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光谱质量对番茄和洋桔梗气体交换、生物量积累及水分利用效率日变化模式的影响:全株测量评估

The Effect of Spectral Quality on Daily Patterns of Gas Exchange, Biomass Gain, and Water-Use-Efficiency in Tomatoes and Lisianthus: An Assessment of Whole Plant Measurements.

作者信息

Lanoue Jason, Leonardos Evangelos D, Ma Xiao, Grodzinski Bernard

机构信息

Department of Plant Agriculture, University of GuelphGuelph, ON, Canada.

出版信息

Front Plant Sci. 2017 Jun 20;8:1076. doi: 10.3389/fpls.2017.01076. eCollection 2017.

Abstract

Advancements in light-emitting diode (LED) technology have made them a viable alternative to current lighting systems for both sole and supplemental lighting requirements. Understanding how wavelength specific LED lighting can affect plants is thus an area of great interest. Much research is available on the wavelength specific responses of leaves from multiple crops when exposed to long-term wavelength specific lighting. However, leaf measurements do not always extrapolate linearly to the complexities which are found within a whole plant canopy, namely mutual shading and leaves of different ages. Taken together, both tomato () leaves under short-term illumination and lisianthus () and tomato whole plant diurnal patterns of plants acclimated to specific lighting indicate wavelength specific responses of both HO and CO gas exchanges involved in the major growth parameters of a plant. Tomato leaves grown under a white light source indicated an increase in transpiration rate and internal CO concentration and a subsequent decrease in water-use-efficiency (WUE) when exposed to a blue LED light source compared to a green LED light source. Interestingly, the maximum photosynthetic rate was observed to be similar. Using plants grown under wavelength specific supplemental lighting in a greenhouse, a decrease in whole plant WUE was seen in both crops under both red-blue (RB) and red-white (RW) LEDs when compared to a high pressure sodium (HPS) light. Whole plant WUE was decreased by 31% under the RB LED treatment for both crops compared to the HPS treatment. Tomato whole plant WUE was decreased by 25% and lisianthus whole plant WUE was decreased by 15% when compared to the HPS treatment when grown under RW LED. The understanding of the effects of wavelength specific lighting on both leaf and whole plant gas exchange has significant implications on basic academic research as well as commercial greenhouse production.

摘要

发光二极管(LED)技术的进步使其成为满足单一和补充照明需求的现有照明系统的可行替代品。因此,了解特定波长的LED照明如何影响植物是一个备受关注的领域。关于多种作物的叶片在长期暴露于特定波长照明下的特定波长响应,已有大量研究。然而,叶片测量结果并不总是能线性外推到整个植物冠层内的复杂情况,即相互遮荫和不同年龄的叶片。综合来看,短期光照下的番茄()叶片以及适应特定光照的洋桔梗()和番茄整株植物的昼夜模式表明,参与植物主要生长参数的HO和CO气体交换都存在特定波长响应。与绿色LED光源相比,在白色光源下生长的番茄叶片在暴露于蓝色LED光源时,蒸腾速率和内部CO浓度增加,随后水分利用效率(WUE)降低。有趣的是,最大光合速率相似。在温室中使用在特定波长补充光照下生长的植物,与高压钠灯(HPS)相比,在红蓝(RB)和红白(RW)LED光照下,两种作物的整株WUE均下降。与HPS处理相比,两种作物在RB LED处理下的整株WUE均下降了31%。与HPS处理相比,在RW LED下生长时,番茄整株WUE下降了25%,洋桔梗整株WUE下降了15%。了解特定波长照明对叶片和整株植物气体交换的影响,对基础学术研究以及商业温室生产都具有重要意义。

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