基于稻壳纳米二氧化硅嵌入种子包衣藻酸盐薄膜的新型配方的植物生物刺激剂活性机理研究

Naomi Tritean, Bogdan Trică, Ștefan-Ovidiu Dima, Luiza Capră, Raluca-Augusta Gabor, Anișoara Cîmpean, F. Oancea, Diana Constantinescu-Aruxandei
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摘要

种子包衣可确保在作物生长初期就有针对性地输送各种化合物,从而提高作物的质量和产量。众所周知,硅和海藻酸具有植物生物刺激作用。稻壳(RH)是生物硅的重要来源。在这项研究中,我们用海藻酸甘油山梨醇(AGS)薄膜包覆绿豆种子,薄膜中嵌入了来自稻壳的生物纳米二氧化硅(SiNPs),具有显著的植物生物刺激活性。在温控密闭反应器中对磨碎的 RH 进行稀酸水解后,得到的 RH 基质被中和并在 650°C 煅烧。研究了原生 RH、中间基质和 SiNPs 的结构和组成特征,以及 SiNPs 中可溶性硅的释放情况。采用三因素混合设计对种子包衣薄膜进行了优化。在没有和一开始就加入 50 mM 盐的情况下,对其生理特性进行了评估。研究的主要参数包括幼苗的生长、发育、代谢活性、活性氧(ROS)代谢和硅含量。结果表明,在 50 纳米无定形 SiNPs(具有 Si-O-Si 和 Si-OH 键)、0.347 cm3/g CPV(累积孔体积)和 240 m2/g SSA(比表面积)中嵌入了均匀的 AGS 薄膜。涂膜具有显著的特性,能提高绿苗在盐胁迫下的代谢、质子泵活性和清除 ROS 的能力。该研究表明,RH 生物源 SiNPs 与优化的有益海藻酸盐薄膜可作为植物生物刺激剂有效应用,从植物发育的最初阶段就能缓解盐胁迫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanistic insights into the plant biostimulant activity of a novel formulation based on rice husk nanobiosilica embedded in a seed coating alginate film
Seed coating ensures the targeted delivery of various compounds from the early stages of development to increase crop quality and yield. Silicon and alginate are known to have plant biostimulant effects. Rice husk (RH) is a significant source of biosilica. In this study, we coated mung bean seeds with an alginate–glycerol–sorbitol (AGS) film with embedded biogenic nanosilica (SiNPs) from RH, with significant plant biostimulant activity. After dilute acid hydrolysis of ground RH in a temperature-controlled hermetic reactor, the resulting RH substrate was neutralized and calcined at 650°C. The structural and compositional characteristics of the native RH, the intermediate substrate, and SiNPs, as well as the release of soluble Si from SiNPs, were investigated. The film for seed coating was optimized using a mixture design with three factors. The physiological properties were assessed in the absence and the presence of 50 mM salt added from the beginning. The main parameters investigated were the growth, development, metabolic activity, reactive oxygen species (ROS) metabolism, and the Si content of seedlings. The results evidenced a homogeneous AGS film formation embedding 50-nm amorphous SiNPs having Si–O–Si and Si–OH bonds, 0.347 cm3/g CPV (cumulative pore volume), and 240 m2/g SSA (specific surface area). The coating film has remarkable properties of enhancing the metabolic, proton pump activities and ROS scavenging of mung seedlings under salt stress. The study shows that the RH biogenic SiNPs can be efficiently applied, together with the optimized, beneficial alginate-based film, as plant biostimulants that alleviate saline stress from the first stages of plant development.
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