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环境水平下的新型杀菌剂的相对比较:以早期斑马鱼(Danio rerio)的线粒体功能和幼虫活性为重点。

Relative comparison of strobilurin fungicides at environmental levels: Focus on mitochondrial function and larval activity in early staged zebrafish (Danio rerio).

机构信息

Institute of Environmental Research at Greater Bay Area, Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou, 510006, China.

The New Hope Liuhe Co., Ltd., Qingdao, China.

出版信息

Toxicology. 2021 Mar 30;452:152706. doi: 10.1016/j.tox.2021.152706. Epub 2021 Feb 3.

Abstract

Strobilurin fungicides are used globally and have been detected in microgram per liter concentrations in aquatic environments. Here, we determined the potential toxicity of four commonly used strobilurins (azoxystrobin, kresoxim-methyl, pyraclostrobin, trifloxystrobin) on mitochondrial function and locomotor activity of larval zebrafish at an environmentally relevant level. As the mode of action of strobilurins in fungi is binding to cytochrome bc1 in mitochondrial complex III, we evaluated exposure effects on mitochondrial oxidative phosphorylation of zebrafish, by measuring oxygen consumption rates, mitochondria-related enzyme activities, and transcripts levels for genes associated with the electron transfer chain and citric acid cycle. We found that 50 nM pyraclostrobin and trifloxystrobin lowered basal respiration, oligomycin-induced ATP respiration, and maximal respiration of embryos. Dysfunction in mitochondrial bioenergetics was associated with changes in mitochondrial complex III activity and transcripts of oxidative respiration and stress-related genes. Lower activity of complex III, and reduced cytb mRNA levels were hypothesized to contribute to reduced electron supply to complex IV and V. Both coxI and atp6 were up-regulated, suggesting a compensatory response to impaired oxidative respiration. Cluster analysis indicated that strobilurin-induced oxidative stress and cytb transcript were related to impaired oxidative phosphorylation. We also assessed larval behavior responses, as reduced ATP can affect activity. We observed that pyraclostrobin and trifloxystrobin induced hypoactive responses in zebrafish. At 50 nM, azoxystrobin and kresoxim-methyl exerted no effects on mitochondrial function nor locomotion of zebrafish. Studies such as this are important for determining sublethal toxicity to these fungicides, as widespread detection of strobilurins in aquatic environments suggests there is a potential for adverse effects in aquatic organisms.

摘要

啶酰菌胺类杀菌剂在全球范围内被广泛使用,并在水生环境中以微克/升的浓度被检测到。在这里,我们在环境相关水平上确定了四种常用啶酰菌胺(咯菌腈、肟菌酯、吡唑醚菌酯、唑菌胺酯)对幼虫斑马鱼线粒体功能和运动活性的潜在毒性。由于啶酰菌胺在真菌中的作用模式是与线粒体复合物 III 中的细胞色素 bc1 结合,我们通过测量耗氧量、与线粒体相关的酶活性以及与电子传递链和柠檬酸循环相关的基因的转录水平,评估了啶酰菌胺暴露对斑马鱼线粒体氧化磷酸化的影响。我们发现,50 nM 的咯菌腈和唑菌胺酯降低了胚胎的基础呼吸、寡霉素诱导的 ATP 呼吸和最大呼吸。线粒体生物能量学的功能障碍与线粒体复合物 III 活性以及氧化呼吸和应激相关基因的转录变化有关。推测线粒体复合物 III 活性降低和 cytb mRNA 水平降低导致向复合物 IV 和 V 的电子供应减少。coxI 和 atp6 的上调表明对氧化呼吸受损的补偿反应。聚类分析表明,啶酰菌胺诱导的氧化应激和 cytb 转录与氧化磷酸化受损有关。我们还评估了幼虫行为反应,因为减少的 ATP 会影响活动。我们观察到咯菌腈和唑菌胺酯诱导斑马鱼出现低活性反应。在 50 nM 时,咯菌腈和肟菌酯对斑马鱼的线粒体功能和运动活性没有影响。此类研究对于确定这些杀菌剂的亚致死毒性非常重要,因为啶酰菌胺在水生环境中的广泛检测表明它们对水生生物可能存在潜在的不利影响。

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