水分亏缺条件下磁场对牛膝草生长、酚类含量、抗氧化酶及能力的影响

R. Mohammadi, P. Roshandel
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引用次数: 2

摘要

在本研究中,磁场(MF;分别以45、90、200和250mT(5、10、20和30 min)对生长60天的牛蹄草植株进行了评价,灌溉间隔为8天。评价指标包括生物量、膜稳定性、光合色素浓度、多酚含量、抗氧化酶活性和抗氧化能力。与纯水分胁迫的植株相比,mf处理显著改变了这些参数,特别是在200 mT/5 min时,生物量、总叶绿素和多酚含量分别增加了2.2倍、2.5倍和7.7倍。电解质泄漏量和丙二醛含量分别下降了35%和33%。MF增强了还原能力、DPPH和超氧阴离子清除能力。在200 mT时激活mf,过氧化氢酶(+92%)和抗坏血酸过氧化物酶(+2.3倍)活性增加。在90mt时愈创木酚过氧化物酶活性最高。综上所述,mfinm种子处理通过保护细胞膜完整性、维持光合色素含量和改变抗氧化酶活性来提高愈创木酚过氧化物酶的耐旱性。它还通过增加多酚浓度和抗氧化能力来提高芽的药用性能。
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Alternation of Growth, Phenolic Content, Antioxidant Enzymes and Capacity by Magnetic Field in Hyssopus officinalis under Water Deficit
In the present study, the effect of seed priming with magnetic field (MF; 45, 90, 200 and 250mT for 5, 10, 20 and 30 min) was evaluated in 60-day-old Hyssopus officinalis plants grownunder 8 days irrigation intervals. The assessments were consisted of biomass, membranestability, photosynthetic pigments concentrations, polyphenols content, antioxidant enzymesactivities and antioxidant capacity. In comparison with the exclusively water-stressed plants,MF-priming significantly altered these parameters, particularly at 200 mT/5 min. At thisintensity, the level of biomass, total chlorophyll and polyphenols content increased by 2.2, 2.5and 7.7 folds, respectively. Furthermore, electrolyte leakage and MDA content decreased by35 and 33%. Reducing power, DPPH and superoxide anion scavenging activities highlyaugmented by MF. MF-priming at 200 mT increased catalase (+92%) and ascorbateperoxidase (+2.3 folds) activities. But, the highest activity of guaiacol peroxidase wasrecorded for MF-primed H. officinalis at 90 mT. In conclusion, seed priming with MFincreases drought tolerance in H. officinalis through protection of cellular membrane integrity,maintenance of photosynthetic pigments content and also alternation of antioxidant enzymeactivities. It also improves medicinal properties of the shoots via increasing polyphenolsconcentration and antioxidant capacity.
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