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在红蓝发光二极管光中添加远红光可提高不同种植密度下生菜的产量。

Adding Far-Red to Red-Blue Light-Emitting Diode Light Promotes Yield of Lettuce at Different Planting Densities.

作者信息

Jin Wenqing, Urbina Jorge Leigh, Heuvelink Ep, Marcelis Leo F M

机构信息

Horticulture and Product Physiology, Department of Plant Sciences, Wageningen University and Research, Wageningen, Netherlands.

Priva, De Lier, Netherlands.

出版信息

Front Plant Sci. 2021 Jan 15;11:609977. doi: 10.3389/fpls.2020.609977. eCollection 2020.

Abstract

The economic viability and energy use of vertical farms strongly depend on the efficiency of the use of light. Increasing far-red radiation (FR, 700-800 nm) relative to photosynthetically active radiation (PAR, 400-700 nm) may induce shade avoidance responses including stem elongation and leaf expansion, which would benefit light interception, and FR might even be photosynthetically active when used in combination with PAR. The aims of this study are to investigate the interaction between FR and planting density and to quantify the underlying components of the FR effects on growth. Lettuce ( cv. Expertise RZ) was grown in a climate chamber under two FR treatments (0 or 52 μmol m s) and three planting densities (23, 37, and 51 plants m). PAR of 89% red and 11% blue was kept at 218 μmol m s. Adding FR increased plant dry weight after 4 weeks by 46-77% (largest effect at lowest planting density) and leaf area by 58-75% (largest effect at middle planting density). Radiation use efficiency (RUE: plant dry weight per unit of incident radiation, 400-800 nm) increased by 17-42% and incident light use efficiency (LUE: plant dry weight per unit of incident PAR, 400-700 nm) increased by 46-77% by adding FR; the largest FR effects were observed at the lowest planting density. Intercepted light use efficiency (LUE: plant dry weight per unit of intercepted PAR) increased by adding FR (8-23%). Neither specific leaf area nor net leaf photosynthetic rate was influenced by FR. We conclude that supplemental FR increased plant biomass production mainly by faster leaf area expansion, which increased light interception. The effects of FR on plant dry weight are stronger at low than at high planting density. Additionally, an increased LUE may contribute to the increased biomass production.

摘要

垂直农场的经济可行性和能源利用在很大程度上取决于光照利用效率。相对于光合有效辐射(PAR,400 - 700纳米)增加远红光辐射(FR,700 - 800纳米)可能会引发避荫反应,包括茎伸长和叶片扩展,这将有利于光截获,并且当与PAR结合使用时,FR甚至可能具有光合活性。本研究的目的是调查FR与种植密度之间的相互作用,并量化FR对生长影响的潜在组成部分。生菜(品种Expertise RZ)在气候箱中生长,设置两种FR处理(0或52微摩尔·米⁻²·秒⁻¹)和三种种植密度(23、37和51株·米⁻²)。PAR中89%为红光和11%为蓝光,保持在218微摩尔·米⁻²·秒⁻¹。添加FR使4周后植物干重增加了46 - 77%(最低种植密度下效果最大),叶面积增加了58 - 75%(中等种植密度下效果最大)。辐射利用效率(RUE:单位入射辐射(400 - 800纳米)的植物干重)通过添加FR增加了17 - 42%,入射光利用效率(LUE:单位入射PAR(400 - 700纳米)的植物干重)通过添加FR增加了46 - 77%;在最低种植密度下观察到最大的FR效应。截获光利用效率(LUE:单位截获PAR的植物干重)通过添加FR增加了(8 - 23%)。FR对比叶面积和净叶片光合速率均无影响。我们得出结论,补充FR主要通过更快的叶面积扩展增加了植物生物量生产,这增加了光截获。FR对植物干重的影响在低种植密度下比高种植密度下更强。此外,LUE的增加可能有助于生物量生产的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83b5/7845693/2be44b8d263d/fpls-11-609977-g001.jpg

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