Hou Mengde, Ni Yajia, Yin Jinrong, Wu Mengchun, Zhang Helan, Du Yanfei, Chen Shasha, Zhou Zhipeng, Jiang Cong, Wang Qinhu, Liu Huiquan
State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.
National Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Sci Adv. 2025 Aug 22;11(34):eadu7606. doi: 10.1126/sciadv.adu7606. Epub 2025 Aug 20.
Eukaryotes have evolved defense systems to protect their genomes from invasive genetic elements. We report a fungal defense mechanism, tandem repeat-induced sexual silencing (TRISS), active during sexual stages. TRISS is a unique RNA interference (RNAi) pathway distinct from known mechanisms like quelling and meiotic silencing by unpaired DNA (MSUD). Triggered by tandem repeats, it involves RNAi components similar to quelling but uniquely includes the MSUD-specific Argonaute Sms2. TRISS operates independently of recombination. We identified small interfering RNA sassociated with TRISS (trasiRNAs) in tandem repeats. Sms2, guided by trasiRNAs, mediates translational repression of target mRNAs and is crucial for trasiRNA biogenesis. TRISS requires the DNA methyltransferase Rid but not Rid-mediated repeat-induced point mutation (RIP). Both Sms2 and Rid interact with replication protein A (RPA) to recruit the RPA-Qde1/RdRP complex, dependent on the helicase Qde3. This study reveals a potentially conserved strategy linking RIP and RNAi to silence tandem repeats during fungal sexual stages, offering insights into fungal genome defense.
真核生物已经进化出防御系统来保护其基因组免受入侵性遗传元件的影响。我们报道了一种在有性阶段活跃的真菌防御机制,串联重复序列诱导的性沉默(TRISS)。TRISS是一种独特的RNA干扰(RNAi)途径,不同于诸如基因压制和未配对DNA介导的减数分裂沉默(MSUD)等已知机制。由串联重复序列触发,它涉及与基因压制类似的RNAi组分,但独特地包含MSUD特异性的AGO蛋白Sms2。TRISS独立于重组发挥作用。我们在串联重复序列中鉴定出了与TRISS相关的小干扰RNA(trasiRNA)。由trasiRNA引导的Sms2介导靶标mRNA的翻译抑制,并且对trasiRNA的生物合成至关重要。TRISS需要DNA甲基转移酶Rid,但不需要Rid介导的重复序列诱导的点突变(RIP)。Sms2和Rid都与复制蛋白A(RPA)相互作用,以募集依赖解旋酶Qde3的RPA-Qde1/RdRP复合物。这项研究揭示了一种潜在保守的策略,即将RIP和RNAi联系起来以在真菌有性阶段沉默串联重复序列,为真菌基因组防御提供了见解。