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低浓度的草甘膦除草剂“农达”(Roundup®)会导致卤虫(Artemia salina)发育缺陷。

Lower Concentrations of the Glyphosate-Based Herbicide Roundup® Cause Developmental Defects in Artemia salina.

机构信息

Department of Biotechnology and Genetic Engineering, Faculty of Science and Arts, Jordan University of Science and Technology, Irbid, Jordan.

出版信息

Environ Toxicol Chem. 2023 Jul;42(7):1586-1594. doi: 10.1002/etc.5639. Epub 2023 May 24.

Abstract

Roundup® is the most used glyphosate-based herbicide. During agricultural use it may directly contaminate existing aquatic ecosystems, posing severe concerns for the safety of nontarget terrestrial and aquatic organisms. We investigated the outcome of exposure to different concentrations of glyphosate in Roundup on cyst hatchability, toxicity, and teratogenic effects in the aquatic crustacean Artemia salina that inhabits diverse types of salt waters and, as a filter feeder, carries a greater risk of being exposed to pollutants. We found that exposure to 144 and 288 μg/ml glyphosate in Roundup resulted in cysts unable to complete diapause, and hatchability was completely inhibited during all exposure times tested (17-48 h). A glyphosate concentration of 288 μg/ml in Roundup was lethal to A. salina nauplii, and the lower concentrations (9, 18, 36, 72 μg/ml) had no significant effects on viability. In addition, sublethal and environmentally safe concentrations of glyphosate (0.72 μg/ml) in Roundup affected the early development of A. salina nauplii, with significantly decreased body lengths and reduced widths of the tail, abdomen, and head. The increased level of catalase activity observed in nauplii exposed to 0.72 μg/ml glyphosate for 24 h and those exposed to 7.2 and 72 μg/ml glyphosate for 48 h may be linked to excessive reactive oxygen species levels that had been induced by Roundup. In conclusion, Roundup containing >72 μg/ml glyphosate totally inhibited hatching of cysts and exerted toxic effects on A. salina nauplii. The increased prevalence of developmental defects in the nauplii observed at 0.72 μg/ml glyphosate signifies possible teratogenicity of Roundup exposure even at environmentally relevant concentrations of glyphosate, possibly due to disturbance of the antioxidant defenses, which needs further investigation. Environ Toxicol Chem 2023;42:1586-1594. © 2023 SETAC.

摘要

农达是使用最广泛的草甘膦除草剂。在农业使用过程中,它可能会直接污染现有的水生生态系统,对非目标陆地和水生生物的安全构成严重威胁。我们研究了暴露在农达不同浓度的草甘膦对水生甲壳类动物盐水丰年虾孵化率、毒性和致畸作用的影响,盐水丰年虾栖息在各种类型的盐水中,作为滤食者,它有更大的暴露于污染物的风险。我们发现,暴露在农达 144 和 288μg/ml 的草甘膦中会导致休眠期的卵无法完成孵化,并且在所有测试的暴露时间(17-48 小时)内孵化率完全受到抑制。农达 288μg/ml 的草甘膦浓度对盐水丰年虾无节幼体是致命的,较低浓度(9、18、36、72μg/ml)对其活力没有显著影响。此外,农达中亚致死和环境安全浓度(0.72μg/ml)的草甘膦会影响盐水丰年虾无节幼体的早期发育,导致体长显著缩短,尾部、腹部和头部的宽度减小。暴露于 0.72μg/ml 草甘膦 24 小时和暴露于 7.2 和 72μg/ml 草甘膦 48 小时的无节幼体中观察到的过氧化氢酶活性增加可能与草甘膦诱导的过量活性氧水平有关。总之,含有>72μg/ml 草甘膦的农达完全抑制了卵的孵化,并对盐水丰年虾无节幼体产生了毒性作用。在 0.72μg/ml 草甘膦浓度下观察到无节幼体发育缺陷的增加表明,即使在环境相关浓度的草甘膦暴露下,农达也可能具有致畸性,这可能是由于抗氧化防御系统受到干扰所致,需要进一步研究。环境毒理化学 2023;42:1586-1594。© 2023 SETAC。

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