Department of Plant Pathology, Nanjing Agricultural University, Nanjing, Jiangsu, China.
The Key Laboratory of Plant Immunity, Nanjing Agricultural University, Nanjing, Jiangsu, China.
PLoS Pathog. 2021 Oct 14;17(10):e1010001. doi: 10.1371/journal.ppat.1010001. eCollection 2021 Oct.
Sexual reproduction is an essential stage of the oomycete life cycle. However, the functions of critical regulators in this biological process remain unclear due to a lack of genome editing technologies and functional genomic studies in oomycetes. The notorious oomycete pathogen Pythium ultimum is responsible for a variety of diseases in a broad range of plant species. In this study, we revealed the mechanism through which PuM90, a stage-specific Puf family RNA-binding protein, regulates oospore formation in P. ultimum. We developed the first CRISPR/Cas9 system-mediated gene knockout and in situ complementation methods for Pythium. PuM90-knockout mutants were significantly defective in oospore formation, with empty oogonia or oospores larger in size with thinner oospore walls compared with the wild type. A tripartite recognition motif (TRM) in the Puf domain of PuM90 could specifically bind to a UGUACAUA motif in the mRNA 3' untranslated region (UTR) of PuFLP, which encodes a flavodoxin-like protein, and thereby repress PuFLP mRNA level to facilitate oospore formation. Phenotypes similar to PuM90-knockout mutants were observed with overexpression of PuFLP, mutation of key amino acids in the TRM of PuM90, or mutation of the 3'-UTR binding site in PuFLP. The results demonstrated that a specific interaction of the RNA-binding protein PuM90 with the 3'-UTR of PuFLP mRNA at the post-transcriptional regulation level is critical for the sexual reproduction of P. ultimum.
有性生殖是卵菌生命周期的一个重要阶段。然而,由于缺乏卵菌的基因组编辑技术和功能基因组研究,这个生物过程中的关键调控因子的功能仍不清楚。臭名昭著的卵菌病原体腐霉是多种植物物种多种疾病的病原体。在这项研究中,我们揭示了 PuM90(一种特定阶段的 Puf 家族 RNA 结合蛋白)调节腐霉有性生殖的机制。我们开发了第一个针对腐霉的 CRISPR/Cas9 系统介导的基因敲除和原位互补方法。PuM90 敲除突变体在卵孢子形成方面明显有缺陷,与野生型相比,空卵母细胞或卵孢子更大,卵孢子壁更薄。PuM90 的 Puf 结构域中的三部分识别基序 (TRM) 可以特异性结合编码黄素蛋白样蛋白的 PuFLP mRNA 的 3'非翻译区 (UTR) 中的 UGUACAUA 基序,从而抑制 PuFLP mRNA 水平,促进卵孢子形成。与 PuM90 敲除突变体相似的表型也观察到在 PuFLP 的过表达、PuM90 的 TRM 中的关键氨基酸突变或 PuFLP 的 3'-UTR 结合位点突变的情况下。结果表明,RNA 结合蛋白 PuM90 与 PuFLP mRNA 3'-UTR 的特异性相互作用在腐霉的有性生殖中是至关重要的。