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紫贻贝(Mytilus galloprovincialis Lamarck, 1819)暴露于除草剂代谢物异丙甲草胺 ESA 后的适应性评估。

Fitness assessment of Mytilus galloprovincialis Lamarck, 1819 after exposure to herbicide metabolite propachlor ESA.

机构信息

University of South Bohemia in Ceske Budejovice, Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Research Institute of Fish Culture and Hydrobiology, Zatisi 728/II, 389 25, Vodnany, Czech Republic.

University of Messina, Department of Veterinary Science, Viale Giovanni Palatucci Snc, 98168, Messina, Italy.

出版信息

Environ Pollut. 2023 Aug 15;331(Pt 1):121878. doi: 10.1016/j.envpol.2023.121878. Epub 2023 May 25.

Abstract

The lack of data on the chronic effects of chloroacetanilide herbicide metabolites on non-target aquatic organisms creates a gap in knowledge about the comprehensive impacts of excessive and repeated pesticide use. Therefore, this study evaluates the long-term effects of propachlor ethanolic sulfonic acid (PROP-ESA) after 10 (T1) and 20 (T2) days at the environmental level of 3.5 μg.L (E1) and its 10x fold multiply 35 μg.L (E2) on a model organism Mytilus galloprovincialis. To this end, the effects of PROP-ESA usually showed a time- and dose-dependent trend, especially in its amount in soft mussel tissue. The bioconcentration factor increased from T1 to T2 in both exposure groups - from 2.12 to 5.30 in E1 and 2.32 to 5.48 in E2. Biochemical haemolymph profile and haemocyte viability were not affected by PROP-ESA exposure. In addition, the viability of digestive gland (DG) cells decreased only in E2 compared to control and E1 after T1. Moreover, malondialdehyde levels increased in E2 after T1 in gills, and DG, superoxidase dismutase activity and oxidatively modified proteins were not affected by PROP-ESA. Histopathological observation showed several damages to gills (e.g., increased vacuolation, over-production of mucus, loss of cilia) and DG (e.g., growing haemocyte trend infiltrations, alterations of tubules). This study revealed a potential risk of chloroacetanilide herbicide, propachlor, via its primary metabolite in the Bivalve bioindicator species M. galloprovincialis. Furthermore, considering the possibility of the biomagnification effect, the most prominent threat poses the ability of PROP-ESA to be accumulated in edible mussel tissues. Therefore, future research about the toxicity of pesticide metabolites alone or their mixtures is needed to gain comprehensive results about their impacts on living non-target organisms.

摘要

缺乏关于氯乙酰胺类除草剂代谢物对非靶标水生生物慢性影响的数据,这就形成了一个知识空白,使我们无法全面了解过度和重复使用农药的综合影响。因此,本研究评估了丙草胺乙醇磺酸(PROP-ESA)在环境水平 3.5μg.L(E1)及其 10 倍(35μg.L,E2)下,10 天(T1)和 20 天(T2)后对模式生物贻贝(Mytilus galloprovincialis)的长期影响。为此,PROP-ESA 的影响通常表现出时间和剂量依赖性趋势,特别是在软体贻贝组织中的含量方面。在两个暴露组中,生物浓缩因子从 T1 到 T2 均增加,E1 组从 2.12 增加到 5.30,E2 组从 2.32 增加到 5.48。PROP-ESA 暴露并未影响血淋巴生化特征和血红细胞活力。此外,与对照组和 E1 相比,只有在 E2 中,T1 后消化腺(DG)细胞的活力才降低。此外,T1 后 E2 中鳃和 DG 中的丙二醛水平增加,而过氧化物歧化酶活性和氧化修饰蛋白不受 PROP-ESA 影响。组织病理学观察显示,鳃(例如,空泡增加、黏液过度产生、纤毛丧失)和 DG(例如,嗜中性粒细胞浸润趋势增加、小管改变)有多种损伤。本研究揭示了氯乙酰胺类除草剂丙草胺通过其在双壳类生物标志物贻贝中的初级代谢物,存在潜在风险。此外,考虑到生物放大效应的可能性,PROP-ESA 能够在可食用贻贝组织中积累,这对贻贝构成了最大的威胁。因此,需要对农药代谢物单独或混合的毒性进行进一步研究,以全面了解其对非靶标生物的影响。

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