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Effects of Ni on superoxide dismutase and glutathione reductase activities and thiol groups: a comparative study between Alyssum hyperaccumulator and non-accumulator species

机译:镍对超氧化物歧化酶和谷胱甘肽还原酶活性及硫醇基的影响:香雪球超蓄积性和非蓄积性物种的比较研究

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摘要

In this study we investigated the activities of superoxide dismutase (SOD), glutathione reductase (GR) and total thiol groups in two Ni hyperaccumulator species, Alyssum inflatum Nyarady and Alyssum bracteatum Boiss. & Bushe, and a non-accumulator species (Alyssum saxatile (L.) Desv.). Plants were exposed to different concentrations of Ni (0, 100, 300 and 500M for hyperaccumulators and 0, 10 and 20M Ni for the non-accumulator) in solution culture. The accumulation of Ni, the influence of Ni on dry biomass, and SOD, GR and total thiol activities were measured. The results showed a growth retardation effect by Ni in all plants. The activity of SOD strongly decreased with increase in Ni concentration in A. inflatum whereas the other Ni hyperaccumulator, A. bracteatum, showed less decrease. In contrast, a positive link between SOD activity and Ni concentrations was observed in shoots and roots of A. saxatile. The GR and total thiol activities were increased in the hyperaccumulator plants by increase in Ni concentration, but no changes were observed in A. saxatile. The results indicate that in hyperaccumulators, the accumulation of Ni could negatively affect some vital physiological processes.
机译:在这项研究中,我们调查了两个镍超蓄积物种,香雪球菌Ayssum inflatum Nyarady和Alyssum bracteatum Boiss中超氧化物歧化酶(SOD),谷胱甘肽还原酶(GR)和总硫醇基的活性。 &Bushe,以及非蓄积性物种(Alyssum saxatile(L.)Desv。)。在溶液培养中,将植物暴露于不同浓度的Ni(超级蓄积剂分别为0、100、300和500M,非蓄积剂分别为0、10和20M Ni)。测量了镍的积累,镍对干生物量的影响,SOD,GR和总硫醇活性。结果表明Ni在所有植物中均具有生长延迟作用。 SOD的活性随着通气粉中Ni浓度的增加而大大降低,而其他Ni超蓄积物A. bracteatum的降低幅度较小。相比之下,在虎耳草的芽和根中观察到SOD活性和Ni浓度之间存在正向联系。高蓄积植物中的GR和总硫醇活性通过Ni浓度的增加而增加,但在沙曲菌中未观察到变化。结果表明,在超级蓄积物中,镍的积累会对某些重要的生理过程产生负面影响。

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