Articles

Comparative Effects of Two Organic Fertilizers, Inorganic Fertilizer, and Their Integrated Application on Growth and Yield of Common Bean (Phaseolus vulgaris L.) at Kabul Condition

The sustainable management of soil fertility is essential for improving common bean (Phaseolus vulgaris L.) productivity under the semi-arid conditions of Afghanistan. This study evaluated the comparative effects of two organic fertilizers, inorganic fertilizer (NPK), and their integrated application on the growth and yield performance of common bean during the 2025 growing season at the Research Farm of the Faculty of Agriculture, Kabul University. The experiment was arranged in a Randomized Complete Block Design (RCBD) with six fertilizer treatments and three replications. Growth traits, yield components, grain yield, biological yield, and harvest index were analyzed using analysis of variance (ANOVA), and treatment means were separated by Tukey’s HSD test at the 5% probability level. Fertilizer treatments significantly influenced most growth and yield parameters. The integrated application of 50% OF-1 + 50% NPK (T5) consistently produced superior plant growth, increased yield components, and achieved the highest grain yield, biological yield, and harvest index compared with the sole application of organic or inorganic fertilizers and the unfertilized control. The improved performance of the integrated treatment was attributed to enhanced nutrient availability and more efficient nutrient utilization throughout the crop growth period. These findings demonstrate that integrated nutrient management is a sustainable and effective strategy for increasing common bean productivity under semi-arid agroecological conditions. Future studies should evaluate long-term effects of integrated nutrient management under diverse agroecological conditions.

Effects of Different Amount of Diammonium Phosphate (DAP) Fertilizer on Growth and Yield of Common Bean

This study evaluated the effects of different rates of diammonium phosphate fertilizer on the growth, yield, and yield components of common bean under field conditions at the Faculty of Agriculture Research Farm, Kabul University, during the 2025 growing season. The experiment was conducted using a randomized complete block design with three replications and four fertilizer treatments: 0 (control), 30, 60, and 90 kg ha⁻¹ of diammonium phosphate. Data were collected on vegetative growth traits, including plant height, number of branches, and number of leaves, as well as reproductive traits such as number of pods per plant, grains per pod, pod length, pod width, 100-seed weight, and grain yield. The data were analyzed using analysis of variance, and treatment means were separated using the least significant difference test at the 5% significance level. Fertilizer application significantly affected most growth and yield parameters. The application of 60 kg ha⁻¹ produced the greatest vegetative growth, recording the highest plant height (33.8 cm) and number of branches (4.47), while the unfertilized control produced the highest number of leaves (36.4). The application of 90 kg ha⁻¹ resulted in the highest reproductive performance, including number of pods per plant (12.33), grains per pod (4.00), pod size, 100-seed weight (66 g), and grain yield (1090 kg ha⁻¹). The findings indicate that moderate fertilizer application promotes vegetative growth, whereas a higher application rate maximizes reproductive development and grain yield. Therefore, applying 90 kg ha⁻¹ of diammonium phosphate is recommended to improve common bean productivity under agroecological conditions similar to those of the study area.

Effect of Different Levels of Urea on Growth, Yield, and Yield Attributes of Mustard under Kabul Agro-Climatic Conditions

Nitrogen is a key macronutrient that plays an essential role in plant growth, development, and yield formation in oilseed crops such as mustard (Brassica juncea L.). Proper nitrogen management is important for improving productivity while ensuring economic efficiency and environmental sustainability, particularly in low-input farming systems like those in Afghanistan. This study was conducted to assess the effect of different urea (nitrogen) levels on the growth, yield attributes, phenology, and grain yield of mustard under Kabul agro-climatic conditions. A field experiment was arranged with four treatments: T₁ (0 kg urea ha⁻¹), T₂ (60 kg urea ha⁻¹), T₃ (80 kg urea ha⁻¹), and T₄ (100 kg urea ha⁻¹) using a randomized design. Data were collected on plant height, number of branches per plant, number of pods per plant, phenological traits (flowering and maturity), and grain yield. The results showed that nitrogen application significantly improved vegetative growth and yield components of mustard. Increasing nitrogen levels enhanced plant height, number of branches, and pods per plant. Grain yield responded positively to nitrogen application, with the highest yield consistently obtained at 80 kg urea ha⁻¹. However, further increase in nitrogen above this level did not result in proportional yield improvement, indicating diminishing returns. Phenological traits such as days to flowering and maturity were not significantly affected by nitrogen levels. Overall, the study concludes that moderate nitrogen application optimizes growth and yield of mustard without affecting its growth duration. The application of 80 kg urea ha⁻¹ is recommended as the optimal rate for mustard production under Kabul conditions, as it improves productivity, enhances nitrogen use efficiency, reduces production costs, and supports sustainable agriculture.

Comparative Evaluation of Yield and Agronomic Traits of Four Winter Wheat (Triticum aestivum L.) Varieties under the Agro-Climatic Conditions of Char Asiab District, Kabul, Afghanistan

Winter wheat (Triticum aestivum L.) is a staple cereal crops that provides income and support the livelihoods of local farmers of Afghanistan, while also playing a vital role in food security. It is a major source of carbohydrates and proteins for human consumption, while its straw is commonly used as livestock feed in Afghanistan. yet productivity remains below potential due to limited availability of locally adapted improved varieties. This study evaluated the agronomic performance, yield, and yield-related traits of four winter wheat varieties (Sohla 02, Sohla 018, Chont, and local variety Riza Gul) under irrigated conditions in Char Asiab District, Kabul, during the 2024–2025 growing season. Using a Randomized Complete Block Design with three replications, the data was analyzed with Statistical Tools for Agricultural Research (STAR 2.0.1) software. significant varietal differences were observed for most traits. Result showed that Sohla 018 produced the highest grain yield (4,866.67 kg ha⁻¹), 1000-grain weight (44.36 g), and grains per spike (51.11). While Sohla 02 showed superior vegetative growth, this did not translate to higher yield. The findings identify Sohla 018 as the most suitable variety for cultivation in Char Asiab District, with potential to improve wheat productivity and contribute to food security in Afghanistan.