铯对印度芥菜幼苗生长的影响及其亚细胞分布和化学形态
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国家核设施退役及放射性废物治理科研重点项目(14ZG6101);四川省教育厅重点课题(14ZA0030);四川省教育厅大学生创新创业训练计划项目(201510636001)


Effect of Cesium on Seedling Growth,Its Subcellular Distribution and Chemical Forms in Brassica juncea L.
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    摘要:

    以印度芥菜为材料,用含铯(Cs+)[8.24(CK),25,50,100,200 mg·L-1]的Hoagland营养液培养印度芥菜种子和幼苗,采用IMAGE-J软件测定根、茎长度,通过差速离心法、化学试剂提取法分别提取幼苗根、茎、叶各亚细胞组分及不同化学形态的Cs+,并用火焰原子分光光度计测定Cs+含量,分析Cs+对幼苗生长的影响及其亚细胞分布和化学形态,进而探讨Cs+对植物的伤害机理。结果显示:(1)Cs+对印度芥菜幼苗生长具有明显的抑制作用,根、茎的EC50(相对抑制率达到50%的Cs+浓度)分别为112.09 和118.42 mg·L-1;(2)各器官中Cs+的积累量总体表现为叶>根>茎;Cs+在印度芥菜中的亚细胞分布呈现为可溶性组分>细胞壁组分>细胞器组分,三者所占比例分别为52.86%~79.19%、20.81%~45.05%和1.43%~9.00%;(3)Cs+在印度芥菜各器官中主要以无机盐和水溶态赋存,两种形态根、茎、叶占比分别达到88.02%~92.20%、97.33%~100%和95.06%~100%。研究表明:印度芥菜积累过量的Cs+可抑制其根、茎生长,导致叶片枯萎,主要是因为Cs+在印度芥菜体内大部分以无机盐态和水溶态形式存在,使Cs+在植物体内具有较强迁移能力和毒理生物有效性,更易分布到重金属的毒性敏感区(如细胞器),导致细胞器受到功能性损伤,从而使植物表现出明显中毒症状。

    Abstract:

    This study examined the influence of cesium on seedling growth,its subcellular distribution,chemical forms and the damage mechanism adopted by Brassica juncea which cultured by Hoagland nutrient solution with varying doses of Cs+[ρ(Cs+)8.24(control),25,50,100 and 200 mg·L-1].Determined the root,stem length by IMAGE-J;abstract subcellular components,and chemical forms of Cs+ by differential centrifugation,the chemical reagent extraction-test,then determined by atomic absorption spectroscopy.The results showed that:(1)Cs+ possesses strongly inhibitory effect on the growth of seedling.The root,and stem EC50(concentration for 50% of maximal effect) were 112.09 mg·L-1 and 118.42 mg·L-1,respectively.(2)The accumulation of Cs+ in plant organs overall displayed the following sequence:leaf>root>stem.The subcellular components of Cs+ in Brassica juncea displayed the following sequence:soluble fraction>cell wall>organelles,which proportion was 52.86%-79.19%,20.81%-45.05% and 1.43%-9.00%,respectively.(3)The greatest amount of Cs+ was found in inorganic salt and the soluble,the two chemical forms relative contents in percentage were 88.02%-92.20%(in root),97.33%-100%(in stem) and 95.06%-100%(in leaf).Research shows that over dose of Cs+ showed toxic effects on Brassica juncea,such as inhibiting root and stem development,leading the leaf perished.The analysis indicated that Cs+ was mainly present in inorganic salt,and the soluble,and the two chemical forms have strong migration behavior and toxicology bio-availability and therefore can lead Cs+ transferred to the heavy metal toxicity sensitive area (such as organelles)more easily,causing cytoplasmic organelle functional damage,thus can lead plants show symptoms of poisoning obviously.

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付 倩,赖金龙,尹 燚,等.铯对印度芥菜幼苗生长的影响及其亚细胞分布和化学形态[J].西北植物学报,2015,35(11):2235-2242

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  • 在线发布日期: 2015-12-07
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