Creating Climate-Resilient Crops by Increasing Drought, Heat, and Salt Tolerance

Author:

Sugumar Tharanya1,Shen Guoxin2,Smith Jennifer1ORCID,Zhang Hong1ORCID

Affiliation:

1. Department of Biological Sciences, Texas Tech University, Lubbock, TX 79409, USA

2. Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China

Abstract

Over the years, the changes in the agriculture industry have been inevitable, considering the need to feed the growing population. As the world population continues to grow, food security has become challenged. Resources such as arable land and freshwater have become scarce due to quick urbanization in developing countries and anthropologic activities; expanding agricultural production areas is not an option. Environmental and climatic factors such as drought, heat, and salt stresses pose serious threats to food production worldwide. Therefore, the need to utilize the remaining arable land and water effectively and efficiently and to maximize the yield to support the increasing food demand has become crucial. It is essential to develop climate-resilient crops that will outperform traditional crops under any abiotic stress conditions such as heat, drought, and salt, as well as these stresses in any combinations. This review provides a glimpse of how plant breeding in agriculture has evolved to overcome the harsh environmental conditions and what the future would be like.

Funder

CH Foundation

Texas State Support Committee/Cotton Incorporated

Key Scientific and Technological Grant of Zhejiang for Breeding New Agricultural Varieties

Publisher

MDPI AG

Reference198 articles.

1. Seneviratne, S., Xuebin, Z., Adnan, M., Badi, W., Dereczynski, C., Di Luca, A., Ghosh, S., Iskand, I., Kossin, J., and Lewis, S. (2023). Climate Change 2021—The Physical Science Basis: Working Group I Contribution to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press. [1st ed.].

2. NCEI (2024, April 22). Global Drought Narrative; NOAA National Centers for Environmental Information, Available online: https://www.ncei.noaa.gov/access/monitoring/monthly-report/global-drought/202311.

3. Seasonal drought prediction: Advances, challenges, and future prospects;Hao;Rev. Geophys.,2018

4. Luo, Q., Xie, H., Chen, Z., Ma, Y., Yang, H., Yang, B., and Ma, Y. (2023). Morphology, photosynthetic physiology and biochemistry of nine herbaceous plants under water stress. Front. Plant Sci., 14.

5. Morphological, physiochemical and antioxidant responses of Maclura pomifera to drought stress;Khaleghi;Sci. Rep.,2019

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