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首页> 外文期刊>Environmental Science and Pollution Research >Multiple effects of a commercial RoundupA (R) formulation on the soil filamentous fungus Aspergillus nidulans at low doses: evidence of an unexpected impact on energetic metabolism
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Multiple effects of a commercial RoundupA (R) formulation on the soil filamentous fungus Aspergillus nidulans at low doses: evidence of an unexpected impact on energetic metabolism

机译:低剂量商业RoundupA(R)制剂对土壤丝状真菌构巢曲霉的多重影响:对能量代谢产生意想不到的影响的证据

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摘要

Soil microorganisms are highly exposed to glyphosate-based herbicides (GBH), especially to RoundupA (R) which is widely used worldwide. However, studies on the effects of GBH formulations on specific non-rhizosphere soil microbial species are scarce. We evaluated the toxicity of a commercial formulation of RoundupA (R) (R450), containing 450 g/L of glyphosate (GLY), on the soil filamentous fungus Aspergillus nidulans, an experimental model microorganism. The median lethal dose (LD50) on solid media was between 90 and 112 mg/L GLY (among adjuvants, which are also included in the RoundupA (R) formulation), which corresponds to a dilution percentage about 100 times lower than that used in agriculture. The LOAEL and NOAEL (lowest- and no-observed-adverse-effect levels) associated to morphology and growth were 33.75 and 31.5 mg/L GLY among adjuvants, respectively. The formulation R450 proved to be much more active than technical GLY. At the LD50 and lower concentrations, R450 impaired growth, cellular polarity, endocytosis, and mitochondria (average number, total volume and metabolism). In contrast with the depletion of mitochondrial activities reported in animal studies, R450 caused a stimulation of mitochondrial enzyme activities, thus revealing a different mode of action of RoundupA (R) on energetic metabolism. These mitochondrial disruptions were also evident at a low dose corresponding to the NOAEL for macroscopic parameters, indicating that these mitochondrial biomarkers are more sensitive than those for growth and morphological ones. Altogether, our data indicate that GBH toxic effects on soil filamentous fungi, and thus potential impairment of soil ecosystems, may occur at doses far below recommended agricultural application rate.
机译:土壤微生物高度暴露于草甘膦基除草剂(GBH),尤其是全世界广泛使用的RoundupA(R)。但是,关于GBH制剂对特定的非根际土壤微生物物种影响的研究很少。我们评估了含有450 g / L草甘膦(GLY)的RoundupA(R)(R450)商业制剂对土壤丝状真菌构巢曲霉(Aspergillus nidulans)(一种实验模型微生物)的毒性。在固体培养基上的中值致死剂量(LD50)在90至112 mg / L GLY之间(佐剂中,也包括在RoundupA(R)制剂中),相当于稀释百分率比使用中的稀释百分率低约100倍。农业。在佐剂中,与形态和生长相关的LOAEL和NOAEL(最低和未观察到的不良反应水平)分别为33.75和31.5 mg / L GLY。事实证明,R450配方比GLY技术更具活性。在LD50和更低的浓度下,R450损害了生长,细胞极性,胞吞作用和线粒体(平均数,总体积和代谢)。与动物研究中报道的线粒体活性减少相反,R450刺激了线粒体酶活性,从而揭示了RoundupA(R)对能量代谢的不同作用方式。这些线粒体破坏在低剂量下也很明显,对应于宏观参数的NOAEL,表明这些线粒体生物标志物比对生长和形态学标志物更为敏感。总而言之,我们的数据表明,GBH对土壤丝状真菌的毒性作用以及由此对土壤生态系统的潜在损害,可能以远低于建议的农业施用量的剂量发生。

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