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生物钟基因参与调控白菜中的硫代葡萄糖苷。

The Circadian Clock Gene Is Involved in the Regulation of Glucosinolates in Chinese Cabbage.

机构信息

Department of Agricultural Biotechnology, National Institute of Agricultural Science, Rural Development Administration, Jeonju 54874, Korea.

Department of Plant Science and Technology, Chung-Ang University, Anseong 17546, Korea.

出版信息

Genes (Basel). 2021 Oct 22;12(11):1664. doi: 10.3390/genes12111664.

Abstract

Circadian clocks integrate environmental cues with endogenous signals to coordinate physiological outputs. Clock genes in plants are involved in many physiological and developmental processes, such as photosynthesis, stomata opening, stem elongation, light signaling, and floral induction. Many family plants, including Chinese cabbage ( ssp. ), produce a unique glucosinolate (GSL) secondary metabolite, which enhances plant protection, facilitates the design of functional foods, and has potential medical applications (e.g., as antidiabetic and anticancer agents). The levels of GSLs change diurnally, suggesting a connection to the circadian clock system. We investigated whether circadian clock genes affect the biosynthesis of GSLs in using RNAi-mediated suppressed transgenic   homolog ( knockdown; hereafter GK1) Chinese cabbage. plays an important role in the plant circadian clock system and is related to various developmental and metabolic processes. Using a validated GK1 transgenic line, we performed RNA sequencing and high-performance liquid chromatography analyses. The transcript levels of many GSL pathway genes were significantly altered in GK1 transgenic plants. In addition, GSL contents were substantially reduced in GK1 transgenic plants. We report that the circadian clock gene is required for the biosynthesis of GSLs in Chinese cabbage plants.

摘要

生物钟将环境线索与内源性信号整合在一起,以协调生理输出。植物中的时钟基因参与许多生理和发育过程,如光合作用、气孔开放、茎伸长、光信号和花诱导。许多芸薹属植物,包括白菜( ssp. ),会产生一种独特的硫代葡萄糖苷(GSL)次生代谢物,这增强了植物的保护作用,有利于功能性食品的设计,并具有潜在的医学应用(例如,作为抗糖尿病和抗癌药物)。GSL 的水平会随昼夜变化,这表明其与生物钟系统有关。我们使用 RNAi 介导的抑制拟南芥同源物(敲低;以下简称 GK1)白菜的转基因  来研究生物钟基因是否会影响 GSL 的生物合成。 在植物生物钟系统中起着重要作用,与各种发育和代谢过程有关。使用经过验证的 GK1 转基因系,我们进行了 RNA 测序和高效液相色谱分析。在 GK1 转基因植物中,许多 GSL 途径基因的转录水平显著改变。此外,GSL 含量在 GK1 转基因植物中也显著降低。我们报告称,生物钟基因是白菜植物 GSL 生物合成所必需的。

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