Determination of optimal water requirement for sweet corn crop based on meteorological data and plant growth parameters


Citation

Noorellimia Mat Toridi, . and Muhammad Maleq Isqandar Nor Jalal, . and Aimrun Wayayok, . and Mohamed Azwan Mohamed Zawawi, . (2025) Determination of optimal water requirement for sweet corn crop based on meteorological data and plant growth parameters. Pertanika Journal of Science & Technology (Malaysia), 33 (2). pp. 599-623. ISSN 2231-8526

Abstract

Maize (Zea mays L.), or corn, is the world’s leading cereal crop and ranks third in importance after rice and wheat. It is a primary food source for humans and livestock and a raw material in various industries. To reduce dependence on corn imports, Malaysia has initiated large-scale local cultivation. However, the maize industry faces challenges from waterlogging and water scarcity due to the tropical climate, which causes droughts and floods, impacting maize production. This study aims to improve crop water requirement (CWR) estimations for maize using CROPWAT, considering growth stages and soil variability, and validate irrigation management strategies. Based on 30 years of climatic data from MetMalaysia, evapotranspiration (ETc) was estimated using CROPWAT V8. Experimental plots with four irrigation water application (IWA) treatments were used to validate ETc: T1 (50% ETc), T2 (75% ETc), T3 (100% ETc), and T4 (125% ETc). Crop growth parameters were assessed at four growth stages: plant height, stem diameter, shoot fresh weight, and kernel moisture. Results showed T4 (451.07 mm/season) had the highest growth rate and met all hybrid corn growth standards set by the Department of Agriculture, Ministry of Agricultural and Food Security (MAFS). In contrast, T3 (100% ETc) was insufficient for sweet corn, failing to meet several standards. Thus, T4 (125% ETc) proved the most effective IWA practice, particularly for areas within a 30 km radius of the Subang weather station.


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Abstract

Maize (Zea mays L.), or corn, is the world’s leading cereal crop and ranks third in importance after rice and wheat. It is a primary food source for humans and livestock and a raw material in various industries. To reduce dependence on corn imports, Malaysia has initiated large-scale local cultivation. However, the maize industry faces challenges from waterlogging and water scarcity due to the tropical climate, which causes droughts and floods, impacting maize production. This study aims to improve crop water requirement (CWR) estimations for maize using CROPWAT, considering growth stages and soil variability, and validate irrigation management strategies. Based on 30 years of climatic data from MetMalaysia, evapotranspiration (ETc) was estimated using CROPWAT V8. Experimental plots with four irrigation water application (IWA) treatments were used to validate ETc: T1 (50% ETc), T2 (75% ETc), T3 (100% ETc), and T4 (125% ETc). Crop growth parameters were assessed at four growth stages: plant height, stem diameter, shoot fresh weight, and kernel moisture. Results showed T4 (451.07 mm/season) had the highest growth rate and met all hybrid corn growth standards set by the Department of Agriculture, Ministry of Agricultural and Food Security (MAFS). In contrast, T3 (100% ETc) was insufficient for sweet corn, failing to meet several standards. Thus, T4 (125% ETc) proved the most effective IWA practice, particularly for areas within a 30 km radius of the Subang weather station.

Additional Metadata

[error in script]
Item Type: Article
AGROVOC Term: sweet corn
AGROVOC Term: maize
AGROVOC Term: irrigation management
AGROVOC Term: water requirements
AGROVOC Term: plant growth
AGROVOC Term: evapotranspiration
AGROVOC Term: tropical climate
AGROVOC Term: drought
AGROVOC Term: flooding
AGROVOC Term: crop yield
Geographical Term: Malaysia
Uncontrolled Keywords: Corn, crop water requirement, CROPWAT, evapotranspiration, growth parameters
Depositing User: Ms. Azariah Hashim
Date Deposited: 17 Aug 2026 03:58
Last Modified: 17 Aug 2026 03:58
URI: http://webagris.upm.edu.my/id/eprint/4362

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