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首页> 外文期刊>Water, Air, & Soil Pollution >Phytotoxic Effects of Heavy Metal Contaminated Soil Reveal Limitations of Extract-Based Ecotoxicological Tests
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Phytotoxic Effects of Heavy Metal Contaminated Soil Reveal Limitations of Extract-Based Ecotoxicological Tests

机译:重金属污染土壤的植物毒性作用揭示了基于提取物的生态毒理学测试的局限性

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Toxicity of contaminated soils cannot be assessed only by chemical analyses, therefore bioassays are increasingly used. Widely accepted ecotoxicological methods include organisms from all levels of the food-chain but plant-based ones are usually restricted to germination and growth tests. In our study the toxicity of heavy metal contaminated soil samples were examined not only by germination and bacterial tests of their extracts but also by the measurement of physiological parameters of two plant species (cucumber and wheat) that were grown directly on the contaminated substrate. Changes in chlorophyll concentration, stomatal conductance, fluorescence characteristics, and malondialdehyde (MDA) level (showing oxidative damage to lipids in leaves) undoubtedly indicated the mobilisation and toxic effect of contaminants. The results showed that the sensitivity of plant physiological parameters was higher than that of the extract-based ecotoxicological tests. Whereas these latter could not reveal the toxic effect of the highly contaminated soils the plants have reacted in a more complex way and their physiological parameters have changed significantly in all cases validating their use in such studies. The applied measurements also allow quicker and more reliable testing even under field conditions (stomatal conductance) or the detection of a more complex response if detailed analyses is needed (MDA, fluorescence imaging) thus underlining the importance of plant-based methods.
机译:污染土壤的毒性不能仅通过化学分析来评估,因此越来越多地使用生物分析。广泛接受的生态毒理学方法包括来自食物链各个层面的生物,但基于植物的方法通常仅限于发芽和生长测试。在我们的研究中,不仅通过重金属污染土壤样品的发芽和细菌测试,而且还通过测量直接生长在受污染基质上的两种植物(黄瓜和小麦)的生理参数,来检查重金属污染土壤样品的毒性。叶绿素浓度,气孔导度,荧光特性和丙二醛(MDA)水平的变化(表明叶片中脂质的氧化损伤)无疑表明了污染物的动员和毒性作用。结果表明,植物生理参数的敏感性高于基于提取物的生态毒理试验。尽管后者不能揭示高度污染的土壤的毒性作用,但植物以更复杂的方式发生了反应,并且在所有情况下其生理参数均发生了显着变化,从而验证了其在此类研究中的应用。即使在野外条件下(气孔电导),应用的测量值也可以进行更快,更可靠的测试,如果需要进行详细分析(MDA,荧光成像),则可以检测到更复杂的响应,从而强调了基于植物的方法的重要性。

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