Literature DB >> 12586720

The inheritance of chemical phenotype in Cannabis sativa L.

Etienne P M de Meijer1, Manuela Bagatta, Andrea Carboni, Paola Crucitti, V M Cristiana Moliterni, Paolo Ranalli, Giuseppe Mandolino.   

Abstract

Four crosses were made between inbred Cannabis sativa plants with pure cannabidiol (CBD) and pure Delta-9-tetrahydrocannabinol (THC) chemotypes. All the plants belonging to the F(1)'s were analyzed by gas chromatography for cannabinoid composition and constantly found to have a mixed CBD-THC chemotype. Ten individual F(1) plants were self-fertilized, and 10 inbred F(2) offspring were collected and analyzed. In all cases, a segregation of the three chemotypes (pure CBD, mixed CBD-THC, and pure THC) fitting a 1:2:1 proportion was observed. The CBD/THC ratio was found to be significantly progeny specific and transmitted from each F(1) to the F(2)'s derived from it. A model involving one locus, B, with two alleles, B(D) and B(T), is proposed, with the two alleles being codominant. The mixed chemotypes are interpreted as due to the genotype B(D)/B(T) at the B locus, while the pure-chemotype plants are due to homozygosity at the B locus (either B(D)/B(D) or B(T)/B(T)). It is suggested that such codominance is due to the codification by the two alleles for different isoforms of the same synthase, having different specificity for the conversion of the common precursor cannabigerol into CBD or THC, respectively. The F(2) segregating groups were used in a bulk segregant analysis of the pooled DNAs for screening RAPD primers; three chemotype-associated markers are described, one of which has been transformed in a sequence-characterized amplified region (SCAR) marker and shows tight linkage to the chemotype and codominance.

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Year:  2003        PMID: 12586720      PMCID: PMC1462421     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  14 in total

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Journal:  Eur J Biochem       Date:  2001-03

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Journal:  Planta Med       Date:  1987-06       Impact factor: 3.352

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Journal:  Lloydia       Date:  1973-06

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Journal:  Science       Date:  1970-06-05       Impact factor: 47.728

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Journal:  Anal Biochem       Date:  1983-07-01       Impact factor: 3.365

8.  Cytochrome P450 monooxygenases of DIBOA biosynthesis: specificity and conservation among grasses.

Authors:  E Glawischnig; S Grün; M Frey; A Gierl
Journal:  Phytochemistry       Date:  1999-03       Impact factor: 4.072

9.  Gene duplication in the diversification of secondary metabolism: tandem 2-oxoglutarate-dependent dioxygenases control glucosinolate biosynthesis in Arabidopsis.

Authors:  D J Kliebenstein; V M Lambrix; M Reichelt; J Gershenzon; T Mitchell-Olds
Journal:  Plant Cell       Date:  2001-03       Impact factor: 11.277

10.  Expression of a cytochrome P450 gene family in maize.

Authors:  M Frey; R Kliem; H Saedler; A Gierl
Journal:  Mol Gen Genet       Date:  1995-01-06
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  68 in total

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Journal:  Cannabis Cannabinoid Res       Date:  2020-02-27

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Journal:  Ther Adv Psychopharmacol       Date:  2012-12

Review 6.  Advancing genetic theory and application by metabolic quantitative trait loci analysis.

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Journal:  Plant Cell       Date:  2009-06-12       Impact factor: 11.277

7.  Inner Workings: Genomics blazes a trail to improved cannabis cultivation.

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Review 8.  Cannabinoid-based medicines for neurological disorders--clinical evidence.

Authors:  Stephen Wright
Journal:  Mol Neurobiol       Date:  2007-06-29       Impact factor: 5.590

9.  Phytochemical and genetic analyses of ancient cannabis from Central Asia.

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10.  Identification of candidate genes affecting Delta9-tetrahydrocannabinol biosynthesis in Cannabis sativa.

Authors:  M David Marks; Li Tian; Jonathan P Wenger; Stephanie N Omburo; Wilfredo Soto-Fuentes; Ji He; David R Gang; George D Weiblen; Richard A Dixon
Journal:  J Exp Bot       Date:  2009-07-06       Impact factor: 6.992

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