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光调控的生长、解剖结构、代谢物生物合成及转录变化 于……中 (原文句子不完整,信息不明确)

Light-Regulated Growth, Anatomical, Metabolites Biosynthesis and Transcriptional Changes in .

作者信息

Su Hongyan, Cui Xiuwen, Zhao Yan, Li Mengfei, Wei Jianhe, Paré Paul W

机构信息

State Key Laboratory of Arid Land Crop Science, College of Agronomy, Gansu Agricultural University, Lanzhou 730070, China.

National and Local Joint Engineering Research Center on Germplasms Innovation and Utilization of Chinese Medicinal Materials in Southwest China, Yunnan Agricultural University, Kunming 650500, China.

出版信息

Plants (Basel). 2024 Sep 30;13(19):2744. doi: 10.3390/plants13192744.

Abstract

is an alpine medicinal plant that has been widely used as a general blood tonic and gynecological indications over 2000 years, which depend on the bioactive metabolites (e.g., volatile oils, organic acids, and flavonoids). Although the accumulation of these metabolites is significantly affected by the environmental factors (e.g., altitude, temperature, and sunshine) as found in previous studies, the regulatory mechanism of different lights has not been clearly revealed. Here, growth parameters, contents of bioactive metabolites, and expression levels of related genes were examined when was exposed to different white-light (WL) and UV-B radiation treatments. The results showed that the differences in growth parameters (e.g., plant height, root length, and plant biomass) and leaf tissue characteristics (e.g., leaf thickness, stomatal density and shape, and chloroplast density) were observed under different light treatments. The contents of Z-ligustilide and ferulic acid elevated with the increase of WL (50 to 150 µmol·m/s) and maximized under the combination of WL-100 and UV-B (107 µW/m, UV-107) radiation, while the total flavonoids and polysaccharides contents, as well as in vitro antioxidant capacity, elevated with the increasing of WL and UV-B. mRNA transcripts encoding for the biosynthesis of volatile oils, ferulic acid, flavonoids, and polysaccharides were found to be differentially regulated under the different WL and UV-B treatments. These morphological, anatomical, and transcriptional changes are consistent with the elevated bioactive metabolites in under the combination of WL and UV-B. These findings will provide useful references for improving bioactive metabolite production via the cultivation and bioengineering of .

摘要

是一种高山药用植物,2000多年来一直被广泛用作一般补血剂和妇科用药,其功效取决于生物活性代谢物(如挥发油、有机酸和黄酮类化合物)。尽管如先前研究所发现的,这些代谢物的积累受到环境因素(如海拔、温度和光照)的显著影响,但不同光照的调控机制尚未明确揭示。在此,当该植物暴露于不同的白光(WL)和UV - B辐射处理下时,检测了其生长参数、生物活性代谢物含量以及相关基因的表达水平。结果表明,在不同光照处理下观察到了生长参数(如株高、根长和植物生物量)和叶片组织特征(如叶片厚度、气孔密度和形状以及叶绿体密度)的差异。Z - 藁本内酯和阿魏酸的含量随着白光强度(50至150 μmol·m/s)的增加而升高,并在白光100和UV - B(107 μW/m,UV - 107)辐射组合下达到最大值,而总黄酮和多糖含量以及体外抗氧化能力则随着白光和UV - B强度的增加而升高。发现在不同的白光和UV - B处理下,编码挥发油、阿魏酸、黄酮类化合物和多糖生物合成的mRNA转录本受到差异调控。这些形态、解剖和转录变化与白光和UV - B组合处理下该植物生物活性代谢物的升高一致。这些发现将为通过该植物的栽培和生物工程提高生物活性代谢物产量提供有用的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c98b/11478417/f494ac7fba9c/plants-13-02744-g001.jpg

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