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Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies
by
Hossain, Akbar
, Ali Raza, Muhammad
, Brestic, Marian
, Wasaya, Allah
, EL Sabagh, Ayman
, Erman, Murat
, Iqbal, Muhammad Aamir
, Sytar, Oksana
, Ahmed, Sharif
, Ratnasekera, Disna
, Habib Ur Rahman, Muhammad
, Ullah, Najeeb
, Skalicky, Milan
, Singh, Kulvir
, Singhal, Rajesh Kumar
, Kumari, Arpna
, Mahboob, Wajid
, ÇIG, Fatih
, Arshad, Adnan
, Islam, Mohammad Sohidul
, Anwar Hossain, Mohammad
in
Abiotic stress
/ Adaptation
/ Agricultural production
/ agronomy
/ antioxidant defense
/ Cereals
/ climate
/ Climate change
/ Crop production
/ Crop yield
/ Crops
/ Dietary minerals
/ Food security
/ Food supply
/ grain yield
/ growth and development
/ Integrated approach
/ Molecular modelling
/ Nutritive value
/ physiological and biochemical mechanisms
/ Physiology
/ Plant growth
/ Productivity
/ Proteins
/ Saline environments
/ Salinity
/ Salinity effects
/ salinity stress
/ Salt
/ salt stress
/ soil
/ stress tolerance
/ Sustainable production
/ Toxicity
/ Triticum aestivum
/ Water
/ Water salinity
/ Wheat
2021
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Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies
by
Hossain, Akbar
, Ali Raza, Muhammad
, Brestic, Marian
, Wasaya, Allah
, EL Sabagh, Ayman
, Erman, Murat
, Iqbal, Muhammad Aamir
, Sytar, Oksana
, Ahmed, Sharif
, Ratnasekera, Disna
, Habib Ur Rahman, Muhammad
, Ullah, Najeeb
, Skalicky, Milan
, Singh, Kulvir
, Singhal, Rajesh Kumar
, Kumari, Arpna
, Mahboob, Wajid
, ÇIG, Fatih
, Arshad, Adnan
, Islam, Mohammad Sohidul
, Anwar Hossain, Mohammad
in
Abiotic stress
/ Adaptation
/ Agricultural production
/ agronomy
/ antioxidant defense
/ Cereals
/ climate
/ Climate change
/ Crop production
/ Crop yield
/ Crops
/ Dietary minerals
/ Food security
/ Food supply
/ grain yield
/ growth and development
/ Integrated approach
/ Molecular modelling
/ Nutritive value
/ physiological and biochemical mechanisms
/ Physiology
/ Plant growth
/ Productivity
/ Proteins
/ Saline environments
/ Salinity
/ Salinity effects
/ salinity stress
/ Salt
/ salt stress
/ soil
/ stress tolerance
/ Sustainable production
/ Toxicity
/ Triticum aestivum
/ Water
/ Water salinity
/ Wheat
2021
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Do you wish to request the book?
Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies
by
Hossain, Akbar
, Ali Raza, Muhammad
, Brestic, Marian
, Wasaya, Allah
, EL Sabagh, Ayman
, Erman, Murat
, Iqbal, Muhammad Aamir
, Sytar, Oksana
, Ahmed, Sharif
, Ratnasekera, Disna
, Habib Ur Rahman, Muhammad
, Ullah, Najeeb
, Skalicky, Milan
, Singh, Kulvir
, Singhal, Rajesh Kumar
, Kumari, Arpna
, Mahboob, Wajid
, ÇIG, Fatih
, Arshad, Adnan
, Islam, Mohammad Sohidul
, Anwar Hossain, Mohammad
in
Abiotic stress
/ Adaptation
/ Agricultural production
/ agronomy
/ antioxidant defense
/ Cereals
/ climate
/ Climate change
/ Crop production
/ Crop yield
/ Crops
/ Dietary minerals
/ Food security
/ Food supply
/ grain yield
/ growth and development
/ Integrated approach
/ Molecular modelling
/ Nutritive value
/ physiological and biochemical mechanisms
/ Physiology
/ Plant growth
/ Productivity
/ Proteins
/ Saline environments
/ Salinity
/ Salinity effects
/ salinity stress
/ Salt
/ salt stress
/ soil
/ stress tolerance
/ Sustainable production
/ Toxicity
/ Triticum aestivum
/ Water
/ Water salinity
/ Wheat
2021
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Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies
Journal Article
Salinity Stress in Wheat (Triticum aestivum L.) in the Changing Climate: Adaptation and Management Strategies
2021
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Overview
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.
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