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Medicinas Complementárias
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1.
J Plant Physiol ; 173: 105-15, 2015 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-25462084

RESUMEN

We examined the effects of ambient, non-stressing ultraviolet (UV)-B (280-315nm) level combined with different intensities of photosynthetic active radiation (PAR, 400-700nm) on the accumulation of the lignan (-)-hinokinin, in leaves and stems of Hydrocotyle leucocephala. Plants were exposed in sun simulators under almost natural irradiance and climatic conditions to one of four light regimes, i.e. two PAR intensities (906 and 516µmolm(-2)s(-1)) including or excluding UV-B radiation (0 and 0.4Wm(-2)). Besides hinokinin, we identified three chlorogenic acid isomers, one other phenolic acid, 12 quercetin, and five kaempferol derivatives in the H. leucocephala extracts. Hinokinin was most abundant in the stems, and its accumulation was slightly enhanced under UV-B exposure. We therefore assume that hinokinin contributes to cell wall stabilization and consequently to a higher resistance of the plant to environmental factors. Quercetin derivatives increasingly accumulated under UV-B and high PAR exposure at the expense of kaempferols and chlorogenic acids, which was apparently related to its ability to scavenge reactive oxygen species. In general, the concentration of the constituents depended on the plant organ, the leaf age, the light regimes, and the duration of exposure. The distribution pattern of the compounds within the examined organs was not influenced by the treatments. Based on the chemical composition of the extracts a principal component analysis (PCA) enabled a clear separation of the plant organs and harvesting dates. Younger leaves mostly contained higher phenylpropanoid concentrations than older leaves. Nevertheless, more pronounced effects of the light regimes were detected in older leaves. As assessed, in many cases the individual compounds responded differently to the PAR/UV-B combinations, even within the same phenylpropanoid class. Since this is the first report on the influence of light conditions on the accumulation of lignans in herbaceous plants, it opens many perspectives for a more precise elucidation of all involved biochemical and molecular processes.


Asunto(s)
Centella/química , Propanoles/metabolismo , 4-Butirolactona/análogos & derivados , 4-Butirolactona/análisis , 4-Butirolactona/metabolismo , Benzodioxoles/análisis , Benzodioxoles/metabolismo , Centella/fisiología , Centella/efectos de la radiación , Ácido Clorogénico/análisis , Ácido Clorogénico/metabolismo , Flavonoles/análisis , Flavonoles/metabolismo , Hidroxibenzoatos/análisis , Hidroxibenzoatos/metabolismo , Quempferoles/análisis , Quempferoles/metabolismo , Lignanos/análisis , Lignanos/metabolismo , Estrés Oxidativo/efectos de la radiación , Fotosíntesis/efectos de la radiación , Hojas de la Planta/química , Hojas de la Planta/fisiología , Hojas de la Planta/efectos de la radiación , Tallos de la Planta/química , Tallos de la Planta/fisiología , Tallos de la Planta/efectos de la radiación , Propanoles/análisis , Quercetina/análisis , Quercetina/metabolismo , Rayos Ultravioleta
2.
J Photochem Photobiol B ; 127: 161-9, 2013 Oct 05.
Artículo en Inglés | MEDLINE | ID: mdl-24044900

RESUMEN

We investigated the effects of environmentally relevant dose of ultraviolet (UV)-B and photosynthetic active radiation (PAR) on saponin accumulation in leaves on the example of Centella asiatica L. Urban. For this purpose, plants were exposed to one of four light regimes i.e., two PAR intensities with or without UV-B radiation. The experiment was conducted in technically complex sun simulators under almost natural irradiance and climatic conditions. As observed, UV-B radiation increased herb and leaf production as well as the content of epidermal flavonols, which was monitored by non-destructive fluorescence measurements. Specific fluorescence indices also indicate an increase in the content of anthocyanins under high PAR; this increase was likewise observed for the saponin concentrations. In contrast, UV-B radiation had no distinct effects on saponin and sapogenin concentrations. Our findings suggest that besides flavonoids, also saponins were accumulated under high PAR protecting the plant from oxidative damage. Furthermore, glycosylation of sapogenins seems to be important either for the protective function and/or for compartmentalization of the compounds. Moreover, our study revealed that younger leaves contain higher amounts of saponins, while in older leaves the sapogenins were the most abundant constituents. Concluding, our results proof that ambient dose of UV-B and high PAR intensity distinctly affect the accumulation of flavonoids and saponins, enabling the plant tissue to adapt to the light conditions.


Asunto(s)
Centella/crecimiento & desarrollo , Centella/efectos de la radiación , Fenómenos Ecológicos y Ambientales , Fotosíntesis/efectos de la radiación , Hojas de la Planta/crecimiento & desarrollo , Hojas de la Planta/efectos de la radiación , Rayos Ultravioleta , Centella/metabolismo , Relación Dosis-Respuesta en la Radiación , Glicósidos/metabolismo , Hojas de la Planta/metabolismo
3.
Oecologia ; 160(1): 1-8, 2009 May.
Artículo en Inglés | MEDLINE | ID: mdl-19194724

RESUMEN

Plants in alpine habitats are exposed to many environmental stresses, in particular temperature and radiation extremes. Recent field experiments on Arnica montana L. cv. ARBO indicated pronounced altitudinal variation in plant phenolics. Ortho-diphenolics increased with altitude compared to other phenolic compounds, resulting in an increase in antioxidative capacity of the tissues involved. Factors causing these variations were investigated by climate chamber (CC) experiments focusing on temperature and ultraviolet (UV)-B radiation. Plants of A. montana L. cv. ARBO were grown in CCs under realistic climatic and radiation regimes. Key factors temperature and UV-B radiation were altered between different groups of plants. Subsequently, flowering heads were analyzed by HPLC for their contents of flavonoids and caffeic acid derivatives. Surprisingly, increased UV-B radiation did not trigger any change in phenolic metabolites in Arnica. In contrast, a pronounced increase in the ratio of B-ring ortho-diphenolic (quercetin) compared to B-ring monophenolic (kaempferol) flavonols resulted from a decrease in temperature by 5 degrees C in the applied climate regime. In conclusion, enhanced UV-B radiation is probably not the key factor triggering shifts in the phenolic composition in Arnica grown at higher altitudes but rather temperature, which decreases with altitude.


Asunto(s)
Altitud , Arnica/química , Flores/química , Fenoles/análisis , Extractos Vegetales/análisis , Temperatura , Análisis de Varianza , Cromatografía Líquida de Alta Presión , Quempferoles/análisis , Quercetina/análisis , Rayos Ultravioleta
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