Tang Guanghui, Yao Jianxiu, Li Daqi, He Yanping, Zhu Yu-Cheng, Zhang Xin, Zhu Kun Yan
College of Forestry, Northwest A&F University, Yangling, Shaanxi 712100, China; Department of Entomology, Kansas State University, Manhattan, KS 66502, USA.
Department of Entomology, Kansas State University, Manhattan, KS 66502, USA; USDA-ARS, Southern Insect Management Unit, Stoneville, MS 38776, USA.
Chemosphere. 2017 Nov;186:68-77. doi: 10.1016/j.chemosphere.2017.07.137. Epub 2017 Jul 27.
The open reading frames of 19 cytochrome P450 monooxygenase (CYP) genes were sequenced from Chironomus tentans, a commonly used freshwater invertebrate model. Phylogenetic analysis of the 19 CYPs along with a previously reported CYP (CtCYP4G33) revealed that they belong to three different clans, including 3 in CYP4, 15 in CYP3, and 2 in mitochondria clan. When third-instar larvae were exposed to atrazine at 5000 μg/L, the transcription of CtCYP6EX3, CtCYP6EV3, CtCYP9AT1 and CtCYPEX1 was significantly up-regulated. To examine whether CtCYP6EX3 played a role in oxidative activation of chlorpyrifos to chlorpyrifos-oxon, we evaluated larval susceptibility to chlorpyrifos after CtCYP6EX3 transcript was suppressed by RNAi. The larvae fed chitosan/dsCtCYP6EX3 nanoparticles showed a significantly decreased CtCYP6EX3 transcript (53.1%) as compared with the control larvae fed chitosan/dsGFP nanoparticles. When the CtCYP6EX3-silenced larvae were exposed to chlorpyrifos at 6 μg/L or its binary mixture with atrazine (chlorpyrifos at 3 μg/L and atrazine at 1000 μg/L), the larvae became less susceptible to the pesticides as their mortalities decreased by 24.1% and 20.5%, respectively. These results along with our previous findings suggested that the increased toxicity of chlorpyrifos was likely due to an enhanced oxidative process from chlorpyrifos to chlorpyrifos-oxon by CtCYP6EX3 as RNAi of CtCYP6EX3 led to decreased susceptibility of C. tentans larvae to chlorpyrifos alone and the binary mixture of atrazine and chlorpyrifos. However, further study would be necessary to validate our results by functional assays using heterologously expressed CtCYP6EX3 enzyme.
从一种常用的淡水无脊椎动物模型——摇蚊(Chironomus tentans)中,对19个细胞色素P450单加氧酶(CYP)基因的开放阅读框进行了测序。对这19个CYP以及先前报道的一种CYP(CtCYP4G33)进行系统发育分析,结果表明它们属于三个不同的家族,包括CYP4家族中的3个、CYP3家族中的15个以及线粒体家族中的2个。当三龄幼虫暴露于浓度为5000μg/L的莠去津时,CtCYP6EX3、CtCYP6EV3、CtCYP9AT1和CtCYPEX1的转录显著上调。为了研究CtCYP6EX3是否在毒死蜱氧化活化生成毒死蜱氧磷的过程中发挥作用,我们在通过RNA干扰抑制CtCYP6EX3转录后,评估了幼虫对毒死蜱的敏感性。与喂食壳聚糖/dsGFP纳米颗粒的对照幼虫相比,喂食壳聚糖/dsCtCYP6EX3纳米颗粒的幼虫CtCYP6EX3转录水平显著降低(5