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A glyphosate-based herbicide induces sub-lethal effects in early life stages and liver cell line of rainbow trout, Oncorhynchus mykiss

机译:基于草甘膦的除草剂在彩虹鳟鱼早期生命阶段和肝细胞系中诱导亚麻致死作用,oncorhynchus mykiss

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Most pesticides used in agriculture end up in the aquatic environment through runoff and leaching of treated crops. One of the most commonly used herbicides is glyphosate. This compound or its metabolites are frequently detected in surface water in Europe. In the present study, in vivo and in vitro studies were carried out using the early life stages of rainbow trout (Oncorhynchus mykiss) and the cell line RTL-W1 (a liver cell line from rainbow trout) to characterize the toxic effects of glyphosate at environmentally-realistic concentrations. Both studies were performed using the commercial formulation Roundup (R) GT Max, and technical-grade glyphosate for the in vitro study. Eyed-stage embryos were exposed for 3 weeks to sub-lethal concentrations (0.1 and 1 mg/L) of glyphosate using Roundup. Numerous toxicity endpoints were recorded such as survival, hatching success, larval biometry, developmental abnormalities, swimming activity, genotoxicity (formamidopyrimidine DNA-glycosylase Fpg-modified comet assay), lipid peroxidation (TBARS), protein carbonyls and target gene transcription. Concentrations neither affected embryonic or larval survival nor increased developmental abnormalities. However, a significant decrease was observed in the head size of larvae exposed to 1 mg/L of glyphosate. In addition, a significant increase in mobility was observed for larvae exposed to glyphosate at 0.1 mg/L. TSARS levels were significantly decreased on larvae exposed to 1 mg/L (a.i.), and cat and cox1 genes were differently transcribed from controls. DNA damage was detected by the Fpg-modified comet assay in RTL-W1 cell line exposed to the technical-grade glyphosate and Roundup formulation. The results suggest that chronic exposure to glyphosate, at environmental concentrations, could represent a potential risk for early life stages of fish.
机译:农业中使用的大多数农药最终通过径流和治疗作物的浸出来实现水生环境。其中一种最常用的除草剂是草甘膦。该化合物或其代谢物经常在欧洲的地表水中检测到。在本研究中,使用虹鳟(Oncorynchus mykiss)和细胞系RT1-W1(来自虹鳟鱼)的细胞系RT1-W1(虹鳟鱼)进行体外研究,以表征草甘膦的毒性作用环境逼真的浓度。两种研究都是使用商业配方循环(R)GT MAX和用于体外研究的技术级草甘膦进行。使用圆角将Eyed-Stage胚胎暴露于亚致死浓度(0.1和1mg / L)的草甘膦浓度(0.1和1mg / L)。记录了许多毒性终点,例如存活,孵化成功,幼虫生物学,发育异常,游泳活动,基因毒性(甲酰胺嘧啶DNA-糖基糖基酶FPG改性彗星分析),脂质过氧化(TBARS),蛋白质羰基和靶基因转录。浓度既不影响胚胎或幼虫生存也不增加发育异常。然而,在暴露于1mg / L的草甘膦的幼虫的头部尺寸中观察到显着降低。此外,对于在0.1mg / L的草甘膦暴露于草甘膦的幼虫,观察到迁移率显着增加。在暴露于1mg / L(a.i.)的幼虫上,Tsars水平显着降低,并且猫和Cox1基因与对照不同转录。通过暴露于技术级草甘膦和圆形制剂的RTL-W1细胞系中FPG改性的彗星测定检测DNA损伤。结果表明,在环境浓度下,慢性暴露于草甘膦,可以代表鱼类早期生命阶段的潜在风险。

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