首页> 外文期刊>International journal of biological sciences >Silencing the HaAK Gene by Transgenic Plant-Mediated RNAi Impairs Larval Growth of Helicoverpa armigera
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Silencing the HaAK Gene by Transgenic Plant-Mediated RNAi Impairs Larval Growth of Helicoverpa armigera

机译:转基因植物介导的RNAi沉默HaAK基因损害棉铃虫的幼虫生长。

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Insect pests have caused noticeable economic losses in agriculture, and the heavy use of insecticide to control pests not only brings the threats of insecticide resistance but also causes the great pollution to foods and the environment. Transgenic plants producing double-stranded RNA (dsRNA) directed against insect genes have been is currently developed for protection against insect pests. In this study, we used this technology to silence the arginine kinase (AK) gene of Helicoverpa armigera (HaAK), encoding a phosphotransferase that plays a critical role in cellular energy metabolism in invertebrate. Transgenic Arabidopsis plants producing HaAK dsRNA were generated by Agrobacterium-mediated transformation. The maximal mortality rate of 55% was reached when H. armigera first-instar larvae were fed with transgenic plant leaves for 3 days, which was dramatically higher than the 18% mortality recorded in the control group. Moreover, the ingestion of transgenic plants significantly retarded larval growth, and the transcript levels of HaAK were also knocked down by up to 52%. The feeding bioassays further indicated that the inhibition efficiency was correlated with the integrity and concentration of the produced HaAK dsRNA in transgenic plants. These results strongly show that the resistance to H. armigera was improved in transgenic Arabidopsis plants, suggesting that the RNAi targeting of AK has the potential for the control of insect pests.
机译:虫害在农业上造成了显着的经济损失,大量使用杀虫剂控制害虫不仅带来了对杀虫剂的抗药性威胁,而且还给食品和环境造成了巨大污染。目前已经开发出产生针对昆虫基因的双链RNA(dsRNA)的转基因植物,用于保护害虫。在这项研究中,我们使用了这项技术来沉默棉铃虫(HaAK)的精氨酸激酶(AK)基因,该基因编码一种在无脊椎动物的细胞能量代谢中起关键作用的磷酸转移酶。通过农杆菌介导的转化产生产生HaAK dsRNA的转基因拟南芥植物。用转基因植物叶片喂食棉铃虫第一龄幼虫3天时,最高死亡率达到55%,大大高于对照组的18%死亡率。此外,转基因植物的摄入显着延迟了幼虫的生长,HaAK的转录水平也被降低了52%。进食生物测定进一步表明,抑制效率与转基因植物中产生的HaAK dsRNA的完整性和浓度相关。这些结果有力地表明,在转基因拟南芥植物中对棉铃虫的抗性得到了改善,表明靶向AKi的RNAi具有控制害虫的潜力。

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