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Proteomic analysis of the soil filamentous fungus Aspergillus nidulans exposed to a Roundup formulation at a dose causing no macroscopic effect: a functional study

机译:土壤丝状真菌蛋白质组学分析曲霉属植物鳞粉暴露于圆形配方的剂量,导致宏观效应:功能性研究

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RoundupA (R) is a glyphosate-based herbicide (GBH) used worldwide both in agriculture and private gardens. Thus, it constitutes a substantial source of environmental contaminations, especially for water and soil, and may impact a number of non-target organisms essential for ecosystem balance. The soil filamentous fungus Aspergillus nidulans has been shown to be highly affected by a commercial formulation of RoundupA (R) (R450), containing 450 g/L of glyphosate (GLY), at doses far below recommended agricultural application rate. In the present study, we used two-dimensional gel electrophoresis combined to mass spectrometry to analyze proteomic pattern changes in A. nidulans exposed to R450 at a dose corresponding to the no-observed-adverse-effect level (NOAEL) for macroscopic parameters (31.5 mg/L GLY among adjuvants). Comparative analysis revealed a total of 82 differentially expressed proteins between control and R450-treated samples, and 85% of them (70) were unambiguously identified. Their molecular functions were mainly assigned to cell detoxification and stress response (16%), protein synthesis (14%), amino acid metabolism (13%), glycolysis/gluconeogenesis/glycerol metabolism/pentose phosphate pathway (13%) and Krebs TCA cycle/acetyl-CoA synthesis/ATP metabolism (10%). These results bring new insights into the understanding of the toxicity induced by higher doses of this herbicide in the soil model organism A. nidulans. To our knowledge, this study represents the first evidence of protein expression modulation and, thus, possible metabolic disturbance, in response to an herbicide treatment at a dose that does not cause any visible effect. These data are likely to challenge the concept of "substantial equivalence" when applied to herbicide-tolerant plants.
机译:Roundupa(R)是在农业和私人花园中全球使用的基于草甘膦的除草剂(GBH)。因此,它构成了环境污染的大量来源,特别是水和土壤,并且可能影响许多对生态系统平衡至关重要的非靶毒性。已显示土壤丝状真菌曲霉菌患者对综合(R450)的商业制剂,含有450克/升草甘膦(GLY)的商业制剂,目前远低于推荐的农业申请率。在本研究中,我们使用二维凝胶电泳组合到质谱法,分析蛋白质组学模式的蛋白质组学模式在对应于宏观参数的无观察到的 - 不良效果水平(NOAEL)的剂量下暴露于R450的蛋白质组样式变化(31.5佐剂中mg / l gly。对比分析显示,对照和R450处理的样品中总共82种差异表达蛋白质,其中85%(70)毫不用典先鉴定。它们的分子功能主要分配给细胞排毒和应力反应(16%),蛋白质合成(14%),氨基酸代谢(13%),糖溶解/葡糖生成/甘油代谢/ pentose磷酸盐途径(13%)和克雷斯TCA循环/乙酰-CoA合成/ ATP代谢(10%)。这些结果使新的见解在土壤模型生物A. Nidulans中对较高剂量的这种除草剂诱导的毒性的理解。据我们所知,该研究代表了蛋白质表达调制的第一种证据,因此,响应于在不造成任何可见效果的剂量的药物处理中,可能的代谢紊乱。当应用于除草剂的植物时,这些数据可能会挑战“大量等价”的概念。

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