State Key Laboratory of Plant Diversity and Specialty Crops, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, 510650, China.
South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, 510650, China.
BMC Plant Biol. 2024 Jan 2;24(1):8. doi: 10.1186/s12870-023-04660-7.
Patchoulol, a valuable compound belonging to the sesquiterpenoid family, is the primary component of patchouli oil produced by Pogostemon cablin (P. cablin). It has a variety of pharmacological and biological activities and is widely used in the medical and cosmetic industries. However, despite its significance, there is a lack of research on the transcriptional modulation of patchoulol biosynthesis.Salicylic acid (SA), is a vital plant hormone that serves as a critical signal molecule and plays an essential role in plant growth and defense. However, to date, no studies have explored the modulation of patchoulol biosynthesis by SA. In our study, we discovered that the application of SA can enhance the production of patchoulol. Utilizing transcriptome analysis of SA-treated P. cablin, we identified a crucial downstream transcription factor, PatWRKY71. The transcription level of PatWRKY71 was significantly increased with the use of SA. Furthermore, our research has revealed that PatWRKY71 was capable of binding to the promoter of PatPTS, ultimately leading to an increase in its expression. When PatWRKY71 was silenced by a virus, the expression of both PatWRKY71 and PatPTS was reduced, resulting in the down-regulation of patchoulol production. Through our studies, we discovered that heterologous expression of PatWRKY71 leads to an increase in the sensitivity of Arabidopsis to salt and Cd, as well as an outbreak of reactive oxygen species (ROS). Additionally, we uncovered the regulatory role of PatWRKY71 in both patchoulol biosynthesis and plant defense response. This discovery provided a theoretical basis for the improvement of the content of patchoulol and the resistance of P. cablin through genetic engineering.
芳樟醇,一种倍半萜烯类的有价值化合物,是广藿香油( Pogostemon cablin )的主要成分。它具有多种药理和生物活性,广泛应用于医药和化妆品行业。然而,尽管它很重要,但对芳樟醇生物合成的转录调控研究还很少。水杨酸(SA)是一种重要的植物激素,作为关键的信号分子,在植物生长和防御中起着至关重要的作用。然而,到目前为止,还没有研究探索 SA 对芳樟醇生物合成的调节作用。在我们的研究中,我们发现 SA 的应用可以增强芳樟醇的产生。利用 SA 处理的广藿香转录组分析,我们鉴定了一个关键的下游转录因子 PatWRKY71。随着 SA 的使用,PatWRKY71 的转录水平显著增加。此外,我们的研究还揭示了 PatWRKY71 能够结合 PatPTS 的启动子,最终导致其表达增加。当 PatWRKY71 被病毒沉默时,PatWRKY71 和 PatPTS 的表达都减少,导致芳樟醇产量下降。通过我们的研究,我们发现 PatWRKY71 的异源表达导致拟南芥对盐和 Cd 的敏感性增加,以及活性氧(ROS)的爆发。此外,我们揭示了 PatWRKY71 在芳樟醇生物合成和植物防御反应中的调节作用。这一发现为通过基因工程提高芳樟醇含量和广藿香的抗性提供了理论基础。