Cannabis sativa L. - Botany and Biotechnology

(Jacob Rumans) #1

References


Berkov S, Pavlov A, Kovatcheva P, Stanimirova P, Philipov S (2003) Alkaloid spectrum in diploid
and tetraploid hairy root cultures ofDatura stramonium. Naturforsch 58c:42– 46
Bandyopadhyay M, Jha S, Tepfer D (2007) Changes in morphological phenotypes and withanolide
composition of Ri-transformed roots ofWithania somnifera. Plant Cell Rep 26:599– 609
Blusztajn JK (1998) Choline, a vital amine. Science 281:794– 795
Bollinger H, Eugster CH (1971) Detection of (+)-epi-muscarine inInocybe geophylla. Helv Chim
Acta 54:1332– 1335
Bonhomme V, Laurain-Mattar D, Lacoux J, Fliniaux M-A, Jacquin-Dubreuil A (2000) Tropane
alkaloid production by hairy roots ofAtropa belladonnaobtained after transformation with
Agrobacterium rhizogenes15834 andAgrobacterium tumefacienscontainingrolA,B,Cgenes
only. J Biotechnol 81:151– 158
Bulgakov VP (2008) Functions ofrolgenes in plant secondary metabolism. Biotechnol Adv
26:318– 324
Bulgakov VP, Shkryl YN, Veremeichik GN, Gorpenchenko TY, Vereshchagina YV (2013)
Recent advances in the understanding ofAgrobacterium rhizogenes-derived genes and their
effects on stress resistance and plant metabolism. In: Doran PM (ed) Biotechnology of hairy
root systems. Springer, Berlin Heidelberg, pp 1– 22
Calabresi P, Centonze D, Pisani A, Sencesario G, North R, Bernardi G (1998) Muscarinic IPSPS
in rat striatal cholinergic interneurones. J Physiol 510:421– 427
Callaway JC (2004) Hempseed as a nutritional resource: An overview. Euphytica 140:65– 72
Capone I, SpanòL, Cardarelli M, Bellincampi D, Petit A, Costantino P (1989) Induction and
growth properties of carrot roots with different complements ofAgrobacterium rhizogenes
T-DNA. Plant Mol Biol 13:43– 52
Chandra S, Lata H, Khan IA, ElSohly MA (2013) The Role of Biotechnology inCannabis sativa
Propagation for the Production of Phytocannabinoids. In: Chandra S, Lata H, Varma A
(eds) Biotechnology for medicinal plants—micropropagation and improvement.
Springer-Verlag, Berlin Heidelberg, pp 123– 148
Choi PS, Kim YD, Choi KM, Chung HJ (2004) Plant regeneration from hairy-root cultures
transformed by infection withAgrobacterium rhizogenesinCatharanthus roseus. Plant Cell
Rep 22:828– 831
Crane C, Wright E, Dixon RA, Wang Z-Y (2006) TrangenicMedicago truncatulaplants obtained
fromAgrobacterium tumefacienstransformed roots andAgrobacterium rhizogenes-trans-
formed hairy roots. Planta 223:1344– 1354
de Meijer EP, Bagatta M, Carboni A, Crucitti P, Moliterni VM, Ranalli P, Mandolino G (2003)
The inheritance of chemical phenotype inCannabis sativaL. Genetics 163:35– 346
Eeva M, Salo JP, Oksman-Caldentey KM (1998) Determination of the main tropane alkaloids
from transformedHyoscyamus muticusplants by capillary zone electrophoresis. J Pharm
Biomed Anal 16:717– 722
Feeney M, Punja ZK (2003) Tissue culture andAgrobacterium-mediated transformation of hemp
(Cannabis sativaL.). In Vitro Cell Dev Biol Plant 39:578– 585
Fisse J, Cosson L, Paris M (1981)Étudesin vitrodes capacités organogénétiques de tissus de
Cannabis sativaL.; effet de différentes substances de croissances. P. Méd Phytoth 15:217– 223
Floersheim GL (1987) Treatment of human amatoxin mushroom poisoning. Myths and advances
in therapy. Med Toxicol 2:1– 9
Georgiev MI, Pavlov AI, Bley T (2007) Hairy root type plant in vitro systems as sources of
bioactive substances. Appl Microbiol Biotechnol 74:1175– 1185
Georgiev MI, Agostini E, Ludwig-Müller J, Xu J (2012) Genetically transformed roots: from plant
disease to biotechnological resource. Trends Biotechnol 30:528– 537
Gill EW, Paton WDM, Pertwee RG (1970) Preliminary experiments on the chemistry and
pharmacology ofCannabis. Nature 228:134– 136


314 I. Wahby et al.

Free download pdf