Ecogenotoxicity of environmentally relevant atrazine concentrations: A threat to aquatic bioindicators

生物指示剂 达尼奥 毒理 斑马鱼 生物 孵化 大型水蚤 微核试验 卵黄囊 男科 生物监测 环境化学 动物科学 化学 毒性 生态学 胚胎 渔业 医学 生物化学 有机化学 基因
作者
Victor Ventura de Souza,Tatiana da Silva Souza,José Marcello Salabert de Campos,Luiza Araújo de Oliveira,Yves Moreira Ribeiro,Daniela Chemin de Melo Hoyos,Rogéria Maura Panzini Xavier,Ives Charlie-Silva,Samyra Maria dos Santos Nassif Lacerda
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier]
卷期号:189: 105297-105297 被引量:5
标识
DOI:10.1016/j.pestbp.2022.105297
摘要

Atrazine (ATZ) is a herbicide that is frequently present in surface waters and may result in damage to the health of various organisms, including humans. However, most scientific literature reports injuries caused by ATZ at high concentrations, which are not found in the environment. Therefore, the scope of this study was to investigate the impacts of realistic concentrations of ATZ found in surface waters (1, 2, 5, 10, 15 and 20 μg/L) using the bioindicators Allium cepa, Daphnia magna and zebrafish (Danio rerio). ATZ elicited a genotoxic effect in A. cepa, manifested by the induction of chromosomal aberrations, and a mutagenic effect with increased incidence of micronuclei formation, promotion of cell death and reduction in nuclear size revealed by flow cytometry analysis. D. magna exposed to 10, 15 and 20 μg/L of ATZ showed significant reduction in body size after 21 days, delayed first-brood release, decreased egg production and total offspring, as well as swimming behavioral changes. ATZ exposure promoted physiological and developmental alterations in zebrafish embryos, including an increased spontaneous movement rate, which led to premature hatching at all concentrations investigated. Increase in total body length, decrease of the yolk sac area, pericardial edema and higher heart rate were also detected in ATZ-treated zebrafish. In summary, environmentally relevant concentrations of ATZ can induce substantial alterations in the three bioindicators investigated. This study evidences the deleterious effects of ATZ on three aquatic bioindicators employing established and current techniques, and may contribute to elucidate the risks caused by this widely used herbicide even at low concentrations and short-to-medium-term exposure.
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