The ethylene response factor SmERF6 co-regulates the transcription of SmCPS1 and SmKSL1 and is involved in tanshinone biosynthesis in Salvia miltiorrhiza hairy roots
暂无分享,去创建一个
Zongsuo Liang | Zhenqing Bai | Pengguo Xia | Yanyan Jia | Wenrui Li | Jie Jiao | Wenli Huang | Zhiyong Yue
[1] Zongsuo Liang,et al. Molecular cloning and characterization of five SmGRAS genes associated with tanshinone biosynthesis in Salvia miltiorrhiza hairy roots , 2017, PloS one.
[2] Luqi Huang,et al. Targeted mutagenesis in the medicinal plant Salvia miltiorrhiza , 2017, Scientific Reports.
[3] M. Zanor,et al. Overexpression of AtERF019 delays plant growth and senescence, and improves drought tolerance in Arabidopsis , 2016, Journal of experimental botany.
[4] Chao Lv,et al. Genome-Wide Analysis of APETALA2/Ethylene-Responsive Factor (AP2/ERF) Gene Family in Barley (Hordeum vulgare L.) , 2016, PloS one.
[5] Li Xu,et al. Transcriptome Analysis of Storage Roots and Fibrous Roots of the Traditional Medicinal Herb Callerya speciosa (Champ.) ScHot , 2016, PloS one.
[6] Yujun Zhang,et al. Analysis of the Genome Sequence of the Medicinal Plant Salvia miltiorrhiza. , 2016, Molecular plant.
[7] M. Hajirezaei,et al. Plant Hormone Homeostasis, Signaling, and Function during Adventitious Root Formation in Cuttings , 2016, Front. Plant Sci..
[8] Wei Gao,et al. Research progress of synthetic biology for tanshinones. , 2015, Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica.
[9] R. Peters,et al. Functional Divergence of Diterpene Syntheses in the Medicinal Plant Salvia miltiorrhiza1[OPEN] , 2015, Plant Physiology.
[10] Songnian Hu,et al. Full-length transcriptome sequences and splice variants obtained by a combination of sequencing platforms applied to different root tissues of Salvia miltiorrhiza and tanshinone biosynthesis. , 2015, The Plant journal : for cell and molecular biology.
[11] D. Inzé,et al. The ETHYLENE RESPONSE FACTORs ERF6 and ERF11 Antagonistically Regulate Mannitol-Induced Growth Inhibition in Arabidopsis1[OPEN] , 2015, Plant Physiology.
[12] Zijian Li,et al. A novel drug discovery strategy inspired by traditional medicine philosophies , 2015 .
[13] B. Downie,et al. Functional analysis of the 5' regulatory region of the maize GALACTINOL SYNTHASE2 gene. , 2013, Plant science : an international journal of experimental plant biology.
[14] Emanuel A. Devers,et al. An endogenous artificial microRNA system for unraveling the function of root endosymbioses related genes in Medicago truncatula , 2013, BMC Plant Biology.
[15] Yanyan Du,et al. The MPK6-ERF6-ROS-Responsive cis-Acting Element7/GCC Box Complex Modulates Oxidative Gene Transcription and the Oxidative Response in Arabidopsis1[W][OA] , 2013, Plant Physiology.
[16] Fenghua Liu,et al. PEG and ABA trigger methyl jasmonate accumulation to induce the MEP pathway and increase tanshinone production in Salvia miltiorrhiza hairy roots. , 2012, Physiologia plantarum.
[17] D. Inzé,et al. DELLA Signaling Mediates Stress-Induced Cell Differentiation in Arabidopsis Leaves through Modulation of Anaphase-Promoting Complex/Cyclosome Activity1[W][OA] , 2012, Plant Physiology.
[18] P. Leadley,et al. Plant homeostasis, growth and development in natural and artificial soils , 2012 .
[19] Zhe-zhi Wang,et al. De novo transcriptome sequencing in Salvia miltiorrhiza to identify genes involved in the biosynthesis of active ingredients. , 2011, Genomics.
