Liu Tingting, Li Feng, Zhang Xi, Zhang Hai, Duan Dechao, Shen Chaofeng, Hashmi Muhammad Zaffar, Shi Jiyan
Institute of Environmental Science and Technology, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310058, China,
Biol Trace Elem Res. 2014 Sep;160(3):418-26. doi: 10.1007/s12011-014-0043-3. Epub 2014 Jul 9.
Copper (Cu) accumulation in soils is becoming a major environmental problem. Elsholtzia splendens, a Cu-tolerant plant growing in Cu mine areas, can accumulate high levels of Cu. This study develops a systematic method of detecting the intracellular localization and different chemical forms of Cu to comprehensively understand the mechanisms involved in Cu tolerance and detoxification of E. splendens. Various chemical forms of Cu were absorbed by E. splendens, the highest proportion of which was stored in its cell walls (68%) and vacuoles (42%). Most of the Cu in the roots, stems and leaves were extracted by 2% hydrate acetic acid (HAc) in controls. The distribution characteristics of Cu, particularly in the roots, were closely related to the Cu tolerance of E. splendens. In addition, the binding capacity of Cu to soluble salts or proteins decreased and its binding capacity to insoluble oxalate increased with the increasing Cu supply. These results indicated that Cu ions were integrated with compounds of low bioavailable, such as undissolved phosphate or oxalate, which contributed to the metal tolerance and detoxification of E. splendens. Cluster analysis, based on Cu abundance levels, reveals that correlations exist between the chemical forms of Cu and their intracellular locations, which in turn indicates a relationship between their migration activity and toxicity.
土壤中铜(Cu)的积累正成为一个主要的环境问题。海州香薷是一种生长在铜矿区的耐铜植物,能够积累高水平的铜。本研究开发了一种检测铜在细胞内定位和不同化学形态的系统方法,以全面了解海州香薷耐铜和解毒的机制。海州香薷吸收了各种化学形态的铜,其中比例最高的是储存在其细胞壁(68%)和液泡(42%)中。在对照中,根、茎和叶中的大部分铜被2%的水合乙酸(HAc)提取。铜的分布特征,特别是在根中的分布,与海州香薷的耐铜性密切相关。此外,随着铜供应的增加,铜与可溶性盐或蛋白质的结合能力下降,而与不溶性草酸盐的结合能力增加。这些结果表明,铜离子与生物有效性低的化合物,如未溶解的磷酸盐或草酸盐结合,这有助于海州香薷的金属耐受性和解毒。基于铜丰度水平的聚类分析表明,铜的化学形态与其细胞内位置之间存在相关性,这反过来又表明它们的迁移活性和毒性之间存在关系。