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The Stress Response and Remediation of Plant on Oil-contaminated Soil

机译:植物对油污土壤的应力反应和修复

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Oil pollution is seriously harmful to soil environment and human health. In order to verify the physiological and biochemical response of phytoremediation to oil-contaminated soil and test the relationship between the soil activity and the rate of oil degradation, in the present study, alfalfa, ryegrass, marigold and cosmos are used as the test plants. Through observing the morphological differences, such as germination rate, seedling height and root length, of four plant species under different concentrations of oil-contaminated soil, and measuring the physiological and biochemical indexes, which including MDA, soluble sugars, free proline, soluble protein and chlorophyll etc, and the change of oil degradation rate during the growth process of plant, results proved that plants could improve self-protection capabilities to resist the oil pollution by accumulating osmoregulation substances when they were subject to oil-contaminated stress. By analyzing the changes of polyphenol oxidase, it indicated that the plants can regulate enzyme activity in the oil-contaminated soil, and enhanced it. Comprehensive comparison of the above indexes, we draw a conclusion that alfalfa is an ideal species to repair the oil-contaminated soiland Marigold is the second candidate. In general, our work will lay the theoretic basis for phytoremediation technology research.
机译:石油污染对土壤环境和人类健康有害。为了验证植物化的生理生化反应,对油污的土壤进行测试,并在目前的研究中测试土壤活性与油退化速率之间的关系,苜蓿,黑麦草,万寿菊和宇宙用作试验厂。通过观察不同浓度的油污土壤的四种植物物种的形态差异,例如萌发率,幼苗高度和根长,并测量生理生化指标,包括MDA,可溶性糖,自由脯氨酸,可溶性蛋白质和叶绿素等,以及植物生长过程中的油降解率的变化,结果证明,植物可以通过在受油污污染的压力受到渗透渗透性物质来抵抗油污的自我保护能力。通过分析多酚氧化酶的变化,表明植物可以调节油污土壤中的酶活性,并增强它。综合比较上述索引,我们得出了一个结论,即苜蓿是修复油污的土壤的理想物种是第二个候选人。一般而言,我们的工作将为植物修复技术研究奠定理论基础。

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