首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Ecosystem Fabrication (EcoFAB) Protocols for The Construction of Laboratory Ecosystems Designed to Study Plant-microbe Interactions
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Ecosystem Fabrication (EcoFAB) Protocols for The Construction of Laboratory Ecosystems Designed to Study Plant-microbe Interactions

机译:用于研究植物与微生物相互作用的实验室生态系统构建的生态系统制造(EcoFAB)协议

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摘要

Beneficial plant-microbe interactions offer a sustainable biological solution with the potential to boost low-input food and bioenergy production. A better mechanistic understanding of these complex plant-microbe interactions will be crucial to improving plant production as well as performing basic ecological studies investigating plant-soil-microbe interactions. Here, a detailed description for ecosystem fabrication is presented, using widely available 3D printing technologies, to create controlled laboratory habitats (EcoFABs) for mechanistic studies of plant-microbe interactions within specific environmental conditions. Two sizes of EcoFABs are described that are suited for the investigation of microbial interactions with various plant species, including Arabidopsis thaliana, Brachypodium distachyon, and Panicum virgatum. These flow-through devices allow for controlled manipulation and sampling of root microbiomes, root chemistry as well as imaging of root morphology and microbial localization. This protocol includes the details for maintaining sterile conditions inside EcoFABs and mounting independent LED light systems onto EcoFABs. Detailed methods for addition of different forms of media, including soils, sand, and liquid growth media coupled to the characterization of these systems using imaging and metabolomics are described. Together, these systems enable dynamic and detailed investigation of plant and plant-microbial consortia including the manipulation of microbiome composition (including mutants), the monitoring of plant growth, root morphology, exudate composition, and microbial localization under controlled environmental conditions. We anticipate that these detailed protocols will serve as an important starting point for other researchers, ideally helping create standardized experimental systems for investigating plant-microbe interactions.
机译:有益的植物-微生物相互作用提供了一种可持续的生物解决方案,具有促进低投入食品和生物能源生产的潜力。对这些复杂的植物-微生物相互作用的更好的机械理解对于提高植物产量以及进行基础生态研究以研究植物-土壤-微生物相互作用至关重要。在这里,使用广泛可用的3D打印技术介绍了生态系统制造的详细说明,以创建受控的实验室栖息地(EcoFAB),用于在特定环境条件下进行植物-微生物相互作用的机理研究。描述了两种尺寸的EcoFAB,适用于研究与各种植物物种的微生物相互作用,包括拟南芥,短枝短螺旋藻和百日草。这些流通设备允许对根微生物群,根化学以及根形态和微生物定位成像进行受控操作和取样。该协议包括维护EcoFAB内部无菌条件以及将独立的LED照明系统安装到EcoFAB上的详细信息。描述了添加不同形式的介质(包括土壤,沙子和液体生长介质)的详细方法,这些介质与使用成像和代谢组学对这些系统的表征相结合。这些系统共同实现了对植物和植物-微生物群落的动态和详细研究,包括操纵微生物组组成(包括突变体),监测植物生长,根系形态,渗出液组成以及在受控环境条件下的微生物定位。我们预计这些详细的协议将成为其他研究人员的重要起点,理想地有助于创建用于研究植物与微生物相互作用的标准化实验系统。

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