Department of Plant and Microbial Biology, North Carolina State University, Raleigh, North Carolina, USA.
Plant Genome. 2024 Mar;17(1):e20429. doi: 10.1002/tpg2.20429. Epub 2024 Jan 20.
Circular RNAs (circRNAs) are covalently closed single-stranded RNAs, generated through a back-splicing process that links a downstream 5' site to an upstream 3' end. The only distinction in the sequence between circRNA and their linear cognate RNA is the back splice junction. Their low abundance and sequence similarity with their linear origin RNA have made the discovery and identification of circRNA challenging. We have identified almost 6000 novel circRNAs from Lotus japonicus leaf tissue using different enrichment, amplification, and sequencing methods as well as alternative bioinformatics pipelines. The different methodologies identified different pools of circRNA with little overlap. We validated circRNA identified by the different methods using reverse transcription polymerase chain reaction and characterized sequence variations using nanopore sequencing. We compared validated circRNA identified in L. japonicus to other plant species and showed conservation of high-confidence circRNA-expressing genes. This is the first identification of L. japonicus circRNA and provides a resource for further characterization of their function in gene regulation. CircRNAs identified in this study originated from genes involved in all biological functions of eukaryotic cells. The comparison of methodologies and technologies to sequence, identify, analyze, and validate circRNA from plant tissues will enable further research to characterize the function and biogenesis of circRNA in L. japonicus.
环状 RNA(circRNAs)是通过连接下游 5' 位点和上游 3' 末端的反向剪接过程产生的共价闭环单链 RNA。circRNA 与其线性同源 RNA 在序列上的唯一区别是反向剪接连接点。circRNA 丰度低,与线性来源 RNA 的序列相似,这使得 circRNA 的发现和鉴定具有挑战性。我们使用不同的富集、扩增和测序方法以及替代的生物信息学管道,从绿豆叶片组织中鉴定出了近 6000 种新型 circRNA。不同的方法学鉴定出了不同的 circRNA 池,彼此之间很少有重叠。我们使用逆转录聚合酶链式反应(reverse transcription polymerase chain reaction,RT-PCR)验证了不同方法鉴定的 circRNA,并使用纳米孔测序(nanopore sequencing)对序列变异进行了表征。我们将在绿豆中鉴定的经验证的 circRNA 与其他植物物种进行了比较,并显示出高可信度 circRNA 表达基因的保守性。这是首次鉴定绿豆 circRNA,为进一步研究其在基因调控中的功能提供了资源。本研究中鉴定的 circRNA 来源于参与真核细胞所有生物学功能的基因。对植物组织中的 circRNA 进行测序、鉴定、分析和验证的方法学和技术的比较,将使进一步的研究能够对绿豆中的 circRNA 的功能和生物发生进行表征。