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N6-(2-Hydroxyethyl)-Adenosine Exhibits Insecticidal Activity against Plutella xylostella via Adenosine Receptors

机译:N6-(2-羟乙基)-腺苷通过腺苷受体表现出对小菜蛾的杀虫活性

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摘要

The diamondback moth, Plutella xylostella, is one of the most important pests of cruciferous crops. We have earlier shown that N6-(2-hydroxyethyl)-adenosine (HEA) exhibits insecticidal activity against P. xylostella. In the present study we investigated the possible mechanism of insecticidal action of HEA on P. xylostella. HEA is a derivative of adenosine, therefore, we speculated whether it acts via P. xylostella adenosine receptor (PxAdoR). We used RNAi approach to silence PxAdoR gene and used antagonist of denosine receptor (AdoR) to study the insecticidal effect of HEA. We cloned the whole sequence of PxAdoR gene. A BLAST search using NCBI protein database showed a 61% identity with the Drosophila adenosine receptor (DmAdoR) and a 32–35% identity with human AdoR. Though the amino acids sequence of PxAdoR was different compared to other adenosine receptors, most of the amino acids that are known to be important for adenosine receptor ligand binding and signaling were present. However, only 30% binding sites key residues was similar between PxAdoR and A1R. HEA, at a dose of 1 mg/mL, was found to be lethal to the second-instar larvae of P. xylostella, and a significant reduction of mortality and growth inhibition ratio were obtained when HEA was administered to the larvae along with PxAdoR-dsRNA or antagonist of AdoR () for 36, 48, or 60 h. Especially at 48 h, the rate of growth inhibition of the PxAdoR knockdown group was 3.5-fold less than that of the HEA group, and the corrected mortality of group was reduced almost 2-fold compared with the HEA group. Our findings show that HEA may exert its insecticidal activity against P. xylostella larvae via acting on PxAdoR.
机译:小菜蛾(Plutella xylostella)是十字花科作物最重要的害虫之一。前面我们已经表明N 6 -(2-羟乙基)-腺苷(HEA)对小菜蛾具有杀虫活性。在本研究中,我们研究了HEA对小菜蛾的杀虫作用的可能机制。 HEA是腺苷的衍生物,因此,我们推测它是否通过小木霉腺苷腺苷受体(PxAdoR)起作用。我们使用RNAi方法沉默PxAdoR基因,并使用腺苷受体拮抗剂(AdoR)研究HEA的杀虫作用。我们克隆了PxAdoR基因的完整序列。使用NCBI蛋白质数据库进行的BLAST搜索显示,与果蝇腺苷受体(DmAdoR)的一致性为61%,与人类AdoR的一致性为32–35%。尽管与其他腺苷受体相比,PxAdoR的氨基酸序列有所不同,但仍存在大多数已知对腺苷受体配体结合和信号传导重要的氨基酸。但是,PxAdoR和A1R之间只有30%的结合位点关键残基相似。 1 mg / mL的HEA被发现对小菜蛾的第二龄幼虫具有致死性,与PxAdoR-一起给予HEA幼虫后,死亡率和生长抑制率均显着降低。 dsRNA或AdoR拮抗剂()持续36、48或60小时。特别是在第48小时,PxAdoR抑制组的生长抑制率比HEA组低3.5倍,并且校正后的死亡率比HEA组降低了近2倍。我们的发现表明,HEA可能对 P 具有杀虫活性。通过作用于PxAdoR上的 xylostella 幼虫。

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