Cannabis sativa L. - Botany and Biotechnology

(Jacob Rumans) #1

Idso KE, Idso SB (1994) Plant responses to atmospheric CO 2 enrichment in the face of
environmental constraints: A review of the past 10 years’research. Agric For Meteorol
69:153– 203
Kajima M, Piraux M (1982) The biogenesis of cannabinoids inCannabis sativa. Phytochemistry
21:67– 69
Kimball BA (1983) Carbon dioxide and agricultural yield: an assemblage and analysis of 430 prior
observations. Agron J 75:779– 788
Kriese U, Schumann E, Weber WE, Beyer M, Brhl L, Matthus B (2004) Oil content, tocopherol
composition and fatty acid patterns of the seeds of 51Cannabis sativaL. genotypes. Euphytica
137:339– 351
Lamarck JB de (1785) Encyclope ́die me ́thodique. Botanique. 1 part 2, Panckoucke, Paris
pp 694– 695
Lata H, Chandra S, Khan IA, ElSohly MA (2009a) Thidiazuron induced high frequency direct
shoot organogenesis ofCannabis sativaL. In vitro Cellular and Developmental Biol—Plant
45:12– 19
Lata H, Chandra S, Techen N, Khan IA, ElSohly MA (2009b) Assessment of genetic stability of
micropropagated plants of Cannabis sativa L. by ISSR markers. Planta Med 76:97– 100
Lata H, Chandra S, Khan IA, ElSohly MA (2010) High frequency plant regeneration from leaf
derived callus of highΔ^9 —tetrahydrocannabinol yieldingCannabis sativaL. Planta Med
76:1629– 1633
Lata H, Chandra S, Techen N, Khan IA, ElSohly MA (2016)In vitromass propagation of
Cannabis sativa: A protocol refinement using novel aromatic cytokininmeta-topolin and the
assessment of eco-physiological, biochemical and geneticfidelity of micropropagated plants.
J Appl Res Med Aromat Plants 3:18– 26
Linnaeus SC (1753) Species Plantarum (ed. 1):1027
Lopes de Oliveira G, Voloch MH, Sztulman GB, Negrini Neto O, Yonamine M (2008)
Cannabinoid contents in cannabis products seized in São Paulo, Brazil, 2006–2007. Forensic
Toxicol 26:31– 35
Mattes RD, Egelman K, Shaw LM, ElSohly MA (1994) Cannabinoids appetite stimulation.
Pharmacol Biochem Behav 44:745– 747
McPartland JM, Guy GW (2004) The evolution of Cannabis and coevolution with the cannabinoid
receptor—a hypothesis. In: Guy GW, Whittle BA, Robson PJ (eds) The medicinal uses of
cannabis and cannabinoids. Pharmaceutical Press, London, pp 71– 101
Mandolino G, Ranalli P (1999) Advances in biotechnological approaches for hemp breeding and
industry. In: Ranalli P (ed) Advances in hemp research. Haworth Press, New York, pp 185– 208
Mehmedic Z, Chandra S, Stanford D, Levanduski H, Khan I, ElSohly MA (2006) Stability of
D9-THC and other cannabinoids in different cannabis products, 16th annual symposium on the
cannabinoids, June 24–28. ICRS, Tihany, Hungry
Nagai T, Makino A (2009) Differences between rice and wheat in temperature responses of
photosynthesis and plant growth. Plant Cell Physiol 50:744– 755
Narayanaswami K, Golani HC, Bami HL, Dau RD (1978) Stability ofCannabis sativaL. samples
and their extracts, on prolonged storage in Delhi. Bull Narc 30:57– 69
Nelson RA (1996) Hemp and history, Rex Research, Jean NV. Accessed on the web Sep, 04
20016,http://www.rexresearch.com/hhist/hhicon.htm
Piomelli D, Russo EB (2016) TheCannabis sativaVersusCannabis indicaDebate: an interview
with ethan russo. MD, Cannabis Cannabinoid Res 1:44– 46
Poorter H (1993) Inter-specific variation in the growth response of plant to an elevated CO 2
concentration. Vegetatio 104:77– 97
Ross SA, Mehmedic Z, Murphy TP, ElSohly MA (2000) GC-MS analysis of the totalΔ^9 -THC
content of both drug-andfiber-type cannabis seeds. J Anal Toxicol 24:715– 717
Sage RF, Sharkey TD (1987) The effect of temperature on the occurrence of O 2 and CO 2
insensitive photosynthesis infield grown plants. Plant Physiol 84:658– 664
Schultes RE, KleinWM Plowman T, Lockwood TE (1974) Cannabis: an example of taxonomic
neglect. Bot Mus Leaflets, Harvard Univ 23:337– 367


3 Cannabis sativaL.: Botany and Horticulture 99

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