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Chemical and structural analysis of Eucalyptus globulus and E. camaldulensis leaf cuticles: a lipidized cell wall region

机译:化学和结构分析的桉树和E. camaldulensis叶角质层:脂质化的细胞壁区域。

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摘要

The plant cuticle has traditionally been conceived as an independent hydrophobic layer that covers the external epidermal cell wall. Due to its complexity, the existing relationship between cuticle chemical composition and ultra-structure remains unclear to date. This study aimed to examine the link between chemical composition and structure of isolated, adaxial leaf cuticles of Eucalyptus camaldulensis and E. globulus by the gradual extraction and identification of lipid constituents (cutin and soluble lipids), coupled to spectroscopic and microscopic analyses. The soluble compounds and cutin monomers identified could not be assigned to a concrete internal cuticle ultra-structure. After cutin depolymerization, a cellulose network resembling the cell wall was observed, with different structural patterns in the regions ascribed to the cuticle proper and cuticular layer, respectively. Our results suggest that the current cuticle model should be revised, stressing the presence and major role of cell wall polysaccharides. It is concluded that the cuticle may be interpreted as a modified cell wall region which contains additional lipids. The major heterogeneity of the plant cuticle makes it difficult to establish a direct link between cuticle chemistry and structure with the existing methodologies.
机译:传统上,植物表皮被认为是覆盖外部表皮细胞壁的独立疏水层。由于其复杂性,迄今为止还不清楚表皮化学成分与超微结构之间的现有关系。这项研究旨在通过逐步提取和鉴定脂质成分(角质和可溶性脂质),再结合光谱和显微镜分析,研究桉树和小球藻的分离,近生叶表皮的化学成分与结构之间的联系。鉴定出的可溶性化合物和角质素单体无法分配给混凝土内部角质层超结构。角质解聚后,观察到类似于细胞壁的纤维素网络,分别在表皮固有层和表皮层区域具有不同的结构模式。我们的结果表明,应修正当前的表皮模型,强调细胞壁多糖的存在和主要作用。结论是,表皮可以解释为包含额外脂质的修饰的细胞壁区域。植物表皮的主要异质性使得难以通过现有方法在表皮化学和结构之间建立直接联系。

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