Universidade de Franca, Av. Dr. Armando Salles Oliveira 201, Franca, SP 14404-600, Brazil.
Grupo de Estudo em Fertilizantes Especiais e Nutrição, Centro de Energia Nuclear na Agricultura, Universidade de São Paulo, Av.Centerário 303, Piracicaba, SP 13400-970, Brazil.
J Agric Food Chem. 2024 Jul 3;72(26):14570-14580. doi: 10.1021/acs.jafc.4c01522. Epub 2024 Jun 18.
Enhancing the initial stages of plant growth by using polymeric gels for seed priming presents a significant challenge. This study aimed to investigate a microgel derived from polyetheramine-poly(propylene oxide) (PPO) and a bisepoxide (referred to as micro-PPO) as a promising alternative to optimize the seed germination process. The micro-PPO integrated with an iron micronutrient showed a positive impact on seed germination compared with control (Fe solutions) in which the root length yield improved up to 39%. Therefore, the element map by synchrotron-based X-ray fluorescence shows that the Fe intensities in the seed primers with the micro-PPO-Fe gel are about 3-fold higher than those in the control group, leading to a gradual distribution of Fe species through most internal embryo tissues. The use of micro-PPO for seed priming underscores their potential for industrial applications due to the nontoxicity results in zebrafish assays and environmentally friendly synthesis of the water-dispersible monomers employed.
利用聚合水凝胶进行种子引发以增强植物生长的初始阶段是一项重大挑战。本研究旨在探索一种由聚醚胺-聚(环氧丙烷)(PPO)和双环氧化物(称为微 PPO)衍生的微凝胶,作为优化种子发芽过程的有前途的替代方案。与对照组(Fe 溶液)相比,微 PPO 与铁微量元素的结合对种子发芽有积极影响,根长产量提高了 39%。因此,基于同步加速器的 X 射线荧光元素图谱显示,带有微 PPO-Fe 凝胶的种子引发剂中的 Fe 强度比对照组高约 3 倍,导致 Fe 物质通过大多数内部胚胎组织逐渐分布。由于微 PPO 在斑马鱼试验中表现出无毒,并且所使用的水分散性单体的合成环保,因此其在种子引发方面的应用具有工业应用潜力。