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首页> 外文期刊>Environmental Pollution >Altered gene expression in Chironomus riparius (insecta) in response to tire rubber and polystyrene microplastics
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Altered gene expression in Chironomus riparius (insecta) in response to tire rubber and polystyrene microplastics

机译:依赖于轮胎橡胶和聚苯乙烯微薄塑料的依ch王子(Inseta)中的改变基因表达

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The extent until which plastics are present in our surrounding environment completely exceeds our expectations. Plastic materials in the form of microplastics have been found in terrestrial, freshwater and marine environments and are transported through the atmosphere even to remote locations. However, we are still far from understanding the effects that they may have caused and are causing to biota. In the present study, we investigated the alterations in the expression of twelve genes in the aquatic insect Chironomus riparius after 36 h exposures to polystyrene and tire rubber microplastics at nominal concentrations of 1 and 10 mg L-1. The results indicated that several genes encoding for heat shock proteins (hsp90, Glycoprotein 93 (Gp93), hsc70, hsp60, hsp40, and the small HSP hsp17) were overexpressed respect to the control. In addition, the genes coding for manganese superoxide dismutase (SOD Mn, related to alleviation of oxidative stress) and for the FK506-binding protein of 39 kDa. (FKBP39, related to development and pupation) showed altered expression. Most of the alterations on gene expression level occurred at a concentration of 10 mg L-1 of tire rubber microplastics, although specific modifications arose at other concentrations of both rubber and polystyrene. On the contrary, one hsp gene (hsp10) and genes related to biotransformation and detoxification (Cyp9f2, Cyp12a2, and ABCB6) did not alter their expression in any of the treatments. Overall, the results of the gene expression indicated that microplastics (especially tire rubber) or their additives caused cellular stress that led to some alterations in the normal gene expression but did not cause any mortality after 36 h. These results highlight the need for more studies that describe the alterations caused by microplastics at the molecular level. Additionally, it opens questions about the effects caused to aquatic fauna in environmental realistic situations, especially in hot spots of microplastic contamination (e.g., tire rubber released in storm water runoff discharge points).
机译:在我们周围环境中存在塑料的程度,完全超出了我们的期望。在陆地,淡水和海洋环境中发现了微塑料形式的塑料材料,并且甚至通过大气运输到远程位置。然而,我们仍然远未了解他们可能引起的效果并导致生物群。在本研究中,我们研究了在36小时暴露于聚苯乙烯和轮胎橡胶微薄的标称浓度为1和10mg L-1后,在水生昆虫骑士啶猴中表达12种基因表达的改变。结果表明,用于热冲击蛋白的几个基因(HSP90,糖蛋白93(GP93),HSC70,HSP60,HSP40和小HSP HSP17)对控制过表达的对照。此外,编码用于锰超氧化物歧化酶的基因(SOD MN,与氧化应激的缓解相关)和39kDa的FK506结合蛋白。 (与开发和化蛹相关的FKBP39)表现出改变的表达。尽管在其他浓度的两种橡胶和聚苯乙烯下产生了浓度的橡胶和聚苯乙烯,但大多数基因表达水平的改变发生在10mg L-1的轮胎橡胶微薄塑料中。相反,一个HSP基因(HSP10)和与生物转化和解毒有关的基因(CYP9F2,CYP12A2和ABCB6)并未改变其在任何治疗中的表达。总的来说,基因表达的结果表明,微塑料(尤其是轮胎橡胶)或其添加剂导致细胞应激导致正常基因表达中的一些改变,但在36小时后没有引起任何死亡率。这些结果强调了对更多研究的需要描述在分子水平下的微薄塑料引起的改变。此外,它开辟了关于在环境现实情况下对水生动物造成的影响的问题,特别是在微塑性污染的热点(例如,在雨水径流排放点释放的轮胎橡胶)。

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