By Victor P. Bulgakov, Yuri N. Shkryl (auth.), Pauline M Doran (eds.)
Victor P. Bulgakov, Yuri N. Shkryl, Galina N. Veremeichik, Tatiana Y. Gorpenchenko and Yuliya V. Vereshchagina: fresh Advances within the figuring out of Agrobacterium rhizogenes-Derived Genes and Their results on rigidity Resistance and Plant Metabolism. Le Zhao, man W. Sander and Jacqueline V. Shanks: views of the Metabolic Engineering of Terpenoid Indole Alkaloids in Catharanthus roseus furry Roots. Jian Wen Wang and Jian Yong Wu: potent Elicitors and strategy thoughts for Enhancement of Secondary Metabolite creation in furry Root Cultures. Amanda R. Stiles and Chun-Zhao Liu: furry Root tradition: Bioreactor layout and strategy Intensification. Marina Skarjinskaia, Karen Ruby, Adriana Araujo, Karina Taylor, Vengadesan Gopalasamy-Raju, Konstantin Musiychuk, Jessica A. Chichester, Gene A. Palmer, Patricia de l. a. Rosa, Vadim Mett, Natalia Ugulava, Stephen J. Streatfield and Vidadi Yusibov: furry Roots as a Vaccine construction and supply process. Zahwa Al-Shalabi and Pauline M. Doran: steel Uptake and Nanoparticle Synthesis in bushy Root Cultures.
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Plant Physiol Bioch 38(7–8):559–566. 1016/s0981-9428(00)00781-6 20. Veau B, Courtois M, Oudin A, Chenieux JC, Rideau M, Clastre M (2000) Cloning and expression of cDNAs encoding two enzymes of the MEP pathway in Catharanthus roseus. Biochim Biophys Acta 1517(1):159–163 21. Friesen JA, Rodwell VW (2004) The 3-hydroxy-3-methylglutaryl coenzyme-A (HMG-CoA) reductases. Genome Biol 5(11):248. 1186/gb-2004-5-11-248 22. Ness GC, Chambers CM (2000) Feedback and hormonal regulation of hepatic 3-hydroxy-3methylglutaryl coenzyme A reductase: the concept of cholesterol buffering capacity.
Courdavault V, Burlat V, St-Pierre B, Giglioli-Guivarc’h N (2005) Characterisation of CaaXprenyltransferases in Catharanthus roseus: relationships with the expression of genes involved in the early stages of monoterpenoid biosynthetic pathway. Plant Sci 168(4):1097–1107. 010 18. Rodríguez-Concepción M, Boronat A, Rodríguez-Concepción M, Boronat A (2002) Elucidation of the methylerythritol phosphate pathway for isoprenoid biosynthesis in bacteria and plastids. A metabolic milestone achieved through genomics.
Zhao et al. 2 Further Elucidation of Regulatory Mechanisms Limiting improvements to the TIA pathway in C. roseus is the unclear correspondence of the DNA, RNA, protein, and metabolite levels to the regulatory mechanisms. Phytohormones are involved in many aspects of plant growth and development, including TIA’s biosynthesis pathway, however, how to regulate the molecular mechanism of phytohormones in the TIA pathway is unclear. Forward and reverse genetic strategies should be used to identify important related molecular components in plant hormone perception, signaling, and transport involved in the TIA pathway.
Biotechnology of Hairy Root Systems by Victor P. Bulgakov, Yuri N. Shkryl (auth.), Pauline M Doran (eds.)