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Differential physiological and biochemical responses in oil palm seedlings exposed to single and combined flooding–salinity stress


Citation

Kamarul Zaman, Munirah Adibah and Mie, Kua Jay and Jemuladin@jamaludin, Muhammad Amirul and Shaharuddin, Noor Azmi and Mohd Sobri, Mohamad Zulfazli and Abdullah, Siti Nor Akmar and Mohd Amin, Adibah and Suraninpong, Potjamarn and Mohamad Azzeme, Azzreena (2026) Differential physiological and biochemical responses in oil palm seedlings exposed to single and combined flooding–salinity stress. BioResources, 21 (3). pp. 5931-5953. ISSN 1930-2126

Abstract

Increases in temperature, rainfall, and sea level associated with climate change have intensified flooding and saltwater intrusion, thereby posing a growing threat to oil palm cultivation. To evaluate the effects of these environmental stressors, 12-month-old oil palm seedlings were subjected to control, flooding, salinity, and combined flooding and salinity treatments. Physiological and biochemical parameters were measured, including total chlorophyll, antioxidant enzyme activities, lipid peroxidation, and proline content. Phytochemical profiles, such as total phenolics, flavonoids, alkaloids, terpenoids, and antioxidant activity, were also assessed. Combined stress caused the most severe reductions in chlorophyll and phytochemicals, with increased lipid peroxidation and visible symptoms such as leaf yellowing and adventitious root formation. Proline accumulation was markedly higher under combined stress, suggesting a protective role. In contrast, individual stress treatments induced antioxidant enzyme activity, contributing to reactive oxygen species mitigation. These findings highlight the distinct and synergistic impacts of flooding and salinity on oil palm seedling health. The results offer a foundation for identifying stress-resilient traits, which can support future breeding or management strategies to sustain oil palm productivity under changing climate conditions.


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Additional Metadata

Item Type: Article
Subject: Environmental Engineering
Subject: Bioengineering
Subject: Waste Management and Disposal
Divisions: Faculty of Agriculture
Faculty of Biotechnology and Biomolecular Sciences
Institute of Plantation Studies
DOI Number: https://doi.org/10.15376/biores.21.3.5931-5953
Publisher: North Carolina State University
Keywords: Combined stresses; Flooding; Oil palm; Physiological and biochemical responses; Salinity; Single stress
Sustainable Development Goals (SDGs): SDG 13: Climate Action, SDG 15: Life on Land, SDG 2: Zero Hunger
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 22 Jul 2026 09:21
Last Modified: 22 Jul 2026 09:21
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.15376/biores.21.3.5931-5953
URI: http://psasir.upm.edu.my/id/eprint/126298
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