Localized efficacy of environmental RNAi in Tetranychus urticae

荨麻疹叶螨 RNA干扰 生物 表型 基因沉默 基因 秀丽隐杆线虫 RNA沉默 蜘蛛螨 基因表达 小RNA 遗传学 细胞生物学 核糖核酸 植物
作者
Nicolas Bensoussan,Maja Milojevic,Kristie Bruinsma,Sameer Dixit,Sean Pham,Vinayak Singh,Vladimir Zhurov,Miodrag Grbić,Vojislava Grbić
出处
期刊:Scientific Reports [Springer Nature]
卷期号:12 (1) 被引量:6
标识
DOI:10.1038/s41598-022-19231-3
摘要

Environmental RNAi has been developed as a tool for reverse genetics studies and is an emerging pest control strategy. The ability of environmental RNAi to efficiently down-regulate the expression of endogenous gene targets assumes efficient uptake of dsRNA and its processing. In addition, its efficiency can be augmented by the systemic spread of RNAi signals. Environmental RNAi is now a well-established tool for the manipulation of gene expression in the chelicerate acari, including the two-spotted spider mite, Tetranychus urticae. Here, we focused on eight single and ubiquitously-expressed genes encoding proteins with essential cellular functions. Application of dsRNAs that specifically target these genes led to whole mite body phenotypes-dark or spotless. These phenotypes were associated with a significant reduction of target gene expression, ranging from 20 to 50%, when assessed at the whole mite level. Histological analysis of mites treated with orally-delivered dsRNAs was used to investigate the spatial range of the effectiveness of environmental RNAi. Although macroscopic changes led to two groups of body phenotypes, silencing of target genes was associated with the distinct cellular phenotypes. We show that regardless of the target gene tested, cells that displayed histological changes were those that are in direct contact with the dsRNA-containing gut lumen, suggesting that the greatest efficiency of the orally-delivered dsRNAs is localized to gut tissues in T. urticae.

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