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The ERF transcription factor LTF1 activates DIR1 to control stereoselective synthesis of antiviral lignans and stress defense in Isatis indigotica roots

查看全文 作  者:Ruibing [1,7]Chen;Jian [1]Yu;Luyao [1]Yu;Liang [1]Xiao;Ying [2]Xiao;Junfeng [2]Chen;Shouhong [3]Gao;Xianghui [4]Chen;Qing [3]Li;Henan [5]Zhang;Wansheng [2,3]Chen;Lei [1,6]Zhang 高影响力作者 机构地区:[1]Department of Pharmaceutical Botany,School of Pharmacy,Naval Medical University,Shanghai 200433,China;[2]Research and Development Center of Chinese Medicine Resources and Biotechnology,Shanghai University of Traditional Chinese Medicine,Shanghai 201203,China;[3]Department of Pharmacy,Shanghai Changzheng Hospital,Naval Medical University,Shanghai 200003,China;[4]School of Medicine,Shanghai University,Shanghai 200433,China;[5]Institute of Edible Fungi,Shanghai Academy of Agricultural Sciences,National Engineering Research Center of Edible Fungi,Key Laboratory of Edible Fungi Resources and Utilization(South),Ministry of Agriculture,Shanghai 201403,China;[6]College of Life Sciences and Medicine,Key Laboratory of Plant Secondary Metabolism and Regulation of Zhejiang Province,Zhejiang Sci-Tech University,Hangzhou 310018,China;[7]State Key Laboratory of Dao-di Herbs,Beijing 100700,China高影响力机构 出  处:《Acta Pharmaceutica Sinica B》索引2024年第14卷第1期,共16页高影响力期刊 基  金:The authors would like to acknowledge Professor Jiankang Zhu and his lab at the Shanghai Center for Plant Stress Biology,Chinese Center for Plant Stress Biology,for providing the CRISPR/Cas9 system plasmids.All authors declare no competing financial or nonfinancial interests.This work was funded by the National Natural Science Foundation of China(grant Nos.82225047,32000231,31970316,and 32170274);the National Key Research and Development Program of China(grant no.2022YFC3501703);Shanghai Science and Technology Development Funds(23QA1411400,China);Key project at central government level(The ability establishment of sustainable use for valuable Chinese medicine resources,2060302). 摘  要: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 Isatis indigotica 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 I.indigotica 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. 关 键 词:Lignans Stereoselective synthesis Stress resistance Dirigent protein ERF
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