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负载锌营养素的壳聚糖纳米复合材料及其作为玉米种子纳米引发剂的功效。

Zn nutrients-loaded chitosan nanocomposites and their efficacy as nanopriming agents for maize () seeds.

作者信息

Zungu Bongiwe, Kamdem Paumo Hugues, Gaorongwe Joseph Lesibe, Tsuene Gaborone Neo, Ruzvidzo Oziniel, Katata-Seru Lebogang

机构信息

Department of Chemistry, Material Science Innovation and Modelling (MaSIM) Research Focus Area, North-West University, Mmabatho, South Africa.

Department of Botany, School of Biological Sciences, North-West University, Potchefstroom, South Africa.

出版信息

Front Chem. 2023 Aug 11;11:1243884. doi: 10.3389/fchem.2023.1243884. eCollection 2023.

Abstract

Recent breakthroughs in agro-inputs research have led to the development of nanomaterials that can promote precision agriculture and better environmental security. The agricultural sector is increasingly facing the negative impacts of changing climates due to various stress conditions. To curb this scenario, economical and low-risk practices such as decreasing fertilizer inputs and seed priming have been promoted. In the current study, the aqueous extract was used to nucleate the Zn ionic species and grow the zinc oxide nanoparticles (ZnO NPs). The developed nanocomposites and their ionic zinc precursor were then integrated into tripolyphosphate (TPP)-crosslinked chitosan (CS/TPP) nanostructures by ionic gelation. Advanced physicochemical characterization techniques (SEM, EDS, TEM, DLS, FTIR, TGA, and XPS) were exploited to report the morphology, hydrodynamic size, surface charge, and structural organization of the developed nanomaterials. These revealed positively charged particles with hydrodynamic size in the 149-257 nm range. The NPs were used as priming agents for seeds. At 0.04%, the ZnO-loaded CS/TPP NPs achieved higher root and shoot elongation in 10-day old seedlings compared to other treatments. The pristine CS/TPP NPs, Zn(II)-laden CS/TPP NPs, and ZnO-loaded CS/TPP NPs at 0.01% significantly promoted the early seedling development of seeds under salt stress. This represents the first report showing ZnO integrated chitosan nanocomposites as an auspicious nanopriming agent for stimulating the seed germination of maize. The study envisages offering perspectives on utilizing green nanotechnology to improve the early seedling development of maize. Furthermore, it has the potential to contribute towards UN SDG 2, thus addressing the threats to global food insecurity and doubling agricultural productivity by 2030.

摘要

农业投入研究的最新突破推动了纳米材料的开发,这些纳米材料可促进精准农业发展并提升环境安全性。由于各种胁迫条件,农业部门日益面临气候变化的负面影响。为遏制这种情况,人们推广了诸如减少肥料投入和种子引发等经济且低风险的做法。在本研究中,用水提取物使锌离子物种成核并生长氧化锌纳米颗粒(ZnO NPs)。然后,通过离子凝胶法将所制备的纳米复合材料及其离子锌前驱体整合到三聚磷酸钠(TPP)交联的壳聚糖(CS/TPP)纳米结构中。利用先进的物理化学表征技术(扫描电子显微镜、能谱分析、透射电子显微镜、动态光散射、傅里叶变换红外光谱、热重分析和X射线光电子能谱)来报告所制备纳米材料的形态、流体动力学尺寸、表面电荷和结构组织。这些结果表明所制备的纳米材料为带正电荷的颗粒,流体动力学尺寸在149 - 257纳米范围内。这些纳米颗粒被用作种子引发剂。在0.04%的浓度下,负载氧化锌的CS/TPP纳米颗粒在10日龄幼苗中比其他处理方式实现了更高的根和芽伸长。0.01%的原始CS/TPP纳米颗粒、负载锌(II)的CS/TPP纳米颗粒和负载氧化锌的CS/TPP纳米颗粒在盐胁迫下显著促进了种子的早期幼苗发育。这是首次报道表明负载氧化锌的壳聚糖纳米复合材料是一种用于刺激玉米种子萌发的良好纳米引发剂。该研究设想为利用绿色纳米技术改善玉米早期幼苗发育提供观点。此外,它有潜力为联合国可持续发展目标2做出贡献,从而应对全球粮食不安全的威胁,并到2030年使农业生产力翻番。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bded/10457009/866f2f024049/fchem-11-1243884-g001.jpg

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