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Mutation of the Cytochrome P450 CYP360A8 Gene Increases Sensitivity to Paraquat in Daphnia magna

机译:细胞色素P450 CYP360A8基因的突变增加了Daphnia Magna的百草枯敏感性

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The freshwater crustacean Daphnia magna has traditionally been a model for ecotoxicological studies owing to its sensitivity to many xenobiotics. Because it is used in many toxicity assessments, its detoxification mechanism for xenobiotics is important and requires further study. However, studies related to detoxification genes are limited to transcriptomic profiling, and there are no D. magna mutants for use in the understanding of xenobiotic metabolism in vivo. We report the generation of a D. magna CYP360A8 mutant-the gene is a cytochrome P450 (CYP) clan 3 gene. Based on RNA sequencing of adult D. magna, we found that CYP360A8 has the highest expression level among all CYP genes. At ovarian maturation, its expression level is up-regulated 6-fold compared to the juvenile stages and is maintained thereafter. Using the CRISPR/CRISPR-associated 9 (Cas9) system, we disrupted CYP360A8 by coinjecting CYP360A8-targeting guide RNA and Cas9 proteins into D. magna eggs and established one monoallelic CYP360A8 mutant line. This CYP360A8 mutant had a higher sensitivity to the herbicide paraquat compared to the wild type. We confirmed the up-regulation of CYP360A8 by paraquat. The results demonstrate the role of CYP360A8 in paraquat detoxification. The present study establishes a CYP mutant of D. magna, and this strategy can be a basic platform to document a range of CYP gene-xenobiotic relationships in this species. Environ Toxicol Chem 2021;00:1-10. (c) 2020 SETAC
机译:淡水甲壳动物Daphnia Magna传统上是由于其对许多异卵虫的敏感性的生态毒理学研究的模型。因为它用于许多毒性评估,其对异鹅的排毒机制很重要,需要进一步研究。然而,与解毒基因相关的研究限于转录组分析,并且没有D. Magna突变体用于了解体内异丙酚代谢。我们报告了D. Magna CYP360A8突变体的产生 - 基因是细胞色素P450(CYP)氏族3基因。基于成人D. Magna的RNA测序,我们发现CYP360A8在所有CYP基因中具有最高的表达水平。在卵巢成熟时,与少年阶段相比,其表达水平上调6倍,然后保持。使用CRISPR / CRISPR相关的9(CAS9)系统,通过将CYP360A8靶向RNA和CAS9蛋白掺入D. Magna鸡蛋并建立了一种单独的CYP360A8突变线来破坏CYP360A8。与野生型相比,该CYP360A8突变体对除草剂百草枯具有更高的敏感性。我们确认了百草枯的CYP360A8的上调。结果表明CYP360A8在百草枯解毒中的作用。本研究建立了D. Magna的Cyp突变体,该策略可以是在本物种中记录一系列CYP基因生物关系的基​​本平台。环境毒素化学2021; 00:1-10。 (c)2020 Setac

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