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环境扫描电子显微镜(ESEM)——研究植物的多功能工具。

Environmental scanning electron microscopy (ESEM)--a versatile tool in studying plants.

机构信息

Institute of Plant Sciences, University of Graz, Schubertstrasse 51, 8010, Graz, Austria.

出版信息

Protoplasma. 2010 Oct;246(1-4):89-99. doi: 10.1007/s00709-010-0155-3. Epub 2010 May 6.

Abstract

Environmental scanning electron microscopy (ESEM) enables the investigation of hydrated and uncoated plant samples and the in situ observation of dynamic processes. Water vapor in the microscope chamber takes part in secondary electron detection and charge prevention. Two ESEM modes are available and offer a broad spectrum of applications. The environmental or wet mode prevents sample dehydration by the combination of sample cooling (5°C) and a vapor pressure of 4-6 Torr. In the low vacuum mode, the maximum chamber pressure is limited to 1 Torr (corresponding to about 5% relative humidity in the chamber) and allows the simultaneous use of a backscattered electron detector for imaging material contrast. A selection of characteristic plant samples and various applications are presented as a guide to ESEM for plant scientists. Leaf surfaces, trichomes, epicuticular waxes, and inorganic surface layers represent samples being comparatively resistant to dehydration, whereas callus cells and stigmatic tissue are examples for dehydration- and beam-sensitive samples. The potential of investigating dynamic processes in situ is demonstrated by studying anther opening, by tensile testing of leaves, and by performing hydration/dehydration experiments by changing the vapor pressure. Additionally, automated block-face imaging and serial sectioning using in situ ultramicrotomy is presented. The strengths and weaknesses of ESEM are discussed and it is shown that ESEM is a versatile tool in plant science.

摘要

环境扫描电子显微镜(ESEM)能够研究水合和未涂层的植物样品,并对动态过程进行原位观察。显微镜腔中的水蒸气参与二次电子检测和电荷防止。有两种 ESEM 模式可用,提供了广泛的应用。环境或湿模式通过样品冷却(5°C)和 4-6 托的蒸汽压力相结合,防止样品脱水。在低真空模式下,腔室的最大压力限制在 1 托(相当于腔室内约 5%的相对湿度),并允许同时使用背散射电子探测器进行材料对比度成像。选择了一些有代表性的植物样品和各种应用,作为植物科学家使用 ESEM 的指南。叶片表面、毛状体、表皮蜡和无机表面层代表相对抗脱水的样品,而愈伤组织细胞和柱头组织则是脱水和对束敏感的样品的例子。通过研究花药开裂、叶片拉伸测试以及通过改变蒸汽压力进行水合/脱水实验,展示了原位研究动态过程的潜力。此外,还介绍了使用原位超微切割进行自动块状面成像和连续切片。讨论了 ESEM 的优缺点,并表明 ESEM 是植物科学中的一种多功能工具。

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