Solanesol Biosynthesis in Plants

文献类型: 外文期刊

第一作者: Yan, Ning

作者: Yan, Ning;Liu, Yanhua;Zhang, Hongbo;Du, Yongmei;Liu, Xinmin;Zhang, Zhongfeng

作者机构:

关键词: solanesol;function;biosynthetic pathway;key enzymes

期刊名称:MOLECULES ( 影响因子:4.411; 五年影响因子:4.587 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Solanesol is a non-cyclic terpene alcohol composed of nine isoprene units that mainly accumulates in solanaceous plants. Solanesol plays an important role in the interactions between plants and environmental factors such as pathogen infections and moderate-to-high temperatures. Additionally, it is a key intermediate for the pharmaceutical synthesis of ubiquinone-based drugs such as coenzyme Q10 and vitamin K2, and anti-cancer agent synergizers such as N-solanesyl-N,N'-bis(3,4-dimethoxybenzyl) ethylenediamine (SDB). In plants, solanesol is formed by the 2-C-methyl-D-erythritol 4-phosphate (MEP) pathway within plastids. Solanesol's biosynthetic pathway involves the generation of C5 precursors, followed by the generation of direct precursors, and then the biosynthesis and modification of terpenoids; the first two stages of this pathway are well understood. Based on the current understanding of solanesol biosynthesis, we here review the key enzymes involved, including 1-deoxy-D-xylulose 5-phosphate synthase (DXS), 1-deoxy-D-xylulose 5-phosphate reductoisomerase (DXR), isopentenyl diphosphate isomerase (IPI), geranyl geranyl diphosphate synthase (GGPPS), and solanesyl diphosphate synthase (SPS), as well as their biological functions. Notably, studies on microbial heterologous expression and overexpression of key enzymatic genes in tobacco solanesol biosynthesis are of significant importance for medical uses of tobacco.

分类号: O62

  • 相关文献

[1]Solanesol: a review of its resources, derivatives, bioactivities, medicinal applications, and biosynthesis. Yan, Ning,Liu, Yanhua,Gong, Daping,Du, Yongmei,Zhang, Huaibao,Zhang, Zhongfeng. 2015

[2]Organ- and Growing Stage-Specific Expression of Solanesol Biosynthesis Genes in Nicotiana tabacum Reveals Their Association with Solanesol Content. Yan, Ning,Zhang, Hongbo,Zhang, Zhongfeng,Du, Yongmei,Liu, Xinmin,Liu, Yanhua,Shi, John,Timko, Michael P..

[3]Phytochemistry and Pharmacological Activities of the Genus Swertia (Gentianaceae): A Review. Li, Jie,Zhao, Yan-Li,Wang, Yuan-Zhong,Li, Jie,Huang, Heng-Yu. 2017

[4]Carotenoid biosynthetic genes in Brassica rapa: comparative genomic analysis, phylogenetic analysis, and expression profiling. Li, Peirong,Zhang, Shujiang,Zhang, Shifan,Li, Fei,Zhang, Hui,Cheng, Feng,Wu, Jian,Wang, Xiaowu,Sun, Rifei. 2015

[5]Ochratoxin A Producing Fungi, Biosynthetic Pathway and Regulatory Mechanisms. Wang, Yan,Wang, Liuqing,Liu, Fei,Wang, Qi,Selvaraj, Jonathan Nimal,Xing, Fuguo,Zhao, Yueju,Liu, Yang,Wang, Yan,Xing, Fuguo,Zhao, Yueju,Liu, Yang. 2016

[6]Two Arabidopsis cytochrome P450 monooxygenases, CYP714A1 and CYP714A2, function redundantly in plant development through gibberellin deactivation. Zhang, Yingying,Yan, Dawei,Dong, Weixin,Yang, Weibing,Li, Qun,Zeng, Longjun,He, Zuhua,Zhang, Baichen,Hicks, Leslie M.,Dong, Weixin,Wang, Jianjun,Wang, Linyou.

