首页> 外文期刊>IAWA Journal >VARIATIONS IN CELL WALL ULTRASTRUCTURE AND CHEMISTRY IN CELL TYPES OF EARLYWOOD AND LATEWOOD IN ENGLISH OAK (QUERCUS ROBUR)
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VARIATIONS IN CELL WALL ULTRASTRUCTURE AND CHEMISTRY IN CELL TYPES OF EARLYWOOD AND LATEWOOD IN ENGLISH OAK (QUERCUS ROBUR)

机译:橡木(栎栎)早,早几种细胞类型的细胞壁超微结构和化学性质的变化。

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Although there is considerable information on anatomy and gross chemistry of oak wood, little is known on the ultrastructure and chemistry at the individual cell wall level. In particular, differences in ultrastructure and chemistry within the same cell type between earlywood (EW) and latewood (LW) are poorly understood. This study investigated the ultrastructure and chemistry of (vasicentric) tracheids, vessels, (libriform) fibers and axial/ray parenchyma cells of English oak xylem (Quercus robur L.) using light-, fluorescence- and transmission electron microscopy combined with histo/cytochemistry and immunohisto/cytochemistry. EW tracheids showed several differences from LW tracheids including thinner cell walls, wider middle lamella cell corner (MLcc) regions and lesser amounts of mannan epitopes. Fibers showed thicker cell walls and higher amounts of mannan epitopes than tracheids. EW vessels were rich in guaiacyl (G) lignin with a characteristic non-layered cell wall organization (absence of S1-3 layers), whereas LW vessels were rich in syringyl (S) lignin with a three layered cell wall structure (S1-3 layers). Formation of a highly lignified and wide protective layer (PL) inside axial/ray parenchyma cells was detected only in EW. Distribution of mannan epitopes varied greatly between cell types and between EW and LW, whereas distribution of xylan epitopes was almost identical in all cell types within a growth ring. Together, this study demonstrates that there are great variations in ultrastructure and chemistry of cell walls within a single growth ring of English oak xylem.
机译:尽管有大量有关橡木的解剖结构和总体化学的信息,但对于单个细胞壁水平的超微结构和化学知之甚少。特别是,对于早材(EW)和晚材(LW)在同一细胞类型内的超微结构和化学差异知之甚少。这项研究使用光,荧光和透射电镜结合组织化学/细胞化学技术研究了英国栎木质部(Quercus robur L.)的(血管中心)管胞,脉管,(libriform)纤维和轴向/射线实质细胞的超微结构和化学性质。和免疫组化/细胞化学。 EW管胞与LW管胞有几个差异,包括细胞壁更薄,中层片状细胞角(MLcc)区域更宽,甘露聚糖表位数量更少。纤维比管胞显示出更厚的细胞壁和更高的甘露聚糖表位。 EW容器富含具有特征性非分层细胞壁结构的guaiacyl(G)木质素(无S1-3层),而LW容器富含具有三层细胞壁结构的丁香基(S)木质素(S1-3)层)。仅在EW中检测到轴向/射线薄壁组织细胞内形成高度木质化且宽的保护层(PL)。甘露聚糖表位的分布在细胞类型之间以及EW和LW之间变化很大,而木聚糖表位的分布在生长环内的所有细胞类型中几乎相同。总之,这项研究表明,在英国橡树木质部的单个生长环中,细胞壁的超微结构和化学变化很大。

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