El-Hefny Mervat, Mohamed Abeer A, Abdelkhalek Ahmed, Salem Mohamed Z M
Department of Floriculture, Ornamental Horticulture and Garden Design, Faculty of Agriculture (El-Shatby), Alexandria University, Alexandria 21545, Egypt.
Plant Pathology Institute, Agricultural Research Center (ARC), Alexandria 21616, Egypt.
Plants (Basel). 2023 Jun 11;12(12):2274. doi: 10.3390/plants12122274.
The application of compost and metallic nanoparticles has a significant impact on the productivity and chemical composition of horticulture plants. In two subsequent growing seasons, 2020 and 2021, the productivity of L. plants treated with various concentrations of silver nanoparticles (AgNPs) and compost was assessed. In the pot experiments, the soil was amended with 25% or 50% compost, and the plants were sprayed with 10, 20, and 30 mg/L of AgNPs. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction analysis (XRD), and dynamic light scattering (DLS) were used to characterize AgNPs. The TEM measurements of AgNPs showed that the particles had spherical forms and ranged in size from roughly 5 to 16 nm. Leaf methanol extracts (LMEs) were prepared from the treated plants and assayed against the growth of two soft rot bacteria, and . The maximum plant height, diameter, number of branches/plant, total fresh weight (g), total dry weight (g), and leaf area (cm) was recorded when levels of 25% compost + AgNPs 20 mg/L, 25% compost, or 50% + AgNPs 20 mg/L, 25% compost + AgNPs 30 mg/L or 50% compost + AgNPs 20 mg/L, 50% compost + AgNPs 20 mg/L, 50% compost + AgNPs 30 or 20 mg/L, and 25% compost + AgNPs 30 mg/L, respectively, were applied. The plants treated with 25% or 50% compost + 30 mg/L AgNPs showed a high chlorophyll content, while the plants treated with 50% compost + AgNPs 30 mg/L or 20 mg/L showed the highest extract percentages. The highest inhibition zones (IZs), 2.43 and 2.2 cm, against the growth of were observed in the LMEs (4000 mg/L) extracted from the plants treated with compost (/) + AgNPs (mg/L) at the levels of 50% + 30 and 25% + 30, respectively. The highest IZs, 2.76 and 2.73 cm, against the growth of were observed in the LMEs (4000 mg/L) extracted from the plants treated at the levels of 50% + 30 and 25% + 30, respectively. Several phenolic compounds such as syringic acid, p-coumaric acid, chlorogenic acid, cinnamic acid, ellagic acid, caffeic acid, benzoic acid, gallic acid, ferulic acid, salicylic acid, pyrogallol, and catechol, as well as flavonoid compounds such as 7-hydroxyflavone, naringin, rutin, apigenin, quercetin, kaempferol, luteolin, hesperidin, catechin, and chrysoeriol, were identified in the LMEs as analyzed by HPLC with different concentrations according to the treatment of compost + AgNPs used for the plants. In conclusion, the specific criteria that were utilized to measure the growth of revealed the novelty of compost and AgNPs combination treatments, particularly at a concentration of 50% compost + AgNPs 30 mg/L or 20 mg/L, which is better for the growth and phytochemical production of in the field.
堆肥和金属纳米颗粒的应用对园艺植物的生产力和化学成分有重大影响。在随后的两个生长季节,即2020年和2021年,评估了用不同浓度的银纳米颗粒(AgNPs)和堆肥处理的L.植物的生产力。在盆栽试验中,土壤用25%或50%的堆肥改良,植物喷洒10、20和30 mg/L的AgNPs。使用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射分析(XRD)和动态光散射(DLS)对AgNPs进行表征。AgNPs的TEM测量表明,颗粒呈球形,尺寸范围大致为5至16 nm。从处理过的植物中制备叶片甲醇提取物(LMEs),并针对两种软腐细菌的生长进行测定。当分别施用25%堆肥 + 20 mg/L AgNPs、25%堆肥、50% + 20 mg/L AgNPs、25%堆肥 + 30 mg/L AgNPs或50%堆肥 + 20 mg/L、50%堆肥 + 20 mg/L、50%堆肥 + 30或20 mg/L以及25%堆肥 + 30 mg/L时,记录到最大株高、直径、每株分支数、总鲜重(g)、总干重(g)和叶面积(cm)。用25%或50%堆肥 + 30 mg/L AgNPs处理的植物显示出高叶绿素含量,而用50%堆肥 + 30 mg/L或20 mg/L AgNPs处理的植物显示出最高的提取物百分比。在分别用50% + 30和25% + 30水平的堆肥(/) + AgNPs(mg/L)处理的植物中提取的LMEs(4000 mg/L)中,观察到对的生长的最高抑制区(IZs),分别为2.43和2.2 cm。在分别用50% + 30和25% + 30水平处理的植物中提取的LMEs(4000 mg/L)中,观察到对的生长的最高IZs,分别为2.76和2.73 cm。通过HPLC分析,根据用于植物的堆肥 + AgNPs处理的不同浓度,在LMEs中鉴定出几种酚类化合物,如丁香酸、对香豆酸、绿原酸、肉桂酸、鞣花酸、咖啡酸、苯甲酸、没食子酸、阿魏酸、水杨酸、连苯三酚和儿茶酚,以及黄酮类化合物,如7 - 羟基黄酮、柚皮苷、芦丁、芹菜素、槲皮素、山奈酚、木犀草素、橙皮苷、儿茶素和 Chrysoeriol。总之,用于测量生长的特定标准揭示了堆肥和AgNPs组合处理的新颖性,特别是在50%堆肥 + 30 mg/L或20 mg/L的浓度下,这对田间的生长和植物化学物质产生更有利。