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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Effects of silicon on growth processes and adaptive potential of barley plants under optimal soil watering and flooding
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Effects of silicon on growth processes and adaptive potential of barley plants under optimal soil watering and flooding

机译:硅对最佳土壤水淹条件下大麦植物生长过程和适应潜力的影响

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Barley (Hordeum vulgare L.) was grown in pots with brown loess soil and highly soluble amorphous silicon dioxide as the source of monosilicic acid to examine its influence on plant growth and adaptive potential under optimal soil watering and flooding. The adaptive potential of plants was estimated by the concentration of the thiobarbituric acid reactive substances (TBARs) as well as superoxide dismutase (SOD), guaiacol peroxidase (GPX) and ascorbate peroxidase (AsP) activities. Application of amorphous silica to the soil increased the Si content in barley shoots and roots and stimulated their growth and biomass production under optimal soil watering. Soil flooding suppressed the growth both of the (-Si)- and (+Si)-plants. The intensity of oxidative destruction estimated by the concentration of TBARs was lower in the roots and leaves of the (+Si)-plants. Soil flooding induced SOD activity in the roots and in the leaves of the (-Si;+flooding) and (+Si;+flooding)-plants, but no significant differences were observed due to the Si treatment. GPX activity in the roots of (+Si)-plants was higher than in the (-Si)-ones under optimal soil watering, but under soil flooding no differences between (+Si)- and (-Si)-treatments were observed. AsP activity was not influenced by Si treatment neither under optimal soil watering nor under flooding. Thus, application of Si stimulates growth processes of barley shoots and roots under optimal soil watering and decreases intensity of oxidative destruction under soil flooding without significant changes in the activities of antioxidant enzymes.
机译:大麦(Hordeum vulgare L.)在棕色黄土和高度可溶性无定形二氧化硅作为单硅酸来源的花盆中生长,以研究其对最佳土壤灌溉和淹水条件下植物生长和适应潜力的影响。通过硫代巴比妥酸反应性物质(TBARs)的浓度以及超氧化物歧化酶(SOD),愈创木酚过氧化物酶(GPX)和抗坏血酸过氧化物酶(AsP)活性来估计植物的适应潜力。在土壤最佳灌溉条件下,向土壤中施用无定形二氧化硅可以提高大麦芽和根中的硅含量,并刺激其生长和生物量的生产。土壤水淹抑制了(-Si)-和(+ Si)-植物的生长。由TBARs浓度估算的氧化破坏强度在(+ Si)植物的根和叶中较低。土壤淹水在(-Si; +淹水)和(+ Si; +淹水)植物的根和叶中诱导了SOD活性,但由于Si处理,未观察到显着差异。在最佳土壤灌溉条件下,(+ Si)-植物根系的GPX活性高于(-Si)-植物,但在土壤淹水下,(+ Si)-和(-Si)-处理之间没有观察到差异。在最佳土壤浇水和淹水条件下,Si处理均不会影响AsP活性。因此,硅的施用在最佳土壤灌溉条件下刺激了大麦芽和根的生长过程,并降低了土壤淹没条件下的氧化破坏强度,而抗氧化酶的活性没有明显变化。

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