Ramazan Karakecili, Ibrahim Bolat, Meral Dogan, Ozkan Kaya
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引用次数: 0
摘要
了解杏(Prunus armenica L.)幼苗对腐植酸(HA)、硅(Si)及其组合(HA + Si)处理的生理反应对于推进可持续农业实践至关重要。本研究以生长参数、生理特性和叶片矿物质浓度为重点,填补了这些处理对杏树幼苗影响方面的知识空白。研究强调了气孔导度(SC)的显著增加,HA + Si 组合处理的 SC 值最高,达到 303.98 mmol.m-2s-1。相比之下,Alyanak 杏栽培品种的对照幼苗气孔导度最低,为 122.52 mmol.m-2s-1。在叶绿素浓度方面,使用 HA + Si 处理的 Şekerpare 杏栽培品种达到了 43.74 的最高值,而在 Alyanak 杏栽培品种中,单独使用 Si 处理的叶绿素浓度为 43.02,位居第二。综合处理(HA + Si)还降低了叶片温度(32.28 °C),尤其是在 Hacıhaliloğlu 杏栽培品种中。视觉评估分析显示,叶面积(LA)、总叶片数(TLN)、嫩枝长度(SL)和其他参数显著增加,HA + Si 组合处理始终优于单个处理。矿物质分析表明,HA 增加了氮和磷,Si 和 HA + Si 增加了镁,对钾和钙也有显著影响。主成分分析(PCA)证实了对植物整体表现的积极影响,累计解释率为 53.82%。这项研究为调整农业实践以优化杏树幼苗的生长提供了重要见解,强调了 HA 和 Si 处理(尤其是结合使用)对增强生理反应的有效性。
Harmonizing Growth Symphony: Unraveling the Intricacies of Apricot Seedling Enhancement Through Humic Acid and Silicon Applications
Understanding the physiological responses of apricot (Prunus armenica L.) seedlings to treatments involving Humic Acid (HA), Silicon (Si), and their combination (HA + Si) is crucial for advancing sustainable agricultural practices. Focused on growth parameters, physiological attributes, and leaf mineral concentrations, this study addressed critical knowledge gaps in the influence of these treatments on apricot seedlings. The study highlighted a significant increase in stomatal conductance (SC), with the combined HA + Si treatment displaying the highest SC value at 303.98 mmol.m-2s-1. In contrast, control seedlings of the Alyanak apricot cultivar showed the lowest SC, registering at 122.52 mmol.m-2s-1. Regarding chlorophyll concentrations, the Şekerpare apricot cultivar treated with HA + Si achieved the highest value of 43.74, while in the Alyanak apricot cultivar, the Si treatment alone marked the second highest concentration at 43.02. The combined treatment (HA + Si) also reduced leaf temperatures (32.28 °C), notably in apricot cultivar Hacıhaliloğlu. Visual evaluation analyses underscored significant increases in Leaf Area (LA), Total Leaf Number (TLN), Shoot Length (SL), and other parameters, with the combined HA + Si treatment consistently outperforming individual ones. Mineral analysis revealed elevated Nitrogen (N) and Phosphorus (P) with HA, increased Magnesium (Mg) with Si and HA + Si, and significant effects on Potassium (K) and Calcium (Ca). Principal Component Analysis (PCA) confirmed the positive impacts on overall plant performance, corresponding to a cumulative explanation of 53.82%. This study provided crucial insights for tailoring agricultural practices to optimize apricot seedlings growth, emphasizing the effectiveness of HA and Si treatments, particularly in combination, for enhanced physiological responses.
期刊介绍:
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