Fairbairn David J, Cavallaro Antonino S, Bernard Margaret, Mahalinga-Iyer Janani, Graham Michael W, Botella José R
Department of Botany, School of Integrative Biology, University of Queensland, Brisbane, QLD 4072, Australia.
Planta. 2007 Nov;226(6):1525-33. doi: 10.1007/s00425-007-0588-x. Epub 2007 Jul 25.
Root-knot nematodes (Meloidogyne spp.) are obligate, sedentary endoparasites that infect many plant species causing large economic losses worldwide. Available nematicides are being banned due to their toxicity or ozone-depleting properties and alternative control strategies are urgently required. We have produced transgenic tobacco (Nicotiana tabacum) plants expressing different dsRNA hairpin structures targeting a root-knot nematode (Meloidogyne javanica) putative transcription factor, MjTis11. We provide evidence that MjTis11 was consistently silenced in nematodes feeding on the roots of transgenic plants. The observed silencing was specific for MjTis11, with other sequence-unrelated genes being unaffected in the nematodes. Those transgenic plants able to induce silencing of MjTis11, also showed the presence of small interfering RNAs. Even though down-regulation of MjTis11 did not result in a lethal phenotype, this study demonstrates the feasibility of silencing root-knot nematode genes by expressing dsRNA in the host plant. Host-delivered RNA interference-triggered (HD-RNAi) silencing of parasite genes provides a novel disease resistance strategy with wide biotechnological applications. The potential of HD-RNAi is not restricted to parasitic nematodes but could be adapted to control other plant-feeding pests.
根结线虫(Meloidogyne spp.)是专性、定居型内寄生线虫,可感染多种植物,在全球范围内造成巨大经济损失。现有的杀线虫剂因其毒性或消耗臭氧层的特性而被禁用,因此迫切需要替代控制策略。我们培育了表达不同双链RNA发夹结构的转基因烟草(Nicotiana tabacum)植株,这些结构靶向根结线虫(Meloidogyne javanica)的一个假定转录因子MjTis11。我们提供的证据表明,在取食转基因植物根系的线虫中,MjTis11持续被沉默。观察到的沉默对MjTis11具有特异性,线虫中其他与序列无关的基因未受影响。那些能够诱导MjTis11沉默的转基因植物也显示出存在小干扰RNA。尽管MjTis11的下调并未导致致死表型,但本研究证明了通过在宿主植物中表达双链RNA使根结线虫基因沉默的可行性。宿主介导的RNA干扰引发(HD-RNAi)的寄生虫基因沉默提供了一种具有广泛生物技术应用的新型抗病策略。HD-RNAi的潜力不仅限于寄生线虫,还可用于控制其他取食植物的害虫。