Schniertshauer Daniel, Bergemann Jörg
Department of Life Sciences, Albstadt-Sigmaringen University of Applied Sciences, Sigmaringen, Germany.
Bio Protoc. 2023 Aug 5;13(15):e4767. doi: 10.21769/BioProtoc.4767.
Understanding the influence of secondary metabolites from fungi on the mitochondria of the host plant during infection is of great importance for the knowledge of fungus-plant interactions in general; it could help generate resistant plants in the future and in the development of specifically acting plant protection products. For this purpose, it must first be possible to record the mitochondrial parameters in the host plant. As of the date of this protocol, no measurements of mitochondrial respiration parameters have been performed in wheat paleae. The protocol shown here describes the measurements using the XF24 analyzer, which measures the rate of oxygen consumption in the sample by changes in the fluorescence of solid-state fluorophores. This procedure covers the preparation of samples for the XF24 analyzer and the measurement of mitochondrial parameters by adding specific mitochondrial inhibitors. It also shows the necessary approach and steps to be followed to obtain reliable, reproducible results. This is a robust protocol that allows the analysis of mitochondrial respiration directly in the wheat paleae. It demonstrates an important add-on method to existing screenings and also offers the possibility to test the effects of early infection of plants by harmful fungi (e.g., Fusarium graminearum) on mitochondrial respiration parameters. Key features This protocol offers the possibility of testing the effects of early infection of plants by pathogens on mitochondrial respiration parameters. This protocol requires a Seahorse XF24 Flux Analyzer with Islet Capture Microplates and the Seahorse Capture Screen Insert Tool. Graphical overview.
了解真菌次生代谢产物在感染过程中对宿主植物线粒体的影响,对于全面了解真菌与植物的相互作用具有重要意义;这有助于未来培育抗性植物以及开发具有特定作用的植物保护产品。为此,首先必须能够记录宿主植物中的线粒体参数。截至本方案制定之日,尚未对小麦稃片的线粒体呼吸参数进行测量。此处所示的方案描述了使用XF24分析仪进行测量的方法,该分析仪通过固态荧光团的荧光变化来测量样品中的氧气消耗速率。本程序涵盖了为XF24分析仪制备样品以及通过添加特定的线粒体抑制剂来测量线粒体参数的过程。它还展示了为获得可靠、可重复的结果而需遵循的必要方法和步骤。这是一个强大的方案,可直接在小麦稃片中分析线粒体呼吸。它展示了现有筛选方法的一种重要补充方法,也提供了测试有害真菌(如禾谷镰刀菌)早期感染植物对线粒体呼吸参数影响的可能性。关键特性 本方案提供了测试病原体早期感染植物对线粒体呼吸参数影响的可能性。本方案需要一台配备胰岛捕获微孔板和海马捕获筛选插入工具的海马XF24通量分析仪。图形概述。