Yi Yanglei, Li Zhibo, Kuipers Oscar P
Department of Molecular Genetics, University of Groningen.
Department of Molecular Genetics, University of Groningen;
J Vis Exp. 2018 Jul 2(137):57606. doi: 10.3791/57606.
Beneficial plant-associated bacteria play an important role in promoting growth and preventing disease in plants. The application of plant growth-promoting rhizobacteria (PGPR) as biofertilizers or biocontrol agents has become an effective alternative to the use of conventional fertilizers and can increase crop productivity at low cost. Plant-microbe interactions depend upon host plant-secreted signals and a reaction hereon by their associated bacteria. However, the molecular mechanisms of how beneficial bacteria respond to their associated plant-derived signals are not fully understood. Assessing the transcriptomic response of bacteria to root exudates is a powerful approach to determine the bacterial gene expression and regulation under rhizospheric conditions. Such knowledge is necessary to understand the underlying mechanisms involved in plant-microbe interactions. This paper describes a detailed protocol to study the transcriptomic response of B. mycoides EC18, a strain isolated from the potato endosphere, to potato root exudates. With the help of recent high-throughput sequencing technology, this protocol can be performed in several weeks and produce massive datasets. First, we collect the root exudates under sterile conditions, after which they are added to B. mycoides cultures. The RNA from these cultures is isolated using a phenol/chloroform method combined with a commercial kit and subjected to quality control by an automated electrophoresis instrument. After sequencing, data analysis is performed with the web-based T-REx pipeline and a group of differentially expressed genes is identified. This method is a useful tool to facilitate new discoveries on the bacterial genes involved in plant-microbe interactions.
有益的植物相关细菌在促进植物生长和预防植物病害方面发挥着重要作用。将植物促生根际细菌(PGPR)作为生物肥料或生物防治剂应用,已成为使用传统肥料的一种有效替代方法,并且能够以低成本提高作物产量。植物与微生物的相互作用取决于宿主植物分泌的信号以及其相关细菌对此的反应。然而,有益细菌如何响应其相关的植物衍生信号的分子机制尚未完全了解。评估细菌对根系分泌物的转录组反应是确定根际条件下细菌基因表达和调控的有力方法。此类知识对于理解植物与微生物相互作用的潜在机制是必要的。本文描述了一个详细的实验方案,用于研究从马铃薯内生菌中分离出的菌株蕈状芽孢杆菌EC18对马铃薯根系分泌物的转录组反应。借助最近的高通量测序技术,该实验方案可在几周内完成并产生大量数据集。首先,我们在无菌条件下收集根系分泌物,然后将其添加到蕈状芽孢杆菌培养物中。使用酚/氯仿法结合商业试剂盒从这些培养物中分离RNA,并通过自动电泳仪进行质量控制。测序后,使用基于网络的T-REx管道进行数据分析,并鉴定出一组差异表达基因。该方法是促进有关植物与微生物相互作用中细菌基因新发现的有用工具。