Brugmansia candida

Common Names: angel's-trumpet

Ethnobotanical Studies

Studies

Establishment, Culture, and Scale-up of Brugmansia candida Hairy Roots for the Production of Tropane Alkaloids.

Cardillo AB, Rodriguez Talou J and Giulietti AM (2016).
Methods Mol Biol.
PubMed:
27108317

Anisodamine production from natural sources: seedlings and hairy root cultures of Argentinean and Colombian Brugmansia candida plants.

Cardillo AB et al (2010).
Planta Med.
PubMed:
19790035

Biotransformation of hydroquinone by hairy roots of Brugmansia candida and effect of sugars and free-radical scavengers.

Casas DA, Pitta-Alvarez SI and Giulietti AM (1998).
Appl Biochem Biotechnol.
PubMed:
18574731

Expression of Brugmansia candida Hyoscyamine 6beta-Hydroxylase gene in Saccharomyces cerevisiae and its potential use as biocatalyst.

Cardillo AB, Talou JR and Giulietti AM (2008).
Microb Cell Fact.
PubMed:
18505565

How polyamine synthesis inhibitors and cinnamic acid affect tropane alkaloid production.

Marconi PL, Alvarez MA and Pitta-Alvarez SI (2007).
Appl Biochem Biotechnol.
PubMed:
17416978

Tropane alkaloid production in transformed root cultures of brugmansia Candida.

Giulietti AM, Parr AJ and Rhodes MJ (1993).
Planta Med.
PubMed:
17236002

Hairy roots of Brugmansia candida that grow without agitation: biotechnological implications.

Pitta-Alvarez SI and Giulietti AM (2001).
Biotechnol Prog.
PubMed:
11485426

Occurrence of cadaverine in hairy roots of Brugmansia candida.

Carrizo CN et al (2001).
Phytochemistry.
PubMed:
11397445

The influence of different biotic and abiotic elicitors on the production and profile of tropane alkaloids in hairy root cultures of Brugmansia candida.

Pitta-Alvarez SI, Spollansky TC and Giulietti AM (2000).
Enzyme Microb Technol.
PubMed:
10689085

Specificities of the enzymes of N-alkyltropane biosynthesis in Brugmansia and Datura.

Boswell HD et al (1999).
Phytochemistry.
PubMed:
10626376