Institute of Bee Health, Vetsuisse Faculty, University of Bern, Schwarzenburgstrasse 161, CH-3097 Liebefeld, Switzerland; Honey Bee Research Institute, Jiangxi Agricultural University, Zhimin Avenue 1101, 330045 Nanchang, China.
Infect Genet Evol. 2018 Nov;65:329-332. doi: 10.1016/j.meegid.2018.08.011. Epub 2018 Aug 22.
Microsporidia are a group of intracellular parasites which infect animal hosts. The infection can broadly influence the hosts' metabolism, growth as well as immune responses. Recently, a functional RNAi pathway was suggested from the microsporidia parasite Nosema ceranae, whereby the gene Dicer showed strong impact on spore proliferation. Based on sequenced microsporidian species, the RNAi gene orthologs have only been annotated for a few species. In order to study the selection of RNAi gene Dicer and Argonaute orthologs from microsporidian genomes, a phylogenetic analysis was performed based on single copy orthologs of 21 microsporidian parasite species. Of the 21 studied parasite species, 11 parasite species maintained Dicer and Argonaute orthologs, which were further used to build the gene trees. The gene Dicer and Argonaute orthologs were either both maintained or both lost. The topology structures between the phylogenetic Dicer, Argonaute and species trees were consistent. The results suggest that the gene Dicer and Argonaute were selected as a unit, which were selectively maintained/lost during the lineage divergence. The study provides general insights on the selection of RNAi pathway in microsporidian parasites and the evolution of parasitism.
微孢子虫是一类感染动物宿主的细胞内寄生虫。感染会广泛影响宿主的新陈代谢、生长和免疫反应。最近,从微孢子虫寄生虫 Nosema ceranae 中提出了一种功能性 RNAi 途径,其中基因 Dicer 对孢子增殖有很强的影响。基于已测序的微孢子虫物种,只有少数几种物种注释了 RNAi 基因 Dicer 和 Argonaute 的同源物。为了研究 RNAi 基因 Dicer 和 Argonaute 同源物在微孢子虫基因组中的选择,对 21 种微孢子虫寄生虫的单拷贝同源物进行了系统发育分析。在研究的 21 种寄生虫中,有 11 种寄生虫保留了 Dicer 和 Argonaute 同源物,进一步用于构建基因树。基因 Dicer 和 Argonaute 同源物要么都被保留,要么都被丢失。系统发育分析 Dicer、Argonaute 和物种树之间的拓扑结构是一致的。结果表明,基因 Dicer 和 Argonaute 被作为一个单位选择,在谱系分化过程中被选择性地保留/丢失。该研究为微孢子虫寄生虫中 RNAi 途径的选择和寄生进化提供了一般见解。