Rabara Roel C, Behrman Glenn, Timbol Thomas, Rushton Paul J
Texas A&M AgriLife Research and Extension Center Dallas, TX, USA.
CEA Advisors LLC Dallas, TX, USA.
Front Plant Sci. 2017 Feb 17;8:190. doi: 10.3389/fpls.2017.00190. eCollection 2017.
Indoor farming is becoming a popular alternative approach in food production to meet the demand of a growing world population. Under this production system, artificial light provides the main source of illumination in sustaining plant growth and development. The use of light-emitting diodes (LEDs) is a popular source of artificial light for indoor farms due to its narrow light spectra, modular design and energy efficiency. This study purposely assessed the effect of monochromatic LED light quality on the growth of three varieties of artichoke seedlings compared to greenhouse condition. Spectral quality assessment showed that photosynthetic photon flux density (PPFD) was highest under red LED light, but only a third of the total PPFD under natural light. Seedlings grown under red light showed 60-100% more shoot dry weight and were 67-115% taller than seedlings grown in the greenhouse. However, seedlings under blue or white light conditions showed 67-76% less in biomass compared to greenhouse-grown seedlings. Overall, plant response of seedlings under red light condition was much better compared to greenhouse-grown seedlings emphasizing the importance of red light spectral quality in plant growth and development.
室内种植正成为一种受欢迎的替代粮食生产方式,以满足不断增长的世界人口的需求。在这种生产系统下,人工光源是维持植物生长和发育的主要光照来源。发光二极管(LED)因其窄光谱、模块化设计和能源效率,成为室内农场常用的人工光源。本研究旨在评估单色LED光质对三种洋蓟幼苗生长的影响,并与温室条件进行比较。光谱质量评估表明,红色LED光下的光合光子通量密度(PPFD)最高,但仅为自然光下总PPFD的三分之一。在红光下生长的幼苗地上部干重比温室中生长的幼苗多60-100%,高度高67-115%。然而,与温室种植的幼苗相比,蓝光或白光条件下的幼苗生物量减少了67-76%。总体而言,与温室种植的幼苗相比,红光条件下幼苗的植物反应要好得多,这突出了红光光谱质量在植物生长发育中的重要性。