Athanasiou Kyriakos, Ioannou Andreas, Georgiadou Egli C, Varaldo Alice, Tarani Evangelia, Chrissafis Konstantinos, Fotopoulos Vasileios, Krasia-Christoforou Theodora
Department of Mechanical and Manufacturing Engineering, University of Cyprus, 1 Panepistimiou Avenue, Aglantzia, Nicosia 2109, Cyprus.
Department of Agricultural Sciences, Biotechnology & Food Science, Cyprus University of Technology, Limassol 3603, Cyprus.
ACS Appl Polym Mater. 2025 Jul 31;7(16):10451-10464. doi: 10.1021/acsapm.5c01261. eCollection 2025 Aug 22.
Improving plant tolerance against abiotic stress factors is important for sustaining global food security. Plants show prolonged, increased tolerance upon exposure to suboptimal environmental conditions when treated at the seed stage with certain chemical agents of natural or synthetic origin, resulting in higher crop yields. Polymers such as naturally derived hydrogels (HYDR) provide a smart delivery system for phytohormones. The protective effect of melatonin (Mel) and FOLICIST (Fol) applied directly or as calcium alginate-based hydrogel coatings with embedded Mel (HYDR-Mel) was studied in the "Dafni F1" tomato cultivar against salinity stress under in vitro conditions. An array of agronomic and biochemical parameters was evaluated, further to detailed material characterization, including germination-related parameters (such as the germination rate index, mean germination rate, speed of germination, and emergence index), morphological alternations (such as the main root length and root fresh weight), as well as cellular damage indicators (such as malondialdehyde (MDA) and HO content). Findings suggest that engineered HYDR-Mel formulations are a promising "green" approach to mitigate abiotic stress effects in plants.
提高植物对非生物胁迫因子的耐受性对于维持全球粮食安全至关重要。当在种子阶段用某些天然或合成来源的化学试剂处理时,植物在暴露于次优环境条件下会表现出延长且增强的耐受性,从而提高作物产量。诸如天然衍生水凝胶(HYDR)之类的聚合物为植物激素提供了智能递送系统。在体外条件下,研究了褪黑素(Mel)和叶酸(Fol)直接施用或作为含有嵌入Mel的海藻酸钙基水凝胶涂层(HYDR-Mel)对“达芙妮F1”番茄品种抗盐胁迫的保护作用。在详细的材料表征之后,评估了一系列农艺和生化参数,包括与发芽相关的参数(如发芽率指数、平均发芽率、发芽速度和出苗指数)、形态变化(如主根长度和根鲜重)以及细胞损伤指标(如丙二醛(MDA)和HO含量)。研究结果表明,工程化的HYDR-Mel制剂是减轻植物非生物胁迫影响的一种有前景的“绿色”方法。