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Polychromatic Supplemental Lighting from underneath Canopy Is More Effective to Enhance Tomato Plant Development by Improving Leaf Photosynthesis and Stomatal Regulation

机译:冠层下方的多色辅助照明通过改善叶片的光合作用和气孔调节更有效地促进了番茄的发育

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摘要

Light insufficient stress caused by canopy interception and mutual shading is a major factor limiting plant growth and development in intensive crop cultivation. Supplemental lighting can be used to give light to the lower canopy leaves and is considered to be an effective method to cope with low irradiation stress. Leaf photosynthesis, stomatal regulation, and plant growth and development of young tomato plants were examined to estimate the effects of supplemental lighting with various composite spectra and different light orientations. Light-emitting diodes (LEDs) of polychromatic light quality, red + blue (R/B), white + red + blue (W/R/B), white + red + far-red (W/R/FR), and white + blue (W/B) were assembled from the underneath canopy or from the inner canopy as supplemental lighting resources. The results showed that the use of supplemental lighting significantly increased the photosynthetic efficiency, and reduced stomatal closure while promoting plant growth. Among all supplemental lighting treatments, the W/R/B and W/B from the underneath canopy had best performance. The different photosynthetic performances among the supplemental lighting treatments are resulted from variations in CO2 utilization. The enhanced blue light fraction in the W/R/B and W/B could better stimulate stomatal opening and promote photosynthetic electron transport activity, thus better improving photosynthetic rate. Compared with the inner canopy treatment, the supplemental lighting from the underneath canopy could better enhance the carbon dioxide assimilation efficiency and excessive energy dissipation, leading to an improved photosynthetic performance. Stomatal morphology was highly correlated to leaf photosynthesis and plant development, and should thus be an important determinant for the photosynthesis and the growth of greenhouse tomatoes.
机译:由冠层截留和相互遮蔽引起的轻度胁迫不足是限制集约型作物栽培中植物生长和发育的主要因素。辅助照明可用于为下部冠层叶片提供光,并且被认为是应对低辐照应力的有效方法。检查了叶片的光合作用,气孔调节以及年轻番茄植株的生长发育,以估计具有各种复合光谱和不同光定向的补充照明的效果。具有多色光质量的发光二极管(LED),红色+蓝色(R / B),白色+红色+蓝色(W / R / B),白色+红色+远红色(W / R / FR)和白色+蓝色(W / B)是从树冠下面或树冠内部组装而成的,作为补充照明资源。结果表明,补充照明的使用显着提高了光合效率,并减少了气孔关闭,同时促进了植物的生长。在所有辅助照明处理中,顶棚下方的W / R / B和W / B表现最佳。补充照明处理之间不同的光合作用性能是由于CO2利用率的变化而引起的。 W / R / B和W / B中增强的蓝光分数可以更好地刺激气孔开放并促进光合电子传输活性,从而更好地提高光合速率。与内部冠层处理相比,来自下部冠层的辅助照明可以更好地提高二氧化碳的吸收效率和过多的能量耗散,从而改善光合性能。气孔形态与叶片的光合作用和植物发育高度相关,因此应该成为决定温室番茄光合作用和生长的重要因素。

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