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一个碱性亮氨酸拉链转录因子 AabZIP1 将脱落酸信号与青蒿中的青蒿素生物合成联系起来。

A basic leucine zipper transcription factor, AabZIP1, connects abscisic acid signaling with artemisinin biosynthesis in Artemisia annua.

机构信息

Key Laboratory of Urban Agriculture (South) Ministry of Agriculture, Plant Biotechnology Research Center, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

SWU-TAAHC Medicinal Plant Joint R&D Centre, School of Life Sciences, Southwest University, Chongqing 400715, China.

出版信息

Mol Plant. 2015 Jan;8(1):163-75. doi: 10.1016/j.molp.2014.12.004. Epub 2014 Dec 15.

Abstract

Artemisinin is a sesquiterpenoid especially synthesized in the Chinese herbal plant, Artemisia annua, which is widely used in the treatment of malaria. Artemisinin accumulation can be enhanced by exogenous abscisic acid (ABA) treatment. However, it is not known how ABA signaling regulates artemisinin biosynthesis. A global expression profile and phylogenetic analysis as well as the dual-LUC screening revealed that a basic leucine zipper family transcription factor from A. annua (namely AabZIP1) was involved in ABA signaling to regulate artemisinin biosynthesis. AabZIP1 had a higher expression level in the inflorescences than in other tissues; ABA treatment, drought, and salt stress strongly induced the expression of AabZIP1. Yeast one-hybrid assay and electrophoretic mobility shift assay (EMSA) showed that AabZIP1 bound to the ABA-responsive elements (ABRE) in the promoter regions of the amorpha-4,11-diene synthase (ADS) gene and CYP71AV1, which are two key structural genes of the artemisinin biosynthetic pathway. A mutagenesis assay showed that the C1 domain in the N-terminus of AabZIP1 was important for its transactivation activity. Furthermore, the activation of ADS and CYP71AV1 promoters by AabZIP1 was enhanced by ABA treatment in transient dual-LUC analysis. The AabZIP1 variant with C1 domain deletion lost the ability to activate ADS and CYP71AV1 promoters regardless of ABA treatment. Notably, overexpression of AabZIP1 in A. annua resulted in significantly increased accumulation of artemisinin. Our results indicate that ABA promotes artemisinin biosynthesis, likely through 1 activation of ADS and CYP71AV1 expression by AabZIP in A. annua. Meanwhile, our findings reveal the potential value of AabZIP1 in genetic engineering of artemisinin production.

摘要

青蒿素是一种倍半萜,特别是在中国草药植物黄花蒿中合成的,广泛用于治疗疟疾。外源脱落酸(ABA)处理可以增强青蒿素的积累。然而,目前尚不清楚 ABA 信号如何调节青蒿素生物合成。通过全局表达谱和系统发育分析以及双-LUC 筛选,发现来自黄花蒿的一个碱性亮氨酸拉链家族转录因子(即 AabZIP1)参与 ABA 信号转导以调节青蒿素生物合成。AabZIP1 在花序中的表达水平高于其他组织;ABA 处理、干旱和盐胁迫强烈诱导 AabZIP1 的表达。酵母单杂交测定和电泳迁移率变动分析(EMSA)表明,AabZIP1 结合到青蒿素生物合成途径的两个关键结构基因 amorpha-4,11-diene synthase (ADS) 和 CYP71AV1 启动子区域的 ABA 反应元件(ABRE)上。突变测定表明,AabZIP1 中 N 端的 C1 结构域对于其转录激活活性很重要。此外,在瞬时双-LUC 分析中,ABA 处理增强了 AabZIP1 对 ADS 和 CYP71AV1 启动子的激活。具有 C1 结构域缺失的 AabZIP1 变体无论是否有 ABA 处理,都失去了激活 ADS 和 CYP71AV1 启动子的能力。值得注意的是,A. annua 中 AabZIP1 的过表达导致青蒿素积累显著增加。我们的结果表明,ABA 通过 AabZIP 在 A. annua 中激活 ADS 和 CYP71AV1 的表达来促进青蒿素的生物合成。同时,我们的发现揭示了 AabZIP1 在青蒿素生产遗传工程中的潜在价值。

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