Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)

Rice is a staple food and one of the most crucial crops globally, providing sustenance for more than half of the world's population. Climate change has a crucial impact on the agricultural sector, particularly rice cultivation, due to the increase in abiotic stress incidences. Salinity is one o...

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Main Authors: Sazali, Syafiqah Alia, Abd Aziz Shamsudin, Noraziyah, Rafii, Mohd Y., Ab Razak, Mohd Shahril Firdaus, Yunus, Muhammad Fahmi, Che Yah, Fatien Najwa, Ahmad, Firdaus, Salleh, Mohd Syahmi
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Published: Horizon E-Publishing Group 2023
Online Access:http://psasir.upm.edu.my/id/eprint/108096/
https://horizonepublishing.com/journals/index.php/PST/article/view/2536
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.1080962024-09-24T07:44:26Z http://psasir.upm.edu.my/id/eprint/108096/ Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.) Sazali, Syafiqah Alia Abd Aziz Shamsudin, Noraziyah Rafii, Mohd Y. Ab Razak, Mohd Shahril Firdaus Yunus, Muhammad Fahmi Che Yah, Fatien Najwa Ahmad, Firdaus Salleh, Mohd Syahmi Rice is a staple food and one of the most crucial crops globally, providing sustenance for more than half of the world's population. Climate change has a crucial impact on the agricultural sector, particularly rice cultivation, due to the increase in abiotic stress incidences. Salinity is one of the most severe abiotic stresses on rice production globally. Salt stress significantly reduces growth performance, affecting various metabolic and physiological processes in rice. Submergence is another type of abiotic stress affecting rice growth and yield. Recently, a newly emerged abiotic stress called saline submergence may also jeopardize rice production. Seawater intrusion into rice fields located nearby coastal areas may cause saline flash floods, especially during monsoon season. Rice cultivated in coastal areas is prone to saline-submergence stress, leading to a significantly lower yield. Although Sub1 and Saltol QTLs are widely used in developing rice cultivars with submergence and salinity tolerance, there is a lack of studies conducted to explore the potential performance of breeding lines with Sub1 and Saltol QTLs under saline-submergence stress. It has been hypothesized that the introgression of Sub1 and Saltol QTLs into elite rice cultivars might result in potentially tolerant breeding lines to saline-submergence stress. Further breeding projects, however, need to be conducted to prove this postulation. The present mini-review deals with genetics, physiological mechanisms, and breeding achievements for submergence and salinity-tolerant rice while at the same time highlighting saline-submergence as an emerging type of abiotic stress in rice cultivation. Horizon E-Publishing Group 2023 Article PeerReviewed Sazali, Syafiqah Alia and Abd Aziz Shamsudin, Noraziyah and Rafii, Mohd Y. and Ab Razak, Mohd Shahril Firdaus and Yunus, Muhammad Fahmi and Che Yah, Fatien Najwa and Ahmad, Firdaus and Salleh, Mohd Syahmi (2023) Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.). Plant Science Today, 10 (spec.2). 235 -242. ISSN 2348-1900 https://horizonepublishing.com/journals/index.php/PST/article/view/2536 10.14719/pst.2536
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description Rice is a staple food and one of the most crucial crops globally, providing sustenance for more than half of the world's population. Climate change has a crucial impact on the agricultural sector, particularly rice cultivation, due to the increase in abiotic stress incidences. Salinity is one of the most severe abiotic stresses on rice production globally. Salt stress significantly reduces growth performance, affecting various metabolic and physiological processes in rice. Submergence is another type of abiotic stress affecting rice growth and yield. Recently, a newly emerged abiotic stress called saline submergence may also jeopardize rice production. Seawater intrusion into rice fields located nearby coastal areas may cause saline flash floods, especially during monsoon season. Rice cultivated in coastal areas is prone to saline-submergence stress, leading to a significantly lower yield. Although Sub1 and Saltol QTLs are widely used in developing rice cultivars with submergence and salinity tolerance, there is a lack of studies conducted to explore the potential performance of breeding lines with Sub1 and Saltol QTLs under saline-submergence stress. It has been hypothesized that the introgression of Sub1 and Saltol QTLs into elite rice cultivars might result in potentially tolerant breeding lines to saline-submergence stress. Further breeding projects, however, need to be conducted to prove this postulation. The present mini-review deals with genetics, physiological mechanisms, and breeding achievements for submergence and salinity-tolerant rice while at the same time highlighting saline-submergence as an emerging type of abiotic stress in rice cultivation.
format Article
author Sazali, Syafiqah Alia
Abd Aziz Shamsudin, Noraziyah
Rafii, Mohd Y.
Ab Razak, Mohd Shahril Firdaus
Yunus, Muhammad Fahmi
Che Yah, Fatien Najwa
Ahmad, Firdaus
Salleh, Mohd Syahmi
spellingShingle Sazali, Syafiqah Alia
Abd Aziz Shamsudin, Noraziyah
Rafii, Mohd Y.
Ab Razak, Mohd Shahril Firdaus
Yunus, Muhammad Fahmi
Che Yah, Fatien Najwa
Ahmad, Firdaus
Salleh, Mohd Syahmi
Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
author_facet Sazali, Syafiqah Alia
Abd Aziz Shamsudin, Noraziyah
Rafii, Mohd Y.
Ab Razak, Mohd Shahril Firdaus
Yunus, Muhammad Fahmi
Che Yah, Fatien Najwa
Ahmad, Firdaus
Salleh, Mohd Syahmi
author_sort Sazali, Syafiqah Alia
title Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
title_short Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
title_full Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
title_fullStr Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
title_full_unstemmed Genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (Oryza sativa L.)
title_sort genetics, physiological mechanism and breeding for tolerance against submergence, salinity, and saline-submergence stress in rice (oryza sativa l.)
publisher Horizon E-Publishing Group
publishDate 2023
url http://psasir.upm.edu.my/id/eprint/108096/
https://horizonepublishing.com/journals/index.php/PST/article/view/2536
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