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The status of RNAi-based transgenic research in plant nematology

机译:基于RNAi的转基因研究在植物线虫学中的地位

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With the understanding of nematode-plant interactions at the molecular level, new avenues for engineering resistance have opened up, with RNA interference being one of them. Induction of RNAi by delivering double-stranded RNA (dsRNA) has been very successful in the model non-parasitic nematode, Caenorhabditis elegans , while in plant nematodes, dsRNA delivery has been accomplished by soaking nematodes with dsRNA solution mixed with synthetic neurostimulants. The success of in vitro RNAi of target genes has inspired the use of in planta delivery of dsRNA to feeding nematodes. The most convincing success of host-delivered RNAi has been achieved against root-knot nematodes. Plant-mediated RNAi has been shown to lead to the specific down-regulation of target genes in invading nematodes, which had a profound effect on nematode development. RNAi-based transgenics are advantageous as they do not produce any functional foreign proteins and target organisms in a sequence-specific manner. Although the development of RNAi-based transgenics against plant nematodes is still in the preliminary stage, they offer novel management strategy for the future.
机译:在分子水平上了解线虫与植物之间的相互作用后,工程抗性的新途径得以开辟,RNA干扰就是其中之一。通过递送双链RNA(dsRNA)诱导RNAi在非寄生性线虫模型秀丽隐杆线虫中非常成功,而在植物线虫中,dsRNA的递送是通过将线虫浸入带有合成神经刺激剂的dsRNA溶液中完成的。靶基因的体外RNAi的成功激发了dsRNA在植物体内向食入线虫的递送。宿主递送的RNAi对根结线虫的杀灭作用最令人信服。已证明植物介导的RNAi导致入侵线虫中靶基因的特异性下调,这对线虫的发展产生了深远的影响。基于RNAi的转基因是有利的,因为它们不会以序列特异性方式产生任何功能性外源蛋白质和靶标生物。尽管针对植物线虫的基于RNAi的转基因技术的开发仍处于初期阶段,但它们为未来提供了新颖的管理策略。

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