Graphical biplot assessment of pre-sowing procedures on the seeds of Dracocephalum moldavica L. employing diverse nanoparticles

N. Sabaghnia, M. Janmohammadi, S. Yousefzadeh
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Abstract

Dracocephalum moldavica L., the Moldavian dragonhead, has found its place in folk medicine and has been used to address kidney complaints. Pre-hydration methodologies were administered to dragonhead seeds utilising nano-silicon dioxide at three concentrations: Si1 0 mM as control, Si2 and Si3, 1 and 2 mM, respectively. Concurrently, treatments with nanoparticles of Fe in oxide form encompassed: Fe1 0 mM as control, Fe2 and Fe3, 1 and 2 mM, respectively. A range of parameters, including the germination percentage, weight (fresh and dry) and length of roots and shoots, seed residue dry weight, and root and shoot dry weights were meticulously gauged. The utilisation of the treatment-by-trait biplot facilitated the visualisation of interrelationships of traits and treatments, with the initial two principal components elucidating 80% of the observed variation. The majority of the traits are located in a specific sector of graph with Si2-Fe3 as the optimal pre-hydration treatment. The ideal treatment for eliciting elevated seed germination properties was detected as Si2-Fe3 (1 mM nano-silicon dioxide and 2 mM of Fe oxide nanoparticles) through the ideal entry biplot. Our findings strongly suggest that priming with silicon and Fe in form of nanoparticles holds the potential to expedite both germination and seedling growth in D. moldavica L. In summary, the text emphasises the potential benefits of nanoparticle technology in agriculture, underscores the importance of precise experimental optimisation, highlights the objectivity of the biplot, and suggests promising strategies for seed priming in the cultivation of the Moldavian dragonhead.
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采用不同纳米颗粒对 Dracocephalum moldavica L.种子播种前程序进行图形双图评估
摩尔达维亚龙头(Dracocephalum moldavica L.)在民间医药中占有一席之地,被用于治疗肾脏疾病。利用三种浓度的纳米二氧化硅对龙脑种子进行了水前处理:Si1 浓度为 0 mM,作为对照;Si2 和 Si3 浓度分别为 1 mM 和 2 mM。同时,用氧化物形式的纳米铁粒子进行处理:Fe1 0 mM 作为对照,Fe2 和 Fe3 分别为 1 mM 和 2 mM。对发芽率、根和芽的重量(鲜重和干重)和长度、种子残留干重、根和芽干重等一系列参数进行了细致的测量。利用处理-性状双图谱有助于直观地了解性状和处理之间的相互关系,最初的两个主成分阐明了 80% 的观测变异。大多数性状都位于图中的特定区域,Si2-Fe3 是最佳的水前处理。通过理想的入口双平面图,我们发现 Si2-Fe3(1 毫摩尔纳米二氧化硅和 2 毫摩尔纳米氧化铁)是提高种子萌发特性的理想处理方法。总之,本文强调了纳米颗粒技术在农业中的潜在益处,强调了精确优化实验的重要性,突出了双平面图的客观性,并提出了在摩尔达维亚龙头菜栽培中进行种子诱导的可行策略。
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