Cannabis cultivation: Methodological issues for obtaining medical-grade product
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Mahmoud A. ElSohly | David J Potter | Hemant Lata | Suman Chandra | L. Walker | M. Elsohly | H. Lata | S. Chandra | Larry A. Walker | David Potter
[1] J. Hemphill,et al. Structure, Development and Composition of Glandular Trichomes of Cannabis Sativa L. , 1984 .
[2] D. Herms,et al. The Dilemma of Plants: To Grow or Defend , 1992, The Quarterly Review of Biology.
[3] K. Sakamoto,et al. A male-associated DNA sequence in a dioecious plant, Cannabis sativa L. , 1995, Plant & cell physiology.
[4] Ac Moffat,et al. Therapeutic uses of cannabis , 1997 .
[5] P. Ranalli. Advances in Biotechnological Approaches for Hemp Breeding and Industry , 1999 .
[6] R. Clarke,et al. Hemp Diseases and Pests: Management and Biological Control: An Advanced Treatise , 2000 .
[7] M. Bagatta,et al. The inheritance of chemical phenotype in Cannabis sativa L. (V): regulation of the propyl-/pentyl cannabinoid ratio, completion of a genetic model , 2016, Euphytica.
[8] L. Keizer,et al. Patterns of diversity in Cannabis , 1996, Genetic Resources and Crop Evolution.
[9] H. Mohan Ram,et al. Induction of fertile male flowers in genetically female Cannabis sativa plants by silver nitrate and silver thiosulphate anionic complex , 1982, Theoretical and Applied Genetics.
[10] Zygmunt Kaczmarek,et al. INFLUENCE OF CULTIVAR, EXPLANT SOURCE AND PLANT GROWTH REGULATOR ON CALLUS INDUCTION AND PLANT REGENERATION OF CANNABIS SATIVA L. , 2005 .
[11] E. Meijer,et al. The inheritance of chemical phenotype in Cannabis sativa L. (II): Cannabigerol predominant plants , 2005, Euphytica.
[12] T. Leggett. A review of the world cannabis situation. , 2006, Bulletin on narcotics.
[13] Z. Punja,et al. Tissue culture and Agrobacterium-mediated transformation of hemp (Cannabis sativa L.) , 2003, In Vitro Cellular & Developmental Biology - Plant.
[14] I. Khan,et al. Photosynthetic response of Cannabis sativa L. to variations in photosynthetic photon flux densities, temperature and CO2 conditions , 2008, Physiology and Molecular Biology of Plants.
[15] E. Meijer,et al. The inheritance of chemical phenotype in Cannabis sativa L. (III): variation in cannabichromene proportion , 2008, Euphytica.
[16] I. Khan,et al. Thidiazuron-induced high-frequency direct shoot organogenesis of Cannabis sativa L. , 2009, In Vitro Cellular & Developmental Biology - Plant.
[17] David J Potter,et al. Potency of Δ9–THC and Other Cannabinoids in Cannabis in England in 2005: Implications for Psychoactivity and Pharmacology * , 2008, Journal of forensic sciences.
[18] E. P. M. de Meijer,et al. The inheritance of chemical phenotype in Cannabissativa L. (IV): cannabinoid-free plants , 2009, Euphytica.
[19] I. Khan,et al. Propagation through alginate encapsulation of axillary buds of Cannabis sativa L. — an important medicinal plant , 2009, Physiology and Molecular Biology of Plants.
[20] I. Khan,et al. Molecular Analysis of Genetic Stability of Micropropagated Plants of Cannabis sativa L. using ISSR Markers , 2009 .
[21] I. Khan,et al. Assessment of cannabinoids content in micropropagated plants of Cannabis sativa and their comparison with conventionally propagated plants and mother plant during developmental stages of growth. , 2010, Planta medica.
[22] I. Khan,et al. High frequency plant regeneration from leaf derived callus of high Δ9-tetrahydrocannabinol yielding Cannabis sativa L. , 2010, Planta medica.
[23] I. Khan,et al. Assessment of the genetic stability of micropropagated plants of Cannabis sativa by ISSR markers. , 2010, Planta medica.
[24] I. Khan,et al. Genetic identification of female Cannabis sativa plants at early developmental stage. , 2010, Planta medica.
[25] Mahmoud A. ElSohly,et al. Potency Trends of Δ9‐THC and Other Cannabinoids in Confiscated Cannabis Preparations from 1993 to 2008 * , 2010, Journal of forensic sciences.
[26] I. Khan,et al. Molecular analysis of genetic fidelity in Cannabis sativa L. plants grown from synthetic (encapsulated) seeds following in vitro storage , 2011, Biotechnology Letters.
[27] I. Khan,et al. In vitro germplasm conservation of high Δ9-tetrahydrocannabinol yielding elite clones of Cannabis sativa L. under slow growth conditions , 2011, Acta Physiologiae Plantarum.
[28] David J Potter,et al. The Effect of Electrical Lighting Power and Irradiance on Indoor‐Grown Cannabis Potency and Yield , 2012, Journal of forensic sciences.
[29] David J Potter. A review of the cultivation and processing of cannabis (Cannabis sativa L.) for production of prescription medicines in the UK. , 2014, Drug testing and analysis.
[30] E. Meijer. The Chemical Phenotypes (Chemotypes) of Cannabis , 2014 .
[31] L. Sahoo,et al. Direct shoot organogenesis from rhizomes of medicinal zingiber Alpinia calcarata Rosc. and evaluation of genetic stability by RAPD and ISSR markers , 2016, Journal of Crop Science and Biotechnology.
[32] Mahmoud A. ElSohly,et al. In vitro mass propagation of Cannabis sativa L.: A protocol refinement using novel aromatic cytokinin meta-topolin and the assessment of eco-physiological, biochemical and genetic fidelity of micropropagated plants , 2016 .
[33] E. P. M. de Meijer,et al. The inheritance of chemical phenotype in Cannabis sativa L. (V): regulation of the propyl-/pentyl cannabinoid ratio, completion of a genetic model , 2016, Euphytica.
[34] M. Elsohly,et al. Phytochemistry of Cannabis sativa L. , 2017, Progress in the chemistry of organic natural products.