Quality and Safety Institute of Agricultural Products, Heilongjiang Academy of Agricultural Sciences, Harbin, 150086, China.
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Plant Cell Rep. 2020 Nov;39(11):1539-1547. doi: 10.1007/s00299-020-02582-4. Epub 2020 Aug 31.
RNAi-based genetically modified maize resistant to Monolepta hieroglyphica (Motschulsky) was demonstrated with negligible transcriptome and metabolome alterations compared to its unmodified equivalent. As one of the most prevalent insect pests afflicting various crops, Monolepta hieroglyphica (Motschulsky) causes severe loss of agricultural and economic productivity for many years in China. In an effort to reduce damages, in this study, an RNA interference (RNAi)-based genetically modified (GM) maize was developed. It was engineered to produce MhSnf7 double-stranded RNAs (dsRNAs), which can suppress the Snf7 gene expression and then lead M. hieroglyphica to death. Field trail analysis confirmed the robustly insecticidal ability of the MhSnf7 GM maize to resist damages by M. hieroglyphica. RNA sequencing analysis identified that only one gene was differentially expressed in the MhSnf7 GM maize compared to non-GM maize, indicating that the transcriptome in MhSnf7 GM maize is principally unaffected by the introduction of the MhSnf7 dsRNA expression vector. Likewise, metabolomics analysis identified that only 8 out of 5787 metabolites were significantly changed. Hence, the integration of transcriptomics and metabolomics demonstrates that there are negligible differences between MhSnf7 GM maize and its unmodified equivalent. This study not only presents a comprehensive assessment of cellular alteration in terms of gene transcription and metabolite abundance in RNAi-based GM maize, but also could be used as a reference for evaluating the unintended effect of GM crops.
与未修饰的对照相比,基于 RNAi 的抗麦二叉蚜(Motschulsky)的转基因玉米表现出可忽略的转录组和代谢组改变。作为危害各种作物的最普遍的昆虫害虫之一,麦二叉蚜(Motschulsky)在中国多年来造成了严重的农业和经济生产力损失。为了减少损害,本研究开发了一种基于 RNA 干扰(RNAi)的转基因(GM)玉米。它被设计产生 MhSnf7 双链 RNA(dsRNA),可以抑制 Snf7 基因的表达,从而导致麦二叉蚜死亡。田间试验分析证实,MhSnf7 GM 玉米具有强大的抗麦二叉蚜能力,能够抵抗其造成的损害。RNA 测序分析表明,与非 GM 玉米相比,MhSnf7 GM 玉米中只有一个基因表达差异,这表明 MhSnf7 GM 玉米中的转录组主要不受 MhSnf7 dsRNA 表达载体的引入影响。同样,代谢组学分析表明,只有 5787 种代谢物中的 8 种发生了显著变化。因此,转录组学和代谢组学的整合表明,MhSnf7 GM 玉米与其未修饰的对照之间几乎没有差异。这项研究不仅全面评估了基于 RNAi 的 GM 玉米中基因转录和代谢物丰度的细胞变化,还可以作为评估 GM 作物非预期效应的参考。