Chen Ruibing, Yu Jian, Yu Luyao, Xiao Liang, Xiao Ying, Chen Junfeng, Gao Shouhong, Chen Xianghui, Li Qing, Zhang Henan, Chen Wansheng, Zhang Lei
Department of Pharmaceutical Botany, School of Pharmacy, Naval Medical University, Shanghai 200433, China.
State Key Laboratory of Dao-di Herbs, Beijing 100700, China.
Acta Pharm Sin B. 2024 Jan;14(1):405-420. doi: 10.1016/j.apsb.2023.08.011. Epub 2023 Aug 17.
Lignans are a powerful weapon for plants to resist stresses and have diverse bioactive functions to protect human health. Elucidating the mechanisms of stereoselective biosynthesis and response to stresses of lignans is important for the guidance of plant improvement. Here, we identified the complete pathway to stereoselectively synthesize antiviral (-)-lariciresinol glucosides in roots, which consists of three-step sequential stereoselective enzymes DIR1/2, PLR, and UGT71B2. DIR1 was further identified as the key gene in respoJanuary 2024nse to stresses and was able to trigger stress defenses by mediating the elevation in lignan content. Mechanistically, the phytohormone-responsive ERF transcription factor LTF1 colocalized with DIR1 in the cell periphery of the vascular regions in mature roots and helped resist biotic and abiotic stresses by directly regulating the expression of DIR1. These systematic results suggest that DIR1 as the first common step of the lignan pathway cooperates with PLR and UGT71B2 to stereoselectively synthesize (-)-lariciresinol derived antiviral lignans in roots and is also a part of the LTF1-mediated regulatory network to resist stresses. In conclusion, the LTF1-DIR1 module is an ideal engineering target to improve plant Defenses while increasing the content of valuable lignans in plants.
木脂素是植物抵御胁迫的有力武器,具有多种生物活性功能以保护人类健康。阐明木脂素立体选择性生物合成机制及其对胁迫的响应,对于指导植物改良具有重要意义。在此,我们确定了在根中立体选择性合成抗病毒(-)-落叶松脂醇葡萄糖苷的完整途径,该途径由三步连续的立体选择性酶DIR1/2、PLR和UGT71B2组成。DIR1进一步被确定为对胁迫响应的关键基因,能够通过介导木脂素含量的升高来触发胁迫防御。从机制上讲,植物激素响应性ERF转录因子LTF1在成熟根维管区域的细胞外周与DIR1共定位,并通过直接调节DIR1的表达来帮助抵抗生物和非生物胁迫。这些系统性结果表明,DIR1作为木脂素途径的首个共同步骤,与PLR和UGT71B2协同作用,在根中立体选择性合成(-)-落叶松脂醇衍生的抗病毒木脂素,并且也是LTF1介导的抵抗胁迫调控网络的一部分。总之,LTF1-DIR1模块是在提高植物中珍贵木脂素含量的同时改善植物防御的理想工程靶点。