Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies

Солевой стресс у пшеницы (Triticum aestivum L.) в условиях меняющегося климата: стратегии адаптации и управления
Ayman El Sabagh, Mohammad Sohidul Islam, Milan Skalický, Muhammad Ali Raza, Kulvir Singh, Mohammad Anwar Hossain, Akbar Hossain, Wajid Mahboob, Muhammad Aamir Iqbal, Disna Ratnasekera, Rajesh Kumar Singhal, Sharif Ahmed, Arpna Kumari, Allah Wasaya, Oksana Sytar, Marián Brestič, Fatih Çığ, Murat Erman, Muhammad Habib ur Rahman, Najeeb Ullah, Adnan Arshad
2021-07-08

changing climatephysiological and molecular adaptationsalinity mitigation strategiessalinity stresswheat production
Wheat constitutes pivotal position for ensuring food and nutritional security; however, rapidly rising soil and water salinity pose a serious threat to its production globally. Salinity stress negatively affects the growth and development of wheat leading to diminished grain yield and quality. Wheat plants utilize a range of physiological biochemical and molecular mechanisms to adapt under salinity stress at the cell, tissue as well as whole plant levels to optimize the growth, and yield by off-setting the adverse effects of saline environment. Recently, various adaptation and management strategies have been developed to reduce the deleterious effects of salinity stress to maximize the production and nutritional quality of wheat. This review emphasizes and synthesizes the deleterious effects of salinity stress on wheat yield and quality along with highlighting the adaptation and mitigation strategies for sustainable wheat production to ensure food security of skyrocketing population under changing climate.
1
Recent adaptation and management strategies aim to mitigate salinity damage and maximize wheat production and nutritional quality.
2
Rising soil and water salinity threatens global wheat production by impairing plant growth and development.
3
Salinity stress reduces wheat grain yield and quality, creating risks for food and nutritional security.
4
Sustainable salinity management is increasingly important for maintaining wheat production and food security under climate change.
5
Wheat adapts to salinity through coordinated physiological, biochemical, and molecular mechanisms at cellular, tissue, and whole-plant levels.

Wheat (Triticum aestivum L.) production under changing-climate soil and water salinity

the effects of salinity stress on wheat growth, development, yield, and nutritional quality, together with physiological, biochemical, and molecular adaptation and management strategies

Publication Details
Publication Date
2021-07-08
Journal
Publisher
ISSN
Cited by
388
Access Type
Author Information
Authors
Ayman El Sabagh
Mohammad Sohidul Islam
Milan Skalický
Muhammad Ali Raza
Kulvir Singh
Mohammad Anwar Hossain
Akbar Hossain
Wajid Mahboob
Muhammad Aamir Iqbal
Disna Ratnasekera
Rajesh Kumar Singhal
Sharif Ahmed
Arpna Kumari
Allah Wasaya
Oksana Sytar
Marián Brestič
Fatih Çığ
Murat Erman
Muhammad Habib ur Rahman
Najeeb Ullah
Adnan Arshad
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%