番茄和甜椒对营养限制的形态生理学评估

Stresses Pub Date : 2024-02-20 DOI:10.3390/stresses4010010
L. Lisboa, F. Galindo, P. Pagliari, João Igor Ussifati Pessoa Goncalves, Matheus Haruichi Okazuka, Matheus Luís Oliveira Cunha, Paulo Alexandre Monteiro de Figueiredo
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引用次数: 0

摘要

本研究的目的是调查番茄和甜椒植物在特定养分受到限制时的形态生理反应。研究在温室中的可控环境条件下进行,使用水培溶液作为生长介质,并根据需要更换营养液。处理包括对照处理,其中包括最佳浓度的所有养分,以及对番茄和甜椒的镁(Mg)、硼(B)、锌(Zn)和铁(Fe)的抑制。实验设计采用完全随机设计,2(作物)×5(处理)析因方案,重复四次。研究结果表明,铁元素的抑制对番茄和甜椒的形态和生理产生了最明显的负面影响,导致与气体交换相关的参数降低,导致叶片出现叶脉间萎黄病。镁的抑制产生的负面影响次之,在植物叶片上观察到的缺镁症状与缺铁时类似。虽然与铁和镁相比,硼和锌的抑制作用并不那么明显,但它们仍然会导致芽尖组织畸形和气体交换减少,并对所评估的形态参数产生负面影响。因此,我们的研究为了解镁、硼、锌和铁的缺乏如何影响番茄和甜椒的生理机能及其对番茄和甜椒形态的影响提供了重要见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morpho-Physiological Assessment of Tomato and Bell Pepper in Response to Nutrient Restriction
The aim of this study was to investigate the morpho-physiological responses of tomato and bell pepper plants when specific nutrients were restricted. The study was conducted in a greenhouse under controlled environmental conditions and used hydroponic solution as the growth medium, with the nutrient solution being replaced as needed. Treatments consisted of a control treatment that included all nutrients at optimal concentrations and the suppression of magnesium (Mg), boron (B), zinc (Zn), and iron (Fe) for both tomato and bell pepper. The experimental design followed a completely randomized design, with a 2 (crops) × 5 (treatments) factorial scheme replicated four times. The results of this study showed that suppression of Fe had the most pronounced negative effect on the morphology and physiology of tomatoes and bell peppers and caused a reduction in parameters associated with gas exchange, leading to the development of interveinal chlorosis in the leaves. The suppression of Mg had the second most notable negative effects, with similar deficiency symptoms observed in the plant leaves as observed for the absence of Fe. While the suppression of B and Zn were less prominent compared to Fe and Mg, they still resulted in tissue malformation in the shoot apices and reductions in gas exchange and negatively impacted the morphological parameters evaluated. Therefore, our study provided important insights on how Mg, B, Zn, and Fe depletion affects tomato and bell pepper physiology and its impacts on tomato and bell pepper morphology.
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CiteScore
4.70
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