1、Effect of spraying with balanced nano fertilizer and boron on
ABSTRACT krit University, to study the effect of foliar application of balanced nano-fertilizer and boron on two hybrids of cabbage Brassica oleracea var. capitata L. The experiment included three factors, the first factor is three concentrations of balanced nano-fertilizer viz, 0, 20 and 30 g
2、Effect of Nano
Research into the impact of spraying balanced Nano-fertilizer and boron on the vegetative growth characteristics of two hybrids of the cabbage plant, Brassica oleracea var. capitata L., was...
3、Effect of boron spraying, potassium levels, and irrigation interval on
research aimed to quantify the impact of fertilizers, including boron and po assium, and irrigation intervals on cabbage. In 2021, two ir- igation intervals, 3 and 6 days were used in a field trial. Po as-sium fertilizer was applied at 0. 75 and 150 kg K ha-1. Boron was sprayed at 0. 50, and 100 mg B l-1 using boric acid. Th
Effect of foliar application of various micronutrients on yield and
Therefore, the present study was planned to assess the effect of foliar application of various micronutrients on yield and economics of cabbage crop in sandy clay loam soil of Varanasi district of Uttar Pradesh.
Soil and Foliar Nutrition of Calcium, Magnesium and Boron
An experiment was carried out to study the effect of soil and foliar application of calcium, magnesium and boron on growth, yield and quality of cabbage .The result revealed that application of calcium and boron as foliar spray and magnesium as soil application recorded the maximum plant height (37.12 cm), number of leaves per plant (32.66 ...
Effect of nano zinc and boron on growth and yield of cabbage
To find out the effect of nano zinc and boron on growth and yield of cabbage. The experiment was laid out in randomized block design with twelve treatments replicated thrice.
Effect of boron levels on growth and yield of Cabbage (cv
Abstract: A pot experiment was conducted to investigate the effect of B levels on growth, yield and yield components of cabbage during October 2004 to January 2005 in calcareous soils of Bangladesh. The genotype of cabbage was “KS Cross F 1 hybrid”, which is suitable for pot experiment.
Boron Toxicity and Deficiency in Agricultural Plants
Both boron deficiency and toxicity may have detrimental effects on yield of various agricultural plants. In addition to fertilization, growing varieties that are efficient in boron utilization were proposed to solve problems related to boron deficiency.
Effect of Nano
Research into the impact of spraying balanced Nano-fertilizer and boron on the vegetative growth characteristics of two hybrids of the cabbage plant, Brassica oleracea var. capitata L., was conducted during the 2021/9/1 agricultural season at the Horticultural Research Station and Landscape - Agriculture College - Tikrit University.
(PDF) Effect of boron spraying, potassium levels, and irrigation
Thus, this research aimed to quantify the impact of fertilizers, including boron and potassium, and irrigation intervals on cabbage.
The effects of boron fertilizer on cabbage (also known as kale) are primarily reflected in the following aspects:
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Promoting Growth: Boron is one of the essential micronutrients for plant growth and development, playing a critical role in root development, stem elongation, and leaf formation. Boron fertilizer can stimulate cell division and elongation in cabbage, accelerate growth rates, and increase yield.
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Enhancing Stress Resistance: Boron fertilizer improves a plant’s ability to withstand adverse environmental conditions, such as drought, low temperatures, and saline-alkaline soil. Under its influence, cabbage plants can better resist external stresses and maintain normal growth.
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Improving Quality: Boron fertilizer promotes the formation and development of cabbage heads, making them more compact and vibrant in color. Additionally, it enhances sugar accumulation, improving the taste and overall quality of cabbage.
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Promoting Flower Bud Differentiation: Boron fertilizer facilitates flower bud differentiation in cabbage, ensuring stable flowering periods and increasing flower quantity. This is particularly significant for cabbage reproduction and production.
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Boosting Disease Resistance: Boron fertilizer strengthens a plant’s disease resistance, reducing the incidence of pests and diseases. With its application, cabbage plants can better fend off pathogens and pests, minimizing pesticide use and lowering production costs.
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Enhancing Photosynthesis: Boron fertilizer improves photosynthetic efficiency in cabbage. As the foundation of plant growth, enhanced photosynthesis provides ample energy for cabbage development.
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Regulating Nutrient Uptake: Boron fertilizer balances the absorption of other nutrients, preventing imbalances caused by excess or deficiencies of certain elements.
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Promoting Reproductive Growth: Boron fertilizer supports reproductive growth in cabbage, increasing seed yield. It ensures plants complete their reproductive cycles smoothly, achieving stable and high yields.
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Delaying Senescence: Boron fertilizer slows down the aging process in cabbage, extending its usable lifespan. Plants can better resist the negative impacts of aging under its influence.
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Improving Drought Tolerance: Boron fertilizer enhances cabbage’s drought resistance, allowing it to maintain normal growth under dry conditions. This is beneficial for farmers in arid regions, improving crop resilience to drought.
boron fertilizer has multifaceted benefits for cabbage, including promoting growth, enhancing stress resistance, improving quality, facilitating flower bud differentiation, boosting disease resistance, enhancing photosynthesis, regulating nutrient uptake, supporting reproductive growth, delaying senescence, and improving drought tolerance. rational application of boron fertilizer is crucial for increasing cabbage yield and quality.

