Nano-Metal oxides induced sulforaphane production and peroxidase activity in seedlings of Lepidium draba (Brassicaceae)

A. Riahi-Madvar, M. Aminizadeh, Mehdi Mohammadi
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引用次数: 6

Abstract

Effects of different concentrations [0, 1, 5, 10, 20 and 40 mgL-1] of Fe3O4 and CuO nano-particles (nFe3O4 and nCuO) were investigated on sulforaphane (SFN) production level in 7-day-old seedlings of Lepidium draba at different time intervals (8 and 16 hrs). According to the results, the influence of the particles on SFN contentdepends on nano-particle (NP) concentrations, time of treatment as well as chemical nature of NPs. The SFN content was significantly increased in treated seedlings with 5 mgL-1nCuO and all nFe3O4 concentrations as well as nFe3O4-treated callus after 8 hrs. However, by the increasing treatment time to 16 hrs, no significant changes on the SFN content were seen compared to the control. Furthermore, activity of peroxidase was also significantly promoted in treatment with both NPs (especially at higher concentrations) after 8 hrs and drastically decreased after 16 hrs. On the other hand, seed germination as well as the root and shoot length (except root length in treatment with nFe3O4) decreased compared to the control when seed germinated and plant growth in presence of both NPs for 7 days. Totally, these observations can be attributed to induce oxidative stress by NPs as a subsequence of their uptake by the plant. The increment in production of the phytochemicals through nano-metals treatment (nano-elicitation), opens an opportunity for induction of beneficial phytochemical content.
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纳米金属氧化物对大白菜幼苗萝卜硫素产量和过氧化物酶活性的影响
研究了不同浓度[0、1、5、10、20和40 mg / l]的Fe3O4和CuO纳米颗粒(nFe3O4和nCuO)在不同时间间隔(8和16 h)下对7日龄枸杞幼苗萝卜硫素(SFN)产量的影响。结果表明,纳米颗粒对SFN含量的影响取决于纳米颗粒(NP)浓度、处理时间以及纳米颗粒的化学性质。5 mg - 1ncuo和所有浓度的nFe3O4处理幼苗和nFe3O4处理的愈伤组织在8 h后SFN含量显著增加。然而,随着处理时间增加到16小时,与对照组相比,SFN含量没有明显变化。此外,两种NPs处理8小时后过氧化物酶活性也显著提高(特别是在较高浓度下),16小时后活性急剧下降。另一方面,在nFe3O4和nFe3O4处理下,种子萌发和植株生长7 d后,种子萌发和根冠长(除nFe3O4处理的根长外)均低于对照。总的来说,这些观察结果可归因于植物吸收NPs后引起的氧化应激。通过纳米金属处理(纳米激发)增加植物化学物质的产量,为诱导有益的植物化学物质含量提供了机会。
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