烟草
生物
功能基因组学
载体(分子生物学)
基因沉默
基因
基因敲除
反向遗传学
遗传学
烟草响尾蛇病毒
RNA干扰
计算生物学
病毒载体
植物病毒
重组DNA
病毒学
基因表达
病毒
RNA沉默
花叶病毒
表型
水稻
黄瓜病毒
表达式向量
功能(生物学)
基因组
转基因作物
重组病毒
基因表达调控
病毒复制
生物技术
作者
Keyu Wu,Binhuan Chen,Qian Liu,Kai Sun,Yinxiao Shao,Maihemuti Mijiti,Zhenghe Li
摘要
Plant viral vectors are powerful tools for transient gene overexpression and silencing, enabling rapid functional analysis without the need for genetic transformation. Rice stripe mosaic virus (RSMV) is an emerging plant rhabdovirus transmitted propagatively by the leafhopper Recilia dorsalis. Leveraging its cross-kingdom replication ability, here we report the development of RSMV as a versatile vector for regulatable foreign gene expression and virus-induced gene silencing (VIGS) in rice and its insect vector. We first established an efficient reverse genetics system for RSMV using Nicotiana benthamiana as a model host. Recombinant virus particles recovered from N. benthamiana leaves were infectious to R. dorsalis and efficiently transmitted to rice. RSMV-based vectors stably accommodated at least two foreign genes, totaling up to 3.7 kb, and maintained stable expression across multiple passages. As proof-of-concept, the RSMV-VIGS vector achieved >90% knockdown of a target gene in R. dorsalis, producing near-knockout phenotypes that persisted throughout adulthood, and also induced efficient gene silencing in infected rice plants. Our work enables genetic manipulation of RSMV for molecular studies and provides a robust tool for functional genomics in both rice and insect hosts.
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