Prediction of the toxic impact on the freshwater microalgae Scenedesmus intermedius produced by the interaction of copper sulfate and copper oxychloride in a binary mixture with glyphosate

IF 1.2 4区 环境科学与生态学 Q4 LIMNOLOGY Limnetica Pub Date : 2023-06-14 DOI:10.23818/limn.43.10
Gerardo Solís-González, A. A. Cortés-Téllez, L. Chacón-García, M. García-Pérez, H. Martínez‐Flores, M. C. Bartolomé Camacho
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Abstract

The high population growth worldwide causes a high demand for food with an increase in the use of different agrochemicals, with pesticides and herbicides being the primary pollutants of anthropogenic origin in the environment. One of the critical aims of ecotoxicology is the evaluation of toxic effects of mixtures of chemical substances that can have additive, synergistics or antagonistics effects in different ecosystems. For this reason, the aims of this research were to: 1) estimate the individual subchronic toxicity of agrochemicals copper oxychloride [Cu2(OH)3Cl], copper sulfate (CuSO4), and glyphosate (Gly-BH) on the inhibition of population growth of the freshwater chlorophyte Scenedesmus intermedius, and 2) predict the antagonistic, synergistic, or additive behaviour of binary mixtures of Gly-BH with Cu2(OH)3Cl and CuSO4 through the Combination Index Equation (CIE). The individual toxicity order at 7 days of exposure in S. intermedius was CuSO4 (IC50 2.70 mg/l) > Gly-BH (IC50 4.03 mg/l) with no statistical differences between both agrochemicals and > Cu2(OH)3Cl (IC50 25.59 mg/l) with a major tolerance if it compared with the other chemicals. For the binary mixture of CuSO4/Gly-BH, an antagonistic effect was observed (combination index CI > 1), but with lower toxicity (IC50 7.40 mg/l) when compared with the individual responses of these compounds. However, in the mixture, Cu2(OH)3Cl/Gly-BH was more toxic with a synergistic response (IC50 0.85 mg/l) even between 5 and 30 times higher. These results highlight the importance of studying interactions of chemical substances in ecosystems to establish a better evaluation and regulation of their environmental impact.
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草甘膦二元混合物中硫酸铜和氯化氧化铜相互作用对淡水微藻中间情景藻毒性影响的预测
全球人口的高增长导致对粮食的高需求,不同农用化学品的使用也在增加,杀虫剂和除草剂是环境中人为来源的主要污染物。生态毒理学的关键目标之一是评估在不同生态系统中可能具有添加、协同或拮抗作用的化学物质混合物的毒性作用。因此,本研究的目的是:1)估计农用化学品氯化铜[Cu2(OH)3Cl]、硫酸铜(CuSO4)和草甘膦(Gly-BH)对淡水叶绿素Scenedesmus intermediaus种群生长的抑制作用的个体亚慢性毒性,或Gly BH与Cu2(OH)3Cl和CuSO4的二元混合物通过组合指数方程(CIE)的加性行为。中间乳杆菌暴露7天时的个体毒性顺序为CuSO4(IC50 2.70 mg/l)>Gly BH(IC50 4.03 mg/l),两种农用化学品之间没有统计学差异,并且>Cu2(OH)3Cl(IC50 25.59 mg/l)与其他化学品相比具有主要耐受性。对于CuSO4/Gly-BH的二元混合物,观察到拮抗作用(组合指数CI>1),但与这些化合物的个体反应相比,毒性较低(IC50 7.40mg/l)。然而,在混合物中,Cu2(OH)3Cl/Gly BH毒性更强,协同反应(IC50 0.85 mg/l)甚至高出5到30倍。这些结果强调了研究生态系统中化学物质相互作用的重要性,以更好地评估和监管其环境影响。
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来源期刊
Limnetica
Limnetica LIMNOLOGY-MARINE & FRESHWATER BIOLOGY
CiteScore
3.70
自引率
7.10%
发文量
26
审稿时长
>12 weeks
期刊介绍: Limnetica publishes original research articles on the ecology of inland waters. The scope of Limnetica includes the ecology of rivers, lakes, reservoirs, coastal lagoons and wetlands, as well as biogeochemistry, paleolimnology, development of new methodologies, taxonomy, biogeography and any aspect of theoretical and applied continental aquatic ecology such as management and conservation, impact assessment, ecotoxicology and pollution. Limnetica will accept for its publication scientific articles presenting advances in knowledge or technological development, as well as as papers derived from new practical approaches on the topics covered by the journal.
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