Awad-Allah Eman F A, Shams Amany H M, Helaly Amira A
Soil and Water Sciences Department, Faculty of Agriculture, Alexandria University, Alexandria 21545, Egypt.
Plant Pathology Department, Faculty of Agriculture, Alexandria University, Alexandria 21545, Egypt.
Plants (Basel). 2021 Aug 17;10(8):1689. doi: 10.3390/plants10081689.
Plants are challenged with many kinds of biotic stresses caused by different living organisms, which result in various types of diseases, infections, and damage to crop plants and ultimately affect crop productivity. Plant disease management strategies based on current approaches are necessary for sustainable agriculture. A pot experiment was carried out under greenhouse conditions to evaluate the potential of green synthesized silica nanoparticles (SiO-NPs) and antagonistic yeast () against pepper bacterial leaf spot disease, caused by . In addition, to assess their efficacy and suppressive effects in reducing disease severity and improving sweet pepper growth, productivity, and quality. Results revealed that the combination of BCA (5%) and SiO-NPs (150 ppm) was the most effective treatment for reducing disease severity and improving vegetative growth characters, mineral contents (N, P, K, Ca, Mg, and Si in leaves), as well as stimulating polyphenol oxidase (PPO) activity of sweet pepper leaves at 90 days from transplanting, while also at harvesting time enhancing sweet pepper fruit yield quality parameters significantly. In conclusion, green synthesized silica nanoparticles combined with antagonistic yeast have the potential to suppress a bacterial leaf spot disease with ecologically-sound management, while also boosting sweet pepper growth, productivity, and quality.
植物面临着由不同生物引起的多种生物胁迫,这会导致各种类型的疾病、感染以及对作物的损害,最终影响作物产量。基于当前方法的植物病害管理策略对于可持续农业而言是必要的。在温室条件下进行了一项盆栽试验,以评估绿色合成二氧化硅纳米颗粒(SiO-NPs)和拮抗菌()对由引起的辣椒细菌性叶斑病的防治潜力。此外,还要评估它们在降低病害严重程度、促进甜椒生长、提高产量和品质方面的功效及抑制作用。结果表明,在移栽90天时,5%的生物防治剂(BCA)和150 ppm的SiO-NPs组合是降低病害严重程度、改善营养生长特性、提高叶片中氮、磷、钾、钙、镁和硅等矿物质含量以及刺激甜椒叶片多酚氧化酶(PPO)活性的最有效处理方法,同时在收获时还显著提高了甜椒果实产量质量参数。总之,绿色合成二氧化硅纳米颗粒与拮抗菌相结合有潜力通过生态友好型管理抑制细菌性叶斑病,同时促进甜椒生长、提高产量和品质。