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温度对银纳米粒子抑制两种绿藻(小球藻和杜氏盐藻)光合作用 II 光化学的影响。

Temperature influence on silver nanoparticles inhibitory effect on photosystem II photochemistry in two green algae, Chlorella vulgaris and Dunaliella tertiolecta.

机构信息

Department of Chemistry and Biochemistry, University of Quebec in Montreal, Montreal, QC, Canada.

出版信息

Environ Sci Pollut Res Int. 2012 Jun;19(5):1755-62. doi: 10.1007/s11356-011-0689-8. Epub 2011 Dec 16.

Abstract

PURPOSE

In this study, the effect of silver nanoparticles (AgNPs) on the photosynthetic performance of two green algae, Chlorella vulgaris and Dunaliella tertiolecta, was investigated at 25°C and 31°C.

METHODS

To induce AgNPs effect, algal cells were exposed for 24 h to concentrations varying from 0 to 10 mg/L. The polyphasic OJIP fluorescence transient was used to evaluate photosystem II (PSII).

RESULTS

We show that growth media and temperature had different effects in AgNPs agglomerates formation and Zeta potential. When temperature conditions change, inhibitory effect of AgNPs also undergoes changes. Increase of temperature induced higher altering effects to PSII quantum yield, primary photosynthetic electron transport, and consequently higher decrease of total photosynthetic performance if compared to AgNPs effect alone. AgNPs has a negative effect on D. tertiolecta compared to C. vulgaris.

CONCLUSION

We conclude that temperature tends to enhance the toxic effects on aquatic alga and these alterations might have serious consequences on ecosystem equilibrium and aquatic plant communities.

摘要

目的

本研究在 25°C 和 31°C 下,研究了银纳米粒子(AgNPs)对两种绿藻——普通小球藻和杜氏盐藻光合作用性能的影响。

方法

为了诱导 AgNPs 的作用,将藻类细胞暴露于浓度从 0 到 10mg/L 的 AgNPs 中 24 小时。使用多相 OJIP 荧光瞬变来评估光系统 II(PSII)。

结果

我们表明,生长介质和温度对 AgNPs 团聚体的形成和 Zeta 电位有不同的影响。当温度条件发生变化时,AgNPs 的抑制作用也会发生变化。与单独的 AgNPs 作用相比,温度升高诱导 PSII 量子产率、初级光电子传递更高的改变效应,从而导致总光合作用性能的更大降低。与普通小球藻相比,AgNPs 对杜氏盐藻有负面影响。

结论

我们得出结论,温度往往会增强对水生藻类的毒性影响,这些改变可能对生态系统平衡和水生植物群落产生严重后果。

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