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作 者:Yuqian Liu Qian Wang Xiaonan Liu Jian Chengi Lei Zhang Huanyu Chu Ruoyu Wang Haoran Li Hong Chang Nida Ahmed Zhonghua Wang Xiaoping Liao Huifeng Jiang
机构地区:[1]Key Laboratory of Engineering Biology for Low-carbon Manufacturing,Tianjin Institute of Industrial Biotechnology,Chinese Academy of Sciences,Tianjin 300308,China [2]National Center of Technology Innovation for Synthetic Biology,Tianjin 300308,China [3]University of Chinese Academy of Sciences,Beijing 100049,China [4]BGl-Shenzhen,Shenzhen 518083,China [5]Academy of Life Science,Wuhan Polytechnic University,Wuhan 430040,China [6]These authors contributed equally to this article
出 处:《Molecular Plant》2023年第4期643-646,共4页分子植物(英文版)
基 金:supported by grants from the National Key R&D Program of China(no.2019YFA0905700);Tianjin Synthetic Biotechnology Innovation Capacity Improvement Project(TSBICIP-CXRC-015);China Postdoctoral Science Foundation(No.2019M661032);National Natural Science Foundation of China(No.31901026).
摘 要:Dear Editor,Plant UDP-dependent glycosyltransferases(UGTs),belonging to the carbohydrate-active enzyme glycosyltransferase 1 family(Louveau and Osbourn,2019),not only play important roles in adaptation to various environments(Cai et al.,2020;Pastorczyk-Szlenkier and Bednarek,2021)but also endow plant natural products with great pharmaceutical and ecological significance(Margolin et al.,2020).In recent years,an increasing number of plant UGTs have been characterized to function in the biosynthesis of many bioactive compounds such as ginsenosides(Wei et al.,2015),breviscapine(Liu et al.,2018),and rubusoside(Xu et al.,2022).
关 键 词:UDP DATABASE environments
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