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Overhead supplemental far-red light stimulates tomato growth under intra-canopy lighting with LEDs

机译:顶置辅助远红外线在带LED的棚内照明下刺激番茄生长

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摘要

Far-red (FR) light regulates phytochrome-mediated morphological and physiological plant responses. This study aims to investigate how greenhouse tomato morphology and production response to different durations of FR light during daytime and at the end of day (EOD). High-wire tomato plants were grown under intra-canopy lighting consisting of red (peak wavelength at 640 nm) and blue (peak wavelength at 450 nm) light-emitting diodes (LEDs) with photosynthetic photon flux density (PPFD) of 144 μmol m^–2 s^–1 at 10 cm away from the lamps, and combined with overhead supplemental FR light (peak wavelength at 735 nm) with PPFD of 43 μmol m^–2 s^–1 at 20 cm below the lamps. Plants were exposed to three durations of FR supplemental lighting including: 06:00–18:00 (FR12), 18:00–19:30 (EOD-FR1.5), 18:00–18:30 (EOD-FR0.5), and control that without supplemental FR light. The results showed that supplemental FR light significantly stimulated stem elongation thereby resulting in longer plants compared with the control. Moreover, FR light altered leaf morphology toward higher leaf length/width ratio and larger leaf area. The altered plant architecture in FR supplemented plants led to a more homogeneous light distribution inside the canopy. Total plant biomass was increased by 9–16% under supplemental FR light in comparison with control, which led to 7–12% increase in ripe fruit yield. Soluble sugar content of the ripe tomato fruit was slightly decreased by longer exposure of the plants to FR light. Dry matter partitioning to different plant organs were not substantially affected by the FR light treatments. No significant differences were observed among the three FR light treatments in plant morphology as well as yield and biomass production. We conclude that under intra-canopy lighting, overhead supplemental FR light stimulates tomato growth and production. And supplementary of EOD-FR0.5 is more favorable, as it consumes less electricity but induces similar effects on plant morphology and yield.
机译:远红外线(FR)调节植物色素介导的植物形态和生理反应。这项研究旨在调查日间和一天结束时(EOD)温室番茄的形态和生产对FR光不同持续时间的反应。高线番茄植株在冠层内部光照下生长,该冠层内部的光合光子通量密度(PPFD)为144μmol·m的红色(峰值波长为640 nm)和蓝色(峰值波长为450 nm)发光二极管(LED)。 ^ –2 s ^ –1在距灯10 cm处,并与头顶辅助FR光(峰值波长在735 nm)结合,在灯下方20 cm处PPFD为43μmolm ^ –2 s ^ –1。将植物暴露于三个持续时间的FR补充照明下,包括:06:00–18:00(FR12),18:00–19:30(EOD-FR1.5),18:00–18:30(EOD-FR0)。 5),并控制没有补充FR灯。结果表明,与对照相比,补充FR光显着刺激了茎伸长,从而导致植株更长。而且,FR光改变了叶片的形态,使其具有更高的叶片长宽比和更大的叶片面积。 FR补充植物中改变的植物结构导致冠层内部的光分布更均匀。与对照相比,在补充FR光下,植物总生物量增加了9–16%,这导致成熟果实产量增加了7–12%。成熟的番茄果实中的可溶性糖含量通过将植物长时间暴露在FR光照下而略有降低。干物质分配到不同植物器官的过程基本上不受FR光处理的影响。三种FR光处理之间在植物形态,产量和生物量生产方面均未观察到显着差异。我们得出的结论是,在冠层内部照明下,顶置辅助FR光会刺激番茄的生长和产量。补充EOD-FR0.5更为有利,因为它消耗较少的电,但对植物的形态和产量产生相似的影响。

著录项

  • 来源
    《农业科学学报:英文版》 |2019年第001期|P.62-69|共8页
  • 作者单位

    [1]Key Laboratory of Energy Conservation and Waste Management of Agricultural Structures, Ministry of Agriculture and Rural Affairs/Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agriculture Sciences, Beijing 100081, P.R.China;

    [1]Key Laboratory of Energy Conservation and Waste Management of Agricultural Structures, Ministry of Agriculture and Rural Affairs/Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agriculture Sciences, Beijing 100081, P.R.China;

    [1]Key Laboratory of Energy Conservation and Waste Management of Agricultural Structures, Ministry of Agriculture and Rural Affairs/Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agriculture Sciences, Beijing 100081, P.R.China;

    [1]Key Laboratory of Energy Conservation and Waste Management of Agricultural Structures, Ministry of Agriculture and Rural Affairs/Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agriculture Sciences, Beijing 100081, P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 农业科学;
  • 关键词

    Solanum lycopersicum; far-red light; LEDs; intro-canopy lighting; morphology; yield;

    机译:茄果;远红光;LED;棚内照明;形态;产量;
  • 入库时间 2022-08-19 04:28:34
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