Programa de Pós-Graduação em Ecologia e Evolução da Biodiversidade, Escola de Ciências da Saúde e da Vida, Pontifícia Universidade Católica do Rio Grande do Sul, Porto Alegre, RS, Brazil.
Ecotoxicology. 2024 Aug;33(6):630-641. doi: 10.1007/s10646-024-02760-0. Epub 2024 May 22.
In Brazil, glyphosate is present in more than 130 commercial formulations, and its toxic effects have already been tested in different species to understand its impact on biota Decapod crustaceans are widely used as experimental models due to their biology, sensitivity to pollutants, ease of collection, and maintenance under laboratory conditions. We evaluated the changes in metabolism (hemolymph) and oxidative balance markers (gill and hepatopancreas) of a crayfish (Parastacus promatensis) after exposure to Roundup® (active ingredient: glyphosate). The crayfish were captured in the Garapiá stream within the Center for Research and Conservation of Nature Pró-Mata, Brazil. We collected adult animals outside (fall) and during (spring) the breeding season. The animals were transported in buckets with cooled and aerated water from the collection site to the aquatic animal maintenance room at the university. After acclimatization, the animals were exposed to different concentrations of glyphosate (0, 65, 260, 520, and 780 µg/L). The results showed a significant variation in the hemolymph glucose, lactate, and protein levels. We observed variations in the tissue antioxidant enzymatic activity after exposure to glyphosate. Finally, the increase in oxidative damage required a high energy demand from the animals to maintain their fitness, which makes them more vulnerable to stress factors added to the habitat.
在巴西,草甘膦存在于超过 130 种商业制剂中,其毒性已在不同物种中进行了测试,以了解其对生物群落的影响。十足目甲壳动物由于其生物学特性、对污染物的敏感性、易于收集以及在实验室条件下的易于维持,被广泛用作实验模型。我们评估了暴露于 Roundup®(有效成分:草甘膦)后,一种淡水小龙虾(Parastacus promatensis)的代谢(血淋巴)和氧化平衡标志物(鳃和肝胰腺)的变化。小龙虾是在巴西 Pro-Mata 自然研究与保护中心的 Garapiá 溪流中捕获的。我们在繁殖季节之外(秋季)和期间(春季)从野外收集成年动物。动物们被放在带有冷却和充气水的桶中,从收集地点运送到大学的水生动物饲养室。适应环境后,动物们被暴露在不同浓度的草甘膦(0、65、260、520 和 780μg/L)下。结果表明,血淋巴中的葡萄糖、乳酸和蛋白质水平显著变化。我们观察到草甘膦暴露后组织抗氧化酶活性的变化。最后,氧化损伤的增加需要动物消耗大量能量来维持其适应性,这使它们更容易受到栖息地中添加的应激因素的影响。