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利用低温扫描电子显微镜观察木本植物木质部水分分布

Xylem Water Distribution in Woody Plants Visualized with a Cryo-scanning Electron Microscope.

作者信息

Yazaki Kenichi, Ogasa Mayumi Y, Kuroda Katsushi, Utsumi Yasuhiro, Kitin Peter, Sano Yuzou

机构信息

Department of Plant Ecology, Forestry and Forest Products Research Institute (FFPRI);

Kansai Research Center, Forestry and Forest Products Research Institute (FFPRI).

出版信息

J Vis Exp. 2019 Jun 20(148). doi: 10.3791/59154.

Abstract

A scanning electron microscope installed cryo-unit (cryo-SEM) allows specimen observation at subzero temperatures and has been used for exploring water distribution in plant tissues in combination with freeze fixation techniques using liquid nitrogen (LN2). For woody species, however, preparations for observing the xylem transverse-cut surface involve some difficulties due to the orientation of wood fibers. Additionally, higher tension in the water column in xylem conduits can occasionally cause artifactual changes in water distribution, especially during sample fixation and collection. In this study, we demonstrate an efficient procedure to observe the water distribution within the xylem of woody plants in situ by using a cryostat and cryo-SEM. At first, during sample collection, measuring the xylem water potential should determine whether high tension is present in the xylem conduits. When the xylem water potential is low (< ca. -0.5 MPa), a tension relaxation procedure is needed to facilitate better preservation of the water status in xylem conduits during sample freeze fixation. Next, a watertight collar is attached around the tree stem and filled with LN2 for freeze fixation of the water status of xylem. After harvesting, care should be taken to ensure that the sample is preserved frozen while completing the procedures of sample preparation for observation. A cryostat is employed to clearly expose the xylem transverse-cut surface. In cryo-SEM observations, time adjustment for freeze-etching is required to remove frost dust and accentuate the edge of the cell walls on the viewing surface. Our results demonstrate the applicability of cryo-SEM techniques for the observation of water distribution within xylem at cellular and subcellular levels. The combination of cryo-SEM with non-destructive in situ observation techniques will profoundly improve the exploration of woody plant water flow dynamics.

摘要

配备低温装置的扫描电子显微镜(低温扫描电子显微镜)能够在零下温度下观察标本,并且已与使用液氮(LN₂)的冷冻固定技术相结合,用于探究植物组织中的水分分布。然而,对于木本植物而言,由于木纤维的取向,观察木质部横切面的标本制备存在一些困难。此外,木质部导管水柱中的较高张力偶尔会导致水分分布出现人为变化,尤其是在样品固定和采集过程中。在本研究中,我们展示了一种通过使用低温恒温器和低温扫描电子显微镜原位观察木本植物木质部内水分分布的有效方法。首先,在样品采集过程中,测量木质部水势应能确定木质部导管中是否存在高张力。当木质部水势较低(<约 -0.5 MPa)时,需要进行张力松弛程序,以便在样品冷冻固定期间更好地保存木质部导管中的水分状态。接下来,在树干周围安装一个防水套环,并填充 LN₂ 以冷冻固定木质部的水分状态。收获后,在完成观察样品制备程序时应注意确保样品保持冷冻状态。使用低温恒温器清晰地暴露木质部横切面。在低温扫描电子显微镜观察中,需要调整冷冻蚀刻时间以去除霜尘并突出观察表面细胞壁的边缘。我们的结果证明了低温扫描电子显微镜技术在细胞和亚细胞水平观察木质部内水分分布的适用性。低温扫描电子显微镜与无损原位观察技术的结合将极大地改善对木本植物水分流动动力学的探索。

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