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补充光照对番茄果实杂交种的理化参数和抗氧化化合物有不同影响。

Supplementary Light Differently Influences Physico-Chemical Parameters and Antioxidant Compounds of Tomato Fruits Hybrids.

作者信息

Palmitessa Onofrio Davide, Durante Miriana, Caretto Sofia, Milano Francesco, D'Imperio Massimiliano, Serio Francesco, Santamaria Pietro

机构信息

Department of Agricultural and Environmental Science, University of Bari Aldo Moro, Via Amendola 165/a, 70126 Bari, Italy.

Institute of Sciences of Food Production, National Research Council of Italy, 73100 Lecce, Italy.

出版信息

Antioxidants (Basel). 2021 Apr 27;10(5):687. doi: 10.3390/antiox10050687.

Abstract

One of the challenges for agriculture in the coming years will be producing more food avoiding reducing the nutritional values of fruits and vegetables, sources of nutraceutical compounds. It has been demonstrated that light-emitting diodes (LEDs) used as a supplementary light (SL) technology improve tomato yield in Mediterranean greenhouses, but few data have been reported about SL effects on fruit physio-chemical parameters. In this study, three tomato hybrid (F1) cultivars were grown for year-round production in a commercial semi-closed glasshouse in Southern Italy: red cherry type ("Sorentyno"), red plum type ("Solarino"), and yellow plum type ("Maggino"). From 120 to 243 days after transplant (DAT), Red/White/Blue LEDs were used as SL. The fruits harvested 180 DAT were analyzed and those obtained under LEDs had 3% more dry weight, 15% more total soluble solids, and 16% higher titratable acidity than fruits grown only under natural light. Generally, the antioxidant activity and the mineral profile of the fruits were not negatively influenced by SL. Lycopene content was unchanged and vitamin C content of "Sorentyno" even increased by 15% under LEDs. Overall, LEDs used as SL technology could be one of the tools used by agriculture in Mediterranean basin to produce more food maintaining high quality production.

摘要

未来几年农业面临的挑战之一将是在不降低水果和蔬菜(营养保健化合物的来源)营养价值的情况下生产更多食物。事实证明,用作补光(SL)技术的发光二极管(LED)可提高地中海温室中番茄的产量,但关于补光对果实理化参数影响的数据报道较少。在本研究中,三个番茄杂交(F1)品种在意大利南部一个商业化的半封闭温室中进行全年种植:红色樱桃型(“索伦蒂诺”)、红色李子型(“索拉利诺”)和黄色李子型(“马吉诺”)。在移栽后120至243天(DAT),使用红/白/蓝LED作为补光。对移栽后180天收获的果实进行分析,结果表明,与仅在自然光下生长的果实相比,在LED补光条件下获得的果实干重增加3%,总可溶性固形物增加15%,可滴定酸度提高16%。总体而言,补光对果实的抗氧化活性和矿物质含量没有负面影响。番茄红素含量没有变化,在LED补光条件下,“索伦蒂诺”的维生素C含量甚至增加了15%。总体而言,用作补光技术的LED可能是地中海盆地农业用于生产更多食物并保持高质量生产的工具之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5f5/8145936/8de78e16a921/antioxidants-10-00687-g001.jpg

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