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PubMed · 14378392

[Chamomile].

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A CASSETTI, M TRINCHIERI VENANSON. 1955. [Chamomile].. https://pubmed.ncbi.nlm.nih.gov/14378392/

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Effect of magnesium on essential oil formation of genetically transformed and non-transformed chamomile cultures.

OBJECTIVE: The importance of chamomile (Chamomilla recutita) is widely known in classical and folk medicine, with the largest group of its effective substances forming the essential oil (chamazulene, alpha-bisabolol, trans-beta-farnesene, spathulenol, cis/trans-en-in-dicycloethers). The increasing need for plant-derived high quality drugs cannot be provided by their collection in the wilderness. METHOD A: To preserve the genome of Szabadkigyo. wild type having high (-)-alpha-bisabolol content, we used biotechnological methods. RESULTS: The roots of organized culture contained beta-eudesmol, which we have identified in the intact roots. Our gas-chromatographic and mass-spectroscopic studies showed that sterile chamomile cultures generated the most important terpenoid and polyin compounds characteristics of the intact plant. We identified berkheyaradulene, geranyl-isovalerate and cedrol, as new components in these cultures. Magnesium (Mg) (370 and 740 mg/l MgSO4) has a positive effect on the growth of organized cultures and also on the quality and quantity of essential oil production. METHOD B: Another possible source of variants is available by the genetic transformation of organized cultures by infection with Agrobacterium rhisogenes. With this method, we cultivated chamomile infected by A4-Y clone and investigated the essential oil production by hairy root cultures cultivated on solid and liquid MS B-5 media. The main component of the essential oil of hairy root cultures was trans-beta-farnesene. RESULTS: We identified alpha-selinene, as a new component in these hairy roots. We studied the growth rate of A4-Y clone on the cited media, containing MgSO4 concentrations: 0; 185; 370 and 740 mg/l. The cultures grew most in medium containing 740 mg/l of MgSO4. Essential oil content was compared from hairy root cultures of different Mg containing media and measured by GC and GC-MS methods. Mg has a similar effect on hairy roots as on organized cultures.

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Phase solubility studies of pure (-)-alpha-bisabolol and camomile essential oil with beta-cyclodextrin.

(-)-Alpha-bisabolol was found to form an inclusion complex with beta-cyclodextrin (beta-CD) in solution as well as in the solid state. To investigate molecular associations of beta-CD with pure (-)-alpha-bisabolol or (-)-alpha-bisabolol as a component of camomile essential oil, phase solubility studies were undertaken. A B(s) type solubility with an apparent complex constant of 273 M(-1) for the pure (-)-alpha-bisabolol and 304 M(-1) for (-)-alpha-bisabolol as a constituent of the essential oil were obtained. The two curves in the phase solubility diagram reach their plateau at different concentrations of (-)-alpha-bisabolol, 7.04 x 10(-4) M for the pure substance and 2.88 x 10(-4) M for the substance as a component of the essential oil. Although the shapes of the curves are almost similar, the intrinsic solubility's of pure (-)-alpha-bisabolol (4.85 x 10(-4) M) and (-)-alpha-bisabolol as a component of the essential oil (1.82 x 10(-4) M) differ significantly. An inclusion complex having a stoichiometric composition of 2:1 (beta-CD: drug) was obtained. A mechanism of complexation has been proposed on the basis of the stability constant calculated from phase solubility data and the stoichiometric ratio of the solid state complexation.

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Determination of the ploidy level in chamomile (Chamomilla recutita (L.) Rausch.) strains rich in alpha-bisabolol.

The present study aimed to identify morphological traits whose performance depends on plant ploidy in Chamomilla recutita. Flowerhead diameter, 100-flowerhead weight, 1000-seed weight, pollen grain diameter, stoma length, and number of chloroplasts per guard cell, were examined in 5 tetraploid and 5 diploid strains. Out of these traits, stoma length, number of chloroplasts per guard cell, 100-flowerhead weight, and 1000-seed weight, proved to be significantly higher in tetraploid than in diploid strains, and can be used for indirect identification of tetraploid and diploid genotypes in various developmental stages of this species.

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