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不同光谱下栽培的绿色和红色羽衣甘蓝嫩苗的形态和光合参数

Morphological and Photosynthetic Parameters of Green and Red Kale Microgreens Cultivated under Different Light Spectra.

作者信息

Frąszczak Barbara, Kula-Maximenko Monika, Podsędek Anna, Sosnowska Dorota, Unegbu Kingsley Chinazor, Spiżewski Tomasz

机构信息

Department of Vegetable Crops, Poznań University of Life Sciences, Dąbrowskiego 159, 60-594 Poznań, Poland.

The Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, ul. Niezapominajek 21, 30-239 Kraków, Poland.

出版信息

Plants (Basel). 2023 Nov 8;12(22):3800. doi: 10.3390/plants12223800.

Abstract

Microgreens are plants eaten at a very early stage of development, having a very high nutritional value. Among a large group of species, those from the Brassicaceae family, including kale, are very popularly grown as microgreens. Typically, microgreens are grown under controlled conditions under light-emitting diodes (LEDs). However, the effect of light on the quality of grown microgreens varies. The present study aimed to determine the effect of artificial white light with varying proportions of red (R) and blue (B) light on the morphological and photosynthetic parameters of kale microgreens with green and red leaves. The R:B ratios were for white light (W) 0.63, for red-enhanced white light (W + R) 0.75, and for white and blue light (W + B) 0.38 at 230 µmol m s PPFD. The addition of both blue and red light had a positive effect on the content of active compounds in the plants, including flavonoids and carotenoids. Red light had a stronger effect on the seedling area and the dry mass and relative chlorophyll content of red-leaved kale microgreens. Blue light, in turn, had a stronger effect on green kale, including dry mass. The W + B light combination negatively affected the chlorophyll content of both cultivars although the leaves were significantly thicker compared to cultivation under W + R light. In general, the cultivar with red leaves had less sensitivity to the photosynthetic apparatus to the spectrum used. The changes in PSII were much smaller in red kale compared to green kale. Too much red light caused a deterioration in the PSII vitality index in green kale. Red and green kale require an individual spectrum with different proportions of blue and red light at different growth stages to achieve plants with a large leaf area and high nutritional value.

摘要

微型蔬菜是在发育的非常早期阶段食用的植物,具有很高的营养价值。在一大类物种中,十字花科的那些植物,包括羽衣甘蓝,作为微型蔬菜非常受欢迎。通常,微型蔬菜在发光二极管(LED)的控制条件下生长。然而,光对生长的微型蔬菜质量的影响各不相同。本研究旨在确定具有不同比例红光(R)和蓝光(B)的人工白光对绿叶和红叶羽衣甘蓝微型蔬菜的形态和光合参数的影响。在230 μmol m⁻² s⁻¹光合光子通量密度(PPFD)下,白光(W)的R:B比为0.63,红光增强白光(W + R)为0.75,白光和蓝光(W + B)为0.38。蓝光和红光的添加对植物中活性化合物的含量有积极影响,包括类黄酮和类胡萝卜素。红光对红叶羽衣甘蓝微型蔬菜的幼苗面积、干质量和相对叶绿素含量有更强的影响。相反,蓝光对绿叶羽衣甘蓝,包括干质量,有更强的影响。W + B光组合对两个品种的叶绿素含量都有负面影响,尽管与在W + R光下栽培相比,叶片明显更厚。一般来说,红叶品种的光合机构对所用光谱的敏感性较低。与绿叶羽衣甘蓝相比,红叶羽衣甘蓝中光系统II(PSII)的变化要小得多。过多的红光导致绿叶羽衣甘蓝中PSII活力指数下降。红叶和绿叶羽衣甘蓝在不同生长阶段需要具有不同比例蓝光和红光的单独光谱,以获得具有大叶面积和高营养价值的植物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fb6/10674929/82833cfc44fa/plants-12-03800-g001.jpg

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