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1.
Sci Rep ; 5: 12696, 2015 Aug 03.
Artigo em Inglês | MEDLINE | ID: mdl-26235534

RESUMO

Silicon(Si) is the only element which can enhance the resistance to multiple stresses. However, the role of silicon in medicinal plants under salt stress is not yet understood. This experiment was conducted to study the effects of silicon addition on the growth, osmotic adjustments, photosynthetic characteristics, chloroplast ultrastructure and Chlorogenic acid (CGA) production of Honeysuckle plant (Lonicera japonica L.) under salt-stressed conditions. Salinity exerted an adverse effect on the plant fresh weight and dry weight, whilst 0.5 g L(-1) K2SiO3 · nH2O addition obviously improved the plant growth. Although Na(+) concentration in plant organs was drastically increased with increasing salinity, higher levels of K(+)/Na(+) ratio was obtained after K2SiO3 · nH2O addition. Salinity stress induced the destruction of the chloroplast envelope; however, K2SiO3 · nH2O addition counteracted the adverse effect by salinity on the structure of the photosynthetic apparatus. K2SiO3 · nH2O addition also enhanced the activities of superoxide dismutase and catalase. To sum up, exogenous Si plays a key role in enhancing its resistance to salt stresses in physiological base, thereby improving the growth and CGA production of Honeysuckle plant.


Assuntos
Lonicera/efeitos dos fármacos , Ácido Silícico/farmacologia , Cloreto de Sódio , Estresse Fisiológico/efeitos dos fármacos , Catalase/efeitos dos fármacos , Cloroplastos/efeitos dos fármacos , Cloroplastos/ultraestrutura , Lonicera/fisiologia , Lonicera/ultraestrutura , Fotossíntese/efeitos dos fármacos , Plantas Medicinais/efeitos dos fármacos , Superóxido Dismutase/efeitos dos fármacos
2.
PLoS One ; 9(2): e89624, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24586918

RESUMO

Salvia miltiorrhiza, which is commonly known as Danshen, is a traditional Chinese herbal medicine. To illustrate its physiological and biochemical responses to salt stress and to evaluate the feasibility of cultivating this plant in saline coastal soils, a factorial experiment under hydroponic conditions was arranged on the basis of a completely randomised design with three replications. Five salinity treatments (0, 25, 50, 75 and 100 mM NaCl) were employed in this experiment. The results showed that salinity treatments of <100 mM NaCl did not affect the growth of Salvia miltiorrhiza in a morphological sense, but significantly inhibit the accumulation of dry matter. Salinity treatments significantly decreased the Chl-b content but caused a negligible change in the Chl-a content, leading to a conspicuous overall decrease in the T-Chl content. The Na(+) content significantly increased with increasing hydroponic salinity but the K(+) and Ca(2+) contents were reversed, indicating that a high level of external Na(+) resulted in a decrease in both K(+) and Ca(2+) concentrations in the organs of Salvia miltiorrhiza. Salt stress significantly decreased the superoxide dismutase (SOD) activity of Salvia miltiorrhiza leaves in comparison with that of the control. On the contrary, the catalase (CAT) activity in the leaves markedly increased with the increasing salinity of the hydroponic solution. Moreover, the soluble sugar and protein contents in Salvia miltiorrhiza leaves dramatically increased with the increasing salinity of the hydroponic solution. These results suggested that antioxidant enzymes and osmolytes are partially involved in the adaptive response to salt stress in Salvia miltiorrhiza, thereby maintaining better plant growth under saline conditions.


Assuntos
Plantas Medicinais/crescimento & desenvolvimento , Salvia miltiorrhiza/crescimento & desenvolvimento , Cloreto de Sódio/toxicidade , Antioxidantes/metabolismo , Cálcio/metabolismo , Catalase/metabolismo , Clorofila/metabolismo , Clorofila A , Homeostase/efeitos dos fármacos , Folhas de Planta/enzimologia , Potássio/metabolismo , Salinidade , Tolerância ao Sal , Plantas Tolerantes a Sal , Plântula/crescimento & desenvolvimento , Estresse Fisiológico , Superóxido Dismutase/metabolismo
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