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ISSN Approved Journal | | IMPACT FACTOR 8.16 | | eISSN: 2582-5542 | |  Free Crossref DOI 

Fast Publication within 2 days | | Low Article Processing Charges | | Peer Reviewed and Referred Journal

Research and review articles are invited for publication in September 2026 (Volume 27, Issue 3) Submit Paper

Optimizing iron and zinc nutrition in deep-water culture and nutrient film technique enhances growth performance and nutritional Quality of Tomato

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  • Optimizing iron and zinc nutrition in deep-water culture and nutrient film technique enhances growth performance and nutritional Quality of Tomato

Sara Aslam 1, Saleem Ullah 2 and Aimal Khan 3, *

1 Department of Biological Science and Technology, China Medical University, Taichung, Taiwan.
2 Department of Agricultural Chemistry and Biochemistry, The University of Agriculture Peshawar, Peshawar, KP 25130, Pakistan.
3 Graduate Institute of Nutrition, China Medical University, Taichung, Taiwan.

Research Article

World Journal of Biology Pharmacy and Health Sciences, 2026, 25(03), 027-038

Article DOI: 10.30574/wjbphs.2026.25.3.0129

DOI url: https://doi.org/10.30574/wjbphs.2026.25.3.0129

Received on 17 January 2026; revised on 02 March 2026; accepted on 04 March 2026

This study evaluated the effect of two hydroponic techniques namely Deep-Water Culture (DWC) and Nutrient Film Technique (NFT) in combination with varying concentrations of Fe and Zn (5, 10, 15, and 20 ppm) on the growth and biochemical composition of the tomato cultivar Reo Grande. Growth parameters including plant height, number of leaves, branches, and fruits were maximized at 10 ppm (59.8 cm, 129.0, 37.0, and 29.0 per plant, respectively), while the number of buds per plant (27.0) was highest at 15 ppm of Fe and Zn in the DWC system compared to NFT. Proximate composition of plant parts (green leaves, diseased leaves, and fruits) showed higher values in DWC, with notable increases in moisture (18.96%), crude protein (9.4%), crude fiber (8.24%), crude fat (4.31%), ash (4.89%), and nitrogen-free extract (84.62%). Similarly, mineral analysis revealed that Na (109 mg/kg), K (668.25 mg/kg), Ca (186 mg/kg), Mg (217.24 mg/kg), P (385.21 mg/kg), Ni (0.49 mg/kg), Fe (5.58 mg/kg), Zn (3.75 mg/kg), Co (21.45 mg/kg), Cu (1.41 mg/kg), and Mn (1.41 mg/kg) were generally higher in fruits, followed by diseased leaves and green leaves, in the DWC system. The effects of nutrient concentration, plant part, and their interaction were significant in most cases (P<0.05). Overall, the results demonstrated that the DWC system, particularly at 10 and 15 ppm concentrations of Fe and Zn, had a profound influence on the growth and biochemical composition of Reo Grande tomatoes, highlighting its potential for optimizing hydroponic cultivation practices. 

Hydroponics; Deep-Water Culture (DWC); Nutrient Film Technique (NFT); Micronutrients (Fe and Zn); Solanum lycopersicum

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Sara Aslam, Saleem Ullah and Aimal Khan. Optimizing iron and zinc nutrition in deep-water culture and nutrient film technique enhances growth performance and nutritional Quality of Tomato. World Journal of Biology Pharmacy and Health Sciences, 2026, 25(03), 027-038. Article DOI: https://doi.org/10.30574/wjbphs.2026.25.3.0129

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