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通过组合红光和蓝光LED光优化番茄生长和代谢:对植物生理学、生物化学和营养保健价值的见解

Optimizing L. Growth and Metabolism by Combining Red and Blue LED Light: Insights into Plant Physiology, Biochemistry, and Nutraceutical Value.

作者信息

Monterisi Sonia, Rebollo Vicioso Carmen, Alzate Zuluaga Monica Yorlady, Melchior Sofia, Senizza Biancamaria, Zengin Gokhan, Fattorini Roberto, Lanza Umberto, de Oliveira Caretta Talita, Manzocco Lara, Lucini Luigi, Cesco Stefano, Pii Youry

机构信息

Faculty of Agricultural, Environmental and Food Sciences, Free University of Bozen/Bolzano, Piazza Università 1, 39100 Bolzano, Italy.

Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, Via Sondrio 2/A, 33100 Udine, Italy.

出版信息

Plants (Basel). 2025 Jun 19;14(12):1887. doi: 10.3390/plants14121887.

Abstract

Environmental and health concerns have increased the demand for ready-to-eat vegetables rich in bioactive compounds. This study explores the impact of red and blue (R:B) LED light on the metabolic responses of lamb's lettuce ( L.), focusing on sugars, organic acids, total phenolics, antioxidant activity, and enzyme inhibition. Post-harvest analyses were also conducted to assess shelf-life and microbiological characteristics of the product. The R:B LED treatment significantly enhanced plant growth, with a 133% and 68% increase in shoot fresh and dry weights, respectively, and a 21% increase in leaf area compared to controls (white LED light). Biochemical profiling revealed substantial increases in fructose (255%), sucrose (169%), citric acid (350%), and malic acid (868%) under R:B LED light. Additionally, phenolic content increased by 30%, alongside a notable modulation of 258 secondary metabolites, including flavonoid glycosides, alkaloids, and terpenoids. These biochemical changes contributed to a marked improvement in antioxidant capacity (12-45% across multiple assays) and a 300% increase in α-glucosidase inhibition, suggesting potential antidiabetic properties. Furthermore, post-harvest analysis revealed comparable shelf-life and microbiological safety between R:B and white LED-grown samples. The research highlights the potential of LED light to enhance plant biochemical responses and improve crop quality without affecting post-harvest quality, paving the way for sustainable agricultural innovations.

摘要

环境和健康方面的担忧增加了对富含生物活性化合物的即食蔬菜的需求。本研究探讨了红蓝光(R:B)发光二极管对羊生菜代谢反应的影响,重点关注糖类、有机酸、总酚类、抗氧化活性和酶抑制作用。还进行了收获后分析,以评估产品的保质期和微生物特性。与对照(白色发光二极管光)相比,R:B发光二极管处理显著促进了植物生长:地上部鲜重增加了133%,干重增加了68%,叶面积增加了21%。生化分析表明,在R:B发光二极管光照下,果糖(255%)、蔗糖(169%)、柠檬酸(350%)和苹果酸(868%)大幅增加。此外,酚类含量增加了30%,同时258种次生代谢产物(包括黄酮糖苷、生物碱和萜类化合物)有显著变化。这些生化变化使抗氧化能力显著提高(在多项测定中提高了12 - 45%),α-葡萄糖苷酶抑制作用增加了300%,表明具有潜在的抗糖尿病特性。此外,收获后分析显示,R:B发光二极管种植的样品与白色发光二极管种植的样品在保质期和微生物安全性方面相当。该研究突出了发光二极管在增强植物生化反应和改善作物品质而不影响收获后品质方面的潜力,为可持续农业创新铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3719/12197136/15ed27343a7a/plants-14-01887-g001.jpg

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