Odawara Research Center, Nippon Soda Co., Ltd., Odawara, Japan.
School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Tokyo, Japan.
Environ Toxicol. 2024 Jun;39(6):3641-3653. doi: 10.1002/tox.24224. Epub 2024 Mar 19.
Daphnia magna is a test organism used for ecological risk assessments of pesticides, but little is known about the expression levels of cytochrome P450s (CYP)s and their changes after pesticide exposure in the less than 24-h-olds used for ecotoxicity tests. In this study, D. magna juveniles were exposed to 0.2 μg/L of chlorpyrifos under the conditions for acute immobilization test as specified by the OECD test guideline for 24 h, and then the gene expression was compared between the control and chlorpyrifos-exposure groups by RNA-sequencing analysis, with a focus on CYP genes. Among 38 CYP genes expressed in the control group, seven were significantly up-regulated while two were significantly down-regulated in the chlorpyrifos-exposure group. Although the sublethal concentration of chlorpyrifos did not change their expression levels so drastically (0.8 < fold change < 2.6), CY360A8 of D. magna (DmCYP360A8), which had been proposed to be responsible for metabolism of xenobiotics, was abundantly expressed in controls yet up-regulated by chlorpyrifos. Therefore, homology modeling of DmCYP360A8 was performed based on the amino acid sequence, and then molecular docking simulations with the insecticides that were indicated to be metabolized by CYPs in D. magna were conducted. The results indicated that DmCYP360A8 could contribute to the metabolism of diazinon and chlorfenapyr but not chlorpyrifos. These findings suggest that chlorpyrifos is probably detoxified by other CYP(s) including up-regulated and/or constitutively expressed one(s).
大型溞是一种用于评估农药生态风险的测试生物,但对于在用于生态毒性测试的不到 24 小时龄的幼虫中,农药暴露后细胞色素 P450s(CYP)的表达水平及其变化知之甚少。在这项研究中,大型溞幼体在 OECD 急性固定试验指南规定的条件下,以 0.2μg/L 的毒死蜱浓度暴露 24 小时,然后通过 RNA-seq 分析比较对照组和毒死蜱暴露组之间的基因表达情况,重点关注 CYP 基因。在对照组中表达的 38 个 CYP 基因中,有 7 个在毒死蜱暴露组中显著上调,有 2 个显著下调。尽管亚致死浓度的毒死蜱没有使它们的表达水平发生如此剧烈的变化(0.8<fold change<2.6),但大型溞中的拟除虫菊酯代谢酶(DmCYP360A8)的 CY360A8 却在对照组中大量表达,并且被毒死蜱上调。因此,基于氨基酸序列对 DmCYP360A8 进行了同源建模,然后对指示在大型溞中由 CYP 代谢的杀虫剂进行了分子对接模拟。结果表明,DmCYP360A8 可能有助于二嗪磷和氯氟吡氧乙酸的代谢,但不参与毒死蜱的代谢。这些发现表明,毒死蜱可能被包括上调和/或组成型表达的其他 CYP(s)解毒。