Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves
Despite progressive reports on pharmacological properties in Gynura procumbens, many are overlooking the importance of agronomic requirements for high yields and phytochemical content that vary due to environmental variations. The study was carried out to examine the effects of nitrogen (N), potass...
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my.unimas.ir.333702021-04-01T08:55:07Z http://ir.unimas.my/id/eprint/33370/ Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves Mohamad Fhaizal, Mohamad Bukhori Muhd Kamal, Izzat Mohd Zuwairi, Saiman Nazia, Abdul Majid Hawa ZE, Jaafar Ali, Ghasemzadeh Uma Rani, Sinniah QD Chemistry QP Physiology S Agriculture (General) Despite progressive reports on pharmacological properties in Gynura procumbens, many are overlooking the importance of agronomic requirements for high yields and phytochemical content that vary due to environmental variations. The study was carried out to examine the effects of nitrogen (N), potassium (K), and evapotranspiration replacement (ER) on growth and phytochemical content. Treatments affected parameters significantly (p≤0.05) with a stronger effect on physiological and biochemical attributes (p≤0.0001). Highest and lowest yield of biomass and phytochemical content were observed under N0K30(70) and N90K0(25), respectively. Treatments interaction was highly significant (p≤0.0001) in Cond, TPrC, and TFC, (p≤0.05) in CF and PWP, and not significant (p>0.05) in Photo, TCC, and TPC. The 75% ER had significant (p≤0.05) output of biomass and phytochemical content. As ER decreased from 100 to 25%, the Photo and CF were reduced. Phytochemical content displayed a significant negative relationship with PWP. Caffeic acid, kaempferol, and ferulic acid demonstrated as lead compounds. Following this, there were correlations between phenolic biosynthesis-regulated gene and gene expressions such as PAL, CHS, and F3H primers. Universiti Putra Malaysia 2020 Article PeerReviewed text en http://ir.unimas.my/id/eprint/33370/1/Mohamad%20Bukhori.pdf Mohamad Fhaizal, Mohamad Bukhori and Muhd Kamal, Izzat and Mohd Zuwairi, Saiman and Nazia, Abdul Majid and Hawa ZE, Jaafar and Ali, Ghasemzadeh and Uma Rani, Sinniah (2020) Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves. PERTANIKA Journal of Tropical Agricultural Science, 43 (3). pp. 391-413. ISSN 2231-8542 http://www.pertanika.upm.edu.my/ |
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QD Chemistry QP Physiology S Agriculture (General) Mohamad Fhaizal, Mohamad Bukhori Muhd Kamal, Izzat Mohd Zuwairi, Saiman Nazia, Abdul Majid Hawa ZE, Jaafar Ali, Ghasemzadeh Uma Rani, Sinniah Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves |
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Despite progressive reports on pharmacological properties in Gynura procumbens, many are overlooking the importance of agronomic requirements for high yields and phytochemical content that vary due to environmental variations. The study was carried out to examine
the effects of nitrogen (N), potassium (K), and evapotranspiration replacement (ER) on growth and phytochemical content. Treatments affected parameters significantly (p≤0.05) with a stronger effect on physiological and biochemical attributes (p≤0.0001). Highest and lowest yield of biomass and phytochemical content were observed under N0K30(70) and N90K0(25), respectively. Treatments interaction was highly significant (p≤0.0001) in Cond, TPrC, and TFC, (p≤0.05) in CF and PWP, and not significant (p>0.05) in Photo,
TCC, and TPC. The 75% ER had significant (p≤0.05) output of biomass and phytochemical content. As ER decreased from 100 to 25%, the Photo and CF were reduced. Phytochemical content displayed a significant negative relationship with PWP. Caffeic acid, kaempferol,
and ferulic acid demonstrated as lead compounds. Following this, there were correlations between phenolic
biosynthesis-regulated gene and gene expressions such as PAL, CHS, and F3H primers. |
format |
Article |
author |
Mohamad Fhaizal, Mohamad Bukhori Muhd Kamal, Izzat Mohd Zuwairi, Saiman Nazia, Abdul Majid Hawa ZE, Jaafar Ali, Ghasemzadeh Uma Rani, Sinniah |
author_facet |
Mohamad Fhaizal, Mohamad Bukhori Muhd Kamal, Izzat Mohd Zuwairi, Saiman Nazia, Abdul Majid Hawa ZE, Jaafar Ali, Ghasemzadeh Uma Rani, Sinniah |
author_sort |
Mohamad Fhaizal, Mohamad Bukhori |
title |
Preliminary Study on the Effect of Nitrogen and Potassium
Fertilization, and Evapotranspiration Replacement Interaction
on Primary and Secondary Metabolites of Gynura procumbens
Leaves |
title_short |
Preliminary Study on the Effect of Nitrogen and Potassium
Fertilization, and Evapotranspiration Replacement Interaction
on Primary and Secondary Metabolites of Gynura procumbens
Leaves |
title_full |
Preliminary Study on the Effect of Nitrogen and Potassium
Fertilization, and Evapotranspiration Replacement Interaction
on Primary and Secondary Metabolites of Gynura procumbens
Leaves |
title_fullStr |
Preliminary Study on the Effect of Nitrogen and Potassium
Fertilization, and Evapotranspiration Replacement Interaction
on Primary and Secondary Metabolites of Gynura procumbens
Leaves |
title_full_unstemmed |
Preliminary Study on the Effect of Nitrogen and Potassium
Fertilization, and Evapotranspiration Replacement Interaction
on Primary and Secondary Metabolites of Gynura procumbens
Leaves |
title_sort |
preliminary study on the effect of nitrogen and potassium
fertilization, and evapotranspiration replacement interaction
on primary and secondary metabolites of gynura procumbens
leaves |
publisher |
Universiti Putra Malaysia |
publishDate |
2020 |
url |
http://ir.unimas.my/id/eprint/33370/1/Mohamad%20Bukhori.pdf http://ir.unimas.my/id/eprint/33370/ http://www.pertanika.upm.edu.my/ |
_version_ |
1696979536723312640 |