[7]Molecular characterisation and functional analysis of a cytochrome P450 gene in cotton. Zhou, Kexue,Long, Lu,Sun, Quan,Wang, Weina,Gao, Wei,Cai, Chaowei,Mo, Jianchuan,Cheng, Jieru,Zhang, Xiangrui,Liu, Yujia,Miao, Chen,Zhang, Xiao,Cai, Yingfan,Du, Xiongming,Shi, Yuzhen,Yuan, Youlu,Chu, Zongyan.

[8]Comparative Proteomic Analysis Reveals Differential Root Proteins in Medicago sativa and Medicago truncatula in Response to Salt Stress. Long, Ruicai,Zhang, Tiejun,Kang, Junmei,Cong, Lili,Gao, Yanli,Yang, Qingchuan,Li, Mingna,Sun, Yan,Liu, Fengqi. 2016

[9]Research advances in microneme protein 3 of Toxoplasma gondii. Wang, Yanhua,Yin, Hong. 2015

[10]Identification and functional analysis of a novel single nucleotide polymorphism (SNP) in the porcine Toll like receptor (TLR) 5 gene. Li, H. -T.,Yang, X. -Q.,Liu, D.. 2011

[11]Nine facultative endosymbionts in aphids. A review. Hatt, Severin,He, Kanglai,Chen, Julian,Wang, Zhenying,Guo, Jianqing,Hatt, Severin,Francis, Frederic,Guo, Jianqing,Hatt, Severin. 2017

[12]Molecular characterization and expression profile of nanos in Schistosoma japonicum and its influence on the expression several mammalian stem cell factors. Giri, Bikash Ranjan,Du, Xiaoli,Xia, Tianqi,Chen, Yongjun,Li, Hao,Cheng, Guofeng.

[13]FEEDING ON A BEGOMOVIRUS-INFECTED PLANT ENHANCES FECUNDITY VIA INCREASED EXPRESSION OF AN INSULIN-LIKE PEPTIDE IN THE WHITEFLY, MEAM1. Cheng, Lu,Ye, Gong-Yin,Fang, Qi,Guo, Jian-Yang.

[14]Current knowledge of detoxification mechanisms of xenobiotic in honey bees. Gong, Youhui,Diao, Qingyun.

[15]Structure and function of seed storage proteins in faba bean (Vicia faba L.). Liu, Yujiao,Wu, Xuexia,Hou, Wanwei,Li, Ping,Sha, Weichao,Tian, Yingying. 2017

[16]The silkworm GSTe4 is sensitive to phoxim and protects HEK293 cells against UV-induced cell apoptosis. Liu, J.,Zhang, C. D.,Li, Y. F.,Liu, T. H.,Wang, L.,Lu, C.,Pan, M. H.,Liu, J.,Zhang, C. D.,Yu, Q. Y.,Zhang, Y. H.,Lu, C.,Pan, M. H..

[17]Chrysopa septempunctata (Neuroptera: Chrysopidae) Vitellogenin Functions Through Effects on Egg Production and Hatching. Liu, C.,Mao, J.,Zeng, F.,Liu, C..

[18]BIOLOGICAL FUNCTIONS OF microRNAs. Huang, Yong,Shen, Xing Jia,Zhao, Qiao Ling,Shen, Xing Jia,Zhao, Qiao Ling,Zou, Quan.

[19]Biological functions of microRNAs: a review. Huang, Yong,Shen, Xing Jia,Wang, Sheng Peng,Tang, Shun Ming,Zhang, Guo Zheng,Zou, Quan,Huang, Yong,Shen, Xing Jia,Wang, Sheng Peng,Tang, Shun Ming,Zhang, Guo Zheng.

[20]Drought stress impact on leaf proteome variations of faba bean (Vicia faba L.) in the Qinghai-Tibet Plateau of China. Li, Ping,Wu, Xuexia,Liu, Yujiao,Li, Ping,Liu, Yujiao,Zhang, Yanxia,Li, Ping,Liu, Yujiao. 2018

作者其他论文 更多>>