Belgian Nuclear Research Centre (SCK•CEN), Biosphere Impact Studies, Boeretang 200, 2400 Mol, Belgium.
Plant Physiol Biochem. 2010 Oct-Nov;48(10-11):879-86. doi: 10.1016/j.plaphy.2010.08.005. Epub 2010 Aug 19.
In this study, toxicity effects in plants of uranium in a binary pollution condition were investigated by studying biological responses and unraveling oxidative stress related mechanisms in Arabidopsis thaliana seedlings, grown on hydroponics and exposed for 3 days to 10 μM uranium in combination with 5 μM cadmium. While uranium mostly accumulated in the roots with very low root-to-shoot transport, cadmium was taken up less by the roots but showed higher translocation to the shoots. Under mixed exposure, cadmium influenced uranium uptake highly but not the other way round resulting in a doubled uranium concentration in the roots. Under our mixed exposure conditions, it is clear that micronutrient concentrations in the roots are strongly influenced by addition of cadmium as a second stressor, while leaf macronutrient concentrations are mostly influenced by uranium. Oxidative stress related responses are highly affected by cadmium while uranium influence is more limited. Hereby, an important role was attributed to the ascorbate redox balance together with glutathione as both metabolites, but more explicitly for ascorbate, increased their reduced form, indicating an important defense and regulatory function. While for roots, based on an increase in FSD1 gene expression, oxidative stress was suggested to be superoxide induced, in leaves on the other hand, hydrogen peroxide related genes were mostly altered.
在这项研究中,通过研究拟南芥幼苗的生物反应并揭示与氧化应激相关的机制,研究了铀在二元污染条件下对植物的毒性效应,这些幼苗在水培条件下生长,并在 3 天内暴露于 10 μM 铀与 5 μM 镉的混合物中。虽然铀主要积聚在根中,根部向茎叶的转运很少,但镉在根部的吸收较少,但向茎叶的转运较高。在混合暴露下,镉对铀的吸收影响很大,但反之则不然,导致根部铀浓度增加一倍。在我们的混合暴露条件下,很明显,根中微量元素的浓度因添加镉作为第二种胁迫而受到强烈影响,而叶片中大量营养素的浓度主要受铀影响。与镉相比,氧化应激相关反应受铀的影响更为有限。因此,认为抗坏血酸氧化还原平衡与谷胱甘肽一起发挥重要作用,这两种代谢物,但更明确的是抗坏血酸,其还原形式增加,表明其具有重要的防御和调节功能。对于根,根据 FSD1 基因表达的增加,认为氧化应激是由超氧化物诱导的,而另一方面,与过氧化氢相关的基因在叶片中发生了改变。