Chen Rui, Jiang Nan, Jiang Qiyan, Sun Xianjun, Wang Yong, Zhang Hui, Hu Zheng
Tianjin Institute of Agricultural Quality Standard and Testing Technology, Tianjin Academy of Agricultural Sciences, Tianjin, China.
Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, China.
PLoS One. 2014 Aug 20;9(8):e104956. doi: 10.1371/journal.pone.0104956. eCollection 2014.
RNA silencing such as quelling and meiotic silencing by unpaired DNA (MSUD) and several other classes of special small RNAs have been discovered in filamentous fungi recently. More than four different mechanisms of microRNA-like RNAs (milRNAs) production have been illustrated in the model fungus Neurospora crassa including a dicer-independent pathway. To date, very little work focusing on small RNAs in fungi has been reported and no universal or particular characteristic of milRNAs were defined clearly. In this study, small RNA and degradome libraries were constructed and subsequently deep sequenced for investigating milRNAs and their potential cleavage targets on the genome level in the filamentous fungus F. oxysporum f. sp. lycopersici. As a result, there is no intersection of conserved miRNAs found by BLASTing against the miRBase. Further analysis showed that the small RNA population of F. oxysporum shared many common features with the small RNAs from N. crassa and other fungi. According to the known standards of miRNA prediction in plants and animals, milRNA candidates from 8 families (comprising 19 members) were screened out and identified. However, none of them could trigger target cleavage based on the degradome data. Moreover, most major signals of cleavage in transcripts could not match appropriate complementary small RNAs, suggesting that other predominant modes for milRNA-mediated gene regulation could exist in F. oxysporum. In addition, the PAREsnip program was utilized for comprehensive analysis and 3 families of small RNAs leading to transcript cleavage were experimentally validated. Altogether, our findings provided valuable information and important hints for better understanding the functions of the small RNAs and milRNAs in the fungal kingdom.
最近在丝状真菌中发现了RNA沉默现象,如抑制作用和由未配对DNA引发的减数分裂沉默(MSUD)以及其他几类特殊的小RNA。在模式真菌粗糙脉孢菌中已经阐明了超过四种不同的类微小RNA(milRNA)产生机制,包括一条不依赖于Dicer的途径。迄今为止,关于真菌中小RNA的研究报道很少,而且尚未明确界定milRNA的普遍或特殊特征。在本研究中,构建了小RNA和降解组文库,随后进行深度测序,以在基因组水平上研究丝状真菌尖孢镰刀菌番茄专化型中的milRNA及其潜在的切割靶标。结果,通过与miRBase进行比对,未发现保守miRNA的交集。进一步分析表明,尖孢镰刀菌的小RNA群体与粗糙脉孢菌和其他真菌的小RNA有许多共同特征。根据动植物中miRNA预测的已知标准,筛选并鉴定了来自8个家族(包含19个成员)的milRNA候选物。然而,根据降解组数据,它们均不能引发靶标切割。此外,转录本中的大多数主要切割信号无法与合适的互补小RNA匹配,这表明在尖孢镰刀菌中可能存在其他主要的milRNA介导的基因调控模式。此外,利用PAREsnip程序进行综合分析,并通过实验验证了导致转录本切割的3个小RNA家族。总之,我们的研究结果为更好地理解真菌王国中小RNA和milRNA的功能提供了有价值的信息和重要线索。