Hubei Key Laboratory of Plant Pathology, Huazhong Agricultural University, Wuhan, 430070, China.
Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Hangzhou, 310018, China.
Environ Microbiol. 2021 Sep;23(9):4998-5013. doi: 10.1111/1462-2920.15432. Epub 2021 Feb 22.
Long non-coding RNAs (lncRNAs) play an important role in biological processes but regulation and function of lncRNAs remain largely unelucidated, especially in fungi. Ustilaginoidea virens is an economically important fungus causing a devastating disease of rice. By combining microscopic and RNA-seq analyses, we comprehensively characterized lncRNAs of this fungus in infection and developmental processes and defined four serial typical stages. RNA-seq analyses revealed 1724 lncRNAs in U. virens, including 1084 long intergenic non-coding RNAs (lincRNAs), 51 intronic RNAs (incRNAs), 566 natural antisense transcripts (lncNATs) and 23 sense transcripts. Gene Ontology enrichment of differentially expressed lincRNAs and lncNATs demonstrated that these were mainly involved in transport-related regulation. Functional studies of transport-related lncRNAs revealed that UvlncNAT-MFS, a cytoplasm localized lncNAT of a putative MFS transporter gene, UvMFS, could form an RNA duplex with UvMFS and was required for regulation of growth, conidiation and various stress responses. Our results were the first to elucidate the lncRNA profiles during infection and development of this important phytopathogen U. virens. The functional discovery of the novel lncRNA, UvlncNAT-MFS, revealed the potential of lncRNAs in regulation of life processes in fungi.
长链非编码 RNA(lncRNA)在生物过程中发挥着重要作用,但它们的调节和功能仍很大程度上未被阐明,尤其是在真菌中。稻绿核菌是一种经济上重要的真菌,可引起水稻毁灭性疾病。通过结合显微镜和 RNA-seq 分析,我们全面描述了这种真菌在感染和发育过程中的 lncRNA,并定义了四个连续的典型阶段。RNA-seq 分析揭示了稻绿核菌中的 1724 个 lncRNA,包括 1084 个长基因间非编码 RNA(lincRNA)、51 个内含子 RNA(incRNA)、566 个自然反义转录物(lncNAT)和 23 个有义转录物。差异表达的 lincRNA 和 lncNAT 的基因本体富集分析表明,它们主要参与运输相关调节。运输相关 lncRNA 的功能研究表明,细胞质定位的 lncNAT UvlncNAT-MFS 是一个假定的 MFS 转运蛋白基因 UvMFS 的 lncNAT,可与 UvMFS 形成 RNA 双链,并参与生长、产孢和各种应激反应的调节。我们的结果首次阐明了这种重要植物病原菌稻绿核菌感染和发育过程中的 lncRNA 谱。新型 lncRNA UvlncNAT-MFS 的功能发现揭示了 lncRNA 在真菌生命过程调节中的潜力。