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镉在十字叶藓中的积累、定位及毒性效应

Accumulation, localisation, and toxic effects of cadmium in the liverwort Lunularia cruciata.

作者信息

Carginale V, Sorbo S, Capasso C, Trinchella F, Cafiero G, Basile A

机构信息

Institute of Protein Biochemistry, Consiglio Nazionale di Ricerca, Naples, Italy.

出版信息

Protoplasma. 2004 Mar;223(1):53-61. doi: 10.1007/s00709-003-0028-0. Epub 2004 Mar 4.

Abstract

Accumulation, tissue and intracellular localisation, and toxic effects of cadmium were investigated in the liverwort Lunularia cruciata. The results of analyses carried out by atomic absorption spectrometry on single plants showed that the cadmium accumulation was dose- and time-dependent. Cadmium localisation was assessed by X-ray scanning electron microscopy microanalysis in gemmalings and in the different tissues of the thallus and by X-ray transmission electron microscopy microanalysis at the cellular level. The metal preferentially accumulated in the hyaline parenchyma and at the base of the gemma cups. Inside the cell, cadmium accumulated in the vacuoles and the cell wall. Metal accumulation was accompanied by a concomitant increase in sulphur content within the vacuoles of stressed cells. Gel-permeation chromatography showed that most of the cadmium was associated with a low-molecular-mass fraction eluting at a ratio of elution volume to void volume corresponding to that of phytochelatins. The excess of sulphur deposited in the vacuoles may well have been caused by the stress-induced synthesis of phytochelatins. At the ultrastructural level, sublethal concentrations of cadmium caused alterations of the fine structure of the cells, inducing marked alterations of the chloroplast structure. Cadmium also induced a dose-dependent inhibition of apical thallus growth and gemma germination.

摘要

对叶苔(Lunularia cruciata)中镉的积累、组织和细胞内定位以及毒性作用进行了研究。通过原子吸收光谱法对单株植物进行分析的结果表明,镉的积累具有剂量和时间依赖性。通过X射线扫描电子显微镜微量分析对叶状体幼苗和叶状体不同组织中的镉定位进行了评估,并通过X射线透射电子显微镜在细胞水平上进行了微量分析。金属优先积累在透明薄壁组织和芽孢杯基部。在细胞内,镉积累在液泡和细胞壁中。金属积累伴随着应激细胞液泡中硫含量的相应增加。凝胶渗透色谱法表明,大部分镉与低分子量部分相关,该部分以与植物螯合肽相对应的洗脱体积与空体积之比洗脱。液泡中过量沉积的硫很可能是由应激诱导的植物螯合肽合成引起的。在超微结构水平上,亚致死浓度的镉导致细胞精细结构的改变,诱导叶绿体结构发生明显变化。镉还诱导叶状体顶端生长和芽孢萌发的剂量依赖性抑制。

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