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High-level Zn And Cd Tolerance In Silene Paradoxa L. From A Moderately Cd- And Zn-contaminated Copper Mine Tailing

机译:轻度镉和锌污染的铜矿尾矿中硅悖论的高锌和镉耐受性

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摘要

Cadmium and zinc tolerance were examined in populations of Silene paradoxa, one from uncontaminated calcareous soil (CVD) and one from a mine tailing (FC) (Cd < 1 -15 ppm, Zn 400-1300 ppm, pH 2-6). The mine population exhibited extremely high Zn and Cd tolerance levels, although the degrees of Cd and Zn enrichment relatively low at the population site. Cd and Zn hypertolerance in FC were associated with reduced rates of accumulation of these metals, both in roots and shoots (Cd), or exclusively in shoots (Zn). However, exclusion potentially explained only a minor part of the superior tolerance in FC. Cd hypertolerance in FC was associated with decreased, rather than enhanced phytochelatin accumulation. The remarkably high levels of Cd and Zn hypertolerance in FC might relate to the low soil pH, due to oxidation of sulphide minerals, and the absence of soil organic matter at the FC site.
机译:在悖论甲虫种群中检测了对镉和锌的耐受性,一种来自未污染的钙质土壤(CVD),另一种来自矿山尾矿(FC)(Cd <1 -15 ppm,Zn 400-1300 ppm,pH 2-6)。矿山人口对锌和镉的耐受性极高,尽管人口现场对镉和锌的富集程度相对较低。 FC中的Cd和Zn超耐受性与这些金属在根和芽(Cd)或仅在芽(Zn)中的积累速率降低相关。但是,排除可能仅解释了FC优异耐受性的一小部分。 FC中的Cd超耐受性与植物螯合素的减少而不是增加有关。 FC中Cd和Zn的超高耐受性水平极高可能与土壤pH值低有关,这是由于硫化物矿物质的氧化以及FC地点不存在土壤有机质。

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