A meta-analysis highlights the cross-resistance of plants to drought and salt stresses from physiological, biochemical, and growth levels
- PMID: 38591354
- DOI: 10.1111/ppl.14282
A meta-analysis highlights the cross-resistance of plants to drought and salt stresses from physiological, biochemical, and growth levels
Abstract
In nature, drought and salt stresses often occur simultaneously and affect plant growth at multiple levels. However, the mechanisms underlying plant responses to drought and salt stresses and their interactions are still not fully understood. We performed a meta-analysis to compare the effects of drought, salt, and combined stresses on plant physiological, biochemical, morphological and growth traits, analyze the different responses of C3 and C4 plants, as well as halophytes and non-halophytes, and identify the interactive effects on plants. There were numerous similarities in plant responses to drought, salt, and combined stresses. C4 plants had a more effective antioxidant defense system, and could better maintain above-ground growth. Halophytes could better maintain photosynthetic rate (Pn) and relative water content (RWC), and reduce growth as an adaptation strategy. The responses of most traits (Pn, RWC, chlorophyll content, soluble sugar content, H2O2 content, plant dry weight, etc.) to combined stress were less-than-additive, indicating cross-resistance rather than cross-sensitivity of plants to drought and salt stresses. These results are important to improve our understanding of drought and salt cross-resistance mechanisms and further induce resistance or screen-resistant varieties under stress combination.
© 2024 Scandinavian Plant Physiology Society.
References
REFERENCES
-
- Abogadallah, G. M. (2011) Differential regulation of photorespiratory gene expression by moderate and severe salt and drought stress in relation to oxidative stress. Plant Science 180(3): 540–547.
-
- Acosta‐Motos, J. R., Ortuño, M. F., Bernal‐Vicente, A., Diaz‐Vivancos, P., Sanchez‐Blanco, M. J., Hernandez, J. A. (2017) Plant Responses to Salt Stress: Adaptive Mechanisms. Agronomy 7: 18.
-
- Alam, H., Zamin, M., Adnan, M., Shah, A. N., Alharby, H. F., Bamagoos, A. A., Alabdallah, N. M., Alzahrani, S. S., Alharbi, B. M., Saud, S., Hassan, S., Fahad, S. (2022) Exploring Suitability of Salsola imbricata (Fetid Saltwort) for Salinity and Drought Conditions: A Step Toward Sustainable Landscaping Under Changing Climate. Frontiers in Plant Science 13: 900210.
-
- Ali, A., Yun, D. J. (2017) Salt stress tolerance; what do we learn from halophytes? Journal of Plant Biology 60(5): 431–439.
-
- Aliakbari, M., Cohen, S. P., Lindlof, A., Shamloo‐Dashtpagerdi, R. (2021) Rubisco activase A (RcaA) is a central node in overlapping gene network of drought and salinity in Barley (Hordeum vulgare L.) and may contribute to combined stress tolerance. Plant Physiology and Biochemistry 161: 248–258.
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