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Fragmentation of tRNA in Phytophthora infestans asexual life cycle stages and during host plant infection

机译:疫霉疫霉无性生活周期阶段和寄主植物感染过程中tRNA的片段化

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摘要

The oomycete Phytophthora infestans possesses active RNA silencing pathways, which presumably enable this plant pathogen to control the large numbers of transposable elements present in its 240 Mb genome. Small RNAs (sRNAs), central molecules in RNA silencing, are known to also play key roles in this organism, notably in regulation of critical effector genes needed for infection of its potato host.Results: To identify additional classes of sRNAs in oomycetes, we mapped deep sequencing reads to transfer RNAs (tRNAs) thereby revealing the presence of 19-40 nt tRNA-derived RNA fragments (tRFs). Northern blot analysis identified abundant tRFs corresponding to half tRNA molecules. Some tRFs accumulated differentially during infection, as seen by examining sRNAs sequenced from P. infestans-potato interaction libraries. The putative connection between tRF biogenesis and the canonical RNA silencing pathways was investigated by employing hairpin RNA-mediated RNAi to silence the genes encoding P. infestans Argonaute (PiAgo) and Dicer (PiDcl) endoribonucleases. By sRNA sequencing we show that tRF accumulation is PiDcl1-independent, while Northern hybridizations detected reduced levels of specific tRNA-derived species in the PiAgo1 knockdown line.Conclusions: Our findings extend the sRNA diversity in oomycetes to include fragments derived from non-protein-coding RNA transcripts and identify tRFs with elevated levels during infection of potato by P. infestans.
机译:卵菌疫霉菌具有活跃的RNA沉默途径,据推测使该植物病原体能够控制其240 Mb基因组中存在的大量转座因子。小RNA(sRNA)是RNA沉默的中心分子,在该生物中也起着关键作用,特别是在调节马铃薯宿主感染所需的关键效应基因方面。结果:为鉴定卵菌中的其他sRNA类型,我们定位的深度测序读图可转移RNA(tRNA),从而揭示19-40 nt tRNA衍生的RNA片段(tRF)的存在。 Northern印迹分析鉴定了对应于一半tRNA分子的大量tRF。通过检查从致病疫霉菌-马铃薯相互作用文库中测序的sRNA,可以看出感染期间某些tRF的积累差异。通过使用发夹RNA介导的RNAi沉默致病疫霉Argonaute(PiAgo)和Dicer(PiDcl)核糖核酸内切酶的基因,研究了tRF生物发生与经典RNA沉默途径之间的可能联系。通过sRNA测序,我们显示tRF积累是独立于PiDcl1的,而Northern杂交检测到PiAgo1敲除品系中特定tRNA衍生物种的水平降低。编码RNA转录本,并鉴定出感染致病疫霉后马铃薯中升高水平的tRF。

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