Cannabis sativa L. - Botany and Biotechnology

(Jacob Rumans) #1

Lindberg P, Park S, Melis A (2010) Engineering a platform for photosynthetic isoprene production
in cyanobacteria, using Synechocystis as the model organism. Metab Eng 12:70– 79
Liu J, Osbourn A, Ma P (2015) MYB transcription factors as regulators of phenylpropanoid
metabolism in plants. Mol Plant 8:689– 708
Ma X, Panjikar S, Koepke J, Loris E, Stöckigt J (2006) The structure ofRauvolfia serpentina
strictosidine synthase is a novel six-bladed beta-propeller fold in plant protein. Plant Cell
18:907– 920
Marks MD, Tian L, Wenger JP, Omburo SN, Soto-Fuentes W, He J, Gang DR, Weiblen GD,
Dixon RA (2009) Identification of candidate genes affectingΔ^9 -tetrahydrocannbinol biosyn-
thesis in Cannabis sativa. J Exp Bot 13:3715– 3726
Matsuda LA, Lolait SJ, Brownstein MJ, Young AC, Bonner TI (1990) Structure of a cannabinoid
receptor and functional expression of the cloned cDNA. Nature 346:561– 564
Mechoulam R (1970) Marihuana chemistry. Science 168:1159– 1166
Mechoulam R, Benshabat S, Hanus L, Ligumsky M, Kaminski NE, Schatz AR, Gopher A,
Almog S, Martin BR, Compton DR, Pertwee RG, Griffin G, Bayewitch M, Barg J, Vogel Z
(1995) Identification of an endogenous 2-monoglyceride, present in canine gut, that binds to
cannabinoid receptors. Biochem Pharmacol 50:83– 90
Mechoulam R (2000) Looking back at Cannabis research. Curr Pharm Des 6:1313– 1322
Mora-Pale M, Sanchez-Rodriguez SP, Linhardt RJ, Dordick JS, Koffas MAG (2014) Biochemical
strategies for enhancing the in vivo production of natural products with pharmaceutical
potential. Curr Opin Biotechnol 25:86– 94
Morimoto S, Komatsu K, Taura F, Shoyama Y (1997) Enzymological evidence for
cannabichromenic acid biosynthesis. J Nat Prod 60:854– 857
Morimoto S, Komatsu K, Taura F, Shoyama Y (1998) Purification and characterization of
cannabichromenic acid synthase fromCannabis sativa. Phytochemistry 49:1525– 1529
Morimoto S, Tanaka Y, Sasaki K, Tanaka H, Fukamizu T, Shoyama Y, Shoyama Y, Taura F
(2007) Identification and characterization of cannabinoids that induce cell death through
mitochondrial permeability transition inCannabisleaf cells. J Biol Chem 282:20739– 20751
Munakata R, Inoue T, Koeduka T, Karamat F, Olry A, Sugiyama A, Takanashi K, Dugrand A,
Froelicher Y, Tanaka R, Uto Y, Hori H, Azuma J, Hehn A, Bourgaud F, Yazaki K (2014)
Molecular cloning and characterization of a geranyl diphosphate-specific aromatic prenyl-
transferase from lemon. Plant Physiol 166:80– 90
Munro S, Thomas KL, Abu-Shaar M (1993) Molecular characterization of a peripheral receptor for
cannabinoids. Nature 365:61– 65
Paddon CJ, Westfall PJ, Pitera DJ, Benjamin K, Fisher K, McPhee D, Leavell MD, Tai A, Main A,
Eng D, Polichuk DR, Teoh KH, Reed DW, Treynor T, Lenihan J, Jiang H, Fleck M, Bajad S,
Dang G, Dengrove D, Diola D, Dorin G, Ellens KW, Fickes S, Galazzo J, Gaucher SP,
Geistlinger T, Henry R, Hepp M, Horning T, Iqbal T, Kizer L, Lieu B, Melis D, Moss N,
Regentin R, Secrest S, Tsuruta H, Vazquez R, Westblade LF, Xu L, Yu M, Zhang Y, Zhao L,
Lievense J, Covello PS, Keasling JD, Reiling KK, Renninger NS, Newman JD (2013) High-level
semi-synthetic production of the potent antimalarial artemisinin. Nature 496:528– 532
Page JE, Boubakir Z (2011) Aromatic prenyltransferase from Cannabis. Patent WO 2011(017798):
A1
PečJ, Flores-Sanchez IJ, Choi YH, Verpoorte R (2010) Metabolic analysis of elicited cell
suspension cultures ofCannabis sativaL. by 1H-NMR spectroscopy. Biotechnol Lett
32:935– 941
Pollastro F, Taglialatela-Scafati O, AllaràM, Muñoz E, Di Marzo V, de Petrocellis L,
Appendino G (2011) Bioactive prenylogous cannabinoid fromfiber hemp (Cannabis sativa).
J Nat Prod 74:2019– 2022
Rodríguez-Concepción M, Boronat A (2015) Breaking new ground in the regulation of the early
steps of plant isoprenoid biosynthesis. Curr Opin Plant Biol 25:17– 22
Runguphan W, O’Conner SE (2009) Metabolic reprogramming of periwinkle plant culture. Nat
Chem Biol 5:151– 153


204 S. Sirikantaramas and F. Taura

Free download pdf