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首页> 外文期刊>BMC Plant Biology >Identification of precursor transcripts for 6 novel miRNAs expands the diversity on the genomic organisation and expression of miRNA genes in rice
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Identification of precursor transcripts for 6 novel miRNAs expands the diversity on the genomic organisation and expression of miRNA genes in rice

机译:鉴定6种新型miRNA的前体转录本可扩大水稻中miRNA基因组的组织和表达的多样性

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Background The plant miRNAs represent an important class of endogenous small RNAs that guide cleavage of an mRNA target or repress its translation to control development and adaptation to stresses. MiRNAs are nuclear-encoded genes transcribed by RNA polymerase II, producing a primary precursor that is subsequently processed by DCL1 an RNase III Dicer-like protein. In rice hundreds of miRNAs have been described or predicted, but little is known on their genes and precursors which are important criteria to distinguish them from siRNAs. Here we develop a combination of experimental approaches to detect novel miRNAs in rice, identify their precursor transcripts and genes and predict or validate their mRNA targets. Results We produced four cDNA libraries from small RNA fractions extracted from distinct rice tissues. By in silico analysis we selected 6 potential novel miRNAs, and confirmed that their expression requires OsDCL1. We predicted their targets and used 5'RACE to validate cleavage for three of them, targeting a PPR, an SPX domain protein and a GT-like transcription factor respectively. In addition, we identified precursor transcripts for the 6 miRNAs expressed in rice, showing that these precursors can be efficiently processed using a transient expression assay in transfected Nicotiana benthamiana leaves. Most interestingly, we describe two precursors producing tandem miRNAs, but in distinct arrays. We focus on one of them encoding osa-miR159a.2, a novel miRNA produced from the same stem-loop structure encoding the conserved osa-miR159a.1. We show that this dual osa-miR159a.2-osa-miR159a.1 structure is conserved in distant rice species and maize. Finally we show that the predicted mRNA target of osa-miR159a.2 encoding a GT-like transcription factor is cleaved in vivo at the expected site. Conclusion The combination of approaches developed here identified six novel miRNAs expressed in rice which can be clearly distinguished from siRNAs. Importantly, we show that two miRNAs can be produced from a single precursor, either from tandem stem-loops or tandemly arrayed in a single stem-loop. This suggests that processing of these precursors could be an important regulatory step to produce one or more functional miRNAs in plants and perhaps coordinate cleavage of distinct targets in the same plant tissue.
机译:背景技术植物miRNA代表一类重要的内源性小RNA,它们指导mRNA靶的切割或抑制其翻译以控制发育和适应胁迫。 MiRNA是由RNA聚合酶II转录的核编码基因,产生初级前体,随后被DCL1 RNase III Dicer样蛋白加工。在水稻中,已经描述或预测了数百种miRNA,但对其基因和前体知之甚少,而这些是区分它们与siRNA的重要标准。在这里,我们开发了一种实验方法的组合,以检测水稻中的新型miRNA,鉴定其前体转录物和基因并预测或验证其mRNA靶标。结果我们从不同水稻组织中提取的小RNA片段产生了四个cDNA文库。通过计算机分析,我们选择了6种潜在的新型miRNA,并证实它们的表达需要OsDCL1。我们预测了它们的靶标,并使用5'RACE验证了其中三个的裂解,分别靶向PPR,SPX域蛋白和GT样转录因子。此外,我们鉴定了在水稻中表达的6种miRNA的前体转录物,表明这些前体可以在转染的本氏烟草叶中使用瞬时表达测定法进行有效处理。最有趣的是,我们描述了产生串联miRNA的两个前体,但是排列不同。我们专注于其中一个编码osa-miR159a.2,这是一种由编码保守的osa-miR159a.1的相同茎环结构产生的新型miRNA。我们显示这种双重osa-miR159a.2-osa-miR159a.1结构在遥远的水稻物种和玉米中均保守。最后,我们显示了在体内预期位点切割了编码GT-like转录因子的osa-miR159a.2的预测mRNA靶标。结论本文开发的方法的组合鉴定了在水稻中表达的6种新颖的miRNA,可以与siRNA清楚地区分开。重要的是,我们表明可以从单个前体产生两个miRNA,既可以是串联茎环,也可以串联排列在单个茎环中。这表明这些前体的加工可能是在植物中产生一种或多种功能性miRNA的重要调控步骤,并可能协调同一植物组织中不同靶标的切割。

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