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Use of Chitosan-PVA Hydrogels with Copper Nanoparticles to Improve the Growth of Grafted Watermelon

机译:壳聚糖-PVA水凝胶与铜纳米粒子的使用以改善嫁接的西瓜的生长。

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摘要

Modern agriculture requires alternative practices that improve crop growth without negatively affecting the environment, as resources such as water and arable land grow scarcer while the human population continues to increase. Grafting is a cultivation technique that allows the plant to be more efficient in its utilization of water and nutrients, while nanoscale material engineering provides the opportunity to use much smaller quantities of consumables compared to conventional systems but with similar or superior effects. On those grounds, we evaluated the effects of chitosan-polyvinyl alcohol hydrogel with absorbed copper nanoparticles (Cs-PVA-nCu) on leaf morphology and plant growth when applied to grafted watermelon cultivar ‘Jubilee’ plants. Stomatal density (SD), stomatal index (SI), stoma length (SL), and width (SW) were evaluated. The primary stem and root length, the stem diameter, specific leaf area, and fresh and dry weights were also recorded. Our results demonstrate that grafting induces modifications to leaf micromorphology that favorably affect plant growth, with grafted plants showing better vegetative growth in spite of their lower SD and SI values. Application of Cs-PVA-nCu was found to increase stoma width, primary stem length, and root length by 7%, 8% and 14%, respectively. These techniques modestly improve plant development and growth.
机译:现代农业要求采取替代措施,在不对环境造成负面影响的情况下改善作物生长,因为水和耕地等资源变得越来越稀缺,而人口却继续增加。嫁接是一种栽培技术,可使植物更有效地利用水分和养分,而纳米级材料工程提供了使用比传统系统少得多的消耗品的机会,但效果相似或更好。基于这些理由,我们评估了将壳聚糖-聚乙烯醇水凝胶与吸收的铜纳米颗粒(Cs-PVA-nCu)应用于嫁接的西瓜'Jubilee'植物后,对叶片形态和植物生长的影响。评估气孔密度(SD),气孔指数(SI),气孔长度(SL)和宽度(SW)。还记录了主要茎和根的长度,茎的直径,比叶面积以及鲜重和干重。我们的结果表明,嫁接可诱导叶片微观形态的修饰,从而有利于植物生长,尽管嫁接植物的SD和SI值较低,但其营养生长却更好。发现使用Cs-PVA-nCu可使气孔宽度,初级茎长度和根长度分别增加7%,8%和14%。这些技术适度地改善了植物的生长发育。

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