Guzmán Paula, Fernández Victoria, Khayet Mohamed, García María Luisa, Fernández Agustín, Gil Luis
Forest Genetics and Ecophysiology Research Group, School of Forest Engineering, Technical University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain.
Department of Applied Physics I, Faculty of Physics, University Complutense of Madrid, Avenida Complutense s/n, 28040 Madrid, Spain.
ScientificWorldJournal. 2014;2014:963921. doi: 10.1155/2014/963921. Epub 2014 Apr 22.
The leaf cuticular ultrastructure of some plant species has been examined by transmission electron microscopy (TEM) in only few studies. Attending to the different cuticle layers and inner structure, plant cuticles have been grouped into six general morphological types. With the aim of critically examining the effect of cuticle isolation and preparation for TEM analysis on cuticular ultrastructure, adaxial leaf cuticles of blue-gum eucalypt, grey poplar, and European pear were assessed, following a membrane science approach. The embedding and staining protocols affected the ultrastructure of the cuticles analysed. The solubility parameter, surface tension, and contact angles with water of pure Spurr's and LR-White resins were within a similar range. Differences were however estimated for resin : solvent mixtures, since Spurr's resin is combined with acetone and LR-White resin is mixed with ethanol. Given the composite hydrophilic and lipophilic nature of plant cuticles, the particular TEM tissue embedding and staining procedures employed may affect sample ultrastructure and the interpretation of the results in physicochemical and biological terms. It is concluded that tissue preparation procedures may be optimised to facilitate the observation of the micro- and nanostructure of cuticular layers and components with different degrees of polarity and hydrophobicity.
仅有少数研究通过透射电子显微镜(TEM)对一些植物物种的叶片表皮超微结构进行了检查。根据不同的角质层和内部结构,植物角质层已被分为六种一般形态类型。为了严格检验角质层分离和TEM分析样品制备对表皮超微结构的影响,采用膜科学方法对蓝桉、灰杨和欧洲梨的叶片上表皮进行了评估。包埋和染色方案影响了所分析角质层的超微结构。纯Spurr树脂和LR-White树脂的溶解度参数、表面张力以及与水的接触角在相似范围内。然而,对于树脂与溶剂的混合物,差异是可以估计的,因为Spurr树脂与丙酮混合,而LR-White树脂与乙醇混合。鉴于植物角质层具有亲水性和疏水性的复合性质,所采用的特定TEM组织包埋和染色程序可能会影响样品的超微结构以及从物理化学和生物学角度对结果的解释。得出的结论是,可以优化组织制备程序,以便于观察具有不同极性和疏水性程度的角质层和成分的微观和纳米结构。