Penno Christophe, Tremblay Julien, O'Connell Motherway Mary, Daburon Virginie, El Amrani Abdelhak
ECOBIO, CNRS UMR 6553, Université de Rennes, Campus Beaulieu, Rennes, France.
Energy, Mining and Environment, National Research Council Canada, Montréal, QC, Canada.
Methods Mol Biol. 2023;2642:403-427. doi: 10.1007/978-1-0716-3044-0_22.
Research to date on abiotic stress responses in plants has been largely focused on the plant itself, but current knowledge indicates that microorganisms can interact with and help plants during periods of abiotic stress. In our research, we aim to investigate the interkingdom communication between the plant root and the rhizo-microbiota. Our investigation showed that miRNA plays a pivotal role in this interkingdom communication. Here, we describe a protocol for the analysis of miRNA secreted by the plant root, which includes all of the steps from the isolation of the miRNA to the bioinformatics analysis. Because of their short nucleotide length, Next Generation Sequencing (NGS) library preparation from miRNAs can be challenging due to the presence of dimer adapter contaminants. Therefore, we highlight some strategies we adopt to inhibit the generation of dimer adapters during library preparation. Current screens of miRNA targets mostly focus on the identification of targets present in the same organism expressing the miRNA. Our bioinformatics analysis challenges the barrier of evolutionary divergent organisms to identify candidate sequences of the microbiota targeted by the miRNA of plant roots. This protocol should be of interest to researchers investigating interkingdom RNA-based communication between plants and their associated microorganisms, particularly in the context of holobiont responses to abiotic stresses.
迄今为止,关于植物非生物胁迫响应的研究主要集中在植物本身,但目前的知识表明,微生物在非生物胁迫期间可以与植物相互作用并帮助植物。在我们的研究中,我们旨在研究植物根系与根际微生物群之间的跨界通讯。我们的研究表明,miRNA在这种跨界通讯中起着关键作用。在这里,我们描述了一种分析植物根系分泌的miRNA的方案,该方案包括从miRNA的分离到生物信息学分析的所有步骤。由于其核苷酸长度较短,从miRNA制备下一代测序(NGS)文库可能具有挑战性,因为存在二聚体接头污染物。因此,我们重点介绍了一些在文库制备过程中抑制二聚体接头生成的策略。目前对miRNA靶标的筛选大多集中在鉴定表达miRNA的同一生物体中存在的靶标。我们的生物信息学分析突破了进化差异生物的障碍,以鉴定植物根系miRNA靶向的微生物群候选序列。该方案应该会引起研究植物与其相关微生物之间基于RNA的跨界通讯的研究人员的兴趣,特别是在全生物对非生物胁迫的响应背景下。