[20] Zhijin Zhang,et al. Transcriptional Activation of OsDERF1 in OsERF3 and OsAP2-39 Negatively Modulates Ethylene Synthesis and Drought Tolerance in Rice , 2011, PloS one.
[21] N. E. Ibrahim,et al. Characterization of inhibitor(s) of β-glucuronidase enzyme activity in GUS-transgenic wheat , 2011, Plant Cell, Tissue and Organ Culture (PCTOC).
[22] Dong Chun-juan Liu Jin-yuan Zhou Lu. Increased Resistance of Arabidopsis to Cold and Salt Stresses by Suppresing the Transcription Repressors of the A-5 Group among the DREB Subfamily Transcription Factors through Artificial microRNA , 2011 .
[23] Xiyan Li. A Transient Expression Assay Using Arabidopsis Mesophyll Protoplasts , 2011 .
[24] Jianbo Xiao,et al. Metabolic engineering tanshinone biosynthetic pathway in Salvia miltiorrhiza hairy root cultures. , 2011, Metabolic engineering.
[25] Yizhou Dong,et al. Biosynthesis, total syntheses, and antitumor activity of tanshinones and their analogs as potential therapeutic agents. , 2011, Natural product reports.
[26] Jian Yong Wu,et al. Tanshinone biosynthesis in Salvia miltiorrhiza and production in plant tissue cultures , 2010, Applied Microbiology and Biotechnology.
[27] O. Nilsson,et al. Genetic Analysis Reveals That C19-GA 2-Oxidation Is a Major Gibberellin Inactivation Pathway in Arabidopsis[W] , 2008, The Plant Cell Online.
[28] Liao Yan,et al. Physiological adaptability of three mangrove species to salt stress , 2007 .
[29] K. Lee,et al. New developments in the chemistry and biology of the bioactive constituents of tanshen , 2007, Medicinal research reviews.
[30] T. Fujimura,et al. Genome-Wide Analysis of the ERF Gene Family in Arabidopsis and Rice[W] , 2006, Plant Physiology.
[31] Jian-Kang Zhu,et al. Role of an Arabidopsis AP2/EREBP-Type Transcriptional Repressor in Abscisic Acid and Drought Stress Responses , 2005, The Plant Cell Online.
[32] Yidong Liu,et al. Phosphorylation of 1-Aminocyclopropane-1-Carboxylic Acid Synthase by MPK6, a Stress-Responsive Mitogen-Activated Protein Kinase, Induces Ethylene Biosynthesis in Arabidopsisw⃞ , 2004, The Plant Cell Online.
[33] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[34] Q. Liu,et al. Effect of Two Conserved Amino Acid Residues on DREB1A Function , 2001, Biochemistry (Moscow).
[35] M. Ohme-Takagi,et al. Arabidopsis Ethylene-Responsive Element Binding Factors Act as Transcriptional Activators or Repressors of GCC Box–Mediated Gene Expression , 2000, Plant Cell.
[36] E. Meyerowitz,et al. The AP2/EREBP family of plant transcription factors. , 1998, Biological chemistry.
[37] M. Ohme-Takagi,et al. Ethylene-inducible DNA binding proteins that interact with an ethylene-responsive element. , 1995, The Plant cell.
[38] Zongsuo Liang,et al. Establishment of Salvia castanea Diels f. tomentosa Stib. hairy root cultures and the promotion of tanshinone accumulation and gene expression with Ag+, methyl jasmonate, and yeast extract elicitation , 2015, Protoplasma.
[39] Pengcheng Wang,et al. The MPK 6-ERF 6-ROS-Responsive cis-Acting Element 7 / GCC Box Complex Modulates Oxidative Gene Transcription and the Oxidative Response in Arabidopsis 1 [ W ] [ OA ] , 2013 .
[40] Zhu Wenxue. Antioxidant Activities and Contents of Total Flavonoids and Phenols from Different Parts of Salvia miltiorrhiza bunge , 2011 .
[41] Yan Xiu. Plant secondary metabolism and its response to environment , 2007 .
[42] N. Ludidi. Characterization of two Arabidopsis thaliana genes with roles in plant homeostasis , 2004 .