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芥菜芽苗菜对不同波长和时长的UV-A发光二极管的响应

Response of Mustard Microgreens to Different Wavelengths and Durations of UV-A LEDs.

作者信息

Brazaitytė Aušra, Viršilė Akvilė, Samuolienė Giedrė, Vaštakaitė-Kairienė Viktorija, Jankauskienė Julė, Miliauskienė Jurga, Novičkovas Algirdas, Duchovskis Pavelas

机构信息

Institute of Horticulture, Lithuanian Research Centre for Agriculture and Forestry, Babtai, Lithuania.

出版信息

Front Plant Sci. 2019 Oct 17;10:1153. doi: 10.3389/fpls.2019.01153. eCollection 2019.

Abstract

Ultraviolet A (UV-A) light-emitting diodes (LEDs) could serve as an effective tool for improving the content of health-promoting bioactive compounds in plants in controlled-environment agriculture (CEA) systems. The goal of this study was to investigate the effects of UV-A LEDs at different wavelengths (366, 390, and 402 nm) and durations (10 and 16 h) on the growth and phytochemical contents of mustard microgreens ( L. cv. "Red Lion"), when used as supplemental light to the main LED lighting system (with peak wavelengths of 447, 638, 665, and 731 nm). Plants were grown for 10 days under a total photon flux density (TPFD) of 300 µmol m s and 16-h light/8-h dark period. Different UV-A wavelengths and irradiance durations had varied effects on mustard microgreens. Supplemental UV-A radiation did not affect biomass accumulation; however, the longest UV-A wavelength (402 nm) increased the leaf area of mustard microgreens, regardless of the duration of irradiance. The concentration of the total phenolic content and α-tocopherol mostly increased under 402-nm UV-A, while that of nitrates increased under 366- and 390-nm UV-A at both radiance durations. The contents of lutein/zeaxanthin and β-carotene increased in response to the shortest UV-A wavelength (366 nm) at 10-h irradiance as well as longer UV-A wavelength (390 nm) at 16 h irradiance. The most positive effect on the accumulation of mineral elements, except iron, was observed under longer UV-A wavelengths at 16-h irradiance. Overall, these results suggest that properly composed UV-A LED parameters in LED lighting systems could improve the nutritional quality of mustard microgreens, without causing any adverse effects on plant growth.

摘要

在可控环境农业(CEA)系统中,紫外A(UV-A)发光二极管(LED)可作为提高植物中促进健康的生物活性化合物含量的有效工具。本研究的目的是探究不同波长(366、390和402纳米)和时长(10和16小时)的UV-A LED作为主要LED照明系统(峰值波长为447、638、665和731纳米)的补充光时,对芥菜嫩苗(L. cv. “Red Lion”)生长和植物化学物质含量的影响。植物在总光子通量密度(TPFD)为300 µmol m s且光照/黑暗周期为16小时/8小时的条件下生长10天。不同的UV-A波长和辐照时长对芥菜嫩苗有不同影响。补充UV-A辐射不影响生物量积累;然而,无论辐照时长如何,最长的UV-A波长(402纳米)增加了芥菜嫩苗的叶面积。总酚含量和α-生育酚的浓度在402纳米UV-A照射下大多增加,而在两个辐照时长下,硝酸盐浓度在366和390纳米UV-A照射下增加。叶黄素/玉米黄质和β-胡萝卜素的含量在10小时辐照下对最短的UV-A波长(366纳米)以及在16小时辐照下对较长的UV-A波长(390纳米)有响应而增加。在16小时辐照下较长的UV-A波长照射下,观察到对除铁以外的矿质元素积累的最积极影响。总体而言,这些结果表明,LED照明系统中适当组合的UV-A LED参数可以提高芥菜嫩苗的营养品质,而不会对植物生长造成任何不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7246/6811603/2332c86b3ef6/fpls-10-01153-g001.jpg

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