MARE - Marine and Environmental Sciences Centre, ESTM, Polytechnic Institute of Leiria, Peniche, Portugal.
Centre for Functional Ecology, Department of Life Sciences, University of Coimbra, Coimbra, Portugal.
Sci Rep. 2018 Jul 27;8(1):11376. doi: 10.1038/s41598-018-29662-6.
The use of integrative molecular approaches can aid in a comprehensive understanding of the effects of toxicants at different levels of biological organization, also supporting risk assessment. The present study aims to unravel the toxicity mechanisms of a widely used herbicide to the arthropod Folsomia candida exposed in a natural soil, by linking effects on reproduction, proteomics and genome-wide gene expression. The EC50 effects on reproduction over 4 weeks was 4.63 mg glyphosate/kg of soil. The formulation included a polyethoxylated tallowamine as an adjuvant, which at 50% effect on reproduction had an estimated concentration of 0.87-1.49 mg/kg of soil. No effects were observed on survival and reproduction when using the isolated active substance, pointing the toxicity of the formulated product to the co-formulant instead of the active ingredient, glyphosate. RNA sequencing and shotgun proteomics were applied to assess differential transcript and protein expressions between exposed and control organisms in time, respectively. Specific functional categories at protein and transcriptome levels were concordant with each other, despite overall limited correlations between datasets. The exposure to this formulation affected normal cellular respiration and lipid metabolism, inducing oxidative stress and leading to impairment in biological life cycle mechanisms such as molting and reproduction.
综合运用分子方法可以帮助我们全面了解毒物在不同生物组织层次上的作用,也有助于风险评估。本研究旨在通过生殖、蛋白质组学和全基因组基因表达的关联,揭示一种广泛使用的除草剂对节肢动物 Folsomia candida 在天然土壤中的毒性机制。暴露于土壤中的除草剂 4 周后,对繁殖的 EC50 值为 4.63mg 草甘膦/公斤土壤。该制剂包含聚氧乙烯化牛脂胺作为助剂,对繁殖有 50%影响时,其估计浓度为 0.87-1.49mg/kg 土壤。当使用分离出的活性物质时,未观察到对生存和繁殖的影响,这表明配方产品的毒性来自共溶剂而不是有效成分草甘膦。RNA 测序和鸟枪法蛋白质组学分别用于在时间上评估暴露和对照生物之间差异表达的转录本和蛋白质。尽管数据集之间总体相关性有限,但蛋白质组和转录组水平的特定功能类别彼此一致。该制剂的暴露会影响正常的细胞呼吸和脂质代谢,诱导氧化应激,并导致蜕皮和繁殖等生物生命周期机制受损。