Crop Improvement Division, National Rice Research Institute, Cuttack 753006, Odisha, India.
Department of Molecular Biology & Genetic Engineering, CBSH, G. B. Pant University of Agriculture & Technology, Pantnagar 263145, India.
Int J Biol Macromol. 2023 Dec 31;253(Pt 8):127602. doi: 10.1016/j.ijbiomac.2023.127602. Epub 2023 Oct 22.
The vastly expanding global population raised the demand for profuse food grain production. For food security in India, high yield and nutritional quality of grain crops, both are essential. Zinc is a crucial micronutrient generally deficient in food grains grown in India, reflecting their deteriorating nutritional quality. To address these issues, in the present study, a novel tri-component nanoparticle of chitosan‑zinc-salicylic acid (CS-Zn-SA NPs) has been synthesized by ionotropic gelation method. The average size of synthesized CS-Zn-SA NPs was recorded 13.5 nm by dynamic light scattering (DLS) spectroscopy. The presence of chitosan, zinc and salicylic acid and crosslinking among these components in synthesized nanoparticles has been demonstrated by Fourier transforms infrared (FTIR) spectroscopy and thermogravimetric analysis (TGA). Further, synthesized CS-Zn-SA NPs at various concentrations (50-200 ppm) were evaluated for seed germination via seed priming, yield, grain zinc content and defence enzyme activity through the foliar application. CS-Zn-SA NPs revealed significant seed germination activities, 19.8 % higher grain yield, 45.5 % increased grain zinc content and manyfold defence enzyme activities than the control. The obtained results exposed the potential of CS-Zn-SA NPs as a stimulant for effective seedling development, higher yield, a virtuous micronutrient fortifying agent and defence enzyme promoter.
全球人口的迅速增长提高了对大量粮食生产的需求。为了确保印度的粮食安全,高产和粮食作物的营养质量都是必不可少的。锌是一种关键的微量营养素,通常在印度种植的粮食作物中缺乏,反映出其营养质量的恶化。为了解决这些问题,在本研究中,通过离子凝胶化方法合成了一种新型的壳聚糖-锌-水杨酸(CS-Zn-SA NPs)三组分纳米粒子。通过动态光散射(DLS)光谱法记录合成的 CS-Zn-SA NPs 的平均粒径为 13.5nm。傅里叶变换红外(FTIR)光谱和热重分析(TGA)表明,壳聚糖、锌和水杨酸的存在以及这些成分之间的交联存在于合成的纳米粒子中。此外,通过种子引发,叶面喷施,研究了不同浓度(50-200ppm)的合成 CS-Zn-SA NPs 对种子发芽、产量、籽粒锌含量和防御酶活性的影响。CS-Zn-SA NPs 表现出显著的种子发芽活性,比对照提高了 19.8%的籽粒产量,提高了 45.5%的籽粒锌含量和数倍的防御酶活性。研究结果表明,CS-Zn-SA NPs 具有作为有效幼苗发育、高产、良性微量营养素强化剂和防御酶促进剂的潜力。