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通过过表达 ScWRKY35 改变丹参次生代谢产物含量和应激反应:来自野生近缘植物鼠尾草的见解。

Changes in secondary metabolites contents and stress responses in Salvia miltiorrhiza via ScWRKY35 overexpression: Insights from a wild relative Salvia castanea.

机构信息

Zhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, 310018, China.

Agricultural Research Station, Office of VP for Research & Graduate Studies. Qatar University, 2713, Doha, Qatar.

出版信息

Plant Physiol Biochem. 2024 Jun;211:108671. doi: 10.1016/j.plaphy.2024.108671. Epub 2024 Apr 27.

Abstract

Salvia castanea Diels, a close wild relative to the medicinal plant, Salvia miltiorrhiza Bunge, primarily grows in high-altitude regions. While the two species share similar active compounds, their content varies significantly. WRKY transcription factors are key proteins, which regulate plant growth, stress response, and secondary metabolism. We identified 46 ScWRKY genes in S. castanea and found that ScWRKY35 was a highly expressed gene associated with secondary metabolites accumulation. This study aimed to explore the role of ScWRKY35 gene in regulating the accumulation of secondary metabolites and its response to UV and cadmium (Cd) exposure in S. miltiorrhiza. It was found that transgenic S. miltiorrhiza hairy roots overexpressing ScWRKY35 displayed upregulated expression of genes related to phenolic acid synthesis, resulting in increased salvianolic acid B (SAB) and rosmarinic acid (RA) contents. Conversely, tanshinone pathway gene expression decreased, leading to lower tanshinone levels. Further, overexpression of ScWRKY35 upregulated Cd transport protein HMA3 in root tissues inducing Cd sequestration. In contrast, the Cd uptake gene NRAMP1 was downregulated, reducing Cd absorption. In response to UV radiation, ScWRKY35 overexpression led to an increase in the accumulation of phenolic acid and tanshinone contents, including upregulation of genes associated with salicylic acid (SA) and jasmonic acid (JA) synthesis. Altogether, these findings highlight the role of ScWRKY35 in enhancing secondary metabolites accumulation, as well as in Cd and UV stress modulation in S. miltiorrhiza, which offers a novel insight into its phytochemistry and provides a new option for the genetic improvement of the plants.

摘要

丹参,一种与药用植物丹参密切相关的野生近缘种,主要生长在高海拔地区。虽然这两个物种具有相似的活性化合物,但它们的含量有很大的差异。WRKY 转录因子是调节植物生长、应激反应和次生代谢的关键蛋白。我们在丹参中鉴定了 46 个 ScWRKY 基因,发现 ScWRKY35 是一个与次生代谢物积累相关的高度表达基因。本研究旨在探讨 ScWRKY35 基因在调节丹参次生代谢物积累及其对 UV 和镉(Cd)暴露响应中的作用。研究发现,过表达 ScWRKY35 的丹参毛状根中与酚酸合成相关的基因表达上调,导致丹参酸 B(SAB)和迷迭香酸(RA)含量增加。相反,丹参酮途径基因的表达下调,导致丹参酮水平降低。此外,ScWRKY35 的过表达在上调根组织 Cd 转运蛋白 HMA3 的同时诱导 Cd 螯合,从而使 Cd 被隔离。相反,下调 Cd 吸收基因 NRAMP1,减少 Cd 吸收。在应对 UV 辐射时,ScWRKY35 的过表达导致酚酸和丹参酮含量的积累增加,包括与水杨酸(SA)和茉莉酸(JA)合成相关的基因上调。总之,这些发现强调了 ScWRKY35 在增强丹参次生代谢物积累以及 Cd 和 UV 胁迫调节中的作用,为其植物化学提供了新的见解,并为植物的遗传改良提供了新的选择。

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