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Developmental Dynamics of Long Noncoding RNA Expression during Sexual Fruiting Body Formation in Fusarium graminearum

机译:禾谷镰刀菌中有性子实体形成过程中长非编码RNA表达的发育动力学

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ABSTRACT Long noncoding RNA (lncRNA) plays important roles in sexual development in eukaryotes. In filamentous fungi, however, little is known about the expression and roles of lncRNAs during fruiting body formation. By profiling developmental transcriptomes during the life cycle of the plant-pathogenic fungus Fusarium graminearum , we identified 547 lncRNAs whose expression was highly dynamic, with about 40% peaking at the meiotic stage. Many lncRNAs were found to be antisense to mRNAs, forming 300 sense-antisense pairs. Although small RNAs were produced from these overlapping loci, antisense lncRNAs appeared not to be involved in gene silencing pathways. Genome-wide analysis of small RNA clusters identified many silenced loci at the meiotic stage. However, we found transcriptionally active small RNA clusters, many of which were associated with lncRNAs. Also, we observed that many antisense lncRNAs and their respective sense transcripts were induced in parallel as the fruiting bodies matured. The nonsense-mediated decay (NMD) pathway is known to determine the fates of lncRNAs as well as mRNAs. Thus, we analyzed mutants defective in NMD and identified a subset of lncRNAs that were induced during sexual development but suppressed by NMD during vegetative growth. These results highlight the developmental stage-specific nature and functional potential of lncRNA expression in shaping the fungal fruiting bodies and provide fundamental resources for studying sexual stage-induced lncRNAs. IMPORTANCE Fusarium graminearum is the causal agent of the head blight on our major staple crops, wheat and corn. The fruiting body formation on the host plants is indispensable for the disease cycle and epidemics. Long noncoding RNA (lncRNA) molecules are emerging as key regulatory components for sexual development in animals and plants. To date, however, there is a paucity of information on the roles of lncRNAs in fungal fruiting body formation. Here we characterized hundreds of lncRNAs that exhibited developmental stage-specific expression patterns during fruiting body formation. Also, we discovered that many lncRNAs were induced in parallel with their overlapping transcripts on the opposite DNA strand during sexual development. Finally, we found a subset of lncRNAs that were regulated by an RNA surveillance system during vegetative growth. This research provides fundamental genomic resources that will spur further investigations on lncRNAs that may play important roles in shaping fungal fruiting bodies.
机译:摘要长非编码RNA(lncRNA)在真核生物的性发育中起重要作用。然而,在丝状真菌中,关于子实体形成过程中lncRNA的表达和作用的了解甚少。通过对植物病原性真菌镰刀镰刀菌(Fusarium graminearum)生命周期内的发育转录组进行谱分析,我们鉴定了547个lncRNA,它们的表达是高度动态的,在减数分裂阶段达到峰值约40%。发现许多lncRNA对mRNA是反义的,形成了300个有义-反义对。尽管从这些重叠的基因座产生了小RNA,但是反义lncRNA似乎不参与基因沉默途径。小RNA簇的全基因组分析确定了减数分裂阶段的许多沉默位点。但是,我们发现了具有转录活性的小RNA簇,其中许多与lncRNA相关。此外,我们观察到,随着子实体的成熟,许多反义lncRNAs及其各自的有义转录物被并行诱导。众所周知,无意义介导的衰变(NMD)途径决定了lncRNA和mRNA的命运。因此,我们分析了NMD中有缺陷的突变体,并鉴定了在性发育过程中被诱导但在营养生长过程中被NMD抑制的lncRNA的子集。这些结果突出了lncRNA表达在形成真菌子实体中的发育阶段特异性和功能潜力,并为研究性阶段诱导的lncRNAs提供了基础资源。重要信息禾谷镰刀菌是我们主要主粮作物小麦和玉米头枯病的病因。寄主植物上的子实体形成对于疾病周期和流行是必不可少的。长的非编码RNA(lncRNA)分子正在成为动植物性发育的关键调控成分。然而,迄今为止,关于lncRNA在真菌子实体形成中的作用的信息很少。在这里我们表征了数百个在子实体形成过程中表现出发育阶段特异性表达模式的lncRNA。此外,我们发现在性发育过程中,许多lncRNA及其重叠的转录物在相反的DNA链上被平行诱导。最后,我们发现了lncRNA的一个子集,该子集在营养生长过程中受到RNA监测系统的调节。这项研究提供了基本的基因组资源,将刺激对可能在塑造真菌子实体中发挥重要作用的lncRNA的进一步研究。

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