Salman Hameed Muhammad, Ren Yanliang, Tuda Midori, Basit Abdul, Urooj Nida
National Key Laboratory of Green Pesticide, International Joint Research Center for Intelligent Biosensor Technology and Health, Central China Normal University, Wuhan 430079, China.
Institute of Biological Control, Faculty of Agriculture, Kyushu University, Fukuoka 819-0395, Japan.
Gene. 2024 Apr 20;903:148195. doi: 10.1016/j.gene.2024.148195. Epub 2024 Jan 29.
Argonaute (Ago) proteins act as key elements in RNA interference (RNAi) pathway, orchestrating the intricate machinery of gene regulation within eukaryotic cells. Within the RNAi pathway, small RNA molecules, including microRNA (miRNA), small interfering RNA (siRNA), and PIWI-interacting RNA (piRNA), collaborate with Ago family member proteins such as Ago1, Ago2, and Ago3 to form the RNA-induced silencing complex (RISC). This RISC complex, in turn, either cleaves the target mRNA or inhibits the process of protein translation. The precise contributions of Ago proteins have been well-established in numerous animals and plants, although they still remain unclear in some insect species. This review aims to shed light on the specific roles played by Ago proteins within the RNAi mechanism in a destructive lepidopteran pest, the diamondback moth (Plutella xylostella). Furthermore, we explore the potential of double-stranded RNA (dsRNA)-mediated RNAi as a robust genetic tool in pest management strategies. Through an in-depth examination of Ago proteins and dsRNA-mediated RNAi, this review seeks to contribute to our understanding of innovative approaches for controlling this pest and potentially other insect species of agricultural significance.
Argonaute(Ago)蛋白是RNA干扰(RNAi)途径中的关键元件,在真核细胞内协调复杂的基因调控机制。在RNAi途径中,包括微小RNA(miRNA)、小干扰RNA(siRNA)和PIWI相互作用RNA(piRNA)在内的小RNA分子,与Ago1、Ago2和Ago3等Ago家族成员蛋白协作,形成RNA诱导沉默复合体(RISC)。反过来,这种RISC复合体要么切割靶mRNA,要么抑制蛋白质翻译过程。Ago蛋白的确切作用在许多动植物中已得到充分证实,尽管在一些昆虫物种中仍不清楚。本综述旨在阐明Ago蛋白在一种具有破坏性的鳞翅目害虫小菜蛾(Plutella xylostella)的RNAi机制中所起的具体作用。此外,我们探讨双链RNA(dsRNA)介导的RNAi作为害虫管理策略中一种强大的遗传工具的潜力。通过对Ago蛋白和dsRNA介导的RNAi的深入研究,本综述旨在促进我们对控制这种害虫以及潜在的其他具有农业重要性的昆虫物种的创新方法的理解。