Nanofertilizers benefited maize to cope oxidative stress under saline environment

Abbas Shoukat , Zulfiqar Ahmad Saqib , Allah Nawaz , Kashif Zulfiqar Amir , Ilyas Ahmad , Ali Hamza , Karl Hermann Mühling
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Abstract

Nano-fertilizers with higher efficacy compared to conventional fertilizers, offer significant advantages for crop cultivation in both productive and marginal soils. This study aimed to assess the effects of nano and conventional fertilizers on maize plants grown under normal and saline soil conditions (10 dSm−1). ZnO and SiO2 nanoparticles (NPs) has been synthesized in the lab and characterized using scanning electron microscopy, x-ray diffraction, and ultraviolet-visible spectroscopy before the plant experiment. The treatments included i.e. control, conventional Zn, conventional Si, nano Zn and nano Si, under both non-saline and saline soil conditions. The experiment was conducted under controlled conditions and various physiological, agronomic and biochemical analyses were performed. Results revealed that nano Zn and Si significantly increased the activities of antioxidant enzymes (SOD, POD, CAT, APX) under saline conditions along with growth parameters. Specifically, nano Si reduced malondialdehyde (MDA) content by 41 % and hydrogen peroxide (H₂O₂) content by more than half under saline conditions, while nano Zn showed significant reductions in both oxidative stress markers. Higher proline content, proteins, relative water and chlorophyll content in plants treated with nano fertilizers demonstrated improved osmoregulation, metabolic homeostasis as well as maintaining water balance and photosynthetic efficiency under stress conditions. This suggests that nano fertilizers can me more effective in improving crop resilience and productivity under salinity stress.
纳米肥料有利于玉米在盐渍环境下应对氧化应激
与传统肥料相比,纳米肥料具有更高的效率,在生产性和边缘性土壤中都具有显著的优势。本研究旨在评估纳米和常规肥料对正常和盐碱地条件下玉米植株的影响。在植物实验前,在实验室合成了ZnO和SiO2纳米颗粒,并利用扫描电子显微镜、x射线衍射和紫外可见光谱对其进行了表征。在盐碱地和非盐碱地条件下,采用对照、常规锌、常规硅、纳米锌和纳米硅处理。试验在控制条件下进行,并进行了各种生理、农艺和生化分析。结果表明,纳米Zn和Si在生理盐水条件下显著提高了抗氧化酶(SOD、POD、CAT、APX)的活性和生长参数。具体来说,在盐水条件下,纳米Si将丙二醛(MDA)含量降低了41% %,过氧化氢(H₂O₂)含量降低了一半以上,而纳米Zn则显着降低了这两种氧化应激标志物。在胁迫条件下,施用纳米肥料的植物脯氨酸含量、蛋白质含量、相对水分和叶绿素含量较高,表明渗透调节、代谢稳态以及维持水分平衡和光合效率得到改善。这表明纳米肥料可以更有效地提高作物在盐胁迫下的抗逆性和生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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