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评价芴对蚯蚓的生态毒性反应及其毒性作用机制:多层次的生物组织分析。

Evaluation of fluorene-caused ecotoxicological responses and the mechanism underlying its toxicity in Eisenia fetida: Multi-level analysis of biological organization.

机构信息

School of Environmental Science and Engineering, Shandong University, China-America CRC for Environment & Health, Shandong Province, 72# Jimo Binhai Road, Qingdao, Shandong 266237, PR China.

School of Environmental Science and Engineering, Shandong University, China-America CRC for Environment & Health, Shandong Province, 72# Jimo Binhai Road, Qingdao, Shandong 266237, PR China.

出版信息

J Hazard Mater. 2022 Sep 5;437:129342. doi: 10.1016/j.jhazmat.2022.129342. Epub 2022 Jun 13.

Abstract

Fluorene is an important toxic chemical that exists ubiquitously in the environment, and it has also been suggested to exert potential deleterious effects on soil invertebrates. However, knowledge about the toxic effects of fluorene and its underlying mechanisms of the effects on key soil organism earthworms remains limited. From this view point, this study was undertaken to explore the potential effects of fluorene and its underlying mechanisms in Eisenia fetida at the level of experimental animals, tissue, cell, and molecule. It was concluded that fluorene exerted lethal activity to adult E. fetida on day 14 with the LC determined to be 88.61 mg/kg. Fluorene-induced ROS caused oxidative stress in E. fetida, resulting in DNA damage, protein carbonylation, and lipid peroxidation. Moreover, changed antioxidative enzymatic activities, non-enzymatic antioxidative activities, and total antioxidative capacity in E. fetida by fluorene stress are associated with antioxidative and protective effects. High-dose fluorene (> 2.5 mg/kg) exposure significantly caused histopathological lesions including the microstructure of body wall, intestine, and seminal vesicle of earthworms. Also, the reproductive system of E. fetida was clearly disrupted by fluorene stress, leading to poor reproduction ability (decreased cocoon and juvenile production) in earthworms. It is found that E. fetida growth was significantly inhibited when treated with high-dose fluorene, thereby causing normal growth disorders. Additionally, fluorene stress triggered the abnormal mRNA expression related to oxidative stress (e.g., metallothionein and heat shock protein 70), growth (translationally controlled tumour protein), reproduction (annetocin precursor) in E. fetida. Together, both high-dose and long-term exposure elicited more severe poisoning effects on earthworms using the Integrated Biological Response (IBR) index, and E. fetida coelomocyte DNA was the most negatively affected by fluorene stress. This study comprehensively evaluated fluorene-induced toxicity in E. fetida, and its underlying molecular mechanisms mediating the toxic responses have been elucidated. These findings provide valuable data for assessing potential ecological risks posed by fluorene-contaminated soil.

摘要

荧蒽是一种普遍存在于环境中的重要有毒化学物质,也被认为对土壤无脊椎动物具有潜在的有害影响。然而,关于荧蒽对关键土壤生物蚯蚓的毒性影响及其潜在机制的知识仍然有限。从这个角度来看,本研究旨在探索荧蒽对赤子爱胜蚓在实验动物、组织、细胞和分子水平上的潜在影响及其潜在机制。研究结果表明,荧蒽对成年赤子爱胜蚓在第 14 天表现出致死活性,LC 50 为 88.61mg/kg。荧蒽诱导的 ROS 导致赤子爱胜蚓氧化应激,导致 DNA 损伤、蛋白质羰基化和脂质过氧化。此外,荧蒽胁迫下赤子爱胜蚓抗氧化酶活性、非酶抗氧化活性和总抗氧化能力的变化与抗氧化和保护作用有关。高剂量荧蒽(>2.5mg/kg)暴露显著导致蚯蚓体壁、肠道和精囊等微观结构的组织病理学损伤。此外,荧蒽胁迫明显破坏赤子爱胜蚓的生殖系统,导致蚯蚓生殖能力下降(茧和幼体产量减少)。研究发现,高剂量荧蒽处理会显著抑制赤子爱胜蚓的生长,从而导致正常生长障碍。此外,荧蒽胁迫触发与氧化应激(如金属硫蛋白和热休克蛋白 70)、生长(翻译控制肿瘤蛋白)和生殖(annetocin 前体)相关的异常 mRNA 表达在赤子爱胜蚓中。总的来说,使用综合生物反应(IBR)指数,高剂量和长期暴露对蚯蚓产生更严重的毒性作用,而荧蒽胁迫对赤子爱胜蚓体腔细胞 DNA 的影响最大。本研究全面评估了荧蒽对赤子爱胜蚓的诱导毒性及其潜在的分子机制介导毒性反应。这些发现为评估荧蒽污染土壤的潜在生态风险提供了有价值的数据。

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