UF/IFAS Tropical Research and Education Center, Homestead, FL, 33031, USA.
UF/IFAS Tropical Research and Education Center, Homestead, FL, 33031, USA.
Insect Biochem Mol Biol. 2024 Nov;174:104189. doi: 10.1016/j.ibmb.2024.104189. Epub 2024 Sep 27.
Insect vectors significantly threaten global agriculture by transmitting numerous plant viruses. Various measures, from conventional insecticides to genetic engineering, are used to mitigate this threat. However, none provide complete resistance. Therefore, researchers are looking for novel control options. In recent years with the advancements in genomic technologies, genomes and transcriptomes of various insect vectors have been generated. However, the lack of knowledge about gene functions hinders the development of novel strategies to restrict virus spread. RNA interference (RNAi) is widely used to elucidate gene functions, but its variable efficacy hampers its use in managing insect vectors and plant viruses. Genome editing has the potential to overcome these challenges and has been extensively used in various insect pest species. This review summarizes the progress and potential of genome editing in plant virus vectors and its application as a functional genomic tool to elucidate virus-vector interactions. We also discuss the major challenges associated with editing genes of interest in insect vectors.
昆虫媒介通过传播多种植物病毒,对全球农业造成严重威胁。为减轻这种威胁,人们采用了各种措施,包括传统杀虫剂到基因工程。然而,这些措施都无法提供完全的抗性。因此,研究人员正在寻找新的控制方法。近年来,随着基因组技术的进步,各种昆虫媒介的基因组和转录组已经被生成。然而,由于缺乏对基因功能的了解,限制了开发新策略来限制病毒传播。RNA 干扰 (RNAi) 被广泛用于阐明基因功能,但它的有效性存在差异,限制了其在管理昆虫媒介和植物病毒方面的应用。基因组编辑具有克服这些挑战的潜力,并已在各种农业害虫物种中得到广泛应用。本文综述了基因组编辑在植物病毒媒介中的进展和潜力,以及将其作为一种功能基因组工具来阐明病毒-媒介相互作用的应用。我们还讨论了编辑昆虫媒介中感兴趣基因相关的主要挑战。