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高光通过 DoHY5 依赖的信号通路触发铁皮石斛中类黄酮和多糖的合成。

High light triggers flavonoid and polysaccharide synthesis through DoHY5-dependent signaling in Dendrobium officinale.

机构信息

Institute of Medical Plant Physiology and Ecology, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, 510006, China.

Guangdong Provincial Key Lab of Ornamental Plant Germplasm Innovation and Utilization, Environmental Horticulture Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.

出版信息

Plant J. 2023 Aug;115(4):1114-1133. doi: 10.1111/tpj.16284. Epub 2023 May 26.

Abstract

Dendrobium officinale is edible and has medicinal and ornamental functions. Polysaccharides and flavonoids, including anthocyanins, are important components of D. officinale that largely determine the nutritional quality and consumer appeal. There is a need to study the molecular mechanisms regulating anthocyanin and polysaccharide biosynthesis to enhance D. officinale quality and its market value. Here, we report that high light (HL) induced the accumulation of polysaccharides, particularly mannose, as well as anthocyanin accumulation, resulting in red stems. Metabolome and transcriptome analyses revealed that most of the flavonoids showed large changes in abundance, and flavonoid and polysaccharide biosynthesis was significantly activated under HL treatment. Interestingly, DoHY5 expression was also highly induced. Biochemical analyses demonstrated that DoHY5 directly binds to the promoters of DoF3H1 (involved in anthocyanin biosynthesis), DoGMPP2, and DoPMT28 (involved in polysaccharide biosynthesis) to activate their expression, thereby promoting anthocyanin and polysaccharide accumulation in D. officinale stems. DoHY5 silencing decreased flavonoid- and polysaccharide-related gene expression and reduced anthocyanin and polysaccharide accumulation, whereas DoHY5 overexpression had the opposite effects. Notably, naturally occurring red-stemmed D. officinale plants similarly have high levels of anthocyanin and polysaccharide accumulation and biosynthesis gene expression. Our results reveal a previously undiscovered role of DoHY5 in co-regulating anthocyanin and polysaccharide biosynthesis under HL conditions, improving our understanding of the mechanisms regulating stem color and determining nutritional quality in D. officinale. Collectively, our results propose a robust and simple strategy for significantly increasing anthocyanin and polysaccharide levels and subsequently improving the nutritional quality of D. officinale.

摘要

铁皮石斛可食用,具有药用和观赏功能。多糖和类黄酮(包括花青素)是铁皮石斛的重要组成部分,在很大程度上决定了其营养价值和消费者吸引力。因此,有必要研究调控花青素和多糖生物合成的分子机制,以提高铁皮石斛的品质和市场价值。在这里,我们报道强光(HL)诱导多糖,特别是甘露糖的积累,以及花青素的积累,导致茎变红。代谢组学和转录组学分析表明,大部分类黄酮的丰度发生了较大变化,黄酮类化合物和多糖生物合成在 HL 处理下显著激活。有趣的是,DoHY5 的表达也被高度诱导。生化分析表明,DoHY5 直接与参与花青素生物合成的 DoF3H1、DoGMPP2 和 DoPMT28 的启动子结合,激活它们的表达,从而促进铁皮石斛茎中花青素和多糖的积累。DoHY5 沉默降低了类黄酮和多糖相关基因的表达,减少了花青素和多糖的积累,而 DoHY5 过表达则产生相反的效果。值得注意的是,自然存在的红茎铁皮石斛同样具有高水平的花青素和多糖积累以及生物合成基因表达。我们的研究结果揭示了 DoHY5 在 HL 条件下协同调控花青素和多糖生物合成的一个以前未被发现的作用,这提高了我们对调控茎颜色和确定铁皮石斛营养价值的机制的理解。总的来说,我们的研究结果提出了一种强有力且简单的策略,可以显著提高花青素和多糖的水平,从而提高铁皮石斛的营养价值。

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