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农用化学品 S-甲草氯会破坏鳔的分子介质和形态:对斑马鱼(Danio rerio)运动活性的影响。

The agrochemical S-metolachlor disrupts molecular mediators and morphology of the swim bladder: Implications for locomotor activity in zebrafish (Danio rerio).

机构信息

Department of Physiological Sciences and Center for Environmental and Human Toxicology, College of Veterinary Medicine, University of Florida, Gainesville, FL 32611, USA; State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, PR China.

Department of Physiological Sciences and Center for Environmental and Human Toxicology, College of Veterinary Medicine, University of Florida, Gainesville, FL 32611, USA.

出版信息

Ecotoxicol Environ Saf. 2021 Jan 15;208:111641. doi: 10.1016/j.ecoenv.2020.111641. Epub 2020 Nov 19.

Abstract

Metolachlor herbicides are derived from the chloroacetamide chemical family of which there are the S- and R-metolachlor isomers. S-metolachlor is a selective herbicide that inhibits cell division and mitosis via enzyme interference. The herbicide is used globally in agriculture and studies report adverse effects in aquatic organisms; however, there are no studies investigating sub-lethal effects of S-metolachlor on swim bladder formation, mitochondrial ATP production, nor light-dark preference behaviors in fish. These endpoints are relevant for larval locomotor activity and metabolism. To address these knowledge gaps, we exposed zebrafish embryos/larvae to various concentrations of S-metolachlor (0.5-50 µM) over early development. S-metolachlor affected survival, hatching percentage, and increased developmental deformities at concentrations of 50 µM and above. Exposure levels as high as 200 µM for 24 and 48 h did not alter oxygen consumption rates in zebrafish, and there were no changes detected in endpoints related to mitochondrial oxidative phosphorylation. We observed impairment of swim bladder inflation at 50 µM in 6 dpf larvae. To elucidate mechanisms related to this, we measured relative transcript abundance for genes associated with the swim bladder (smooth muscle alpha (α)-2 actin, annexin A5, pre-B-cell leukemia homeobox 1a). Smooth muscle alpha (α)-2 actin mRNA levels were reduced in fish exposed to 50 µM while annexin A5 mRNA levels were increased in abundance, corresponding to reduced swim bladder size in larvae. A visual motor response test revealed that larval zebrafish exhibited some hyperactivity in the light with exposure to the herbicide and only the highest dose tested (50 µM) resulted in hypoactivity in the dark cycle. Regression analysis indicated that there was a positive relationship between surface area of the swim bladder and distance traveled, and the size of the swim bladder explained ~10-14% in the variation for total distance moved. Lastly, we tested larvae in a light dark preference test, and we did not detect any altered behavioral response to any concentration tested. Here we present new data on sublethal endpoints associated with exposure to the herbicide S-metolachlor and demonstrate that this chemical may disrupt transcripts associated with swim bladder formation and morphology, which could ultimately affect larval zebrafish activity. These data are expected to contribute to further risk assessment guidelines for S-metolachlor in aquatic ecosystems.

摘要

甲草胺类除草剂来源于氯乙酰胺化学家族,其中有 S-和 R-甲草胺异构体。S-甲草胺是一种选择性除草剂,通过酶干扰抑制细胞分裂和有丝分裂。该除草剂在全球农业中广泛使用,研究报告称其对水生生物有不良影响;然而,目前尚无研究调查 S-甲草胺对鳔形成、线粒体 ATP 产生以及鱼类明暗偏好行为的亚致死效应。这些终点与幼虫的运动活动和新陈代谢有关。为了弥补这些知识空白,我们在早期发育过程中用不同浓度的 S-甲草胺(0.5-50µM)处理斑马鱼胚胎/幼虫。S-甲草胺在浓度为 50µM 及以上时会影响存活率、孵化率,并增加发育畸形。在 24 和 48 小时内,暴露水平高达 200µM 也不会改变斑马鱼的耗氧率,也没有检测到与线粒体氧化磷酸化相关的终点发生变化。我们观察到在 6 dpf 幼虫中,50µM 浓度下的鳔充气受损。为了阐明与此相关的机制,我们测量了与鳔相关的基因的相对转录丰度(平滑肌α(α)-2 肌动蛋白、膜联蛋白 A5、前 B 细胞白血病同源框 1a)。暴露于 50µM 的鱼中平滑肌α(α)-2 肌动蛋白 mRNA 水平降低,而膜联蛋白 A5 mRNA 水平增加,相应地导致幼虫鳔体积减小。视觉运动反应测试显示,暴露于除草剂的幼鱼在光线下表现出一定的过度活跃,而只有测试的最高剂量(50µM)导致暗周期的活动减少。回归分析表明,鳔表面积与游动距离之间存在正相关关系,鳔的大小解释了总移动距离变化的 10-14%。最后,我们在明-暗偏好测试中测试了幼虫,没有发现任何对测试浓度的行为反应改变。这里我们提供了与暴露于 S-甲草胺相关的亚致死终点的新数据,并证明这种化学物质可能会破坏与鳔形成和形态相关的转录本,这可能最终会影响幼鱼的活动。这些数据有望为水生生态系统中 S-甲草胺的进一步风险评估指南做出贡献。

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