Effect of sulfur and boron fertilization to soybean on its productivity and nutritional quality in soils of North-Western India

Soybean (Glycine max L.) is a leguminous crop with greater sensitivity to sulfur (S) and boron (B) deficiency. Therefore, the field study was conducted with three levels of S i.e. S0: 0, S37.5:37.5 and S50: 50 kg S ha−1 and four levels of B i.e. B0:0, B1.25:1.25, B2.5: 2.5 and B5.0:5.0 kg B ha−1 for improving yield and nutritional quality of soybean. The results indicated that with sole application of 50 kg S ha−1 and 2.5 kg B ha−1 the grain yield increased from 15.34 to 17.95 q ha−1 and 16.02 to 17.49 q ha−1 with increase of 17.0 and 9.2% over control respectively. The combined fertilization with 50 kg S + 2.5 kg B ha−1 increased grain yield to maximum i.e. 18.60 q ha−1 that was at par with application of 50 kg S + 1.25 kg B ha−1. The combined fertilization with 50 kg S + 2.5 kg B ha−1 also resulted in maximum S (8.28 kg ha−1) and B accumulation (51.3 g ha−1) in grains of soybean. Similar was the trend of S and B accumulation in straw of soybean. The apparent recovery efficiency (ARE), and mobilization efficiency index (MEI) of S and B i. were maximum with sole application of 50 kg S ha−1 and 2.5 kg B ha−1. Therefore combined fertilization with 50 kg S + 1.25 kg B ha−1 improved the yield and net return, B: C ratio and so could be considered as the most efficient for soybean.

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Journal
Journal of Plant Nutrition
Published
2026-09-17
DOI
https://doi.org/10.1080/01904167.2026.2734548
Primary Topic
Plant Micronutrient Interactions and Effects
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article

Effect of sulfur and boron fertilization to soybean on its productivity and nutritional quality in soils of North-Western India

Vivek Sharma, Prabhjot Singh, Vicky Singh, Mehakpreet Kaur et al.
Journal of Plant Nutrition
Plant Micronutrient Interactions and Effects
article

Effect of sulfur and boron fertilization to soybean on its productivity and nutritional quality in soils of North-Western India

Vivek Sharma, Prabhjot Singh, Vicky Singh, Mehakpreet Kaur, Manmeet Kaur, Janpriya Kaur, Sanjib K. Behera
article en

Abstract

Soybean (Glycine max L.) is a leguminous crop with greater sensitivity to sulfur (S) and boron (B) deficiency. Therefore, the field study was conducted with three levels of S i.e. S0: 0, S37.5:37.5 and S50: 50 kg S ha−1 and four levels of B i.e. B0:0, B1.25:1.25, B2.5: 2.5 and B5.0:5.0 kg B ha−1 for improving yield and nutritional quality of soybean. The results indicated that with sole application of 50 kg S ha−1 and 2.5 kg B ha−1 the grain yield increased from 15.34 to 17.95 q ha−1 and 16.02 to 17.49 q ha−1 with increase of 17.0 and 9.2% over control respectively. The combined fertilization with 50 kg S + 2.5 kg B ha−1 increased grain yield to maximum i.e. 18.60 q ha−1 that was at par with application of 50 kg S + 1.25 kg B ha−1. The combined fertilization with 50 kg S + 2.5 kg B ha−1 also resulted in maximum S (8.28 kg ha−1) and B accumulation (51.3 g ha−1) in grains of soybean. Similar was the trend of S and B accumulation in straw of soybean. The apparent recovery efficiency (ARE), and mobilization efficiency index (MEI) of S and B i. were maximum with sole application of 50 kg S ha−1 and 2.5 kg B ha−1. Therefore combined fertilization with 50 kg S + 1.25 kg B ha−1 improved the yield and net return, B: C ratio and so could be considered as the most efficient for soybean.

Journal of Plant Nutrition
Indian Institute of Soil Science (IN), Punjab Agricultural University (IN)
Zero hunger
Openalex Percentile: Top 13%
Plant Micronutrient Interactions and Effects
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Effect of sulfur and boron fertilization to soybean on its productivity and nutritional quality in soils of North-Western India — Vivek Sharma, Prabhjot Singh, et al. · Journal of Plant Nutrition (2026) | TGRS Research Map | TGRS