Grupo de Biología y Toxicología Ambiental, Facultad de Ciencias, Universidad Nacional de Educación a Distancia (UNED), Av de Esparta S/N - Carretera de Las Rozas a El Escorial Km 5, 28232, Las Rozas, Madrid, Spain.
Grupo de Ecosistemas Bentónicos y Recursos Demersales, COB-Centre Oceanogràfic de Balears (Spanish Institute of Oceanography, CSIC), Moll de Ponent, S/N, 07015, Palma, Illes Balears, Spain.
Sci Rep. 2023 Mar 10;13(1):4031. doi: 10.1038/s41598-023-31201-x.
Pesticides are an environmental problem. The search for new pest control methods has focused on compounds with low or no toxic effects in non-target organisms. Analogs of the juvenile hormone (JH) interfere endocrine system of arthropods. However, the lack of effect on non-target species requires confirmation. This article analyzes the impact of Fenoxycarb, an analog of JH, on Physella acuta, an aquatic gastropod. For 1 week, animals were exposed to 0.01, 1, and 100 μg/L and the RNA was isolated to analyze the gene expression by retrotranscription and Real-Time PCR. Forty genes related to the endocrine system, the DNA repair mechanisms, the detoxification mechanisms, oxidative stress, the stress response, the nervous system, hypoxia, energy metabolism, the immune system, and apoptosis were analyzed. Three of the genes, AchE, HSP17.9, and ApA, showed responses to the presence of Fenoxycarb at 1 μg/L, with no statistically significant responses in the rest of the genes and at the remaining concentrations. From the results, it can be concluded that Fenoxycarb shows a weak response at the molecular level in P. acuta in the tested time and concentrations. However, Aplysianin-A, a gene related to immunity, was altered so the long-term effect could be relevant. Therefore, additional research is required to confirm the safety of Fenoxycarb in non-arthropod species in the long term.
杀虫剂是一个环境问题。寻找新的害虫防治方法的重点是寻找对非目标生物具有低毒性或无毒副作用的化合物。保幼激素(JH)类似物会干扰节肢动物的内分泌系统。然而,对非目标物种缺乏影响仍需确认。本文分析了 JH 类似物 Fenoxycarb 对水生腹足纲动物 Physella acuta 的影响。在为期 1 周的暴露实验中,动物分别暴露于 0.01、1 和 100 μg/L 的浓度下,分离 RNA 并通过反转录和实时 PCR 分析基因表达。分析了 40 个与内分泌系统、DNA 修复机制、解毒机制、氧化应激、应激反应、神经系统、缺氧、能量代谢、免疫系统和细胞凋亡相关的基因。有 3 个基因,AchE、HSP17.9 和 ApA,在 1 μg/L 的 Fenoxycarb 存在下表现出响应,而其余基因和其余浓度下没有表现出统计学上的显著响应。结果表明,在测试时间和浓度下,Fenoxycarb 在 P. acuta 中表现出较弱的分子水平响应。然而,与免疫相关的基因 Aplysianin-A 发生了改变,因此长期影响可能是相关的。因此,需要进一步研究以确认 Fenoxycarb 在非节肢动物物种中的长期安全性。