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Assessing The Phytotoxicity Of Different Particle-size Aged Refuse Using Zea Mays L. Bioassay

机译:使用Zea Mays L.生物测定法评估不同粒径的老年垃圾的植物毒性

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With increasing attention paid to the recycling use of aged refuse as vegetated soil, it is important to check its possible polluting risk and probe the tolerance of plant system to its stress. For this reason, several physiological responses in Zea mays L. (maize) to the leaching samples of aged refuse in different particle-size (900-300, 300-150, 150-105, 105-90, and 90-0 μm) were investigated in the present study, including growth, lipid peroxidation, protein oxidation and activities of antioxidant enzymes. The results indicate that the aged refuse affected the growth of maize seedlings, and elevated the levels of lipid peroxidation and protein oxidation in leaf tissues in a time-dependent manner, accompanying by the changes of antioxidant status. Also, above physiological responses varied as a function of particle-size distribution of the aged refuse, and statistical growth inhibition and oxidative stress occurred after the exposure of smaller particle-size samples, which contained higher level trace metals, the characteristic pollutants in the aged refuse. The results implicate that aged refuse might cause environmental stress on plant system, but the polluting risk mainly resulted from smaller particle-size samples. Therefore, the critical point of utilizing aged refuse as vegetated soil focused on analyzing its particle-size distribution, and screening out appropriate particle-size samples.
机译:随着对废弃垃圾作为植物土壤的回收利用的关注日益增加,重要的是检查其可能的污染风险并探究植物系统对其压力的耐受性。因此,玉米(Zea mays L。)(玉米)对不同粒径(900-300、300-150、150-105、105-90和90-0μm)的老化垃圾浸出样品的几种生理反应。在本研究中进行了研究,包括生长,脂质过氧化,蛋白质氧化和抗氧化酶的活性。结果表明,老化的垃圾影响玉米幼苗的生长,并随着时间的流逝增加叶片组织中脂质过氧化和蛋白质氧化的水平,并伴随着抗氧化剂状态的变化。同样,上述生理反应随老化垃圾的粒度分布而变化,并且在暴露较小的粒度样本(其中含有较高水平的痕量金属,老化的特征性污染物)后,发生了统计生长抑制和氧化应激。垃圾。结果表明,老化的垃圾可能对植物系统造成环境压力,但污染风险主要是由较小粒径的样品引起的。因此,利用老化垃圾作为植被土壤的关键在于分析其粒度分布,并筛选出合适的粒度样品。

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