Chojnacka Aleksandra, Smoczynska Aleksandra, Bielewicz Dawid, Pacak Andrzej, Hensel Goetz, Kumlehn Jochen, Maciej Karlowski Wojciech, Grabsztunowicz Magda, Sobieszczuk-Nowicka Ewa, Jarmolowski Artur, Szweykowska-Kulinska Zofia
Department of Gene Expression, Institute of Molecular Biology and Biotechnology, Faculty of Biology, Adam Mickiewicz University, Poznan, Poland.
Centre for Advanced Technologies, Adam Mickiewicz University, Poznan, Poland.
Physiol Plant. 2023 Sep-Oct;175(5):e14018. doi: 10.1111/ppl.14018.
MicroRNAs are small, noncoding RNA molecules that regulate the expression of their target genes. The MIR444 gene family is present exclusively in monocotyledons, and microRNAs444 from this family have been shown to target certain MADS-box transcription factors in rice and barley. We identified three barley MIR444 (MIR444a/b/c) genes and comprehensively characterised their structure and the processing pattern of the primary transcripts (pri-miRNAs444). Pri-microRNAs444 undergo extensive alternative splicing, generating functional and nonfunctional pri-miRNA444 isoforms. We show that barley pri-miRNAs444 contain numerous open reading frames (ORFs) whose transcripts associate with ribosomes. Using specific antibodies, we provide evidence that selected ORFs encoding PEP444a within MIR444a and PEP444c within MIR444c are expressed in barley plants. Moreover, we demonstrate that CRISPR-associated endonuclease 9 (Cas9)-mediated mutagenesis of the PEP444c-encoding sequence results in a decreased level of PEP444 transcript in barley shoots and roots and a 5-fold reduced level of mature microRNA444c in roots. Our observations suggest that PEP444c encoded by the MIR444c gene is involved in microRNA444c biogenesis in barley.
微小RNA是一类小的非编码RNA分子,可调控其靶基因的表达。MIR444基因家族仅存在于单子叶植物中,该家族的微小RNA444已被证明可靶向水稻和大麦中的某些MADS盒转录因子。我们鉴定出三个大麦MIR444(MIR444a/b/c)基因,并全面表征了它们的结构以及初级转录本(pri-miRNAs444)的加工模式。初级微小RNA444经历广泛的可变剪接,产生功能性和非功能性的pri-miRNA444异构体。我们发现大麦pri-miRNAs444包含许多开放阅读框(ORF),其转录本与核糖体相关联。使用特异性抗体,我们提供证据表明,MIR444a中编码PEP444a的特定ORF以及MIR444c中编码PEP444c的特定ORF在大麦植株中表达。此外,我们证明,CRISPR相关核酸内切酶9(Cas9)介导的PEP444c编码序列诱变导致大麦地上部和根部中PEP444转录本水平降低,根部中成熟微小RNA444c水平降低5倍。我们的观察结果表明,MIR444c基因编码的PEP444c参与大麦中微小RNA444c的生物合成。