Laboratorio de Bioquímica, Departamento de Biología Vegetal, Facultad de Agronomía, Universidad de la República;
Laboratorio de Bioquímica, Departamento de Biología Vegetal, Facultad de Agronomía, Universidad de la República.
J Vis Exp. 2022 Jul 1(185). doi: 10.3791/64269.
The aim of this protocol is to provide a strategy for studying the eukaryotic translatome of the soybean (Glycine max) symbiotic nodule. This paper describes methods optimized to isolate plant-derived polyribosomes and their associated mRNAs to be analyzed using RNA-sequencing. First, cytoplasmic lysates are obtained through homogenization in polysome- and RNA-preserving conditions from whole, frozen soybean nodules. Then, lysates are cleared by low-speed centrifugation, and 15% of the supernatant is used for total RNA (TOTAL) isolation. The remaining cleared lysate is used to isolate polysomes by ultracentrifugation through a two-layer sucrose cushion (12% and 33.5%). Polysome-associated mRNA (PAR) is purified from polysomal pellets after resuspension. Both TOTAL and PAR are evaluated by highly sensitive capillary electrophoresis to meet the quality standards of sequencing libraries for RNA-seq. As an example of a downstream application, after sequencing, standard pipelines for gene expression analysis can be used to obtain differentially expressed genes at the transcriptome and translatome levels. In summary, this method, in combination with RNA-seq, allows the study of the translational regulation of eukaryotic mRNAs in a complex tissue such as the symbiotic nodule.
本方案旨在提供一种研究大豆(Glycine max)共生根瘤中真核翻译组的策略。本文描述了优化的方法,用于从完整的、冷冻的大豆根瘤中分离植物来源的多核糖体及其相关的 mRNA,以便使用 RNA 测序进行分析。首先,通过在保持多核糖体和 RNA 的条件下匀浆,从整个冷冻的大豆根瘤中获得细胞质裂解物。然后,通过低速离心清除裂解物,并用上清液的 15%用于总 RNA(TOTAL)分离。剩余的上清液用于通过双层蔗糖垫(12%和 33.5%)进行超速离心分离多核糖体。多核糖体沉淀重新悬浮后,从多核糖体颗粒中纯化多核糖体相关 mRNA(PAR)。TOTAL 和 PAR 均通过高灵敏度毛细管电泳进行评估,以满足 RNA-seq 测序文库的质量标准。作为下游应用的一个示例,测序后,可以使用标准的基因表达分析流程,在转录组和翻译组水平上获得差异表达的基因。总之,该方法与 RNA-seq 结合使用,可以研究复杂组织(如共生根瘤)中真核 mRNA 的翻译调控。