Laboratory of Tree Cell Biology, Division of Forest and Biomaterials Science, Graduate School of Agriculture, Kyoto University, Kitashirakawa-Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
Tree Physiol. 2012 Sep;32(9):1129-36. doi: 10.1093/treephys/tps075. Epub 2012 Aug 29.
The lignification process in poplar tension wood lignified cell wall layers, specifically the S(1) and S(2) layers and the compound middle lamella (CML), was analysed using ultraviolet (UV) and transmission electron microscopy (TEM). Variations in the thickness of the gelatinous layer (G-layer) were also measured to clarify whether the lignified cell wall layers had completed their lignification before the deposition of G-layers, or, on the contrary, if lignification of these layers was still active during G-layer formation. Observations using UV microscopy and TEM indicated that both UV absorbance and the degree of potassium permanganate staining increased in the CML and S(1) and S(2) layers during G-layer formation, suggesting that the lignification of these lignified layers is still in progress during G-layer formation. In the context of the cell-autonomous monolignol synthesis hypothesis, our observations suggest that monolignols must go through the developing G-layer during the lignification of CML and the S(1) and S(2) layers. The alternative hypothesis of external synthesis (in the rays) does not require that monolignols go through the G-layer before being deposited in the CML, or the S(1) and S(2) layers. Interestingly, the previous observation of lignin in the poplar G-layer was not confirmed with the microscopy techniques used in the present study.
使用紫外(UV)和透射电子显微镜(TEM)分析了杨树张力木木质化细胞壁层,特别是 S(1)和 S(2)层和复合中层(CML)的木质化过程。还测量了凝胶层(G-层)的厚度变化,以阐明木质化细胞壁层是否在 G-层沉积之前完成了木质化,或者相反,这些层的木质化是否在 G-层形成过程中仍然活跃。使用 UV 显微镜和 TEM 的观察表明,在 G-层形成过程中,CML 和 S(1)和 S(2)层中的 UV 吸光度和高锰酸钾染色程度均增加,这表明这些木质化层的木质化仍在进行中G-层形成过程中。在细胞自主的愈创木酚合成假说的背景下,我们的观察表明,在 CML 和 S(1)和 S(2)层的木质化过程中,愈创木酚必须经过正在发育的 G-层。外部合成(在射线中)的替代假说不需要在 CML 或 S(1)和 S(2)层中沉积之前,将愈创木酚穿过 G-层。有趣的是,杨树 G-层中存在木质素的先前观察结果并未通过本研究中使用的显微镜技术得到证实。