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石蒜碱和 UV-C 刺激莱茵衣藻中酚类次生代谢物的产生和 miRNA 表达。

Lycorine and UV-C stimulate phenolic secondary metabolites production and miRNA expression in Chlamydomonas reinhardtii.

机构信息

Department of Chemistry and Biochemistry, Mendel University in Brno, Zemedelska 1, 613 00 Brno, Czech Republic.

Department of Chemistry and Biochemistry, Mendel University in Brno, Zemedelska 1, 613 00 Brno, Czech Republic; Central European Institute of Technology, Brno University of Technology, Purkynova 656/123, Brno, Czech Republic.

出版信息

J Hazard Mater. 2020 Jun 5;391:122088. doi: 10.1016/j.jhazmat.2020.122088. Epub 2020 Jan 26.

Abstract

Studying stress pathways on the level of secondary metabolites that are found in very small concentration in the cells is complicated. In the algae, the role of individual metabolites (such as carotenoids, phenolic compounds, organic acids, and vitamins) and miRNAs that participate in plant's defence are very poorly understood during stressful conditions. Therefore, in the present experiment, the model organism Chlamydomonas reinhardtii was exposed to stress conditions (Lyc and UV-C irradiation) to detect these substances, even at very low concentrations. The purpose was to monitored changes at each response level with a future view to identifying their specific roles under different stress factors. In stress-treated cultures, numerous transcriptomic and metabolomic pathways were triggered in C. reinhardtii. Although Lyc significantly decreased the concentration of AA, suggesting that Lyc has a similar function in C. reinhardtii as in plants. The negative effect of UV-C radiation was based on the production of ROS and enhancement of antioxidant responses, resulting in increased levels of polyphenols and simple phenolic compounds. Both treatments did lead to extensive changes in transcript levels and miRNA expression patterns.

摘要

研究细胞中含量非常低的次生代谢产物的应激途径很复杂。在藻类中,在应激条件下(Lyc 和 UV-C 辐射),个体代谢物(如类胡萝卜素、酚类化合物、有机酸和维生素)和参与植物防御的 miRNAs 的作用非常不清楚。因此,在本实验中,使用模式生物莱茵衣藻来检测这些物质,即使在非常低的浓度下也是如此。目的是监测每个反应水平的变化,以期在不同的应激因素下确定它们的特定作用。在应激处理的培养物中,莱茵衣藻中触发了许多转录组和代谢组途径。虽然 Lyc 显著降低了 AA 的浓度,表明 Lyc 在莱茵衣藻中的功能与在植物中相似。UV-C 辐射的负面影响基于 ROS 的产生和抗氧化反应的增强,导致多酚和简单酚类化合物水平的增加。两种处理都导致了转录水平和 miRNA 表达模式的广泛变化。

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