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A Simple Method for Measuring Apoplast Hydration and Collecting Apoplast Contents

机译:一种测量质外体水合和收集质外体含量的简单方法

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摘要

The plant leaf apoplast is a dynamic environment subject to a variety of both internal and external stimuli. In addition to being a conduit for water vapor and gas exchange involved in transpiration and photosynthesis, the apoplast also accumulates many nutrients transported from the soil as well as those produced through photosynthesis. The internal leaf also provides a protective environment for endophytic and pathogenic microbes alike. Given the diverse array of physiological processes occurring in the apoplast, it is expedient to develop methods to study its contents. Many established methods rely on vacuum infiltration of an apoplast wash solution followed by centrifugation. In this study, we describe a refined method optimized for maize (Zea mays) seedling leaves, which not only provides a simple procedure for obtaining apoplast fluid, but also allows direct calculation of apoplast hydration at the time of harvest for every sample. In addition, we describe an abbreviated method for estimating apoplast hydration if the full apoplast extraction is not necessary. Finally, we show the applicability of this optimized apoplast extraction procedure for plants infected with the maize pathogen Pantoea stewartii ssp stewartii, including the efficient isolation of bacteria previously residing in the apoplast. The approaches to establishing this method should make it generally applicable to other types of plants.
机译:植物叶片的质外体是一个动态环境,受到内部和外部各种刺激。除了作为蒸腾和光合作用中的水蒸气和气体交换的管道外,质外体还积累了许多从土壤运来的养分以及通过光合作用产生的养分。内叶也为内生和致病微生物提供了保护环境。考虑到质外体中发生的生理过程的多样性,开发研究其含量的方法是合宜的。许多已建立的方法依赖于质外体洗涤液的真空渗透,然后进行离心分离。在这项研究中,我们描述了一种针对玉米(Zea mays)幼苗叶片优化的改良方法,该方法不仅提供了获得质外体流体的简单程序,而且还允许在每个样品收获时直接计算质外体的水合作用。另外,如果不需要完整的质外体提取,我们将描述一种简化的方法,用于估计质外体的水合作用。最后,我们展示了这种优化的质外体提取程序对被玉米病原菌Pantoea stewartii ssp stewartii感染的植物的适用性,包括有效分离先前存在于质外体中的细菌。建立此方法的方法应使其普遍适用于其他类型的植物。

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