4.5 Article

Foliar spraying of Mn with addition of Si increases phenolic compound, photosynthetic efficiency, productivity and the protein content of the soybean crop

期刊

JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION
卷 22, 期 2, 页码 1894-1903

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SPRINGER INT PUBL AG
DOI: 10.1007/s42729-022-00780-5

关键词

Plant nutrition; Glycine max; Beneficial element; Nutritional stress; Abiotic stress

资金

  1. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior-Brasil (CAPES) [001]

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This study evaluated the effects of manganese and silicon added to the foliar spray solution on the physiological aspects, productivity, and protein content of manganese-deficient soybean crops. The results showed that the optimal concentrations of manganese and silicon improved the growth and yield of soybean crops.
The present study evaluated whether manganese (Mn) combined with silicon (Si) added to the foliar spray solution favors the physiological aspects, productivity, and protein content of grains in Mn-deficient soybean crops. The experiment was carried out to test four concentrations of Mn (0.00, 0.29, 0.58, and 0.87 g L-1) as chelate with added Si (0.48 g L-1) as potassium silicate and without Si (control), following a 4 x 2 factorial scheme, arranged as randomized block design with five replications. The treatments were applied via foliar in the V6, V8, R1, and R2 phenological stages of the soybean crop. Soybean plants in the control group demonstrated deficiency symptoms such as physiological damage. The beneficials effects of Si on soybean crops it was due by reduction of oxidative stress, due to the increase in the content of the compound antioxidant phenol (9%), causing a decrease in the rate of cell leakage. This mechanism increased the relative chlorophyll index (6%) and the Fv/Fm, thus increasing leaf area, shoot dry mass, productivity (7%), and protein content (7%) in optimal concentration of Mn. The foliar spraying of optimal concentrations of Mn associated with Si is a promising way to improve the efficiency of soybean crops and to meet the nutritional demand for Mn.

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