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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Pulsed Light-Emitting Diodes for a Higher Phytochemical Level in Microgreens
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Pulsed Light-Emitting Diodes for a Higher Phytochemical Level in Microgreens

机译:脉冲发光二极管,用于微血管的更高植物化学水平

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摘要

A novel research of pulsed light-emitting diode (LED) lighting versus continuous lighting was conducted by analyzing phytochemical levels in microgreens. Red pak choi (Brassica rapa var. chinensis), mustard (Brassica juncea L.), and tatsoi (Brassica rapa var. rosularis) were grown indoors under HPS lamps supplemented with monochromatic (455, 470, 505, 590, and 627 nm) LEDs [total photosynthetic photon flux density (PPFD) of 200 ± 10 μmol m–2 s–1, for 16 h day–1]. For pulsed light treatments, the frequencies at 2, 32, 256, and 1024 Hz with a duty cycle of 50% monochromatic LEDs were applied. The results were compared to those under the continuous light (0 Hz) condition in terms of total phenolic content, anthocyanins, and antiradical activity (DPPH). The summarized data suggested that pulsed light affected accumulation of secondary metabolites both positive and negative in microgreens. The significant differences in the response of phytochemicals between pulsed light at several frequencies and continuous light were determined. The most positive effects of 2, 256, and 1024 Hz for total phenolic compounds in mustard under all wavelength LEDs were achieved. The LED frequencies at 2 and 32 Hz were the most suitable for accumulation of anthocyanins in red pak choi and tatsoi. The highest antiradical activity under the treatments of 32, 256, and 1024 Hz in mustard and under the 2 Hz frequency in red pak choi and tatsoi was determined.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jafcau/2017/jafcau.2017.65.issue-31/acs.jafc.7b01214/ 20170803 / Images / Medium / JF-2017-012142_0001.gif“>通过分析微血管的植物化学水平进行脉冲发光二极管(LED)照明与连续照明的新颖研究。 Red Pak Choi( Brassica Rapa var。 chinensis ),芥末(芸苔juncea l.),和tatsoi( brassica rapa var。 rosularis )在室内生长,在补充有单色(455,470,505,590和627nm)LED的HPS灯下[总光合光子通量密度(PPFD)为200±10μmol m -2 s -1 ,16小时 -1 ]。对于脉冲光处理,施加2,32,256和1024Hz的频率,占用50%单色LED的占空比。将结果与总酚类含量,花青素和抗动物活性(DPPH)的连续光(0Hz)条件进行比较。总结数据表明,微生物中脉冲光影响次级代谢物的积极和阴性。确定了在多个频率和连续光的脉冲光之间的植物化学物质响应的显着差异。达到了所有波长LED下芥末料中总酚类化合物的最大效果为2,256和1024Hz。 2和32 Hz的LED频率是最适合于红PAK CHOI和TATSOI中的花青素积累。确定在32,256和1024Hz的治疗中的最高抗抗抗抗抗抗抗血管活性,并在红色PAK CHOI和TATSOI下的2 Hz频率下进行。]>

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  • 作者单位

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

    Institute of Applied Research Vilnius University Saul?tekio Al?ja 9 Building III LT-10222 Vilnius Lithuania;

    Laboratory of Plant Physiology Institute of Horticulture Lithuanian Research Centre for Agriculture and Forestry Kaunas Street 30 LT-54333 Babtai Kaunas District Lithuania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 营养卫生、食品卫生;农业科学;
  • 关键词

    anthocyanins; continuous lighting; light-emitting diodes; microgreens; phenols; pulsed light;

    机译:花青素;连续照明;发光二极管;微僵;酚;脉冲光;

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