Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system
Basal stem rot disease (BSR) is known to be responsible for yield losses in oil palm plantations in South- east Asia. A balance nutrient in soil and leaf is known to improve the plant health and disease resistance. In order to observe how nitrogen (N), potassium (P) and phosphorus (K) content in soi...
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Malaysian Palm Oil Board (MPOB)
2020
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Online Access: | http://irep.iium.edu.my/83033/1/Nur%20Shuhada%20Tajudin%20-%20Quantifying%20Spatial%20Variability%20of%20Soil%20and%20Leaf%20Nitrogen%2C%20Phosphorous%20and%20Potassium%20of%20Basal%20Stem%20Rot%20Infected%20Oil%20Palms%20Using%20Geospatia.pdf http://irep.iium.edu.my/83033/ http://jopr.mpob.gov.my/wp-content/uploads/2020/09/joprv32sept2020-shuhada.pdf |
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my.iium.irep.830332020-09-25T08:25:52Z http://irep.iium.edu.my/83033/ Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system Muhamad Tajudin, Nur Shuhada Mohamed Hanafi Musa, Mohamed Hanafi Abu Seman, Idris Che Amri, Che Nurul Aini S Agriculture (General) Basal stem rot disease (BSR) is known to be responsible for yield losses in oil palm plantations in South- east Asia. A balance nutrient in soil and leaf is known to improve the plant health and disease resistance. In order to observe how nitrogen (N), potassium (P) and phosphorus (K) content in soil and leaf affect the BSR occurrence, a field study was conducted in infected blocks of oil palms at two different ages. Nutrients variability (N, P and K) were obtained, analysed and mapped using classical statistics and geospatial method. Correlated to BSR disease, total N and available P in soil were found to be high in both blocks. However, exchangeable K exhibited low level. Total N and available P in soil of Blocks 1 and 2, and N and P in leaves of Block 1 showed a significant association with the disease (p<0.01). The generated variability map and significant correlations revealed that imbalanced nutrient content occurred in the study area. This would be one of the causes that lead to the disease outbreak. Malaysian Palm Oil Board (MPOB) 2020-09 Article PeerReviewed application/pdf en http://irep.iium.edu.my/83033/1/Nur%20Shuhada%20Tajudin%20-%20Quantifying%20Spatial%20Variability%20of%20Soil%20and%20Leaf%20Nitrogen%2C%20Phosphorous%20and%20Potassium%20of%20Basal%20Stem%20Rot%20Infected%20Oil%20Palms%20Using%20Geospatia.pdf Muhamad Tajudin, Nur Shuhada and Mohamed Hanafi Musa, Mohamed Hanafi and Abu Seman, Idris and Che Amri, Che Nurul Aini (2020) Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system. Journal of Oil Palm Research, 32 (3). pp. 427-438. ISSN 1511-2780 http://jopr.mpob.gov.my/wp-content/uploads/2020/09/joprv32sept2020-shuhada.pdf 10.21894/jopr.2020.0047 |
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S Agriculture (General) Muhamad Tajudin, Nur Shuhada Mohamed Hanafi Musa, Mohamed Hanafi Abu Seman, Idris Che Amri, Che Nurul Aini Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
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Basal stem rot disease (BSR) is known to be responsible for yield losses in oil palm plantations in South- east Asia. A balance nutrient in soil and leaf is known to improve the plant health and disease resistance. In order to observe how nitrogen (N), potassium (P) and phosphorus (K) content in soil and leaf affect the BSR occurrence, a field study was conducted in infected blocks of oil palms at two different ages. Nutrients variability (N, P and K) were obtained, analysed and mapped using classical statistics and geospatial method. Correlated to BSR disease, total N and available P in soil were found to be high in both blocks. However, exchangeable K exhibited low level. Total N and available P in soil of Blocks 1 and 2, and N and P in leaves of Block 1 showed a significant association with the disease (p<0.01). The generated variability map and significant correlations revealed that imbalanced nutrient content occurred in the study area. This would be
one of the causes that lead to the disease outbreak. |
format |
Article |
author |
Muhamad Tajudin, Nur Shuhada Mohamed Hanafi Musa, Mohamed Hanafi Abu Seman, Idris Che Amri, Che Nurul Aini |
author_facet |
Muhamad Tajudin, Nur Shuhada Mohamed Hanafi Musa, Mohamed Hanafi Abu Seman, Idris Che Amri, Che Nurul Aini |
author_sort |
Muhamad Tajudin, Nur Shuhada |
title |
Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
title_short |
Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
title_full |
Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
title_fullStr |
Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
title_full_unstemmed |
Quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
title_sort |
quantifying spatial variability of soil and leaf nitrogen, phosphorous and potassium of basal stem rot infected oil palms using geospatial information system |
publisher |
Malaysian Palm Oil Board (MPOB) |
publishDate |
2020 |
url |
http://irep.iium.edu.my/83033/1/Nur%20Shuhada%20Tajudin%20-%20Quantifying%20Spatial%20Variability%20of%20Soil%20and%20Leaf%20Nitrogen%2C%20Phosphorous%20and%20Potassium%20of%20Basal%20Stem%20Rot%20Infected%20Oil%20Palms%20Using%20Geospatia.pdf http://irep.iium.edu.my/83033/ http://jopr.mpob.gov.my/wp-content/uploads/2020/09/joprv32sept2020-shuhada.pdf |
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