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内皮和叶片渗透摩尔浓度的测量。

Measurement of Inner Bark and Leaf Osmolality.

作者信息

Paljakka Teemu, Lintunen Anna, Salmon Yann, Hölttä Teemu

机构信息

Faculty of Agriculture and Forestry, Institute for Atmospheric and Earth System Research/Forest Sciences, University of Helsinki, Helsinki, Finland.

Faculty of Science, Institute for Atmospheric and Earth System Research/Physics, University of Helsinki, Helsinki, Finland.

出版信息

Methods Mol Biol. 2019;2014:135-142. doi: 10.1007/978-1-4939-9562-2_11.

Abstract

Sugar transport in the phloem is driven by turgor pressure gradients which are created by osmotic gradients resulting from sugars loaded to the phloem at the source tissue and unloaded at the sink tissue. Therefore, osmolality is a key parameter that can be used to evaluate sugar status and get an indication of the driving force for phloem transport. Here we describe how osmotic concentration measurements from inner bark (practically, the phloem) and needles of trees can be measured. This protocol presents the procedure used by Lintunen et al. (Front Plant Sci 7:726, 2016) and Paljakka et al. (Plant Cell Environ 40:2160-2173, 2017), extended by practical advice and discussion of potential errors and caveats. We describe how to implement this procedure for gymnosperm as well as angiosperm trees. This method uses mechanical sap extraction with a centrifuge from inner bark and leaf samples, which have gone through a deep freeze treatment and thawing. The osmotic potential of these samples is then analyzed with a freezing point or vapor pressure osmometer. The aim of these measurements is to study the spatial and temporal dynamics of phloem function.

摘要

韧皮部中的糖分运输是由膨压梯度驱动的,而膨压梯度是由源组织中糖分装载到韧皮部以及库组织中糖分卸载所产生的渗透梯度形成的。因此,渗透压是一个关键参数,可用于评估糖分状态并指示韧皮部运输的驱动力。在这里,我们描述了如何测量树木内皮层(实际上是韧皮部)和针叶的渗透浓度。本方案介绍了Lintunen等人(《植物科学前沿》7:726,2016年)和Paljakka等人(《植物细胞环境》40:2160 - 2173,2017年)所使用的程序,并通过实际建议以及对潜在误差和注意事项的讨论进行了扩展。我们描述了如何对裸子植物和被子植物实施该程序。该方法使用离心机从经过深度冷冻处理和解冻的内皮层和叶片样本中机械提取树液。然后用冰点渗透压计或蒸气压渗透压计分析这些样本的渗透势。这些测量的目的是研究韧皮部功能的时空动态。

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