Wang Lihong, Zhou Qing, Huang Xiaohua
School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China.
Chemosphere. 2009 Nov;77(7):1019-25. doi: 10.1016/j.chemosphere.2009.07.065. Epub 2009 Aug 26.
In order to understand the toxic effect of terbium (Tb(III)) on the plant photosynthesis, we investigated the photosynthesis, the ultrastructural structure of chloroplast, the subcellular distribution of horseradish peroxidase (HRP), the activity of HRP, and the content of malondialdehyde in horseradish by a portable gas exchange system, transmission electron microscopy and the other biochemical technologies. The results indicated that after horseradish treated with 5 mg L(-1) Tb(III), the subcellular distribution of HRP was not obviously changed. However, the activities of guaiacol and ascorbate HRP were decreased comparing with that of horseradish treated without Tb(III). It could cause the peroxidation of membrane lipid, the damage of chloroplast ultrastructure and the decrease in the photosynthesis and the content of chlorophyll. Moreover, after horseradish treated with 60 mg L(-1) of Tb(III), the distribution of HRP on the plasma membrane and tonoplast was decreased, while the distribution of HRP on the cell wall was increased comparing with that of horseradish treated without Tb(III). The change in the subcellular distribution of HRP could induce the excess accumulation of the reactive oxygen, leading to the damage of the chloroplast ultrastructure and then the decrease in the photosynthesis. Furthermore, the effects of Tb(III) on the indexes mentioned above were increased with prolonging the treating time of Tb(III). These results demonstrated that the function of HRP in horseradish treated with Tb(III) was decreased, leading to the damage of chloroplast ultrastructure and then the inhibition of photosynthesis. It was a possible toxic effect of Tb(III) on the plant photosynthesis.
为了解铽(Tb(III))对植物光合作用的毒性效应,我们通过便携式气体交换系统、透射电子显微镜及其他生化技术,研究了辣根的光合作用、叶绿体超微结构、辣根过氧化物酶(HRP)的亚细胞分布、HRP活性及丙二醛含量。结果表明,用5 mg L(-1) Tb(III)处理辣根后,HRP的亚细胞分布无明显变化。然而,与未用Tb(III)处理的辣根相比,愈创木酚和抗坏血酸HRP的活性降低。它可导致膜脂过氧化、叶绿体超微结构损伤以及光合作用和叶绿素含量降低。此外,用60 mg L(-1) Tb(III)处理辣根后,与未用Tb(III)处理的辣根相比,质膜和液泡膜上HRP的分布减少,而细胞壁上HRP的分布增加。HRP亚细胞分布的变化可诱导活性氧过量积累,导致叶绿体超微结构损伤,进而使光合作用降低。此外,Tb(III)对上述指标的影响随Tb(III)处理时间的延长而增强。这些结果表明,Tb(III)处理的辣根中HRP的功能降低,导致叶绿体超微结构损伤,进而抑制光合作用。这可能是Tb(III)对植物光合作用的毒性效应。