Plant Physiological Performances, Plant Growth, Grain Yield and Methane Emission of Rice (Oryza Sativa L.) in Response to Water Management as Adaptation Strategy for Climate Change
Mohd Aziz Rashid, Fauzi Jumat, Mohammad Hariz Bin Abdul Rahman, Mohd Saufi Bin Bastami, Maisarah Binti Mohamad Saad, Siti Norsuha Binti Misman, Chong Tet Vun, Norlida Binti Mohamed Hamim, Shaidatul Azdawiyah Bt Abdul Talib
Asian Journal of Agricultural and Horticultural Research · pp. 68–79 · Published 24 Feb 2024
10.9734/ajahr/2024/v11i1306Abstract
Continuously flooded rice systems are a major contributor to the greenhouse gases (GHG) emissions in the agriculture sector in Malaysia. Intermittent irrigation has been recommended to replace conventional rice water management to save water and reduce GHG emissions without compromising rice yields. This study was conducted in two growing seasons at Malaysia’s largest rice granary area to determine the effectiveness of different water management practices on conserving water, mitigating GHG and maintaining rice grain yields. Three water management treatments were continuous flooding (CF), saturated and wet conditions from transplanting to heading and flooding until maturity (S-F) and continuous saturated and wet conditions (CS). The results showed that S-F and CS reduced water inputs between 15.0-16.8% and 32.0-34.0% as compared to CF, respectively. Water-saving treatments mostly did not significantly affect the plant's physiological performance, plant growth parameters, growth rate, grain yield and yield parameters. The results indicated that soil saturated and wet conditions provided adequate soil moisture content for the plant’s requirement similar to flooding conditions. Maintaining soil at saturated and wet conditions during the vegetative stage reduced 24.18-39.76% of methane emissions. However, maintaining soil at saturated and wet conditions throughout the growing season reduced 34.52-55.08% of methane emissions. In conclusion, intermittent irrigation could be an effective adaptation technique for simultaneously saving water and mitigating GHG while maintaining high rice grain yields in rice cultivation systems.
Cited by 5
Mohd Aziz Rashid, Mohd Saufi Bastami, Nurul Ain Abu Bakar · Journal of Lifestyle and SDGs Review · 2024
Nurul Ain Abu Bakar, Mohd Saufi Bastami, Muhammad Hariz Abdul Rahman · Journal of Cleaner Production · 2025
Gerson Lübke Buss, Jonas Wesz, Walkyria Bueno Scivittaro · Journal of Environmental Management · 2026
Abd Ur Rafy, Muhammad Hannan, Mesharch Mohammed · European Journal of Ecology, Biology and Agriculture · 2025
Muhammad Ashraful Habib, Mohammad Golam Azam, Md. Ashraful Haque · Scientific Reports · 2024
Related research
- Inhibitory Effects of Phenolic Monomers on Methanogenesis in Anaerobic Digestion — shares topic coverage
- A Preliminary Estimation on Carbon Footprint of Raw Water from the Reservoirs for Domestic Use in Taiwan — shares topic coverage
- The Influence of Ginger (Zingiber Officinale) on In vitro Rumen Fermentation Patterns — shares topic coverage
- In vitro Effect of Increasing Levels of Natuzyme® on Fermentation Responses of Corn Silage Based Diet — shares topic coverage
- Regional Energy Play Creates Potential Global Impact — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
5
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.