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环境现实浓度的埃普利诺菌素会对洋葱产生植物毒性和遗传毒性作用。

Environmentally realistic concentrations of eprinomectin induce phytotoxic and genotoxic effects in Allium cepa.

机构信息

School of Civil Engineering, Architecture and Urban Design, University of Campinas, Campinas, Brazil.

Institute of Biosciences, São Paulo State University (UNESP), Rio Claro, São Paulo, Brazil.

出版信息

Environ Sci Pollut Res Int. 2022 Nov;29(53):80983-80993. doi: 10.1007/s11356-022-21403-7. Epub 2022 Jun 21.

Abstract

Eprinomectin, a veterinary drug within the family of avermectins, is widely used in the agricultural sector to combat a variety of parasites, mainly nematodes. However, only 10% of the drug is metabolized in the organism, so large quantities of the drug are released into the environment through urine and/or feces. Soil is the first and main environmental compartment to be contaminated by it, and nontargeted organisms can be affected. Thus, the present study aims to evaluate the phytotoxicity (through the evaluation of germination, root development, and germination speed) and genotoxicity (through an assessment of the induction of micronuclei and chromosomal aberrations) of eprinomectin. For the analyses, Allium cepa seeds were germinated in soil contaminated with a range of concentrations of eprinomectin: from 0.5 to 62.5 μg/g for the genotoxicity test and from 0.5 to 128.0 μg/g for the phytotoxicity test. The results showed that seed germination was not affected, but root development was affected at concentrations of 0.5 μg/g, 1.0 μg/g, 4.0 μg/g, 8.0 μg/g, 64.0 μg/g, and 128.0 μg/g, and germination speed was significantly changed at concentrations of 1.0 μg/g, 4.0 μg/g, 16.0 μg/g, 32.0 μg/g, and 64.0 μg/g. Significant differences in the mitotic index and genotoxicity index were observed only at concentrations of 2.5 μg/g and 12.5 μg/g, respectively. Only the 0.5 μg/g concentration did not show significant induction of micronuclei in the meristematic cells, but the damage observed at other concentrations did not persist in F cells. According to the results, eprinomectin is both phytotoxic and genotoxic, so the release of eprinomectin into the environment should be minimized.

摘要

依普菌素是阿维菌素类兽医药物的一种,在农业领域被广泛用于防治多种寄生虫,主要是线虫。然而,只有 10%的药物在体内被代谢,因此大量的药物通过尿液和/或粪便释放到环境中。土壤是受其污染的第一和主要环境隔室,非目标生物也可能受到影响。因此,本研究旨在评估依普菌素的植物毒性(通过评估发芽、根系发育和发芽速度)和遗传毒性(通过评估微核和染色体畸变的诱导)。为此,分析用洋葱根尖细胞在受不同浓度依普菌素污染的土壤中进行种子发芽实验:遗传毒性试验中使用的浓度范围为 0.5 至 62.5 μg/g,植物毒性试验中使用的浓度范围为 0.5 至 128.0 μg/g。结果表明,种子发芽不受影响,但根发育在 0.5μg/g、1.0μg/g、4.0μg/g、8.0μg/g、64.0μg/g 和 128.0μg/g 浓度下受到影响,发芽速度在 1.0μg/g、4.0μg/g、16.0μg/g、32.0μg/g 和 64.0μg/g 浓度下显著改变。仅在 2.5μg/g 和 12.5μg/g 浓度下观察到有丝分裂指数和遗传毒性指数的显著差异。只有 0.5μg/g 浓度的药物没有在分生细胞中显著诱导微核,但在其他浓度下观察到的损伤在 F 细胞中没有持续存在。根据结果,依普菌素既具有植物毒性又具有遗传毒性,因此应尽量减少其在环境中的释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce59/9209316/3c6132561529/11356_2022_21403_Fig1_HTML.jpg

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