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Multispectral Assessment of Sweet Pepper (Capsicum annuum L.) Fruit Quality Affected by Calcite Nanoparticles

机译:甜椒(Capsicum annuum L.)的多光谱评估方解石纳米颗粒对果实品质的影响

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Sweet pepper (Capsicum annuum L.) is one of the most important vegetable crops in the world because of the nutritional value of its fruits and its economic importance. Calcium (Ca) improves the quality of sweet pepper fruits, and the application of calcite nanoparticles in agricultural practice has a positive effect on the morphological, physiological, and physicochemical properties of the whole plant. The objectives of this study were to investigate the effect of commercial calcite nanoparticles on yield, chemical, physical, morphological, and multispectral properties of sweet pepper fruits using a combination of conventional and novel image-based nondestructive methods of fruit quality analysis. In the field trial, two sweet pepper cultivars, i.e., Soroksari and Kurtovska kapija, were treated with commercial calcite nanoparticles (at a concentration of 3 and 5, calcite-based foliar fertilizer (positive control), and water (negative control) three times during vegetation). Sweet pepper fruits were harvested at the time of technological and physiological maturity. Significant differences were observed between pepper cultivars as well as between harvests times. In general, application of calcite nanoparticles reduced yield and increased fruit firmness. However, different effects of calcite nanoparticles were observed on almost all properties depending on the cultivar. In Soroksari, calcite nanoparticles and calcite-based foliar fertilizers significantly increased N, P, K, Mg, Fe, Zn, Mn, and Cu at technological maturity, as well as P, Ca, Mg, Fe, Zn, Mn, Cu, and N at physiological maturity. However, in Kurtovska kapija, the treatments increased only Ca at technological maturity and only P at physiological maturity. The effect of treatments on fruit morphological properties was observed only at the second harvest. In Soroksari, calcite nanoparticles (3 and 5) increased the fruit length, minimal circle area, and minimal circle radius, and it decreased the fruit width and convex hull compared to the positive and negative controls, respectively. In Kurtovska kapija, calcite nanoparticles increased the fruit width and convex hull compared to the controls. At physiological maturity, lower anthocyanin and chlorophyll indices were found in Kurtovska kapija in both treatments with calcite nanoparticles, while in Soroksari, the opposite effects were observed.
机译:甜椒(Capsicum annuum L.)是世界上最重要的蔬菜作物之一,因为它的果实具有营养价值和经济重要性。钙(Ca)提高了甜椒果实的品质,方解石纳米颗粒在农业实践中的应用对整个植物的形态、生理和理化性能有积极影响。本研究的目的是使用传统和新型基于图像的无损水果品质分析方法的组合,研究商业方解石纳米颗粒对甜椒果实产量、化学、物理、形态和多光谱特性的影响。在田间试验中,两个甜椒品种,即Soroksari和Kurtovska kapija,在植被期间用商业方解石纳米颗粒(浓度为3%和5%,方解石基叶面肥(阳性对照)和水(阴性对照)处理三次)。甜椒果实是在技术和生理成熟时收获的。辣椒品种之间以及收获时间之间存在显著差异。一般来说,方解石纳米颗粒的应用会降低产量并增加果实硬度。然而,根据品种的不同,方解石纳米颗粒对几乎所有特性都观察到不同的影响。在Soroksari中,方解石纳米颗粒和方解石基叶面肥在技术成熟时显著增加了N、P、K、Mg、Fe、Zn、Mn和Cu,在生理成熟时显著增加了P、Ca、Mg、Fe、Zn、Mn、Cu和N。然而,在Kurtovska kapija中,处理在技术成熟时仅增加Ca,在生理成熟时仅增加P。仅在第二次收获时观察到处理对果实形态特性的影响。在Soroksari中,方解石纳米颗粒(3%和5%)分别增加了果实长度、最小圆面积和最小圆半径,并分别减小了果实宽度和凸壳。在Kurtovska kapija中,与对照组相比,方解石纳米颗粒增加了果实宽度和凸壳。在生理成熟时,在方解石纳米颗粒的两种处理中,Kurtovska kapija的花青素和叶绿素指数较低,而在Soroksari中,观察到相反的效果。

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