Department of Forest Mycology and Plant Pathology, BioCenter, Swedish University of Agricultural Science, P.O. Box 7026, SE-750 07 Uppsala, Sweden.
Mycologia. 2013 Nov-Dec;105(6):1489-98. doi: 10.3852/13-171. Epub 2013 Aug 8.
RNA interference (RNAi) refers to a mechanism in which cells control gene expression, protect the genome against mobile repetitive DNA sequences, retro elements and transposons, and defend themselves against viruses. Two core components, dicer and argonaute, are central in the RNAi machinery. In this study the evolution of argonaute and dicer genes were analyzed with 43 fungal genomes, with the focus on Basidiomycota. Argonaute and dicer genes are widely represented in Basidiomycota as well as in other fungal groups, but the number of copies of them vary. However, in certain lineages, argonaute or dicer is missing. Our results suggest an ancient duplication of dicer and argonaute genes concurrently with early diversification of the Basidiomycota followed by additional species-specific duplications and losses of more recent origin. Several distinct RNAi pathways exist in fungi, based on structural similarity and phylogenetic relationship, our results indicate that quelling possibly exists in most Basidiomycota, while we could not find any evidence for the MSUD (meiotic-silencing) pathway in Basidiomycota. RNAi has been developed to be an important tool for reverse genetics studies. Because both argonaute and dicer are present in almost all Basidiomycota our results indicate that it should be possible to develop RNAi as a tool for functional studies of genes in most Basidiomycota species.
RNA 干扰 (RNAi) 是一种细胞控制基因表达的机制,它可以保护基因组免受移动重复 DNA 序列、逆转录元件和转座子的侵害,并抵御病毒的侵害。两个核心组件,dicer 和 argonaute,是 RNAi 机制的核心。在这项研究中,分析了 43 个真菌基因组中的 argonaute 和 dicer 基因,重点是担子菌门。Argonaute 和 dicer 基因在担子菌门以及其他真菌群中广泛存在,但它们的拷贝数有所不同。然而,在某些谱系中,argonaute 或 dicer 缺失。我们的研究结果表明,dicer 和 argonaute 基因的古老复制与担子菌门的早期多样化同时发生,随后是更多的物种特异性复制和最近起源的丢失。根据结构相似性和系统发育关系,真菌中存在几种不同的 RNAi 途径,我们的研究结果表明,在大多数担子菌门中可能存在沉默现象,而我们没有发现担子菌门中存在 MSUD(减数沉默)途径的证据。RNAi 已被开发为反向遗传学研究的重要工具。由于几乎所有的担子菌门都存在 argonaute 和 dicer,我们的研究结果表明,应该有可能开发 RNAi 作为大多数担子菌门物种中基因功能研究的工具。