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Enchytraeus crypticus Avoid Soil Spiked with Microplastic

机译:eNchytraeus crypticus避免土壤掺入微塑料

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Microplastics (MPs) of varying sizes are widespread pollutants in our environment. The general opinion is that the smaller the size, the more dangerous the MPs are due to enhanced uptake possibilities. It would be of considerably ecological significance to understand the response of biota to microplastic contamination both physically and physiologically. Here, we report on an area choice experiment (avoidance test) using Enchytraeus crypticus , in which we mixed different amounts of high-density polyethylene microplastic particles into the soil. In all experimental scenarios, more Enchytraeids moved to the unspiked sections or chose a lower MP-concentration. Worms in contact with MP exhibited an enhanced oxidative stress status, measured as the induced activity of the antioxidative enzymes catalase and glutathione S-transferase. As plastic polymers per se are nontoxic, the exposure time employed was too short for chemicals to leach from the microplastic, and as the microplastic particles used in these experiments were too large (4 mm) to be consumed by the Enchytraeids, the likely cause for the avoidance and oxidative stress could be linked to altered soil properties.
机译:不同尺寸的微塑料(MPS)在我们的环境中是广泛的污染物。一般认为,尺寸越小,国会议员越危险是由于增强的吸收可能性。在物理和生理学上了解Biota对微塑性污染的响应是相当多的生态意义。在这里,我们使用Enchytraeus Crypticus报告区域选择实验(避免测试),其中我们将不同量的高密度聚乙烯微塑料颗粒混合到土壤中。在所有实验场景中,更多的Enchytraeids移动到未加工的部分或选择较低的MP-浓度。与MP接触的蠕虫表现出增强的氧化应激状态,作为抗氧化酶过氧化氢酶和谷胱甘肽S转移酶的诱导活性测量。由于本身的塑料聚合物是无毒的,所用的曝光时间太短,用于从微塑料中浸出的化学物质,并且随着这些实验中使用的微压颗粒太大(4mm)待消耗,可能导致可能的原因避免和氧化应激可以与改变的土壤性质相关联。

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