Daramola F, Lewu N, Nkiko J, Lewu F
Department of Agriculture, Cape Peninsula University of Technology, Private bag X8 South Africa.
Soil and Water Science Programme, ARC Infruitec-Nietvoorbij, Private Bag X5026, Stellenbosch 7599, South Africa.
Helminthologia. 2023 Sep 22;60(2):189-195. doi: 10.2478/helm-2023-0018. eCollection 2023 Jun.
Root-knot nematodes (RKNs) are important nematode pests, causing huge economic losses on vegetable crops worldwide. A decline in the yield of Swiss chard ( L.) which was associated with RKNs was observed on an organic vegetable farm in the Western Cape Province of South Africa. Nematodes were extracted from galled plant roots and identified using molecular tools. PCR-based Sequence Characterised Amplified Region (SCAR) primers was used to confirm the specie of the RKN associated with the infected plants. Thereafter, a pot assay was conducted to determine the response of artificially infected Swiss chard plants to varying concentrations of bio-synthesized silver nanoparticle Ag-NP (1 μg/mL, 2 μg/mL, and 3 μg/mL) under controlled conditions. The results of the study showed that Swiss chard is highly susceptible to with an egg-laying-female index of >5 in all infected plants. Significantly lower values (at P=0.05) in egg masses (EM), juveniles (J2s), and reproduction factor (RF) of nematodes were recorded on plants treated with 3 μg/mL, indicating a potential for nematode control. A negative correlation was also observed in the number of egg masses, J2s, and RF of the nematodes with increasing concentrations of the Ag-NP. This study confirms that Swiss chard is highly susceptible to and demonstrates the potential nematicidal property of Ag-NP in controlling the nematode pest of Swiss chard.
根结线虫是重要的线虫害虫,在全球范围内给蔬菜作物造成巨大经济损失。在南非西开普省的一个有机蔬菜农场,观察到与根结线虫相关的瑞士甜菜(Beta vulgaris L.)产量下降。从受虫瘿的植物根中提取线虫,并使用分子工具进行鉴定。基于聚合酶链式反应(PCR)的序列特征扩增区域(SCAR)引物用于确认与受感染植物相关的根结线虫种类。此后,进行了盆栽试验,以确定在可控条件下人工感染的瑞士甜菜植株对不同浓度生物合成银纳米颗粒(Ag-NP,1微克/毫升、2微克/毫升和3微克/毫升)的反应。研究结果表明,瑞士甜菜对根结线虫高度敏感,所有受感染植株的产卵雌虫指数均>5。在用3微克/毫升处理的植株上,线虫的卵块(EM)、幼虫(J2)和繁殖因子(RF)的值显著较低(P=0.05),表明其对线虫有控制潜力。随着Ag-NP浓度的增加,线虫的卵块数量、J2数量和RF也呈负相关。本研究证实瑞士甜菜对根结线虫高度敏感,并证明了Ag-NP在控制瑞士甜菜线虫害虫方面的潜在杀线虫特性。