Despite the recognised importance of green onion as a nutritionally and medicinally valuable crop in Iraq, its production heavily depends on chemical fertilisers, which degrade soil fertility and environmental quality. Although organic manure, biofertilizers, and micronutrients such as boron individually improve soil health and crop performance, limited information is available on their integrated application under local agro-ecological conditions. In this regard, an experiment was conducted during the 2024-25 fall season at the fields of College of Agricultural Engineering Sciences, University of Baghdad, Iraq to study the effects of integrated nutrients managements on growth, yield and quality of bunching onion (Allium fistulosum), under split plot within randomized completed blocks design (RCBD) with three replications by using three factors the first was pigeon manure as main plot factor at three levels (0, 5, 10 t/ha) mixed with field soil before planting. While the second was foliar spraying of liquid biofertilizer (EM AGRO) applied at (0, 1, 2 mL/L) and the third was boron at two levels (0, 50 mg/L) considered as sub-plot factors. The results revealed that the three-way interaction treatment of pigeon manure at a concentration of (10 t/ha liquid biofertilizer (EM AGRO) at a concentration of (2 mL/L), and foliar application of boron at a concentration of (50 mg/L) T2E2B1 significantly outperformed other treatments in plant height and leaf area, yielding (58.93 cm and 15.14 dm²) respectively. Furthermore, the treatment also outperformed in the qualitative indicators of onion bulbs with higher vitamin C, tannins, reduced DPPH, and total phenols, and yielding 16.90 mg/100g, 48.87 mg/100g, 0.49 mg/100g, and 42.67 mg/100g, respectively. In contrast, the treatment of pigeon manure at a concentration of (5 t/ha) and liquid biofertilizer (EM AGRO) at a concentration of (2 mL/L) was superior. The application of 50 mg/L boron (T1E2B1) with a boron spray at a concentration of 50 mg/L significantly resulted in a higher yield of 83.3 t/ha.
Background Green synthesis of silver nanoparticles (AgNPs) using plant extracts has gained increasing attention as an environmentally friendly alternative to conventional chemical methods.
The present study was conducted to determine the effect of different concentrations of putrescine and spermidine at all stages of regeneration (callogenesis, somatic embryos multiplication, germination and rooting)) of date palm cultivar Barhee. Shoot tips were eradicated from 2-3 years old offshoots, surface sterilized and inoculated onto Murashiege and Skoog, 1962 (MS) medium supplemented with 20 mg/L 2,4-D and 3 mg/L N6-2-isopentyl adenine (2ip). Primary callus was obtained after 24 weeks on the nutrient medium. Calli were then transferred onto fresh MS medium containing 0.0, 50, 100 or 150 mg/L of putrescine or spermidine individually. Results were recorded after 12 weeks. A significant increase in embryonic callus fresh weights reached
... Show MoreThis research set out to provide a faster, easier, and more efficient process for nanoparticle (NP) synthesis of aluminum oxide NPs preparation by microwave irradiation, using plant extracts separately and in the same way (tea, coffee, rosemary), which is an easy-to-use and inexpensive method. The structural properties were investigated by X-ray diffractometer analysis technique (XRD). The X-ray analysis shows the structure has a polycrystalline nature with a hexagonal phase. The optical properties were studied using ultraviolet visible (UV-Vis) spectrometer, where the energy gap was determined. The surface morphology properties of the prepared aluminum NPs were examined by atomic force microscope (AFM). The Fourier transform infra
... Show MorePortland cement is considered the most involved product in environmental pollution. It is responsible for about 10% of global CO2 emissions [1]. Limestone dust is a by-product of limestone plants and it is produced in thousands of tons annually as waste material. To fulfill sustainability requirements, concrete production is recommended to reduce Portland cement usage with the use of alternative or waste materials. The production of sustainable high strength concrete by using nanomaterials is one of the aims of this study. Limestone dust in 12, 16, and 20% by weight of cement replaced cement in this study. The study was divided into two parts: the first was devoted to the investigation of the best percentage of replacement of waste
... Show MoreThe objective of present study was to compare of several methods for estimating the degree of heritability and calculating the number of genes using generation mean analysis of maize (