these environmental challenges and make adjustments to their growth in order to survive and reproduce. In this review, we summarized recent studies on plant stress sensing and its regulatory mechanism, emphasizing signal transduction and regulation at multiple levels. Then we presented several strategies to improve plant growth under stress based on current progress. Finally, we discussed the implications of research on plant response to abiotic stresses for high-yielding crops and agricultural sustainability. Studying stress signaling and regulation is critical to understand abiotic stress responses in plants to generate stress-resistant crops and improve agricultural sustainability.
1
Abiotic stresses including drought, salinity, and extreme temperatures adversely affect plant growth and development and frequently occur together.
2
Current advances provide strategies for improving plant growth under abiotic stress and developing stress-resistant crops.
3
Plants sense abiotic challenges and adjust growth through coordinated stress-signaling and regulatory mechanisms that support survival and reproduction.
4
Recent research has clarified plant abiotic-stress responses through signal transduction and regulation operating at multiple biological levels.
5
Understanding abiotic-stress signaling and regulation is important for achieving high-yielding crops and improving agricultural sustainability.

plants under abiotic stress, including drought, salinity, and extreme temperatures

stress sensing, signal transduction, multilevel regulatory mechanisms, and growth-improvement strategies underlying plant responses to abiotic stress

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Publication Date
2023-06-30
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Authors
Yan Zhang
Jing Xu
Ruofan Li
Ruofan Li
Yanrui Ge
Yufei Li
Ruili Li
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