Unverified paper record
Oolong tea and LR‐White resin: a new method of plant sample preparation for transmission electron microscopy
Journal of Microscopy · 15 Jan 2018 · 10.1111/jmi.12678
Abstract
Summary Simplifying sample processing, shortening the sample preparation time, and adjusting procedures to suitable for new health and safety regulations, these issues are the current challenges which electron microscopic examinations need to face. In order to resolve these problems, new plant tissue sample processing protocols for transmission electron microscopy should be developed. In the present study, we chose the LR‐White resin‐assisted processing protocol for the ultrastructural observation of different types of plant tissues. Moreover, we explored Oolong tea extract (OTE) as a substitute for UA in staining ultrathin sections of plant samples. The results revealed that there was no significant difference between the OTE double staining method and the traditional double staining method. Furthermore, in some organelles, such as mitochondria in root cells of tomatoes and chloroplast in leaf cells of watermelons, the OTE double staining method achieved little better results than the traditional double staining method. Therefore, OTE demonstrated good potentials in replacing UA as a counterstain on ultrathin sections. In addition, sample preparation time was significantly shortened and simplified using LR‐White resin. This novel protocol reduced the time for preparing plant samples, and hazardous reagents in traditional method (acetone and UA) were also replaced by less toxic ones (ethanol and OTE).
Plant phenotyping relevance
植物組織のTEM観察における試料調製・染色プロトコル自体を開発・比較しており、植物の超微細構造を取得する画像計測法の技術的貢献が中心である。
abstractnew plant tissue sample processing protocols for transmission electron microscopy should be developed
abstractThe results revealed that there was no significant difference between the OTE double staining method and the traditional double staining method.
abstractThis novel protocol reduced the time for preparing plant samples
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