Developments in application of light and scanning electron microscopy techniques for cell wall degradation studies.

F. M. Engels
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引用次数: 9

Abstract

The results of recent technological developments in light and scanning electron microscopy closely used for research on forage cell wall degradation in ruminants, are reviewed. The indigestibility of forages by rumen microorganisms used to be ascribed mainly to an overall presence of lignin in the plant material. However, early light microscopic observations without application of histochemical staining revealed that some leaf and stem tissues were degraded completely. The early use of lignin detecting dyes, such as acid phloroglucinol or safranin, in light microscopy made it possible to discriminate between lignified undegradable and unlignified degradable plant tissues. The introduction of the scanning electron microscope enabled a further discrimination between degradable and undegradable cell wall and cell wall layers in plant tissues. As a result of continuous improvement of the techniques used in microscopy, e.g. section to slide, mirror sectioning, microspectrophotometry and cryo-ultramilling, forage indigestibility can now be attributed to the specific deposition and location of cutin/suberin or lignin layers inside the plant cell wall. These structural layers form barriers hindering access of rumen microorganisms to degradable parts of the cell wall.
光镜和扫描电镜技术在细胞壁降解研究中的应用进展。
综述了反刍动物饲料细胞壁降解研究中常用的光镜和扫描电镜技术的最新进展。过去,瘤胃微生物对牧草的不消化主要归因于植物材料中木质素的整体存在。然而,未经组织化学染色的早期光镜观察显示,一些叶和茎组织已经完全降解。早期使用木质素检测染料,如酸性间苯三酚或红花素,在光学显微镜下使得区分木质化不可降解和不可木质化可降解的植物组织成为可能。扫描电镜的引入使得进一步区分植物组织中可降解和不可降解的细胞壁和细胞壁层成为可能。由于显微镜技术的不断改进,例如切片到切片、镜像切片、显微分光光度法和低温超磨,牧草的不消化率现在可以归因于植物细胞壁内角质/木质素或木质素层的特定沉积和位置。这些结构层形成屏障,阻碍瘤胃微生物进入细胞壁的可降解部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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