Tobacco Research Institute of Chinese Academy of Agricultural Sciences (CAAS), Qingdao, 266101, PR China.
Tobacco Research Institute of Chinese Academy of Agricultural Sciences (CAAS), Qingdao, 266101, PR China.
Environ Pollut. 2020 Oct;265(Pt B):115100. doi: 10.1016/j.envpol.2020.115100. Epub 2020 Jun 26.
As a promising fungicide, the potential environmental risk of trifloxystrobin (TFS) and its main metabolism trifloxystrobin acid (TFSA) in soil environment should be given special attention. The present study investigated the potential risks of TFS and TFSA in soil environment to earthworms (Eisenia fetida) through measuring several biomarkers. Residual analysis showed that TFSA was more stable than TFS in artificial soil with half-lives ranging from 138.6 to 231.0 d and 20.4-24.7 d, respectively. Additionally, the accumulation of TFS in earthworms increased in the beginning and then decreased from day 14, while that of TFSA continuously increased. At concentrations of 4.0 mg/kg and 10.0 mg/kg, the weight and lysosomal membrane stability of earthworms were reduced; however, the superoxide dismutase (SOD) activity, glutathione-S-transferase (GST) activity and malondialdehyde (MDA) content in earthworms were enhanced by TFS and TFSA. Moreover, the growth inhibition effect and the oxidative damage level induced by TFSA to earthworms were higher than those induced by TFS. The transcriptome analysis date indicated that the differentially expressed genes (DEGs) in both TFS and TFSA treatments were mainly enriched in ribosome pathway and lysosome pathway, finally affecting the protein synthesis and proteolysis in earthworms. The findings of the present study indicated that TFSA may pose a higher risk in the soil environment than TFS.
作为一种有前途的杀菌剂,三氟醚唑(TFS)及其主要代谢物三氟醚唑酸(TFSA)在土壤环境中的潜在环境风险应引起特别关注。本研究通过测量几种生物标志物,研究了 TFS 和 TFSA 对土壤环境中蚯蚓(赤子爱胜蚓)的潜在风险。残留分析表明,TFSA 在人工土壤中的稳定性优于 TFS,半衰期分别为 138.6 至 231.0 d 和 20.4 至 24.7 d。此外,TFS 在蚯蚓体内的积累在最初增加,然后从第 14 天开始减少,而 TFSA 的积累则持续增加。在 4.0 和 10.0 mg/kg 浓度下,蚯蚓的体重和溶酶体膜稳定性降低;然而,TFS 和 TFSA 增强了蚯蚓中超氧化物歧化酶(SOD)活性、谷胱甘肽-S-转移酶(GST)活性和丙二醛(MDA)含量。此外,TFSA 对蚯蚓的生长抑制作用和氧化损伤水平高于 TFS。转录组分析数据表明,TFS 和 TFSA 处理下的差异表达基因(DEGs)主要富集在核糖体途径和溶酶体途径,最终影响蚯蚓的蛋白质合成和蛋白水解。本研究结果表明,TFSA 在土壤环境中可能比 TFS 具有更高的风险。