Jiang Feng, Zhang Yixi, Sun Huahua, Meng Xiangkun, Bao Haibo, Fang Jichao, Liu Zewen
Key Laboratory of Integrated Management of Crop Diseases and Pests (Ministry of Education), College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China.
Key Laboratory of Integrated Management of Crop Diseases and Pests (Ministry of Education), College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China; Institute of Plant Protection, Jiansu Academy of agriCultural Sciences, Nanjing 210014, China.
Pestic Biochem Physiol. 2015 Jan;117:62-7. doi: 10.1016/j.pestbp.2014.10.010. Epub 2014 Oct 22.
As one of the most important predatory enemies, the miridbug, Cyrtorhinus lividipennis, plays an important role in rice planthoppers control, such as Nilaparvata lugens (brown planthopper). In order to compare insecticide selectivity between C. lividipennis and N. lugens, the contact acute toxicities of six insecticides (diazoxon, paraoxon, carbaryl, fenobucarb, fipronil and ethofenprox) were monitored. The results showed that all tested insecticides were more toxic to C. lividipennis than to N. lugens and fipronil had the biggest difference. The RDL subunit (Cl-RDL) was cloned from C. lividipennis and a RDL isoform (Cl-RDL-In) was also found with 31 amino acids insertion in RDL intracellular region. In order to understand the role of the insertion on insecticide sensitivities, three subunits (Nl-RDL, Cl-RDL and Cl-RDL-In) were constructed to obtain the functional receptors in Xenopus oocytes and the fipronil sensitivities were detected by the voltage-clamp technique. Nl-RDL (IC50=32.36 ± 4.07 µM) was more insensitive to fipronil than Cl-RDL (IC50=6.47 ± 1.12 µM). The insertion in Cl-RDL significantly reduced fipronil sensitivity with IC50 value in Cl-RDL-In of 16.83 ± 2.30 µM. Interestingly, after the elution of fipronil, the current response of Cl-RDL-In appeared obvious recovery, which were not observed in Cl-RDL and Nl-RDL. It might imply that the insertion played a special role in fipronil sensitivity.
作为最重要的捕食性天敌之一,黑肩绿盲蝽在控制稻飞虱(如褐飞虱)方面发挥着重要作用。为了比较黑肩绿盲蝽和褐飞虱对杀虫剂的选择性,监测了六种杀虫剂(二嗪磷、对氧磷、西维因、仲丁威、氟虫腈和乙虫腈)的接触急性毒性。结果表明,所有测试的杀虫剂对黑肩绿盲蝽的毒性均高于对褐飞虱的毒性,且氟虫腈的差异最大。从黑肩绿盲蝽中克隆了RDL亚基(Cl-RDL),并在RDL细胞内区域发现了一个插入31个氨基酸的RDL亚型(Cl-RDL-In)。为了了解该插入对杀虫剂敏感性的作用,构建了三个亚基(Nl-RDL、Cl-RDL和Cl-RDL-In)以在非洲爪蟾卵母细胞中获得功能性受体,并通过电压钳技术检测氟虫腈的敏感性。Nl-RDL(IC50=32.36±4.07μM)对氟虫腈的敏感性低于Cl-RDL(IC50=6.47±1.12μM)。Cl-RDL中的插入显著降低了氟虫腈的敏感性,Cl-RDL-In的IC50值为16.83±2.30μM。有趣的是,洗脱氟虫腈后,Cl-RDL-In的电流反应出现明显恢复,而Cl-RDL和Nl-RDL中未观察到这种现象。这可能意味着该插入在氟虫腈敏感性方面发挥了特殊作用。