Cellulose & Paper Department, National Research Centre, 33 El Bohouth St, P.O. 12622, Dokki, Giza, Egypt.
Tissue Culture Technique Lab, Central Laboratories Network and Pomology Dept, National Research Centre, Dokki, Cairo, 12622, Egypt.
Microb Cell Fact. 2024 Mar 13;23(1):79. doi: 10.1186/s12934-024-02346-9.
The current study aimed to evaluate the effects of biogenic silver nanoparticles (AgNPs) on growth behavior and leaf anatomy of in vitro growing shoots of 'Picual' and 'Dolce' olive cultivars. Biosynthesis of AgNPs was carried out using the cell-free filtrate of Fusarium oxysporum. The dimension and shape of the synthesized AgNPs have been analyzed using spectroscopy and topography analysis tools, confirming that the biosynthesis of AgNPs is a crystalline nanostructure with an average particle size of 37 nm. The shoots of the selected olive cultivars were cultured on Rugini olive medium-supplemented AgNPs at 0, 10, 20, and 30mg L. The effect of genotypes on shoot multiplication was significant, 'Picual' recorded higher values of shoot growth parameters compared with 'Dolce' cultivar. Adding AgNPs to the culture medium significantly affected the growth of in vitro olive shoots. AgNPs at 20 and 30mg L produced higher values of the number of shoots, shoot length, and leaf number of Picual cv. compared with the control treatments, but the higher AgNPs concentration harmed the growth parameters of Dolce cv. and recorded lower growth values compared with the lower concentration (10mg L). AgNPs had a significant effect on leaf morphology and their anatomical structure. The current results showed that the stimulatory effect of AgNPs on shoot growth of in vitro olive shoots is highly dependent on plant genotype and nanoparticle concentration.
本研究旨在评估生物源银纳米粒子(AgNPs)对‘Picual’和‘Dolce’橄榄品种离体生长芽的生长行为和叶片解剖结构的影响。AgNPs 的生物合成是使用尖孢镰刀菌的无细胞滤液进行的。使用光谱和形貌分析工具分析了合成的 AgNPs 的尺寸和形状,证实 AgNPs 的生物合成是一种具有平均粒径为 37nm 的结晶纳米结构。选择的橄榄品种的芽在含有 Rugini 橄榄培养基和 AgNPs(0、10、20 和 30mg/L)的培养基上进行培养。基因型对芽增殖的影响是显著的,与‘Dolce’品种相比,‘Picual’记录的芽生长参数值更高。在培养基中添加 AgNPs 显著影响体外橄榄芽的生长。与对照处理相比,AgNPs 在 20 和 30mg/L 时产生了更高的芽数、芽长和 Picual cv.的叶片数,但较高浓度的 AgNPs 对‘Dolce’cv.的生长参数有害,记录的生长值低于较低浓度(10mg/L)。AgNPs 对叶片形态及其解剖结构有显著影响。目前的结果表明,AgNPs 对体外橄榄芽生长的刺激作用高度依赖于植物基因型和纳米颗粒浓度。