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窄带蓝色和红色LED补光对水培罗勒在不同生长季节的关键风味挥发物有影响。

Narrowband Blue and Red LED Supplements Impact Key Flavor Volatiles in Hydroponically Grown Basil Across Growing Seasons.

作者信息

Hammock Hunter A, Kopsell Dean A, Sams Carl E

机构信息

Department of Plant Sciences, The University of Tennessee, Knoxville, Knoxville, TN, United States.

出版信息

Front Plant Sci. 2021 Feb 26;12:623314. doi: 10.3389/fpls.2021.623314. eCollection 2021.

Abstract

The use of light-emitting diodes (LEDs) in commercial greenhouse production is rapidly increasing because of technological advancements, increased spectral control, and improved energy efficiency. Research is needed to determine the value and efficacy of LEDs in comparison to traditional lighting systems. The objective of this study was to establish the impact of narrowband blue (B) and red (R) LED lighting ratios on flavor volatiles in hydroponic basil ( var. "Genovese") in comparison to a non-supplemented natural light (NL) control and traditional high-pressure sodium (HPS) lighting. "Genovese" basil was chosen because of its high market value and demand among professional chefs. Emphasis was placed on investigating concentrations of important flavor volatiles in response to specific ratios of narrowband B/R LED supplemental lighting (SL) and growing season. A total of eight treatments were used: one non-supplemented NL control, one HPS treatment, and six LED treatments (peaked at 447 nm/627 nm, ±20 nm) with progressive B/R ratios (10B/90R, 20B/80R, 30B/70R, 40B/60R, 50B/50R, and 60B/40R). Each SL treatment provided 8.64 mol ⋅ m ⋅ d (100 μmol ⋅ m ⋅ s, 24 h ⋅ d). The daily light integral (DLI) of the NL control averaged 9.5 mol ⋅ m ⋅ d during the growth period (ranging from 4 to 18 mol ⋅ m ⋅ d). Relative humidity averaged 50%, with day/night temperatures averaging 27.4°C/21.8°C, respectively. Basil plants were harvested 45 days after seeding, and volatile organic compound profiles were obtained by gas chromatography-mass spectrometry. Total terpenoid concentrations were dramatically increased during winter months under LED treatments, but still showed significant impacts during seasons with sufficient DLI and spectral quality. Many key flavor volatile concentrations varied significantly among lighting treatments and growing season. However, the concentrations of some compounds, such as methyl eugenol, were three to four times higher in the control and decreased significantly for basil grown under SL treatments. Maximum concentrations for each compound varied among lighting treatments, but most monoterpenes and diterpenes evaluated were highest under 20B/80R to 50B/50R. This study shows that supplemental narrowband light treatments from LED sources may be used to manipulate secondary metabolic resource allocation. The application of narrowband LED SL has great potential for improving overall flavor quality of basil and other high-value specialty herbs.

摘要

由于技术进步、光谱控制增强以及能源效率提高,发光二极管(LED)在商业温室生产中的应用正在迅速增加。需要开展研究以确定LED与传统照明系统相比的价值和功效。本研究的目的是确定与未补充自然光(NL)对照以及传统高压钠灯(HPS)照明相比,窄带蓝光(B)和红光(R)LED照明比例对水培罗勒(“热那亚”变种)风味挥发物的影响。选择“热那亚”罗勒是因为其市场价值高且受到专业厨师的青睐。重点在于研究重要风味挥发物的浓度对窄带B/R LED补光(SL)特定比例和生长季节的响应。总共采用了八种处理:一种未补充的NL对照、一种HPS处理以及六种LED处理(峰值在447nm/627nm,±20nm),B/R比例逐渐增加(10B/90R、20B/80R、30B/70R、40B/60R、50B/50R和60B/40R)。每种SL处理提供8.64摩尔·米⁻²·天⁻¹(100微摩尔·米⁻²·秒⁻¹,每天24小时)。NL对照的日光照积分(DLI)在生长期间平均为9.5摩尔·米⁻²·天⁻¹(范围为4至18摩尔·米⁻²·天⁻¹)。相对湿度平均为50%,白天/夜间温度分别平均为27.4°C/21.8°C。罗勒植株在播种后45天收获,通过气相色谱 - 质谱联用仪获得挥发性有机化合物谱。在冬季,LED处理下总萜类化合物浓度显著增加,但在DLI和光谱质量充足的季节仍显示出显著影响。许多关键风味挥发物浓度在照明处理和生长季节之间存在显著差异。然而,一些化合物,如甲基丁香酚,在对照中的浓度高出三到四倍,而在SL处理下生长的罗勒中显著降低。每种化合物的最大浓度在照明处理之间有所不同,但大多数评估的单萜和二萜在20B/80R至50B/50R下最高。本研究表明,来自LED光源的窄带补光处理可用于操纵次生代谢资源分配。窄带LED SL的应用在改善罗勒和其他高价值特色草药的整体风味品质方面具有巨大潜力。

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