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光质诱导白菜类蔬菜(白菜亚种)类胡萝卜素组成的变化。

Light quality-induced changes of carotenoid composition in pak choi Brassica rapa ssp. chinensis.

机构信息

Leibniz Institute of Vegetable and Ornamental Crops, Plant Quality and Food Security, Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany; University of Potsdam, Institute of Nutritional Science, Department of Food Chemistry, Arthur-Scheunert-Allee 114-116, 14558 Nuthetal, Germany.

Leibniz Institute of Vegetable and Ornamental Crops, Plant Quality and Food Security, Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany.

出版信息

J Photochem Photobiol B. 2019 Apr;193:18-30. doi: 10.1016/j.jphotobiol.2019.02.001. Epub 2019 Feb 13.

Abstract

Carotenoids as part of the photosystems are crucial for their assembly, light-harvesting, and photoprotection. Light of different wavelengths impacts the composition and structure of photosystems, thus offering the possibility to influence the carotenoid concentrations and composition in photosystems by illumination with specific narrow-banded light spectra. Key components involved in the regulation of gene transcription are still poorly characterized, particularly in leafy vegetables as compared to model plants. In particular, the effect of different light qualities and its connection to redox control mechanisms, which also determine the photosystem composition and structure, is not yet well understood. Furthermore, light quality effects are species-dependent, and thus, increase the need to perform research on individual vegetable species such as pak choi Brassica rapa ssp. chinensis. Here, we investigated the carotenoid concentrations and composition of pak choi sprouts grown for 6 days under blue, red, or white light emitting diodes (LEDs) as light source. After 6 days, the total carotenoid content was the highest under white and slightly reduced under blue or red LEDs. Blue, red, and white light differently affected the carotenoid composition mainly due to variations of the β-carotene content which could be correlated to changes in the transcript levels of β-carotene hydroxylase 1 (β-OHASE1). Further investigations implied a redox controlled gene expression of β-OHASE1. In addition, transcription factors related to light signaling and the circadian clock differed in their transcriptional abundance after exposure to blue and red light. RNA-Seq analysis also revealed increased transcript levels of genes encoding the outer antenna complex of photosystem II under red compared to blue light, indicating an adjustment of the photosystems to the different light qualities which possibly contributed to the alternations in the carotenoid content and composition.

摘要

类胡萝卜素作为光系统的一部分,对于它们的组装、光捕获和光保护至关重要。不同波长的光会影响光系统的组成和结构,因此通过特定的窄带光谱照明,可以影响光系统中类胡萝卜素的浓度和组成。参与基因转录调控的关键成分仍未得到充分描述,特别是与模式植物相比,在叶类蔬菜中。特别是,不同光质的影响及其与氧化还原控制机制的联系,这也决定了光系统的组成和结构,尚未得到很好的理解。此外,光质效应是物种依赖性的,因此,需要对个体蔬菜物种(如白菜 Brassica rapa ssp. chinensis)进行研究。在这里,我们研究了在蓝色、红色或白色发光二极管(LED)作为光源下生长 6 天的白菜芽中类胡萝卜素的浓度和组成。6 天后,白光下的总类胡萝卜素含量最高,蓝光或红光下略有降低。蓝光、红光和白光对类胡萝卜素组成的影响不同,主要是由于β-胡萝卜素含量的变化,这可以与β-胡萝卜素羟化酶 1(β-OHASE1)的转录水平变化相关。进一步的研究表明,β-OHASE1 的基因表达受到氧化还原控制。此外,在暴露于蓝光和红光后,与光信号和生物钟相关的转录因子在转录丰度上存在差异。RNA-Seq 分析还显示,与蓝光相比,红光下编码光系统 II 外天线复合物的基因的转录本水平升高,表明光系统对不同光质的调整,这可能有助于类胡萝卜素含量和组成的变化。

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