Stałanowska Karolina, Głowacka Katarzyna, Buszewski Bogusław, Lahuta Lesław Bernard
Department of Plant Physiology, Genetics and Biotechnology, University of Warmia and Mazury in Olsztyn, Oczapowskiego 1A, 10-719 Olsztyn, Poland.
Department of Environmental Chemistry and Bioanalytics, Faculty of Chemistry, Nicolaus Copernicus University, Gagarina 7, 87-100 Toruń, Poland.
Plants (Basel). 2025 May 23;14(11):1594. doi: 10.3390/plants14111594.
The results of our recent research revealed that biologically synthesized silver nanoparticles (bio-AgNPs) applied to several-day-old pea ( L.) plants or used for seed nanopriming protected pea plants against selected fungal pathogens. However, the susceptibility of pea to bio-AgNPs during seed germination remains mostly unknown. Therefore, in this study, we investigated the cells' viability, ROS generation, total antioxidant capacity, the activity of selected antioxidant enzymes, and changes in the polar metabolite profiles of 4-day-old pea seedlings developed in water (control) and water suspensions of bio-AgNPs (at 50 and 200 mg/L). The bio-AgNPs did not negatively affect pea seeds' germination, early seedlings' growth, and root tips cells' viability (at both tested concentrations). In the root, the bio-AgNPs at a lower concentration (50 mg/L) stimulated ROS generation. Nanoparticles enhanced peroxidase activity in root and the total antioxidant capacity in epicotyl. Increased levels of malate, phosphoric acid, proline, GABA, and alanine were observed in root and epicotyl of pea seedlings developed at 50 mg/L of bio-AgNPs. A higher concentration affected the tricarboxylic acid cycle and nitrogen metabolism. Bio-AgNPs alerted oxidative homeostasis and primary metabolism of pea seedlings but did not exceed a certain threshold limit and thus did not injure pea at an early stage of seedling development.
我们最近的研究结果表明,生物合成的银纳米颗粒(bio-AgNPs)应用于几日龄的豌豆(L.)植株或用于种子纳米引发,可保护豌豆植株免受特定真菌病原体的侵害。然而,豌豆在种子萌发期间对bio-AgNPs的敏感性大多未知。因此,在本研究中,我们研究了在水(对照)和bio-AgNPs水悬浮液(浓度分别为50和200 mg/L)中生长的4日龄豌豆幼苗的细胞活力、活性氧生成、总抗氧化能力、所选抗氧化酶的活性以及极性代谢物谱的变化。bio-AgNPs对豌豆种子的萌发、早期幼苗的生长和根尖细胞的活力均无负面影响(在两个测试浓度下)。在根部,较低浓度(50 mg/L)的bio-AgNPs刺激了活性氧的生成。纳米颗粒增强了根部的过氧化物酶活性和上胚轴的总抗氧化能力。在50 mg/L bio-AgNPs处理的豌豆幼苗的根和上胚轴中,观察到苹果酸、磷酸、脯氨酸、γ-氨基丁酸和丙氨酸的水平升高。较高浓度影响了三羧酸循环和氮代谢。Bio-AgNPs改变了豌豆幼苗的氧化稳态和初级代谢,但未超过一定阈值,因此在幼苗发育早期不会对豌豆造成伤害。